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    • 1. 发明授权
    • Automatic equal-phase synchronizer for a varying number of synchronized
units
    • 自动等相同步器,用于不同数量的同步单元
    • US5451858A
    • 1995-09-19
    • US100399
    • 1993-08-02
    • Jeffrey L. Van DuyneWilliam J. Laughton
    • Jeffrey L. Van DuyneWilliam J. Laughton
    • H02J1/00B64G1/42H02J1/10H02J1/12H02J7/35H02M1/14G05F1/40
    • B64G1/428H02J1/10H02J1/102H02M1/14H02J2001/104
    • A spacecraft (10) includes N paralleled power converters (24a, 24b . . . ) for producing current pulses in response to converter synchronizing pulses. The current pulses are integrated (28) to produce an operating direct voltage. The synchronizing pulses are produced in a recurrent cycle by a synchronizer (30). The synchronizer includes a voltage divider (320) with equal series-connected elements (324a, 324b . . . ), each of which is paralleled by a shorting switch (330a, 330b . . . ). A sawtooth signal generator (310) produces a sawtooth signal (312), which is applied in common to each of a plurality of comparators (332a, 332b . . . ). The voltage divider (320) is connected across a reference voltage (318), to produce a plurality of reference voltages at the taps (328a, 328b). Each comparator (332) compares the sawtooth ramp (314) with one of the reference voltages, so that the comparators trigger in sequence as the ramp rises. The comparators trigger at times corresponding to equal phase increments of 360.degree./N at the ramp recurrence frequency, where N is the number of power converters being driven. If a power converter fails, it produces a NOGO signal, which causes the associated voltage divider switch to close, to thereby short-circuit one of the divider elements. This redistributes the phase increments, so the remaining power converters continue to be synchronized in equal phase increments.
    • 航空器(10)包括用于响应于转换器同步脉冲产生电流脉冲的N个并联电力转换器(24a,24b ...)。 电流脉冲被积分(28)以产生工作直流电压。 同步脉冲由同步器(30)以循环周期产生。 同步器包括具有相同的串联元件(324a,324b ...)的分压器(320),每个元件与短路开关(330a,330b ...)并联。 锯齿波信号发生器(310)产生锯齿波信号(312),其被共同应用于多个比较器(332a,332b ...)中的每一个。 分压器(320)跨越参考电压(318)连接,以在抽头(328a,328b)处产生多个参考电压。 每个比较器(332)将锯齿波形(314)与参考电压之一进行比较,使得比较器随着斜坡上升而依次触发。 在斜坡复发频率下,比较器触发相当于360°/ N的相位增量的时间,其中N是驱动的功率转换器的数量。 如果电源转换器出现故障,则会产生NOGO信号,导致相关的分压开关闭合,从而使分压元件之一短路。 这将重新分配相位增量,因此剩余的功率转换器将以相等的相位增量继续同步。
    • 5. 发明授权
    • Control apparatus and methods, heat transfer systems and apparatus and
methods for controlling such systems and for sensing and indicating low
fluid charge conditions therein
    • 控制装置和方法,传热系统以及用于控制这种系统并用于感测和指示其中的低流体充电条件的装置和方法
    • US4561261A
    • 1985-12-31
    • US596831
    • 1984-04-04
    • William P. KornrumpfWilliam J. Laughton
    • William P. KornrumpfWilliam J. Laughton
    • G01L9/00G01L9/16F25B1/00H01H35/18
    • G01L9/007G01L9/16Y10T307/779
    • Control apparatus for producing a control signal indicating that a physical variable has reached a userselected level. A transducer generates for the control apparatus electrical pulses having a repetition period which is a function of the physical variable. The control apparatus repeatedly counts clock pulses in response to the transducer pulses to provide a first digital signal representative of the repetition period of the transducer pulses. The apparatus also repeatedly generates a second digital signal corresponding to the user-selected level of the physical variable by adding to a preset binary code a binary amount related to a userselected voltage. The first and second digital signals are compared to produce the control signal for a switching circuit which responds thereto. The comparison is overriden if an analysis of most significant bits of the first digital signal shows that the physical variable varies beyond a predetermined level. In control apparatus for a heat transfer system the comparison is made with a high fluid pressure level, and a low charge pressure level, as well as a userselected low fluid pressure level. Subject to predetermined time delays, the system is actuated when the high pressure is reached, and deactuated when the selected low pressure is reached. Abnormally low fluid charge is indicated when an excessive rate of change from the high pressure level to the low charge pressure level repeatedly occurs. An automotive air conditioning system and methods for controlling such a system are also described.
    • 用于产生指示物理变量已经达到用户选择电平的控制信号的控制装置。 换能器为控制装置产生具有作为物理变量的函数的重复周期的电脉冲。 控制装置响应于换能器脉冲重复计数时钟脉冲,以提供表示换能器脉冲的重复周期的第一数字信号。 该设备还通过将与用户选择的电压相关的二进制量相加到预设的二进制代码来重复产生对应于物理变量的用户选择电平的第二数字信号。 对第一和​​第二数字信号进行比较,以产生对其进行响应的开关电路的控制信号。 如果对第一数字信号的最高有效位的分析表明物理变量变化超过预定水平,则比较被覆盖。 在用于传热系统的控制装置中,用较高的流体压力水平和低的充气压力水平以及用户选择的低流体压力水平进行比较。 受到预定的时间延迟,当达到高压时系统被启动,并且当达到所选择的低压时停止。 当从高压水平到低充电压力水平的过大变化重复发生时,指示异常低的液体充量。 还描述了用于控制这种系统的汽车空调系统和方法。
    • 7. 发明授权
    • HVIC primary side power supply controller including
full-bridge/half-bridge driver
    • HVIC一次侧电源控制器包括全桥/半桥驱动器
    • US4967332A
    • 1990-10-30
    • US484945
    • 1990-02-26
    • Glenn S. ClaydonWilliam J. Laughton
    • Glenn S. ClaydonWilliam J. Laughton
    • H02M1/00H02M1/38H02M3/337
    • H02M1/38H02M3/3376Y02B70/1433
    • A primary side power supply controller includes a full-bridge/half-bridge driver and is capable of being implemented on a single HVIC chip. Control circuitry enables operation in PWM, resonant, and phase-shift control modes. In the phase-shift control mode, a phase shift generator receives two input pulse train signals and generates two output pulse train signals, each having a 50% duty cycle, which are phase-shifted in a range from 0 to 180.degree. by an amount proportional to the duty cycle of the input pulse train signals and also proportional to the power supply load requirement. Dead time circuitry for ensuring that no two switching devices in a half-bridge, or in the same leg of a full-bridge, are conductive simultaneously employs a symmetrical delay circuit which independently delays the rising and falling edges of each signal pulse.
    • 初级侧电源控制器包括全桥/半桥驱动器,并且能够在单个HVIC芯片上实现。 控制电路可以在PWM,谐振和相移控制模式下工作。 在相移控制模式中,相移发生器接收两个输入脉冲序列信号,并产生两个输出脉冲序列信号,每个具有50%的占空比,它们在0至180度的范围内相移一定量 与输入脉冲串信号的占空比成比例,并与电源负载要求成正比。 用于确保半桥或全桥同一条腿中的两个开关器件同时导通的死区时间电路采用独立延迟每个信号脉冲的上升沿和下降沿的对称延迟电路。