San Jose, CA, United States of America

Ashima Kapur


Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:


Years Active: 2020

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1 patent (USPTO):Explore Patents

Title: Innovator Ashima Kapur: Pioneering Methods for Electronic Device Efficiency

Introduction: Ashima Kapur, an accomplished inventor based in San Jose, California, has made significant contributions to the field of electronic devices. With a focus on improving system efficiency, her work has led to the patenting of innovative methods aimed at mitigating system interrupts, a critical area for ensuring seamless device performance.

Latest Patents: Kapur holds a patent titled "Methods for mitigating system interrupts for an electronic device." This invention addresses the intricacies of communication between an applications processor and a peripheral input-output (I/O) device through a coprocessor. By employing dual interprocessor communications (IPC) modules, Kapur's design enables efficient queuing and processing of transactions, significantly enhancing the responsiveness of electronic devices.

Career Highlights: Working at Apple Inc., Kapur has positioned herself as a key player in product development, where her expertise in electronic system design comes to the forefront. Her dedication to research and innovation has solidified her reputation as a forward-thinking inventor in a competitive industry.

Collaborations: Throughout her career, Ashima has collaborated with talented colleagues, including Charles Francis Dominguez and Kiran Kattel. These partnerships have fostered an environment of creativity and support, enabling shared knowledge and advancements in technology.

Conclusion: Ashima Kapur's contributions to the field of electronic devices exemplify innovation at its best. Her patented methods for mitigating system interrupts are a testament to her skill and vision, making her a valuable asset to Apple Inc. and the broader tech community. As technology continues to evolve, Kapur's work will undoubtedly play a pivotal role in shaping the future of electronic device performance.

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