上海埃飞科技
Worldwide Technology(S. H)产品展示
Superconducting Nanowire Single-Photon Detector (SNSPD)
For years, researchers have been working to improve the efficiency of low-light quantum sources and reduce the loss in optical components. These losses are now lower than those in commercially available detectors, meaning that existing detectors currently
The product includes two standard nanowire detector models optimized for maximum system detection efficiency at 950 nm (>90%) or 1550 nm (>80%). We can also customize detectors for any desired wavelength, including devices with a broad response range that maintain >50% efficiency over a 100 nm bandwidth, as well as mid-infrared devices. These detectors can be purchased individually and integrated into third-party low-temperature systems with a base temperature of <2.5 K.
The detection system is equipped with a custom compact desktop cryostat (pre-installed with up to 16 nanowire detectors and all necessary wiring for the cryostat), a water-cooled compressor suitable for optical laboratories (low air circulation, low noise, and low heat output), bias and high-speed amplifier electronics, and an easy-to-use software control library. Proprietary nanowire materials allow operation above >2 K, reducing the complexity of low-temperature systems and enabling continuous operation for approximately 3 years without interruption or recharging.
Related Experiments and Applications:
Quantum Receivers Enhanced by Adaptive Learning
Functional Time-Domain Dispersive Correlation Spectroscopy
Superconducting Nanowire Single-Photon Sensing of Cerebral Blood Flow
Non-Invasive Optical Monitoring of Cerebral Blood Flow and EEG Spectral Responses Post-Severe Traumatic Brain Injury
Real-Time Photon Counting Receivers for High Photon Efficiency Optical Communication
Single-Mode Fiber-Coupled Superconducting Nanowire Single-Photon Detectors for High-Efficiency Optical Communication
Generation of Multi-Photon Entangled Quantum States Using Integrated Frequency Comb
On-Chip Photon Triplet State Generation
Demonstration of Photon Quantum Bit Split
因用于机器人各方面应用且与大多数机器人类型兼容,AutoCal系统可以检测出机器人自身构造和工具中心点(TCP)的 突然改变或偏离,并且该系统无需人为干涉就自动地更正这些误差。
AutoCal系统-Dynalog的先进水平校准技术,Dynalog是机器人单元标定技术的世界领导者。它的主流产品DynaCal 系统,被应用于离线的机器人单元校准,并作为最精确的和技术先进的机器人校准程序为许多机器人制造商和终端使用者所接受。AutoCal 系统将已证实的DynaCal校准技术结合到一个在线的全自动系统中,该系统专为程序控制和复原而设计的,价格低廉。
AutoCal系统提供在线的机器人校准方案,旨在快速和自动地保证机械设备的工作性能。因用于机器人各方面应用且与大多数机器人类型兼容,AutoCal系统可以检测出机器人自身构造和工具中心点(TCP)的 突然改变或偏离,并且该系统无需人为干涉就自动地更正这些误差。这意味着不用猜测哪里会出错,不用浪费宝贵时间在机器人程序重复校准上,产品品质无任何损失。
AutoCal系统-Dynalog的先进水平校准技术,Dynalog是机器人单元标定技术的世界领导者。它的主流产品DynaCal 系统,被应用于离线的机器人单元校准,并作为最精确的和技术先进的机器人校准程序为许多机器人制造商和终端使用者所接受。AutoCal 系统将已证实的DynaCal校准技术结合到一个在线的全自动系统中,该系统专为程序控制和复原而设计的,价格低廉。