IP Library Granted Patent US 9,263,879
Granted Patent B2
US 9,263,879 · App. 14/101,638 · Granted Feb 16, 2016

Thermal protection circuit

Inventors: Hans-Christian Liehr (Sangerhausen, DE); Marcel P. Hofsaess (Sondershausen, DE)
Assignee: THERMIK GERAETEBAU GMBH
H02H5/047H01H9/541H01H37/002H01H37/5418H01H37/5427H02H5/04H01H2037/5463
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Quick Facts
Patent No.
US 9,263,879
App. No.
14/101,638
Granted
Feb 16, 2016
Kind
B2
Abstract

A thermal protection circuit has two electrical connection terminals for a device to be protected, and a temperature-dependent switch. The switch is provided with a temperature-dependent switching mechanism, two stationary contacts which are connected to the connection terminals, and a current transfer element, which is arranged on the switching mechanism. The current transfer element is moved by the switching mechanism and comprises two counter contacts, which are electrically connected to one another and in temperature-dependent bearing contact with the two stationary contacts. The thermal protection circuit is provided with a controllable semiconductor valve for AC voltage having two current terminals and a control input. Each of the two current terminals is connected to one of the connection terminals, and the control input is electrically connected to the counter contacts at the current transfer element via the switching mechanism at least when the temperature-dependent switch is closed.

Claims (46)

1. A thermal protection circuit having two electrical connection terminals for connecting a device to be protected, including:

a temperature-dependent switch comprising a temperature-dependent switching mechanism, two stationary contacts which are connected to the connection terminals, and a current transfer element,

said current transfer element being arranged on the switching mechanism, being moved by the switching mechanism and, comprising two counter contacts,

said counter contacts being electrically connected to one another, being in temperature-dependent bearing contact with the two stationary contacts, and in this state connecting said stationary contacts electrically to one another,

and including a controllable semiconductor valve for AC voltage having two current terminals and a control input,

each of the two current terminals being connected to one of the two connection terminals, and the control input being electrically connected to the counter contacts at the current transfer element via the switching mechanism at least when the temperature-dependent switch is closed;

wherein the temperature-dependent switching mechanism comprises a spring part, which bears the current transfer element, is electrically conductively connected to the current transfer element, and is electrically connected to the control input at least when the temperature-dependent switch is closed;

wherein the temperature-dependent switch comprises a housing, which housing accommodates the switching mechanism and has a lower part as well as an upper part, said upper part comprising an inner side, with the stationary contacts being arranged on said inner side; and further

wherein the spring part is a bimetallic snap-action disc supported on the lower part at least when the temperature-dependent switch is closed.

2. The thermal protection circuit of claim 1 , wherein the controllable semiconductor valve functions in the manner of a triac.

3. The thermal protection circuit of claim 2 , wherein the controllable semiconductor valve comprises a triac.

4. The thermal protection circuit according to claim 1 , wherein the lower part is electrically conductive.

5. The thermal protection circuit according to claim 4 , wherein the spring part is permanently electrically connected to the lower part.

6. The thermal protection circuit according to claim 1 , wherein a self-holding resistor is connected between the stationary contacts.

7. The thermal protection circuit according to claim 1 , wherein a heating resistor is connected between one of the two stationary contacts and the associated connection terminal.

8. The thermal protection circuit according to claim 1 , wherein the current transfer element is an electrically conductive contact plate, on which the two counter contacts are arranged, which counter contacts are electrically conductively connected to one another via the contact plate, wherein the contact plate is electrically conductively connected to the switching mechanism.

9. The thermal protection circuit according to claim 1 , wherein the current transfer element is an electrically conductive spring part, on which spring part the two counter contacts are arranged, which counter contacts are electrically conductively connected to one another via the spring part.

10. The thermal protection circuit according to claim 9 , wherein said spring part is a bimetallic snap-action disc.

11. The thermal protection circuit according to claim 9 , wherein said spring part is permanently connected to said control input.

12. An electrical device comprising a thermal protection circuit as set forth in claim 1 .

13. The electrical device according to claim 12 , wherein said semiconductor valve is connected to the temperature-dependent switch in a releasable manner.

