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    • 2. 发明授权
    • Powered controlled acceleration suspension work platform hoist system
    • 动力控制加速悬挂工作平台葫芦系统
    • US07631730B2
    • 2009-12-15
    • US11267629
    • 2005-11-04
    • George M. AnasisRobert E. EddyGary E. IngramJean-Francois DeSmedt
    • George M. AnasisRobert E. EddyGary E. IngramJean-Francois DeSmedt
    • B66B1/28
    • E04G3/32B66D1/46B66D1/605B66D1/7489
    • A powered controlled acceleration suspension work platform hoist system for raising and lowering a work platform at a predetermined acceleration. The system incorporates several hoists attached to the work platform and in electrical communication with the motor control system. The motor control system is attached to the work platform and is in electrical communication with a constant frequency input power source and the hoist motors. The motor control system controls the acceleration of the work platform as it is raised and lowered by controlling the hoist motors. The controlled acceleration hoist system also includes a platform control system attached to the work platform that is in electrical communication with the motor control system and the hoist motors. Acceleration control is achieved by converting the constant frequency input power to a variable frequency power supply. This may be accomplished through the use of a variable frequency drive(s).
    • 一种用于以预定加速度升高和降低工作平台的动力控制加速悬挂工作平台升降系统。 该系统包括连接到工作平台并与电机控制系统电气通信的多个起重机。 电机控制系统连接在工作平台上,与恒频输入电源和起重电机电连通。 电动机控制系统通过控制起重电动机来升高和降低工作平台的加速度。 受控加速提升系统还包括一个与电机控制系统和起重电动机电连通的工作平台的平台控制系统。 通过将恒定频率输入功率转换为可变频率电源来实现加速控制。 这可以通过使用变频驱动来实现。
    • 3. 发明授权
    • Suspension work platform hoist system with communication system
    • 悬挂工作平台葫芦系统与通讯系统
    • US08944217B2
    • 2015-02-03
    • US13150608
    • 2011-06-01
    • George M. AnasisRobert E. EddyGary E. IngramJoan-Francois De SmedtHui Li
    • George M. AnasisRobert E. EddyGary E. IngramJoan-Francois De SmedtHui Li
    • B66D1/60B66D1/46B66D1/74
    • E04G3/32B66D1/46B66D1/605B66D1/7489E04G2003/286
    • A suspension work platform hoist system for raising and lowering a work platform is provided. The system incorporates at least one hoist attached to the work platform and in electrical communication with a hoist control system that may have a data transmitter to transmit data to a remote location, a data receiver to receive data from the remote location, and/or a monitoring and diagnostic system to monitor and record at least one of a plurality of operating characteristics of the hoist. The hoist control system may also include a GPS tracking device that transmit a hoist location and may prevent operation of the motor if the hoist location is not in an authorized area of operation. The hoist control system may further include a safety lock out system that requires authentication of an operator prior to the hoist control system causing movement of the hoist system.
    • 提供了一种用于升降工作平台的悬架工作平台升降机系统。 该系统包括至少一个附接到工作平台的起重机,并且与起重机控制系统电气通信,起重机控制系统可以具有数据发送器以将数据传输到远程位置,数据接收器从远程位置接收数据,和/或 监视和诊断系统来监视和记录起重机的多个操作特性中的至少一个。 起重机控制系统还可以包括发送起重机位置的GPS跟踪装置,并且如果起重机位置不在授权的操作区域中,则可以防止电动机的操作。 起重机控制系统还可以包括安全锁定系统,其在起重机控制系统引起升降机系统的运动之前要求操作者的认证。
    • 4. 发明授权
    • Powered controlled acceleration suspension work platform hoist system
    • 动力控制加速悬挂工作平台葫芦系统
    • US07849971B2
    • 2010-12-14
    • US12582445
    • 2009-10-20
    • George M. AnasisRobert E. EddyGary E. IngramJean-Francois DeSmedt
    • George M. AnasisRobert E. EddyGary E. IngramJean-Francois DeSmedt
    • B66B1/28
    • E04G3/32B66D1/46B66D1/605B66D1/7489
    • A powered controlled acceleration suspension work platform hoist system for raising and lowering a work platform at a predetermined acceleration. The system incorporates several hoists attached to the work platform and in electrical communication with the motor control system. The motor control system is attached to the work platform and is in electrical communication with a constant frequency input power source and the hoist motors. The motor control system controls the acceleration of the work platform as it is raised and lowered by controlling the hoist motors. The controlled acceleration hoist system also includes a platform control system attached to the work platform that is in electrical communication with the motor control system and the hoist motors. Acceleration control is achieved by converting the constant frequency input power to a variable frequency power supply. This may be accomplished through the use of a variable frequency drive(s).
