IP Library Granted Patent US 11,940,143
Granted Patent B2
US 11,940,143 · App. 18/295,868 · Granted Mar 26, 2024

Power tool

Inventors: Makoto Chikaraishi (Anjo, JP); Akihiro Hozumi (Anjo, JP); Yutaka Ogiso (Anjo, JP)
Assignee: MAKITA CORPORATION
F21V33/0084B25B21/02B25B23/18B25F5/001H05B47/105H05B47/155
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Quick Facts
Patent No.
US 11,940,143
App. No.
18/295,868
Granted
Mar 26, 2024
Kind
B2
Abstract

A power tool includes a motor, an output shaft, a chip-on-board light emitting diode, and a light cover. The output shaft is rotated by a rotational force of the motor. The chip-on-board light emitting diode is disposed around the output shaft. The chip-on-board light emitting diode includes: a substrate having a circular ring portion; and an LED chip disposed on a front surface of the circular ring portion. The light cover is fixed to the substrate. The light cover includes: an inner cylindrical portion disposed radially inside with respect to the circular ring portion; and a light transmission portion through which light emitted from the LED chip passes. The inner cylindrical portion includes a cover slope that totally reflects light from the LED chip forward.

Claims (84)

1. A power tool comprising:

a motor;

an output shaft that is rotated by a rotational force of the motor;

a chip-on-board light emitting diode disposed around the output shaft, the chip-on-board light emitting diode including: a substrate having a circular ring portion; and an LED chip disposed on a front surface of the circular ring portion; and

a light cover fixed to the substrate, the light cover including: an inner cylindrical portion disposed radially inside with respect to the circular ring portion; and a light transmission portion through which light emitted from the LED chip passes, wherein

the inner cylindrical portion includes a cover slope that totally reflects light from the LED chip forward.

2. The power tool according to claim 1 , wherein

the cover slope is inclined forward toward a radial inside.

3. The power tool according to claim 1 , wherein

the light transmission portion includes a light entrance surface facing the LED chip and a light exit surface from which light emitted from the LED chip and incident on the light entrance surface is output,

at least a part of the light incident on the light entrance surface passes through an interior of the light cover and reaches the cover slope, and

the light totally reflected by the cover slope is output from the light exit surface.

4. The power tool according to claim 3 , wherein

the light entrance surface is inclined forward toward a radial inside.

5. The power tool according to claim 1 , further comprising:

a speed reduction mechanism configured to transmit a rotational force of the motor to the output shaft; and

a gear case that accommodates therein the speed reduction mechanism, wherein

the gear case includes:

a rear cylindrical portion that accommodates therein the speed reduction mechanism;

a front cylindrical portion that holds a bearing that supports the output shaft; and

an annular portion that connects a front end portion of the rear cylindrical portion and a rear end portion of the front cylindrical portion,

the chip-on-board light emitting diode is disposed around the front cylindrical portion, and

the inner cylindrical portion is disposed around the front cylindrical portion and is fixed to the front cylindrical portion.

6. The power tool according to claim 5 , wherein

the front cylindrical portion includes a protrusion protruding radially outward from an outer circumferential surface of the front cylindrical portion, and

the inner cylindrical portion includes a recess in which the protrusion is disposed.

7. The power tool according to claim 6 , wherein

the cover slope defines at least a part of the recess.

8. The power tool according to claim 7 , wherein

the protrusion includes a case slope facing the cover slope.

9. The power tool according to claim 6 , wherein

a rear slide portion and a front slide portion disposed forward of the rear slide portion are provided on an inner circumferential surface of the inner cylindrical portion,

the rear slide portion and the front slide portion each protrude radially inward from the inner circumferential surface of the inner cylindrical portion,

the recess is provided between the rear slide portion and the front slide portion, and

the cover slope is provided on the front slide portion.

10. The power tool according to claim 9 , wherein

a plurality of the rear slide portions are provided at intervals in a circumferential direction of the inner cylindrical portion,

a plurality of the front slide portions are respectively disposed forward of the plurality of rear slide portions,

an insertion port is provided between one end of the rear slide portion in a circumferential direction and the front slide portion, and

the protrusion is disposed in the recess via the insertion port.