14. A thermal protection circuit having two electrical connection terminals for connecting a device to be protected, comprising:

two temperature-dependent switches, each having two external terminals and a temperature-dependent switching mechanism, each switching mechanism producing or opening, in temperature-dependent fashion, an electrical connection between said two external terminals, wherein one external terminal of each switch is connected to one of the connection terminals or itself acts as connection terminal, and the respective other external terminals of the switches are connected to one another,

said thermal protection circuit comprising a controllable semiconductor valve for AC voltage having two current terminals and a control input, wherein each of the two current terminals is connected to one of the connection terminals, and the control input is electrically connected to those external terminals that are connected to one another.

15. An electrical device comprising a thermal protection circuit as set forth in claim 14 .

16. A thermal protection circuit having two electrical connection terminals for connecting a device to be protected, including:

a temperature-dependent switch comprising a temperature-dependent switching mechanism, two stationary contacts which are connected to the connection terminals, and a current transfer element,

said current transfer element being arranged on the switching mechanism, being moved by the switching mechanism and, comprising two counter contacts,

said counter contacts being electrically connected to one another, being in temperature-dependent bearing contact with the two stationary contacts, and in this state connecting said stationary contacts electrically to one another,

and including a controllable semiconductor valve for AC voltage having two current terminals and a control input,

each of the two current terminals being connected to one of the two connection terminals, and the control input being electrically connected to the counter contacts at the current transfer element via the switching mechanism at least when the temperature-dependent switch is closed,

wherein the temperature-dependent switching mechanism comprises a spring part, which bears the current transfer element, is electrically conductively connected to the current transfer element, and is electrically connected to the control input at least when the temperature-dependent switch is closed,

wherein the temperature-dependent switch comprises a housing, which housing accommodates the switching mechanism and has a lower part as well as an upper part, said upper part comprising an inner side, with the stationary contacts being arranged on said inner side, and further

wherein the spring part is a spring snap-action disc supported on the lower part at least when the temperature-dependent switch is closed, wherein a bimetallic snap-action disc is provided which lifts off the current transfer element from the stationary contacts above a switching temperature of said bimetallic snap-action disc.

17. The thermal protection circuit of claim 16 , wherein the controllable semiconductor valve functions in the manner of a triac.

18. The thermal protection circuit of claim 17 , wherein the controllable semiconductor valve comprises a triac.

19. The thermal protection circuit according to claim 16 , wherein the lower part is electrically conductive.

20. The thermal protection circuit according to claim 16 , wherein the spring part is permanently electrically connected to the lower part.

21. The thermal protection circuit according to claim 16 , wherein a self-holding resistor is connected between the stationary contacts.

22. The thermal protection circuit according to claim 16 , wherein a heating resistor is connected between one of the two stationary contacts and the associated connection terminal.

23. The thermal protection circuit according to claim 16 , wherein the current transfer element is an electrically conductive contact plate, on which the two counter contacts are arranged, which counter contacts are electrically conductively connected to one another via the contact plate, wherein the contact plate is electrically conductively connected to the switching mechanism.

24. The thermal protection circuit according to claim 16 , wherein the current transfer element is an electrically conductive spring part, on which spring part the two counter contacts are arranged, which counter contacts are electrically conductively connected to one another via the spring part.

25. The thermal protection circuit according to claim 24 , wherein said spring part is a bimetallic snap-action disc.

26. The thermal protection circuit according to claim 24 , wherein said spring part is permanently connected to said control input.

27. An electrical device comprising a thermal protection circuit as set forth in claim 16 .

28. The electrical device according to claim 27 , wherein said semiconductor valve is connected to the temperature-dependent switch in a releasable manner.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 19, 2014
From: LIEHR, HANS-CHRISTIAN; HOFSAESS, MARCEL P.
To: THERMIK GERAETEBAU GMBH
Reel/Frame 032244/0271 →
Priority Claims (2)
DE 10 2012 112 487 · Dec 18, 2012 · national
DE 20 2013 100 509 U · Feb 5, 2013 · national
Continuity (1)
Related Publication 20140168844A1 · Jun 19, 2014