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    • 2. 发明授权
    • Alcoholic beverage dispenser
    • 酒精饮料机
    • US08028866B2
    • 2011-10-04
    • US12142532
    • 2008-06-19
    • Gary D. Martin
    • Gary D. Martin
    • B67D3/00
    • B67D3/0003B67D3/0019B67D3/0029B67D3/0061B67D3/0067
    • An alcoholic beverage dispenser for receiving individual containers and dispensing alcohol from one or more of the received containers comprising a base having multiple compartments therein each for receiving the individual containers therein. A valve having a valve stem extending therefrom is coupled around the opening of each individual container and each container is in turn connected with a dispensing system within the base. The dispensing system receives liquid from each individual container and dispenses the received liquid through a receiving outlet such as a tap, drink dispenser, or an individual glass.
    • 一种用于接收单个容器并从一个或多个所接收的容器中分配酒精的酒精饮料分配器,包括其中具有多个隔室的基座,用于容纳其中的各个容器。 具有从其延伸的阀杆的阀联接在每个单独容器的开口周围,并且每个容器又与基座内的分配系统连接。 分配系统从每个单独的容器接收液体并通过诸如水龙头,饮料分配器或单独玻璃的接收出口分配所接收的液体。
    • 3. 发明申请
    • POWER SUPPLY AND CONTROLLER CIRCUITS
    • 电源和控制器电路
    • US20110221408A1
    • 2011-09-15
    • US13069163
    • 2011-03-22
    • Gary D. MartinRobert T. Carrol
    • Gary D. MartinRobert T. Carrol
    • G05F1/10
    • H02M3/1584H02M3/157H02M3/1588H02M2003/1566H02M2003/1586Y02B70/1466Y10T307/707
    • A power supply system includes multiple power converter phases. A controller (e.g., a processor device) monitors energy delivery for each of multiple power converter phases that supply energy to a load. The controller analyzes the energy delivery associated with each of the multiple power converter phases to identify an imbalance of energy delivered by the multiple power converter phases to the load. Based on the analyzing and detection of an imbalance condition, the controller modifies a future order of activating the multiple power converter phases for powering the load. Accordingly, a single phase of a multiphase switching power converter may be prevented from becoming overloaded while delivering energy to power the load.
    • 电源系统包括多个电源转换器阶段。 控制器(例如,处理器设备)监视为负载提供能量的多个功率转换器相中的每一个的能量传递。 控制器分析与多个功率转换器相中的每一个相关联的能量传递,以识别由多个功率转换器相向负载传递的能量的不平衡。 基于对不平衡状况的分析和检测,控制器修改启动多个功率转换器相以为负载供电的未来顺序。 因此,可以防止多相开关电源转换器的单相变换过载,同时提供能量来为负载供电。
    • 7. 发明申请
    • POWER SUPPLY AND CONTROLLER CIRCUITS
    • 电源和控制器电路
    • US20080157743A1
    • 2008-07-03
    • US11969659
    • 2008-01-04
    • Gary D. MartinPraveen K. Jain
    • Gary D. MartinPraveen K. Jain
    • G05F1/00
    • H02M3/1584H02M2003/1566
    • A power supply system delivers current to a load at a corresponding load voltage. The power supply system includes multiple power converter phases. Each power conversion phase comprises a phase switch and a phase inductor. In one embodiment, activation of a corresponding phase switch (e.g., a field effect transistor such as a MOSFET) electrically couples a voltage input (e.g., Vin) to an inductor electrically coupled to deliver current to a load. A controller (e.g., a processor device) associated with the power supply system is configured to monitor the load and/or a change in the current delivered to the load. Based on the monitoring, the controller modifies a relative timing of an initiation and duration of on-times of the phase switches in order to alter a rate-of-change of the current delivered by the power supply system.
    • 电源系统以相应的负载电压将电流传送到负载。 电源系统包括多个电源转换器阶段。 每个功率转换阶段包括相位开关和相电感器。 在一个实施例中,相应的相位开关(例如,诸如MOSFET的场效应晶体管)的激活将电压输入(例如,Vin)电耦合到电耦合以将电流传递到负载的电感器。 与电源系统相关联的控制器(例如,处理器设备)被配置为监视负载和/或传送到负载的电流的变化。 基于监视,控制器修改相位开关的接通时间的相对定时和相位开关的接通时间,以便改变由电源系统传送的电流的变化率。
    • 10. 发明授权
    • Hybrid analog/digital power supply circuit including analog summer circuit to produce an error voltage
    • 混合模拟/数字电源电路包括模拟加法电路,产生误差电压
    • US08816661B2
    • 2014-08-26
    • US12417477
    • 2009-04-02
    • Anthony B. CandageVenkat SreenivasGary D. MartinRobert T. Carroll
    • Anthony B. CandageVenkat SreenivasGary D. MartinRobert T. Carroll
    • G05F1/00H02M3/158H02M3/157H03M1/12H03M1/34
    • H02M3/157H02M3/1588Y02B70/1466
    • According to example configurations as described herein, a power supply system includes a unique circuit including an analog summer circuit, an analog-to-digital converter, and a digital controller. An output voltage feedback control loop of the power supply system feeds back the output voltage to the analog summer circuit. The analog summer circuit generates an analog error voltage signal based on: i) the output voltage received from the output voltage feedback loop, ii) an analog reference voltage signal, and iii) an analog reference voltage adjustment signal. The analog reference voltage adjustment signal varies depending on a magnitude of current provided by the output voltage to the dynamic load. Accordingly, the analog summer circuit can be configured to support adaptive voltage positioning. The analog-to-digital converter converts the analog error voltage signal into a digital error voltage signal. A controller generates output voltage control signal(s) based on the digital error voltage signal.
    • 根据如本文所述的示例配置,电源系统包括包括模拟加法电路,模数转换器和数字控制器的唯一电路。 电源系统的输出电压反馈控制回路将输出电压反馈到模拟加法电路。 模拟加法电路基于以下原因产生模拟误差电压信号:i)从输出电压反馈回路接收的输出电压,ii)模拟参考电压信号,以及iii)模拟参考电压调整信号。 模拟基准电压调整信号根据由输出电压与动态负载提供的电流的大小而变化。 因此,模拟加法电路可以配置成支持自适应电压定位。 模拟 - 数字转换器将模拟误差电压信号转换为数字误差电压信号。 控制器基于数字误差电压信号产生输出电压控制信号。