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    • 1. 发明授权
    • High density power distribution unit
    • 高密度配电单元
    • US07394667B2
    • 2008-07-01
    • US11093628
    • 2005-03-30
    • John H. KellyNaufel C. NaufelIrena BoruckiEugene R. PilatMarkus Tegethoff
    • John H. KellyNaufel C. NaufelIrena BoruckiEugene R. PilatMarkus Tegethoff
    • H01R9/00
    • H05K7/1492G06F1/189
    • A power distribution unit (306) may include a power distribution unit frame (310), where the power distribution unit frame has a 2U form factor (312), and where the power distribution unit frame is coupled to mount in an embedded computer frame (102). A plurality of power ingress sites (330) may be coupled to a rear portion (320) of the power distribution unit frame, where each of the plurality of power ingress sites has a current capacity of at least 100 amperes, where each of the plurality of power ingress sites includes an ingress pin (332) coupled to interface with an ingress in-line, hyperboloid radial socket (334), and where the power distribution unit has a current-capacity density of the plurality of power ingress sites of at least 600 amperes per power distribution unit.
    • 配电单元(306)可以包括配电单元框架(310),其中配电单元框架具有2U形状因子(312),并且其中配电单元框架耦合以安装在嵌入式计算机框架中 102)。 多个电力入口位置(330)可以耦合到配电单元框架的后部(320),其中多个电力入口位置中的每一个具有至少100安培的电流容量,其中多个 电源入口站点包括耦合到与入口在线双曲面径向插座(334)接口的入口销(332),并且其中配电单元具有至少多个电力入口位置的电流容量密度 每个配电单元600安培。
    • 2. 发明授权
    • Electronic security device and method
    • 电子安全装置及方法
    • US4372590A
    • 1983-02-08
    • US130597
    • 1980-03-17
    • Eugene R. PilatGeorge J. Franks, Jr.Jerry F. Dyben
    • Eugene R. PilatGeorge J. Franks, Jr.Jerry F. Dyben
    • G07C9/00E05C1/08
    • G07C9/00182G07C2009/00603G07C2009/00785Y10T292/0836Y10T292/098Y10T70/8811
    • An electronic locking device having a key unit and lock unit which units each have substantially identical integrated circuits contained therein for electronically controlling the operation of the locking device. The integrated circuit in the key element is adapted to transmit a stream of pulses into a plurality of trains of pulses upon insertion of the key unit into the lock unit. Each train of pulses is of a predetermined length. The integrated circuit in the lock unit is adapted to receive the train of pulses emitted from the key unit, to determine the length of the train of pulses, and compare the length of the train of pulses received to determine whether such train length coincides with the predetermined length. The integrated circuit in the lock unit will then emit a signal to allow the lock unit to open. If the length of the train of pulses does not coincide with the predetermined length, the lock unit integrated circuit will not emit a signal and the locking device will remain locked. Details of mechanical lock structures are also disclosed, with such locks providing dead bolt protection and autolock operation; the locks are adapted to be actuated with minimal energy consumption.
    • 具有键单元和锁定单元的电子锁定装置,每个单元具有包含在其中的基本相同的集成电路,用于电子地控制锁定装置的操作。 密钥元件中的集成电路适于在将钥匙单元插入锁定单元中时将脉冲流传输到多个脉冲列。 每列脉冲具有预定的长度。 锁定单元中的集成电路适于接收从密钥单元发射的脉冲序列,以确定脉冲序列的长度,并且比较接收到的脉冲串的长度,以确定这样的列车长度是否与 预定长度。 然后锁定单元中的集成电路将发出一个信号以允许锁定单元打开。 如果脉冲序列的长度与预定长度不一致,则锁定单元集成电路将不会发出信号,并且锁定装置将保持锁定。 还公开了机械锁结构的细节,其中这种锁具提供死螺栓保护和自动锁定操作; 锁具适于以最小的能量消耗被致动。