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Date: Tue, 05 Sep 2000 16:58:16 -0400
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From: Kathy Breda <breda@nesa.com>
Subject: IBIS Summit Announcement- Thursday 9/14/00 
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
-------------------------------------------------------
IBIS SUMMIT 
	THIRD CALL FOR 
		PARTICIPATION, 
			PRESENTATIONS 
-------------------------------------------------------
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~

             I B I S   S U M M I T   M E E T I N G

Time/Date:      8:30 AM - 5:00 PM, Thursday, September 14, 2000

Location:       The Crowne Plaza Hotel
                10 Lincoln Square
                Worcester, MA
                Tel:  (508) 791-1600
                Fax:  (508) 791-1796
               
Content:        Presentations and Discussions

Purpose:        Solicit and Exchange IBIS Model Related Information and Ideas.

Sponsors:       North East Systems Associates, Inc. (NESA),
                Cadence Design Systems,
                HyperLynx,
                Mentor Graphics, 
                IBIS Users Group
                Others to be determined

PCB Conference: September 11-15, 2000
East            Worcester's Centrum Centre
                Worcester, Massachusetts
                See http://www.pcbeast.com/ for more information.

BACKGROUND

The IBIS Users Group (IBIS East) has been formed under the leadership of  
Dr. Edward Sayre from North East Systems Associates, Inc. (NESA) and has
been meeting to consider and forward IBIS model user concerns.  As a result
of East coast meetings, the group has developed an IBIS Accuracy Handbook
document and has initiated the project to format Connector Models.  These
topics plus others of current interest to the EIA IBIS Open Forum will be
discussed at this meeting.

This meeting will be conducted as a formal IBIS Summit Meeting.  Presentation
are expected to be available and archived in an electronic format, and minutes
of the meeting will be issued.  Any pending formal decisions (votes) will be
announced at least two weeks prior to the meeting.


CALL FOR PARTICIPANTS

People involved in IBIS Model development, EDA tool development, and digital
circuit design are invited to participate to the Summit meeting.  If you plan
to participate, please register with the information below:

  Name:
  E-mail address:
  Company:
  Telephone:

Send to:

  Kathy Breda (breda@nesa.com)
  

CALL FOR PRESENTATIONS

We are seeking presentations from individuals who have IBIS experiences
or issues.

Format of Presentation:  Overhead Projections
Time:                    15-30 Minutes
Electronic Archival:     We request electronic versions so that the
                         presentations can be archived and also made
                         available to non-attendees.  Formats used in
                         the past have been text, Power Point, Word, 
                         Postscript, and Acrobat.  Electronic presentations
                         should be made available by September 8, 2000.
                         Otherwise the presenter will be expected to provide
                         50 copies for distribution.

                         Note, for archiving and ease of viewing across
                         platforms, we prefer receiving files in Acrobat
                         (.pdf) format.


If you plan a presentation, please supply

  Title:
  Presenter:
  E-mail address:
  Company:
  Telephone:

  Estimate Time:

Send this to:

  Kathy Breda (breda@nesa.com)


AGENDA

The agenda includes some presentations and an opportunity for open
discussions.  Lunch will be provided along with refreshments at the breaks.
The final agenda will be developed based on presentation proposals that are
received.  So far the following presentations are tentatively planned:
  
  IBIS Present and Future - Bob Ross, Mentor Graphics

  IBIS and SI at 3Com - Roy Leventhal, 3Com
    (Presented by Mike LaBonte, Cadence)

  IBIS-X and Futures Discussion - Mike LaBonte, Cadence

  Code Based Models - Tudor Secasiu, Intel

  An Escape Hatch for Leading Edge Simulation - Will Hobbs, Intel

  IBIS Connector Specification and Discussion - Kellee Crisafulli, HyperLynx,
    Gus Panella, Molex

  IBIS Swath Matrix Expansion - Bob Ross, Mentor Graphics


LIST OF NEARBY HOTELS

See http://www.pcbeast.com for travel directions, hotels and other
information.

**************************************************************


+~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~+
|       NORTH EAST SYSTEMS ASSOCIATES, INC.       |
|      -------------------------------------      |
|     "High Performance Engineering & Design"     |
+~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~+
| Kathy Breda             e-mail: breda@nesa.com  |
| NESA, Inc.              http://www.nesa.com/    |
| 636 Great Road          Tel +1.978.897-8787     |
| Stow, MA 01775 USA      Fax +1.978.897-5359     |
+~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~+


+~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~+
|       NORTH EAST SYSTEMS ASSOCIATES, INC.       |
|      -------------------------------------      |
|     "High Performance Engineering & Design"     |
+~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~+
| Kathy Breda             e-mail: breda@nesa.com  |
| NESA, Inc.              http://www.nesa.com/    |
| 636 Great Road          Tel +1.978.897-8787     |
| Stow, MA 01775 USA      Fax +1.978.897-5359     |
+~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~+
 
From owner-ibis Tue Sep  5 16:46:27 2000
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Date: Tue, 05 Sep 2000 16:42:20 -0700
To: ibis-users@eda.org
From: Linda Chu x3207 <lindac@eng.adaptec.com> (by way of John Angulo <angulo@hyperlynx.com>)
Subject: DC convergence
Mime-Version: 1.0
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Hi,
When DC sweep range from -Vcc to Vcc*2 on the PULLUP/PULLDOWN
simulation, it has convergence problem. I try to use the alternative
method is to do an AC, but the SPICE-IBIS convertor doesn't recognize
the spice output format. So when it generated the IBIS model, it puts
out N/A in the current table. Is there anyone can help me on this?
thanks
linda

 
From owner-ibis Tue Sep  5 17:43:02 2000
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Date: Tue, 5 Sep 2000 17:40:15 -0700 (PDT)
From: Syed Huq <shuq@cisco.com>
Reply-To: Syed Huq <shuq@cisco.com>
Subject: Re: DC convergence
To: ibis-users@eda.org, lindac@eng.adaptec.com
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Linda,

This is a well known issue. Here is the workaround:

1) Make sure the [Iterate] keywork is in your .s2i file. If s2ibis2 generated
   the Input(.spi)and Output(.out)files successfully, the iterate feature helps
   not to re-sim these same model_types again.
   
2) Edit the .spi files that caused the convergence problem by reducing the
   range:
   
   Example:
   
   .DC VOUTS2I 0 -1.5 -0.1 #(GND clamp sweep edited to go from 0V to -1.5V)
   
3) Re-run s2ibis2

Hope this helps.
Syed
Cisco Systems, Inc
   
> X-Sender: angulo@mail.hyperlynx.com
> Date: Tue, 05 Sep 2000 16:42:20 -0700
> To: ibis-users@eda.org
> From: Linda Chu x3207 <lindac@eng.adaptec.com> (by way of John Angulo 
<angulo@hyperlynx.com>)
> Subject: DC convergence
> Mime-Version: 1.0
> 
> Hi,
> When DC sweep range from -Vcc to Vcc*2 on the PULLUP/PULLDOWN
> simulation, it has convergence problem. I try to use the alternative
> method is to do an AC, but the SPICE-IBIS convertor doesn't recognize
> the spice output format. So when it generated the IBIS model, it puts
> out N/A in the current table. Is there anyone can help me on this?
> thanks
> linda
> 

 
From owner-ibis Tue Sep  5 23:54:09 2000
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Date: Wed, 06 Sep 2000 09:51:38 +0200
From: Dan Aleksandrowicz <dan@galileo.co.il>
Organization: GALILEO Technology Ltd.
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Subject: Re: DC convergence
References: <200009052343.QAA01313@hazard.hyperlynx.com>
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 boundary="------------FB104B596513617D30DFFEF8"


--------------FB104B596513617D30DFFEF8
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Hi Linda.

This problem is very common. Your solution, however, is misguided.

I have the same problem with spice models from Fab we use.
I assume that the problem originated when the transistors were
extracted to spice the voltage range was lower than the Vdd IO.

However, I have solved it in two methods.

First, if you know some C you can try to changed the S2Ibis software
to work in the opposite direction. I mean you can modify the C to
generate
a put1.spi that has a DC sweep from 2*Vdd -> -Vdd.

The second solution, which work fine with a modified S2Ibis software,
is to set the voltage range to a limited Vdd like 2.5V instead of 3.3V.
While acutely connecting the Vdd generated by the S2Ibis file to a
dummy node. And setting Vdd to the true value.
To do this you must set VDDtyp=VDDmin=VDDmax in the voltage
range s2i file. Then you will have to change the result manually.
The change is the shifting of the pullup table voltage.
This method is very limited. And consumes a lot of man power.
But some times it you only solution.


For more ideas you are welcome to contact me.


> Hi,
> When DC sweep range from -Vcc to Vcc*2 on the PULLUP/PULLDOWN
> simulation, it has convergence problem. I try to use the alternative
> method is to do an AC, but the SPICE-IBIS convertor doesn't recognize
> the spice output format. So when it generated the IBIS model, it puts
> out N/A in the current table. Is there anyone can help me on this?
> thanks
> linda

--
                \\|//
                (o o)
~~~~~~~~~~~~oOOo~(_)~oOOo~~~~~~~~~~~~~~~~~~~
Dan Aleksandrowicz
Galileo Technology
Mercaz Ofek 1   (Building B')
Northern Industrial Zone, LOD 71293,  ISRAEL
email:dan@galileo.co.il
Tel: +972 8 9247555    (-
     Ext. 324         |__|
Fax: +972 8 9247554   |__|
                     #|oo| |--|   ___
           _  _    |--|  | |  |\ |oo|)        /\
       __  \\ \\   |------------\| #|--\     _||-
   ____\ \__\\_\\__|_||_________________\___|   |__v-___
   \                                                   /
    \      "Smoke on the water. Fire in the sky."     /
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~



--------------FB104B596513617D30DFFEF8
Content-Type: text/html; charset=us-ascii
Content-Transfer-Encoding: 7bit

<!doctype html public "-//w3c//dtd html 4.0 transitional//en">
<html>
Hi Linda.
<p>This problem is very common. Your solution, however, is misguided.
<p>I have the same problem with spice models from Fab we use.
<br>I assume that the problem originated when the transistors were
<br>extracted to spice the voltage range was lower than the Vdd IO.
<p>However, I have solved it in two methods.
<p>First, if you know some C you can try to changed the S2Ibis software
<br>to work in the opposite direction. I mean you can modify the C to generate
<br>a put1.spi that has a DC sweep from 2*Vdd -> -Vdd.
<p>The second solution, which work fine with a modified S2Ibis software,
<br>is to set the voltage range to a limited Vdd like 2.5V instead of 3.3V.
<br>While acutely connecting the Vdd generated by the S2Ibis file to a
<br>dummy node. And setting Vdd to the true value.
<br>To do this you must set VDDtyp=VDDmin=VDDmax in the voltage
<br>range s2i file. Then you will have to change the result manually.
<br>The change is the shifting of the pullup table voltage.
<br>This method is very limited. And consumes a lot of man power.
<br>But some times it you only solution.
<br>&nbsp;
<p>For more ideas you are welcome to contact me.
<br>&nbsp;
<blockquote TYPE=CITE>Hi,
<br>When DC sweep range from -Vcc to Vcc*2 on the PULLUP/PULLDOWN
<br>simulation, it has convergence problem. I try to use the alternative
<br>method is to do an AC, but the SPICE-IBIS convertor doesn't recognize
<br>the spice output format. So when it generated the IBIS model, it puts
<br>out N/A in the current table. Is there anyone can help me on this?
<br>thanks
<br>linda</blockquote>

<pre>--&nbsp;
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; \\|//
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; (o o)
~~~~~~~~~~~~oOOo~(_)~oOOo~~~~~~~~~~~~~~~~~~~
Dan Aleksandrowicz
Galileo Technology&nbsp;
Mercaz Ofek 1&nbsp;&nbsp; (Building B')&nbsp;
Northern Industrial Zone, LOD 71293,&nbsp; ISRAEL&nbsp;
email:dan@galileo.co.il
Tel: +972 8 9247555&nbsp;&nbsp;&nbsp; (-&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;
&nbsp;&nbsp;&nbsp;&nbsp; Ext. 324&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; |__|
Fax: +972 8 9247554&nbsp;&nbsp; |__|
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; #|oo| |--|&nbsp;&nbsp; ___
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; _&nbsp; _&nbsp;&nbsp;&nbsp; |--|&nbsp; | |&nbsp; |\ |oo|)&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; /\
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; __&nbsp; \\ \\&nbsp;&nbsp; |------------\| #|--\&nbsp;&nbsp;&nbsp;&nbsp; _||-
&nbsp;&nbsp; ____\ \__\\_\\__|_||_________________\___|&nbsp;&nbsp; |__v-___
&nbsp;&nbsp; \&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; /
&nbsp;&nbsp;&nbsp; \&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; "Smoke on the water. Fire in the sky."&nbsp;&nbsp;&nbsp;&nbsp; /
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~</pre>
&nbsp;</html>

--------------FB104B596513617D30DFFEF8--

 
From owner-ibis Wed Sep  6 11:43:36 2000
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From: "Lynne Green" <lgreen@mail.hyperlynx.com>
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Subject: RE: DC convergence
Date: Wed, 6 Sep 2000 11:34:15 -0700
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Linda-

Did you check for a non-zero DC series resistance in your diode model?
You can get convergence problems when the diode currents get large.

- Lynne

-----Original Message-----
From: Linda Chu x3207 (by way of John Angulo <angulo@hyperlynx.com>)
[mailto:lindac@eng.adaptec.com]
Sent: Tuesday, September 05, 2000 4:42 PM
To: ibis-users@eda.org
Subject: DC convergence


Hi,
When DC sweep range from -Vcc to Vcc*2 on the PULLUP/PULLDOWN
simulation, it has convergence problem. I try to use the alternative
method is to do an AC, but the SPICE-IBIS convertor doesn't recognize
the spice output format. So when it generated the IBIS model, it puts
out N/A in the current table. Is there anyone can help me on this?
thanks
linda

 
From owner-ibis Wed Sep  6 11:52:18 2000
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From: "Montoya, Silvia" <Silvia.Montoya@actel.com>
To: "'shuq@cisco.com'" <shuq@cisco.com>, ibis-users@eda.org,
   lindac@eng.adaptec.com
Subject: RE: DC convergence
Date: Wed, 6 Sep 2000 11:49:13 -0700 
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Hi Syed,
	I thought running s2ibis2 re-creates the .spi files every time.
Wouldn't the edits to  .DC VOUTS2I 0 ... be lost ?

Thanks,
Silvia Montoya
Actel Corp.


-----Original Message-----
From: Syed Huq [mailto:shuq@cisco.com]
Sent: Tuesday, September 05, 2000 5:40 PM
To: ibis-users@eda.org; lindac@eng.adaptec.com
Subject: Re: DC convergence


Linda,

This is a well known issue. Here is the workaround:

1) Make sure the [Iterate] keywork is in your .s2i file. If s2ibis2
generated
   the Input(.spi)and Output(.out)files successfully, the iterate feature
helps
   not to re-sim these same model_types again.
   
2) Edit the .spi files that caused the convergence problem by reducing the
   range:
   
   Example:
   
   .DC VOUTS2I 0 -1.5 -0.1 #(GND clamp sweep edited to go from 0V to -1.5V)
   
3) Re-run s2ibis2

Hope this helps.
Syed
Cisco Systems, Inc
   
> X-Sender: angulo@mail.hyperlynx.com
> Date: Tue, 05 Sep 2000 16:42:20 -0700
> To: ibis-users@eda.org
> From: Linda Chu x3207 <lindac@eng.adaptec.com> (by way of John Angulo 
<angulo@hyperlynx.com>)
> Subject: DC convergence
> Mime-Version: 1.0
> 
> Hi,
> When DC sweep range from -Vcc to Vcc*2 on the PULLUP/PULLDOWN
> simulation, it has convergence problem. I try to use the alternative
> method is to do an AC, but the SPICE-IBIS convertor doesn't recognize
> the spice output format. So when it generated the IBIS model, it puts
> out N/A in the current table. Is there anyone can help me on this?
> thanks
> linda
> 
 
From owner-ibis Wed Sep  6 12:49:03 2000
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Date: Wed, 6 Sep 2000 12:46:13 -0700 (PDT)
From: Syed Huq <shuq@cisco.com>
Reply-To: Syed Huq <shuq@cisco.com>
Subject: RE: DC convergence
To: shuq@cisco.com, ibis-users@eda.org, lindac@eng.adaptec.com,
   Silvia.Montoya@actel.com
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Silvia,

It will re-create the spi files every time if the [Iterate] keyword is not used
in the .s2i file. So if you insert the [Iterate] keyword and have a saved .spi
file, the file will not be over-written. Make sure you delete the previously 
generated .out file so your new .spi file will be used to re-sim.

Regards,
Syed

> From: "Montoya, Silvia" <Silvia.Montoya@actel.com>
> To: "'shuq@cisco.com'" <shuq@cisco.com>, ibis-users@eda.org, 
lindac@eng.adaptec.com
> Subject: RE: DC convergence
> Date: Wed, 6 Sep 2000 11:49:13 -0700 
> MIME-Version: 1.0
> 
> Hi Syed,
> 	I thought running s2ibis2 re-creates the .spi files every time.
> Wouldn't the edits to  .DC VOUTS2I 0 ... be lost ?
> 
> Thanks,
> Silvia Montoya
> Actel Corp.
> 
> 
> -----Original Message-----
> From: Syed Huq [mailto:shuq@cisco.com]
> Sent: Tuesday, September 05, 2000 5:40 PM
> To: ibis-users@eda.org; lindac@eng.adaptec.com
> Subject: Re: DC convergence
> 
> 
> Linda,
> 
> This is a well known issue. Here is the workaround:
> 
> 1) Make sure the [Iterate] keywork is in your .s2i file. If s2ibis2
> generated
>    the Input(.spi)and Output(.out)files successfully, the iterate feature
> helps
>    not to re-sim these same model_types again.
>    
> 2) Edit the .spi files that caused the convergence problem by reducing the
>    range:
>    
>    Example:
>    
>    .DC VOUTS2I 0 -1.5 -0.1 #(GND clamp sweep edited to go from 0V to -1.5V)
>    
> 3) Re-run s2ibis2
> 
> Hope this helps.
> Syed
> Cisco Systems, Inc
>    
> > X-Sender: angulo@mail.hyperlynx.com
> > Date: Tue, 05 Sep 2000 16:42:20 -0700
> > To: ibis-users@eda.org
> > From: Linda Chu x3207 <lindac@eng.adaptec.com> (by way of John Angulo 
> <angulo@hyperlynx.com>)
> > Subject: DC convergence
> > Mime-Version: 1.0
> > 
> > Hi,
> > When DC sweep range from -Vcc to Vcc*2 on the PULLUP/PULLDOWN
> > simulation, it has convergence problem. I try to use the alternative
> > method is to do an AC, but the SPICE-IBIS convertor doesn't recognize
> > the spice output format. So when it generated the IBIS model, it puts
> > out N/A in the current table. Is there anyone can help me on this?
> > thanks
> > linda
> > 

 
From owner-ibis Wed Sep  6 15:59:09 2000
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From: Al Davis <aldavis@ieee.org>
To: Linda Chu x3207 <lindac@eng.adaptec.com>, ibis-users@eda.org
Subject: Re: DC convergence
Date: Wed, 6 Sep 2000 12:03:05 -0700
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On Tue, 05 Sep 2000, Linda Chu x3207 wrote:
> When DC sweep range from -Vcc to Vcc*2 on the PULLUP/PULLDOWN
> simulation, it has convergence problem. ...

