IP Library Granted Patent US 10,797,481
Granted Patent B2
US 10,797,481 · App. 15/901,266 · Granted Oct 6, 2020

Reverse connection protection circuit and load system

Inventor: Hirosuke Iwasaki (Kariya, JP)
Assignee: DENSO CORPORATION
H02H3/18H02H1/0007H02H11/003H03K17/0822H03K17/687
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Quick Facts
Patent No.
US 10,797,481
App. No.
15/901,266
Granted
Oct 6, 2020
Kind
B2
Abstract

In a reverse connection protection circuit, a protection element enters a conductive state when the power source is electrically connected in a forward direction to a load-side circuit and enters a non-conductive state when the power source is electrically connected in a reverse direction to the load-side circuit. The protection element has a first terminal electrically connected to a power source-side terminal of, and a second terminal electrically connected to a load-side terminal of the switching element. A booster circuit is electrically connected to the load-side terminal to supply a boosted voltage of more than a power source voltage to the load-side terminal. A voltage detection part is connected to the load-side terminal to detect an output voltage of the switching element. A judgment part is connected to the voltage detection part to detect a switching element failure based of the voltage detected by the voltage detection part.

Claims (34)

1. A reverse connection protection circuit configured to protect a load-side circuit during a reverse connection of a power source to a load-side circuit, the load-side circuit comprising an electric load and a load drive circuit, the reverse connection protection circuit comprising:

a switching element comprising a power source-side terminal electrically connected to the power source, a load-side terminal electrically connected to the load drive circuit, and a control terminal by which conduction between the power source-side terminal and the load-side terminal of the switching element is controlled;

a protection element configured to enter a conductive state when the power source is electrically connected in a forward direction to the load-side circuit, and to enter a non-conductive state when the power source is electrically connected in a reverse direction to the load-side circuit, the protection element comprising a first terminal and a second terminal, the first terminal being electrically connected to the power source-side terminal of the switching element, and the second terminal being electrically connected to the load-side terminal of the switching element;

a boosted voltage supply part electrically connected to the load-side terminal of the switching element so as to supply a boosted voltage to the load-side terminal of the switching element, the boosted voltage being higher than a power source voltage supplied from the power source;

a voltage detection part electrically connected to the load-side terminal of the switching element so as to detect an output voltage at the load-side terminal of the switching element; and

a judgment part electrically connected to the voltage detection part so as to detect an occurrence of a switching element failure on the basis of the output voltage detected by the voltage detection part.

2. The reverse connection protection circuit according to claim 1 , further comprising a switching element drive part electrically connected to the boosted voltage supply part and the control terminal of the switching element, and configured to conduct the power source-side terminal with the load-side terminal of the switching element when supplying a turned-on voltage to the control terminal of the switching element,

wherein the boosted voltage supply part is configured to boost the power source voltage to the boosted voltage and supply the boosted voltage to the switching element drive part.

3. The reverse connection protection circuit according to claim 1 , wherein the boosted voltage supply part is electrically connected to the control terminal of the switching element so as to supply the boosted voltage to the control terminal of the switching element.

4. The reverse connection protection circuit according to claim 1 , wherein the switching element is composed of a MOS FET, and the protection element is composed of a parasitic diode of the MOS FET.

5. The reverse connection protection circuit according to claim 2 , wherein the switching element is composed of a MOS FET, and the protection element is composed of a parasitic diode of the MOS FET.

6. The reverse connection protection circuit according to claim 3 , wherein the switching element is composed of a MOS FET, and the protection element is composed of a parasitic diode of the MOS FET.

7. The reverse connection protection circuit according to claim 4 , wherein the switching element is composed of an N channel MOS FET.

8. The reverse connection protection circuit according to claim 5 , wherein the switching element is composed of an N channel MOS FET.

9. The reverse connection protection circuit according to claim 6 , wherein the switching element is composed of an N channel MOS FET.

10. The reverse connection protection circuit according to claim 1 , wherein the switching element is electrically connected to a high-voltage side of the load drive circuit.

11. The reverse connection protection circuit according to claim 2 , wherein the switching element is electrically connected to a high-voltage side of the load drive circuit.

12. The reverse connection protection circuit according to claim 3 , wherein the switching element is electrically connected to a high-voltage side of the load drive circuit.

13. The reverse connection protection circuit according to claim 1 , wherein the switching element is arranged and directly electrically connected between the power source and the load drive circuit in the load-side circuit.

14. The reverse connection protection circuit according to claim 1 , wherein the judgment part detects an occurrence of failure in the switching element and an abnormality of the boosted voltage.

15. The reverse connection protection circuit according to claim 14 , further comprising an additional detection part electrically connected to the boosted voltage supply part and configured to generate an output signal which corresponds to a magnitude of the boosted voltage supplied from the boosted voltage supply part,

wherein the judgment part detects the occurrence of abnormality of the boosted voltage on the basis of the output signal which corresponding to the boosted voltage of the boosted voltage supply part.

16. The reverse connection protection circuit according to claim 1 , further comprising a power source-side detection part which is electrically connected to the power source-side terminal of the switching element 51 and configured to generate an output signal which corresponds to the voltage at the power source-side terminal of the switching element,

wherein the judgment part detects an occurrence of failure in the switching element on the basis of an output signal of the voltage detection part and the output signal of the power source-side detection part.

17. A load system comprising: the reverse connection protection circuit according to claim 1 ; and a plurality of the load-side circuits, each of which is electrically connected in parallel to each other to the reverse connection protection circuit.

18. A load system comprising:

a plurality of load-side circuits, each of which comprises a load drive circuit and an electric load, each of the load drive circuits configured to drive the corresponding electric load; and

a reverse connection protection circuit arranged between a power source and the plurality of the load-side circuits, and configured to protect the plurality of the load-side circuits during a reverse connection of the power source to the plurality of the load-side circuits,

wherein the reverse connection protection circuit comprises:

a switching element comprising a power source-side terminal electrically connected to the power source, a load-side terminal electrically connected to each of the load drive circuits, and a control terminal by which conduction between the power source-side terminal and the load-side terminal of the switching element is controlled;

a protection element configured to enter a conductive state when the power source is electrically connected in a forward direction to the load-side circuit, and to enter a non-conductive state when the power source is electrically connected in a reverse direction to the load-side circuit, the protection element comprising a first terminal and a second terminal, the first terminal being electrically connected to the power source-side terminal of the switching element, and the second terminal being electrically connected to the load-side terminal of the switching element;

a boosted voltage supply part electrically connected to the load-side terminal of the switching element so as to supply a boosted voltage to the load-side terminal of the switching element, the boosted voltage being higher than a power source voltage supplied from the power source;

a voltage detection part electrically connected to the load-side terminal of the switching element so as to detect an output voltage at the load-side terminal of the switching element; and

a judgment part electrically connected to the voltage detection part so as to detect an occurrence of a switching element failure on the basis of the output voltage detected by the voltage detection part.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 7, 2018
From: IWASAKI, HIROSUKE
To: DENSO CORPORATION
Reel/Frame 045132/0092 →
Priority Claims (3)
JP 2017-035285 · Feb 27, 2017 · national
JP 2017-185163 · Sep 26, 2017 · national
JP 2017-199595 · Oct 13, 2017 · national
Continuity (1)
Related Publication 20180248355A1 · Aug 30, 2018
Cited By (1)
US 12,587,025