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    • 3. 发明授权
    • Performance venue with dynamic mechanical load management system and method
    • 表演场地采用动态机械负载管理系统和方法
    • US08710704B2
    • 2014-04-29
    • US12772737
    • 2010-05-03
    • Michael LichterTimothy P. NolanLarry J. Gauthier
    • Michael LichterTimothy P. NolanLarry J. Gauthier
    • H02H11/00
    • A63J1/028Y10T307/461Y10T307/469Y10T307/766Y10T307/826Y10T307/839
    • A performance venue having a dynamic load management system for use in managing loads. The system uses a dead man circuit as a means for determining the actual or anticipated dynamic load produced by moving loads, and then disables the system by opening the dead man circuit when too many loads are moved or selected to be moved. Preferably, the invention is embodied in a dead man circuit is pure hardware, and is free of software components. The invention also provides a method of controlling movement of loads in a performance venue having a plurality machines. In its basic form, the method comprises selecting at least one of the machines for movement, closing a dead man circuit, and opening the dead man circuit if the current in the dead man circuit falls outside a predetermined range.
    • 具有用于管理负载的动态负载管理系统的演出场地。 该系统使用死人电路作为确定移动负载产生的实际或预期动态负载的手段,然后当太多负载移动或选择移动时,通过打开死人电路来禁用系统。 优选地,本发明体现在死电路中是纯硬件,并且没有软件组件。 本发明还提供一种控制具有多个机器的演出场地中的负载的移动的方法。 在其基本形式中,所述方法包括:如果所述死人电路中的电流超出预定范围,则选择所述机器中的至少一个用于运动,闭合死人电路,以及打开所述死人电路。
    • 5. 发明授权
    • Power supply control apparatus
    • 电源控制装置
    • US08351172B2
    • 2013-01-08
    • US13551492
    • 2012-07-17
    • Akihiro Nakahara
    • Akihiro Nakahara
    • H02H3/00H02H3/20
    • H03K17/0822H03K17/063H03K2217/0018H03K2217/0036Y10T307/839
    • A power supply control apparatus includes an output transistor coupled between a first power supply line and an output terminal, the output terminal being configured to be coupled with a load, a discharge transistor coupled between a gate of the output transistor and the output terminal, and rendered conductive when the output transistor is brought into a non-conduction state, a negative voltage control unit coupled between the first power supply line and the gate of the output transistor, and bringing the output transistor into a conduction state when the counter electromotive voltage applied to the output terminal from the load exceeds a predetermined value, a diode having a cathode coupled with the first power supply line, and an anode, a third resistor provided between the anode of the diode and a second power supply line, and a compensation transistor coupled between the second power supply line and the output terminal.
    • 电源控制装置包括耦合在第一电源线和输出端之间的输出晶体管,输出端被配置为与负载耦合,耦合在输出晶体管的栅极和输出端之间的放电晶体管,以及 当输出晶体管处于非导通状态时导通,负电压控制单元耦合在第一电源线和输出晶体管的栅极之间,并且当施加反电动势时将输出晶体管导通到导通状态 从负载到输出端子超过预定值,具有与第一电源线耦合的阴极的二极管和设置在二极管的阳极和第二电源线之间的阳极和第三电阻器以及补偿晶体管 耦合在第二电源线和输出端之间。
    • 6. 发明授权
    • Power supply control apparatus
    • 电源控制装置
    • US08270133B2
    • 2012-09-18
    • US12905414
    • 2010-10-15
    • Akihiro Nakahara
    • Akihiro Nakahara
    • H02H3/00H02H3/20
    • H03K17/0822H03K17/063H03K2217/0018H03K2217/0036Y10T307/839
    • A power supply control apparatus includes: an output transistor coupled between a first power supply line and an output terminal, the output terminal being configured to be coupled with a load; a protection transistor coupled between a gate of the output transistor and a second power supply line; a negative voltage control unit coupled between the first power supply line and the gate of the output transistor; a compensation transistor bringing the second power supply line and the output terminal into a conduction state when a counter electromotive voltage from the load is applied to the output terminal; and a back gate control circuit that controls the second power supply line and a back gate of each of the compensation transistor and the protection transistor to be brought into a conduction state in a standby state when the polarity of the power supply is normal.
    • 电源控制装置包括:耦合在第一电源线和输出端之间的输出晶体管,所述输出端被配置为与负载耦合; 耦合在所述输出晶体管的栅极和第二电源线之间的保护晶体管; 耦合在第一电源线和输出晶体管的栅极之间的负电压控制单元; 补偿晶体管,当来自所述负载的反电动势施加到所述输出端时,使所述第二电源线和所述输出端子进入导通状态; 以及当电源的极性正常时,控制补偿晶体管和保护晶体管中的每一个的第二电源线和后栅极处于待机状态的背栅极控制电路。
    • 9. 发明申请
    • LOW ON-RESISTANCE MOSFET IMPLEMENTED, BY-PASS DIODE OR CIRCUIT BREAKER AND RELATED SELF-POWERING AND CONTROL CIRCUIT
    • 低导通电阻MOSFET实现,旁路二极管或电路断路器及相关自我供电和控制电路
    • US20110278955A1
    • 2011-11-17
    • US13096393
    • 2011-04-28
    • Tiziana Teresa SignorelliFrancesco Pulvirenti
    • Tiziana Teresa SignorelliFrancesco Pulvirenti
    • H02J1/00
    • H02J7/35H01L31/02021H03K17/063H03K17/302Y02E10/50Y10T307/598Y10T307/839
    • A MOSFET implemented self-powered current by-pass or circuit breaker device is based on the use of a high multiplication factor (HMF) inductive voltage booster, adapted to boost a voltage as low as few tens of mV up to several Volts, assisted by a start-up low multiplication factor (LMF) charge pump made with low threshold transistors for providing a supply voltage to a polarity inversion detecting comparator of the drain-to-source voltage difference of a power MOSFET connected in parallel to a DC source or string of series connected DC sources or battery, in series to other DC sources during normal operation of the parallel connected DC source or string of series connected DC sources or battery. The inductance for the high multiplication factor, inductive voltage booster for most of the considered power applications is on the order of a few pH and such a relatively send inductor may be included as a discrete component in a compact package or “system-in-package” of monolithically integrated circuits.
    • MOSFET实现自供电电流旁路或断路器装置是基于使用高倍增因子(HMF)感应电压升压器,适用于将电压升至几十mV至几伏,由 由低阈值晶体管制成的启动低倍乘因子(LMF)电荷泵,用于向与DC源或串并联连接的功率MOSFET的漏极 - 源极电压差的极性反转检测比较器提供电源电压 串联连接的直流电源或电池,在并联连接的直流电源或串联的直流电源或电池串的正常工作期间与其他直流电源串联。 用于大多数考虑的功率应用的高倍增系数,感应电压升压器的电感在几个pH的数量级上,并且这种相对发送的电感器可以作为紧凑型封装中的分立组件或“系统级封装 “单片集成电路。