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    • 5. 发明授权
    • Strip to point optical communication system
    • 点对点光通信系统
    • US07302127B1
    • 2007-11-27
    • US11538338
    • 2006-10-03
    • Rachid M. AlamehMark A. BarabolakManinder S. SehmbeyDavid R. Zeiger
    • Rachid M. AlamehMark A. BarabolakManinder S. SehmbeyDavid R. Zeiger
    • G02B6/36G02B6/12G02B6/26
    • G02B6/4204H04M1/0237
    • A strip to point optical communication system (200) for transmitting light between a first housing (102) and a second housing (104) of a device is provided. The strip to point optical communication system (200) includes a point optical communication element (202) that is capable of receiving the light. The point optical communication element (202) is coupled to either the first housing (102) or the second housing (104). The strip to point optical communication system (200) also includes a strip optical communication element (204) that is coupled to either the first housing (102) or the second housing (104) to which the point optical communication element (202) is not coupled. The length of the strip optical communication element (204) corresponds to the travel distance of the first housing (102) and the second housing (104). The strip optical communication element (204) is located to coincide with a travel path of the point optical communication element (202).
    • 提供了一种用于在设备的第一壳体(102)和第二壳体(104)之间传送光的条形点对点光通信系统(200)。 带对点光通信系统(200)包括能够接收光的点光通信元件(202)。 点光通信元件(202)耦合到第一壳体(102)或第二壳体(104)。 条带对点光通信系统(200)还包括条带光通信元件(204),其耦合到点光通信元件(202)不与其通信的第一壳体(102)或第二壳体(104) 耦合。 带状光通信元件(204)的长度对应于第一壳体(102)和第二壳体(104)的移动距离。 带状光通信元件(204)被定位成与点光通信元件(202)的行进路径重合。
    • 7. 发明授权
    • Optical communication system adapted for receiving an optical signal at a plurality of different positions
    • 适于在多个不同位置接收光信号的光通信系统
    • US07706645B2
    • 2010-04-27
    • US11616497
    • 2006-12-27
    • David R. ZeigerMark A. BarabolakManinder S. Sehmbey
    • David R. ZeigerMark A. BarabolakManinder S. Sehmbey
    • G02B6/26
    • G02B6/43G02B6/3552G02B6/3574G02B6/3598G02B6/3604
    • An optical communication system (200) for transmitting light between a first housing (102) and a second housing (104) of a device (100) is provided. The first housing and the second housing are adapted to move relative to one another between a plurality of usage positions. The optical communication system includes a first optical communication element (202), a second optical communication element (204), and an optical waveguide (206). The first optical communication element is capable of emitting light and can be coupled to one of the first and second housing. The second optical communication element is capable of receiving the light and can be coupled to the housing to which the first optical communication element is not coupled. The optical waveguide is capable of conveying the light emitted by the first to the second optical communication element. The second optical communication element can substantially encompass a locus of the output light.
    • 提供一种用于在设备(100)的第一壳体(102)和第二壳体(104)之间传输光的光通信系统(200)。 第一壳体和第二壳体适于在多个使用位置之间相对于彼此移动。 光通信系统包括第一光通信元件(202),第二光通信元件(204)和光波导(206)。 第一光通信元件能够发光并且可以耦合到第一和第二壳体中的一个。 第二光通信元件能够接收光并且可以耦合到第一光通信元件未耦合到的外壳。 光波导能够将由第一光通信元件发射的光传送到第二光通信元件。 第二光通信元件可以基本上包围输出光的轨迹。
    • 8. 发明授权
    • Heat transfer device with a self adjusting wick and method of manufacturing same
    • 带有自调整芯片的传热装置及其制造方法
    • US06460612B1
    • 2002-10-08
    • US10074284
    • 2002-02-12
    • Maninder S. SehmbeyJames P. Chen
    • Maninder S. SehmbeyJames P. Chen
    • F28F2700
    • F28D15/046
    • A heat pipe and method that utilizes a multi-layered shape memory alloy (SMA) as the wick structure. Each layer has a different transformation temperature. The inner layer of the SMA begins contracting first when heat is applied along the surface of the heat pipe. The contraction reduces the effective capillary radius rc of the wick, thereby maintaining or increasing the capillary pumping pressure and thus the ability to remove heat. As the temperature of the heat pipe continues to rise, the outer layer begins contracting to reduce the capillary radius further. As a result, the local pumping pressure is maintained or even increased to accommodate higher local heat flux and remove the heat to prevent “dry-out.”
    • 一种利用多层形状记忆合金(SMA)作为芯结构的热管和方法。 每层具有不同的转化温度。 当沿着热管的表面施加热量时,SMA的内层首先开始收缩。 收缩降低了芯的有效毛细管半径rc,从而保持或增加毛细管抽吸压力,从而保持除去热量的能力。 随着热管的温度继续上升,外层开始收缩以进一步降低毛细管半径。 结果,局部泵送压力被维持或甚至增加以适应较高的局部热通量并去除热量以防止“干燥”。
    • 9. 发明申请
    • CONNECTOR AND SYSTEM FOR COOLING ELECTRONIC DEVICES
    • 用于冷却电子设备的连接器和系统
    • US20130309899A1
    • 2013-11-21
    • US13471486
    • 2012-05-15
    • Maninder S. SehmbeyMorris B. Bowers
    • Maninder S. SehmbeyMorris B. Bowers
    • H01R13/00
    • G06F1/203
    • An electrical connector (130) is configured to draw heat out of a portable electronic device (100). The electrical connector (130) can include an electrical connection portion and a housing (131). A thermal conduit (132) is coupled to the housing (131) at a connection (536). The connection (536) is configured to transfer heat between the thermal conduit (132) and the housing (131). The electrical connector (130) can be coupled to a second electrical connector (660), which can be coupled to a heat sink (1015) to draw heat from the portable electronic device (100) through the connectors to the heat sink (1015), thus obviating the need to incorporate fans or other cooling devices in the portable electronic device (100).
    • 电连接器(130)被配置为将热量从便携式电子设备(100)中抽出。 电连接器(130)可以包括电连接部分和壳体(131)。 热导管(132)在连接(536)处联接到壳体(131)。 连接件(536)构造成在热导管(132)和壳体(131)之间传递热量。 电连接器(130)可以耦合到第二电连接器(660),其可耦合到散热器(1015),以将热量从便携式电子设备(100)通过连接器吸收到散热器(1015) ,从而避免了将风扇或其它冷却装置并入便携式电子设备(100)中的需要。