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    • 1. 发明授权
    • Photovoltaic power generation system free of bypass diodes
    • 光伏发电系统没有旁路二极管
    • US09093586B2
    • 2015-07-28
    • US13543297
    • 2012-07-06
    • Anthony L. LentineMurat OkandanGregory N. Nielson
    • Anthony L. LentineMurat OkandanGregory N. Nielson
    • H01L31/05H02J1/10
    • H01L31/0504Y02E10/50
    • A photovoltaic power generation system that includes a solar panel that is free of bypass diodes is described herein. The solar panel includes a plurality of photovoltaic sub-modules, wherein at least two of photovoltaic sub-modules in the plurality of photovoltaic sub-modules are electrically connected in parallel. A photovoltaic sub-module includes a plurality of groups of electrically connected photovoltaic cells, wherein at least two of the groups are electrically connected in series. A photovoltaic group includes a plurality of strings of photovoltaic cells, wherein a string of photovoltaic cells comprises a plurality of photovoltaic cells electrically connected in series. The strings of photovoltaic cells are electrically connected in parallel, and the photovoltaic cells are microsystem-enabled photovoltaic cells.
    • 本文描述了包括不具有旁路二极管的太阳能电池板的光伏发电系统。 太阳能面板包括多个光伏子模块,其中多个光伏子模块中的至少两个光伏子模块并联电连接。 光伏子模块包括多组电连接的光伏电池,其中至少两个组被串联电连接。 光伏组包括多个光伏电池串,其中一串光伏电池包括串联电连接的多个光伏电池。 光伏电池串并联电连接,并且光伏电池是具有微系统功能的光伏电池。
    • 4. 发明申请
    • PHOTOVOLTAIC POWER GENERATION SYSTEM FREE OF BYPASS DIODES
    • 无旁通二极管的光伏发电系统
    • US20130269747A1
    • 2013-10-17
    • US13543297
    • 2012-07-06
    • Anthony L. LentineMurat OkandanGregory N. Nielson
    • Anthony L. LentineMurat OkandanGregory N. Nielson
    • H01L31/05
    • H01L31/0504Y02E10/50
    • A photovoltaic power generation system that includes a solar panel that is free of bypass diodes is described herein. The solar panel includes a plurality of photovoltaic sub-modules, wherein at least two of photovoltaic sub-modules in the plurality of photovoltaic sub-modules are electrically connected in parallel. A photovoltaic sub-module includes a plurality of groups of electrically connected photovoltaic cells, wherein at least two of the groups are electrically connected in series. A photovoltaic group includes a plurality of strings of photovoltaic cells, wherein a string of photovoltaic cells comprises a plurality of photovoltaic cells electrically connected in series. The strings of photovoltaic cells are electrically connected in parallel, and the photovoltaic cells are microsystem-enabled photovoltaic cells.
    • 本文描述了包括不具有旁路二极管的太阳能电池板的光伏发电系统。 太阳能面板包括多个光伏子模块,其中多个光伏子模块中的至少两个光伏子模块并联电连接。 光伏子模块包括多组电连接的光伏电池,其中至少两个组被串联电连接。 光伏组包括多个光伏电池串,其中一串光伏电池包括串联电连接的多个光伏电池。 光伏电池串并联电连接,并且光伏电池是具有微系统功能的光伏电池。
    • 5. 发明授权
    • Thermal microphotonic sensor and sensor array
    • 热敏微传感器和传感器阵列
    • US07667200B1
    • 2010-02-23
    • US11950821
    • 2007-12-05
    • Michael R. WattsMichael J. ShawGregory N. NielsonAnthony L. Lentine
    • Michael R. WattsMichael J. ShawGregory N. NielsonAnthony L. Lentine
    • G01J5/00
    • G01J5/44G01J5/08G01J5/0821
    • A thermal microphotonic sensor is disclosed for detecting infrared radiation using heat generated by the infrared radiation to shift the resonant frequency of an optical resonator (e.g. a ring resonator) to which the heat is coupled. The shift in the resonant frequency can be determined from light in an optical waveguide which is evanescently coupled to the optical resonator. An infrared absorber can be provided on the optical waveguide either as a coating or as a plate to aid in absorption of the infrared radiation. In some cases, a vertical resonant cavity can be formed about the infrared absorber to further increase the absorption of the infrared radiation. The sensor can be formed as a single device, or as an array for imaging the infrared radiation.
    • 公开了一种用于利用由红外线辐射产生的热量来检测红外辐射的热微振子传感器,以移动热耦合到的光谐振器(例如,环形谐振器)的谐振频率。 谐振频率的偏移可以通过ev逝耦合到光学谐振器的光波导中的光来确定。 可以在光波导上设置红外线吸收器作为涂层或板,以帮助吸收红外辐射。 在一些情况下,可以围绕红外线吸收体形成垂直谐振腔,以进一步增加红外辐射的吸收。 传感器可以形成为单个装置,或者形成用于对红外线辐射进行成像的阵列。
    • 7. 发明授权
    • Diode-clamped optical receiver
    • 二极管钳位光接收器
    • US5343032A
    • 1994-08-30
    • US45006
    • 1993-04-08
    • Leo M. F. ChirovskyAnthony L. Lentine
    • Leo M. F. ChirovskyAnthony L. Lentine
    • H03F3/08H01J40/14
    • H03F3/082
    • An optical receiver, e.g., receiver 10 (FIG. 1), has differential optical input beams and generates an electrical output. The voltage at an electrical node between series-connected optical detector diodes is clamped within a predefined voltage range by series-connected clamping diodes, to prevent the voltage from increasing when consecutive logic one optical input beams are received. Variable bandwidth and low energy dissipation are achieved since the resistors of high input impedance and transimpedance receivers are not required. A second optical receiver, e.g., receiver 20 (FIG. 2) is a monolithic, diode-clamped S-SEED with complementary optical input beams and complementary optical output beams.
    • 诸如接收机10(图1)的光接收器具有差分光输入光束并产生电输出。 串联连接的光检测器二极管之间的电节点处的电压通过串联钳位二极管钳位在预定义的电压范围内,以防止在接收连续的逻辑一个光输入光束时电压增加。 实现了可变带宽和低能耗,因为不需要高输入阻抗和跨阻抗接收器的电阻。 第二光接收器,例如接收器20(图2)是具有互补光输入光束和互补光输出光束的单片二极管钳位S-SEED。