Inventor · Katy, TX, US

Yi Wang

14Patents
4h-index
14Co-inventors
53Inventor score

Filing activity: Dec 22, 2010 → Aug 6, 2020

Most-cited inventions

PatentTitleAreaCited byStatus
US9039303B2 Compact multi-channel optical transceiver module Electricity 8 Active
US10698168B1 Printed circuit board assembly (PCBA) with integrated mounting structure to align and couple to transmitter optical assembly (TOSA) modules Electricity 7 Active
US9455782B2 Monitoring a multiplexed laser array in an optical communication system Electricity 5 Active
US8655183B2 Optical transceiver that maintains a bend diameter of an internal optical fiber and method of assembling same Emerging Cross-Sectional Technologies 5 Active
US9083468B2 Heated laser package with increased efficiency for optical transmitter systems Electricity 4 Active
US9964720B2 Monitoring and controlling temperature across a laser array in a transmitter optical subassembly (TOSA) package Electricity 3 Active
US10230470B2 Multilayered flexible printed circuit with both radio frequency (RF) and DC transmission lines electrically isolated from each other and an optical transceiver using same Electricity 2 Active
US8670675B2 System and method for distortion compensation including configureable delay Electricity 1 Active
US8891974B2 Distortion compensation circuit including tunable phase path Electricity 1 Active
US12313892B2 Techniques for thermal management within optical subassembly modules Electricity 1 Active
US11177887B2 Substrate with stepped profile for mounting transmitter optical subassemblies and an optical transmitter or transceiver implementing same Physics 1 Active
US9236949B1 Laser transceiver with improved bit error rate Electricity 0 Active
US8606116B2 System and method for distortion compensation in response to frequency detection Electricity 0 Active
US9531155B2 Switched radio frequency (RF) driver for tunable laser with multiple in-line sections Electricity 0 Active

Source: USPTO / EPO open patent data. Inventor disambiguation is heuristic; counts are objective bibliographic measures.