I think the real problem is that your real chip would probably go up
in smoke if you tried to force -Vcc or Vcc*2 into its signal pin,
without any series resistance to limit the current.  Spice uses
non-convergence as a method of representing the smoke.

The best bet is to not sweep that far if it causes trouble, then fake
it by extending the slope in a straight line.  Ideally, I would say
to stop the curves where you run out of data, but some simulators do
not extend the curve properly.

In any case, be sure test the resulting IBIS model, to make sure it
makes sense, and realize that you may need to tweak it a bit.
 
From owner-ibis Wed Sep  6 17:50:44 2000
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From: "Muranyi, Arpad" <arpad.muranyi@intel.com>
To: "'Al Davis'" <aldavis@ieee.org>,
   Linda Chu x3207
	 <lindac@eng.adaptec.com>, ibis-users@eda.org
Subject: RE: DC convergence
Date: Wed, 6 Sep 2000 17:47:55 -0700 
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Not really.  I have only seen non-convergence in this situation
when the buffer was clamping 1e+23 Amps of current at the end
of the IV curve.  When the resistive properties of the clamps are
correctly described in the SPICE model, the endpoints will usually
not have more than a few amps.  In that case I have never seen any
non-convergence problems, yet the device would probably still go
up in smoke...

Arpad Muranyi
Intel Corporation
================================================================

-----Original Message-----
From: Al Davis [mailto:aldavis@ieee.org]
Sent: Wednesday, September 06, 2000 12:03 PM
To: Linda Chu x3207; ibis-users@eda.org
Subject: Re: DC convergence


On Tue, 05 Sep 2000, Linda Chu x3207 wrote:
> When DC sweep range from -Vcc to Vcc*2 on the PULLUP/PULLDOWN
> simulation, it has convergence problem. ...

I think the real problem is that your real chip would probably go up
in smoke if you tried to force -Vcc or Vcc*2 into its signal pin,
without any series resistance to limit the current.  Spice uses
non-convergence as a method of representing the smoke.

The best bet is to not sweep that far if it causes trouble, then fake
it by extending the slope in a straight line.  Ideally, I would say
to stop the curves where you run out of data, but some simulators do
not extend the curve properly.

In any case, be sure test the resulting IBIS model, to make sure it
makes sense, and realize that you may need to tweak it a bit.

 
From owner-ibis Thu Sep  7 05:27:37 2000
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From: "zanella, fabrizio" <zanella_fabrizio@emc.com>
To: "'Bob Ross'" <bob_ross@mentorg.com>
Cc: ibis-users@eda.org
Subject: RE: Drive-on-demand
Date: Thu, 7 Sep 2000 08:21:45 -0400 
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Bob, DC, are you referring to the double drive devices like AVC logic, which
has fast drive in the 20-80% region and then softens the drive at the
corners?  This is a technology we've wanted to evaluate for some time, but
the IBIS standard does not support it yet.
Regards, 
Fabrizio Zanella
EMC corporation
fzanella@emc.com

-----Original Message-----
From: Bob Ross [mailto:bob_ross@mentorg.com]
Sent: Thursday, August 31, 2000 9:24 PM
To: ibis@lumbercartel.com
Cc: ibis-users@eda.org
Subject: Re: Drive-on-demand


D.C.:

Based on your description, I do not believe Bus_hold will work
directly.  I do not believe simulators will work with 
"negative" currents in the tables - meaning doing the
opposite of what is expected or creating a negative
impedance buffer that acts opposite of a conventional buffer.

Opposite polarity I-V tables will probably be flagged
as an error by the ibischk3 parser.  Therefore it would
not be legal.

I cannot think of any clever alternative with IBIS
Version 3.2.  

However, I believe the new macro language under discussion by
the IBIS Futures Working Group will be able to handle this
situation (this would be a good test case).

Bob Ross
Mentor Graphics



"D.C. Sessions" wrote:
> 
> Need to double-check this.  It seems that there are standard
> logic components which, on output, sense the output voltage
> and adjust drive current in response.
> 
> No, I don't mean bus hold.  These parts drive LOW hard when
> the output voltage is above a certain threshold and cut the
> drive when the output is below that threshold.  Rising-edge
> drive is similar.
> 
> Yes, I know that this is of dubious stability.  Nobody asked
> me if they should do it this way, but the manufacturers want
> to make this a JEDEC standard and I'm trying to help them
> put together an IBIS model.  Which, as far as I can tell, is
> possible using
> 
> Submodel_type   Bus_hold
> 
> and having negative currents in the [Pulldown] and [Pullup]
> tables.
> 
> 1) Have I missed a better way to do this?
> 2) Will this be legal?
> 3) Will this break EDA tools?
> 
> --
> D. C. Sessions
> ibis@lumbercartel.com
 
From owner-ibis Thu Sep  7 11:08:00 2000
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CC: "'Bob Ross'" <bob_ross@mentorg.com>, ibis-users@eda.org
Subject: Re: Drive-on-demand
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Fabrizio:

Initially I thought that the [Submodel] Bus_hold could be
configured to create the model.  However, what is needed
is a trigger that turns off a submodel driver, rather than
turns it on.

DC suggested creating a "negative" impedance driver to
accomplish the same effect.  The driver would be
switched in, and the negative impedance in parallel
with the existing driver impedance would create the
effect of a higher impedance driver.  I cannot think
of a good way to do this without causing some other
bad interactions.

Bob Ross
Mentor Graphics


"zanella, fabrizio" wrote:
> 
> Bob, DC, are you referring to the double drive devices like AVC logic, which
> has fast drive in the 20-80% region and then softens the drive at the
> corners?  This is a technology we've wanted to evaluate for some time, but
> the IBIS standard does not support it yet.
> Regards,
> Fabrizio Zanella
> EMC corporation
> fzanella@emc.com
> 
> -----Original Message-----
> From: Bob Ross [mailto:bob_ross@mentorg.com]
> Sent: Thursday, August 31, 2000 9:24 PM
> To: ibis@lumbercartel.com
> Cc: ibis-users@eda.org
> Subject: Re: Drive-on-demand
> 
> D.C.:
> 
> Based on your description, I do not believe Bus_hold will work
> directly.  I do not believe simulators will work with
> "negative" currents in the tables - meaning doing the
> opposite of what is expected or creating a negative
> impedance buffer that acts opposite of a conventional buffer.
> 
> Opposite polarity I-V tables will probably be flagged
> as an error by the ibischk3 parser.  Therefore it would
> not be legal.
> 
> I cannot think of any clever alternative with IBIS
> Version 3.2.
> 
> However, I believe the new macro language under discussion by
> the IBIS Futures Working Group will be able to handle this
> situation (this would be a good test case).
> 
> Bob Ross
> Mentor Graphics
> 
> "D.C. Sessions" wrote:
> >
> > Need to double-check this.  It seems that there are standard
> > logic components which, on output, sense the output voltage
> > and adjust drive current in response.
> >
> > No, I don't mean bus hold.  These parts drive LOW hard when
> > the output voltage is above a certain threshold and cut the
> > drive when the output is below that threshold.  Rising-edge
> > drive is similar.
> >
> > Yes, I know that this is of dubious stability.  Nobody asked
> > me if they should do it this way, but the manufacturers want
> > to make this a JEDEC standard and I'm trying to help them
> > put together an IBIS model.  Which, as far as I can tell, is
> > possible using
> >
> > Submodel_type   Bus_hold
> >
> > and having negative currents in the [Pulldown] and [Pullup]
> > tables.
> >
> > 1) Have I missed a better way to do this?
> > 2) Will this be legal?
> > 3) Will this break EDA tools?
> >
> > --
> > D. C. Sessions
> > ibis@lumbercartel.com
 
From owner-ibis Thu Sep  7 11:47:50 2000
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Date: Thu, 07 Sep 2000 11:27:10 -0700
To: Bob Ross <bob_ross@mentorg.com>,
   "zanella, fabrizio" <zanella_fabrizio@emc.com>
From: Kellee Crisafulli <kellee@mail.hyperlynx.com>
Subject: Re: Drive-on-demand
Cc: ibis-users@eda.org
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Hi Bob, Frabrizio,

I don't see what the problem is.
Shouldn't multiple VT tables provide
enough data to modeling this softening effect?

Kellee

At 11:05 AM 9/7/00 -0700, Bob Ross wrote:
>Fabrizio:
>
>Initially I thought that the [Submodel] Bus_hold could be
>configured to create the model.  However, what is needed
>is a trigger that turns off a submodel driver, rather than
>turns it on.
>
>DC suggested creating a "negative" impedance driver to
>accomplish the same effect.  The driver would be
>switched in, and the negative impedance in parallel
>with the existing driver impedance would create the
>effect of a higher impedance driver.  I cannot think
>of a good way to do this without causing some other
>bad interactions.
>
>Bob Ross
>Mentor Graphics
>
>
>"zanella, fabrizio" wrote:
> >
> > Bob, DC, are you referring to the double drive devices like AVC logic, 
> which
> > has fast drive in the 20-80% region and then softens the drive at the
> > corners?  This is a technology we've wanted to evaluate for some time, but
> > the IBIS standard does not support it yet.
> > Regards,
> > Fabrizio Zanella
> > EMC corporation
> > fzanella@emc.com
> >
> > -----Original Message-----
> > From: Bob Ross [mailto:bob_ross@mentorg.com]
> > Sent: Thursday, August 31, 2000 9:24 PM
> > To: ibis@lumbercartel.com
> > Cc: ibis-users@eda.org
> > Subject: Re: Drive-on-demand
> >
> > D.C.:
> >
> > Based on your description, I do not believe Bus_hold will work
> > directly.  I do not believe simulators will work with
> > "negative" currents in the tables - meaning doing the
> > opposite of what is expected or creating a negative
> > impedance buffer that acts opposite of a conventional buffer.
> >
> > Opposite polarity I-V tables will probably be flagged
> > as an error by the ibischk3 parser.  Therefore it would
> > not be legal.
> >
> > I cannot think of any clever alternative with IBIS
> > Version 3.2.
> >
> > However, I believe the new macro language under discussion by
> > the IBIS Futures Working Group will be able to handle this
> > situation (this would be a good test case).
> >
> > Bob Ross
> > Mentor Graphics
> >
> > "D.C. Sessions" wrote:
> > >
> > > Need to double-check this.  It seems that there are standard
> > > logic components which, on output, sense the output voltage
> > > and adjust drive current in response.
> > >
> > > No, I don't mean bus hold.  These parts drive LOW hard when
> > > the output voltage is above a certain threshold and cut the
> > > drive when the output is below that threshold.  Rising-edge
> > > drive is similar.
> > >
> > > Yes, I know that this is of dubious stability.  Nobody asked
> > > me if they should do it this way, but the manufacturers want
> > > to make this a JEDEC standard and I'm trying to help them
> > > put together an IBIS model.  Which, as far as I can tell, is
> > > possible using
> > >
> > > Submodel_type   Bus_hold
> > >
> > > and having negative currents in the [Pulldown] and [Pullup]
> > > tables.
> > >
> > > 1) Have I missed a better way to do this?
> > > 2) Will this be legal?
> > > 3) Will this break EDA tools?
> > >
> > > --
> > > D. C. Sessions
> > > ibis@lumbercartel.com

---------------------------------------------------------
Have a great day....
Kellee Crisafulli
Innovative tools for SI,EMC,X-talk and IBIS tools
E-mail: <mailto:kellee@hyperlynx.com>
web:    <http://www.hyperlynx.com>
---------------------------------------------------------

 
From owner-ibis Thu Sep  7 13:08:03 2000
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CC: "zanella, fabrizio" <zanella_fabrizio@emc.com>, ibis-users@eda.org
Subject: Re: Drive-on-demand
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All,

I would suggest a multistage driver that is tailored for one
specific corner.  It would be tricky to construct, but it should
work.  For each device corner you would have to determine
the transition region where the driver impedance changes
and adjust the staging in the ibis model to account for
this.  I imagine that it would take 3 different models to
cover min/typ/max behavior.

scott


--
Scott McMorrow
Principal Engineer
SiQual, Signal Quality Engineering
18735 SW Boones Ferry Road
Tualatin, OR  97062-3090
(503) 885-1231
http://www.siqual.com


Bob Ross wrote:

> Fabrizio:
>
> Initially I thought that the [Submodel] Bus_hold could be
> configured to create the model.  However, what is needed
> is a trigger that turns off a submodel driver, rather than
> turns it on.
>
> DC suggested creating a "negative" impedance driver to
> accomplish the same effect.  The driver would be
> switched in, and the negative impedance in parallel
> with the existing driver impedance would create the
> effect of a higher impedance driver.  I cannot think
> of a good way to do this without causing some other
> bad interactions.
>
> Bob Ross
> Mentor Graphics
>
> "zanella, fabrizio" wrote:
> >
> > Bob, DC, are you referring to the double drive devices like AVC logic, which
> > has fast drive in the 20-80% region and then softens the drive at the
> > corners?  This is a technology we've wanted to evaluate for some time, but
> > the IBIS standard does not support it yet.
> > Regards,
> > Fabrizio Zanella
> > EMC corporation
> > fzanella@emc.com
> >
> > -----Original Message-----
> > From: Bob Ross [mailto:bob_ross@mentorg.com]
> > Sent: Thursday, August 31, 2000 9:24 PM
> > To: ibis@lumbercartel.com
> > Cc: ibis-users@eda.org
> > Subject: Re: Drive-on-demand
> >
> > D.C.:
> >
> > Based on your description, I do not believe Bus_hold will work
> > directly.  I do not believe simulators will work with
> > "negative" currents in the tables - meaning doing the
> > opposite of what is expected or creating a negative
> > impedance buffer that acts opposite of a conventional buffer.
> >
> > Opposite polarity I-V tables will probably be flagged
> > as an error by the ibischk3 parser.  Therefore it would
> > not be legal.
> >
> > I cannot think of any clever alternative with IBIS
> > Version 3.2.
> >
> > However, I believe the new macro language under discussion by
> > the IBIS Futures Working Group will be able to handle this
> > situation (this would be a good test case).
> >
> > Bob Ross
> > Mentor Graphics
> >
> > "D.C. Sessions" wrote:
> > >
> > > Need to double-check this.  It seems that there are standard
> > > logic components which, on output, sense the output voltage
> > > and adjust drive current in response.
> > >
> > > No, I don't mean bus hold.  These parts drive LOW hard when
> > > the output voltage is above a certain threshold and cut the
> > > drive when the output is below that threshold.  Rising-edge
> > > drive is similar.
> > >
> > > Yes, I know that this is of dubious stability.  Nobody asked
> > > me if they should do it this way, but the manufacturers want
> > > to make this a JEDEC standard and I'm trying to help them
> > > put together an IBIS model.  Which, as far as I can tell, is
> > > possible using
> > >
> > > Submodel_type   Bus_hold
> > >
> > > and having negative currents in the [Pulldown] and [Pullup]
> > > tables.
> > >
> > > 1) Have I missed a better way to do this?
> > > 2) Will this be legal?
> > > 3) Will this break EDA tools?
> > >
> > > --
> > > D. C. Sessions
> > > ibis@lumbercartel.com



 
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To: <zanella_fabrizio@emc.com>
Cc: <ibis-users@eda.org>, <bob_ross@mentorg.com>, <ibis@lumbercartel.com>
Subject: RE: Drive-on-demand
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Fabrizio,

The "Drive-on-Demand" is a circuit Philips uses in the LVT and ALVT BiCMOS families, and we actually call it Current-on-Demand.  It differs from the dual impedance outputs found in AVC logic.

The Current-on-Demand (COD) circuit is connected to the output node.  During a HIGH to LOW transition, multiple parallel NPN transistors pull down the output.  The COD is set to trip at roughly 1.4V.  When the output reaches that threshold, the COD 
throttles down the base drive to the NPNs to soften the final transition.  The I/V curve looks like a conventional bipolar curve instead of an AVC curve that has two impedance zones.

Regards,

Mike Magdaluyo
Logic Products Group
Philips Semiconductors




zanella_fabrizio@emc.com on 09/07/2000 06:26:05 AM
To:	bob_ross@mentorg.com@SMTP
cc:	ibis-users@eda.org@SMTP 
Subject:	RE: Drive-on-demand
Classification:	Restricted
Bob, DC, are you referring to the double drive devices like AVC logic, which
has fast drive in the 20-80% region and then softens the drive at the
corners?  This is a technology we've wanted to evaluate for some time, but
the IBIS standard does not support it yet.
Regards,
Fabrizio Zanella
EMC corporation
fzanella@emc.com

-----Original Message-----
From: Bob Ross [mailto:bob_ross@mentorg.com]
Sent: Thursday, August 31, 2000 9:24 PM
To: ibis@lumbercartel.com
Cc: ibis-users@eda.org
Subject: Re: Drive-on-demand


D.C.:

Based on your description, I do not believe Bus_hold will work
directly.  I do not believe simulators will work with
"negative" currents in the tables - meaning doing the
opposite of what is expected or creating a negative
impedance buffer that acts opposite of a conventional buffer.

