IP Library Granted Patent US 9,906,219
Granted Patent B2
US 9,906,219 · App. 14/713,350 · Granted Feb 27, 2018

Energy bypass

Inventors: Priyank Nareshchandra Bateriwala (Pune, IN); Dilesh Arvind Raut (Pune, IN); Rajkumar Baburaj (Pune, IN)
Assignee: NIDEC CONTROL TECHNIQUES LIMITED
H03K17/567H02J7/0081H02M1/36H02J7/345Y10T307/747
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Quick Facts
Patent No.
US 9,906,219
App. No.
14/713,350
Granted
Feb 27, 2018
Kind
B2
Abstract

An energy bypass circuit for connection between an energy source and a capacitance has first and second relays, a switch, and a resistance. The relays are operable so as to have a first state in which the energy source is not connected to the capacitance, a second state in which the energy source is connected to the capacitance via the resistance, and a third state in which the energy source is connected to the capacitance not via the resistance. The switch is operable, when the relays are in the third state, to enable additional charge stored by the capacitance to discharge via the resistance.

Claims (23)

1. An energy bypass circuit comprising:

a first relay having a first common terminal, a first normally open terminal, a first normally closed terminal, a first armature, and a first coil, the first armature being connected to the first common terminal and being arranged to connect the first common terminal to the first normally open terminal when the first coil is energised and to otherwise connect the first common terminal to the first normally closed terminal;

a second relay having a second common terminal, a second normally open terminal, a second normally closed terminal, a second armature, and a second coil, the second armature being connected to the second common terminal and being arranged to connect the second common terminal to the second normally open terminal when the second coil is energised and to otherwise connect the second common terminal to the second normally closed terminal, the second normally open terminal being connected to the first common terminal;

a resistance connected between the first common terminal and the second normally closed terminal; and

a switch connected between the first normally closed terminal and the second normally closed terminal.

2. The circuit of claim 1 , further comprising a diode having its anode connected to the second normally closed terminal and its cathode connected to the second common terminal.

3. The circuit of claim 2 , further comprising a capacitor connected between the second common terminal and the first normally closed terminal.

4. The circuit of claim 1 , further comprising a diode having its anode connected to the second normally closed terminal and its cathode connected to the first normally open terminal.

5. The circuit of claim 4 , further comprising a capacitor connected between the second common terminal and the first normally closed terminal.

6. The circuit of claim 1 , further comprising a capacitor connected between the second common terminal and the first normally closed terminal.

7. The circuit of claim 1 , further comprising:

a sensor circuit arranged to sense a voltage representative of the voltage between the first normally closed terminal and the second common terminal; and

a control circuit arranged to energise the first coil, energise the second coil, and/or open or close the switch, based on the voltage sensed by the sensor circuit.

8. The circuit of claim 1 wherein the switch is a semiconductor switch.

9. The circuit of claim 8 , wherein the switch is an insulated gate bipolar transistor.

10. The circuit of claim 1 , wherein the resistance is a resistor.

11. A method of operating an energy bypass circuit, the energy bypass circuit including a first relay and a second relay, the first relay having a first common terminal, a first normally open terminal, a first normally closed terminal, a first coil, and a first armature connected to the first common terminal, the second relay having a second common terminal, a second normally open terminal, a second normally closed terminal, a second coil, and a second armature connected to the second common terminal, the second normally open terminal connected to the first common terminal, the first armature arranged to connect the first common terminal to the first normally open terminal when the first coil is energised and to otherwise connect the first common terminal to the first normally closed terminal, the second armature arranged to connect the second common terminal to the second normally open terminal when the second coil is energised and to otherwise connect the second common terminal to the second normally closed terminal, the method comprising:

determining that energy is to be provided to a capacitor;

causing the coil of a first relay to be energised to enable the provision of energy to the capacitor via the first relay, a resistance connected between the first common terminal and the second normally closed terminal, and an unenergised second relay;

determining that conditions for the initial provision of energy to the capacitor do not apply;

causing the coil of the second relay to be energised to enable energy to be provided to the capacitor via the first relay and the second relay but not the resistance;

determining that the voltage across the capacitor exceeds a predetermined threshold; and

closing a switch connected between the first normally closed terminal and the second normally closed terminal to enable energy to discharge from the capacitor via the switch, the resistance, and second relay.

Assignments (2)
CHANGE OF NAME Recorded Mar 23, 2017
From: CONTROL TECHNIQUES LIMITED
To: NIDEC CONTROL TECHNIQUES LIMITED
Reel/Frame 042082/0827 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 12, 2015
From: BATERIWALA, PRIYANK NARESHCHANDRA; RAUT, DILESH ARVIND; BABURAJ, RAJKUMAR
To: CONTROL TECHNIQUES LIMITED
Reel/Frame 035896/0963 →
Priority Claims (1)
IN 1647/MUM/2014 · May 15, 2014 · national
Continuity (1)
Related Publication 20150333750A1 · Nov 19, 2015