11. The power tool according to claim 10 , wherein

the light cover and the gear case are fixed to one another by inserting the protrusion into the recess, the insertion of the protrusion into the recess being done by rotating the light cover after inserting the protrusion into the insertion port.

12. The power tool according to claim 5 ,

the light cover includes an outer cylindrical portion disposed radially outside with respect to the circular ring portion, and

the light transmission portion is disposed so as to connect a front end portion of the outer cylindrical portion and a front end portion of the inner cylindrical portion.

13. The power tool according to claim 5 , wherein

the output shaft includes an anvil,

the power tool further comprises an impact mechanism to which a rotational force of the motor is transmitted via the speed reduction mechanism and that impacts the anvil in a rotation direction,

the gear case is a hammer case that accommodates therein the speed reduction mechanism and the impact mechanism.

14. The power tool according to claim 1 , wherein

the light transmission portion includes a light entrance surface facing the LED chip and a light exit surface from which light emitted from the LED chip and incident on the light entrance surface is output,

at least a part of the light incident on the light entrance surface passes through an interior of the light cover and reaches the cover slope,

the light totally reflected by the cover slope is output through the light exit surface, and

an uneven portion is formed on the light entrance surface.

15. A power tool comprising:

a motor;

an output shaft that is rotated by a rotational force of the motor;

a chip-on-board light emitting diode disposed around the output shaft, the chip-on-board light emitting diode including: a substrate having a circular ring portion; and an LED chip disposed on a front surface of the circular ring portion;

a light cover fixed to the substrate, the light cover including: a light transmission portion through which light emitted from the LED chip passes, and an inner cylindrical portion disposed radially inside with respect to the circular ring portion, wherein

the light transmission portion includes a light entrance surface facing the LED chip and a light exit surface from which light emitted from the LED chip and incident on the light entrance surface is output, and

an uneven portion is formed on the light entrance surface; wherein

the inner cylindrical portion includes a cover slope that totally reflects light from the LED chip forward.

16. A power tool comprising:

a motor;

an output shaft that is rotated by a rotational force of the motor;

a chip-on-board light emitting diode disposed around the output shaft, the chip-on-board light emitting diode including: a substrate having a circular ring portion; and an LED chip disposed on a front surface of the circular ring portion;

a light cover fixed to the substrate, the light cover including: an inner cylindrical portion disposed radially inside with respect to the circular ring portion; and a light transmission portion through which light emitted from the LED chip passes, wherein the inner cylindrical portion includes a cover slope that totally reflects light from the LED chip forward;

an illuminance sensor; and

an LED control circuit configured to control an irradiation state of light emitted from the chip-on-board light emitting diode based on a detection value of the illuminance sensor.

17. The power tool according to claim 16 , wherein

the illuminance sensor receives light, which is emitted from the LED chip of the chip-on-board light emitting diode and reflected by a work target, and

the LED control circuit reduces an amount of light emitted from the LED chip when determining that the detection value of the illuminance sensor exceeds a predetermined allowable value.

18. The power tool according to claim 16 , wherein

a plurality of the LED chips of the chip-on-board light emitting diode are provided,

the illuminance sensor receives light emitted from each of the plurality of LED chips and reflected by a work target, and

the LED control circuit stops light emission of some of the LED chips when determining that the detection value of the illuminance sensor exceeds a predetermined allowable value.

19. The power tool according to claim 16 , further comprising:

a speed reduction mechanism configured to transmit a rotational force of the motor to the output shaft;

a gear case that accommodates therein the speed reduction mechanism; and

a trigger lever configured to be operated to start the motor, wherein

the illuminance sensor is disposed between the gear case and the trigger lever.

20. The power tool according to claim 19 , further comprising

a sensor cover disposed forward of the illuminance sensor, wherein

the illuminance sensor receives light through an opening provided in the sensor cover.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 5, 2023
From: CHIKARAISHI, MAKOTO; HOZUMI, AKIHIRO; OGISO, YUTAKA
To: MAKITA CORPORATION
Reel/Frame 063231/0407 →
Priority Claims (1)
JP 2022-078089 · May 11, 2022 · national
Continuity (1)
Related Publication 20230366535A1 · Nov 16, 2023