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    • 65. 发明授权
    • Quantum efficiency measurement system and method of use
    • 量子效率测量系统及其使用方法
    • US08736825B2
    • 2014-05-27
    • US13234951
    • 2011-09-16
    • Razvan CiocanJohn DonohueArkady FeldmanZhuoyun Li
    • Razvan CiocanJohn DonohueArkady FeldmanZhuoyun Li
    • G01N21/55
    • G01N21/33G01N21/31H02S50/10Y02E10/52
    • A system for measuring a characteristic of a solar cell is disclosed and includes a light source irradiating an optical signal having a spectral range from about 100 nm to about 3000 nm, a wavelength selector configured to selectively narrow the spectral range of the optical signal, a beam splitter, a reference detector in optical communication with the beam splitter and configured to measure a characteristic of the optical signal, a specimen irradiated with the optical signal, a reflectance detector in optical communication with the specimen via the beam splitter and configured to measure an optical characteristic of the optical signal reflected by the specimen, a multiplexer in communication with at least one of the reference detector, specimen, and reflectance detector, and a processor in communication with at least one of the reference detector, specimen, and reflectance detector via the multiplexer and configured to calculate at least one characteristic of the specimen.
    • 公开了一种用于测量太阳能电池的特性的系统,包括:照射光谱范围为约100nm至约3000nm的光信号的光源;配置为选择性地缩小光信号的光谱范围的波长选择器, 分束器,与分束器光学通信并被配置为测量光信号的特性的参考检测器,被光信号照射的样本,经由分束器与样本光学通信的反射检测器,并且被配置为测量 由样本反射的光学信号的光学特性,与参考检测器,样本和反射检测器中的至少一个通信的多路复用器,以及与参考检测器,样本和反射检测器通过中的至少一个通信的处理器 所述多路复用器并且被配置为计算所述样本的至少一个特性。
    • 70. 发明授权
    • Machine and method for measuring a characteristic of an optical signal
    • 用于测量光信号特性的机器和方法
    • US08400623B2
    • 2013-03-19
    • US13294929
    • 2011-11-11
    • Prakash KasturiAdrian Nastase
    • Prakash KasturiAdrian Nastase
    • G01J1/00
    • G01J1/02G01J1/0219G01J1/0228G01J1/0271G01J1/08G01J1/4257G01J11/00
    • Machines and methods measure an unknown characteristic of an optical signal incident upon a detector characterized by one or more dynamic response parameters. One method receives an output signal from the detector and compares that output signal and a computationally determined response of the detector to a known optical signal incident upon the detector. The response is based on said one or more dynamic parameters. The method determines the unknown characteristic based on the comparison of the output signal and the computationally determined response of the detector. Another method receives an output signal from an optical detector detecting one or more optical signals, accesses a predetermined characteristic curve of detector response, compares the output signal from the detector to the predetermined characteristic curve of detector response, and calculates at least one unknown characteristic of one or more optical signals based on results of the comparing step.
    • 机器和方法测量入射在由一个或多个动态响应参数表征的检测器上的光信号的未知特性。 一种方法从检测器接收输出信号,并将该输出信号和检测器的计算确定响应与入射到检测器上的已知光信号进行比较。 所述响应基于所述一个或多个动态参数。 该方法基于输出信号与检测器的计算确定响应的比较来确定未知特性。 另一种方法从检测一个或多个光信号的光检测器接收输出信号,访问检测器响应的预定特性曲线,将来自检测器的输出信号与检测器响应的预定特性曲线进行比较,并计算至少一个未知特性 基于比较步骤的结果的一个或多个光信号。