IP Library Granted Patent US 10,272,553
Granted Patent B2
US 10,272,553 · App. 14/440,143 · Granted Apr 30, 2019

Driving tool

Inventors: Ying Yang (Anjo, JP); Kenya Yanagihara (Anjo, JP)
Assignee: MAKITA CORPORATION
B25C1/008B25C1/04B25C1/06
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Quick Facts
Patent No.
US 10,272,553
App. No.
14/440,143
Granted
Apr 30, 2019
Kind
B2
Abstract

A driving tool, such as a nailer, includes a compression cylinder, a compression piston, an electric motor, a control apparatus, a trigger, a trigger switch, a driver guide, and a contact-arm switch. The control apparatus prevents fasteners, such as nails, from being driven when the controller identifies a state, in which it is likely that a malfunction or mis-operation of the driving tool is occurring.

Claims (78)

1. A driving tool configured to drive a driven article out of an ejection port, comprising:

a cylinder;

a piston slidably housed within the cylinder;

a motor configured to drive the piston;

a controller configured to control operation of the motor;

a first movable member configured to be moved from a first position to a second position by a user pressing the first movable member against a workpiece in order to drive the driven article into the workpiece;

a first switch configured to be in an OFF state when the first movable member is positioned at the first position and in an ON state when the first movable member is positioned at the second position;

a second movable member configured to be moved from a third position to a fourth position by the user in order to initiate a driving operation; and

a second switch configured to be in the OFF state when the second movable member is positioned at the third position and in the ON state when the second movable member is positioned at the fourth position;

wherein,

the driving tool is configured to detachably mount a battery for supplying electric current to the motor;

the controller is configured to, if both the first switch and the second switch change to the ON state, generate an air pressure change inside the cylinder by driving the motor and thereby drive the driven article as a result of the pressure change; and

the controller is configured to prevent the motor from driving the piston and thus preventing the driven article from being driven when one of the following states is detected:

the first switch is in the ON state while the first movable member is positioned at the first position; or

the second switch is in the ON state while the second movable member is positioned at the third position.

2. The driving tool according to claim 1 , wherein

the controller is configured to prevent the driving of the driven article when it is detected that the first switch and/or the second switch is in the ON state at the time that the battery is mounted.

3. The driving tool according to claim 2 , further comprising:

a change-over switch configured to switch between an electric-current-supply permitted state that permits the supply of electric current from the battery to the controller and an electric-current-supply cutoff state that cuts off the supply of electric current;

wherein,

the controller is configured to prevent the driving of the driven article when it is detected that the first switch and/or the second switch is in the ON state at the time that the change-over switch is switched from the electric-current-supply cutoff state to the electric-current-supply permitted state.

4. The driving tool according to claim 3 , wherein

the controller is configured to prevent the driving of the driven article when it is detected that:

the first switch is in the ON state continuously for the first predetermined period of time while the first movable member is positioned at the second position or

the second switch is in the ON state continuously for the second predetermined period of time while the second movable member is positioned at the fourth position.

5. The driving tool according to claim 4 , wherein

the first movable member is a contact arm configured to contact the workpiece and be moved from the first position to the second position when the user presses the driving tool against the workpiece; and

the second movable member is a finger-operable trigger.

6. The driving tool according to claim 1 , further comprising:

a change-over switch configured to switch between an electric-current-supply permitted state that permits the supply of electric current from the battery to the controller and an electric-current-supply cutoff state that cuts off the supply of electric current;

wherein,

the controller is configured to prevent the driving of the driven article when it is detected that the first switch and/or the second switch is in the ON state at the time that the change-over switch is switched from the electric-current-supply cutoff state to the electric-current-supply permitted state.

7. The driving tool according to claim 1 , wherein

the controller is configured to prevent the driving of the driven article when it is detected that:

the first switch is in the ON state continuously for the first predetermined period of time while the first movable member is positioned at the second position or

the second switch is in the ON state continuously for the second predetermined period of time while the second movable member is positioned at the fourth position.