Opposite polarity I-V tables will probably be flagged
as an error by the ibischk3 parser.  Therefore it would
not be legal.

I cannot think of any clever alternative with IBIS
Version 3.2.

However, I believe the new macro language under discussion by
the IBIS Futures Working Group will be able to handle this
situation (this would be a good test case).

Bob Ross
Mentor Graphics



"D.C. Sessions" wrote:
>
> Need to double-check this.  It seems that there are standard
> logic components which, on output, sense the output voltage
> and adjust drive current in response.
>
> No, I don't mean bus hold.  These parts drive LOW hard when
> the output voltage is above a certain threshold and cut the
> drive when the output is below that threshold.  Rising-edge
> drive is similar.
>
> Yes, I know that this is of dubious stability.  Nobody asked
> me if they should do it this way, but the manufacturers want
> to make this a JEDEC standard and I'm trying to help them
> put together an IBIS model.  Which, as far as I can tell, is
> possible using
>
> Submodel_type   Bus_hold
>
> and having negative currents in the [Pulldown] and [Pullup]
> tables.
>
> 1) Have I missed a better way to do this?
> 2) Will this be legal?
> 3) Will this break EDA tools?
>
> --
> D. C. Sessions
> ibis@lumbercartel.com



 
From owner-ibis Thu Sep  7 15:32:43 2000
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To IBIS Participants:

Here is the Agenda for the IBIS Summit Meeting.  We do expect
interactive discussions and some possible Ad Hoc presentations
to fill out the day.

If you plan to come, but have not notified anyone, please let
Kathy Breda know to help us plan the refreshment and free lunch
participation.  E-mail is breda@nesa.com.

I am looking forward to seeing you in Worcester and having a
productive meeting.

Bob Ross
Mentor Graphics

************************************************************

I B I S   S U M M I T   M E E T I N G   A G E N D A

Time/Date:      8:30 AM - 5:00 PM, Thursday, September 14, 2000

Location:       The Crowne Plaza Hotel
                10 Lincoln Square
                Worcester, Massachusetts
                Tel:  (508) 791-1600
                Fax:  (508) 791-1796

Content:        IBIS Presentations and Discussions

Purpose:        Solicit and Exchange IBIS Model Related Information and
                Ideas.

Sponsors:       Cadence Design Systems
                Hyperlynx
                Mentor Graphics     
                North East Systems Associates, Inc.

PCB Conference: September 11-15, 2000
East            Worcester's Centrum Centre
                Worcester, Massachusetts
                See http://www.pcbeast.com/ for more information.

************************************************************

IBIS SUMMIT AGENDA

8:30 AM   MORNING REFRESHMENTS

9:00 AM   Introductions and Business
          Bob Ross, Mentor Graphics
          Ed Sayre North East Systems Associates (NESA)

9:15 AM   IBIS in Transition
          Bob Ross, Mentor Graphics

9:30 AM   IBIS and SI at 3Com
          Roy Leventhal, 3Com
          Presented by Mike LaBonte, Cadence Design Systems

10:00 AM  IBIS Connector Specification
          Kellee Crisafulli, HyperLynx, Gus Panella, Molex

10:30 AM  BREAK AND REFRESHMENTS

10:45 AM  IBIS Swath Matrix Expansion
          Bob Ross, Mentor Graphics

11:15 AM  Roundtable - IBIS Connector Specification
          Kellee Crisafulli, HyperLynx, Gus Panella, Molex

12:00 PM  LUNCH (Free to Attendees from the Sponsors)

1:00 PM   HTML Formated IBIS Model
          Mike LaBonte, Cadence Design Systems

1:15 PM   IBIS Futures Overview
          Mike LaBonte, Cadence Design Systems

1:45 PM   Code Based Models
          Tudor Secasiu, Intel

2:15 PM   An Escape Hatch for Leading Edge Simulation
          Will Hobbs, Intel

2:45 PM   BREAK AND REFRESHMENTS

3:00 PM   IBIS-X Syntax Format Issues
          Arpad Muranyi, Intel

3:15 PM   Roundtable - IBIS Futures Overview
          Mike LaBonte, Cadence Design Systems 

4:15 PM   Roundtable - Other Topics
          Bob Ross, Mentor Graphics, Ed Sayre, NESA

5:00 PM   FINAL BUSINESS AND ADJOURN

****************************************************************************
 
From owner-ibis Thu Sep  7 19:55:33 2000
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From: Keitarou Yamagishi <yamagi@isl.melco.co.jp>
To: ibis@eda.org, ibis-users@eda.org
Cc: yamagi@isl.melco.co.jp
Subject: IBIS suitability for over GHz waveform simulation

Hi,

I've gotten an IBIS model for 1.2Gbps serial data tranceiver IC, which
means that the 1st order frequency element is GHz class. But is IBIS
itself suitable for over GHz transmission waveform simulation? I think
that, for example, package loss element or frequency responsibility of
transister is not enough reflected.

How dou you think?

Thanks.

_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/
_/                           $B!!!!(J                       _/
_/       /\       Keitarou Yamagishi (Senior Engineer)  _/
_/      /  \      Mitsubishi Electric Corporation       _/
_/      \  /      Information Technology R&D Center     _/
_/       \/       5-1-1 Ofuna, Kamakura,                _/
_/   /~~~/\~~~\   Kanagawa 247-8501 Japan               _/
_/  /   /  \   \  Email$B!'(Jyamagi@isl.melco.co.jp         _/
_/  ~~~~    ~~~~                                        _/
_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/
 
From owner-ibis Fri Sep  8 06:11:58 2000
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From: "Sylvain Kubler" <skubl@hotmail.com>
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Subject: Questions
Date: Fri, 08 Sep 2000 13:09:10 GMT
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Hello,



I'm a user from Ibis Model.

I hope you will  be able to answer to me: Thanks to try it.


Questions about the IBIS2SPICE Converter ( from intusoft ).


- For which Ibis model's version is aimed the converter?

- Is it true that it's working ONLY with Ibis model version 1.1?

But I 've noticed that most of the Ibis model is writing in version 2.1!

Are you developing a version2.1 TO version 1.1 ?
If not, how I have to proceed to make the converter work with a Ibis model 
version 2.1?

-Could you give me the instructions on how to properly convert IBIS models 
for accurate signal integrity simulation.


Thanks for yours answers.


Best regards,

Sylvain
_________________________________________________________________________
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From owner-ibis Fri Sep  8 06:21:25 2000
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Subject: Re:  IBIS suitability for over GHz waveform simulation
To: yamagi@isl.melco.co.jp
Cc: ibis-users@vhdl.org
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Yamagishi-san,

I was a part of a committee that investigated IBIS accuracy for about one
year.  Although I have not compared behavioral and structural
(transistor-level) simulations at 1.2 gb/s, I do have some opinions that I
think still apply at high data rates.  The question you're asking could be
framed as follows:  "Is a behavioral model accurate at data rates in excess
of 1 gb/s?"  IBIS is really just a format for storing behavioral model
data, and it's up to the EDA vendor to determine how to implement this data
using a behavioral model (which the user usually never sees).

1 gb/s implies that you need timing accuracy on the order of 10-50 ps.  I
think that you can achieve this kind of accuracy using a behavioral model
if your driver and receiver circuits are well-behaved!  What I mean by
well-behaved is that the driver uses a traditional push-pull output stage
without any fancy feedback or edge-rate control circuitry and the receiver
can be modeled as a capacitance.  Now, IBIS has provisions for model data
that describe more complex circuitry such as multi-staged drivers and
receivers that use dynamic clamping.  However, these circuits require more
modeling effort and implementation support in the simulator.  I personally
don't have much experience with these features, so I can't comment in
detail.  I'm not saying that 10-50 ps accuracy is impossible with these
more complex circuits; if it is, it will certainly mean more work.  My main
point is this:  a behavioral simulation can be accurate enough IF the
behavioral model is well-matched to the physical circuit and IF the
modeling engineer spent enough effort developing the model data.

You may or may not be aware of an effort under way in the IBIS committee to
expand the flexibility of IBIS, allowing coverage of even more complex
kinds of I/O circuits.  This effort is known as IBIS-X, and you can learn
about it by attending the IBIS Open Forum conference call.

I think you're correct in your assessment of the importance of packaging
and loss effects at these frequencies.  Given well-behaved drivers and
receivers, package and loss effects may be the more challenging problems
from an accuracy perspective.  I wish you well in your efforts.

p.s.  If you're interested in reviewing the work of our committee, you can
find it on the IBIS web site:  http://www.vhdl.org/pub/ibis/accuracy.  Look
at handbook.pdf.

Sincerely,

Greg Edlund
Advisory Engineer
Electrical Packaging
IBM Server Technology Development
3605 Hwy. 52 N, Dept. HDC
Rochester, MN 55901
gedlund@us.ibm.com
---------------------- Forwarded by Gregory R Edlund/Rochester/IBM on
09/08/2000 07:42 AM ---------------------------





Keitarou Yamagishi <yamagi@isl.melco.co.jp> on 09/07/2000 09:51:41 PM

To:   ibis@eda.org, ibis-users@eda.org
cc:   yamagi@isl.melco.co.jp

Subject:  IBIS suitability for over GHz waveform simulation




Hi,

I've gotten an IBIS model for 1.2Gbps serial data tranceiver IC, which
means that the 1st order frequency element is GHz class. But is IBIS
itself suitable for over GHz transmission waveform simulation? I think
that, for example, package loss element or frequency responsibility of
transister is not enough reflected.

How dou you think?

Thanks.

_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/
_/                           $B!!!!(B                       _/
_/       /\       Keitarou Yamagishi (Senior Engineer)  _/
_/      /  \      Mitsubishi Electric Corporation       _/
_/      \  /      Information Technology R&D Center     _/
_/       \/       5-1-1 Ofuna, Kamakura,                _/
_/   /~~~/\~~~\   Kanagawa 247-8501 Japan               _/
_/  /   /  \   \  Email$B!'(Byamagi@isl.melco.co.jp         _/
_/  ~~~~    ~~~~                                        _/
_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/_/



 
From owner-ibis Fri Sep  8 08:11:34 2000
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From: "Ingraham, Andrew" <Andrew.Ingraham@compaq.com>
To: ibis@eda.org, "'ibis-users'" <ibis-users@eda.org>
Subject: RE: Questions
Date: Fri, 8 Sep 2000 11:08:42 -0400 
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>Are you developing a version2.1 TO version 1.1 ?
>If not, how I have to proceed to make the converter work with a Ibis model 
>version 2.1?

I don't think you need to do that.  It should work with version 2.1 models
just fine.


>-Could you give me the instructions on how to properly convert IBIS models 
>for accurate signal integrity simulation.

Most IBIS models came from SPICE, so you are better off getting the SPICE
models if you can negotiate it.  When you go through a SPICE -> IBIS ->
SPICE process, you will lose accuracy.  Best to stay as close to the source
as possible.

If an IBIS model is all you can get, your results will depend on what
features they put in the IBIS model and on how accurately they made it, and
what your simulator does with all parts of the model.  For example, the
IBIS2SPICE converter ignores V-T curves, and uses only the simplistic R-L-C
package model, the results of which are questionable at higher ramp rates.
You might consider it a "challenge", to augment the IBIS model with (say)
other measurements you have done on real components, or on your experience.

Regards,
Andy

 
From owner-ibis Wed Sep 13 10:11:00 2000
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From: "Bhatia, Rakesh" <RBhatia@PERICOM.com>
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Subject: Any training available?
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I am trying to learn how to generate IBIS models for ICs that we make. Is
anyone aware of any classes that are available in the San Jose area for
learning how to generate Ibis models?

Thanks.
 
From owner-ibis Wed Sep 13 11:56:00 2000
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From: Ken Wu <ken@force10networks.com>
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Subject: ibis input model with termination resistor and voltage
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Hi there,
I have two questions regarding ibis input model:
1)if my input driver contains a built-in termination resistor and a
termination voltage Vtt, can standard ibis model describe the effect of
these components?
As I know, ibis input only contains clamping diode pull-up/pull-down IV
curves and Ccomp.
2)if standard ibis cannot describe these components, is there anyway to add
them in the ibis model?

Thanks in advance for any info.

Ken

 
From owner-ibis Fri Sep 15 10:13:32 2000
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From: "Haller, Robert" <rhaller@cereva.com>
To: "'ibis-users@eda.org'" <ibis-users@eda.org>
Subject: PCI spec question
Date: Fri, 15 Sep 2000 11:44:15 -0400
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First I would like to thank Bob Ross and Ed Sayre for a great job on the
IBIS summit meeting !

My question is how the PCI is specified and how IBIS is specified.
The 3 volts PCI spec has you drive 25 ohms// 10 Pf to gnd (rising ) and
measure at .94 volts
Additionally it has 25 Ohms//10pf to 3.3 volts and measure at 2.0 volts.

The IBIS specification really doesn't appear to have a mechanism to deal
with this (PLease tell me I am wrong).

Do I have to do one set of simulations for rising, change the model then do
another set for falling.
This seem tedious. PLease tell me there is another solution ??

Thanks in advance,
bob

Cereva Networks
3 network drive
Marlboro MA. 01752
Phone: 508-486-9660 X 365
FAX: 508-486-9661
Email: rhaller@cereva.com


 
From owner-ibis Fri Sep 15 10:36:44 2000
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From: "Beal, Weston" <weston_beal@mentorg.com>
To: "'ibis-users@eda.org'" <ibis-users@eda.org>
Subject: RE: ibis input model with termination resistor and voltage
Date: Thu, 14 Sep 2000 11:05:26 -0700
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Ken,

The I-V characteristics of a resistor can easily be added to the [Power
Clamp] table of your input model and set [POWER Clamp Reference] to the
value of Vtt.

Regards,
Weston


+ -----Original Message-----
+ From: Ken Wu [mailto:ken@force10networks.com]
+ Sent: Wednesday, September 13, 2000 11:53 AM
+ To: 'ibis-users@eda.org'
+ Subject: ibis input model with termination resistor and voltage
+ 
+ 
+ Hi there,
+ I have two questions regarding ibis input model:
+ 1)if my input driver contains a built-in termination resistor and a
+ termination voltage Vtt, can standard ibis model describe the 
+ effect of
+ these components?
+ As I know, ibis input only contains clamping diode 
+ pull-up/pull-down IV
+ curves and Ccomp.
+ 2)if standard ibis cannot describe these components, is there 
+ anyway to add
+ them in the ibis model?
+ 
+ Thanks in advance for any info.
+ 
+ Ken
+ 

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<TITLE>RE: ibis input model with termination resistor and =
voltage</TITLE>
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<BODY>

<P><FONT SIZE=3D2>Ken,</FONT>
</P>

<P><FONT SIZE=3D2>The I-V characteristics of a resistor can easily be =
added to the [Power Clamp] table of your input model and set [POWER =
Clamp Reference] to the value of Vtt.</FONT></P>

<P><FONT SIZE=3D2>Regards,</FONT>
<BR><FONT SIZE=3D2>Weston</FONT>
</P>
<BR>

<P><FONT SIZE=3D2>+ -----Original Message-----</FONT>
<BR><FONT SIZE=3D2>+ From: Ken Wu [<A =
HREF=3D"mailto:ken@force10networks.com">mailto:ken@force10networks.com</=
A>]</FONT>
<BR><FONT SIZE=3D2>+ Sent: Wednesday, September 13, 2000 11:53 =
AM</FONT>
<BR><FONT SIZE=3D2>+ To: 'ibis-users@eda.org'</FONT>
<BR><FONT SIZE=3D2>+ Subject: ibis input model with termination =
resistor and voltage</FONT>
<BR><FONT SIZE=3D2>+ </FONT>
<BR><FONT SIZE=3D2>+ </FONT>
<BR><FONT SIZE=3D2>+ Hi there,</FONT>
<BR><FONT SIZE=3D2>+ I have two questions regarding ibis input =
model:</FONT>
<BR><FONT SIZE=3D2>+ 1)if my input driver contains a built-in =
termination resistor and a</FONT>
<BR><FONT SIZE=3D2>+ termination voltage Vtt, can standard ibis model =
describe the </FONT>
<BR><FONT SIZE=3D2>+ effect of</FONT>
<BR><FONT SIZE=3D2>+ these components?</FONT>
<BR><FONT SIZE=3D2>+ As I know, ibis input only contains clamping diode =
</FONT>
<BR><FONT SIZE=3D2>+ pull-up/pull-down IV</FONT>
<BR><FONT SIZE=3D2>+ curves and Ccomp.</FONT>
<BR><FONT SIZE=3D2>+ 2)if standard ibis cannot describe these =
components, is there </FONT>
<BR><FONT SIZE=3D2>+ anyway to add</FONT>
<BR><FONT SIZE=3D2>+ them in the ibis model?</FONT>
<BR><FONT SIZE=3D2>+ </FONT>
<BR><FONT SIZE=3D2>+ Thanks in advance for any info.</FONT>
<BR><FONT SIZE=3D2>+ </FONT>
<BR><FONT SIZE=3D2>+ Ken</FONT>
<BR><FONT SIZE=3D2>+ </FONT>
</P>

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From owner-ibis Fri Sep 15 10:50:50 2000
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From: "Beal, Weston" <weston_beal@mentorg.com>
To: "'ibis-users@eda.org'" <ibis-users@eda.org>
Subject: RE: PCI spec question
Date: Fri, 15 Sep 2000 10:47:48 -0700
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Bob,

I think this is the problem that BIRD 66 starts to cover by putting Vref in
the [model spec].  My feeling is that IBIS needs to be a bit more flexible
and the IC vendors or commitees that specifiy test loads need to try really
hard to use loads that IBIS can describe.  I think that we should extend
BIRD 66 to include Rref and Cref as well.

