IP Library › Granted Patent US 10,575,912
Granted Patent B2
US 10,575,912 · App. 16/220,851 · Granted Mar 3, 2020

Wire driving device and manipulator

Inventor: Kosuke Kishi (Tokyo, JP)
Assignee: OLYMPUS CORPORATION
A61B34/71A61B1/0057B25J9/102B25J9/104F16H3/20F16H3/30F16H9/10F16H19/005A61B2034/301A61B2034/715F16H2007/0865
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Quick Facts
Patent No.
US 10,575,912
App. No.
16/220,851
Granted
Mar 3, 2020
Kind
B2
Abstract

Provided is a wire driving device including: wires one ends of which are attached to a movable member; pulleys to which the other ends of the individual wires are secured; driven gears that are coaxially secured to the individual pulleys; a drive gear that is connected to a driving source; and movable gears that are disposed between the drive gear and the individual driven gears and that can transmit the motive power of the driving source to the driven gears from the drive gear. The movable gears are provided in a movable manner so that the movable gears engage with the drive gear and the driven gears when the drive gear is rotated in a direction, and so that the engagements of the movable gears with at least one of the drive gear and the driven gears are released when the drive gear is rotated in the other direction.

Claims (48)

1. A wire driving device comprising:

a pair of wires, one end of each individual wire in the pair of wires being attached to a movable member for antagonistically driving the movable member;

a pair of pulleys, an other end of each individual wire in the pair of wires being secured to an individual pulley in the pair of pulleys, each individual wire being wound around a respective one of each individual pulley;

a pair of driven gears, each driven gear in the pair of driven gears being coaxially secured to a respective one of each individual pulley;

a drive gear that is connected to a driving source that generates motive power;

a pair of movable gears, each individual movable gear of the pair of movable gears being disposed between the drive gear and a respective one of each individual driven gear, each individual movable gear transmitting the motive power of the driving source to the respective driven gear from the drive gear; and

a movable-gear means for moving each individual movable gear in a direction in which each individual movable gear is engaged with the drive gear and a respective individual driven gear.

2. The wire driving device according to claim 1 , wherein the movable-gear means is configured such that each individual movable gear is provided in a movable manner so that the pair of movable gears engage with the drive gear and with each respective individual driven gear when the drive gear is rotated in a manner in which the pair of pulleys wind a respective wire.

3. The wire driving device according to claim 1 , wherein the movable-gear means is configured such that each individual movable gear is provided in a movable manner so that engagement of one individual movable gear with at least one of the drive gear and a respective individual driven gear is released when the drive gear is rotated in a manner in which a respective pulley unwinds a respective wire.

4. The wire driving device according to claim 1 , further comprising a pair of movable pulleys, each individual movable pulley of the pair of movable pulleys being coaxially disposed at a respective individual movable gear,

wherein a respective individual wire passes over each individual movable pulley on opposite sides of, flanking shafts thereof, the positions at which each respective movable gear engages with at least one of the drive gear and a respective individual driven gear.

5. A manipulator comprising:

a wire driving device comprising:

a pair of wires, one end of each individual wire in the pair of wires being attached to a movable member for antagonistically driving the movable member;

a pair of pulleys, an other end of each individual wire in the pair of wires being secured to an individual pulley in the pair of pulleys, each individual wire being wound around a respective one of each individual pulley;

a pair of driven gears, each driven gear in the pair of driven gears being coaxially secured to a respective one of each individual pulley;

a drive gear that is connected to a driving source that generates motive power;

a pair of movable gears, each individual movable gear of the pair of movable gears being disposed between the drive gear and a respective one of each individual driven gear, each individual movable gear transmitting the motive power of the driving source to the respective driven gear from the drive gear;

a movable-gear means for moving each individual movable gear in a direction in which each individual movable gear is engaged with the drive gear and a respective individual driven gear; and

a joint that supports the movable member in a movable manner.

6. The manipulator according to claim 5 , wherein the movable-gear means is configured such that each individual movable gear is provided in a movable manner so that the pair of movable gears engage with the drive gear and with each respective individual driven gear when the drive gear is rotated in a manner in which the pair of pulleys wind a respective wire.

7. The manipulator according to claim 5 , wherein the movable-gear means is configured such that each individual movable gear is provided in a movable manner so that engagement of one individual movable gear with at least one of the drive gear and a respective individual driven gear is released when the drive gear is rotated in a manner in which a respective pulley unwinds a respective wire.