8. The driving tool according to claim 1 , wherein

the controller is configured to prevent the driving of the driven article when it is detected that:

the first switch is in the ON state continuously for the first predetermined period of time while the first movable member is positioned at the second position or

the second switch is in the ON state continuously for the second predetermined period of time while the second movable member is positioned at the fourth position.

9. The driving tool according to claim 1 , comprising:

an informing means for indicating to the user that the driving of the driven article is being prevented by the controller.

10. The driving tool according to claim 1 , wherein

the first movable member is a contact arm configured to contact the workpiece and be moved from the first position to the second position when the user presses the driving tool against the workpiece; and

the second movable member is a trigger configured to be directly operated by a finger of the user.

11. A driving tool comprising:

a first movable element configured to be movable from a first position to a second position when a user presses the first movable member against a workpiece in order to drive a driven article into the workpiece;

a first switch configured to be normally in an OFF state when the first movable member is positioned at the first position and switched to an ON state when the first movable member is moved to the second position;

a second movable member configured to be movable from a third position to a fourth position by the user in order to initiate a driving operation;

a second switch configured to be normally in an OFF state when the second movable member is positioned at the third position and switched to an ON state when the second movable member is moved to the fourth position; and

a controller configured to prevent the driving operation when one of the following states is detected:

(i) the first switch is in the ON state while the first movable member is positioned at the first position; or

(ii) the second switch is in the ON state while the second movable member is positioned at the third position.

12. The driving tool according to claim 11 , wherein:

the first movable member is a contact arm configured to contact the workpiece and be moved from the first position to the second position when the user presses the driving tool against the workpiece;

the second movable member is a finger-operable trigger;

a piston is slidably housed within a cylinder

a motor is configured to drive the piston and

the controller is configured to:

detect when the first switch and the second switch are both switched to the ON states, and in response thereto, drive the motor to generate an air pressure change inside the cylinder in order to drive the driven article into the workpiece,

detect states (i) and (ii) when a detachable battery is electrically coupled to the driving tool.

13. A method of operating a driving tool, wherein the driving tool comprises:

a first movable element configured to be movable from a first position to a second position when a user presses the first movable member against a workpiece in order to drive a driven article into the workpiece;

a first switch configured to be normally in an OFF state when the first movable member is positioned at the first position and switched to an ON state when the first movable member is moved to the second position;

a second movable member configured to be movable from a third position to a fourth position by the user in order to initiate a driving operation; and

a second switch configured to be normally in an OFF state when the second movable member is positioned at the third position and switched to an ON state when the second movable member is moved to the fourth position;

the method comprising:

preventing the driving operation when one of the following states is detected:

(i) the first switch is in the ON state while the first movable member is positioned at the first position; or

(ii) the second switch is in the ON state while the second movable member is positioned at the third position.

14. The method according to claim 13 , wherein the states (i) and (ii) are detected when a main power switch of the driving tool is switched from an OFF state to an ON state.

15. The method according to claim 13 , wherein the states (i) and (ii) are detected when a detachable battery is electrically coupled to the driving tool.

16. The method according to claim 15 , wherein

the first movable member is a contact arm configured to contact the workpiece and be moved from the first position to the second position when the user presses the driving tool against the workpiece; and

the second movable member is a finger-operable trigger.

17. The method according to claim 16 , wherein the driving tool further comprises a piston slidably housed within a cylinder and a motor that drives the piston and the method further comprises:

detecting when the first switch and the second switch are both switched to the ON states, and

in response thereto, driving the motor to generate an air pressure change inside the cylinder in order to drive the driven article into the workpiece.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 11, 2015
From: YANG, YING; YANAGIHARA, KENYA
To: MAKITA CORPORATION
Reel/Frame 035607/0393 →
Priority Claims (1)
JP 2012-243442 · Nov 5, 2012 · national
Continuity (1)
Related Publication 20150314432A1 · Nov 5, 2015
Cited By (5)
US 12,395,046 US 12,420,396 US 12,544,894 US 12,569,967 US 12,629,805