This inventor holds 1 USPTO granted patent. Top assignee: Other. Active years: 1986.
Company Filing History:
Years Active: 1986
Title: The Innovations of Heinz Linenmeier
Introduction
Heinz Linenmeier is a notable inventor based in Planegg, Germany. He has made significant contributions to the field of electronics, particularly in amplifier circuitry. His innovative designs focus on enhancing efficiency while minimizing distortions in audio applications.
Latest Patents
Heinz Linenmeier holds a patent for a "Circuitry for a Selective Push-Pull Amplifier." This invention features a circuit that utilizes amplifier triple poles of the same polarity, which simultaneously achieves high efficiency and low nonlinear distortions. The design incorporates control electrodes that are regulated by out-of-phase control voltages. Additionally, it includes an output inductance with a center tap, which facilitates a magnetic combination of output currents from the amplifier triple poles. The output electrodes of each triple pole connect to the output inductance through a transformer with three windings, where two oppositely polarized windings link the triple poles to the output inductance, while the third winding is utilized to create a series resonant circuit.
Career Highlights
Throughout his career, Heinz Linenmeier has demonstrated a commitment to advancing electronic circuitry. His work has been recognized for its innovative approach to solving common issues in amplifier design. With a focus on efficiency and sound quality, he has established himself as a key figure in the field.
Collaborations
Heinz has collaborated with notable colleagues such as Gerhard Flachenecker and Karl Fastenmeier. Their combined expertise has contributed to the development of advanced technologies in the electronics sector.
Conclusion
Heinz Linenmeier's contributions to amplifier circuitry exemplify the spirit of innovation in electronics. His patent for a selective push-pull amplifier showcases his ability to blend efficiency with high-quality sound reproduction. His work continues to influence the field and inspire future advancements.