VeriSilicon IP Image Signal Processor Achieves IEC 61508 Industrial Functional Safety Certification


It is the company’s first image processor to own a double international functional safety certificationwhat makes it the ideal device for safety-critical industrial and automotive applications

VeriSilicon (688521.SH), the leading company offering a silicon platform as a service (SiPaaS®), today announced that its ISP8000L-FS V5.0.0 IP Image Signal Processor (ISP), has achieved IEC 61508:2011 SIL 2 Industrial Functional Safety Certification as a Safety Out of Context Element (SEooC ). The eminent security consulting firm ResilTech issued the certification. Already ISO 26262 ASIL B certified, the ISP8000L-FS V5.0.0 device is VeriSilicon’s first image processor to be declared compliant with two international functional safety standards.

The ISP8000L-FS V5.0.0 was designed for advanced and high performance camera applications, and supports single 4K@60fps or dual 4K@30fps video acquisition dual cameras. The system also includes HDR (High Dynamic Range) processing, 2D/3D noise reduction technologies and built-in functional safety mechanisms.

The ISP8000L-FS V5.0.0 is compliant with both functional safety standards ISO 26262 and IEC 61508, which represents a major step in expanding VeriSilicon’s portfolio of functional safety image processors. Opting for these ISP-certified processors will allow customers to accelerate their product development process by reducing the risk of systematic failures and random hardware failures in safety-critical industrial and automotive applications.

“In the context of rapidly expanding manufacturing process automation using AI technologies when critical decisions are at stake, functional safety of electronics is gaining even more importance,” Wei said. -Jin Dai, senior vice president and general manager of the IP division at VeriSilicon. “Our ISO 26262 and IEC 61508 compliant image signal processors can be used in industrial equipment, automotive and smart manufacturing while meeting increasingly stringent safety requirements. VeriSilicon is having its widely adopted portfolio of Glass to Glass smart pixel processing IP (camera-in to display-out) evaluated for functional safety to enable advancements in smart automotive manufacturing. »

About VeriSilicon

VeriSilicon Microelectronics (Shanghai) Co., Ltd. (VeriSilicon, 688521.SH) is committed to providing customers with customized, one-stop, platform-based silicon services and semiconductor IP licensing services, leveraging its semiconductor internal IP. Under its unique SiPaaS (Silicon Platform as a Service) business model and based on its comprehensive IP portfolio, VeriSilicon can create silicon products from definition to testing and packaging in a very short time. ; in addition, the Company provides high-performance and cost-effective semiconductor alternative products for IDMs, Fabless, system vendors (OEM/ODM), large internet companies and cloud service providers, etc. . VeriSilicon’s businesses cover consumer electronics, automotive electronics, computers and peripherals, industrial, data processing, Internet of Things and other applications.

VeriSilicon offers a variety of custom silicon solutions, including high definition video, high definition audio and voice, in-vehicle infotainment, video surveillance, IoT connectivity, smart wearables, high-end application processors, video transcoding acceleration and intelligent pixel processing, etc. VeriSilicon also offers six types of internal processor IPs, namely GPU IP, NPU IP, VPU IP, DSP IP, ISP IP, and Display Processor IP, and over 1,400 analog and mixed signal IPs and RF IPs.

Founded in 2001 and based in Shanghai (China), VeriSilicon has 7 design and R&D centers in China and the United States, as well as 11 sales and customer service offices around the world. VeriSilicon currently has over 1,200 employees.

The text of the press release resulting from a translation should in no way be considered official. The only authentic version of the press release is that of the press release in its original language. The translation will always have to be compared with the source text, which will set a precedent.



Source link -88