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    • 62. 发明授权
    • Heat dissipation system, rotation speed control circuit and method thereof
    • 散热系统,转速控制电路及其方法
    • US08947035B2
    • 2015-02-03
    • US13790869
    • 2013-03-08
    • Anpec Electronics Corporation
    • Ching-Sheng LiShen-Min LoKun-Min ChenChia-Tai YangMing-Jung Tsai
    • G05B11/28H02P7/29G05D23/19F04D27/00
    • H02P7/29F04D27/004G05D23/1919G06F1/206
    • A rotation speed control circuit is disclosed. The rotation speed control circuit includes a temperature-controlled voltage duty generator, a pulse-width signal duty generator, a multiplier and a rotation speed signal generator. The temperature-controlled voltage duty generator converts temperature-controlled voltage to digital temperature-controlled voltage and executes linear interpolation operation according to a first setting data so as to output temperature-controlled voltage duty signal. The pulse-width signal duty generator coverts pulse-width input signal to a digital pulse-width input signal and executes linear interpolation operation according to a second setting data so as to output a pulse-width duty signal. The temperature-controlled voltage duty signal and the pulse-width duty signal are executed for multiplication by the multiplier so as to output mixing-duty signal. The rotation speed generator receives the mixing-duty signal and a third setting data, and executes a minimum output duty operation so as to output a pulse-width output signal.
    • 公开了一种转速控制电路。 转速控制电路包括温度控制电压占空比发生器,脉冲宽度信号占空比发生器,乘法器和转速信号发生器。 温度控制电压负载发生器将温度控制电压转换为数字温度控制电压,并根据第一设置数据执行线性内插操作,以输出温度控制的电压占空比信号。 脉冲宽度信号占空比发生器将脉冲宽度输入信号覆盖到数字脉冲宽度输入信号,并根据第二设置数据执行线性内插操作,以输出脉宽占空比信号。 执行温度控制电压占空比信号和脉冲宽度占空比信号,以乘以乘法器输出混频占空比信号。 转速发生器接收混合负载信号和第三设定数据,并执行最小输出占空比操作,以输出脉冲宽度输出信号。
    • 64. 发明授权
    • Controlling device and method
    • 控制装置及方法
    • US08942858B2
    • 2015-01-27
    • US13546840
    • 2012-07-11
    • Masato Tanaka
    • Masato Tanaka
    • G06F19/00G05B11/42G05D23/19G05B13/02H01L21/67
    • G05B11/42G05B13/021G05D23/1919H01L21/67248
    • A controlling device comprises: a temperature ramp-up time estimating portion for estimating a required temperature ramp-up time for the controlled quantity in each individual control loop to reach a set point when the operating quantity output upper limit value of each individual control loop has been sent to a specified output upper limit value; a required output estimating portion for estimating, for each individual control loop, a required operating quantity output for the controlled quantity to reach the set point within the temperature ramp-up time; an output upper limit value setting portion for setting, temporarily, the operating quantity output as the operating quantity output upper limit value of the individual control loop; and a controlling portion that is provided for each individual control loop.
    • 控制装置包括:温度上升时间估计部分,用于在每个单独的控制回路的操作量输出上限值具有每个控制回路的运行量输出上限值时估计每个单独控制回路中的控制量达到设定点的所需温度上升时间 已发送到指定的输出上限值; 一个所需的输出估计部分,用于针对每个单独的控制回路,在所述温度上升时间内估计所述控制量到达所述设定点的所需操作量输出; 输出上限值设定部,临时设定作为各个控制回路的运转量输出上限值的运算量输出; 以及为每个单独的控制回路提供的控制部分。
    • 65. 发明授权
    • Adaptive heat exchange architecture for optimum energy recovery in a waste heat recovery architecture
    • 自适应热交换架构,用于废热回收结构中的最佳能量回收
    • US08931275B2
    • 2015-01-13
    • US13357202
    • 2012-01-24
    • Stephen B. GloverJohn R. BucknellNorman K. BucknorDongsuk Kum
    • Stephen B. GloverJohn R. BucknellNorman K. BucknorDongsuk Kum
    • F02G5/04F28D21/00F28F27/02G05D23/19
    • F02G5/04F28D21/0003F28F27/02G05D23/1919Y02T10/166
    • A waste heat recovery system that efficiently converts waste heat from an engine coolant and an engine exhaust in a vehicle. The system includes a coolant heat exchanger that receives heat from the engine coolant, an exhaust heat exchanger that receives heat from the engine exhaust and an economizer heat exchanger. A plurality of valves control the flow of the fluid in different modes as determined by a power ratio between the heat provided by the exhaust heat exchanger and the heat provided by the coolant heat exchanger, including an economizer heat exchanger after coolant heat exchanger mode at low power ratios, where the fluid from the pump flows to the economizer heat exchanger after the coolant heat exchanger and an economizer heat exchanger before coolant heat exchanger mode at high power ratios, where the fluid from the pump flows to the economizer heat exchanger before the coolant heat exchanger.
    • 一种废热回收系统,其有效地将来自发动机冷却剂和车辆中的发动机排气的废热转化。 该系统包括从发动机冷却剂接收热量的冷却剂热交换器,从发动机排气口接收热量的排气热交换器和节能器热交换器。 多个阀门以不同的模式控制流体的流动,其由排气热交换器提供的热量与由冷却剂热交换器提供的热量之间的功率比确定,包括在低温冷却剂换热器模式之后的节能热交换器 功率比,在来自泵的流体在高功率比下的冷却剂热交换器模式之前,来自泵的流体在冷却剂热交换器和节能器热交换器之后流到节能器热交换器,其中来自泵的流体在冷却剂之前流到节能器热交换器 热交换器。
    • 70. 发明申请
    • Beverage Dispenser with Improved Flow Control and Thermal Control
    • 饮料分配器具有改进的流量控制和热控制
    • US20140341552A1
    • 2014-11-20
    • US13894324
    • 2013-05-14
    • ZPM Ltd. Co.
    • Igor ZamlinksyGleb Polyakov
    • A47J31/54G05D23/19A47J31/56
    • A47J31/545A47J31/52G05D23/1919
    • An espresso machine with improved fluid and thermal control is disclosed. The machine can include a controller for feedback pressure control of vibratory solenoid pumps. The controller can monitor pump pressure and/or volume and provide real-time feedback control of the pump pressure and/or volume. The controller can control pump output by means of a direct current, variable frequency square wave, which can be regulated to maintain a desired pressure output. The controller can also control pump output by means of a direct current, variable pulse width square wave. The espresso machine can also include a thermoblock with improved thermal efficiency and temperature control. The thermoblock can comprise a one or more serpentine pathways to improve thermal transfer to the fluid therein. The thermoblock can also provide feedback control of the temperature of the fluid.
    • 公开了一种具有改进的流体和热控制的浓缩咖啡机。 该机器可以包括用于振动电磁泵的反馈压力控制的控制器。 控制器可以监测泵的压力和/或体积,并提供对泵的压力和/或体积的实时反馈控制。 控制器可以通过直流可变频率方波来控制泵浦输出,该方波可被调节以保持所需的压力输出。 控制器还可以通过直流,可变的脉冲宽度方波来控制泵的输出。 浓缩咖啡机还可以包括具有改进的热效率和温度控制的热块。 热块可以包括一个或多个蛇形通道,以改善对其中的流体的热传递。 热块也可以提供流体温度的反馈控制。