IP Library Granted Patent US 9,231,414
Granted Patent B2
US 9,231,414 · App. 13/572,789 · Granted Jan 5, 2016

Device and method to discharge a capacitor for use in the electric power system of an electric drive vehicle

Inventors: Riccardo Viancino (Turin, IT); Fabio Bernardi (Osasco, IT); Giovanni Giuffre' (Turin, IT)
Assignee: MAGNETI MARELLI S.P.A.
H02J7/00B60L3/0046B60L3/04H03K17/163H03K17/785H02J7/0026H02J2007/004H02M2001/322H02M2001/344
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Quick Facts
Patent No.
US 9,231,414
App. No.
13/572,789
Granted
Jan 5, 2016
Kind
B2
Abstract

A discharge device and method actively discharge a main capacitor in an electric-power system of an electric-drive vehicle. The discharge device comprises a discharge branch of a circuit that is connected in parallel to the main capacitor and includes a discharge transistor that is biased to “conduction” mode when the main capacitor is required to be discharged. A control device is connected to a “gate/base” terminal of the discharge transistor and commands the discharge transistor, biasing the discharge resistor to “conduction” mode when the main capacitor is required to be discharged. The control device includes a safety capacitor that is interposed between the “gate/base” terminal and a power supply and charges when the discharge transistor is in the “conduction” mode, causing a progressive decrease of current at the “gate/base” terminal, until the discharge transistor is biased to the “non-conductive” state.

Claims (13)

1. A discharge device for active discharge of a main capacitor in an electric-power system of an electric-drive vehicle, the discharge device comprising:

a discharge branch of a circuit that is connected in parallel to the main capacitor and includes a discharge transistor that is biased to conduction mode when the main capacitor is required to be discharged; and

a control device that is connected to a gate/base terminal of the discharge transistor and commands the discharge transistor, biasing the discharge transistor to conduction mode when the main capacitor is required to be discharged;

wherein the control device includes a safety capacitor that is directly connected to the gate/base terminal and to a power supply and charges when the discharge transistor is in the conduction mode, causing a progressive decrease of current at the gate/base terminal, until the discharge transistor is biased to the non-conductive state a given interval of time after the discharge transistor has begun to conduct the current, so that the safety capacitor serves the function of a timer that turns off the discharge transistor after the given interval of time from activation of the discharge transistor.

2. A discharge device as set forth in claim 1 , wherein the safety capacitor is connected across the gate/base terminal and a positive terminal of the main capacitor.

3. A discharge device as set forth in claim 1 , wherein the safety capacitor is connected to a positive terminal of the main capacitor through a first connecting resistor.

4. A discharge device as set forth in claim 3 , wherein the gate/base terminal is connected to electric ground of a high-voltage circuit through a second connecting resistor that, together with the first resistor, defines a voltage divider.

5. A discharge device as set forth in claim 4 , wherein one of the terminals of the control device is connected across the first connecting resistor and safety capacitor and another terminal of the control device is connected to the electric ground of the high-voltage circuit.

6. A discharge device as set forth in claim 1 , wherein, when the main capacitor is required to be discharged, a control unit activates an electronic DC/DC converter that is connected in parallel to the main capacitor and provides power to a low-voltage energy-storage system to transfer energy from the main capacitor to the low-voltage energy-storage system.

7. A discharge device as set forth in claim 1 , wherein, when the main capacitor is required to be discharged, a control unit activates an electronic high-voltage power converter that is connected in parallel to the main capacitor and drives an electric machine to circulate through the electric machine the current that causes neither of generation and absorption of torque.

8. A discharge method for active discharge of a main capacitor in an electric-power system of an electric-drive vehicle, the method comprising steps of:

biasing, when the main capacitor is required to be discharged, a discharge transistor to conduction mode to create a discharge branch in a circuit through which energy accumulated in the main capacitor is discharged; and

charging, when the discharge transistor is in the conduction mode, a safety capacitor that is directly connected to a gate/base terminal of the discharge transistor and to a power supply to cause a progressive decrease of current at the gate/base terminal until the discharge transistor is biased to a non-conductive state a given interval of time after the discharge transistor has begun to conduct the current, so that the safety capacitor serves the function of a timer that turns off the discharge transistor after the given interval of time from activation of the discharge transistor.

Assignments (2)
CHANGE OF NAME Recorded Oct 16, 2020
From: MAGNETI MARELLI S.P.A.
To: MARELLI EUROPE S.P.A.
Reel/Frame 054090/0733 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 13, 2012
From: VIANCINO, RICCARDO; BERNARDI, FABIO; GIUFFRE', GIOVANNI
To: MAGNETI MARELLI S.P.A.
Reel/Frame 029285/0697 →
Priority Claims (1)
IT TO2011A0769 · Aug 12, 2011 · national
Continuity (1)
Related Publication 20130207619A1 · Aug 15, 2013