Claims
- 1. An air-applying device, comprising:
an impeller having a center of rotation; and a case which contains said impeller, said case having: (1) a first edge defining an inlet port of air which exposes the center of rotation of said impeller, (2) a second edge defining an outlet port of air, and (3) a high-pressure region which presents upon operational rotation of said impeller, the high-pressure region located within the case along a peripheral portion of said impeller, wherein a distance between the center of rotation of said impeller and the first edge is shorter in the direction from the center of rotation to a center of the high-pressure region than from the center of rotation to regions other than the high-pressure region.
- 2. An air-applying device according to claim 1, wherein the first edge is formed such that the inlet port has a non-circular shape.
- 3. An air-applying device according to claim 1, wherein the first edge is formed such that the inlet port has a circular shape, and is eccentric to the center of rotation.
- 4. An air-applying device according to claim 1, wherein said case has a wall defining a chamber which surrounds said impeller, collects the air applied from the outer circumference of said impeller and guides the air to the outlet port, and the high pressure region is located in the chamber.
- 5. An air-applying device according to claim 4, wherein the chamber has an initiating point, a midpoint, and a terminating point in a direction of rotation of the impeller, and the high-pressure region in the case being between the midpoint and the terminating point.
- 6. An air-applying device according to claim 1, wherein the case includes a pair of walls opposing each other across the impeller, and each of the walls has the first edge.
- 7. A cooling unit, comprising:
a heat sink thermally connected to a heat-generating component; and an air-applying device including an impeller having a center of rotation, and a case which contains said impeller, said case having: (1) a first edge defining an inlet port of air which exposes the center of rotation of said impeller, (2) a second edge defining an air outlet port opposing to said heat sink, and (3) a high-pressure region, present upon operational rotation of said impeller, the high-pressure region located within said case along a peripheral portion of said impeller, wherein a distance between the center of rotation of said impeller and the first edge is shorter in the direction from the center of rotation to a center of the high-pressure region than from the center of rotation to regions other than the high-pressure region.
- 8. A cooling unit according to claim 7, wherein the first edge is formed such that the inlet port has a non-circular shape.
- 9. A cooling unit according to claim 7, wherein the first edge is formed such that the inlet port has a circular shape, and is eccentric to the center of rotation.
- 10. A cooling unit according to claim 7, wherein the case has a wall defining a chamber which surrounds the impeller, collects the air applied from the outer circumference of the impeller and guides the air to the outlet port, and the high pressure region is located in the chamber.
- 11. An electronic apparatus, comprising:
a housing which has a heat-generating component; a heat sink thermally connected to the heat-generating component; and an air-applying device including an impeller having a center of rotation, and a case which contains said impeller, said case having: (1) a first edge defining a inlet port of air which exposes the center of rotation of said impeller, (2) a second edge defining an air outlet port opposing to the heat sink, and (3) a high-pressure region which presents upon operational rotation of said impeller, the high-pressure region located within the case along a peripheral portion of said impeller, wherein a distance between the center of rotation and the first edge is shorter in the direction from the center of rotation to a center of the high-pressure region than from the center of rotation to regions other than the high-pressure region.
- 12. An electronic apparatus according to claim 11, wherein the first edge is formed such that the inlet port has a non-circular shape.
- 13. An electronic apparatus according to claim 11, wherein the first edge is formed such that the inlet port has a circular shape, and is eccentric to the center of rotation.
- 14. An electronic apparatus according to claim 11, wherein the case has a wall defining a chamber which surrounds the impeller, collects the air applied from the outer circumference of the impeller and guides the air to the outlet port, and the high pressure region is located in the chamber.
- 15. An air-applying device, comprising:
an impeller having a center of rotation; and a case which contains the impeller, the case having,
a wall defining a chamber with an initiating point, a midpoint, and a terminating point defined in order along a rotating direction of said impeller, a first edge defining an inlet port of air which exposes the center of rotation, and a second edge defining an outlet port of air, wherein a distance between the center and the first edge is variable, and the shortest distance falls within an angular region of the chamber between the midpoint and the terminating point.
- 16. An air-applying device according to claim 15, wherein the first edge is formed such that the inlet port has a non-circular shape.
- 17. An air-applying device according to claim 15, wherein the first edge is formed such that the inlet port has a circular shape, and is eccentric to the center of rotation.
- 18. A cooling unit using an air-applying device according to claim 15.
- 19. An electronic apparatus using an air-applying device according to claim 15.
- 20. An air-applying device, comprising:
an impeller having a center of rotation; and a case which contains said impeller, said case having: (1) a first edge defining an inlet port of air which exposes the center of rotation of said impeller, (2) a second edge defining an outlet port of air, and (3) a high-pressure region which presents upon operational rotation of said impeller, the high-pressure region located within the case along a peripheral portion of said impeller, wherein the first edge of said case has a shape and orientation with respect to the center of rotation such that air escaping outside said case from the inlet port is reduced as compared with a first edge having circular shape and being oriented concentric to said center of rotation.
- 21. An air-applying device according to claim 20, wherein the first edge is formed such that the inlet port has a non-circular shape.
- 22. An air-applying device according to claim 20, wherein the first edge is formed such that the inlet port has a circular shape, and is eccentric to the center of rotation.
- 23. A cooling unit using an air-applying device according to claim 20.
- 24. An electronic apparatus using an air-applying device according to claim 20.
Priority Claims (1)
Number |
Date |
Country |
Kind |
PCT/JP02/13529 |
Dec 2002 |
WO |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is based upon and claims the benefit of priority from PCT International Application No. PCT/JP02/13529, filed Dec. 25, 2002, the entire contents of which are incorporated herein by reference.