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SecureFPGA
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Authentication Demo by using GOWIN SecureFPGA
This Demonstration video is from a student project in Gowin University Program. Specially thanks to Qin Liang, Qiang Zhou, Jin Wu and Professor Dr. Yunlong Shao at New York Institute of Technology(NYiT).    In this video, we demonstrate an embedded security project using GOWIN's GW1NSE2 FPGA development boards for secure authentication. This project involves two boards connected to a single computer via different COM ports (COM 11 and COM 3) and showcases a Node.js-based console application managing the authentication process. Watch as we walk through the initialization of both client and host boards, the exchange of random numbers and public keys, and the verification steps using cryptographic signatures. Successful authentication is indicated by flashing LEDs and information displayed on an LCD. Join us to see how embedded security can be achieved through FPGA technology.
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Webinar: How To Secure Devices With An SRAM PUF-Based Unclonable Identity Using GOWIN Secure FPGA
Join us for an insightful webinar on securing devices using SRAM PUF-based unclonable identities with GOWIN's Secure FPGA. Led by experts Grant Jennings, Director of International Marketing at GOWIN Semiconductor, and Vincent van der Leest from Intrinsic ID, this session explores the unique security features of GOWIN's FPGA product line, including the use of SRAM PUF technology to create a hardware-based root of trust. Learn how Secure FPGA provides key generation, firmware signing, data encryption, and authentication without storing sensitive information. We will cover use cases and applications that demonstrate how GOWIN's Secure FPGA can enhance security for edge and IoT devices. Don't miss this opportunity to understand how these innovative technologies can protect your next-generation products. Visit gowinsemi.com for more details
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Introduction to GOWIN Secure FPGA
Explore how GOWIN Semiconductor’s Secure FPGA micro SoC FPGAs elevate device security at the edge. This video demonstrates the power of Secure FPGA, which combines a microprocessor, FPGA fabric, flexible SRAM, and an advanced security library to deliver essential security features within the constraints of power, cost, and size for IoT products. Watch as we showcase a wireless connectivity project featuring two DK Start Boards with Secure FPGA and Wi-Fi modules, connected to an MQTT broker (AWS). Discover how TLS 1.2 security and PUF-based technology enable a root of trust without storing private keys in flash memory. Ideal for consumer and industrial IoT applications, Secure FPGA empowers secure boot, firmware integrity, and data encryption. Join Grant Jennings, Director of International Marketing at GOWIN, as he walks through this cutting-edge solution that redefines embedded security.
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