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    • 31. 发明授权
    • Optical sensor
    • 光学传感器
    • US09000355B2
    • 2015-04-07
    • US13729716
    • 2012-12-28
    • Alpine Electronics, Inc.
    • Masato YamanobeTetsuji Suenaga
    • G01J1/42G01J1/16G01V8/20
    • G01J1/42G01J1/16G01V8/20
    • A monitor-light-emitting device and multiple light-emitting devices are mounted on a board, and a light-guiding member is disposed in front of these devices. Monitor light emitted from the monitor-light-emitting device is directly supplied to a light receiving device. Part of light emitted from the multiple light-emitting devices is incident on the light-guiding member and is used as reference light. The reference light is received by the light receiving device. Reflected detection light that has been reflected off a target object located in front of the optical sensor is transmitted through the light-guiding member and is received by the light receiving device. A condenser is disposed in front of the light receiving device and the reference light or the reflected detection light is efficiently supplied to the light receiving device.
    • 显示器发光装置和多个发光装置安装在板上,并且导光部件设置在这些装置的前面。 从监视发光装置发出的监视光被直接提供给光接收装置。 从多个发光装置发射的光的一部分入射在导光部件上并用作参考光。 参考光被光接收装置接收。 已经从位于光学传感器前面的目标物体反射的反射检测光透过导光部件并被光接收装置接收。 冷凝器设置在光接收装置的前面,并且将参考光或反射的检测光有效地提供给光接收装置。
    • 33. 发明授权
    • Optical sensors for monitoring biopharmaceutical solutions in single-use containers
    • 用于在一次性容器中监测生物药物溶液的光学传感器
    • US08817259B2
    • 2014-08-26
    • US13072448
    • 2011-03-25
    • Karl G. SchickDavid Uhen
    • Karl G. SchickDavid Uhen
    • G01N21/00G01N21/05G01N21/53G01N21/85G01N21/03G01J1/16
    • G01N21/0303G01J1/1626G01N21/05G01N21/51G01N21/532G01N21/8507G01N2021/0307
    • Disposable, pre-sterilized, and pre-calibrated, pre-validated sensors are provided. The sensor comprises a disposable fluid conduit or reactor bag and a reusable sensor assembly. An optical bench or inset optical component is integrated within the disposable fluid conduit or bioreactor bag, which provides an optical light path through the conduit or bag. These sensors are designed to store sensor-specific information, such as calibration and production information, in a non-volatile memory chip on the disposable fluid conduit or bag and on the reusable sensor assembly. Methods for calibrating the sensor and for determining a target property of an unknown fluid are also disclosed. The devices, systems and methods relating to the sensor are suitable for and can be outfitted for turbidity sensing.
    • 提供了一次性,预消毒和预校准的预验证传感器。 传感器包括一次性流体导管或反应器袋和可重复使用的传感器组件。 光学平台或插入式光学部件集成在一次性流体导管或生物反应器袋内,其提供通过导管或袋的光学光路。 这些传感器被设计为将传感器特定的信息(诸如校准和生产信息)存储在一次性流体导管或袋上以及可重复使用的传感器组件上的非易失性存储器芯片中。 还公开了用于校准传感器和用于确定未知流体的目标特性的方法。 与传感器有关的设备,系统和方法适用于并可用于浊度检测。
    • 36. 发明申请
    • MEMS Scan Controller Generating Clock Frequency and Control Method Thereof
    • MEMS扫描控制器生成时钟频率及其控制方法
    • US20110127404A1
    • 2011-06-02
    • US12254564
    • 2008-10-20
    • Wei-Shin YEN
    • Wei-Shin YEN
    • G01J1/16G02B26/10
    • G02B26/105
    • A Micro Electronic Mechanical System (MEMS) scan controller generating clock frequency and a control method thereof are disclosed. The MEMS scan controller is for a MEMS mirror in a bi-direction laser scanning units (LSU). By detecting resonant frequency of the MEMS mirror, the scan controller sends frequency modulation signal and amplitude modulation signal of the MEMS mirror to a bridge circuit of the MEMS mirror for adjusting and stabilizing the MEMS mirror. A clock signal corresponding to the resonant frequency of the MEMS mirror at the moment is also sent so that scan data is sent within the effective scanning window in forward direction/reverse direction. Thus high-precision scanning is achieved.
    • 公开了一种产生时钟频率的微电子机械系统(MEMS)扫描控制器及其控制方法。 MEMS扫描控制器用于双向激光扫描单元(LSU)中的MEMS反射镜。 通过检测MEMS反射镜的谐振频率,扫描控制器将MEMS反射镜的调频信号和幅度调制信号发送到MEMS反射镜的桥接电路,用于调整和稳定MEMS反射镜。 此时也发送对应于MEMS反射镜的谐振频率的时钟信号,使得扫描数据在有效扫描窗口内沿正向/反向发送。 从而实现高精度扫描。
    • 37. 发明申请
    • RADIATION DETECTOR HAVING A BANDGAP ENGINEERED ABSORBER
    • 带有工程吸收剂的辐射探测器
    • US20110031401A1
    • 2011-02-10
    • US12853174
    • 2010-08-09
    • Pradip MitraJeffrey D. BeckMark R. Skokan
    • Pradip MitraJeffrey D. BeckMark R. Skokan
    • G01J1/16H01L31/0296H01L31/18
    • G01J1/44H01L27/1446H01L27/14652H01L31/02161H01L31/0232H01L31/024H01L31/02966H01L31/101H01L31/1032H01L31/1832
    • A radiation detector is provided that includes a photodiode having a radiation absorber with a graded multilayer structure. Each layer of the absorber is formed from a semiconductor material, such as HgCdTe. A first of the layers is formed to have a first predetermined wavelength cutoff. A second of the layers is disposed over the first layer and beneath the first surface of the absorber through which radiation is received. The second layer has a graded composition structure of the semiconductor material such that the wavelength cutoff of the second layer varies from a second predetermined wavelength cutoff to the first predetermined wavelength cutoff such that the second layer has a progressively smaller bandgap than the first bandgap of the first layer. The graded multilayer radiation absorber structure enables carriers to flow toward a conductor that is used for measuring the radiation being sensed by the radiation absorber.
    • 提供一种辐射检测器,其包括具有渐变多层结构的辐射吸收体的光电二极管。 吸收体的各层由诸如HgCdTe的半导体材料形成。 第一层被形成为具有第一预定波长截止。 层中的第二层设置在吸收体的第一层和第一表面之下,辐射被接收在该吸收体的第一表面下方。 第二层具有半导体材料的渐变组成结构,使得第二层的波长截止从第二预定波长截止到第一预定波长截止不同,使得第二层比带隙的第一带隙具有逐渐变小的带隙 第一层 分级多层辐射吸收器结构使得载体能够朝向用于测量由辐射吸收器感测的辐射的导体流动。