Shedding More Light On Photonics For Multi-Die Systems


By Kenneth Larsen and Twan Korthorst Photonics harness the speed of light for fast, low-power, high-capacity data transfer. A tremendous amount of data needs to be moved swiftly across different components in a multi-die system. Considering this, exploiting the advantages of light is one way to mitigate heat dissipation and energy consumption concerns while delivering fast data transmission.... » read more

Accelerated Optimization With IC Compiler II


Efficient optimization is a necessary, yet challenging aspect of the physical implementation flow. IC Compiler II and the underlying physical optimization engines have been re-thought and re-architected to address these growing challenges. Click here to read more. » read more

Blog Review: Dec. 20


Siemens' Huw Geddes finds that the flexibility offered by the RISC-V ISA can introduce further verification and validation requirements to ensure that the combination of extensions and customization not just works but does not break anything else while delivering expected performance, plus looks at how processor trace can help. Cadence's Gustavo Araujo explains the various optimizations in t... » read more

Fabs Begin Ramping Up Machine Learning


Fabs are beginning to deploy machine learning models to drill deep into complex processes, leveraging both vast compute power and significant advances in ML. All of this is necessary as dimensions shrink and complexity increases with new materials and structures, processes, and packaging options, and as demand for reliability increases. Building robust models requires training the algorithms... » read more

Proprietary Vs. Commercial Chiplets


Large chipmakers are focusing on chiplets as the best path forward for integrating more functions into electronic devices. The challenge now is how to pull the rest of the chip industry along, creating a marketplace for third-party chiplets that can be chosen from a menu using specific criteria that can speed time to market, help to control costs, and behave as reliably as chiplets developed in... » read more

Smart Manufacturing Advances The Next Generation Of Semiconductor Chips


Semiconductor devices are ubiquitous in our everyday lives and foundational to today’s communication, education, manufacturing, health, and transportation industries. From the moment our phone’s alarm clock wakes us up to unwinding by streaming our favorite shows, it’s difficult to imagine modern life without the devices that semiconductors enable. To keep pace with performance and ... » read more

Chip Industry Week In Review


By Jesse Allen, Gregory Haley, and Liz Allan Synopsys acquired Imperas, pushing further into the RISC-V world with Imperas' virtual platform technology for verifying and emulating processors. Synopsys has been building up its RISC-V portfolio, starting with ARC-V processor IP and a full suite of tools introduced last month. The first high-NA EUV R&D center in the U.S. will be built at... » read more

Using Real Workloads To Assess Thermal Impacts


Thermal analysis is being driven much further left in the design, fueled by demand for increased transistor density and more features on a chip or in a package, as well as the unique ways the various components may be exercised or stressed. However, getting a clear picture of the thermal activity in advanced-node chips and packages is extremely complex, and it can vary significantly by use c... » read more

Data Formats For Inference On The Edge


AI/ML training traditionally has been performed using floating point data formats, primarily because that is what was available. But this usually isn't a viable option for inference on the edge, where more compact data formats are needed to reduce area and power. Compact data formats use less space, which is important in edge devices, but the bigger concern is the power needed to move around... » read more

Advanced Design Debug Demands Integrated Verification Management


Design verification has been the dominant portion of chip development for years, and the challenges grow bigger every day. Single dies continue to grow in transistor count and complexity. Advanced techniques such as 2.5D and 3D multi-die systems and emerging technologies such as wafer-scale integration pack even more transistors and functionality into a single device. This situation has created... » read more

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