IP Library Granted Patent US 6,974,386
Granted Patent B1
US 6,974,386 · App. 10/465,159 · Granted Dec 13, 2005

Motor drive system with wire-wound flexible coupling

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Quick Facts
Patent No.
US 6,974,386
App. No.
10/465,159
Granted
Dec 13, 2005
Kind
B1
Abstract

A motor drive system includes a motor having a rotary motor output shaft, a driven component, and a flexible coupling connecting the motor output shaft to the driven component. The flexible coupling is a helix formed of a first wound wire. The helix has a helix unbonded free length that is less than about two times a helix outer diameter. The approach is particularly suitable for miniature motors and their driven components, wherein the motor output shaft has a shaft diameter of less than about 3 millimeters and the helix outer diameter is less than about 3 millimeters.

Claims (40)

1. A motor drive system comprising:

a motor having a rotary motor output shaft;

a driven component; and

a flexible coupling connecting the motor output shaft to the driven component, wherein the flexible coupling comprises a helix comprising a first wound wire, wherein a first end of the helix is adhesively bonded to the rotary motor output shaft and a second end of the helix is adhesively bonded to the driven component, and wherein the helix has a helix unbonded free length that is less than about two times a helix outer diameter.

2. The motor drive system of claim 1 , wherein the motor output shaft has a shaft diameter of less than about 3 millimeters.

3. The motor drive system of claim 1 , wherein the helix outer diameter is less than about 3 millimeters.

4. The motor drive system of claim 1 , wherein the driven component comprises a leadscrew.

5. The motor drive system of claim 1 , wherein the first wound wire has a round cross section.

6. The motor drive system of claim 1 , wherein the flexible coupling has no lateral constraint for the helix.

7. The motor drive system of claim 1 , wherein the helix comprises

a first helical layer formed of the first wound wire having a first lay, and

a second helical layer overlying the first helical layer, wherein the second helical layer is formed of a second wound wire having a second lay opposite to the first lay.

8. The motor drive system of claim 1 , wherein the helix comprises

a first helical layer formed of the first wound wire having a first lay, and

a second helical layer overlying the first helical layer, wherein the second helical layer is formed of a second wound wire having a second lay opposite to the first lay, the motor output shaft is mechanically connected to both the first helical layer and the second helical layer, and the driven component is mechanically connected to both the first helical layer and the second helical layer.

9. A motor drive system comprising:

a motor having a rotary motor output shaft with a shaft diameter of less than about 3 millimeters;

a leadscrew driven component; and

a flexible coupling connecting the motor output shaft to the driven component, wherein the flexible coupling comprises a helix comprising a first wound wire of round cross section, wherein the helix outer diameter is less than about 3 millimeters, wherein the helix has a helix unbonded free length that is less than about two times a helix outer diameter, and wherein the flexible coupling has no lateral constraint for the helix.

10. The motor drive system of claim 9 , wherein the helix comprises

a first helical layer formed of the first wound wire having a first lay, and

a second helical layer overlying the first helical layer, wherein the second helical layer is formed of a second wound wire having a second lay opposite to the first lay.

11. The motor drive system of claim 9 , wherein the helix comprises

a first helical layer formed of the first wound wire having a first lay, and

a second helical layer overlying the first helical layer, wherein the second helical layer is formed of a second wound wire having a second lay opposite to the first lay, the motor output shaft is mechanically connected to both the first helical layer and the second helical layer, and the driven component is mechanically connected to both the fist helical layer and the second helical layer.

12. The motor drive system of claim 1 , wherein the helix comprises

a first helical layer formed of the first wound wire having a first lay, wherein the first wound wire has a round cross section, and

a second helical layer overlying the first helical layer, wherein the second helical layer is formed of a second wound wire having a second lay opposite to the first lay, and wherein the second wound wire has a round cross section.

13. The motor drive system of claim 1 , wherein the helix comprises

a first helical layer formed of the first wound wire having a first lay, wherein the first wound wire has a round cross section, and

a second helical layer overlying the first helical layer, wherein the second helical layer is formed of a second wound wire having a second lay opposite to the first lay, the second wound wire has a round cross section, the motor output shaft is mechanically connected to both the first helical layer and the second helical layer, and the driven component is mechanically connected to both the first helical layer and the second helical layer.

14. The motor drive system of claim 9 , wherein the helix comprises

a first helical layer formed of the first wound wire having a first lay, and

a second helical layer overlying the first helical layer, wherein the second helical layer is formed of a second wound wire having a second lay opposite to the first lay, and wherein the second wound wire has a round cross section.

15. The motor drive system of claim 9 , wherein the helix comprises

a first helical layer formed of the first wound wire having a first lay, and

a second helical layer overlying the first helical layer, wherein the second helical layer is formed of a second wound wire having a second lay opposite to the first lay, the second wound wire has a round cross section, the motor output shaft is mechanically connected to both the first helical layer and the second helical layer, and the driven component is mechanically connected to both the first helical layer and the second helical layer.

16. The motor drive system of claim 9 , wherein

a first end of the helix is adhesively bonded to the rotary motor output shaft, and

a second end of the helix is adhesively bonded to the driven component.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 19, 2012
From: RAYTHEON COMPANY
To: RAYTHEON CANADA LIMITED
Reel/Frame 027558/0411 →