    • 一种用于以预定加速度升高和降低工作平台的动力控制加速悬挂工作平台升降系统。 该系统包括连接到工作平台并与电机控制系统电气通信的多个起重机。 电机控制系统连接在工作平台上,与恒频输入电源和起重电机电连通。 电动机控制系统通过控制起重电动机来升高和降低工作平台的加速度。 受控加速提升系统还包括一个与电机控制系统和起重电动机电连通的工作平台的平台控制系统。 通过将恒定频率输入功率转换为可变频率电源来实现加速控制。 这可以通过使用变频驱动来实现。
    • 5. 发明授权
    • Powered controlled acceleration suspension work platform hoist control cooling system
    • 电动控制加速悬挂工作平台升降机控制冷却系统
    • US07760497B2
    • 2010-07-20
    • US12017271
    • 2008-01-21
    • Robert E. EddyGary E. Ingram
    • Robert E. EddyGary E. Ingram
    • H05K7/20
    • E04G3/32B66D1/46B66D1/605B66D1/7489
    • The hoist control cooling system for preferentially cooling components of a variable frequency drive that is controlling a hoist motor. The cooling system includes an inverter temperature sensor, an ambient temperature sensor, a cooling system controller, an inverter cooler, and an ambient cooler. The inverter temperature sensor measures the temperature of the inverter and generates an inverter temperature signal. The ambient temperature sensor measures the temperature of the ambient air in the sealed control enclosure and generates an ambient temperature signal. The cooling system controller communicates with the inverter temperature sensor and the ambient temperature sensor by receiving the inverter temperature signal, the ambient temperature signal, and generating both an inverter cooling signal, and an ambient cooling signal. The inverter cooling signal controls the cooling of the inverter. Similarly, an ambient cooling signal switches the ambient cooler on, thereby cooling the ambient air temperature in the sealed control enclosure.
    • 用于优先冷却控制升降马达的变频驱动部件的起重控制冷却系统。 冷却系统包括逆变器温度传感器,环境温度传感器,冷却系统控制器,逆变器冷却器和环境冷却器。 逆变器温度传感器测量变频器的温度并产生变频器温度信号。 环境温度传感器测量密封控制外壳中的环境空气的温度,并产生环境温度信号。 冷却系统控制器通过接收变频器温度信号,环境温度信号和产生变频器冷却信号和环境冷却信号与变频器温度传感器和环境温度传感器进行通信。 逆变器冷却信号控制变频器的冷却。 类似地,环境冷却信号切换环境冷却器,从而冷却密封的控制外壳中的环境空气温度。
    • 6. 发明申请
    • POWERED CONTROLLED ACCELERATION SUSPENSION WORK PLATFORM HOIST SYSTEM
    • 动力控制加速悬挂工作平台装置系统
    • US20100038186A1
    • 2010-02-18
    • US12582445
    • 2009-10-20
    • George M. AnasisRobert E. EddyGary E. IngramJean-Francois DeSmedt
    • George M. AnasisRobert E. EddyGary E. IngramJean-Francois DeSmedt
    • B66B1/28
    • E04G3/32B66D1/46B66D1/605B66D1/7489
    • A powered controlled acceleration suspension work platform hoist system for raising and lowering a work platform at a predetermined acceleration. The system incorporates several hoists attached to the work platform and in electrical communication with the motor control system. The motor control system is attached to the work platform and is in electrical communication with a constant frequency input power source and the hoist motors. The motor control system controls the acceleration of the work platform as it is raised and lowered by controlling the hoist motors. The controlled acceleration hoist system also includes a platform control system attached to the work platform that is in electrical communication with the motor control system and the hoist motors. Acceleration control is achieved by converting the constant frequency input power to a variable frequency power supply. This may be accomplished through the use of a variable frequency drive(s).
    • 一种用于以预定加速度升高和降低工作平台的动力控制加速悬挂工作平台升降系统。 该系统包括连接到工作平台并与电机控制系统电气通信的多个起重机。 电机控制系统连接在工作平台上,与恒频输入电源和起重电机电连通。 电动机控制系统通过控制起重电动机来升高和降低工作平台的加速度。 受控加速提升系统还包括一个与电机控制系统和起重电动机电连通的工作平台的平台控制系统。 通过将恒定频率输入功率转换为可变频率电源来实现加速控制。 这可以通过使用变频驱动来实现。
    • 7. 发明申请
    • POWERED CONTROLLED ACCELERATION SUSPENSION WORK PLATFORM HOIST CONTROL COOLING SYSTEM
    • 动力控制加速悬架工作平台控制冷却系统
    • US20080174955A1
    • 2008-07-24
    • US12017271
    • 2008-01-21
    • Robert E. EddyGary E. Ingram
    • Robert E. EddyGary E. Ingram
    • H05K7/20
    • E04G3/32B66D1/46B66D1/605B66D1/7489
    • The hoist control cooling system for preferentially cooling components of a variable frequency drive that is controlling a hoist motor. The cooling system includes an inverter temperature sensor, an ambient temperature sensor, a cooling system controller, an inverter cooler, and an ambient cooler. The inverter temperature sensor measures the temperature of the inverter and generates an inverter temperature signal. The ambient temperature sensor measures the temperature of the ambient air in the sealed control enclosure and generates an ambient temperature signal. The cooling system controller communicates with the inverter temperature sensor and the ambient temperature sensor by receiving the inverter temperature signal, the ambient temperature signal, and generating both an inverter cooling signal, and an ambient cooling signal. The inverter cooling signal controls the cooling of the inverter. Similarly, an ambient cooling signal switches the ambient cooler on, thereby cooling the ambient air temperature in the sealed control enclosure.
    • 用于优先冷却控制升降马达的变频驱动部件的起重控制冷却系统。 冷却系统包括逆变器温度传感器,环境温度传感器,冷却系统控制器,逆变器冷却器和环境冷却器。 逆变器温度传感器测量变频器的温度并产生变频器温度信号。 环境温度传感器测量密封控制外壳中的环境空气的温度,并产生环境温度信号。 冷却系统控制器通过接收变频器温度信号,环境温度信号和产生变频器冷却信号和环境冷却信号与变频器温度传感器和环境温度传感器进行通信。 逆变器冷却信号控制变频器的冷却。 类似地,环境冷却信号切换环境冷却器,从而冷却密封的控制外壳中的环境空气温度。