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August 2011

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From:
"Stadem, Richard D." <[log in to unmask]>
Reply To:
TechNet E-Mail Forum <[log in to unmask]>, Stadem, Richard D.
Date:
Thu, 25 Aug 2011 07:54:29 -0500
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I would reform the leads outward to obtain a minimum acceptable heel fillet (1/2 H). If the toe fillet is not there anyway, or is redundant, then you have improved the reliability to the equivalent "good" pad dimension.

-----Original Message-----
From: TechNet [mailto:[log in to unmask]] On Behalf Of Phil Bavaro
Sent: Wednesday, August 24, 2011 8:39 PM
To: [log in to unmask]
Subject: Re: [TN] Gull Wing Lead - no heel fillet

Thanks Bev.  Not under pressure, just surprised anyone would suggest hi rel w/o heel fillets!

  

----- Original Message -----
From: Bev Christian [mailto:[log in to unmask]]
Sent: Wednesday, August 24, 2011 05:08 PM
To: 'TechNet E-Mail Forum' <[log in to unmask]>; Bavaro, Phillip @ MWG - TW
Subject: RE: [TN] Gull Wing Lead - no heel fillet


Phil,
First, I am a chemist not a mech eng.  
Second, I never heard of the Steinburg equation before your e-mail.  
Third, the companies I have worked for (well the 2 big, reputable ones)
built and build class 2 product.

That being said, I googled Steinburg equation and came across the abstract
below.  Sounds to me that I would not be wanting to hang my hat, let alone
my product, on an equation, Steinburg or Guinan-Steinburg that is a tad too
simplistic.

Sounds to me that what you really need is thermal cycling, but my guess is
that you are under some time pressure for a decision.  I do not envy you.

My 2.0242 cents.
Bev
RIM

Shear modulus at all pressures: Generalized Guinan-Steinberg formula 
Purchase 

References and further reading may be available for this article. To view
references and further reading you must purchase this article.


Leonid Burakovsky, a,  and Dean L. Prestona, 

Los Alamos National Laboratory, Los Alamos, NM 87545, USA

Available online 21 August 2006. 

Abstract
The Guinan-Steinberg (GS) formula for the shear modulus at all pressures is
widely used in material strength studies. As we demonstrate here, the GS
formula predicts a value for the shear modulus that is higher than its
actual value at low to moderate compressions, even if it has the correct
ultrahigh pressure limit. We show that the reason for this shortcoming is
insufficient negative curvature in the GS shear modulus as a function of
pressure, and propose a generalized GS formula which corrects this
inaccuracy. Both the (standard) GS formula and new generalized formula are
compared to the experimental data and ab initio calculations on the shear
moduli of gold, aluminum, cobalt and beryllium. While the standard formula
fails, the generalized one is in good agreement with data in each of the
four cases.


-----Original Message-----
From: TechNet [mailto:[log in to unmask]] On Behalf Of Phil Bavaro
Sent: Wednesday, August 24, 2011 4:58 PM
To: [log in to unmask]
Subject: [TN] Gull Wing Lead - no heel fillet

Hypothetical situation:

Gull wing lead, land pattern error, zero heel (also zero toe) fillet.
Hardware would not meet Class 3 workmanship requirements.

An equation is being used to decide if the pad to gull wing lead lap
solder joint is adequate to survive the intended thermal cycling
environment.

This would have been a question for Werner but I am sure there are
others here who can shed some light on this for me.

I know that part of the justification for why we have set our IPC
standards where they are is partly based on years of testing.

How could a mathematical calculation such as "Steinberg equation"
justify a lack of Class 3 gull wing lead heel fillet?

Any help is appreciated.










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