Great article with insights by Bernard Murphy at SemiWiki.com, "Arteris Frames Network-On-Chip Topologies in the Car." "... while there is plenty of complexity in evolving car architectures and the consequent impact on subsystem chip/chiplet designs, connected on-chip through both coherent and non-coherent networks, the intent behind these systems is quite clear. We just need to start thinking about total car system architecture rather than individual chip functions." #Arteris #NetworkOnChip #Automotive https://bit.ly/3UiKqls
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Here is a chiplet article from my conversation with SemiWiki.com's Bernard Murphy. "Moderating Our Open Chiplet Enthusiasm. A NoC Perspective" looks at some of the steps it will take to get to a genuinely open chiplet ecosystem. "Bottom line, chiplets are real, totally under control for the vertically integrated system builder, evolving rapidly under autocratic customers, and inching forward for everyone else." #Arteris #NetworkOnChip #SoCIntegrationAutomation #Automotive #SystemOnChip #Semiconductor #ArtificialintelligenceAI #PhysicallyAwareNoC #safety https://bit.ly/3I709xh
Moderating Our Open Chiplet Enthusiasm. A NoC Perspective - Semiwiki
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#Chandrayan3 #Missionchandrayan3 #semiconductor #vlsidesign #physicaldesign How semiconductor chips that helped to reach the moon and act as a medium of communication from earth? The main Two Tiny Chips are fabricated from the semiconductor lab(SCL) that owes a significant portion of mission success. 1)Vikram Chip 2)Camera Configurator Vikram processor – A small yet mighty chip that handles the critical task of navigation for the launch vehicle. Think of the Vikram processor like the spaceship’s GPS system. Just like how you use GPS in your car to find your way, the Vikram processor helps the spaceship know where to go. It takes in all the information about the journey and uses its super-smart calculations to make sure the spaceship is on the right path. The Vikram processor, with its radiation-hardened architecture, can withstand these challenges, guaranteeing accurate navigation during the crucial launch phase. Camera Configurator:- Camera Configurator is another marvel of semiconductor innovation. This chip is embedded within the Vikram lander and is responsible for processing the data captured by the lander’s cameras The breathtaking images of the Moon’s surface that we admire are a product of the Camera Configurator’s meticulous image processing algorithms. Given the limited bandwidth available for communication between the lander and Earth, the Camera Configurator plays a pivotal role in compressing and optimizing image data without compromising on quality.
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Prasad Dhond, VP of Wirebond BGA Products at Amkor Technology, Inc., recently shared insights into the evolving #automotiveindustry in the #blog post titled "Powering The Automotive Revolution: #AdvancedPackaging For Next-Generation Vehicle Computing." As #vehicles transition to centralized computing architectures, Dhond highlighted the advantages of splitting System-on-Chips (SoCs) into #chiplets, positioning it as a logical solution to address size and cost challenges. This strategic approach leverages advanced packaging techniques, enabling #automakers to deliver powerful and efficient #computing solutions for next-generation vehicles. To explore Dhond's insights further, you can read the full blog post here: https://lnkd.in/gGgX6KJt #semiconductorindustry #automotivetechnology #automotiveelectronics #semiconductor #chiplet #HBM #SoC #automotivemanufacturing #semiconductormanufacturing #microchip
Powering The Automotive Revolution: Advanced Packaging For Next-Generation Vehicle Computing
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Prasad Dhond, VP of Wirebond BGA Products at Amkor Technology, Inc., recently shared insights into the evolving #automotiveindustry in the #blog post titled "Powering The Automotive Revolution: #AdvancedPackaging For Next-Generation Vehicle Computing." As #vehicles transition to centralized computing architectures, Dhond highlighted the advantages of splitting System-on-Chips (SoCs) into #chiplets, positioning it as a logical solution to address size and cost challenges. This strategic approach leverages advanced packaging techniques, enabling #automakers to deliver powerful and efficient #computing solutions for next-generation vehicles. To explore Dhond's insights further, you can read the full blog post here: https://lnkd.in/gGgX6KJt #semiconductorindustry #automotivetechnology #automotiveelectronics #semiconductor #chiplet #HBM #SoC #automotivemanufacturing #semiconductormanufacturing #microchip
Powering The Automotive Revolution: Advanced Packaging For Next-Generation Vehicle Computing
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Insightful paper outlining the experience of developing a state-of-the-art smart #avionics display, including mixing modern #multicore processors with open architectures and lessons learned from the project: https://ow.ly/Hpxk30sC5T8 #SafetyCritical #WeAreWindRiver
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Voltus Voice: Breaking Ground with Voltus InsightAI—AI’s Debut in EM-IR Analysis
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Learn about how Cadence is breaking ground with Voltus InsightAI. Voltus InsightAI is an AI-driven in-design solution for early prediction of IR problems and automated IR drop closure. https://ow.ly/JO6o30sCjmn
Voltus Voice: Breaking Ground with Voltus InsightAI—AI’s Debut in EM-IR Analysis
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Learn about how Cadence is breaking ground with Voltus InsightAI. Voltus InsightAI is an AI-driven in-design solution for early prediction of IR problems and automated IR drop closure. https://ow.ly/1E3L30sC07s
Voltus Voice: Breaking Ground with Voltus InsightAI—AI’s Debut in EM-IR Analysis
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Dive into AI and ML innovations using Open vRAN with RAN Intelligent Controller (RIC). Read the white paper to discover the best methods for traffic steering and energy saving with cloud-native RAN systems accelerated by Intel architecture running Mavenir’s vRAN platform. https://intel.ly/3M1qXRK #MachineLearning #ArtificialIntelligence #CloudNative
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