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    • 25. 发明授权
    • Performance optically coated semiconductor devices and related methods of manufacture
    • 性能光学镀膜半导体器件及相关制造方法
    • US08445299B2
    • 2013-05-21
    • US12741580
    • 2008-12-11
    • Jamie Knapp
    • Jamie Knapp
    • H01L33/44
    • H01L33/44G02B5/285H01L31/02165H01L31/02168Y02E10/50
    • The present application disclosed various embodiments of improved performance optically coated semiconductor devices and various methods for the manufacture thereof and includes depositing a first layer of a low density, low index of refraction material on a surface of a semiconductor device, depositing a multi-layer optical coating comprising alternating layers of low density, low index of refraction materials and high density, high index of refraction materials on the coated surface of the semi-conductor device, selectively ablating a portion of the alternating multi-layer optical coating to expose at least a portion of the low density first layer, and selectively ablating a portion of the first layer of low density material to expose at least a portion of the semiconductor device.
    • 本申请公开了改进的性能光学镀膜半导体器件的各种实施例及其制造方法,包括在半导体器件的表面上沉积低密度,低折射率折射率材料的第一层,沉积多层光学 包括低密度折射率折射率材料的交替层和在半导体器件的涂覆表面上的高密度,高折射率折射材料的涂层,选择性地烧蚀交替的多层光学涂层的一部分以暴露至少一个 部分低密度第一层,并且选择性地烧蚀第一低密度材料层的一部分以暴露半导体器件的至少一部分。
    • 27. 发明申请
    • High Power LED Device Architecture Employing Dielectric Coatings and Method of Manufacture
    • 使用介质涂层的大功率LED器件结构及其制造方法
    • US20120126203A1
    • 2012-05-24
    • US13387704
    • 2010-04-01
    • Jamie Knapp
    • Jamie Knapp
    • H01L33/04H01L33/52
    • H01L33/46H01L33/10H01L33/405
    • An improved LED device is disclosed and includes at least one active layer in communication with an energy source and configured to emit a first electromagnetic signal within a first wavelength range and at least a second electromagnetic signal within at least a second wavelength range, a substrate configured to support the active layer, at least one coating layer applied to a surface of the substrate, the coating layer, configured for 0-90 degree incidence, to reflect at least 95% of the first electromagnetic signal at the first wavelength range and transmit at least 95% of the second electromagnetic signal at the second wavelength range, at least one metal layer applied to the coating layer and configured to transmit the second electromagnetic signal at the second wavelength range therethrough, and an encapsulation device positioned to encapsulate the active layer.
    • 公开了一种改进的LED器件,并且包括与能量源通信的至少一个有源层,并且被配置为在第一波长范围内发射第一电磁信号,并且在至少第二波长范围内发射至少第二电磁信号,衬底配置 为了支撑活性层,施加到基底的表面的至少一个涂层,被配置为0-90度入射的涂层,以反射第一电磁信号的至少95%在第一波长范围并在 在所述第二波长范围的所述第二电磁信号的至少95%,施加到所述涂层并且被配置为透过所述第二波长范围的所述第二电磁信号的至少一个金属层以及定位成封装所述有源层的封装装置。
    • 28. 发明申请
    • Quantum Efficiency Measurement System and Method of Use
    • 量子效率测量系统及其使用方法
    • US20120010854A1
    • 2012-01-12
    • US13234951
    • 2011-09-16
    • Razvan CiocanJohn DonohueArkady FeldmanZhuoyun Li
    • Razvan CiocanJohn DonohueArkady FeldmanZhuoyun Li
    • G06F15/00G01N21/47G01N21/59G01N21/55
    • 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。
    • 29. 发明申请
    • ADJUSTABLE OPTICAL MOUNT WITH LOCKING DEVICES AND METHODS
    • 具有锁定装置和方法的可调光学安装
    • US20110242687A1
    • 2011-10-06
    • US13161400
    • 2011-06-15
    • Thomas Rigney
    • Thomas Rigney
    • G02B7/02
    • G02B7/023
    • An adjustable optical mount embodiment includes a first plate configured to mount an optical element and a second plate disposed adjacent the first plate with a pivot point between the plates. At least one adjustable threaded member has a contact end in contact with a rear surface of the first plate and a threaded outer surface in threaded engagement with a threaded bore of the second plate. A lock collar having a threaded bore in threaded engagement with a threaded outer surface of the adjustable threaded member which extends from a rear surface of the second plate has a torqueable surface disposed at an adjustment end which is configured to be engaged for the application of torque from a rearward position relative to the adjustable optical mount.
    • 可调光学安装实施例包括配置成安装光学元件的第一板和邻近第一板设置的与板之间的枢转点设置的第二板。 至少一个可调螺纹构件具有与第一板的后表面接触的接触端和与第二板的螺纹孔螺纹接合的螺纹外表面。 具有与可调节螺纹构件的螺纹外表面螺纹接合的螺纹孔的锁定环从第二板的后表面延伸,具有设置在调节端的可扭转表面,该表面被配置为接合以施加扭矩 从相对于可调节光学安装座的后方位置。
    • 30. 发明授权
    • Optical control system including mount for optical component having independent multi-axial control
    • 光学控制系统,包括具有独立多轴控制的光学部件的安装
    • US07855845B2
    • 2010-12-21
    • US12748350
    • 2010-03-26
    • Michael HeuserChristopher Guerrero
    • Michael HeuserChristopher Guerrero
    • G02B7/02G02B15/14
    • G02B7/1824G02B7/1827
    • An optical control system including a mount for an optical component is disclosed that provides the flexibility of independently adjusting the position and orientation of the optical component along and about one or more axes. In an exemplary embodiment, the mount includes a support element for supporting the optical component; one or more rotational adjustment elements for rotating said support element independently about one or more axes, respectively; and one or more linear adjustment elements for moving said support element independently along one or more axes. The adjustment elements may be manually adjustable and/or may be adjustable by an actuator. In the latter case, the actuator may be electronically controlled by a controller. The optical component may be a reflective, transmissive, or reflective/transmissive optical device, such as diffraction gratings, mirrors, beam splitters, and others.
    • 公开了一种包括用于光学部件的安装件的光学控制系统,其提供沿着并且围绕一个或多个轴线独立地调节光学部件的位置和取向的灵活性。 在示例性实施例中,安装件包括用于支撑光学部件的支撑元件; 一个或多个旋转调节元件,用于分别围绕一个或多个轴线独立地旋转所述支撑元件; 以及用于沿着一个或多个轴独立地移动所述支撑元件的一个或多个线性调节元件。 调节元件可以手动调节和/或可由致动器调节。 在后一种情况下,致动器可以由控制器进行电子控制。 光学部件可以是反射,透射或反射/透射的光学器件,例如衍射光栅,反射镜,分束器等。