Our Vision
Enhancing human understanding of the world and improving the quality of human life by advanced SWIR technology
Strength
50+
R&D Members
30+
Patents
100M+
R&D investment
15Y+
R&D Experience
Advanced Organic Semiconductor Platform
Overview
LUMIDAR is a high-tech enterprise that relies on the transformation of scientific research achievements from key universities in the Greater Bay Area of China, and has accumulated plenty of scientific research achievements and engineering experience in the field of SWIR detection since we published papers related to the realization of ultra-wide spectrum organic photodetectors at the international journals basic on our top level of fundamental reseach. At present, our R&D team has more than 50 technical experts focusing on sensor& chip developing, while the company has invested more than CNY hundreds of millions to build the new generation of organic semiconductor device testing and manufacturing platform, which is one of the few companies that has the core technology of the complete process of SWIR image sensor.
History
  • The founding team of LUMIDAR has been approved as the Chief Scientist for the 973 Program project related to organic semiconductor materials
2014
  • The founding team of LUMIDAR led the completion of national key R&D projects related to organic semiconductor devices
2019
  • LUMIDAR Technology Co., Ltd. was officially established
  • Approved by National Major Science and Technology Special Achievement Transformation Project
2021
  • Awarded as the second prize in the Guangzhou Division of the National Innovation and Entrepreneurship Competition
  • Awarded as small scale technology-based innovative enterprises
  • Breakthrough in the manufacturing process of organic Semiconductor chips
2022
  • SWIR image sensor LUMIDAR_SW achieved mass production
  • Completed secured CNY tens of millions in Pre-A financing
2023
  • Continues fast growing, providing more innovative products and solutions in the fields of shortwave infrared imaging and organic semiconductors
2024