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    <title>Model-Based Design Toolbox (MBDT)のトピックHow to read cell voltage with LTC development kits via S32K312EVB-Q172 (MBDT)</title>
    <link>https://community.nxp.com/t5/Model-Based-Design-Toolbox-MBDT/How-to-read-cell-voltage-with-LTC-development-kits-via/m-p/2061872#M10132</link>
    <description>&lt;P&gt;Hello,&lt;/P&gt;&lt;P&gt;I’m working on a project using an NXP &lt;STRONG&gt;S32K312EVB-Q172&lt;/STRONG&gt; board to measure cell voltages with a &lt;STRONG&gt;LTC6811&lt;/STRONG&gt; battery monitoring IC. My setup is as follows:&lt;/P&gt;&lt;OL&gt;&lt;LI&gt;&lt;STRONG&gt;LTC6811&lt;/STRONG&gt; measures 12 “cells” (actually 12 series resistors for testing).&lt;/LI&gt;&lt;LI&gt;The &lt;STRONG&gt;LTC6811&lt;/STRONG&gt; outputs data over &lt;STRONG&gt;isoSPI&lt;/STRONG&gt; to a &lt;STRONG&gt;LTC6820&lt;/STRONG&gt;.&lt;/LI&gt;&lt;LI&gt;The &lt;STRONG&gt;LTC6820&lt;/STRONG&gt; then translates isoSPI to standard &lt;STRONG&gt;SPI&lt;/STRONG&gt;, which is connected to the &lt;STRONG&gt;S32K312&lt;/STRONG&gt; board.&lt;/LI&gt;&lt;LI&gt;On the S32K312, I want to run a Simulink model using &lt;STRONG&gt;NXP’s Model-Based Design Toolbox&lt;/STRONG&gt;&amp;nbsp;to read the SPI data from the LTC6811 (through LTC6820) and eventually process/display it.&lt;/LI&gt;&lt;/OL&gt;&lt;P&gt;&lt;SPAN&gt;I made the connection between the LTC cards and used the pins I found from the pin map of S32K312 in the first image for the wiring between LTC6820 and S32K312.&amp;nbsp;However, I am a little confused about the simulink side.&amp;nbsp;First of all, I would like to ask if this process is possible.&amp;nbsp;Secondly, I would appreciate it if you could give me some help or ideas on how to do it.&lt;BR /&gt;&lt;BR /&gt;Thank you in advance for any guidance you can provide.&lt;BR /&gt;&lt;/SPAN&gt;&lt;/P&gt;</description>
    <pubDate>Fri, 14 Mar 2025 07:43:55 GMT</pubDate>
    <dc:creator>Berke_E</dc:creator>
    <dc:date>2025-03-14T07:43:55Z</dc:date>
    <item>
      <title>How to read cell voltage with LTC development kits via S32K312EVB-Q172 (MBDT)</title>
      <link>https://community.nxp.com/t5/Model-Based-Design-Toolbox-MBDT/How-to-read-cell-voltage-with-LTC-development-kits-via/m-p/2061872#M10132</link>
      <description>&lt;P&gt;Hello,&lt;/P&gt;&lt;P&gt;I’m working on a project using an NXP &lt;STRONG&gt;S32K312EVB-Q172&lt;/STRONG&gt; board to measure cell voltages with a &lt;STRONG&gt;LTC6811&lt;/STRONG&gt; battery monitoring IC. My setup is as follows:&lt;/P&gt;&lt;OL&gt;&lt;LI&gt;&lt;STRONG&gt;LTC6811&lt;/STRONG&gt; measures 12 “cells” (actually 12 series resistors for testing).&lt;/LI&gt;&lt;LI&gt;The &lt;STRONG&gt;LTC6811&lt;/STRONG&gt; outputs data over &lt;STRONG&gt;isoSPI&lt;/STRONG&gt; to a &lt;STRONG&gt;LTC6820&lt;/STRONG&gt;.&lt;/LI&gt;&lt;LI&gt;The &lt;STRONG&gt;LTC6820&lt;/STRONG&gt; then translates isoSPI to standard &lt;STRONG&gt;SPI&lt;/STRONG&gt;, which is connected to the &lt;STRONG&gt;S32K312&lt;/STRONG&gt; board.