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    • 31. 发明申请
    • Heat Sinks for Dissipating a Thermal Load
    • 用于散热负载的散热器
    • US20080062648A1
    • 2008-03-13
    • US11530546
    • 2006-09-11
    • Don A. Gilliland
    • Don A. Gilliland
    • H05K7/20
    • H01L23/473H01L2924/0002H01L2924/00
    • Heat sinks for dissipating a thermal load are disclosed that include: a heat sink base capable of receiving a thermal load from a thermal source; heat-dissipating fins mounted on the heat sink base, each heat-dissipating fin enclosing a hollowed cavity inside the heat-dissipating fin; and a thermal transport within the hollowed cavity of each heat-dissipating fin, the thermal transport capable of convectively transferring the thermal load along a convective heat path within each heat-dissipating fin. Heat sinks for dissipating a thermal load may also include: a pair of electrodes inside each heat-dissipating fin electrically connected to the thermal transport for generating an electric current through the thermal transport; and a magnet mounted adjacent to the heat-dissipating fins for generating a magnetic field through the thermal transport, the magnetic field passing through the electric current and oriented to induce a force on the thermal transport along the convective heat path.
    • 公开了用于耗散热负载的散热器,其包括:能够从热源接收热负载的散热器基座; 安装在散热器底座上的散热翅片,每个散热翅片包围散热片内的中空腔; 以及在每个散热鳍片的中空腔内的热传输,热传输能够沿着每个散热翅片内的对流热路对流传递热负荷。 用于耗散热负荷的散热器还可以包括:每个散热翅片内的一对电极,其电连接到热传输以产生通过热传输的电流; 以及安装在散热翅片附近的磁体,用于通过热传输产生磁场,所述磁场通过电流并且被定向成沿着对流热路径在热传递上产生力。
    • 35. 发明申请
    • Implementing A Coded Time Domain Transmission Distance Meter
    • 实现编码时域传输距离计
    • US20100277182A1
    • 2010-11-04
    • US12432089
    • 2009-04-29
    • Ross T. FredericksenEdward C. GillardDon A. Gilliland
    • Ross T. FredericksenEdward C. GillardDon A. Gilliland
    • G01R31/11
    • G01S13/765H04B14/04
    • A method and circuit for implementing a coded time domain transmission distance meter, and a design structure on which the subject circuit resides are provided. A first transmitter module connected to a cable at a first point or power outlet, generates and sends a testing coded pulse onto the power cable. A second receiver module connected to the cable at a second point, receives the testing coded pulse, and returns a receiver response coded pulse to the transmitter module. The first transmitter module determines the round-trip elapsed time, subtracts a receiver latency time, and calculates a distance to the second receiver module. Encoded in the testing coded pulse are data representing the last calculated distance. Both the first transmitter module and the second receiver module include a display for displaying the calculated distance.
    • 一种用于实现编码时域传输距离计的方法和电路,以及设置有被摄体电路的设计结构。 在第一点或电源插座处连接到电缆的第一发射器模块产生并将测试编码脉冲发送到电力电缆上。 在第二点处连接到电缆的第二接收机模块接收测试编码脉冲,并将接收机响应编码脉冲返回给发射机模块。 第一发射机模块确定往返时间经过时间,减去接收机延迟时间,并计算到第二接收机模块的距离。 测试编码脉冲编码是表示最后计算距离的数据。 第一发射器模块和第二接收器模块都包括用于显示计算出的距离的显示器。
    • 36. 发明申请
    • DUAL CLOCK SPREAD FOR LOW CLOCK EMISSIONS WITH RECOVERY
    • 用于具有恢复的低时钟排放的双时钟传播
    • US20090268858A1
    • 2009-10-29
    • US12361222
    • 2009-01-28
    • Don A. Gilliland
    • Don A. Gilliland
    • H04L7/00
    • H04L7/0008H04B15/02H04B2215/067H04L7/0091
    • A method and apparatus provides for the generation and recovery of a stable clock signal having harmonic emission suppressions using dual spread spectrum clock signals. The transmission frequencies of non-mixed, spread spectrum lower frequency clock signals may be varied and, upon receipt of these non-mixed signals, they are mixed into sum and difference signals. The sum signal thus generated is representative of the desired clock signal to be recovered. Such conditioning of the non-mixed signals need only occur within the receiver, thereby allow the channel that transmits the non-mixed lower frequency clock signals to the receiver to be lower bandwidth than would be required to carry the final, recovered, and higher frequency clock signal produced by the receiver.
