This ISO 26262 certification complements Lattice's existing functional safety certification for electrical/electronic/programmable electronic safety (E/E/PES) systems (IEC 61508). Both are certified by TÜV Rheinland, Germany, the industry's leading testing, inspection, and certification body. By adhering to the latest safety design methodology for road vehicles and automotive applications, Lattice Diamond 2.1 software enables faster time to market and reduces development costs for automotive applications.

“With our proven Lattice Diamond software, we continue to ensure compliance with the latest industrial safety requirements. With ISO 26262 certification, we are enabling OEMs to design and develop solutions that meet stringent functional safety requirements in automotive applications, saving integration time and reducing costs,” says Jatinder Singh, Product Marketing Manager at Lattice Semiconductor. “As a result, the implemented designs offer more robust functionality that has been validated and verified against ISO 26262 safety requirements.”.

Lattice Diamond software offers cutting-edge design and implementation tools optimized for cost-sensitive, low-power Lattice FPGA architectures. The software features design exploration, ease of use, and a rapid design workflow. The functional safety design workflow solution, based on Lattice Diamond 2.1, covers product development using FPGAs for design, implementation, integration, verification, validation, and production release. Offering a complete automotive development solution, Lattice Diamond 2.1 software supports automotive-grade devices such as MachXO, LatticeXP2, and LatticeECP3

• MachXO is a non-volatile FPGA that can be used for glue logic connectivity, simpler motor control, and networking such as LIN and CAN-FD.
• LatticeXP2 is a non-volatile FPGA with DSP blocks and applications ranging from advanced motor control algorithms to powertrain, networking, and connectivity applications.
• LatticeECP3 brings high-speed SERDES capabilities to automotive devices, which can be used for display controllers, high-speed networks (Gigabit Ethernet), advanced motor control, connectivity, and advanced driver assistance systems (ADAS).

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