Company Filing History:
Years Active: 2004-2024
Title: Melvin L. Hagge: Innovator in Analog-to-Digital Conversion
Introduction
Melvin L. Hagge is a notable inventor based in Round Rock, TX (US). He has made significant contributions to the field of analog-to-digital conversion, holding a total of 6 patents. His work has advanced the technology used in various electronic systems, particularly in reducing noise and distortion.
Latest Patents
One of Hagge's latest patents is for a "Successive approximation register analog-to-digital converter with multiple sample capacitors." This innovative design includes multiple capacitor networks, each equipped with sampling capacitors that sample an analog input signal over several sub-phases. Additionally, the patent describes a digital-to-analog converter (DAC) that utilizes sub-DACs to represent the most significant bits and lesser significant bits of the output.
Another significant patent is focused on "Circuits and methods for reducing noise and distortion in pulse width modulation systems." This patent outlines a pulse width modulation system that generates modulated signals in response to input signals, ensuring that transitions are spaced appropriately to minimize distortion.
Career Highlights
Melvin L. Hagge is currently employed at Cirrus Logic Inc., a company known for its innovative audio and voice processing solutions. His work at Cirrus Logic has allowed him to apply his expertise in analog-to-digital conversion to real-world applications, enhancing the performance of various electronic devices.
Collaborations
Throughout his career, Hagge has collaborated with talented individuals such as John L. Melanson and Adrian Maxim. These collaborations have contributed to the development of advanced technologies in the field of electronics.
Conclusion
Melvin L. Hagge's contributions to analog-to-digital conversion and pulse width modulation systems have made a significant impact in the electronics industry. His innovative patents and work at Cirrus Logic Inc. continue to influence the development of advanced electronic systems.