IP Library Granted Patent US 10,465,965
Granted Patent B2
US 10,465,965 · App. 15/518,649 · Granted Nov 5, 2019

Heat pump apparatus, and air conditioner, heat pump water heater, and refrigerator including the heat pump apparatus

Inventors: Takashi Yamakawa (Tokyo, JP); Kazunori Hatakeyama (Tokyo, JP); Takuya Shimomugi (Tokyo, JP); Yosuke Shinomoto (Tokyo, JP)
Assignee: Mitsubishi Electric Corporation
F25B49/025F04B35/04F04B49/06F04B49/065F04B49/10F25B13/00F25B30/02H02P27/06H02P27/08F25B2600/021Y02B30/741
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Quick Facts
Patent No.
US 10,465,965
App. No.
15/518,649
Granted
Nov 5, 2019
Kind
B2
Abstract

A heat pump apparatus includes a compressor compressing a refrigerant, a motor driving the compressor, an inverter device, and an inverter control unit controlling the inverter device. The inverter device includes the same number of bridge circuits as those of phases of the motor, and each of the bridge circuits includes plural pairs of series-connected switching elements. The pairs of switching elements are connected in parallel. The inverter device applies to the motor a high-frequency voltage of a frequency at which the motor does not rotate.

Claims (28)

1. A heat pump apparatus comprising:

a compressor compressing a refrigerant;

a motor driving the compressor;

an inverter including a bridge circuit equal in number to a phase of the motor, the bridge circuit including plural pairs of switching elements formed of wide bandgap semiconductors, the switching elements being connected in series, the plural pairs of switching elements being connected in parallel, the inverter applying to the motor a high-frequency voltage of a frequency at which the motor does not rotate; and

an inverter control unit controlling the inverter,

wherein during a compressing-operation mode causing the compressor to compress a refrigerant, the inverter control unit causes the inverter to generate an AC voltage of a frequency at which the motor rotates, and during a heating-operation mode heating the compressor, the inverter control unit causes the inverter to generate the high-frequency voltage,

wherein in the heating-operation mode, the inverter control unit controls at least one pair of switching elements among the plural pairs of switching elements,

wherein the inverter control unit switches the pair of switching elements to be switching-controlled in accordance with a set sequence within a bridge circuit.

2. An air conditioner comprising the heat pump apparatus according to claim 1 .

3. A heat pump water heater comprising the heat pump apparatus according to claim 1 .

4. A refrigerator comprising the heat pump apparatus according to claim 1 .

5. A heat pump apparatus comprising:

a compressor compressing a refrigerant;

a motor driving the compressor;

an inverter including a bridge circuit equal in number to a phase of the motor, the bridge circuit including plural pairs of switching elements formed of wide bandgap semiconductors, the switching elements being connected in series, the plural pairs of switching elements being connected in parallel, the inverter applying to the motor a high-frequency voltage of a frequency at which the motor does not rotate; and

an inverter control unit controlling the inverter,

wherein during a compressing-operation mode causing the compressor to compress a refrigerant, the inverter control unit causes the inverter to generate an AC voltage of a frequency at which the motor rotates, and during a heating-operation mode heating the compressor, the inverter control unit causes the inverter to generate the high-frequency voltage,

wherein in the heating-operation mode, the inverter control unit controls at least one pair of switching elements among the plural pairs of switching elements,

wherein the inverter control unit randomly switches the pair of switching elements to be switching-controlled within a bridge circuit.

6. A heat pump apparatus comprising:

a compressor compressing a refrigerant;

a motor driving the compressor;

an inverter including a bridge circuit equal in number to a phase of the motor, the bridge circuit including plural pairs of switching elements formed of wide bandgap semiconductors, the switching elements being connected in series, the plural pairs of switching elements being connected in parallel, the inverter applying to the motor a high-frequency voltage of a frequency at which the motor does not rotate; and

an inverter control unit controlling the inverter,

wherein during a compressing-operation mode causing the compressor to compress a refrigerant, the inverter control unit causes the inverter to generate an AC voltage of a frequency at which the motor rotates, and during a heating-operation mode heating the compressor, the inverter control unit causes the inverter to generate the high-frequency voltage,

wherein in the heating-operation mode, the inverter control unit controls at least one pair of switching elements among the plural pairs of switching elements,

wherein the inverter control unit determines the pair of switching elements to be switching-controlled on a basis of a temperature of the switching element.

7. The heat pump apparatus according to claim 6 , wherein the wide bandgap semiconductor is made from silicon carbide, a gallium nitride material, or diamond.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 12, 2017
From: YAMAKAWA, TAKASHI; HATAKEYAMA, KAZUNORI; SHIMOMUGI, TAKUYA; SHINOMOTO, YOSUKE
To: MITSUBISHI ELECTRIC CORPORATION
Reel/Frame 041984/0520 →
Continuity (1)
Related Publication 20170241691A1 · Aug 24, 2017
Cited By (1)
US 12,244,245