07
2024
-
02
CamOptics Wins 2023 Gusu Innovation and Entrepreneurship Leadership Talent Award
Author:
CamOptics Wins 2023 Gusu Innovation and Entrepreneurship Leadership Talent Award
CamOptics (SuZhou) Co., Ltd. is an optoelectronics company dedicated to the research, development and manufacturing of silicon-based liquid crystal LCOS chips. Since the company was founded, it has been adhering to the concept of innovation-driven, providing professional and customized solutions for the fields of optical communications, laser processing, AR HUD and so on. Since its establishment, the company has received strong support from Jiangsu Industrial Technology Research Institute, Suzhou Venture Capital-Suzhou Industrial Technology Research Institute and Suzhou Industrial Park Leading Venture Capital.

Technology-driven and progressive Awarded 2023 Gusu Innovation and Entrepreneurship Leadership Talent Award
With excellent technical strength and unremitting efforts in the field of optoelectronics, CamOptics successfully won the honor of 2023 Gusu Innovation and Entrepreneurship Leader. The award is a high recognition of the company's remarkable achievements in technology research and development, product innovation and market expansion. The company has filled the scientific and technological gaps in China with its advanced packaging process for silicon-based liquid crystal LCOS chips and excellent spatial light modulation technology, making outstanding contributions to industrial innovation.
The Gusu Innovation and Entrepreneurship Leadership Talent Award is an honor for enterprises and individuals with outstanding performance in science and technology innovation and industrial development. The award is both a recognition of the company's past efforts and a high expectation for its future development. The company will further strengthen technological innovation, accelerate product development, and deepen its market influence in the fields of optical communications, laser processing, and new displays.
Thanks to the support and attention from all walks of life, CamOptics (Suzhou) Co., Ltd. will continue to inject new vitality into industrial innovation and contribute more to the development of optoelectronics technology with fuller enthusiasm and higher standards.
PDF Article
Recommended News
Fundamentals of phase-only liquid crystal on silicon (LCOS) devices
This paper describes the fundamentals of phase-only liquid crystal on silicon (LCOS) technology, which have not been previously discussed in detail. This technology is widely utilized in high efficiency applications for real-time holography and diffractive optics. The paper begins with a brief introduction on the developmental trajectory of phase-only LCOS technology, followed by the correct selection of liquid crystal (LC) materials and corresponding electro-optic effects in such devices. Attention is focused on the essential requirements of the physical aspects of the LC layer as well as the indispensable parameters for the response time of the device.Furthermore, the basic functionalities embedded in the complementary metal oxide semiconductor(CMOS) silicon backplane for phase-only LCOS devices are illustrated, including two typical addressing schemes. Finally, the application of phase-only LCOS devices in real-time holography will be introduced in association with the use of cutting-edge computer-generated holograms. Light: Science & Applications (2014) 3, e213; doi:10.1038/lsa.2014.94; published online 24 October 2014 Keywords: electro-optic effect; liquid crystal material; liquid crystal on silicon device; real-time holography
2024-04-25
Abstract: Sub-millisecond response time with a refresh rate higher than 2000 frames per second (fps) and no degradation of the contrast ratio or diffraction efficiency is demonstrated in working liquid crystal on silicon (LCOS) spatial light modulators (SLMs) with 8-bit grey levels of amplitude and phase modulations. This makes possible to achieve an information bandwidth of about 190 Gb s 1 with a 4k LCOS operating at 10-bit phase modulation levels. The normalised contrast stays at almost the unit level for a frame rate up to 1700 fps and at higher than 0.9 for 2500 fps. The diffraction efficiency stays above -1.0 dB for a frame rate up to 2400 fps. Such a fast response allows us to eliminate image blurring in replaying a fast movie. Published by The Optical Society under the terms of the Creative Commons Attribution 4.0 License. Further distribution of this work must maintain attribution to the author(s) and the published article’s title, journal citation, and DOI.
2024-04-25