IP Library › Granted Patent US 6,885,274
Granted Patent B2
US 6,885,274 · App. 10/434,084 · Granted Apr 26, 2005

Inductor module including inductor windings wound on a common inductor core

Assignee: Micro-Star Int'l Co., Ltd.
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Quick Facts
Patent No.
US 6,885,274
App. No.
10/434,084
Granted
Apr 26, 2005
Kind
B2
Abstract

An inductor module includes a common inductor core, and first and second inductor windings. Each of the first and second inductor windings has an input end, an output end, and an inductor winding section disposed between the input and output ends. The inductor winding sections are wound on the common inductor core such that the distance between the input end of the first inductor winding and the output end of the second inductor winding is larger than the distance between the output end of the first inductor winding and the input end of the second inductor winding. The output end of the first inductor winding is free of an electrical connection with the input end of the second inductor winding.

Claims (18)

1. An inductor module comprising:

a common inductor core having first and second lateral core portions; and

first and second inductor windings, each of which has an input end, an output end, and an inductor winding section disposed between said input and output ends, said inductor winding section of each of said first and second inductor windings being wound on a respective one of said first and second lateral core portions of said common inductor core such that said input end of said first inductor winding and said output end of said second inductor winding form a first distance therebetween and such that said output end of said first inductor winding said input end of said second inductor winding form a second distance therebetween, the second distance being smaller than the first distance, said output end of said first inductor winding being free of an electrical connection with said input end of said second inductor winding,

said common inductor core including a first surface, a second surface opposite to said first surface, and a peripheral surface extending between said first and second surfaces, said common inductor core having a pair of through holes extending from said first surface through said second surface,

said inductor winding section of said first inductor winding having a first segment extending from said output end of said first inductor winding and into a respective one of said through holes, a second segment extending from said first segment and along said second surface of said common inductor core, and a third segment extending from said second segment and along said peripheral surface of said common inductor core,

said inductor winding section of said second inductor winding having a first segment extending from said input end of said second inductor winding and into a respective one of said through holes, a second segment extending from said first segment and along said second surface of said common inductor core, and a third segment extending from said second segment and along said peripheral surface of said common inductor core.

2. The inductor module as claimed in claim 1 , wherein said inductor winding section of each of said first and second inductor windings is generally inverted-U in shape.

3. The inductor module as claimed in claim 1 , wherein said input and output ends of each of said first and second inductor windings extend along and lie against said first surface of said common inductor core.

4. The inductor module as claimed in claim 1 , wherein said input and output ends of each of said first and second inductor windings project transversely relative to said first surface of said common inductor core.

5. The inductor module as claimed in claim 1 , wherein said common inductor core includes complementary core parts, each of which is formed with a pair of grooves, each of said through holes being defined by a confronting pair of said grooves in said core parts.

6. The inductor module as claimed in claim 1 , wherein said common inductor core is made of a magnetic material.

7. The inductor module as claimed in claim 1 , wherein each of said first and second inductor windings has an outer surface provided with an insulator layer.

8. An inductor module comprising:

a common inductor core having first and second lateral core portions; and

first and second inductor windings, each of which has an input end, an output end, and an inductor winding section disposed between said input and output ends, said inductor winding section of each of said first and second inductor windings being wound on a respective one of said first and second lateral core portions of said common inductor core such that said input end of said first inductor winding and said output end of said second inductor winding form a first distance therebetween and such that said output end of said first inductor winding and said input end of said second inductor winding form a second distance therebetween, the second distance being smaller than the first distance, said output end of said first inductor winding being free of an electrical connection with said input end of said second inductor winding, each of said first and second inductor windings being formed from a conductive foil.

9. The inductor module as claimed in claim 8 , wherein said conductive foil is made of copper.

10. The inductor module as claimed in claim 8 , wherein said common inductor core is made of a magnetic material.

11. The inductor module as claimed in claim 8 , wherein each of said first and second inductor windings has an outer surface provided with an insulator layer.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 9, 2003
From: HSU, CHIEN-CHI; LI, CHIH-SHENG; LEE, YUNG-KUANG; WU, GUO-YANG
To: MICRO-STAR INT'L CO., LTD.
Reel/Frame 014061/0049 →
Priority Claims (1)
TW 92202417 U · Feb 14, 2003 · national
Continuity (1)
Related Publication 20040160298A1 · Aug 19, 2004