Claims
- 1. An electric current self-control device depending on temperature variation, comprising:
- a porous positive temperature coefficient (PTC) element consisting of a nonlinear variable resistance material;
- a metal which is impregnated in said PTC element to form a metal-impregnated PTC element having an optimized cross section across which an energizing current passes;
- a first electrode, having an inner terminal, connected to said metal-impregnated PTC element;
- said inner terminal of said first electrode formed in a recess of an end of said metal-impregnated PTC element;
- a second electrode, having an outer terminal, connected to said metal-impregnated PTC element wherein said outer terminal covers a part of an outer surface of said metal-impregnated PTC element other than said recess; and
- a terminal supplying electric power to said heating coil and said device,
- whereby the flow of said energizing current is controlled in response to conditions of combustion.
- 2. An electric current self-control device depending on temperature variation according to claim 1, wherein said PTC element is either sintered barium titanate or sintered lead titanate.
- 3. An electric current self-control device depending on temperature variation according to claim 1, wherein said metal which is impregnated in said PTC element is a low temperature fusing point metal comprising aluminum.
- 4. An electric current self-control device depending on temperature variation according to claim 1, wherein said first and second electrode comprise aluminum.
- 5. An electric current self-control device depending on temperature variation according to claim 1, wherein the volumetric ratio of said PTC element to said metal is substantially 2:1 or more.
- 6. An electric current self-control device depending on temperature variation, comprising:
- a porous positive temperature coefficient (PTC) pillar shaped first element consisting of a nonlinear variable resistance material;
- a first metal which is impregnated in said porous portion of said PTC pillar shaped first element to form a first metal-impregnated pillar shaped PTC element having an optimized cross section across which an energizing current passes;
- a porous positive temperature coefficient (PTC) second element consisting of a nonlinear variable resistance material surrounding said pillar shaped first element and connected to said nonlinear variable resistance material of said pillar shaped first element;
- a second metal which is impregnated in said porous portion of said PTC second element to form a second metal-impregnated PTC element;
- a first electrode, having an inner terminal, connected to said first metal-impregnated pillar shaped PTC element;
- said inner terminal of said first electrode formed in a recess of an end of said first metal-impregnated PTC element;
- a second electrode, having an outer terminal, connected to said second metal-impregnated PTC element wherein said outer terminal covers a part of an outer surface other than said recess; and
- a terminal supplying electric power to said device,
- whereby the flow of said energizing current is controlled in response to conditions of combustion.
- 7. A glow plug with an electric current self-control device depending on temperature variation, comprising:
- a sheath fixed and protruded to a top of cylindrical housing;
- a heating coil fixed in said sheath;
- an electric current self-control device depending on temperature variation connected in series with said heating coil and fixed in said sheath;
- wherein said electric current self-control device comprises:
- a porous positive temperature coefficient (PTC) element consisting of a nonlinear variable resistance material;
- a metal which is impregnated in said porous portion of said PTC element to form a metal-impregnated PTC element having an optimized cross section across which an energizing current passes;
- a first electrode, having an inner terminal, connected to said metal-impregnated PTC element;
- said inner terminal of said first electrode formed in a recess of an end of said metal impregnated PTC element;
- a second electrode, having an outer terminal, connected to said metal-impregnated PTC element wherein said outer terminal covers a part of an outer surface other than said recess; and
- a terminal supplying power to said heating coil and said electric current self-control device,
- whereby the flow of said energizing current is controlled in response to conditions of combustion.
- 8. A glow plug with an electric current self-control device depending on temperature variation according to claim 7, wherein said PTC element is either sintered barium titanate or sintered lead titanate.
- 9. A glow plug with an electric current self-control device depending on temperature variation according to claim 7, wherein said metal which is impregnated in said PTC element is a low fusing point metal comprising aluminum.
- 10. A glow plug with an electric current self-control device depending on temperature variation according to claim 7, wherein said first and second electrode comprise aluminum.
- 11. A glow plug with an electric current self-control device depending on temperature variation according to claim 7, wherein the volumetric ratio of said PTC element to said metal is substantially 2:1 or more.
- 12. A glow plug with an electric current self-control device depending on temperature variation, comprising:
- a sheath fixed and protruded to a top of cylindrical housing;
- a heating coil fixed in said sheath;
- an electric current self-control device depending on temperature variation connected in series with said heating coil and fixed in said sheath;
- wherein said electric current self-control device comprises:
- a porous positive temperature coefficient (PTC) pillar shaped first element consisting of a nonlinear variable resistance material;
- a first metal which is impregnated in said porous portion of said PTC pillar shaped first element to form a first metal-impregnated pillar shaped PTC element having an optimized cross section across which an energizing current passes;
- a porous positive temperature coefficient (PTC) second element consisting of a nonlinear variable resistance material surrounding said pillar shaped first element and connected to said nonlinear variable resistance material of said pillar shaped first element;
- a second metal which is impregnated in said porous portion of said PTC second element to form a second metal-impregnated PTC element;
- a first electrode, having an inner terminal, connected to said first metal-impregnated pillar shaped PTC element;
- said inner terminal of said first electrode formed in a recess of an end of said first metal-impregnated PTC element;
- a second electrode, having an outer terminal, connected to said second metal-impregnated PTC element wherein said outer terminal covers a part of an outer surface other than said recess; and
- a terminal supplying electric power to said heating coil and said electric current self-control device,
- whereby the flow of said energizing current is controlled in response to conditions of combustion.
- 13. An electric current self-control device depending on temperature variation, comprising:
- a porous positive temperature coefficient (PTC) first element consisting of a nonlinear variable resistance material;
- a first metal which is impregnated in said porous portion of said PTC first element to form a first metal-impregnated PTC element having an optimized cross section across which an energizing current passes;
- a porous positive temperature coefficient (PTC) second element consisting of a nonlinear variable resistance material connected to said nonlinear variable resistance material of said first element;
- a second metal which is impregnated in said porous portion of said PTC second element to form a second metal-impregnated PTC element;
- a first electrode, having an inner terminal, connected to said first metal-impregnated pillar shaped PTC element;
- said inner terminal of said first electrode formed in a recess of an end of said first metal-impregnated PTC element;
- a second electrode, having an outer terminal, connected to said second metal-impregnated PTC element wherein said outer terminal covers a part of an outer surface other than said recess; and
- a terminal supplying electric power to said device,
- whereby the flow of said energizing current is controlled in response to conditions of combustion.
Priority Claims (1)
Number |
Date |
Country |
Kind |
6-107633 |
Apr 1994 |
JPX |
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Parent Case Info
This application is a continuation of application Ser. No. 08/426,695, filed Apr. 24, 1995, now abandoned.
US Referenced Citations (4)
Foreign Referenced Citations (4)
Number |
Date |
Country |
57-58301 |
Apr 1982 |
JPX |
61-36901 |
Feb 1986 |
JPX |
62-17520 |
Jan 1987 |
JPX |
135251 |
Oct 1972 |
NLX |
Continuations (1)
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Number |
Date |
Country |
Parent |
426695 |
Apr 1995 |
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