Regards,
Weston


 + -----Original Message-----
 + From: Haller, Robert [mailto:rhaller@cereva.com]
 + Sent: Friday, September 15, 2000 8:44 AM
 + To: 'ibis-users@eda.org'
 + Subject: PCI spec question
 + 
 + 
 + 	
 + First I would like to thank Bob Ross and Ed Sayre for a 
 + great job on the
 + IBIS summit meeting !
 + 
 + My question is how the PCI is specified and how IBIS is specified.
 + The 3 volts PCI spec has you drive 25 ohms// 10 Pf to gnd 
 + (rising ) and
 + measure at .94 volts
 + Additionally it has 25 Ohms//10pf to 3.3 volts and measure 
 + at 2.0 volts.
 + 
 + The IBIS specification really doesn't appear to have a 
 + mechanism to deal
 + with this (PLease tell me I am wrong).
 + 
 + Do I have to do one set of simulations for rising, change 
 + the model then do
 + another set for falling.
 + This seem tedious. PLease tell me there is another solution ??
 + 
 + Thanks in advance,
 + bob
 + 
 + Cereva Networks
 + 3 network drive
 + Marlboro MA. 01752
 + Phone: 508-486-9660 X 365
 + FAX: 508-486-9661
 + Email: rhaller@cereva.com
 + 
 + 

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<TITLE>RE: PCI spec question</TITLE>
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<P><FONT SIZE=3D2>Bob,</FONT>
</P>

<P><FONT SIZE=3D2>I think this is the problem that BIRD 66 starts to =
cover by putting Vref in the [model spec].&nbsp; My feeling is that =
IBIS needs to be a bit more flexible and the IC vendors or commitees =
that specifiy test loads need to try really hard to use loads that IBIS =
can describe.&nbsp; I think that we should extend BIRD 66 to include =
Rref and Cref as well.</FONT></P>

<P><FONT SIZE=3D2>Regards,</FONT>
<BR><FONT SIZE=3D2>Weston</FONT>
</P>
<BR>

<P><FONT SIZE=3D2>&nbsp;+ -----Original Message-----</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ From: Haller, Robert [<A =
HREF=3D"mailto:rhaller@cereva.com">mailto:rhaller@cereva.com</A>]</FONT>=

<BR><FONT SIZE=3D2>&nbsp;+ Sent: Friday, September 15, 2000 8:44 =
AM</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ To: 'ibis-users@eda.org'</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ Subject: PCI spec question</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ &nbsp;&nbsp;&nbsp;&nbsp; </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ First I would like to thank Bob Ross and Ed =
Sayre for a </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ great job on the</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ IBIS summit meeting !</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ My question is how the PCI is specified and =
how IBIS is specified.</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ The 3 volts PCI spec has you drive 25 ohms// =
10 Pf to gnd </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ (rising ) and</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ measure at .94 volts</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ Additionally it has 25 Ohms//10pf to 3.3 =
volts and measure </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ at 2.0 volts.</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ The IBIS specification really doesn't appear =
to have a </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ mechanism to deal</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ with this (PLease tell me I am =
wrong).</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ Do I have to do one set of simulations for =
rising, change </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ the model then do</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ another set for falling.</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ This seem tedious. PLease tell me there is =
another solution ??</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ Thanks in advance,</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ bob</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ Cereva Networks</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ 3 network drive</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ Marlboro MA. 01752</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ Phone: 508-486-9660 X 365</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ FAX: 508-486-9661</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ Email: rhaller@cereva.com</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ </FONT>
</P>

</BODY>
</HTML>
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From owner-ibis Mon Sep 18 12:43:45 2000
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Date: Mon, 18 Sep 2000 15:43:27 -0400
From: "Betty Luk" <Betty@genesis-microchip.com>
To: <ibis-users@eda.org>
Subject: using s2ibis2
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Hello,

I have 2 questions regarding s2ibis2:

1) In the email sent by Dan Aleksandrowicz on Aug 13, 2000, he said that there is a version of s2ibis sofware that increases the resolution to 4 decimal places.  I recently downloaded s2ibis2 version 1.1 from the IBIS homepage, and the accuracy that I get is 2 decimal places.  Where can I get this fix for the 4 decimal place resolution?

2) I encountered a DC convergence problem when I was using s2ibis2 to generate an IBIS model for a 3-state Output pad (using HSPICE).  So, I manually changed the spice file generated by s2ibis2 for the pulldown curve to sweep from 6.6V to -3.3V in intervals of -0.1V (instead of its default from -3.3V to 6.6V in intervals of 0.1V).  In the resultant .ibs file, I don't think I'm getting the correct pulldown curve with the subtraction of the gnd clamp curve.  Is this because for s2ibis2 to generate the data correctly, the voltage values in the output file have to be increasing?  Any ideas on other workarounds?

Many thanks,

Betty Luk

IC Technology
Genesis Microchip Inc.
165 Commerce Valley Dr. W.
Thornhill, Ont. L3T 7V8
(905) 889-5400 x2256

 
From owner-ibis Tue Sep 19 02:29:43 2000
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From: mark.browne@nokia.com
To: ibis-users@eda.org
Subject: Simulation resolution weirdness
Date: Tue, 19 Sep 2000 12:25:55 +0300
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Hi all,

I am fairly new to using IBIS, so I am hoping that the symptoms that I am
getting will strike a chord with someone out there.

I have run the same simulation several times, changing only the time
resolution each time.  When the resolution is set to 20ps, the results look
fine.  However, at 15ps the resultant waveform is just an increasing
oscillation, and at 10ps it look like a range of mountains.

Obviously I am misusing the method somehow - all I need is for someone to
tell me how.

Any ideas?

Mark Browne
Senior Engineer
Nokia UK Ltd.
 
From owner-ibis Tue Sep 19 05:16:08 2000
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From: "Ingraham, Andrew" <Andrew.Ingraham@compaq.com>
To: "'mark.browne@nokia.com'" <mark.browne@nokia.com>
Cc: "'ibis-users'" <ibis-users@eda.org>
Subject: RE: Simulation resolution weirdness
Date: Tue, 19 Sep 2000 08:13:13 -0400
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There are limitations and imperfections in all circuit simulators.  (You
didn't mention which simulator program you are using, which might help
others to help you.)  Some programs are better than others.  These problems
can be finicky and difficult to avoid.

Yours sounds like a "numerical oscillation" problem, which occasionally
happens in SPICE or SPICE-like simulators.  In your case, it apparently
happens to be made worse by certain time resolution settings.  There are
likely some controls (such as the Method=Gear vs. Trap setting in SPICE)
that may help here.

Regards,
Andy


> ----------
> From: 	mark.browne@nokia.com[SMTP:mark.browne@nokia.com]
> Sent: 	Tue, 19 September 2000, 05:25
> To: 	ibis-users@eda.org
> Subject: 	Simulation resolution weirdness
> 
> Hi all,
> 
> I am fairly new to using IBIS, so I am hoping that the symptoms that I am
> getting will strike a chord with someone out there.
> 
> I have run the same simulation several times, changing only the time
> resolution each time.  When the resolution is set to 20ps, the results
> look
> fine.  However, at 15ps the resultant waveform is just an increasing
> oscillation, and at 10ps it look like a range of mountains.
> 
> Obviously I am misusing the method somehow - all I need is for someone to
> tell me how.
> 
> Any ideas?
> 
> Mark Browne
> Senior Engineer
> Nokia UK Ltd.
> 
 
From owner-ibis Tue Sep 19 06:53:43 2000
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From: mark.browne@nokia.com
To: ibis-users@eda.org
Cc: Andrew.Ingraham@compaq.com
Subject: RE: Simulation resolution weirdness
Date: Tue, 19 Sep 2000 16:50:38 +0300
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I am using Interconnectix.  Do the tools not generally work in the same way?

Regards,
Mark

> -----Original Message-----
> From: EXT Ingraham, Andrew [mailto:Andrew.Ingraham@compaq.com]
> Sent: 19 September 2000 13:13
> To: 'mark.browne@nokia.com'
> Cc: 'ibis-users'
> Subject: RE: Simulation resolution weirdness
> 
> 
> There are limitations and imperfections in all circuit 
> simulators.  (You
> didn't mention which simulator program you are using, which might help
> others to help you.)  Some programs are better than others.  
> These problems
> can be finicky and difficult to avoid.
> 
> Yours sounds like a "numerical oscillation" problem, which 
> occasionally
> happens in SPICE or SPICE-like simulators.  In your case, it 
> apparently
> happens to be made worse by certain time resolution settings. 
>  There are
> likely some controls (such as the Method=Gear vs. Trap 
> setting in SPICE)
> that may help here.
> 
> Regards,
> Andy
> 
> 
> > ----------
> > From: 	mark.browne@nokia.com[SMTP:mark.browne@nokia.com]
> > Sent: 	Tue, 19 September 2000, 05:25
> > To: 	ibis-users@eda.org
> > Subject: 	Simulation resolution weirdness
> > 
> > Hi all,
> > 
> > I am fairly new to using IBIS, so I am hoping that the 
> symptoms that I am
> > getting will strike a chord with someone out there.
> > 
> > I have run the same simulation several times, changing only the time
> > resolution each time.  When the resolution is set to 20ps, 
> the results
> > look
> > fine.  However, at 15ps the resultant waveform is just an increasing
> > oscillation, and at 10ps it look like a range of mountains.
> > 
> > Obviously I am misusing the method somehow - all I need is 
> for someone to
> > tell me how.
> > 
> > Any ideas?
> > 
> > Mark Browne
> > Senior Engineer
> > Nokia UK Ltd.
> > 
> 
 
From owner-ibis Tue Sep 19 09:14:47 2000
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From: "Beal, Weston" <weston_beal@mentorg.com>
To: ibis-users@eda.org
Subject: RE: Simulation resolution weirdness
Date: Tue, 19 Sep 2000 09:11:47 -0700
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Mark,

this often happens when the I-V curves don't have enough data points.  If
the slope of the lines connecting the points changes too much, it is hard
for the simulator to follow.  It is a kind of numerical noise similar to
what happens in SPICE.  If you really need a fine time resolution, you might
ask the vendor for a model with finer detail, or you might add a few points
into the tables to smooth out the corners.

Regards,
Weston


 + -----Original Message-----
 + From: mark.browne@nokia.com [mailto:mark.browne@nokia.com]
 + Sent: Tuesday, September 19, 2000 2:26 AM
 + To: ibis-users@eda.org
 + Subject: Simulation resolution weirdness
 + 
 + 
 + Hi all,
 + 
 + I am fairly new to using IBIS, so I am hoping that the 
 + symptoms that I am
 + getting will strike a chord with someone out there.
 + 
 + I have run the same simulation several times, changing only the time
 + resolution each time.  When the resolution is set to 20ps, 
 + the results look
 + fine.  However, at 15ps the resultant waveform is just an increasing
 + oscillation, and at 10ps it look like a range of mountains.
 + 
 + Obviously I am misusing the method somehow - all I need is 
 + for someone to
 + tell me how.
 + 
 + Any ideas?
 + 
 + Mark Browne
 + Senior Engineer
 + Nokia UK Ltd.
 + 

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	charset="ISO-8859-1"
Content-Transfer-Encoding: quoted-printable

<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 3.2//EN">
<HTML>
<HEAD>
<META HTTP-EQUIV=3D"Content-Type" CONTENT=3D"text/html; =
charset=3DISO-8859-1">
<META NAME=3D"Generator" CONTENT=3D"MS Exchange Server version =
5.5.2652.35">
<TITLE>RE: Simulation resolution weirdness</TITLE>
</HEAD>
<BODY>

<P><FONT SIZE=3D2>Mark,</FONT>
</P>

<P><FONT SIZE=3D2>this often happens when the I-V curves don't have =
enough data points.&nbsp; If the slope of the lines connecting the =
points changes too much, it is hard for the simulator to follow.&nbsp; =
It is a kind of numerical noise similar to what happens in SPICE.&nbsp; =
If you really need a fine time resolution, you might ask the vendor for =
a model with finer detail, or you might add a few points into the =
tables to smooth out the corners.</FONT></P>

<P><FONT SIZE=3D2>Regards,</FONT>
<BR><FONT SIZE=3D2>Weston</FONT>
</P>
<BR>

<P><FONT SIZE=3D2>&nbsp;+ -----Original Message-----</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ From: mark.browne@nokia.com [<A =
HREF=3D"mailto:mark.browne@nokia.com">mailto:mark.browne@nokia.com</A>]<=
/FONT>
<BR><FONT SIZE=3D2>&nbsp;+ Sent: Tuesday, September 19, 2000 2:26 =
AM</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ To: ibis-users@eda.org</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ Subject: Simulation resolution =
weirdness</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ Hi all,</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ I am fairly new to using IBIS, so I am =
hoping that the </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ symptoms that I am</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ getting will strike a chord with someone out =
there.</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ I have run the same simulation several =
times, changing only the time</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ resolution each time.&nbsp; When the =
resolution is set to 20ps, </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ the results look</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ fine.&nbsp; However, at 15ps the resultant =
waveform is just an increasing</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ oscillation, and at 10ps it look like a =
range of mountains.</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ Obviously I am misusing the method somehow - =
all I need is </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ for someone to</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ tell me how.</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ Any ideas?</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ Mark Browne</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ Senior Engineer</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ Nokia UK Ltd.</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ </FONT>
</P>

</BODY>
</HTML>
------_=_NextPart_001_01C02254.4F8FDF40--
 
From owner-ibis Tue Sep 19 10:23:52 2000
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From: Aubrey_Sparkman@Dell.com
To: mark.browne@nokia.com, ibis-users@eda.org
Cc: Andrew.Ingraham@compaq.com
Subject: RE: Simulation resolution weirdness
Date: Tue, 19 Sep 2000 12:19:55 -0500
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Mark,
You should take a close look at the IBIS data you were given.  Check the
ramp data.  I recently had a case of an oscillation like you describe that
went away after I got an updated and corrected IBIS file.  Your supplier can
put numbers in the file that will cause it to pass the ibis checker, but not
the "spice" or human checker.

Aubrey Sparkman
Signal Integrity
Aubrey_Sparkman@Dell.com
(512) 723-3592


> -----Original Message-----
> From: mark.browne@nokia.com [mailto:mark.browne@nokia.com]
> Sent: Tuesday, September 19, 2000 8:51 AM
> To: ibis-users@eda.org
> Cc: Andrew.Ingraham@compaq.com
> Subject: RE: Simulation resolution weirdness
> 
> 
> I am using Interconnectix.  Do the tools not generally work 
> in the same way?
> 
> Regards,
> Mark
> 
> > -----Original Message-----
> > From: EXT Ingraham, Andrew [mailto:Andrew.Ingraham@compaq.com]
> > Sent: 19 September 2000 13:13
> > To: 'mark.browne@nokia.com'
> > Cc: 'ibis-users'
> > Subject: RE: Simulation resolution weirdness
> > 
> > 
> > There are limitations and imperfections in all circuit 
> > simulators.  (You
> > didn't mention which simulator program you are using, which 
> might help
> > others to help you.)  Some programs are better than others.  
> > These problems
> > can be finicky and difficult to avoid.
> > 
> > Yours sounds like a "numerical oscillation" problem, which 
> > occasionally
> > happens in SPICE or SPICE-like simulators.  In your case, it 
> > apparently
> > happens to be made worse by certain time resolution settings. 
> >  There are
> > likely some controls (such as the Method=Gear vs. Trap 
> > setting in SPICE)
> > that may help here.
> > 
> > Regards,
> > Andy
> > 
> > 
> > > ----------
> > > From: 	mark.browne@nokia.com[SMTP:mark.browne@nokia.com]
> > > Sent: 	Tue, 19 September 2000, 05:25
> > > To: 	ibis-users@eda.org
> > > Subject: 	Simulation resolution weirdness
> > > 
> > > Hi all,
> > > 
> > > I am fairly new to using IBIS, so I am hoping that the 
> > symptoms that I am
> > > getting will strike a chord with someone out there.
> > > 
> > > I have run the same simulation several times, changing 
> only the time
> > > resolution each time.  When the resolution is set to 20ps, 
> > the results
> > > look
> > > fine.  However, at 15ps the resultant waveform is just an 
> increasing
> > > oscillation, and at 10ps it look like a range of mountains.
> > > 
> > > Obviously I am misusing the method somehow - all I need is 
> > for someone to
> > > tell me how.
> > > 
> > > Any ideas?
> > > 
> > > Mark Browne
> > > Senior Engineer
> > > Nokia UK Ltd.
> > > 
> > 
> 


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From owner-ibis Tue Sep 19 14:28:34 2000
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From: "Betty Luk" <Betty@genesis-microchip.com>
To: <ibis-users@eda.org>
Subject: usefullness of V/T curves
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Hello IBIS users,

I just started trying to create an IBIS model for a CMOS 3-State output pad.  I am not an expert on modelling or signal integrity, so I would greatly appreciate any help and feedback.

I have a question regarding the usefullness of an IBIS model:

In the IBIS Cookbook, it recommends that 4 V/T curves be generated for a standard CMOS buffer, using a 50 Ohm load connected to GND or Vcc.  When using the IBIS model in HSPICE, there is an optional parameter that can be specified (ramp_rwf) to indicate that the [Rising waveform] and/or [Falling waveform] data is to be used instead of the [Ramp] ratio.

Specifying the [Rising waveform] and [Falling waveform] should provide better accuracy for the IBIS model because in reality the output switching of the device is not a linear ramp.

My confusion is, how is this data useful for the customer, when the load is not a 50 Ohm resistor, but, say capacitive?  How can the data provided by the [Rising waveform] and [Falling waveform] in the IBIS model give accurate simulation results, when the loading on the device has been changed?

Thank you very much,

Betty Luk

IC Technology
Genesis Microchip Inc.
165 Commerce Valley Dr. W.
Thornhill, Ont. L3T 7V8
(905) 889-5400 x2256

 
From owner-ibis Tue Sep 19 15:07:25 2000
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From: "Chris Rokusek" <crokusek@innoveda.com>
To: <ibis-users@eda.org>
Subject: RE: usefullness of V/T curves
Date: Tue, 19 Sep 2000 15:10:50 -0700
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Betty,

Can't comment specifically on the HSPICE implementation, but the intended
approach is that the V/T waveforms be used to determine the dynamic thevenin
equivalent(s) of the driver (not just current or voltage which sounds like
what you're thinking).  This dynamic thevenin equivalent (source impedance
and voltage) is assumed not to change significantly even as the actual load
used in practice will.  Four V/T curves are required in order to cover the
all loads that will be seen on the board as well as distribute currents
properly between GND and PWR.

Your IBIS model (assuming standard technology) with the 4 recommended V/T
curves should get the right answer for all practical loads.