    • 一种方法和装置提供使用双扩频时钟信号产生和恢复具有谐波发射抑制的稳定时钟信号。 非混合扩频低频时钟信号的发送频率可以变化,并且在接收到这些非混合信号时,将它们混合在和信号和差分信号中。 由此产生的和信号代表要恢复的期望时钟信号。 非混合信号的这种调节仅需要在接收机内进行,从而允许将非混合低频时钟信号发送到接收机的信道比携带最终,恢复和更高频率所需要的带宽更低 由接收机产生的时钟信号。
    • 38. 发明授权
    • Electroactive polymer compressed gasket for electromagnetic shielding
    • 电聚合物压电垫片用于电磁屏蔽
    • US07456365B2
    • 2008-11-25
    • US11470828
    • 2006-09-07
    • Don A. GillilandSophia S. Lau
    • Don A. GillilandSophia S. Lau
    • H05K9/00
    • F16J15/064Y10S277/92
    • A gasket for shielding a seam between two surfaces includes a resilient member, a first electrode, a second electrode and a conductive layer. The resilient member has a first side and an opposite second side. The first electrode is disposed on the first side of the resilient member. The second electrode is disposed on the second side of the resilient member. The conductive layer envelops at least a portion of the resilient member, the first electrode and the second electrode. The resilient member includes a material that is compressed when a first potential is applied between the first electrode and the second electrode and that is decompressed when a second potential, different from the first potential, is applied between the first electrode and the second electrode.
    • 用于屏蔽两个表面之间的接缝的垫圈包括弹性构件,第一电极,第二电极和导电层。 弹性构件具有第一侧和相对的第二侧。 第一电极设置在弹性构件的第一侧上。 第二电极设置在弹性构件的第二侧上。 导电层包围弹性构件,第一电极和第二电极的至少一部分。 弹性构件包括当在第一电极和第二电极之间施加第一电位时被压缩并且当在第一电极和第二电极之间施加与第一电位不同的第二电位时被压缩的材料。
    • 40. 发明授权
    • Heat sinks for dissipating a thermal load
    • 用于消散热负荷的散热器
    • US07408778B2
    • 2008-08-05
    • US11530546
    • 2006-09-11
    • Don A. Gilliland
    • Don A. Gilliland
    • H05K7/20
    • H01L23/473H01L2924/0002H01L2924/00
    • Heat sinks for dissipating a thermal load are disclosed that include: a heat sink base capable of receiving a thermal load from a thermal source; heat-dissipating fins mounted on the heat sink base, each heat-dissipating fin enclosing a hollowed cavity inside the heat-dissipating fin; and a thermal transport within the hollowed cavity of each heat-dissipating fin, the thermal transport capable of convectively transferring the thermal load along a convective heat path within each heat-dissipating fin. Heat sinks for dissipating a thermal load may also include: a pair of electrodes inside each heat-dissipating fin electrically connected to the thermal transport for generating an electric current through the thermal transport; and a magnet mounted adjacent to the heat-dissipating fins for generating a magnetic field through the thermal transport, the magnetic field passing through the electric current and oriented to induce a force on the thermal transport along the convective heat path.
    • 公开了用于耗散热负载的散热器,其包括:能够从热源接收热负载的散热器基座; 安装在散热器底座上的散热翅片,每个散热翅片包围散热片内的中空腔; 以及在每个散热鳍片的中空腔内的热传输,热传输能够沿着每个散热翅片内的对流热路对流传递热负荷。 用于耗散热负荷的散热器还可以包括:每个散热翅片内的一对电极,其电连接到热传输以产生通过热传输的电流; 以及安装在散热翅片附近的磁体,用于通过热传输产生磁场,所述磁场通过电流并且被定向成沿着对流热路径在热传递上产生力。