IP Library › Granted Patent US 11,999,244
Granted Patent B2
US 11,999,244 · App. 17/265,407 · Granted Jun 4, 2024

Active discharge system for electric or hybrid motor vehicles

Inventors: Giuseppe Simonazzi (Reggio Emilia, IT); Cesare Lasagni (Reggio Emilia, IT); Severino Bigliardi (Reggio Emilia, IT)
Assignee: META SYSTEM S.p.A.
B60L3/04B60L3/0046H01L27/0259H03H19/004
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Quick Facts
Patent No.
US 11,999,244
App. No.
17/265,407
Granted
Jun 4, 2024
Kind
B2
Abstract

An active discharge system for electric or hybrid motor vehicles including an active discharge circuit operatively connected in parallel to a charge circuit, which is supplied by a high voltage power source and defines an electrically-charged equivalent capacitance of an electric charge, wherein the active discharge circuit is configured to discharge the electric charge accumulated by the equivalent capacitance in the event of the high voltage power source being disconnected from the charge circuit; a control circuit/device/unit/component of the active discharge circuit which are configured to receive an activation signal, suitable to activating the active discharge circuit in case of receiving the activation signal, so as to discharge the equivalent capacitance.

Claims (58)

1. An active discharge system for electric or hybrid motor vehicles, the active discharge system comprising:

at least one active discharge circuit operatively connected in parallel to at least one charge circuit, which is supplied by at least one high voltage power source and defines at least one electrically-charged equivalent capacitance of an electric charge, said active discharge circuit being configured to discharge the electric charge accumulated by said equivalent capacitance in the event of said high voltage power source being disconnected from said at least one charge circuit; and

control means of said active discharge circuit which are configured to receive at least one activation signal, said control means activating said active discharge circuit in case of receiving said activation signal, so as to discharge said equivalent capacitance, wherein

said control means comprise diagnostic means of said active discharge circuit configured to signal the activation of the latter to at least one diagnostic unit.

2. The system according to claim 1 , wherein

said control means are connected to said equivalent capacitance, and

said control means being supplied by the electric charge accumulated by said equivalent capacitance.

3. The system according to claim 2 , wherein

said control means comprise conversion means of the electric charge accumulated by said equivalent capacitance in a power voltage of said control means.

4. The system according to claim 1 , wherein

said control means are operatively connected to signaling means configured to send said activation signal and supplied by at least one low voltage power source, and

said control means comprise monitoring means of said low voltage power source and being configured to activate said active discharge circuit in case said low voltage power source is not detected.

5. The system according to claim 1 , wherein

said control means comprise timing means of the discharge time of said equivalent capacitance configured to deactivate said active discharge circuit after a predefined discharge time.

6. The system according to claim 5 , wherein

said control means comprise extension means of said predefined discharge time configured to extend the latter by a predefined extension time in the event of said electric charge value verified by said verification means is greater than a predefined threshold value at the end of said predefined discharge time.

7. The system according to claim 5 , wherein

said timing means comprise verification means for verifying the electric charge accumulated by said equivalent capacitance, and

said timing means being configured to deactivate said active discharge circuit in case the value of said electric charge verified by said verification means is not substantially decreasing in value over time.

8. The system according to claim 1 , wherein

said active discharge circuit comprises dissipation means of the electric charge accumulated by said equivalent capacitance, and

said dissipation means being able to discharge said electric charge through a discharge current.

9. The system according to claim 8 , wherein

said dissipation means comprise resistive means which are adapted to conduct said discharge current and to discharge the electric charge accumulated by said equivalent capacitance.

10. The system according to claim 9 , wherein

said dissipation means comprise switch means operatively connected to said control means, and

said control means activating said switch means to allow the passage of said discharge current and to discharge the electric charge accumulated by said equivalent capacitance.

11. The system according to claim 10 , wherein

said switch means are connected in series to said resistive means.

12. The system according to claim 10 , wherein

said switch means and said resistive means coincide, said switch means and said resistive means being made through at least one transistor operatively connected to said control means.

13. The system according to claim 12 , wherein

said at least one transistor is of the type of an insulated gate bipolar transistor (IGBT).

14. A battery charger, the battery charger comprising:

said at least one active discharge system according to claim 1 .

15. The system according to claim 1 , wherein

said diagnostic means comprise:

warning means for warning about the activation of said active discharge circuit which are configured to send at least one warning signal to said diagnostic unit; and

checking means for checking the activation of said active discharge circuit which are configured to check the presence of said discharge current and to activate said warning means the instant when the presence of said discharge current is checked.

16. An active discharge system for electric or hybrid motor vehicles, the active discharge system comprising:

at least one active discharge circuit operatively connected in parallel to at least one charge circuit, which is supplied by at least one high voltage power source and defines at least one electrically-charged equivalent capacitance of an electric charge, said active discharge circuit being configured to discharge the electric charge accumulated by said equivalent capacitance in the event of said high voltage power source being disconnected from said at least one charge circuit; and

control means of said active discharge circuit which are configured to receive at least one activation signal, said control means activating said active discharge circuit in case of receiving said activation signal, so as to discharge said equivalent capacitance, wherein

said active discharge circuit comprises dissipation means of the electric charge accumulated by said equivalent capacitance, and

said dissipation means being able to discharge said electric charge through a discharge current,

said dissipation means comprise resistive means which are adapted to conduct said discharge current and to discharge the electric charge accumulated by said equivalent capacitance,

said dissipation means comprise switch means operatively connected to said control means, and

said control means activating said switch means to allow the passage of said discharge current and to discharge the electric charge accumulated by said equivalent capacitance,

said switch means and said resistive means coincide, said switch means and said resistive means being made through at least one transistor operatively connected to said control means, and

said control means comprise biasing means of said at least one transistor configured to vary the value of said discharge current of the electric charge accumulated by the equivalent capacitance passing through said at least one transistor depending on the value of the electric charge accumulated by said equivalent capacitance to be discharged and on the value of the electric charge discharged through said at least one transistor.

17. The system according to claim 16 , wherein

said biasing means comprise at least one of detection means for detecting the value of said discharge current and measurement means for measuring the value of said electric charge to be discharged, and

said biasing means being configured to vary the value of said discharge current depending on at least one of the value of said discharge current detected by said detection means and the value of said electric charge measured by said measurement means.

18. The system according to claim 16 , wherein

said control means comprise diagnostic means of said active discharge circuit configured to signal the activation of the latter to at least one diagnostic unit.

19. The system according to claim 18 , wherein

said diagnostic means comprise:

warning means for warning about the activation of said active discharge circuit which are configured to send at least one warning signal to said diagnostic unit; and

checking means for checking the activation of said active discharge circuit which are configured to check the presence of said discharge current and to activate said warning means the instant when said checking means checks the presence of said discharge current.

Assignments (2)
DECREE OF TRANSFER / TRANSFER OF OWNERSHIP Recorded Feb 3, 2026
From: META SYSTEM S.P.A.
To: META ELECTRONICS S.R.L.
Reel/Frame 074610/0413 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 25, 2021
From: SIMONAZZI, GIUSEPPE; LASAGNI, CESARE; BIGLIARDI, SEVERINO
To: META SYSTEM S.P.A.
Reel/Frame 056341/0623 →
Priority Claims (1)
IT 102018000007859 · Aug 3, 2018 · national
Continuity (1)
Related Publication 20210268910A1 · Sep 2, 2021