Endura Technologies, a recognized global leader in high-performance power management solutions, has unveiled a groundbreaking benchmark in power delivery technology tailored for next-generation AI processors. The company’s newest solution delivers exceptional results achieving less than 30mV voltage droop and an ultra-fast recovery time of under 200ns, even when handling extreme load transients of 1000A with slew rates reaching up to 100A/ns.
Unlike traditional systems that require additional external capacitors, Endura’s solution operates efficiently using only the existing in-package capacitors integrated within XPUs. This innovation not only enhances energy efficiency but also significantly improves the overall system performance-per-watt ratio. As AI workloads continue to demand higher power and faster response times, this technological advancement positions Endura Technologies at the forefront of next-generation power management.
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“We are at a critical inflection point in powering AI where integrated voltage regulators (IVRs) are transitioning from a niche solution to a necessity,” said Davood Yazdani, EVP and CPO of Endura Technologies. “The surging power demands of AI and HPC chips demand a complete architectural redesign, introducing a new class of control and power delivery solutions that can effectively manage voltage droop and enable significant system performance improvements. This is precisely where Endura’s Bypass Dual Duty-Cycle (BDDC) architecture shines.”
With this announcement, Endura highlights the power of its patented Bypass Dual Duty-Cycle Control (BDDC) architecture a system-level innovation designed to meet the escalating requirements of high-performance computing (HPC) and AI systems. Supported by a portfolio of over 60 patents, Endura’s high-efficiency solution integrates seamlessly with its vertically Integrated Voltage Regulator (IVR) framework to address the key limitations of modern AI chip power management.
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Traditional off-chip voltage regulators often struggle with slow response times and limited bandwidth, forcing AI system designers to compromise on the full potential of their processors. In contrast, Endura’s IVR architecture reacts to transient load variations within nanoseconds, maintaining voltage stability and minimizing performance loss.
Furthermore, this rapid response capability ensures a smoother and more efficient operation under dynamic AI workloads critical for applications where speed, precision, and reliability are paramount. Through continuous innovation in IVR and power delivery architecture, Endura Technologies is redefining industry standards and empowering the next generation of AI-driven systems to achieve greater efficiency and performance.
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