&lt;/LI&gt;&lt;LI&gt;On the S32K312, I want to run a Simulink model using &lt;STRONG&gt;NXP’s Model-Based Design Toolbox&lt;/STRONG&gt;&amp;nbsp;to read the SPI data from the LTC6811 (through LTC6820) and eventually process/display it.&lt;/LI&gt;&lt;/OL&gt;&lt;P&gt;&lt;SPAN&gt;I made the connection between the LTC cards and used the pins I found from the pin map of S32K312 in the first image for the wiring between LTC6820 and S32K312.&amp;nbsp;However, I am a little confused about the simulink side.&amp;nbsp;First of all, I would like to ask if this process is possible.&amp;nbsp;Secondly, I would appreciate it if you could give me some help or ideas on how to do it.&lt;BR /&gt;&lt;BR /&gt;Thank you in advance for any guidance you can provide.&lt;BR /&gt;&lt;/SPAN&gt;&lt;/P&gt;</description>
      <pubDate>Fri, 14 Mar 2025 07:43:55 GMT</pubDate>
      <guid>https://community.nxp.com/t5/Model-Based-Design-Toolbox-MBDT/How-to-read-cell-voltage-with-LTC-development-kits-via/m-p/2061872#M10132</guid>
      <dc:creator>Berke_E</dc:creator>
      <dc:date>2025-03-14T07:43:55Z</dc:date>
    </item>
    <item>
      <title>Re: How to read cell voltage with LTC development kits via S32K312EVB-Q172 (MBDT)</title>
      <link>https://community.nxp.com/t5/Model-Based-Design-Toolbox-MBDT/How-to-read-cell-voltage-with-LTC-development-kits-via/m-p/2063054#M10138</link>
      <description>&lt;P&gt;Hello,&lt;/P&gt;
&lt;P&gt;I can't see any problem why your application shouldn't work. As a starting point, I recommend you to check the following webinar:&amp;nbsp;&lt;A href="https://www.nxp.com/design/training/introducing-the-spi-communication-blocks-from-nxp-mbdt:TIP-INTRODUCING-THE-SPI-COMMUNICATION-BLOCKS-FROM?_gl=1*dqfpyt*_ga*NjE3MzY5MjEyLjE3MzA5ODQyMTY.*_ga_WM5LE0KMSH*MTc0MjIxMTY4NC4xMzkuMS4xNzQyMjExNzgyLjAuMC4w" target="_blank" rel="noopener"&gt;Introducing the SPI Communication Blocks from NXP MBDT&lt;/A&gt;&amp;nbsp;. It describes in great detail the SPI communication and how to implement it in Simulink for a S32K1xx board.&amp;nbsp;&lt;/P&gt;
&lt;P&gt;On this community, you have valuable resources available to get an insight into MBDT workflow.:&lt;/P&gt;
&lt;UL&gt;
&lt;LI&gt;&lt;A class="lia-link-navigation" href="https://community.nxp.com/t5/NXP-Model-Based-Design-Tools/tkb-p/mbdt%40tkb" target="_blank" rel="noopener"&gt;NXP Model-Based Design Tools Knowledge Base&lt;/A&gt;&lt;/LI&gt;
&lt;LI&gt;&lt;STRONG&gt;Beginner's Guide for Model-Based Design Toolbox&lt;/STRONG&gt;&lt;/LI&gt;
&lt;LI&gt;&lt;STRONG&gt;Webinar&lt;/STRONG&gt;&lt;/LI&gt;
&lt;/UL&gt;
&lt;P&gt;All of the above can be found on the right of the main page.&lt;/P&gt;
&lt;P&gt;Please let me know if these are helpful and don't hesitate to contact in case you experience further problems.&lt;/P&gt;
&lt;P&gt;Best regards,&lt;/P&gt;
&lt;P&gt;Sorin Ioanid Bancila&lt;/P&gt;</description>
      <pubDate>Mon, 17 Mar 2025 13:43:19 GMT</pubDate>
      <guid>https://community.nxp.com/t5/Model-Based-Design-Toolbox-MBDT/How-to-read-cell-voltage-with-LTC-development-kits-via/m-p/2063054#M10138</guid>
      <dc:creator>SorinIBancila</dc:creator>
      <dc:date>2025-03-17T13:43:19Z</dc:date>
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