COMPRESOR QUE TIENE ENSAMBLE DE OBTURADOR DE TERMINALES.

    公开(公告)号:MX2011007183A

    公开(公告)日:2011-08-03

    申请号:MX2011007183

    申请日:2010-01-08

    Abstract: Un compresor puede incluir una armadura, un mecanismo de compresión soportado dentro de la armadura, un motor acoplado de manera impulsada con del mecanismo de compresión, y un ensamble de terminales. El ensamble de terminales puede incluir una cubierta asegurada con respecto a la armadura, un bloque de terminales fijado a la armadura y en comunicación eléctrica con el motor, y un obturador. El obturador puede acoplarse con el bloque de terminales y puede proporcionar comunicación eléctrica entre el bloque de terminales y un hilo. El obturador puede incluir un primer lado que confronta el bloque de terminales y un segundo lado que confronta una pared de la cubierta. El segundo lado puede incluir una proyección que se extiende hacia la pared y se separa a una distancia de la misma.

    COMPRESSOR HAVING TERMINAL PLUG ASSEMBLY
    2.
    发明申请
    COMPRESSOR HAVING TERMINAL PLUG ASSEMBLY 审中-公开
    具有端子插头组件的压缩机

    公开(公告)号:WO2010080984A3

    公开(公告)日:2010-10-21

    申请号:PCT/US2010020478

    申请日:2010-01-08

    Abstract: A compressor may include a shell, a compression mechanism supported within the shell, a motor drivingly engaged with the compression mechanism, and a terminal assembly. The terminal assembly may include a cover secured relative to the shell, a terminal block fixed to the shell and in electrical communication with the motor, and a plug. The plug may be engaged with the terminal block and may provide electrical communication between the terminal block and a wire. The plug may include a first side facing the terminal block and a second side facing a wall of the cover. The second side may include a protrusion extending toward the wall and spaced a distance therefrom.

    Abstract translation: 压缩机可以包括壳体,支撑在壳体内的压缩机构,与压缩机构驱动接合的电机以及端子组件。 端子组件可以包括相对于壳体固定的盖子,固定到壳体并与马达电连通的端子块以及插头。 插头可以与接线盒接合并且可以在接线盒和导线之间提供电连通。 插头可以包括面对接线盒的第一侧和面对盖的壁的第二侧。 第二侧可以包括朝向壁延伸并与其间隔一定距离的突起。

    Heat-pump system with refrigerant charge diagnostics

    公开(公告)号:AU2014248049B2

    公开(公告)日:2018-06-07

    申请号:AU2014248049

    申请日:2014-04-04

    Abstract: A heat-pump circuit may include an indoor heat exchanger, an outdoor heat exchanger, a compressor adapted to circulate a working fluid between the indoor and outdoor heat exchangers, and an expansion device disposed between the indoor and outdoor heat exchangers. A monitor for the heat-pump system may include a return-air temperature sensor, a supply-air temperature sensor, and a processor. The return-air temperature sensor may be adapted to measure a first air temperature of air upstream of the indoor heat exchanger. The supply-air temperature sensor may be adapted to measure a second air temperature of air downstream of the indoor heat exchanger. The processor may be in communication with the return-air temperature sensor and the supply- air temperature sensor. The processor may be programmed to determine a working-fluid-charge condition of the heat-pump system based on the first and second air temperatures.

    Heat-pump system with refrigerant charge diagnostics

    公开(公告)号:AU2014248049A1

    公开(公告)日:2015-10-29

    申请号:AU2014248049

    申请日:2014-04-04

    Abstract: A heat-pump circuit may include an indoor heat exchanger, an outdoor heat exchanger, a compressor adapted to circulate a working fluid between the indoor and outdoor heat exchangers, and an expansion device disposed between the indoor and outdoor heat exchangers. A monitor for the heat-pump system may include a return-air temperature sensor, a supply-air temperature sensor, and a processor. The return-air temperature sensor may be adapted to measure a first air temperature of air upstream of the indoor heat exchanger. The supply-air temperature sensor may be adapted to measure a second air temperature of air downstream of the indoor heat exchanger. The processor may be in communication with the return-air temperature sensor and the supply- air temperature sensor. The processor may be programmed to determine a working-fluid-charge condition of the heat-pump system based on the first and second air temperatures.

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