Chris Rokusek
Innoveda


> -----Original Message-----
> From: Betty Luk [mailto:Betty@genesis-microchip.com]
> Sent: Tuesday, September 19, 2000 2:28 PM
> To: ibis-users@eda.org
> Subject: usefullness of V/T curves
>
>
> Hello IBIS users,
>
> I just started trying to create an IBIS model for a CMOS 3-State
> output pad.  I am not an expert on modelling or signal integrity,
> so I would greatly appreciate any help and feedback.
>
> I have a question regarding the usefullness of an IBIS model:
>
> In the IBIS Cookbook, it recommends that 4 V/T curves be
> generated for a standard CMOS buffer, using a 50 Ohm load
> connected to GND or Vcc.  When using the IBIS model in HSPICE,
> there is an optional parameter that can be specified (ramp_rwf)
> to indicate that the [Rising waveform] and/or [Falling waveform]
> data is to be used instead of the [Ramp] ratio.
>
> Specifying the [Rising waveform] and [Falling waveform] should
> provide better accuracy for the IBIS model because in reality the
> output switching of the device is not a linear ramp.
>
> My confusion is, how is this data useful for the customer, when
> the load is not a 50 Ohm resistor, but, say capacitive?  How can
> the data provided by the [Rising waveform] and [Falling waveform]
> in the IBIS model give accurate simulation results, when the
> loading on the device has been changed?
>
> Thank you very much,
>
> Betty Luk
>
> IC Technology
> Genesis Microchip Inc.
> 165 Commerce Valley Dr. W.
> Thornhill, Ont. L3T 7V8
> (905) 889-5400 x2256
>
>

 
From owner-ibis Tue Sep 19 16:39:27 2000
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Chris Rokusek wrote:

> Betty,
>
> Can't comment specifically on the HSPICE implementation

V/T tables work quite well in HSPICE.  They correlate to the
original spice as well as other behavorial simulators, limited
only by the number of waveform points.

regards,

scott


--
Scott McMorrow
Principal Engineer
SiQual, Signal Quality Engineering
18735 SW Boones Ferry Road
Tualatin, OR  97062-3090
(503) 885-1231
http://www.siqual.com



>
>
> > -----Original Message-----
> > From: Betty Luk [mailto:Betty@genesis-microchip.com]
> > Sent: Tuesday, September 19, 2000 2:28 PM
> > To: ibis-users@eda.org
> > Subject: usefullness of V/T curves
> >
> >
> > Hello IBIS users,
> >
> > I just started trying to create an IBIS model for a CMOS 3-State
> > output pad.  I am not an expert on modelling or signal integrity,
> > so I would greatly appreciate any help and feedback.
> >
> > I have a question regarding the usefullness of an IBIS model:
> >
> > In the IBIS Cookbook, it recommends that 4 V/T curves be
> > generated for a standard CMOS buffer, using a 50 Ohm load
> > connected to GND or Vcc.  When using the IBIS model in HSPICE,
> > there is an optional parameter that can be specified (ramp_rwf)
> > to indicate that the [Rising waveform] and/or [Falling waveform]
> > data is to be used instead of the [Ramp] ratio.
> >
> > Specifying the [Rising waveform] and [Falling waveform] should
> > provide better accuracy for the IBIS model because in reality the
> > output switching of the device is not a linear ramp.
> >
> > My confusion is, how is this data useful for the customer, when
> > the load is not a 50 Ohm resistor, but, say capacitive?  How can
> > the data provided by the [Rising waveform] and [Falling waveform]
> > in the IBIS model give accurate simulation results, when the
> > loading on the device has been changed?
> >
> > Thank you very much,
> >
> > Betty Luk
> >
> > IC Technology
> > Genesis Microchip Inc.
> > 165 Commerce Valley Dr. W.
> > Thornhill, Ont. L3T 7V8
> > (905) 889-5400 x2256
> >
> >

 
From owner-ibis Tue Sep 19 18:08:40 2000
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Hi,

I'm modeling differential buffers (diff-in, diff-out).
But I'm not sure how should I set the input and output
terminal.

For the I/V curves: should I let OUTP(or INP) go from 
-VDD/2 to VDD and OUTN (or INN) go from VDD/2 to -VDD? 
Or connect OUTN(or INN) to GND and sweep OUTP(or INP)
from -VDD to 2*VDD. For the first case, how should I
make the table.

For the timing data: should I take the waveform of one
output, or take the differences of OUTP and OUTN? When
we document the Rload, is it the sum of both terminal?

Any document or examples somewhere?

Thanks,
Cathy
 
From owner-ibis Tue Sep 19 22:33:48 2000
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Date: Tue, 19 Sep 2000 22:30:57 -0700 (PDT)
From: Syed Huq <shuq@cisco.com>
Reply-To: Syed Huq <shuq@cisco.com>
Subject: Re: using s2ibis2
To: ibis-users@eda.org, Betty@genesis-microchip.com
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Betty, 

Not sure if you got any responses to your questions. My 2cents below:

> Hello,
> 
> I have 2 questions regarding s2ibis2:
> 
> 1) In the email sent by Dan Aleksandrowicz on Aug 13, 2000, he said that there 
is a version of s2ibis sofware that increases the resolution to 4 decimal 
places.  I recently downloaded s2ibis2 version 1.1 from the IBIS homepage, and 
the accuracy that I get is 2 decimal places.  Where can I get this fix for the 4 
decimal place resolution?

You can find this 'fix' version at:
http://www.eda.org/pub/ibis/s2ibis/s2ibis2_v1.1/

Download the file called: s2ibis2_fix.tar.Z
Read the '00readme.txt' file for details after uncompressing and untar'ing.

> 
> 2) I encountered a DC convergence problem when I was using s2ibis2 to generate 
an IBIS model for a 3-state Output pad (using HSPICE).  So, I manually changed 
the spice file generated by s2ibis2 for the pulldown curve to sweep from 6.6V to 
-3.3V in intervals of -0.1V (instead of its default from -3.3V to 6.6V in 
intervals of 0.1V).  In the resultant .ibs file, I don't think I'm getting the 
correct pulldown curve with the subtraction of the gnd clamp curve.  Is this 
because for s2ibis2 to generate the data correctly, the voltage values in the 
output file have to be increasing?  Any ideas on other workarounds?
> 
> Many thanks,

The pulldown curve from s2ibis2 does not subtract the gnd clamp. This is very 
visible if you plot the data points. I am unable to comment further since I do 
not know how your generated .ibs file looks like. Sometimes, I would reduce the 
sweep range to get away from convergence issues. Then I could extrapolate the 
end data points to the IBIS specified ranges(this is a valid approach).

Regards, 
Syed
Cisco Systems, Inc

 
From owner-ibis Wed Sep 20 12:53:02 2000
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Message-ID: <10C8636AE359D4119118009027AE9987098D75@FMSMSX34>
From: "Muranyi, Arpad" <arpad.muranyi@intel.com>
To: "'Cathy Xu'" <cx@design.mxim.com>, ibis-users@eda.org
Subject: RE: questions about differential buffers
Date: Wed, 20 Sep 2000 12:47:53 -0700
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Cathy,

I hope the PowerPoint attachment will get trough to you.
I am sending you two pages from my IBIS modeling presentation
which hopefully answers your questions.

Arpad
=======================================================

-----Original Message-----
From: Cathy Xu [mailto:cx@design.mxim.com]
Sent: Tuesday, September 19, 2000 6:07 PM
To: ibis-users@eda.org
Cc: cx@design.mxim.com
Subject: questions about differential buffers


Hi,

I'm modeling differential buffers (diff-in, diff-out).
But I'm not sure how should I set the input and output
terminal.

For the I/V curves: should I let OUTP(or INP) go from 
-VDD/2 to VDD and OUTN (or INN) go from VDD/2 to -VDD? 
Or connect OUTN(or INN) to GND and sweep OUTP(or INP)
from -VDD to 2*VDD. For the first case, how should I
make the table.

For the timing data: should I take the waveform of one
output, or take the differences of OUTP and OUTN? When
we document the Rload, is it the sum of both terminal?

Any document or examples somewhere?

Thanks,
Cathy


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AA==

------_=_NextPart_000_01C0233B.AA7DD5F0--

 
From owner-ibis Wed Sep 20 14:02:17 2000
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Date: Wed, 20 Sep 2000 17:02:33 -0400
From: "Betty Luk" <Betty@genesis-microchip.com>
To: <shuq@cisco.com>, <ibis-users@eda.org>
Subject: Re: using s2ibis2
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--=_5D05A0E0.8DEC823E
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Hello Syed,

Thank you for your responses.

>>> Syed Huq <shuq@cisco.com> 09/20/00 01:30AM >>>
>Betty,=20

>Not sure if you got any responses to your questions. My 2cents below:

>> 2) I encountered a DC convergence problem when I was using s2ibis2 to =
generate=20
an IBIS model for a 3-state Output pad (using HSPICE).  So, I manually =
changed=20
the spice file generated by s2ibis2 for the pulldown curve to sweep from =
6.6V to=20
-3.3V in intervals of -0.1V (instead of its default from -3.3V to 6.6V =
in=20
intervals of 0.1V).  In the resultant .ibs file, I don't think I'm getting =
the=20
correct pulldown curve with the subtraction of the gnd clamp curve.  Is =
this=20
because for s2ibis2 to generate the data correctly, the voltage values in =
the=20
output file have to be increasing?  Any ideas on other workarounds?
>>=20
>> Many thanks,

>The pulldown curve from s2ibis2 does not subtract the gnd clamp. This is =
very=20
visible if you plot the data points. I am unable to comment further since =
I do=20
not know how your generated .ibs file looks like. Sometimes, I would =
reduce the=20
sweep range to get away from convergence issues. Then I could extrapolate =
the=20
end data points to the IBIS specified ranges(this is a valid approach).

I have attached my .ibs file.  As a "trial", I have not included any =
package parasitics or c_comp.  I changed the sweep range from -3.3V - 6.6V =
to -2.7 - 6.6V to clear the convergence issue in the files pdtout.spi and =
ddtout.spi ("out" being the name of my output pin).  The file pdtout.spi =
specifies the typical pulldown curve spice file, and the file ddtout.spi =
specifies the pulldown curve with output disabled spice file.  (The =
[Ground clamp] curve is generated by another file, gctout.spi.)

It seems to me when I look at the resultant data in pdtout.out, ddtout.out =
and in the .ibs file under keyword [Pulldown], the subtraction was done by =
s2ibis2.  I have included excerpts from those files at the end of this =
message.  If s2ibis2 does not do the "subtraction", then wouldn't the =
simulator be "double-counting" the clamp curves when it's using the IBIS =
model? (Since it is stated in the IBIS specification that it is assumed =
the simulator will sum the clamp curves with the appropriate pullup or =
pulldown curves when the buffer is driving high or low.)

What method do you use to extrapolate the end data points?

Many thanks,
Betty Luk

****** file excerpt: pdtout.out
        volt    current                       vouts2i    -2.7000e+00    =
1.664e-01    -2.6000e+00    1.598e-01    -2.5000e+00    1.531e-01    =
-2.4000e+00    1.464e-01    -2.3000e+00    1.396e-01    -2.2000e+00    =
1.327e-01    -2.1000e+00    1.258e-01    -2.0000e+00    1.188e-01    =
-1.9000e+00    1.118e-01    -1.8000e+00    1.047e-01    -1.7000e+00    =
9.760e-02    -1.6000e+00    9.048e-02    -1.5000e+00    8.334e-02    =
-1.4000e+00    7.622e-02    -1.3000e+00    6.914e-02    -1.2000e+00    =
6.210e-02    -1.1000e+00    5.516e-02    -1.0000e+00    4.834e-02    =
-9.0000e-01    4.169e-02    -8.0000e-01    3.529e-02    -7.0000e-01    =
2.921e-02    -6.0000e-01    2.359e-02    -5.0000e-01    1.861e-02    =
-4.0000e-01    1.451e-02    -3.0000e-01    1.083e-02    -2.0000e-01    =
7.221e-03    -1.0000e-01    3.611e-03       0.          1.091e-10     =
1.0000e-01   -3.535e-03     2.0000e-01   -6.921e-03     3.0000e-01   =
-1.016e-02     4.0000e-01   -1.324e-02     5.0000e-01   -1.617e-02     =
6.0000e-01   -1.895e-02     7.0000e-01   -2.158e-02     8.0000e-01   =
-2.405e-02     9.0000e-01   -2.636e-02     1.0000e+00   -2.851e-02     =
1.1000e+00   -3.050e-02     1.2000e+00   -3.233e-02     1.3000e+00   =
-3.400e-02     1.4000e+00   -3.550e-02     1.5000e+00   -3.683e-02     =
1.6000e+00   -3.797e-02     1.7000e+00   -3.890e-02     1.8000e+00   =
-3.961e-02     1.9000e+00   -4.011e-02     2.0000e+00   -4.046e-02     =
2.1000e+00   -4.071e-02     2.2000e+00   -4.090e-02     2.3000e+00   =
-4.104e-02     2.4000e+00   -4.115e-02     2.5000e+00   -4.125e-02     =
2.6000e+00   -4.132e-02     2.7000e+00   -4.139e-02     2.8000e+00   =
-4.145e-02     2.9000e+00   -4.150e-02     3.0000e+00   -4.154e-02     =
3.1000e+00   -4.158e-02     3.2000e+00   -4.162e-02     3.3000e+00   =
-4.166e-02  =20

****** file excerpt: ddtout.out
        volt    current                       vouts2i    -2.7000e+00    =
1.215e-01    -2.6000e+00    1.154e-01    -2.5000e+00    1.093e-01    =
-2.4000e+00    1.031e-01    -2.3000e+00    9.695e-02    -2.2000e+00    =
9.075e-02    -2.1000e+00    8.454e-02    -2.0000e+00    7.832e-02    =
-1.9000e+00    7.211e-02    -1.8000e+00    6.592e-02    -1.7000e+00    =
5.976e-02    -1.6000e+00    5.365e-02    -1.5000e+00    4.761e-02    =
-1.4000e+00    4.167e-02    -1.3000e+00    3.585e-02    -1.2000e+00    =
3.019e-02    -1.1000e+00    2.474e-02    -1.0000e+00    1.953e-02    =
-9.0000e-01    1.467e-02    -8.0000e-01    1.021e-02    -7.0000e-01    =
6.294e-03    -6.0000e-01    3.133e-03    -5.0000e-01    9.967e-04    =
-4.0000e-01    1.728e-04    -3.0000e-01    1.994e-05    -2.0000e-01    =
1.351e-06    -1.0000e-01    4.619e-08       0.          1.098e-10     =
1.0000e-01   -1.066e-09     2.0000e-01   -1.158e-09     3.0000e-01   =
-1.210e-09     4.0000e-01   -1.254e-09     5.0000e-01   -1.293e-09     =
6.0000e-01   -1.331e-09     7.0000e-01   -1.367e-09     8.0000e-01   =
-1.401e-09     9.0000e-01   -1.436e-09     1.0000e+00   -1.470e-09     =
1.1000e+00   -1.504e-09     1.2000e+00   -1.537e-09     1.3000e+00   =
-1.570e-09     1.4000e+00   -1.603e-09     1.5000e+00   -1.636e-09     =
1.6000e+00   -1.670e-09     1.7000e+00   -1.702e-09     1.8000e+00   =
-1.735e-09     1.9000e+00   -1.769e-09     2.0000e+00   -1.802e-09     =
2.1000e+00   -1.836e-09     2.2000e+00   -1.871e-09     2.3000e+00   =
-1.905e-09     2.4000e+00   -1.941e-09     2.5000e+00   -1.977e-09     =
2.6000e+00   -2.015e-09     2.7000e+00   -2.054e-09     2.8000e+00   =
-2.080e-09     2.9000e+00   -2.086e-09     3.0000e+00   -2.093e-09     =
3.1000e+00   -2.096e-09     3.2000e+00   -2.102e-09     3.3000e+00   =
-2.107e-09  =20

