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  <title>PCB Libraries Forum : Footprints for High Vibration and Shock</title>
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  <description><![CDATA[This is an XML content feed of; PCB Libraries Forum : Footprints / Land Patterns : Footprints for High Vibration and Shock]]></description>
  <pubDate>Thu, 09 Apr 2026 09:21:51 +0000</pubDate>
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   <title><![CDATA[Footprints for High Vibration and Shock : Not that I&amp;#039;ve seen.IPC gathers...]]></title>
   <link>https://www.PCBLibraries.com/forum/footprints-for-high-vibration-and-shock_topic2568_post10487.html#10487</link>
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    <![CDATA[<strong>Author:</strong> <a href="https://www.PCBLibraries.com/forum/member_profile.asp?PF=3">Tom H</a><br /><strong>Subject:</strong> 2568<br /><strong>Posted:</strong> 07 Nov 2019 at 7:46am<br /><br />Not that I've seen.&nbsp;<div><br></div><div>IPC gathers information from the global electronics industry and formalizes the data into documents that are called Standards or Guidelines.&nbsp;</div><div><br></div><div>Most companies who run stress tests consider that investment confidential and proprietary and do not disclose that data to the public as it gives them a competitive edge in the industry.&nbsp;</div><div><br></div><div>Also, I have never known IPC to run their own PCB fabrication and assembly for the purpose of evaluation of solder joints, stress and thermal cycle testing. That's not their business model and they don't have the expertise to run those tests and report their findings.&nbsp;</div><div><br></div><div>Example: The IPC-7351 Land Pattern Guideline does not provide any proof that the solder joint goals really work. The goals were an educated guess by Dieter Bergman and other top employees and contributors of the 7351 Guideline, including myself. Now after 20 years on the Land Pattern Committee, I totally disagree with 7351 solder joint goals and I follow the IPC-J-STD-001 standard for land pattern calculation solder joint goals.&nbsp;</div><div><br></div><div>I wish you the best of luck finding the test results you are looking for.&nbsp;</div><div><br></div>]]>
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   <pubDate>Thu, 07 Nov 2019 07:46:54 +0000</pubDate>
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   <title><![CDATA[Footprints for High Vibration and Shock : Thanks Tom :)Do you know if they...]]></title>
   <link>https://www.PCBLibraries.com/forum/footprints-for-high-vibration-and-shock_topic2568_post10485.html#10485</link>
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    <![CDATA[<strong>Author:</strong> <a href="https://www.PCBLibraries.com/forum/member_profile.asp?PF=14396">tompope</a><br /><strong>Subject:</strong> 2568<br /><strong>Posted:</strong> 06 Nov 2019 at 8:07pm<br /><br />Thanks Tom :)<div><br></div><div>Do you know if they publish any papers or test reports?</div>]]>
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   <pubDate>Wed, 06 Nov 2019 20:07:04 +0000</pubDate>
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   <title><![CDATA[Footprints for High Vibration and Shock : Originally, the IPC-7351 Most...]]></title>
   <link>https://www.PCBLibraries.com/forum/footprints-for-high-vibration-and-shock_topic2568_post10482.html#10482</link>
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    <![CDATA[<strong>Author:</strong> <a href="https://www.PCBLibraries.com/forum/member_profile.asp?PF=3">Tom H</a><br /><strong>Subject:</strong> 2568<br /><strong>Posted:</strong> 06 Nov 2019 at 7:03am<br /><br />Originally, the IPC-7351 Most Density was the solution for high shock and vibration, but 8 years ago the Japanese did tests on the Nominal and Most Density Levels and discovered that there was no difference between the two levels. The Nominal Density Level held up to all the tests and the Most Density Level was obsoleted in the Japanese industry as it put too much solder on the joints.&nbsp;<div><br></div><div>I do not know of a standard that defines&nbsp;<span style=": rgb251, 251, 253;">mechanical shocks and vibration. But here is the link to the IPC standard tree of documents.&nbsp;</span></div><div><span style=": rgb251, 251, 253;"><br></span></div><div><a href="https://www.ipc.org/4.0_Knowledge/4.1_Standards/SpecTree.pdf" target="_blank" rel="nofollow">https://www.ipc.org/4.0_Knowledge/4.1_Standards/SpecTree.pdf</a>&nbsp;</div><div><br></div>]]>
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   <pubDate>Wed, 06 Nov 2019 07:03:48 +0000</pubDate>
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   <title><![CDATA[Footprints for High Vibration and Shock : Hi Everyone,I was wondering if...]]></title>
   <link>https://www.PCBLibraries.com/forum/footprints-for-high-vibration-and-shock_topic2568_post10481.html#10481</link>
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    <![CDATA[<strong>Author:</strong> <a href="https://www.PCBLibraries.com/forum/member_profile.asp?PF=14396">tompope</a><br /><strong>Subject:</strong> 2568<br /><strong>Posted:</strong> 06 Nov 2019 at 2:46am<br /><br />Hi Everyone,<div><br></div><div>I was wondering if there are any standards or guidelines for designing footprints to withstand mechanical shocks and vibration?</div><div><br></div><div>I've read through all the Land Pattern Expert documentation, IPC 7351b and anything else I can find but the focus tends to be on a footprint's suitability for assembly and manufacture rather than withstanding mechanical stress during operation.</div><div><br></div><div>Ideally I'm looking for a standard or study relating component size and copper pad area to vibration/shock withstand.</div><div><br></div><div>I'm aware of other design techniques to mitigate vibration/shock susceptibility, I'm really just interested in knowing if there's been any work in this area for PCB SMT footprints.<br><div><br></div></div><div>Cheers,</div><div>-Tom</div>]]>
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   <pubDate>Wed, 06 Nov 2019 02:46:20 +0000</pubDate>
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