Blogs - Semiconductor

June 12, 2024

How AI-enabled chipsets are different from general-purpose chipsets

AI-enabled chips are revolutionizing computing with their unique architecture and capabilities. These specialized chips, including GPUs, FPGAs, and ASICs, are designed to handle the high data processing requirements of AI workloads. By leveraging parallel processing, large memory capacities, and energy efficiency, AI chips outperform general-purpose chips in tasks such as image recognition, natural language processing, and autonomous vehicles, unlocking new frontiers in artificial intelligence and shaping the future of technology.

Blog
February 20, 2024

Everything to Know about SoC Development

System-on-a-Chip (SoC) integrates all components of a computer or electronic system into a single chip, enabling smaller, cheaper, and more power-efficient devices. This article explores what an SoC is, its architecture and development process, and the benefits it offers in embedded systems, IoT, and consumer electronics.

Blog
October 30, 2023

ASIC Prototyping and ASIC VS FPGA Which One to Consider?

Application-Specific Integrated Circuit (ASIC) Prototyping has developed into a crucial phase in ASIC projects due to the growing complexity of SoC designs, high tape-out costs, and shortened time-to-market. More frequently, ASIC design verification, hardware and software integration testing, and proof of concept presentations to prospective clients and investors involve the usage of Field-Programmable Gate Array (FPGA) development boards.

Blog
October 18, 2023

An Ultimate Guide: ASIC Design and Development Services

ASIC (Application Specific Integrated Circuit) is sometimes very expensive to build. Therefore, it is important to ensure controlled management of the ASIC design and development process. Each phase of the ASIC design and development process should be observed consciously. Precautions must be taken to check that the final ASIC design meets the given requirements and can smoothly work with real-world applications.

Blog
October 5, 2023

Transforming Solutions for Smart Buildings and Connected Devices Using latest EIC-i.MX93-210 platform

In today’s rapidly changing world, the Internet of Things (IoT) has emerged as a transformative force, spurring innovation and reshaping businesses. The i.MX93 platform, which has played an important role in defining IoT solutions for smart buildings and connected devices, is one of the major components underpinning this transition. In this blog, we will look at the possibilities of the i.MX93 and how it is revolutionizing the way we interact with our surroundings.

Blog
September 4, 2023

Semiconductor Companies Turn to AI to Design Future Chips

In 1965, Gordon Moore proposed Moore’s Law, which predicted that advances in processing will accelerate, shrink, and improve every two years. The desire for greater capabilities and higher performance is fueling innovation for the chip design business as we stand amid the digital revolution, which has fundamentally transformed the core notions of the electronics industry.

Blog
August 29, 2023

Audio Processing – Low Power Consumption

Power consumption is an increasingly important aspect of personal computers, and efforts are being made on both software and hardware fronts to reduce it. The CPU accounts for a significant portion of the power consumed, and to extend battery life, CPU power consumption must be reduced. This can be achieved by placing the CPU in a sleep state when idle or by reducing its processing load.

Blog
August 16, 2023

Typical Camera System for AI Powered Vision Solution

This blog explores the typical camera system for AI-powered vision solutions. It discusses Edge AI, stages of an Edge AI solution flow, camera subsystem components, and eInfochips’ expertise in custom camera solutions.

Blog
April 6, 2023

Guide To PCB Design Best Practices, Applications & Latest Trends For 2023

Printed Circuit Boards (PCBs) are the primary functional center for most electronics, replacing the old point-to-point wiring systems. PCBs use copper planes for grounding and powering circuits, providing many benefits, including shorter paths, improved circuit decoupling, and increased current carrying capacity.

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