IP Library Granted Patent US 9,124,204
Granted Patent B2
US 9,124,204 · App. 14/386,945 · Granted Sep 1, 2015

Inverter device

Inventor: Ryuichi Takezawa (Chiyoda-ku, JP)
Assignee: Mitsubishi Electric Corporation
H02P6/14H02M7/217H02P4/00H02P29/021H02M7/48H02M2001/0006H02M2001/007
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Quick Facts
Patent No.
US 9,124,204
App. No.
14/386,945
Granted
Sep 1, 2015
Kind
B2
Abstract

An inverter device includes a rectifier circuit that rectifies alternating-current power supplied from a main power supply and generates direct-current power, a control power supply circuit that generates direct-current power for control using at least one of the generated direct-current power and direct-current power supplied from an external power supply, and a control unit that receives the generated direct-current power for control and performs a predetermined control operation. The control power supply circuit includes an insulation transformer including a primary side and second side winding wires, a first control power supply capacitor connected to the secondary side winding wire via a first diode, an external power supply capacitor connected to the first control power supply capacitor via a second diode and connected to a terminal, to which the external power supply is connected, via a third diode, and a second control power supply capacitor connected to the external power supply capacitor.

Claims (37)

1. An inverter device comprising:

a rectifier circuit that rectifies alternating-current power supplied from a main power supply and generates direct-current power;

a control power supply circuit that generates direct-current power for control using at least one of the generated direct-current power and direct-current power supplied from an external power supply;

a control unit that performs a predetermined control operation using the generated direct-current power for control; and

a monitoring unit, wherein

the control power supply circuit includes:

an insulation transformer including a primary side winding wire connected to the rectifier circuit and a secondary side winding wire insulated from the primary side winding wire;

a first control power supply capacitor connected to the secondary side winding wire of the insulation transformer via a first diode;

an external power supply capacitor connected to the first control power supply capacitor via a second diode and connected to a terminal, to which the external power supply is connected, via a third diode; and

a second control power supply capacitor connected to the external power supply capacitor, and wherein

the monitoring unit monitors a voltage of the first control power supply capacitor, and

the control unit compares the voltage of the first control power supply capacitor monitored by the monitoring unit with a threshold, and when it is found that electric current is supplied from the main power supply, inquires of a user whether the user selects a first mode for performing power supply using the first control power supply capacitor or a second mode for performing the power supply using the second control power supply capacitor, and switches an operation between the first mode and the second mode according to a selection instruction from the user.

2. The inverter device according to claim 1 , further comprising a second control power supply circuit that generates second direct-current power for control using at least one of the generated direct-current power for control and direct-current power supplied from a second external power supply, wherein

the control unit performs a predetermined control operation using the generated direct-current power for control and the generated second direct-current power for control, and

the second control power supply circuit includes:

a second insulation transformer including a primary side winding wire connected to the second control power supply capacitor and a secondary side winding wire insulated from the primary side winding wire;

a third control power supply capacitor connected to the secondary side winding wire of the second insulation transformer via a fourth diode;

a second external power supply capacitor connected to the third control power supply capacitor via a fifth diode and connected to a terminal, to which the second external power supply is connected, via a sixth diode; and

a fourth control power supply capacitor connected to the second external power supply capacitor.

3. The inverter device according to claim 1 , further comprising:

a second rectifier circuit that rectifies the alternating-current power supplied from the main power supply and generates direct-current power; and

an inverter main circuit that converts the direct-current power generated by the second rectifier circuit into alternating-current power and drives a motor using the converted alternating-current power, wherein

the control unit switches, according to a monitoring result by the monitoring unit, an operation of the inverter device among the first mode for cutting off the external power supply from the control power supply circuit, the second mode for using both of the main power supply and the external power supply, and a third mode for cutting off the main power supply from the second rectifier circuit.

4. The inverter device according to claim 3 , further comprising:

a first switching unit that switches electrical connection between the main power supply and the second rectifier circuit; and

a second switching unit that switches electrical connection between the external power supply and the control power supply circuit, wherein

the control unit controls the first switching unit and the second switching unit according to a monitoring result by the monitoring unit.

5. The inverter device according to claim 2 , further comprising:

a second rectifier circuit that rectifies the alternating-current power supplied from the main power supply and generates direct-current power; and

an inverter main circuit that converts the direct-current power generated by the second rectifier circuit into alternating-current power and drives a motor using the converted alternating-current power, wherein

the monitoring unit monitors a voltage of the first control power supply capacitor, and

the control unit switches, according to a monitoring result by the monitoring unit, an operation of the inverter device among the first mode for cutting off the external power supply from the control power supply circuit and cutting off the second external power supply from the second control power supply circuit, the second mode for using all of the main power supply, the external power supply, and the second external power supply, and a third mode for cutting off the main power supply from the second rectifier circuit.

6. The inverter device according to claim 5 , further comprising:

a first switching unit that switches electrical connection between the main power supply and the second rectifier circuit;

a second switching unit that switches electrical connection between the external power supply and the control power supply circuit; and

a third switching unit that switches electrical connection between the second external power supply and the second control power supply circuit, wherein

the control unit controls the first switching unit, the second switching unit, and the third switching unit according to a monitoring result by the monitoring unit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 22, 2014
From: TAKEZAWA, RYUICHI
To: MITSUBISHI ELECTRIC CORPORATION
Reel/Frame 033789/0421 →
Continuity (1)
Related Publication 20150048767A1 · Feb 19, 2015