Electric compressor
An electric compressor including a motor configured to generate power, a compression mechanism configured to compress a refrigerant by receiving power from the motor, an inverter configured to control the motor, a connector connected to an external device, a power line extending from the connector to the inverter to transmit electric power, which is supplied from the external device, to the inverter, and an interlock line extending from the connector to the inverter to transmit a signal to the inverter when the connector is separated from the external device, in which the power line and the interlock line are formed in different ways, thereby preventing insulation breakdown between the power line and the interlock line, easily assembling the power line and the inverter, and easily assembling the interlock line and the inverter.
1 . An electric compressor comprising:
a motor configured to generate power;
a compression mechanism configured to compress a refrigerant by receiving the power from the motor;
an inverter configured to control the motor;
a connector connected to an external device;
a power line extending from the connector to the inverter to transmit electric power, which is supplied from the external device, to the inverter; and
an interlock line extending from the connector to the inverter to transmit a signal to the inverter when the connector is separated from the external device, wherein the power line and the interlock line are formed in different ways, wherein the power line is configured as a pin extending from the connector to the inverter in one direction, and the interlock line is configured as a wire bendably extending from the connector to the inverter, wherein the wire comprises a conductive wire made of an electrically conductive material, a first interlock connector coupled to an end of the conductive wire, and a sheath configured to surround the conductive wire, wherein the inverter comprises a socket into which the pin is inserted, and a second interlock connector fastened to the first interlock connector, and wherein the second interlock connector is provided at a position spaced apart from the socket.
2 . The electric compressor of claim 1 , wherein the inverter further comprises a printed circuit board, wherein the socket is mounted on the printed circuit board at a position that faces the connector, and wherein the second interlock connector is mounted on the printed circuit board at a position that does not face the connector.
3 . The electric compressor of claim 2 , wherein the printed circuit board further comprises:
a first surface facing the connector; and
a second surface configured to define a rear surface of the first surface, wherein the socket is provided on the first surface, and wherein the second interlock connector is provided on the second surface.
4 . The electric compressor of claim 3 , wherein the printed circuit board includes a wire passing hole through which the wire passes.
5 . The electric compressor of claim 4 , wherein the wire passing hole is formed to be debossed in an outer peripheral surface of the printed circuit board.
6 . The electric compressor of claim 5 , wherein the wire passing hole is formed to be smaller than the first interlock connector.
7 . The electric compressor of claim 1 , wherein a first one of the first interlock connector and the second interlock connector is configured as a male connector, and a second one of the first interlock connector and the second interlock connector is configured as a female connector.