Claims
- 1. A low-resistance resistor comprising:a resistor element made of a metal sheet; and a metal terminal disposed at both ends of said resistor element, an entire surface of said terminal is coated with a metal having a melting point of 500° C. or below, said terminal has an electrical conductivity equal to or greater than that of said resistor element, and said terminal has a groove of a width fittable to said resistor element, and said resistor element and said terminal are electrically connected by inserting said resistor element into said groove with said metal in between.
- 2. The low-resistance resistor as defined in claim 1, wherein a thickness of said terminal is thicker than a total thickness of said resistor element.
- 3. The low-resistance resistor as defined in claim 2, wherein a thickness of said terminal is at least three times of a total thickness of said resistor element.
- 4. The low-resistance resistor as defined in claim 1, wherein at least a part of a surface of said resistor element is covered with an insulating layer.
- 5. The low-resistance resistor as defined in claim 4, wherein said insulating layer completely covers said resistor element.
- 6. The low-resistance resistor as defined in claim 4, wherein said insulating layer is made of at least one of epoxy resin, polylmide resin, and poly-carbodiimide resin.
- 7. A low-resistance resistor comprising:a resistor element made of metal sheet; an insulating substrate disposed at least on one of top and bottom faces of said resistor element; a terminal having a groove of a width equivalent to a sum of a thickness of said resistor element and said insulating substrate, an entire surface of said terminal is coated with a metal having a melting point of 500° C. or below; and said metal formed between said resistor element and said groove; wherein said resistor element and said terminal are electrically connected through said metal.
- 8. The low-resistance resistor as defined in claim 7, wherein said insulating substrate is made of one of alumina, glass, glass impregnated epoxy resin substrates, and paper impregnated phenolic resin substrates.
- 9. The low-resistance resistor as defined in claim 7,wherein an insulating layer covers a part of a surface of said resistor element.
- 10. The low-resistance resistor as defined in claim 7, wherein a thickness of said terminal is at least three times of a sum of a thickness of said resistor element and a thickness of said insulating substrate.
- 11. A method for manufacturing a low-resistance resistor comprising:forming a resistor element made of a metal sheet, said resistor element having a shape adjusted to obtain a predetermined resistance; forming a metal terminal having a groove; coating an entire surface of said metal terminal with a metal having a melting point of 500° C. or below; fitting said terminal to both ends of said resistor element; and electrically connecting said resistor element and said terminal; wherein a third metal layer is formed on at least one of a) a connecting portion of said resistor element, and b) connecting portion of said terminal before fitting said terminal to said resistor element.
- 12. The method for manufacturing a low-resistance resistor as defined in claim 11, further comprising the step of forming an insulating layer except on said terminal after said step of electrical connection.
- 13. The method for manufacturing a low-resistance resistor as defined in claim 12, wherein a step of trimming resistance is added before said step of forming said insulating layer.
- 14. The method for manufacturing a low-resistance resistor as defined in claim 12, wherein said terminal is electrically connected to both ends of said resistor element by one of pressing, caulking, and cold forging, and then one of heating, thermal compression bonding, brazing, and ultrasonic welding.
- 15. The method for manufacturing a resistor as defined in claim 12, wherein said step of electrically connecting said resistor element and terminal comprises:coating said at least one of said resistor element and terminal with metal different from that used for forming said resistor element and said terminal; connecting said resistor element and said terminal, after assembling coated resistor element and terminal, by one of brazing, pressing, and ultrasonic welding.
- 16. The method for manufacturing a low-resistance resistor as defined in claim 11, wherein said terminal is electrically connected to both ends of said resistor element by one of pressing, caulking, and cold forging, and then one of heating, thermal compression bonding, brazing, and ultrasonic welding.
- 17. The method for manufacturing a low-resistance resistor as defined in claim 11, wherein said step of forming said third metal layer is implemented by one of plating and paste printing.
- 18. The method foe manufacturing a resistor as defined claim 11, wherein said step of electrically connecting said resistor element and terminal comprises:coating said at least one of said resistor element and terminal with metal different from that used for forming said resistor element and said terminal; connecting said resistor element and said terminal, after assembling coated resistor element and terminal, by one of brazing, pressing, and ultrasonic welding.
- 19. The method of manufacturing a low resistance resistor as defined in claim 11, wherein said coating is performed by plating.
- 20. A method for manufacturing a resistor comprising:forming a terminal made of a metal foil pattern with a predetermined shape on a part of top and bottom faces of an insulating substrate, said terminal being electrically connected to top, side, and bottom faces of said insulating substrate; coating an entire surface of said terminal with a metal having a melting point of 500° C. or below; dividing said insulating substrate into a predetermined shape; forming a metal resistor element, said resistor element having a shape adjusted to obtain a predetermined resistance; electrically connecting said resistor element to the metal foil pattern on the top face of said insulating substrate.
- 21. The method for manufacturing a low-resistance resistor as defined in claim 20, wherein said terminal is electrically connected to both ends of said resistor element by one of pressing, caulking, and cold forging, and then one of heating, thermal compression bonding, brazing, and ultrasonic welding.
- 22. The method for manufacturing a resistor as defined in claim 20, wherein said step of electrically connecting said resistor element and terminal comprises:coating said at least one of said resistor element and terminal with metal different from that used for forming said resistor element and said terminal; connecting said resistor element and said terminal, after assembling coated resistor element and terminal, by one of brazing, pressing, and ultrasonic welding.
- 23. The method of manufacturing a low resistance resistor as defined in claim 20, wherein said coating is performed by plating.
Priority Claims (2)
Number |
Date |
Country |
Kind |
9-269561 |
Oct 1997 |
JP |
|
9-347471 |
Dec 1997 |
JP |
|
Parent Case Info
This application is a U.S. National Phase Application of PCT International Application PCT/JP98/04427 filed on Oct. 1, 1998.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/JP98/04427 |
|
WO |
00 |
Publishing Document |
Publishing Date |
Country |
Kind |
WO99/18584 |
4/15/1999 |
WO |
A |
US Referenced Citations (6)
Foreign Referenced Citations (4)
Number |
Date |
Country |
01-120801 |
May 1989 |
JP |
06-20808 |
Jan 1994 |
JP |
06-224014 |
Aug 1994 |
JP |
06283301 |
Oct 1994 |
JP |
Non-Patent Literature Citations (2)
Entry |
Japanese search report for PCT/JP98/04427 dated Nov. 24, 1998. |
English translation of Form PCT/ISA/210, no date. |