8. The manipulator according to claim 5 , further comprising a pair of movable pulleys, each individual movable pulley of the pair of movable pulleys being coaxially disposed at a respective individual movable gear,

wherein a respective individual wire passes over each individual movable pulley on opposite sides of, flanking shafts thereof, the positions at which each respective movable gear engages with at least one of the drive gear and a respective individual driven gear.

9. A wire driving device comprising:

first and second wires, one end of each being attached to a movable member, the first and second wires being configured to antagonistically drive the movable member;

first and second pulleys, an other end of the first wire being secured to the first pulley and an other end of the second wire being secured to the second pulley, the first wire being wound around the first pulley and the second wire being wound around the second pulley;

first and second driven gears, the first gear being coaxially secured to the first pulley and the second gear being coaxially secured to the second pulley;

a drive gear that is connected to a driving source that generates motive power;

first and second movable gears, the first movable gear being disposed between the drive gear and the first driven gear and the second movable gear being disposed between the drive gear and the second driven gear, the motive power of the driving source being transmitted from the drive gear to the first movable gear and from the first movable gear to the first driven gear and the motive power of the driving source being transmitted from the drive gear to the second movable gear and from the second movable gear to the second driven gear; and

a movable-gear means for moving the first and second movable gears in a direction in which each of the first and second movable gears are engaged with the drive gear and a respective one of the first and second driven gears.

10. The wire driving device according to claim 9 , wherein the movable-gear means is configured such that the first and second movable gears are each provided in a movable manner so that the first and second movable gears engage with the drive gear and the first and second movable gears each engage with the first and second driven gears, respectively, when the drive gear is rotated in a manner in which the first and second pulleys wind the first and second wires, respectively.

11. The wire driving device according to claim 9 , wherein the movable-gear means is configured such that the first and second movable gears are each provided in a movable manner so that engagement of the first movable gear with at least one of the drive gear and the first driven gear is released when the drive gear is rotated in a manner in which the first pulley unwinds the first wire.

12. The wire driving device according to claim 9 , further comprising first and second movable pulleys, each of the first and second movable pulleys being coaxially disposed at a respective one of the first and second movable gears,

wherein the first and second individual wires pass over the first and second movable pulleys, respectively, on opposite sides of, flanking shafts thereof, the positions at which the first and second movable gears, respectively, engage with at least one of the drive gear and a respective first and second driven gear.

13. A manipulator comprising:

a wire driving device comprising:

first and second wires, one end of each being attached to a movable member, the first and second wires being configured to antagonistically drive the movable member;

first and second pulleys, an other end of the first wire being secured to the first pulley and an other end of the second wire being secured to the second pulley, the first wire being wound around the first pulley and the second wire being wound around the second pulley;

first and second driven gears, the first gear being coaxially secured to the first pulley and the second gear being coaxially secured to the second pulley;

a drive gear that is connected to a driving source that generates motive power;

first and second movable gears, the first movable gear being disposed between the drive gear and the first driven gear and the second movable gear being disposed between the drive gear and the second driven gear, the motive power of the driving source being transmitted from the drive gear to the first movable gear and from the first movable gear to the first driven gear and the motive power of the driving source being transmitted from the drive gear to the second movable gear and from the second movable gear to the second driven gear;

a movable-gear means for moving the first and second movable gears in a direction in which each of the first and second movable gears are engaged with the drive gear and a respective one of the first and second driven gears; and

a joint that supports the movable member in a movable manner.

14. The manipulator according to claim 13 , wherein the movable-gear means is configured such that the first and second movable gears are each provided in a movable manner so that the first and second movable gears are each provided in a movable manner so that the first and second movable gears engage with the drive gear and the first and second movable gears each engage with the first and second driven gears, respectively when the drive gear is rotated in a manner in which the first and second pulleys wind the first and second wires, respectively.

15. The manipulator according to claim 13 , wherein the movable-gear means is configured such that the first and second movable gears are each provided in a movable manner so that engagement of the first movable gear with at least one of the drive gear and the first driven gear is released when the drive gear is rotated in a manner in which the first pulley unwinds the first wire.

16. The manipulator according to claim 13 , further comprising first and second movable pulleys, each of the first and second movable pulleys being coaxially disposed at a respective one of the first and second movable gears,

wherein the first and second individual wires pass over the first and second movable pulleys, respectively, on opposite sides of, flanking shafts thereof, the positions at which the first and second movable gears, respectively, engage with at least one of the drive gear and a respective first and second driven gear.

Priority Claims (1)
JP 2014-032969 · Feb 24, 2014 · national
Continuity (3)
Continuation 15235179 · Aug 12, 2016
Continuation PCTJP2015054958 · Feb 23, 2015
Related Publication 20190117325A1 · Apr 25, 2019