IP Library Granted Patent US 12698780
Granted Patent B2
US 12698780 · App. 18/894,377 · Granted Aug 4, 2026

Motor and fan motor

Inventors: Shunichi Ochitani (Kyoto, JP); Masahiro Otani (Kyoto, JP); Takuro Kawano (Kyoto, JP); Rei Sakai (Kyoto, JP)
Assignee: NIDEC CORPORATION
F04D25/08F04D29/0563
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Quick Facts
Patent No.
US 12698780
App. No.
18/894,377
Granted
Aug 4, 2026
Kind
B2
Abstract

In a motor, a rotor is supported by a bearing to be rotatable about a central axis extending in an axial direction. The rotor includes a rotor lid portion and a first protruding portion. The rotor lid portion extends in a radial direction. The first protruding portion protrudes in one axial direction from the rotor lid portion, extends along the central axis, and is rotatably supported by a bearing. The bearing has a cylindrical shape extending in the axial direction and surrounds the first protruding portion. A hole extending in another axial direction is located in an end portion in the one axial direction of the first protruding portion. An axial length of the hole is less than about half of an axial length of the first protruding portion.

Claims (35)

1 . A motor comprising:

a bearing; and

a rotor supported by the bearing to be rotatable about a central axis extending in an axial direction; wherein

the rotor includes:

a rotor lid portion extending in a radial direction; and

a first protruding portion protruding in one axial direction from the rotor lid portion, extending along the central axis, and rotatably supported by the bearing;

the bearing has a cylindrical shape extending in the axial direction and surrounds the first protruding portion;

a blind hole extending in another axial direction is located in an end portion in the one axial direction of the first protruding portion;

an axial length of the blind hole from an opening of the blind hole to a closed end of the blind hole is less than about half of an axial length of the first protruding portion;

the rotor further includes a second protruding portion that protrudes in the another axial direction from the rotor lid portion and extends along the central axis;

an outer diameter of the second protruding portion is larger than an outer diameter of the first protruding portion when viewed from the axial direction;

the motor further includes an impeller that is rotatable about the central axis together with the rotor and is fixed to at least the rotor lid portion of the rotor;

the impeller includes an impeller lid portion having an annular shape surrounding the second protruding portion and located on an end surface in another axial direction of the rotor lid portion; and

an end portion in the another axial direction of the second protruding portion of the motor extends farther in the another axial direction than an inner end portion in a radial direction of the impeller lid portion.

2 . The motor according to claim 1 , further comprising:

a stop portion attached to an end portion in one axial direction of the first protruding portion; and

at least one dynamic pressure groove of a first dynamic pressure groove and a second dynamic pressure groove; wherein

the stop portion includes a flange portion that extends farther in the one axial direction than the first protruding portion and expands in a radial direction;

the dynamic pressure groove includes:

a first groove extending radially inward toward one circumferential direction; and

a second groove extending radially outward toward the one circumferential direction;

an end surface in the one axial direction of the bearing opposes an end surface in the one axial direction of the flange portion in the axial direction with fluid interposed therebetween;

the first dynamic pressure groove is located on either an end surface in the one axial direction of the bearing or an end surface in the another axial direction of the flange portion;

an end surface in the another axial direction of the bearing opposes an end surface in the one axial direction of the rotor lid portion in the axial direction with the fluid interposed therebetween; and

the second dynamic pressure groove is located on either an end surface in the another axial direction of the bearing or an end surface in the one axial direction of the rotor lid portion.

3 . The motor according to claim 1 , wherein the rotor further includes a cylindrical wall portion that protrudes in the one axial direction from the rotor lid portion and surrounds an end portion in the another axial direction of the bearing.

4 . The motor according to claim 3 , further comprising a cylindrical bearing holder that extends in the axial direction and surrounds and holds the bearing; wherein

the bearing holder further surrounds at least a one axial direction side of the wall portion.

5 . The motor according to claim 1 , wherein an outer diameter of the second protruding portion is larger than an outer diameter of the bearing when viewed from the axial direction.

6 . A fan motor comprising the motor according to claim 1 .

7 . The motor according to claim 1 , further comprising an impeller rotatable about the central axis together with the rotor of the motor; wherein

the rotor further includes a rotor cylindrical portion extending in the one axial direction from an outer end portion in a radial direction of the rotor lid portion; and

the impeller is fixed to the rotor lid portion and the rotor cylindrical portion.

8 . The motor according to claim 7 , wherein in the axial direction, an upper surface of the rotor lid portion opposes the impeller with an annular gap surrounding the central axis therebetween.

9 . The motor according to claim 7 , wherein a material of the impeller is polycarbonate resin.