Different Roles, Different Tools


A question often posed is: does the use of tools and processes change as you go from block level to subsystem and chip level and as you add software to your system on chip (SoC)? And of course, the answer is that things change a lot. The primary differences between designing individual blocks and designing a big chip are that blocks tend to be designed by individual engineers or very small g... » read more

Enabling Cost-Effective, High-Performance Die-to-Die Connectivity


System advances in accelerated computing platforms such as CPUs, GPUs and FPGAs, heterogeneous systems on chip (SoCs) for AI acceleration and high-speed networking/interconnects have all pushed chip integration to unprecedented levels. This requires more complex designs and higher levels of integration, larger die sizes and adopting the most advanced geometries as quickly as possible. Facing th... » read more

Easier Low Power ICs With Reference Flows


By Terence Chen and Alexander Volkov Power-sensitive ICs for wearables and internet of things (IoT) products are in demand for markets ranging from automotive to military/aerospace to consumer. As with most ICs, cost and time-to-market pressures are important determiners of success. Reducing risk by using a vendor-created reference flow can confer a serious business advantage. Reference f... » read more

Building Fugaku, The World’s Fastest Supercomputer


My fascination with computers started back in 1976. I remember it well: I was in the 8th grade, and I’d just returned to Japan from a stint in the US. One day I found myself in Tokyo’s Akihabara area, otherwise known as ‘Electric Town.’ This place was and still is the tech heartbeat of Japan, bright and buzzing with all the latest gadgets. On this particular day, among the displays of ... » read more

‘Speak No Evil’ And SoC Problems


In the first of this blog trilogy, 'Are you listening,' I looked at not waiting for hindsight to be wise after the event, instead make use of what’s available and act ahead of time. In the second, 'See no evil,' we bizarrely saw how Sir Francis Drake, Admiral Nelson and Clint Eastwood all had something in common with Mizaru, one of the 3 wise monkeys (Kikazaru and Iwazaru being the other two)... » read more

Simulation Of Semiconductor Edge-Emitting Lasers


By Peter Hallschmid and Dylan McGuire The demand for photonics technology continues to grow with popular laser applications including semiconductor optical amplifiers (SOAs), Fabry-Perot (FP) devices and distributed feedback (DFB) lasers. The next episode of Ansys’ photonics webinar series outlines the latest Ansys Lumerical flows and products for simulating and generating compact mod... » read more

Trustworthy Electronics


Global supplier networks are a key feature of the development of integrated electronic components today. Even in times of ever more complex trade relationships, supply chains must still function effectively. At the same time, it is necessary to achieve the technological advances required for the development of new products and maintain technological sovereignty. In view of the increasing dig... » read more

Data Center Scaling Requires New Interface Architectures


You can pick your favorite data points, but the bottom line is global data traffic is growing at an exponential rate driven by a confluence of megatrends. 5G networks are making possible billions of AI-powered IoT devices untethered from wired networks. Machine learning’s voracious appetite for enormous data sets is skyrocketing. Data intensive video streaming for both entertainment and busin... » read more

Essential DDR5 Features Designers Must Know


JEDEC has defined and developed three DDR standards – standard DDR, mobile DDR, and graphic DDR – to help designers meet their memory requirements. DDR5 will support a higher data rate (up to 6400 Mb/s) at a lower I/O Voltage (1.1V) and a higher density (based on 16Gb DRAM dies) than DDR4. DDR5 DRAMs and dual-inline memory modules (DIMMs) are expected to hit the market in 2020. This article... » read more

Is Common Resistance Affecting Your Analog Design Reliability And Performance?


Integrated circuit (IC) design reliability has always been important and essential to market success. After all, if no one could count on your product to operate as designed, and for as long as intended, there wouldn’t be many buyers! However, given the increase in the types and complexity of design applications, coupled with the increasing technological challenge of manufacturing at advance... » read more

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