|
||||||||||
Synopsys' New Embedded Vision Processor IP Delivers Industry-Leading 35 TOPS Performance for Artificial Intelligence SoCsDesignWare ARC EV7x Vision Processors with Deep Neural Network Accelerator Provide More Than 4X Performance Increase for AI-intensive Edge Applications MOUNTAIN VIEW, Calif. -- Sept. 16, 2019 -- Synopsys, Inc. (Nasdaq: SNPS) today introduced its new DesignWare® ARC® EV7x Embedded Vision Processor family with Deep Neural Network (DNN) accelerator for machine learning and artificial intelligence (AI) edge applications. The ARC EV7x Vision Processors integrate up to four enhanced vector processing units (VPUs) and a DNN accelerator with up to 14,080 MACs to deliver up to 35 TOPS performance in 16-nanometer (nm) FinFET process technologies under typical conditions, 4X the performance of the ARC EV6x processors. In addition, the new EV7x design combines clock and power gating technologies with architectural enhancements to reduce power consumption. To speed application software development for ARC EV7x Vision Processors, Synopsys' MetaWare EV Development Toolkit provides a comprehensive software programming environment based on common embedded vision standards, including OpenVX™ and OpenCL™ C. The combination of high-performance vision engine and DNN accelerator with high productivity programming tools make the ARC EV7x Embedded Vision Processors ideal for a broad range of vision applications including advanced driver assist systems (ADAS), video surveillance, smart home, and augmented and virtual reality. "The new EV7x Vision Processors optimize the execution of linear algebra and matrix math operations to accelerate processing on simultaneous localization and mapping (SLAM) and its related solutions such as real-time tracking for AR/VR and localization for autonomous driving while increasing the accuracy of environmental maps," said Tomo Ohno, chief executive officer and co-founder at Kudan. "Through our collaboration with Synopsys, designers have access to a highly efficient SLAM solution that delivers high performance while consuming significantly less power and memory resources than alternate implementations." New High-Performance Multicore Architecture with Deep Neural Network Accelerator Latest Advancements for Security and Safety ASIL B and ASIL D compliant versions of the new processors, the ARC EV7xFS portfolio, accelerate ISO 26262 certification of automotive SoCs. The functional safety-enhanced processors offer hardware safety features, safety monitors, and lockstep capabilities that enable designers to achieve stringent levels of functional safety and fault coverage without significant impact on power or performance. In addition, a new "hybrid" option enables system architects to select required safety levels up to ASIL D in the software, post-silicon. Enhanced High-Productivity Software Programming Environment "ULSee's facial tracking and computer vision algorithms running on ARC EV7x Vision Processors give our mutual customers high-performance, power-efficient solutions for edge applications, such as automotive ADAS and mobile," said Dr. Yi-Ta Wu, vice president of Engineering (auto team leader) at ULSee. "The extensive EV7x Vision Processor configuration options enable designers to address a wide range of devices within the same programming environment, such as low-power SoCs for drowsiness detection and high-end SoCs for environment monitoring. This versatility saves design teams effort and time-to-market for a tremendous competitive advantage." "The massive amounts of compute data in intelligent systems across almost every market require chips to execute fast deep learning processing on the edge," said John Koeter, vice president of marketing for IP at Synopsys. "Our new ARC EV7x Embedded Vision Processor IP with DNN accelerator, combined with its comprehensive software environment, enables designers to meet the highest performance and power efficiency requirements for advanced automotive, consumer, and mobile SoC designs." ARC Processor Summit 2019
Availability & Resources About Synopsys DesignWare IP About Synopsys
|
Home | Feedback | Register | Site Map |
All material on this site Copyright © 2017 Design And Reuse S.A. All rights reserved. |