PCIe Benefits From AI, Despite Scaling Protocols


Key takeaways: PCIe remains a critical technology for non-AI processing. For AI, PCIe will be strengthened by scale-out, agentic AI, and even some scale-up. CXL is seeing uptake, and some even think it could participate in AI processing. PCIe has been the go-to network for most data traffic moving from a processor to devices located elsewhere, which is also what the new data... » read more

Chip Industry Week In Review


ECTC Panel-level packaging, hybrid bonding, new substrates, and fine-pitch interconnects topped the list of advanced packaging technologies at ECTC this week. Among the announcements: ASE launched an automated 310mm × 310mm panel-level packaging production line. Expected to enter production in the first half of 2027, the line is compatible with FOCoS and FOCoS-Bridge pa... » read more

Chip Industry Week In Review


Big Deals and Fundings Rapidus secured US$1.7B in a new funding round from the Japanese government and the private sector to ramp 2nm production by next year. Open AI announced a $110B in new funding, with $30B from Nvidia, $30B from Softbank and $50B from Amazon. In a $100B multi-year deal, Meta will power its AI infrastructure with up to 6GW of AMD's GPUs. SambaNova and Intel ar... » read more

Exploring The Latest Innovations In MIPI D-PHY And MIPI C-PHY


By Michael Nagib and Nuno Martins In the ever-evolving landscape of high-performance camera and display technologies, MIPI D-PHY and MIPI C-PHY specifications continue to lead the charge, setting benchmarks for low power, low latency, and high bandwidth data transmission. Building on the insights from our previous article, “Demystifying MIPI C-PHY/D–PHY Subsystem” – we now delve into... » read more

MIPI CSI-2 Provides The Backbone Of Automotive Sensor Networks


As the automotive sector accelerates toward higher levels of autonomy, the complexity and scale of sensor networks within vehicles are rapidly expanding. For semiconductor engineers, the challenge is not only to deliver high-performance silicon but also to ensure robust, scalable, and secure data transport across heterogeneous sensor arrays. The MIPI CSI-2 protocol has emerged as the de facto s... » read more

Exploring The Latest Innovations In MIPI D-PHY And MIPI C-PHY


Introduction  In the ever-evolving landscape of high-performance camera and display technologies, MIPI D-PHY™ and MIPI C-PHY™ specifications continue to lead the charge, setting benchmarks for low power, low latency, and high bandwidth data transmission. Building on the insights from our previous article, “Demystifying MIPI C-PHY/D–PHY Subsystem” – ... » read more

MIPI in FPGAs for Mobile-Influenced Devices


A new wave of applications for mobile-influenced devices, using technology initially designed for mobile devices, demand high-resolution, high-frame-rate streaming data from vision sensors, especially with the rise of AI inference models performing real-time scene and object classification. These applications include automotive, home automation displays, medical device displays, survei... » read more

Enabling Next-Generation Automotive Zonal Architecture With MIPI


The evolution of automotive architecture has followed three key stages: distributed architecture, domain-centralized architecture, and emerging zonal architecture. Each stage reflects advancements in functionality, complexity, and efficiency. Distributed architecture, prevalent in early vehicles, relied on numerous function-specific Electronic Control Units (ECUs). While effective for modularit... » read more

MIPI In Next Generation Of AI IoT Devices At The Edge


The history of data processing begins in the 1960s with centralized on-site mainframes that later evolved into distributed client servers. In the beginning of this century, centralized cloud computing became attractive and began to gain momentum, becoming one of the most popular computing tools today. In recent years however, we have seen an increase in the demand for processing at the edge or ... » read more

Deployment Of MIPI In Ultra-Low-Power Streaming Sensors


By Mahmoud ElBanna and Brian Lenkowski Streams of data from higher-speed sensors pose throughput and latency challenges for designers. However, optimizing a design for those criteria can come at the expense of increased power consumption if not conceived and executed carefully. A device like a high-resolution, high-frame-rate home security camera in a non-wired application requiring frequent... » read more

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