--=_5D05A0E0.8DEC823E
Content-Type: text/plain
Content-Disposition: attachment; filename="pdt08dgz.ibs"

|************************************************************************
| IBIS file pdt08dgz.ibs created by s2ibis2 version 1.1
| North Carolina State University Electronics Research Laboratory  1995
|************************************************************************
|
[IBIS ver]       2.1
[File name]      pdt08dgz.ibs
[File Rev]       1
[Date]           September 8, 2000 
[Source]         From 0.25uu TSMC libraries 
[Notes] 
[Copyright]      Copyright (c) 2000 Genesis Mircochip Inc. 
|
|************************************************************************
|                   Component CMOS 3-State Output Pad 
|************************************************************************
|
[Component]      CMOS 3-State Output Pad 
[Manufacturer]   TSMC 
[Package]
| variable       typ                 min                 max
R_pkg            0.000               0.000               0.000
L_pkg            0.000H              0.000H              0.000H
C_pkg            0.000F              0.000F              0.000F
|
[Pin]  signal_name          model_name           R_pin     L_pin     C_pin
out    tri_out              tristate_driver
| in   tri_in               dummy_input
| en   tri_en               dummy_en
gnd    gnd                  GND
vd33   vd33                 POWER
|
|************************************************************************
|                         Model tristate_driver
|************************************************************************
|
[Model]          tristate_driver
Model_type       3-state
Polarity         Non-Inverting
Enable           Active-Low
C_comp           0.000F              0.000F              0.000F
|
|
[Temperature Range]       27.00               27.00               27.00
[Voltage Range]           3.30V               3.30V               3.30V
[Pulldown]
| voltage     I(typ)              I(min)              I(max)
|
  -2.70      -44.90mA            -44.90mA            -44.90mA
  -2.50      -43.80mA            -43.80mA            -43.80mA
  -2.30      -42.65mA            -42.65mA            -42.65mA
  -2.10      -41.26mA            -41.26mA            -41.26mA
  -1.90      -39.69mA            -39.69mA            -39.69mA
  -1.70      -37.84mA            -37.84mA            -37.84mA
  -1.50      -35.73mA            -35.73mA            -35.73mA
  -1.30      -33.29mA            -33.29mA            -33.29mA
  -1.10      -30.42mA            -30.42mA            -30.42mA
  -0.90      -27.02mA            -27.02mA            -27.02mA
  -0.90      -27.02mA            -27.02mA            -27.02mA
  -0.80      -25.08mA            -25.08mA            -25.08mA
  -0.70      -22.92mA            -22.92mA            -22.92mA
  -0.60      -20.46mA            -20.46mA            -20.46mA
  -0.50      -17.61mA            -17.61mA            -17.61mA
  -0.40      -14.34mA            -14.34mA            -14.34mA
  -0.30      -10.81mA            -10.81mA            -10.81mA
  -0.20       -7.22mA             -7.22mA             -7.22mA
  -0.10       -3.61mA             -3.61mA             -3.61mA
   0.00        0.70pA              0.70pA              0.70pA
   0.10        3.53mA              3.53mA              3.53mA
   0.20        6.92mA              6.92mA              6.92mA
   0.30       10.16mA             10.16mA             10.16mA
   0.40       13.24mA             13.24mA             13.24mA
   0.50       16.17mA             16.17mA             16.17mA
   0.60       18.95mA             18.95mA             18.95mA
   0.70       21.58mA             21.58mA             21.58mA
   0.80       24.05mA             24.05mA             24.05mA
   0.90       26.36mA             26.36mA             26.36mA
   1.00       28.51mA             28.51mA             28.51mA
   1.10       30.50mA             30.50mA             30.50mA
   1.20       32.33mA             32.33mA             32.33mA
   1.30       34.00mA             34.00mA             34.00mA
   1.40       35.50mA             35.50mA             35.50mA
   1.50       36.83mA             36.83mA             36.83mA
   1.60       37.97mA             37.97mA             37.97mA
   1.70       38.90mA             38.90mA             38.90mA
   1.80       39.61mA             39.61mA             39.61mA
   1.90       40.11mA             40.11mA             40.11mA
   2.00       40.46mA             40.46mA             40.46mA
   2.10       40.71mA             40.71mA             40.71mA
   2.20       40.90mA             40.90mA             40.90mA
   2.30       41.04mA             41.04mA             41.04mA
   2.40       41.15mA             41.15mA             41.15mA
   2.50       41.25mA             41.25mA             41.25mA
   2.60       41.32mA             41.32mA             41.32mA
   2.70       41.39mA             41.39mA             41.39mA
   2.80       41.45mA             41.45mA             41.45mA
   2.90       41.50mA             41.50mA             41.50mA
   3.00       41.54mA             41.54mA             41.54mA
   3.10       41.58mA             41.58mA             41.58mA
   3.20       41.62mA             41.62mA             41.62mA
   3.30       41.66mA             41.66mA             41.66mA
   3.40       41.69mA             41.69mA             41.69mA
   3.50       41.72mA             41.72mA             41.72mA
   3.60       41.76mA             41.76mA             41.76mA
   3.70       41.79mA             41.79mA             41.79mA
   3.80       41.84mA             41.84mA             41.84mA
   3.90       41.91mA             41.91mA             41.91mA
   4.00       42.01mA             42.01mA             42.01mA
   4.10       42.13mA             42.13mA             42.13mA
   4.20       42.29mA             42.29mA             42.29mA
   4.30       42.47mA             42.47mA             42.47mA
   4.40       42.67mA             42.67mA             42.67mA
   4.60       43.16mA             43.16mA             43.16mA
   4.80       43.74mA             43.74mA             43.74mA
   5.00       44.42mA             44.42mA             44.42mA
   5.20       45.20mA             45.20mA             45.20mA
   5.40       46.12mA             46.12mA             46.12mA
   5.60       47.24mA             47.24mA             47.24mA
   5.80       47.77mA             47.77mA             47.77mA
   6.00       48.37mA             48.37mA             48.37mA
   6.20       49.27mA             49.27mA             49.27mA
   6.60       51.33mA             51.33mA             51.33mA
|
[Pullup]
| voltage     I(typ)              I(min)              I(max)
|
  -3.30       81.72mA             81.72mA             81.72mA
  -3.10       77.84mA             77.84mA             77.84mA
  -2.90       73.90mA             73.90mA             73.90mA
  -2.70       69.11mA             69.11mA             69.11mA
  -2.50       64.28mA             64.28mA             64.28mA
  -2.30       60.32mA             60.32mA             60.32mA
  -2.10       56.17mA             56.17mA             56.17mA
  -1.90       51.85mA             51.85mA             51.85mA
  -1.70       47.26mA             47.26mA             47.26mA
  -1.50       42.36mA             42.36mA             42.36mA
  -1.00       28.88mA             28.88mA             28.88mA
  -0.90       26.01mA             26.01mA             26.01mA
  -0.80       23.12mA             23.12mA             23.12mA
  -0.70       20.20mA             20.20mA             20.20mA
  -0.60       17.27mA             17.27mA             17.27mA
  -0.50       14.34mA             14.34mA             14.34mA
  -0.40       11.42mA             11.42mA             11.42mA
  -0.30        8.51mA              8.51mA              8.51mA
  -0.20        5.63mA              5.63mA              5.63mA
  -0.10        2.78mA              2.78mA              2.78mA
   0.00        5.00pA              5.00pA              5.00pA
   0.10       -2.68mA             -2.68mA             -2.68mA
   0.20       -5.22mA             -5.22mA             -5.22mA
   0.30       -7.64mA             -7.64mA             -7.64mA
   0.40       -9.92mA             -9.92mA             -9.92mA
   0.50      -12.06mA            -12.06mA            -12.06mA
   0.60      -14.08mA            -14.08mA            -14.08mA
   0.70      -15.95mA            -15.95mA            -15.95mA
   0.80      -17.70mA            -17.70mA            -17.70mA
   0.90      -19.31mA            -19.31mA            -19.31mA
   1.00      -20.78mA            -20.78mA            -20.78mA
   1.10      -22.12mA            -22.12mA            -22.12mA
   1.20      -23.33mA            -23.33mA            -23.33mA
   1.30      -24.40mA            -24.40mA            -24.40mA
   1.40      -25.34mA            -25.34mA            -25.34mA
   1.50      -26.14mA            -26.14mA            -26.14mA
   1.60      -26.81mA            -26.81mA            -26.81mA
   1.70      -27.36mA            -27.36mA            -27.36mA
   1.80      -27.80mA            -27.80mA            -27.80mA
   1.90      -28.16mA            -28.16mA            -28.16mA
   2.00      -28.46mA            -28.46mA            -28.46mA
   2.10      -28.72mA            -28.72mA            -28.72mA
   2.20      -28.95mA            -28.95mA            -28.95mA
   2.30      -29.15mA            -29.15mA            -29.15mA
   2.40      -29.34mA            -29.34mA            -29.34mA
   2.50      -29.51mA            -29.51mA            -29.51mA
   2.60      -29.66mA            -29.66mA            -29.66mA
   2.70      -29.80mA            -29.80mA            -29.80mA
   2.80      -29.94mA            -29.94mA            -29.94mA
   2.90      -30.06mA            -30.06mA            -30.06mA
   3.00      -30.17mA            -30.17mA            -30.17mA
   3.10      -30.28mA            -30.28mA            -30.28mA
   3.20      -30.38mA            -30.38mA            -30.38mA
   3.30      -30.47mA            -30.47mA            -30.47mA
   3.40      -30.56mA            -30.56mA            -30.56mA
   3.50      -30.64mA            -30.64mA            -30.64mA
   3.60      -30.74mA            -30.74mA            -30.74mA
   3.70      -30.97mA            -30.97mA            -30.97mA
   3.80      -31.86mA            -31.86mA            -31.86mA
   3.90      -34.07mA            -34.07mA            -34.07mA
   4.00      -37.30mA            -37.30mA            -37.30mA
   4.10      -41.28mA            -41.28mA            -41.28mA
   4.20      -45.81mA            -45.81mA            -45.81mA
   4.30      -50.73mA            -50.73mA            -50.73mA
   4.50      -61.53mA            -61.53mA            -61.53mA
   4.70      -73.16mA            -73.16mA            -73.16mA
   4.90      -85.33mA            -85.33mA            -85.33mA
   5.10      -97.83mA            -97.83mA            -97.83mA
   5.30       -0.11A              -0.11A              -0.11A
   5.50       -0.12A              -0.12A              -0.12A
   5.70       -0.14A              -0.14A              -0.14A
   5.90       -0.15A              -0.15A              -0.15A
   6.10       -0.16A              -0.16A              -0.16A
   6.60       -0.19A              -0.19A              -0.19A
|
[GND_clamp]
| voltage     I(typ)              I(min)              I(max)
|
  -3.30       -0.16A              -0.16A              -0.16A
  -3.20       -0.15A              -0.15A              -0.15A
  -3.10       -0.15A              -0.15A              -0.15A
  -3.00       -0.14A              -0.14A              -0.14A
  -2.90       -0.13A              -0.13A              -0.13A
  -2.80       -0.13A              -0.13A              -0.13A
  -2.70       -0.12A              -0.12A              -0.12A
  -2.60       -0.12A              -0.12A              -0.12A
  -2.50       -0.11A              -0.11A              -0.11A
  -2.40       -0.10A              -0.10A              -0.10A
  -2.30      -96.95mA            -96.95mA            -96.95mA
  -2.20      -90.75mA            -90.75mA            -90.75mA
  -2.10      -84.54mA            -84.54mA            -84.54mA
  -2.00      -78.32mA            -78.32mA            -78.32mA
  -1.90      -72.11mA            -72.11mA            -72.11mA
  -1.80      -65.92mA            -65.92mA            -65.92mA
  -1.70      -59.76mA            -59.76mA            -59.76mA
  -1.60      -53.65mA            -53.65mA            -53.65mA
  -1.50      -47.61mA            -47.61mA            -47.61mA
  -1.40      -41.67mA            -41.67mA            -41.67mA
  -1.30      -35.85mA            -35.85mA            -35.85mA
  -1.20      -30.19mA            -30.19mA            -30.19mA
  -1.10      -24.74mA            -24.74mA            -24.74mA
  -1.00      -19.53mA            -19.53mA            -19.53mA
  -0.90      -14.67mA            -14.67mA            -14.67mA
  -0.80      -10.21mA            -10.21mA            -10.21mA
  -0.70       -6.29mA             -6.29mA             -6.29mA
  -0.60       -3.13mA             -3.13mA             -3.13mA
  -0.50       -1.00mA             -1.00mA             -1.00mA
  -0.40       -0.17mA             -0.17mA             -0.17mA
  -0.30      -19.94uA            -19.94uA            -19.94uA
  -0.20       -1.35uA             -1.35uA             -1.35uA
  -0.10      -46.19nA            -46.19nA            -46.19nA
   0.00       -0.11nA             -0.11nA             -0.11nA
   0.10        1.07nA              1.07nA              1.07nA
   0.20        1.16nA              1.16nA              1.16nA
   0.30        1.21nA              1.21nA              1.21nA
   0.40        1.25nA              1.25nA              1.25nA
   0.50        1.29nA              1.29nA              1.29nA
   0.60        1.33nA              1.33nA              1.33nA
   0.70        1.37nA              1.37nA              1.37nA
   0.80        1.40nA              1.40nA              1.40nA
   0.90        1.44nA              1.44nA              1.44nA
   1.00        1.47nA              1.47nA              1.47nA
   1.10        1.50nA              1.50nA              1.50nA
   1.20        1.54nA              1.54nA              1.54nA
   1.30        1.57nA              1.57nA              1.57nA
   1.40        1.60nA              1.60nA              1.60nA
   1.50        1.64nA              1.64nA              1.64nA
   1.60        1.67nA              1.67nA              1.67nA
   1.70        1.70nA              1.70nA              1.70nA
   1.80        1.73nA              1.73nA              1.73nA
   1.90        1.77nA              1.77nA              1.77nA
   2.00        1.80nA              1.80nA              1.80nA
   2.10        1.84nA              1.84nA              1.84nA
   2.20        1.87nA              1.87nA              1.87nA
   2.30        1.90nA              1.90nA              1.90nA
   2.40        1.94nA              1.94nA              1.94nA
   2.50        1.98nA              1.98nA              1.98nA
   2.60        2.02nA              2.02nA              2.02nA
   2.70        2.05nA              2.05nA              2.05nA
   2.80        2.08nA              2.08nA              2.08nA
   2.90        2.08nA              2.08nA              2.08nA
   3.00        2.09nA              2.09nA              2.09nA
   3.10        2.10nA              2.10nA              2.10nA
   3.20        2.10nA              2.10nA              2.10nA
   3.30        2.11nA              2.11nA              2.11nA
|
[POWER_clamp]
| voltage     I(typ)              I(min)              I(max)
|
  -3.30        2.31nA              2.31nA              2.31nA
  -3.20        2.31nA              2.31nA              2.31nA
  -3.10        2.30nA              2.30nA              2.30nA
  -3.00        2.30nA              2.30nA              2.30nA
  -2.90        2.29nA              2.29nA              2.29nA
  -2.80        2.28nA              2.28nA              2.28nA
  -2.70        2.28nA              2.28nA              2.28nA
  -2.60        2.27nA              2.27nA              2.27nA
  -2.50        2.27nA              2.27nA              2.27nA
  -2.40        2.27nA              2.27nA              2.27nA
  -2.30        2.25nA              2.25nA              2.25nA
  -2.20        2.25nA              2.25nA              2.25nA
  -2.10        2.24nA              2.24nA              2.24nA
  -2.00        2.24nA              2.24nA              2.24nA
  -1.90        2.23nA              2.23nA              2.23nA
  -1.80        2.23nA              2.23nA              2.23nA
  -1.70        2.22nA              2.22nA              2.22nA
  -1.60        2.22nA              2.22nA              2.22nA
  -1.50        2.21nA              2.21nA              2.21nA
  -1.40        2.21nA              2.21nA              2.21nA
  -1.30        2.20nA              2.20nA              2.20nA
  -1.20        2.19nA              2.19nA              2.19nA
  -1.10        2.19nA              2.19nA              2.19nA
  -1.00        2.18nA              2.18nA              2.18nA
  -0.90        2.18nA              2.18nA              2.18nA
  -0.80        2.17nA              2.17nA              2.17nA
  -0.70        2.17nA              2.17nA              2.17nA
  -0.60        2.16nA              2.16nA              2.16nA
  -0.50        2.15nA              2.15nA              2.15nA
  -0.40        2.15nA              2.15nA              2.15nA
  -0.30        2.15nA              2.15nA              2.15nA
  -0.20        2.21nA              2.21nA              2.21nA
  -0.10        2.11nA              2.11nA              2.11nA
   0.00        2.11nA              2.11nA              2.11nA
|
[Ramp]
| variable       typ                 min                 max
dV/dt_r          0.84/0.55n          0.84/0.55n          0.84/0.55n
dV/dt_f          1.09/0.54n          1.09/0.54n          1.09/0.54n
R_load = 50.00
|
[Rising Waveform]
R_fixture = 50.00
V_fixture = 0.000
| time           V(typ)              V(min)              V(max)
|
  0.000S         0.000V              0.000V              0.000V
1.000e-10S       0.000V              0.000V              0.000V
   0.20nS        -0.27uV             -0.27uV             -0.27uV
   0.30nS        -2.62uV             -2.62uV             -2.62uV
   0.40nS        -5.61uV             -5.61uV             -5.61uV
   0.50nS       -24.01uV            -24.01uV            -24.01uV
   0.60nS        51.66uV             51.66uV             51.66uV
   0.70nS         0.11mV              0.11mV              0.11mV
   0.80nS        -6.15mV             -6.15mV             -6.15mV
   0.90nS       -23.61mV            -23.61mV            -23.61mV
   1.00nS       -41.70mV            -41.70mV            -41.70mV
   1.10nS        13.79mV             13.79mV             13.79mV
   1.20nS         0.17V               0.17V               0.17V
   1.30nS         0.37V               0.37V               0.37V
   1.40nS         0.62V               0.62V               0.62V
   1.50nS         0.80V               0.80V               0.80V
   1.60nS         0.93V               0.93V               0.93V
   1.70nS         1.04V               1.04V               1.04V
   1.80nS         1.12V               1.12V               1.12V
   1.90nS         1.19V               1.19V               1.19V
   2.00nS         1.25V               1.25V               1.25V
   2.10nS         1.29V               1.29V               1.29V
   2.20nS         1.33V               1.33V               1.33V
   2.30nS         1.34V               1.34V               1.34V
   2.40nS         1.35V               1.35V               1.35V
   2.50nS         1.36V               1.36V               1.36V
   2.60nS         1.37V               1.37V               1.37V
   2.70nS         1.38V               1.38V               1.38V
   2.80nS         1.39V               1.39V               1.39V
   2.90nS         1.39V               1.39V               1.39V
   3.00nS         1.39V               1.39V               1.39V
   3.10nS         1.40V               1.40V               1.40V
   3.20nS         1.40V               1.40V               1.40V
   3.30nS         1.40V               1.40V               1.40V
   3.40nS         1.40V               1.40V               1.40V
   3.50nS         1.40V               1.40V               1.40V
   3.60nS         1.40V               1.40V               1.40V
   3.70nS         1.40V               1.40V               1.40V
   3.80nS         1.40V               1.40V               1.40V
   3.90nS         1.40V               1.40V               1.40V
   4.00nS         1.40V               1.40V               1.40V
   4.10nS         1.40V               1.40V               1.40V
   4.20nS         1.41V               1.41V               1.41V
   4.30nS         1.41V               1.41V               1.41V
   4.40nS         1.41V               1.41V               1.41V
   4.50nS         1.41V               1.41V               1.41V
   4.60nS         1.41V               1.41V               1.41V
   4.70nS         1.41V               1.41V               1.41V
   4.80nS         1.41V               1.41V               1.41V
   4.90nS         1.41V               1.41V               1.41V
   5.00nS         1.41V               1.41V               1.41V
|
[Rising Waveform]
R_fixture = 50.00
V_fixture = 3.30
| time           V(typ)              V(min)              V(max)
|
  0.000S          1.47V               1.47V               1.47V
1.000e-10S        1.47V               1.47V               1.47V
   0.20nS         1.47V               1.47V               1.47V
   0.30nS         1.47V               1.47V               1.47V
   0.40nS         1.47V               1.47V               1.47V
   0.50nS         1.47V               1.47V               1.47V
   0.60nS         1.47V               1.47V               1.47V
   0.70nS         1.47V               1.47V               1.47V
   0.80nS         1.48V               1.48V               1.48V
   0.90nS         1.58V               1.58V               1.58V
   1.00nS         1.95V               1.95V               1.95V
   1.10nS         2.41V               2.41V               2.41V
   1.20nS         2.79V               2.79V               2.79V
   1.30nS         3.07V               3.07V               3.07V
   1.40nS         3.22V               3.22V               3.22V
   1.50nS         3.28V               3.28V               3.28V
   1.60nS         3.28V               3.28V               3.28V
   1.70nS         3.29V               3.29V               3.29V
   1.80nS         3.29V               3.29V               3.29V
   1.90nS         3.30V               3.30V               3.30V
   2.00nS         3.30V               3.30V               3.30V
   2.10nS         3.30V               3.30V               3.30V
   2.20nS         3.30V               3.30V               3.30V
   2.30nS         3.30V               3.30V               3.30V
   2.40nS         3.30V               3.30V               3.30V
   2.50nS         3.30V               3.30V               3.30V
   2.60nS         3.30V               3.30V               3.30V
   2.70nS         3.30V               3.30V               3.30V
   2.80nS         3.30V               3.30V               3.30V
   2.90nS         3.30V               3.30V               3.30V
   3.00nS         3.30V               3.30V               3.30V
   3.10nS         3.30V               3.30V               3.30V
   3.20nS         3.30V               3.30V               3.30V
   3.30nS         3.30V               3.30V               3.30V
   3.40nS         3.30V               3.30V               3.30V
   3.50nS         3.30V               3.30V               3.30V
   3.60nS         3.30V               3.30V               3.30V
   3.70nS         3.30V               3.30V               3.30V
   3.80nS         3.30V               3.30V               3.30V
   3.90nS         3.30V               3.30V               3.30V
   4.00nS         3.30V               3.30V               3.30V
   4.10nS         3.30V               3.30V               3.30V
   4.20nS         3.30V               3.30V               3.30V
   4.30nS         3.30V               3.30V               3.30V
   4.40nS         3.30V               3.30V               3.30V
   4.50nS         3.30V               3.30V               3.30V
   4.60nS         3.30V               3.30V               3.30V
   4.70nS         3.30V               3.30V               3.30V
   4.80nS         3.30V               3.30V               3.30V
   4.90nS         3.30V               3.30V               3.30V
   5.00nS         3.30V               3.30V               3.30V
|
[Falling Waveform]
R_fixture = 50.00
V_fixture = 0.000
| time           V(typ)              V(min)              V(max)
|
  0.000S          1.41V               1.41V               1.41V
1.000e-10S        1.41V               1.41V               1.41V
   0.20nS         1.41V               1.41V               1.41V
   0.30nS         1.41V               1.41V               1.41V
   0.40nS         1.41V               1.41V               1.41V
   0.50nS         1.41V               1.41V               1.41V
   0.60nS         1.41V               1.41V               1.41V
   0.70nS         1.41V               1.41V               1.41V
   0.80nS         1.41V               1.41V               1.41V
   0.90nS         1.41V               1.41V               1.41V
   1.00nS         1.40V               1.40V               1.40V
   1.10nS         1.36V               1.36V               1.36V
   1.20nS         1.21V               1.21V               1.21V
   1.30nS         0.99V               0.99V               0.99V
   1.40nS         0.67V               0.67V               0.67V
   1.50nS         0.43V               0.43V               0.43V
   1.60nS         0.28V               0.28V               0.28V
   1.70nS         0.16V               0.16V               0.16V
   1.80nS         0.11V               0.11V               0.11V
   1.90nS        67.70mV             67.70mV             67.70mV
   2.00nS        34.57mV             34.57mV             34.57mV
   2.10nS        23.82mV             23.82mV             23.82mV
   2.20nS        16.01mV             16.01mV             16.01mV
   2.30nS        11.47mV             11.47mV             11.47mV
   2.40nS         8.70mV              8.70mV              8.70mV
   2.50nS         6.30mV              6.30mV              6.30mV
   2.60nS         4.08mV              4.08mV              4.08mV
   2.70nS         2.76mV              2.76mV              2.76mV
   2.80nS         1.70mV              1.70mV              1.70mV
   2.90nS         1.36mV              1.36mV              1.36mV
   3.00nS         1.09mV              1.09mV              1.09mV
   3.10nS         0.75mV              0.75mV              0.75mV
   3.20nS         0.58mV              0.58mV              0.58mV
   3.30nS         0.43mV              0.43mV              0.43mV
   3.40nS         0.32mV              0.32mV              0.32mV
   3.50nS         0.26mV              0.26mV              0.26mV
   3.60nS         0.20mV              0.20mV              0.20mV
   3.70nS         0.16mV              0.16mV              0.16mV
   3.80nS         0.13mV              0.13mV              0.13mV
   3.90nS         0.11mV              0.11mV              0.11mV
   4.00nS        99.17uV             99.17uV             99.17uV
   4.10nS        83.38uV             83.38uV             83.38uV
   4.20nS        77.35uV             77.35uV             77.35uV
   4.30nS        73.04uV             73.04uV             73.04uV
   4.40nS        68.88uV             68.88uV             68.88uV
   4.50nS        64.84uV             64.84uV             64.84uV
   4.60nS        60.73uV             60.73uV             60.73uV
   4.70nS        56.01uV             56.01uV             56.01uV
   4.80nS        50.20uV             50.20uV             50.20uV
   4.90nS        46.61uV             46.61uV             46.61uV
   5.00nS        45.01uV             45.01uV             45.01uV
|
[Falling Waveform]
R_fixture = 50.00
V_fixture = 3.30
| time           V(typ)              V(min)              V(max)
|
  0.000S          3.30V               3.30V               3.30V
1.000e-10S        3.30V               3.30V               3.30V
   0.20nS         3.30V               3.30V               3.30V
   0.30nS         3.30V               3.30V               3.30V
   0.40nS         3.30V               3.30V               3.30V
   0.50nS         3.30V               3.30V               3.30V
   0.60nS         3.30V               3.30V               3.30V
   0.70nS         3.30V               3.30V               3.30V
   0.80nS         3.30V               3.30V               3.30V
   0.90nS         3.30V               3.30V               3.30V
   1.00nS         3.30V               3.30V               3.30V
   1.10nS         3.31V               3.31V               3.31V
   1.20nS         3.33V               3.33V               3.33V
   1.30nS         3.33V               3.33V               3.33V
   1.40nS         3.28V               3.28V               3.28V
   1.50nS         3.02V               3.02V               3.02V
   1.60nS         2.71V               2.71V               2.71V
   1.70nS         2.30V               2.30V               2.30V
   1.80nS         2.04V               2.04V               2.04V
   1.90nS         1.94V               1.94V               1.94V
   2.00nS         1.88V               1.88V               1.88V
   2.10nS         1.82V               1.82V               1.82V
   2.20nS         1.75V               1.75V               1.75V
   2.30nS         1.70V               1.70V               1.70V
   2.40nS         1.66V               1.66V               1.66V
   2.50nS         1.62V               1.62V               1.62V
   2.60nS         1.59V               1.59V               1.59V
   2.70nS         1.56V               1.56V               1.56V
   2.80nS         1.53V               1.53V               1.53V
   2.90nS         1.52V               1.52V               1.52V
   3.00nS         1.51V               1.51V               1.51V
   3.10nS         1.51V               1.51V               1.51V
   3.20nS         1.50V               1.50V               1.50V
   3.30nS         1.49V               1.49V               1.49V
   3.40nS         1.49V               1.49V               1.49V
   3.50nS         1.48V               1.48V               1.48V
   3.60nS         1.48V               1.48V               1.48V
   3.70nS         1.48V               1.48V               1.48V
   3.80nS         1.48V               1.48V               1.48V
   3.90nS         1.48V               1.48V               1.48V
   4.00nS         1.48V               1.48V               1.48V
   4.10nS         1.48V               1.48V               1.48V
   4.20nS         1.48V               1.48V               1.48V
   4.30nS         1.48V               1.48V               1.48V
   4.40nS         1.48V               1.48V               1.48V
   4.50nS         1.47V               1.47V               1.47V
   4.60nS         1.47V               1.47V               1.47V
   4.70nS         1.47V               1.47V               1.47V
   4.80nS         1.48V               1.48V               1.48V
   4.90nS         1.47V               1.47V               1.47V
   5.00nS         1.47V               1.47V               1.47V
|
| End [Model] tristate_driver
|
| End [Component] CMOS 3-State Output Pad 
|
[End]

