<?xml version="1.0" encoding="UTF-8" ?>
<?xml-stylesheet type="text/xsl" href="https://community.element14.com/cfs-file/__key/system/syndication/rss.xsl" media="screen"?><rss version="2.0" xmlns:dc="http://purl.org/dc/elements/1.1/"><channel><title>Multicore MCUs Gain Automotive Momentum</title><link>https://community.element14.com/technologies/automotive/w/documents/9086/multicore-mcus-gain-automotive-momentum</link><description /><dc:language>en-US</dc:language><generator>Telligent Community 12</generator><item><title>Multicore MCUs Gain Automotive Momentum</title><link>https://community.element14.com/technologies/automotive/w/documents/9086/multicore-mcus-gain-automotive-momentum</link><pubDate>Fri, 08 Oct 2021 04:09:25 GMT</pubDate><guid isPermaLink="false">93d5dcb4-84c2-446f-b2cb-99731719e767:71cbbd2d-9ae6-47ae-9f9f-d4fa4a247ebd</guid><dc:creator>iLOVEautomotive</dc:creator><comments>https://community.element14.com/technologies/automotive/w/documents/9086/multicore-mcus-gain-automotive-momentum#comments</comments><description>Current Revision posted to Documents by iLOVEautomotive on 10/8/2021 4:09:25 AM&lt;br /&gt;
&lt;p style="margin:0;margin-top:0pt;"&gt;The move to embedded multicore is gaining&amp;nbsp; momentum, as engineers widen the adoption of the technology beyond its&amp;nbsp; long-time roots in safety-related applications, to new products that&amp;nbsp; simply need more raw processing power.&lt;/p&gt;&lt;p style="margin:0;padding:0px;"&gt;&amp;nbsp;&lt;/p&gt;&lt;p style="margin:0;"&gt;Ray Cornyn, director of automotive microelectronics for &lt;a class="jive-link-external-small" href="http://www.freescale.com/" rel="nofollow ugc noopener" target="_blank"&gt;Freescale Semiconductor&lt;/a&gt;,&amp;nbsp; told an audience of Design News Radio listeners that approximately 40&amp;nbsp; percent of automotive braking and stability control systems now use&amp;nbsp; multicore, and the technology has begun to move into medical and&amp;nbsp; industrial applications, as well. He made the comments on the DN Radio&amp;nbsp; show, &amp;quot;&lt;a class="jive-link-external-small" href="http://www.designnews.com/radio.asp?webinar_id=29744" rel="nofollow ugc noopener" target="_blank"&gt;MCUs Grow Up: The Next Generation of Multicore Controllers&lt;/a&gt;&amp;quot; last week.&lt;/p&gt;&lt;p style="margin:0;padding:0px;"&gt;&amp;nbsp;&lt;/p&gt;&lt;p style="margin:0;"&gt;&amp;quot;Safety is one of the big drivers, but throughput and performance are&amp;nbsp; the other areas,&amp;quot; he said. &amp;quot;Some of the new products that we&amp;#39;ve&amp;nbsp; introduced for the industrial market, predominantly for process control&amp;nbsp; but also for medical, are multicore devices.&amp;quot;&lt;/p&gt;&lt;p style="margin:0;padding:0px;"&gt;&amp;nbsp;&lt;/p&gt;&lt;p style="margin:0;"&gt;Multicore microcontroller units (MCUs), which consist of a single die&amp;nbsp; with two or more processor cores on board, have been used as an&amp;nbsp; electronic safety check device for more than a decade, Cornyn said. The&amp;nbsp; technology is well suited for such applications, because a dual-core&amp;nbsp; arrangement allows for one core to check the other, or for the system to&amp;nbsp; run identical code and then compare results. It has increased in&amp;nbsp; popularity of late, especially as engineers anticipate the introduction&amp;nbsp; of an ISO 26262 standard that ensures safe functionality of MCUs in&amp;nbsp; vehicles.&lt;/p&gt;&lt;p style="margin:0;padding:0px;"&gt;&amp;nbsp;&lt;/p&gt;&lt;p style="margin:0;"&gt;&amp;quot;It&amp;#39;s been around since the late 1990s for vehicle stability control&amp;nbsp; and braking,&amp;quot; Cornyn said. &amp;quot;But it&amp;#39;s starting to move into powertrain&amp;nbsp; controls as more of those systems become drive-by-wire.&amp;quot;&lt;/p&gt;&lt;p style="margin:0;"&gt;Still, multicore is beginning to move beyond the safety realm,&amp;nbsp; even&amp;nbsp; in the automobile. Cornyn said that Freescale has recently seen&amp;nbsp; multicore being used in hybrid vehicles to run internal combustion&amp;nbsp; engines, transmissions, battery chargers, electric motors, and&amp;nbsp; inverters. In those applications, the reason for using multicore is&amp;nbsp; performance-related, rather than safety-related.&lt;/p&gt;&lt;p style="margin:0;padding:0px;"&gt;&amp;nbsp;&lt;/p&gt;&lt;p style="margin:0;"&gt;&amp;quot;You don&amp;#39;t have [just] a single control loop in those vehicles,&amp;quot;&amp;nbsp; Cornyn said. &amp;quot;You have multiple control loops, and multicore processors&amp;nbsp; are very good at handling those.&amp;quot;&lt;/p&gt;&lt;p style="margin:0;"&gt;Cornyn told the Design News audience that a dual-core processor won&amp;#39;t&amp;nbsp; necessarily get twice the throughput of a comparable single core, but&amp;nbsp; it will get 1.6 or 1.8 times as much performance. The important point&amp;nbsp; for designers to remember, he said, is that they need to make their&amp;nbsp; tasks run as independently as possible, so they don&amp;#39;t need to get data&amp;nbsp; from neighboring cores. He added that commercial software tools can help&amp;nbsp; engineers look at their code to see how well it&amp;#39;s running in multicore&amp;nbsp; environments.&lt;/p&gt;&lt;p style="margin:0;padding:0px;"&gt;&amp;nbsp;&lt;/p&gt;&lt;p style="margin:0;"&gt;Cornyn acknowledged that the technology is inherently more complex.&amp;nbsp; &amp;quot;The first time you do it, it does require additional engineering work.&amp;quot;&lt;/p&gt;&lt;p style="margin:0;padding:0px;"&gt;&amp;nbsp;&lt;/p&gt;&lt;p style="margin:0;padding:0px;"&gt;&amp;nbsp;&lt;/p&gt;&lt;p style="margin:0;"&gt;&lt;strong&gt;Interested? &lt;a class="jive-link-external-small" href="http://www.designnews.com/document.asp?doc_id=233986&amp;amp;f_src=designnews_gnews" rel="nofollow ugc noopener" target="_blank"&gt;Keep reading&lt;/a&gt;&lt;/strong&gt;&lt;/p&gt;&lt;div style="clear:both;"&gt;&lt;/div&gt;

&lt;div style="font-size: 90%;"&gt;Tags: sp:freescale, automotive, mcu, multicore&lt;/div&gt;
</description></item></channel></rss>