Powering innovation into intelligent hardware for faster, smarter, and future-ready businesses
The modern digital systems are driven by semiconductor technology. Smart and efficient chip design in hardware brings the ability to achieve stability in performance, lower power consumption, and shorten the time to market, starting with cloud hardware and its consumers. Our semiconductor solutions have been designed to transform ideas into viable, manufacturable, and business-ready electronics products.
We create accurate and highly power-efficient AMS circuits for complex applications like sensors, motors, and connectivity tools. This is done by our designs being low noise, high reliability, and can be integrated into larger chip architectures without impairing the performance or manufacturability.
We convert specifications into synthesizable RTL and verify every logic path using proven methodologies. Our verification flow detects corner-case failures early, reducing costly silicon re-spins and improving confidence before physical implementation starts in the downstream design phases.
We add built-in systems of testability to the chip in such a way that defects are identified early on post-fabrication. DFT strategies of our strategies increase yield, lower the cost of RMA, and make it easy to test production without area, speed, or timing closure.
We validate chips after fabrication using bring-up, characterization, and debug services. Our experts analyze failures, tune performance, and ensure the silicon matches design intent under real operating conditions before mass production or customer shipment.
We create accurate and highly power-efficient AMS circuits for complex applications like sensors, motors, and connectivity tools. This is done by our designs being low noise, high reliability, and can be integrated into larger chip architectures without impairing the performance or manufacturability.
We convert specifications into synthesizable RTL and verify every logic path using proven methodologies. Our verification flow detects corner-case failures early, reducing costly silicon re-spins and improving confidence before physical implementation starts in the downstream design phases.
We add built-in systems of testability to the chip in such a way that defects are identified early on post-fabrication. DFT strategies of our strategies increase yield, lower the cost of RMA, and make it easy to test production without area, speed, or timing closure.
We validate chips after fabrication using bring-up, characterization, and debug services. Our experts analyze failures, tune performance, and ensure the silicon matches design intent under real operating conditions before mass production or customer shipment.
Semiconductor engineering demands precision, speed, and practical thinking. Nippon Data provides reliable, scalable, and production-ready designs to enable businesses to build smarter silicon products with real confidence and with reduced risk.
We streamline engineering and reuse designs to cut development time, enabling faster semiconductor launches and stronger competitive market advantage.
We assist clients beyond design through validation and production support, ensuring smooth, predictable semiconductor development and supply processes.
We carefully optimize silicon usage, power, and testing to minimize manufacturing costs without sacrificing semiconductor performance or quality.
We design durable chips and test them under extreme conditions to ensure consistent, reliable performance in real-world environments.
We engineer intelligent silicon that drives real-world performance. Our designs merge innovation, accuracy, and manufacturability to help your business scale, compete, and lead in an evolving technology ecosystem.
They enhance the performance, reliability, and efficiency of products, which enables the company to win and expand customers as well as at a faster rate.
Outsourcing is cost-effective, risk-eliminating, and time-saving, besides providing experienced design skills and techniques.
Early design will contribute to preventing expensive errors in the construction, time, money, and product delays.
Yes, it has designs that align with automotive, medical, telecommunication, and consumer devices to the special requirements.
Testing identifies the defects that cannot be seen, quality assurance, and safety assurance of the products before mass production.
Design can take as short as several months or as long as a year, depending on the complexity of the design.
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