--=_5D05A0E0.8DEC823E--
 
From owner-ibis Fri Sep 22 09:37:24 2000
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The IBIS Models web page at http://www.eigroup.org/ibis/models.htm
has been updated. A link to MMC Networks has been added. This is
first time I have tested the links on the page and all 101 of
them worked! But that was yesterday...

Any suggestions for corrections, additions, or enhancements to this
web page are welcome. Please send them to me (as IBIS Librarian).

Mike LaBonte
Cadence Design Systems
 
From owner-ibis Mon Sep 25 01:49:58 2000
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Date: Mon, 25 Sep 2000 11:47:04 +0300
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Hi all,

As someone who is new to IBIS, this would also be useful to me, so could
anyone who replies please either cc to me, or post to the list.

Thanks

> Hi,
>  I am a final year student of BITS,Pilani INDIA.I am doing my 
> B.E.EEE .My
> project is in IBIS models and SPICE models.
> I request you to  suggest  some sites for IBIS basic 
> Tutorials,tools for
> converting IBIS to SPICEModels and Advantages of both over the other.
> 
>   Thank you very much for giving your time for me,
>              Yours,
>             G.Shankar.
> 

Mark Browne
Senior Engineer
Nokia UK Ltd.
Mark.Browne@nokia.com 
 
From owner-ibis Wed Sep 27 07:58:04 2000
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hello,

I am an employee at 

Raidtec Corporation
Castle Road
Little Island
Cork
Ireland
Fax  +353 21 4353799
Ph   +353 21 4353440

i am in the process of trying to simulated a board design, but i need the
following. 

IBIS model for a Fibre channel Differential Driver and Reciever which will
run at 2G.

I hope you will be able to help me.
Looking foward to hearing from you

Mike Molumphy

 
From owner-ibis Wed Sep 27 11:49:31 2000
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From owner-ibis Wed Sep 27 13:39:21 2000
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From: "Betty Luk" <Betty@genesis-microchip.com>
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Subject: the 4 V-t curves of IBIS 2.1
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Hello,

Why do we need four V-t curves to describe the rising and falling edges of a CMOS buffer (as described in the IBIS cookbook)?


Many thanks,

Betty Luk

IC Technology
Genesis Microchip Inc.
165 Commerce Valley Dr. W.
Thornhill, Ont. L3T 7V8
(905) 889-5400 x2256

 
From owner-ibis Wed Sep 27 14:54:08 2000
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Subject: the 4 V-t curves of IBIS 2.1
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Betty,

Imagine a standard push-pull CMOS output driver with a PMOS pull-up device
and an NMOS pull-down device.  In a behavioral model, you have information
about the Ids vs. Vds characteristics of these transistors, but you don't
know what their gate voltages look like as a function of time.  Using the
four V-T tables, a behavioral simulator can cleverly deduce when to
"activate" the I-V tables in time to make the behavioral simulation look as
much like the real circuit as possible.  A good example of this is crowbar
current.  I/O circuit designers will often time-shift the gate voltage
waveform of the PMOS device with respect to the NMOS device to keep both
devices from being on at the same time.  This minimizes the amount of
current shooting from Vdd to Vss and thereby minimizes noise.

Greg Edlund
Advisory Engineer
Electrical Packaging
IBM Server Technology Development
3605 Hwy. 52 N, Dept. HDC
Rochester, MN 55901
gedlund@us.ibm.com
---------------------- Forwarded by Gregory R Edlund/Rochester/IBM on
09/27/2000 04:41 PM ---------------------------





"Betty Luk" <Betty@genesis-microchip.com> on 09/27/2000 03:39:34 PM

To:   <ibis-users@eda.org>
cc:

Subject:  the 4 V-t curves of IBIS 2.1




Hello,

Why do we need four V-t curves to describe the rising and falling edges of
a CMOS buffer (as described in the IBIS cookbook)?


Many thanks,

Betty Luk

IC Technology
Genesis Microchip Inc.
165 Commerce Valley Dr. W.
Thornhill, Ont. L3T 7V8
(905) 889-5400 x2256




 
From owner-ibis Thu Sep 28 00:41:17 2000
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From: Offer Kaye <sofferk@techst02.technion.ac.il>
To: Betty Luk <Betty@genesis-microchip.com>
Cc: ibis-users@eda.org
Subject: Re: the 4 V-t curves of IBIS 2.1
In-Reply-To: <s9d222d3.074@genesis-microchip.on.ca>
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Betty, this is from a seminar given by Mr. Arpad Muranyi from Intel, so
all rights are reserved to him :)

-------------------------------------------------------------------
What do we get in the I-V curves?
Digital buffers can only be measured in two modes (if not one)
* Receive or 3-state mode
  * allows us to measure the currents of 
    parasitic diodes (for MOSFETS)
    ESD protection circuits
    pullup or pulldown "resistors"
    static overshoot protection clamps
    integrated static terminators
(comment by O.K.- the above are ALWAYS ON)

* Drive mode (driving high or low)
  * allows us to measure the currents of all of the above, plus
                                                           ----
    channel currents for pulldown and/or pullup structures
    dynamic clamps
    dynamic bus hold circuits
    integrated active terminators

BOTH MODES ARE NEEDED FOR SIMULATIONS


DRIVE/RECEIVE MODE TRANSITIONING
* Phase out "reciever model" as the "driver model" is phased in, or vive
versa
   It may be difficult to come up with an algorithm that can cross fade
   the two models so that the static currents remain constant during the
   transitioning process.

* Keep "receiver model" constantly in the circuit and phase in/out the
difference between the driver and receiver models
----------
   Note that a drive mode model includes the static currents of those
   circuit or device elements that make up a receive mode model because
   these are never turned off. These currents would be doubled if the
   drive mode model would simply be added to a receive mode model.


THE SECOND APPROACH IS USED IN IBIS.

---------------------------------------------------------------------

Hope this helped :)

Offer Kaye
sofferk@techst02.technion.ac.il
Web Site: http://t2.technion.ac.il/~sofferk

On Wed, 27 Sep 2000, Betty Luk wrote:

> Hello,
> 
> Why do we need four V-t curves to describe the rising and falling edges of a CMOS buffer (as described in the IBIS cookbook)?
> 
> 
> Many thanks,
> 
> Betty Luk
> 
> IC Technology
> Genesis Microchip Inc.
> 165 Commerce Valley Dr. W.
> Thornhill, Ont. L3T 7V8
> (905) 889-5400 x2256
> 
> 

 
From owner-ibis Thu Sep 28 01:21:16 2000
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To: ibis-users@eda.org
Subject: drlc model
X-Sun-Charset: US-ASCII

Dear Ibisians,

although ibis is meant to be used for IC buffer modelling:

how about the simple diodes, resistors, capacitors and inductors?

Is it possible to model such a simple component with ibis?

Regards

Alex

 
From owner-ibis Thu Sep 28 04:06:45 2000
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From: Peled Sarit <speled@techst02.technion.ac.il>
To: Alex Hilbers <Alex.Hilbers@asml.nl>
Cc: ibis-users@eda.org
Subject: Re: drlc model
In-Reply-To: <200009280818.KAA20500@wselc115.asml.nl>
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Hi

YES . You can write an invented model which is not based on measurments,
but rather is based on the component's given parameters .
As an example : this file is an IBIS file for a 50 ohm resistor, it comes
as part of the default IBIS files supplied with the ICX simulator (by
Mentor Graphics).

|****************************************************************************
|
[IBIS Ver]      2.1
[File name]     icxresistor.ibs
[File Rev]      0.0
[Date]          10/24/97
[Source]        None.
[Notes]         Default model for resistor.
[Disclaimer]    This information is for modeling purposes only, and 
                is not guaranteed.
|
|***************************************************************************
|
[Component]     icxresistor
[Manufacturer]  UNKNOWN
[Package]
|                typ             min             max
R_pkg            0               NA              NA
L_pkg            5.0nH           NA              NA
C_pkg            2.0pF           NA              NA
|
[Pin]  signal_name   model_name    R_pin  L_pin  C_pin
1       UNKNOWN     resistor_50     NA     NA     NA
2       UNKNOWN     resistor_50     NA     NA     NA
|
|***************************************************************************
|
[Model]  resistor_50
Model_type  Terminator
Polarity  Non-Inverting
C_comp  0  NA  NA
[Voltage range]  0  NA  NA
[Pullup Reference]  5  NA  NA
[Pulldown Reference]  0  NA  NA
[Power_clamp Reference]  5  NA  NA
[Gnd_clamp Reference]  0  NA  NA
[RSeries]  50  NA  NA
|
|***************************************************************************
|
[End]


Of course, you can always make a more accurate model by measuring or
simulating additional parameters (such as L and C for the resistor
package). 

best regards ,

Sarit Peled
speled@t2.technion.ac.il

 
From owner-ibis Thu Sep 28 09:36:22 2000
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Date: Thu, 28 Sep 2000 12:41:19 -0400
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CC: Alex Hilbers <Alex.Hilbers@asml.nl>, ibis-users@eda.org
Subject: Re: drlc model
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IBIS is not really intended for passive discrete parts like
resistors, capacitors, and inductors. That said, it is possible
to model them in IBIS. But to do so requires a [Series Pin Mapping]
section and a [Model] with Model_type Series. The example sent
by Peled isn't exactly an IBIS file. For example, it has an [RSeries]
item which is not described at all in the IBIS specification. It
is possible that this file will work with the ICX simulator, however.
I am not certain of what limitations a standard IBIS Series model has
that would actually require non-IBIS extensions, at least for simple
parts.

This does raise an interesting point about IBIS: it does not, or did
not at one time, model ALL of the parts used in electronic designs.
So simulators were forced to implement a separate model format for
the other parts. Some simulators use proprietary "extended IBIS" files.
However, we must be careful not to disseminate these as standard IBIS
files. Since handling of these other part types is important to end
users, maybe the scope of IBIS specification should be expanded to
standardize them as well?

