IP Library › Granted Patent US 12,355,334
Granted Patent B2
US 12,355,334 · App. 17/978,280 · Granted Jul 8, 2025

Switch module for a power tool

Inventor: Matthew J. Velderman (Baltimore, MD)
Assignee: BLACK & DECKER INC.
H02K7/145B25F5/00B25F5/001H01H9/063H01R12/52H01R12/718H02K11/33H02P6/14H02P27/08H02P7/04
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Quick Facts
Patent No.
US 12,355,334
App. No.
17/978,280
Granted
Jul 8, 2025
Kind
B2
Abstract

An electronic switch module for a power tool is provided including a module body, a trigger moveable relative to the module body, a magnet being moveable relative to the module body with the trigger along a movement axis, and a linear Hall sensor fixed relative to the module body and intersecting the movement axis of the magnet. The linear Hall sensor magnetically detects a linear position of the magnet along the movement axis and outputs a voltage signal based on the detected linear position.

Claims (37)

1. A power tool comprising:

a main body supporting a motor rotatably driving a rotor shaft;

a handle portion; and

an electronic switch module supported by the handle, the electronic switch module comprising:

a module body;

a trigger moveable relative to the module body;

a magnet being moveable relative to the module body along a movement axis;

a spring disposed between the trigger and the magnet to bias the magnet along the movement axis with the movement of the trigger; and

a linear Hall sensor fixed relative to the module body and intersecting the movement axis of the magnet, the linear Hall sensor magnetically detecting a linear position of the magnet along the movement axis and outputting a voltage signal based on the detected linear position.

2. The power tool of claim 1 , further comprising an ON/OFF magnet moveable relative to the module body with the trigger along a second movement axis and a Hall switch disposed adjacent the linear Hall sensor and intersecting the second movement axis, wherein the Hall switch does not detect the ON/OFF magnet when the trigger is in in a released position, but magnetically detects the ON/OFF magnet when the trigger is pressed position and outputs a signal associated with an ON/OFF state accordingly.

3. The power tool of claim 1 , wherein the magnet has a S-N orientation associated with one rotary direction of the motor and a N-S orientation associated with another rotary direction of the motor, the linear Hall sensor being configured to sense a magnetic polarity of the magnet and output a signal indicative of the rotary direction of the motor.

4. A power tool comprising:

a main body supporting a motor rotatably driving a rotor shaft;

a handle portion; and

an electronic switch module supported by the handle, the electronic switch module comprising:

a module body;

a trigger moveable relative to the module body;

a first magnet being moveable relative to the module body with the trigger along a first movement axis;

a second magnet being moveable relative to the module body with the trigger along a second movement axis parallel to the first movement axis;

a spring disposed between the trigger and the first magnet to bias the magnet along the first movement axis with the movement of the trigger;

a first Hall sensor fixed relative to the module body and intersecting the first movement axis of the magnet to detect a linear position of the first magnet along the first movement axis, the linear Hall sensor outputting a voltage signal based on the linear position of the first magnet; and

a second Hall sensor fixed relative to the module body to detect a movement of the second magnet between a first position, in which the trigger is in in a released position, and a second position, in which the trigger is in a pressed position, and output a signal associated with an ON/OFF state accordingly.

5. The power tool of claim 4 , further comprising a spring that biases the trigger to the released position.

6. The power tool of claim 4 , wherein the second Hall sensor is a Hall effect switch that detect the second magnet when it makes contact with the second magnet.

7. The power tool of claim 4 , wherein the second magnet is axially forward of the first magnet relative to the trigger such that an initial actuation of the trigger causes the second Hall sensor to detect an ON state, and further actuation of the trigger causes the first Hall sensor to detect output the voltage signal at a varying voltage level.

8. The power tool of claim 4 , wherein the first magnet has a S-N orientation associated with one rotary direction of the motor and a N-S orientation associated with another rotary direction of the motor, the first Hall sensor being configured to sense a magnetic polarity of the first magnet and output a signal indicative of the rotary direction of the motor.

9. A power tool comprising:

a main body supporting a motor rotatably driving a rotor shaft;

a handle portion; and

an electronic switch module supported by the handle, the electronic switch module comprising:

a module body;

a trigger moveable relative to the module body;

a magnet oriented along a first axis when the trigger is in a released position, but is rotated so as to be oriented along a second axis substantially perpendicular to the first axis when the trigger is a pressed state; and

a Hall sensor fixed relative to the module body, wherein the Hall sensor does not magnetically sense the magnet when the magnet is oriented along the first axis, but magnetically senses the magnet when the magnet is oriented along the second axis and outputs a signal associated with an ON/OFF state accordingly.

10. The power tool of claim 9 , wherein the Hall sensor intersects the second axis.

11. The power tool of claim 9 , wherein the magnet is moveable by the trigger along the second axis, and the Hhall sensor is a linear Hall sensor configured to magnetically detect a linear position of the magnet along the second axis and output a voltage signal accordingly.

12. The power tool of claim 9 , wherein the magnet is rotated to a S-N orientation along the second axis associated with one rotary direction of the motor and to a N-S orientation along the second axis associated with another rotary direction of the motor, the Hall sensor being configured to sense a magnetic polarity of the magnet along the second axis and output a signal indicative of the rotary direction of the motor accordingly.

Continuity (5)
Continuation 16841219 · Apr 6, 2020
Continuation 15337249 · Oct 28, 2016
Continuation 13476501 · May 21, 2012
Provisional Application 61487864 · May 19, 2011
Related Publication 20230045811A1 · Feb 16, 2023
References Cited (4)
US 5747953A · Philipp · 1998 [cited by examiner]
US 6025683A · Philipp · 2000 [cited by examiner]
US 6536536B1 · Gass · 2003 [cited by examiner]
US 11522411B2 · Velderman · 2022 [cited by examiner]