{"id":6433,"date":"2018-04-11T09:47:59","date_gmt":"2018-04-11T08:47:59","guid":{"rendered":"https:\/\/engineernewsnetwork.com\/blog\/?p=6433"},"modified":"2018-04-11T09:47:59","modified_gmt":"2018-04-11T08:47:59","slug":"microsemi-achieves-qml-class-q-qualification-for-its-rtg4-high-speed-radiation-tolerant-fpgas","status":"publish","type":"post","link":"https:\/\/www.engineernewsnetwork.com\/blog\/microsemi-achieves-qml-class-q-qualification-for-its-rtg4-high-speed-radiation-tolerant-fpgas\/","title":{"rendered":"Microsemi achieves QML Class Q Qualification for its RTG4 high-speed radiation-tolerant FPGAs"},"content":{"rendered":"<span class=\"highlight highlight-blue\"><a href=\"http:\/\/www.microsemi.com\/products\/fpga-soc\/radtolerant-fpgas\/rtg4\" target=\"_blank\" rel=\"noopener\">Microsemi<\/a><\/span> announces its RTG4 high-speed signal processing radiation-tolerant field programmable gate arrays (FPGAs) have achieved Qualified Manufacturers List (QML) Class Q qualification by the Defense Logistics Agency (DLA).<\/p>\n<p>The qualification, which validates the quality and reliability of RTG4 FPGAs as well as the company&#8217;s qualification and manufacturing screening processes, enables easier design of Microsemi&#8217;s flash technology into space applications due to the streamlined process of working with QML-qualified products.<br \/>\n<script async src=\"\/\/pagead2.googlesyndication.com\/pagead\/js\/adsbygoogle.js\"><\/script><br \/>\n<ins class=\"adsbygoogle\" style=\"display: block; text-align: center;\" data-ad-layout=\"in-article\" data-ad-format=\"fluid\" data-ad-client=\"ca-pub-7565662001938327\" data-ad-slot=\"7585079586\"><\/ins><br \/>\n<script>\n     (adsbygoogle = window.adsbygoogle || []).push({});\n<\/script><br \/>\nTo achieve QML Class Q qualification, <span class=\"highlight highlight-blue\"><a href=\"https:\/\/engineernewsnetwork.com\/blog\/cesium-clocks-microsemi-portfolio-compliant-with-new-itu-standards-for-enhanced-primary-reference-clock\/\" target=\"_blank\" rel=\"noopener\">Microsemi<\/a><\/span> leveraged the results of its MIL-STD-883 Class B qualification, in which RTG4 FPGAs passed a series of environmental tests to determine resistance to deleterious effects of natural elements and conditions surrounding defence and space operations, as well as mechanical and electrical tests.<\/p>\n<p>Upon completion of the MIL-STD-883 Class B qualification, RTG4 units from multiple wafer lots successfully completed 1,000-hour high temperature life tests.<\/p>\n<p>As part of <span class=\"highlight highlight-blue\"><a href=\"https:\/\/engineernewsnetwork.com\/blog\/microsemis-polarfire-fpga\/\" target=\"_blank\" rel=\"noopener\">Microsemi<\/a><\/span>&#8216;s commitment to high reliability, these units were then taken through more high temperature life tests, exceeding the requirements of MIL-STD-883 Class B.<\/p>\n<p>The units have now successfully completed 4,000-hour high temperature life tests, again validating the high reliability of the company&#8217;s RTG4 flash cells in extreme conditions.<\/p>\n<p>As Microsemi is already a QML-V certified manufacturer of high reliability FPGAs for space applications, achieving the recent QML-Q qualification for its RTG4 FPGAs further strengthens its leadership position in the market and reflects the company&#8217;s focus on developing solutions to meet the increasing demands of modern satellite payloads.<\/p>\n<p>In addition to satellites, its RTG4 FPGAs are suited for applications including space launch vehicles, planetary orbiters and landers, and deep space probes.<\/p>\n<p>According to Euroconsult&#8217;s report titled, &#8220;Satellites to be Built and Launched by 2024,\u201d60% more satellites will be launched by 2024 versus the past decade. This increase is driven primarily by civilian government agencies as established space countries replace and expand their in-orbit satellite systems and more countries acquire their first operational satellite systems.<\/p>\n<p>The new QML qualification from DLA aligns with <span class=\"highlight highlight-blue\"><a href=\"https:\/\/engineernewsnetwork.com\/blog\/microsemi-announces-availability-of-switchtec-pcie-gen-4-switch-development-platform\/\" target=\"_blank\" rel=\"noopener\">Microsemi<\/a><\/span>&#8216;s focus on delivering industry-leading space-level capabilities, technologies and products.<\/p>\n<p>With the recent qualification for its RTG4 FPGAs, customers can now procure the spaceflight FPGAs screened to B-flow per MIL-STD-883 Class B specifications and Microsemi&#8217;s Extended Flow (E-Flow) using DLA&#8217;s standard microcircuit drawing (SMD) and designated part numbers. More information can be found in the company&#8217;s DLA Cross Reference Guide.<\/p>\n<p>The devices feature reprogrammable flash configuration, making prototyping easier for customers.<\/p>\n<p>RTG4&#8217;s reprogrammable flash technology offers complete immunity to radiation-induced configuration upsets in the harshest radiation environments, without the configuration scrubbing required with SRAM FPGA technology.<\/p>\n<p>RTG4 supports space applications requiring up to 150,000 logic elements, and each includes a LUT4 and a flip-flop with built-in triple module redundancy (TMR).<\/p>\n<p>The devices also features total ionising dose (TID) beyond 100 kilorads, as well as high system performance of up to 300 MHz without single event transient (SET) mitigation.<\/p>\n<p>The RTG4 Development Kit features <span class=\"highlight highlight-blue\"><a href=\"https:\/\/engineernewsnetwork.com\/blog\/microsemi-enables-terabit-otn-switching-cards-for-flexible-optical-networks\/\" target=\"_blank\" rel=\"noopener\">Microsemi<\/a><\/span>&#8216;s Libero SoC Design Suite, offering high productivity with its comprehensive, easy to learn, easy to adopt development tools for designing with Microsemi&#8217;s radiation-tolerant FPGAs.<\/p>\n<p>The suite integrates industry standard Synopsys SynplifyPro synthesis and Mentor Graphics ModelSim simulation with best-in-class constraints management, debug capabilities and secure production programming support.<\/p>\n","protected":false},"excerpt":{"rendered":"<p>Microsemi announces its RTG4 high-speed signal processing radiation-tolerant field programmable gate arrays (FPGAs) have achieved Qualified Manufacturers List (QML) Class Q qualification by the Defense Logistics Agency (DLA). The qualification, which validates the quality and reliability of RTG4 FPGAs as well as the company&#8217;s qualification and manufacturing screening processes, enables easier design of Microsemi&#8217;s flash &hellip;<\/p>\n","protected":false},"author":1,"featured_media":6435,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[104],"tags":[3582,2568,3581,597,3580,3577,1778,3578,3579],"class_list":["post-6433","post","type-post","status-publish","format-standard","has-post-thumbnail","","category-electronics","tag-deep-space-probes","tag-fpgas","tag-landers","tag-microsemi","tag-planetary-orbiters","tag-rtg4","tag-satellites","tag-signal-processing-radiation-tolerant-field-programmable-gate-arrays","tag-space-launch-vehicles"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.4 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>Microsemi achieves QML Class Q Qualification for its RTG4 high-speed radiation-tolerant FPGAs - 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