IP Library › Granted Patent US 10,998,711
Granted Patent B2
US 10,998,711 · App. 16/274,941 · Granted May 4, 2021

Circuit breaker for DC circuits using coupled induction

Inventor: Keith A. Corzine (Santa Cruz, CA)
Assignee: Clemson University Research Foundation
H02H3/16H03K17/687
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Quick Facts
Patent No.
US 10,998,711
App. No.
16/274,941
Granted
May 4, 2021
Kind
B2
Abstract

An improved DC circuit breaker is provided for automatically detecting and isolating a fault between a source and a ground. The DC circuit breaker comprises at least one switch, in electrical series with a first inductor between the source and a load, and a second inductor magnetically coupled to the first inductor wherein a first side of the second inductor is electrically connected to the load and a second side of the second inductor is grounded through a capacitor.

Claims (34)

1. A DC circuit breaker, comprising:

a first inductor electrically connected, on a first side of said first inductor, to a load;

a second inductor magnetically coupled to said first inductor,

wherein a first number of turns of said first inductor is distinct from a second number of turns of said second inductor;

at least one switch in electrical series with a second side of said first inductor, such that said at least one switch is located between a source and said load; and

a diode having an anode and a cathode, said cathode being electrically connected to said second side of said first inductor and said at least one switch,

wherein a first side of said second inductor is grounded through a capacitor, and

wherein when a fault occurs, resonance is prevented by said diode.

2. The DC circuit breaker of claim 1 , wherein a second side of said second inductor is electrically connected to: said load, said first side of said first inductor, and said anode of said diode.

3. The DC circuit breaker of claim 2 , wherein said switch is a silicon-controlled rectifier.

4. The DC circuit breaker of claim 1 , wherein said switch is selected from a silicon-controlled rectifier, an insulated-gate bipolar transistor, a metal-oxide semiconductor field-effect transistor and a mechanical contact.

5. The DC circuit breaker of claim 1 , further comprising:

an electrical component electrically connected between said capacitor and a ground.

6. The DC circuit breaker of claim 5 , wherein said electrical component is selected from a passive component and an active component.

7. The DC circuit breaker of claim 5 , wherein said electrical component is selected from the group consisting of a resistor, a capacitor, a diode, a semi-conductor switch, a memresistor, a varistor and an inductor.

8. The DC circuit breaker of claim 1 , wherein a voltage across one inductor selected from said first inductor and said second inductor is utilized as a control signal for fault detection.

9. A DC circuit breaker, comprising:

a first inductor having a first side and a second side;

a second inductor, having a first side and a second side, said second inductor magnetically coupled to said first inductor,

wherein a first number of turns of said first inductor is distinct from a second number of turns of said second inductor;

at least one switch in electrical series with said first side of said first inductor; and

a diode having an anode and a cathode,

said cathode being electrically connected to said first side of said first inductor and said at least one switch, and

said anode being electrically connected to said second side of said first inductor and electrically connected to said first side of said second inductor,

wherein said first side of said second inductor and said second side of said first inductor are grounded through a capacitor,

wherein said second side of said second inductor is electrically connected to a load, and

wherein when a fault in said load occurs, resonance is prevented by said diode.

10. The DC circuit breaker of claim 9 , wherein said switch is selected from a silicon-controlled rectifier, an insulated-gate bipolar transistor, a metal-oxide semiconductor field-effect transistor and a mechanical contact.

11. The DC circuit breaker of claim 10 , wherein said switch is a silicon-controlled rectifier.

12. The DC circuit breaker of claim 9 , further comprising:

an electrical component electrically connected between said capacitor and a ground.

13. The DC circuit breaker of claim 12 , wherein said electrical component is selected from a passive component and an active component.

14. The DC circuit breaker of claim 13 , wherein said electrical component is selected from the group consisting of a resistor, a capacitor, a diode, a semi-conductor switch, a memresistor, a varistor and an inductor.

15. The DC circuit breaker of claim 9 , wherein a voltage across one inductor selected from said first inductor and said second inductor is utilized as a control signal for fault detection.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 13, 2019
From: CORZINE, KEITH A.
To: CLEMSON UNIVERSITY
Reel/Frame 048322/0676 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 13, 2019
From: CLEMSON UNIVERSITY
To: CLEMSON UNIVERSITY RESEARCH FOUNDATION
Reel/Frame 048322/0746 →
Continuity (3)
Continuation 14988838 · Jan 6, 2016
Provisional Application 62101423 · Jan 9, 2015
Related Publication 20190190251A1 · Jun 20, 2019