Mike LaBonte
Cadence Design Systems

Peled Sarit wrote:
> 
> Hi
> 
> YES . You can write an invented model which is not based on measurments,
> but rather is based on the component's given parameters .
> As an example : this file is an IBIS file for a 50 ohm resistor, it comes
> as part of the default IBIS files supplied with the ICX simulator (by
> Mentor Graphics).
> 
> |****************************************************************************
> |
> [IBIS Ver]      2.1
> [File name]     icxresistor.ibs
> [File Rev]      0.0
> [Date]          10/24/97
> [Source]        None.
> [Notes]         Default model for resistor.
> [Disclaimer]    This information is for modeling purposes only, and
>                 is not guaranteed.
> |
> |***************************************************************************
> |
> [Component]     icxresistor
> [Manufacturer]  UNKNOWN
> [Package]
> |                typ             min             max
> R_pkg            0               NA              NA
> L_pkg            5.0nH           NA              NA
> C_pkg            2.0pF           NA              NA
> |
> [Pin]  signal_name   model_name    R_pin  L_pin  C_pin
> 1       UNKNOWN     resistor_50     NA     NA     NA
> 2       UNKNOWN     resistor_50     NA     NA     NA
> |
> |***************************************************************************
> |
> [Model]  resistor_50
> Model_type  Terminator
> Polarity  Non-Inverting
> C_comp  0  NA  NA
> [Voltage range]  0  NA  NA
> [Pullup Reference]  5  NA  NA
> [Pulldown Reference]  0  NA  NA
> [Power_clamp Reference]  5  NA  NA
> [Gnd_clamp Reference]  0  NA  NA
> [RSeries]  50  NA  NA
> |
> |***************************************************************************
> |
> [End]
> 
> Of course, you can always make a more accurate model by measuring or
> simulating additional parameters (such as L and C for the resistor
> package).
> 
> best regards ,
> 
> Sarit Peled
> speled@t2.technion.ac.il
 
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From: "Beal, Weston" <weston_beal@mentorg.com>
To: "'Peled Sarit'" <speled@techst02.technion.ac.il>
Cc: ibis-users@eda.org
Subject: RE: drlc model
Date: Thu, 28 Sep 2000 10:56:39 -0700
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All,

Be aware that this model is not standard IBIS syntax.  It is the ICX
specific extension of IBIS to handle series resistors before IBIS defined
them.  ICX 2.4 (released any time now) will handle the true IBIS syntax for
series resistors.

Regards,
Weston


 + -----Original Message-----
 + From: Peled Sarit [mailto:speled@techst02.technion.ac.il]
 + Sent: Thursday, September 28, 2000 4:04 AM
 + To: Alex Hilbers
 + Cc: ibis-users@eda.org
 + Subject: Re: drlc model
 + 
 + 
 + Hi
 + 
 + YES . You can write an invented model which is not based on 
 + measurments,
 + but rather is based on the component's given parameters .
 + As an example : this file is an IBIS file for a 50 ohm 
 + resistor, it comes
 + as part of the default IBIS files supplied with the ICX simulator (by
 + Mentor Graphics).
 + 
 + |************************************************************
 + ****************
 + |
 + [IBIS Ver]      2.1
 + [File name]     icxresistor.ibs
 + [File Rev]      0.0
 + [Date]          10/24/97
 + [Source]        None.
 + [Notes]         Default model for resistor.
 + [Disclaimer]    This information is for modeling purposes only, and 
 +                 is not guaranteed.
 + |
 + |************************************************************
 + ***************
 + |
 + [Component]     icxresistor
 + [Manufacturer]  UNKNOWN
 + [Package]
 + |                typ             min             max
 + R_pkg            0               NA              NA
 + L_pkg            5.0nH           NA              NA
 + C_pkg            2.0pF           NA              NA
 + |
 + [Pin]  signal_name   model_name    R_pin  L_pin  C_pin
 + 1       UNKNOWN     resistor_50     NA     NA     NA
 + 2       UNKNOWN     resistor_50     NA     NA     NA
 + |
 + |************************************************************
 + ***************
 + |
 + [Model]  resistor_50
 + Model_type  Terminator
 + Polarity  Non-Inverting
 + C_comp  0  NA  NA
 + [Voltage range]  0  NA  NA
 + [Pullup Reference]  5  NA  NA
 + [Pulldown Reference]  0  NA  NA
 + [Power_clamp Reference]  5  NA  NA
 + [Gnd_clamp Reference]  0  NA  NA
 + [RSeries]  50  NA  NA
 + |
 + |************************************************************
 + ***************
 + |
 + [End]
 + 
 + 
 + Of course, you can always make a more accurate model by measuring or
 + simulating additional parameters (such as L and C for the resistor
 + package). 
 + 
 + best regards ,
 + 
 + Sarit Peled
 + speled@t2.technion.ac.il
 + 

------_=_NextPart_001_01C02975.73CA8AE0
Content-Type: text/html;
	charset="ISO-8859-1"
Content-Transfer-Encoding: quoted-printable

<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 3.2//EN">
<HTML>
<HEAD>
<META HTTP-EQUIV=3D"Content-Type" CONTENT=3D"text/html; =
charset=3DISO-8859-1">
<META NAME=3D"Generator" CONTENT=3D"MS Exchange Server version =
5.5.2652.35">
<TITLE>RE: drlc model</TITLE>
</HEAD>
<BODY>

<P><FONT SIZE=3D2>All,</FONT>
</P>

<P><FONT SIZE=3D2>Be aware that this model is not standard IBIS =
syntax.&nbsp; It is the ICX specific extension of IBIS to handle series =
resistors before IBIS defined them.&nbsp; ICX 2.4 (released any time =
now) will handle the true IBIS syntax for series resistors.</FONT></P>

<P><FONT SIZE=3D2>Regards,</FONT>
<BR><FONT SIZE=3D2>Weston</FONT>
</P>
<BR>

<P><FONT SIZE=3D2>&nbsp;+ -----Original Message-----</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ From: Peled Sarit [<A =
HREF=3D"mailto:speled@techst02.technion.ac.il">mailto:speled@techst02.te=
chnion.ac.il</A>]</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ Sent: Thursday, September 28, 2000 4:04 =
AM</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ To: Alex Hilbers</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ Cc: ibis-users@eda.org</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ Subject: Re: drlc model</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ Hi</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ YES . You can write an invented model which =
is not based on </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ measurments,</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ but rather is based on the component's given =
parameters .</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ As an example : this file is an IBIS file =
for a 50 ohm </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ resistor, it comes</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ as part of the default IBIS files supplied =
with the ICX simulator (by</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ Mentor Graphics).</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ =
|************************************************************</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ ****************</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ |</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ [IBIS Ver]&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; =
2.1</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ [File name]&nbsp;&nbsp;&nbsp;&nbsp; =
icxresistor.ibs</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ [File Rev]&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; =
0.0</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ =
[Date]&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; =
10/24/97</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ =
[Source]&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; None.</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ =
[Notes]&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; Default model =
for resistor.</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ [Disclaimer]&nbsp;&nbsp;&nbsp; This =
information is for modeling purposes only, and </FONT>
<BR><FONT =
SIZE=3D2>&nbsp;+&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&n=
bsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; is not guaranteed.</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ |</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ =
|************************************************************</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ ***************</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ |</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ [Component]&nbsp;&nbsp;&nbsp;&nbsp; =
icxresistor</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ [Manufacturer]&nbsp; UNKNOWN</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ [Package]</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ =
|&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp=
;&nbsp;&nbsp;&nbsp; =
typ&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nb=
sp; =
min&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nb=
sp; max</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ =
R_pkg&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; =
0&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp=
;&nbsp;&nbsp; =
NA&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbs=
p;&nbsp; NA</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ =
L_pkg&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; =
5.0nH&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; =
NA&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbs=
p;&nbsp; NA</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ =
C_pkg&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; =
2.0pF&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; =
NA&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbs=
p;&nbsp; NA</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ |</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ [Pin]&nbsp; signal_name&nbsp;&nbsp; =
model_name&nbsp;&nbsp;&nbsp; R_pin&nbsp; L_pin&nbsp; C_pin</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ 1&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; =
UNKNOWN&nbsp;&nbsp;&nbsp;&nbsp; resistor_50&nbsp;&nbsp;&nbsp;&nbsp; =
NA&nbsp;&nbsp;&nbsp;&nbsp; NA&nbsp;&nbsp;&nbsp;&nbsp; NA</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ 2&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; =
UNKNOWN&nbsp;&nbsp;&nbsp;&nbsp; resistor_50&nbsp;&nbsp;&nbsp;&nbsp; =
NA&nbsp;&nbsp;&nbsp;&nbsp; NA&nbsp;&nbsp;&nbsp;&nbsp; NA</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ |</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ =
|************************************************************</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ ***************</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ |</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ [Model]&nbsp; resistor_50</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ Model_type&nbsp; Terminator</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ Polarity&nbsp; Non-Inverting</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ C_comp&nbsp; 0&nbsp; NA&nbsp; NA</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ [Voltage range]&nbsp; 0&nbsp; NA&nbsp; =
NA</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ [Pullup Reference]&nbsp; 5&nbsp; NA&nbsp; =
NA</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ [Pulldown Reference]&nbsp; 0&nbsp; NA&nbsp; =
NA</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ [Power_clamp Reference]&nbsp; 5&nbsp; =
NA&nbsp; NA</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ [Gnd_clamp Reference]&nbsp; 0&nbsp; NA&nbsp; =
NA</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ [RSeries]&nbsp; 50&nbsp; NA&nbsp; NA</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ |</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ =
|************************************************************</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ ***************</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ |</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ [End]</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ Of course, you can always make a more =
accurate model by measuring or</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ simulating additional parameters (such as L =
and C for the resistor</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ package). </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ best regards ,</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ </FONT>
<BR><FONT SIZE=3D2>&nbsp;+ Sarit Peled</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ speled@t2.technion.ac.il</FONT>
<BR><FONT SIZE=3D2>&nbsp;+ </FONT>
</P>

</BODY>
</HTML>
------_=_NextPart_001_01C02975.73CA8AE0--
 
From owner-ibis Thu Sep 28 19:27:21 2000
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          for <ibis-users@eda.org>; 29 Sep 2000 02:24:14 -0000
From: Al Davis <aldavis@ieee.org>
To: <ibis-users@eda.org>
Subject: Re: the 4 V-t curves of IBIS 2.1
Date: Thu, 28 Sep 2000 18:59:04 -0700
X-Mailer: KMail [version 1.0.28]
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References: <s9d222d3.074@genesis-microchip.on.ca>
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On Wed, 27 Sep 2000, Betty Luk wrote:
> Why do we need four V-t curves to describe the rising and falling
edges of a CMOS buffer (as described in the IBIS cookbook)?

I assume you mean 2 per edge.

One per edge describes what it does with a particular load.  What it
does into any other load is a guess.

By supplying more than one waveform per edge, with different loads, it
is possible to represent changes in the output resistance in the
driver, in addition to the voltage.

Usually, if you can provide 2 tables per edge, the best loads are to
use the same resistance in both cases, but connect one to ground and
the other to the power supply.  To see why, consider that the typical
driver consists of a pull-up device and a pull-down device.  A
resistor from the terminal to ground will tend to swamp out the
pull-down device, and characterize the pull-up device fairly well.  A
resistor to power will do the opposite.  Usually, the best resistance
to use is as close as possible to the load it will actually drive.


 
From owner-ibis Fri Sep 29 07:37:26 2000
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Date: Fri, 29 Sep 2000 10:42:34 -0400
To: <ibis-users@eda.org>
From: Todd Westerhoff <toddw@cadence.com>
Subject: Re: the 4 V-t curves of IBIS 2.1
In-Reply-To: <00092819150401.01659@oliver.al.dynip.com>
References: <s9d222d3.074@genesis-microchip.on.ca>
 <s9d222d3.074@genesis-microchip.on.ca>
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--=====================_963134==_
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Hi everyone,

I've attached a .PDF from from a presentation by Donald Telian that shows why two sets of V-T curves per-driver-per-edge.  It's because you need to capture the relative timing of the different transistors that make up the output.  With that information, you can determine the "dynamic thevenin equivalent" (a term coined by Chris Rokusek that I REALLY like) and predict the output's behavior into a different load.

FYI, this is also why V-T curves MUST be into a PURE resistive load, while the output buffer delay can be measured into a complex (i.e. with capacitance and inductance) load.  If you know a device's behavior into a pure resistive load, you can use Ohm's law to back out the effect of the resistor and predict the behavior into another load.  The minute the load is complex, backing-out (technical term: de-embedding) the effect of the load is MUCH more difficult.

Todd.




At 06:59 PM 9/28/2000 -0700, Al Davis wrote:
>On Wed, 27 Sep 2000, Betty Luk wrote:
> > Why do we need four V-t curves to describe the rising and falling
>edges of a CMOS buffer (as described in the IBIS cookbook)?
>
>I assume you mean 2 per edge.
>
>One per edge describes what it does with a particular load.  What it
>does into any other load is a guess.
>
>By supplying more than one waveform per edge, with different loads, it
>is possible to represent changes in the output resistance in the
>driver, in addition to the voltage.
>
>Usually, if you can provide 2 tables per edge, the best loads are to
>use the same resistance in both cases, but connect one to ground and
>the other to the power supply.  To see why, consider that the typical
>driver consists of a pull-up device and a pull-down device.  A
>resistor from the terminal to ground will tend to swamp out the
>pull-down device, and characterize the pull-up device fairly well.  A
>resistor to power will do the opposite.  Usually, the best resistance
>to use is as close as possible to the load it will actually drive.
>

--=====================_963134==_
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--=====================_963134==_
Content-Type: text/plain; charset="us-ascii"


    Todd Westerhoff
    Product Marketing Director | High Speed Systems Design | Performance Engineering
    Cadence Design Systems | 270 Billerica Road | Chelmsford, MA  01824
    
    ph: (978) 262-6327
    fx: (978) 446-6798
    email: toddw@cadence.com
    internal information website: http://www-ma.cadence.com/~toddw
--=====================_963134==_--

 
From owner-ibis Fri Sep 29 08:41:04 2000
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Date: Fri, 29 Sep 2000 11:46:21 -0400
To: <ibis-users@eda.org>
From: Todd Westerhoff <toddw@cadence.com>
Subject: Re: the 4 V-t curves of IBIS 2.1
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--=====================_4789536==_
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Hi all,

The previous document had "Cadence Confidential" on it - which it isn't.  My apologies.  This copy has been corrected.

Todd.


At 06:59 PM 9/28/2000 -0700, Al Davis wrote:
>On Wed, 27 Sep 2000, Betty Luk wrote:
> > Why do we need four V-t curves to describe the rising and falling
>edges of a CMOS buffer (as described in the IBIS cookbook)?
>
>I assume you mean 2 per edge.
>
>One per edge describes what it does with a particular load.  What it
>does into any other load is a guess.
>
>By supplying more than one waveform per edge, with different loads, it
>is possible to represent changes in the output resistance in the
>driver, in addition to the voltage.
>
>Usually, if you can provide 2 tables per edge, the best loads are to
>use the same resistance in both cases, but connect one to ground and
>the other to the power supply.  To see why, consider that the typical
>driver consists of a pull-up device and a pull-down device.  A
>resistor from the terminal to ground will tend to swamp out the
>pull-down device, and characterize the pull-up device fairly well.  A
>resistor to power will do the opposite.  Usually, the best resistance
>to use is as close as possible to the load it will actually drive.

--=====================_4789536==_
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From owner-ibis Fri Sep 29 08:42:20 2000
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Hi everyone!

i was wondering if anyone has a model for the PCI bus ?

thanks

--
*************************************
*Johnny Pietraroia                  *
*MGI CAD PCB VIDEOENG g2dhard image *
*Signal Integrity des. sim. Tec.    *
*514-822-6000 ext 7198              *
*Matrox Electronic Systems          *
*************************************



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<pre>Hi everyone!</pre>

<pre>i was wondering if anyone has a model for the PCI bus ?</pre>

<pre>thanks&nbsp;
</pre>

<pre>
--&nbsp;
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*Johnny Pietraroia&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; *
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*Signal Integrity des. sim. Tec.&nbsp;&nbsp;&nbsp; *
*514-822-6000 ext 7198&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; *
*Matrox Electronic Systems&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; *
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From owner-ibis Fri Sep 29 10:48:41 2000
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Hello,
I keep getting an error when running s2ibis2 and I'm not sure what else
I can do since the s2ibis software is creating this node.

The error is the following in one of my .out files:

******
vouts2i ref 0 dc 0

******
vclmps2i vpwr 0 dc 3.3
vgclmps2i vgnd 0 dc 0
.temp 50
.options ingold=2
.dc vouts2i 3.3 6.6 0.1
.print dc i(vouts2i)
.end

**error**: element    0:vouts2i        has been referenced but not
defined id=    9

Any help on what is causing this error would be very appreciated.

Thank you,
Daigo

--
Daigo Katagiri
Applications Engineer
Cypress Semiconductor
Timing Technology Division
19825 141st PL NE, Suite 100
Woodinville, WA 98072
tel:(425)398-3445
fax:(425)398-3334
pager:(206)608-7536


 
From owner-ibis Fri Sep 29 13:49:50 2000
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Date: Fri, 29 Sep 2000 13:46:52 -0700 (PDT)
From: Syed Huq <shuq@cisco.com>
Reply-To: Syed Huq <shuq@cisco.com>
Subject: Re: vouts2i error
To: ibis-users@eda.org, dkx@cypress.com
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I am guessing a bit here since I don't have all the info. s2ibis2 is putting a 
voltage source(vouts2i) on the user defined node called 'ref'.

You may want to look into this 'ref' node a bit more. Is it properly defined in
your .s2i file and in your SPICE subckts.

Syed
Cisco Systems, Inc

> 
> Hello,
> I keep getting an error when running s2ibis2 and I'm not sure what else
> I can do since the s2ibis software is creating this node.
> 
> The error is the following in one of my .out files:
> 
> ******
> vouts2i ref 0 dc 0
> 
> ******
> vclmps2i vpwr 0 dc 3.3
> vgclmps2i vgnd 0 dc 0
> .temp 50
> .options ingold=2
> .dc vouts2i 3.3 6.6 0.1
> .print dc i(vouts2i)
> .end
> 
> **error**: element    0:vouts2i        has been referenced but not
> defined id=    9
> 
> Any help on what is causing this error would be very appreciated.
> 
> Thank you,
> Daigo
> 


 
