IP Library › Granted Patent US 12,569,960
Granted Patent B2
US 12,569,960 · App. 18/904,395 · Granted Mar 10, 2026

Impact tool

Inventors: Spencer J. Sheckells (Parkville, MD); Austin L. Ganzermiller (Reisterstown, MD)
Assignee: Black & Decker Inc.
B25B21/02B25D17/04B25D17/06B25D17/24
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Quick Facts
Patent No.
US 12,569,960
App. No.
18/904,395
Granted
Mar 10, 2026
Kind
B2
Abstract

A power-driven impact tool is provided. The impact tool includes a motor, a transmission, and a rotary impact mechanism received in a housing. The transmission may be a planetary transmission that reduces a speed of a rotary force output by the motor. The impact tool may be a cordless impact tool, receiving power from a battery back that is removably coupled in a battery receptacle of the housing. First and second handles on the housing may provide for user stability and control during operation of the impact tool. A plurality of user selection devices, including a trigger, a forward/reverse switch, and a mode selector, may be provided on one of the handles for user control of the impact tool.

Claims (61)

1 . A powered rotary impact tool, comprising:

a housing;

a handle coupled to a first end portion of the housing;

an output shaft at least partially received in the housing and oriented along a longitudinal axis;

a rotary impact mechanism received in a second end portion of the housing, the rotary impact mechanism including a hammer and an anvil coupled to the output shaft; and

a multi-motor drive unit received in the housing, the multi-motor drive unit including a plurality of motors configured to cooperatively drive the rotary impact mechanism,

wherein in response to a torque at the output shaft that is less than or equal to a threshold torque value, the hammer continuously engages the anvil such that the hammer and the anvil rotate together,

wherein in response to a torque at the output shaft that is greater than the threshold torque value, the hammer applies intermittent rotational impacts to the anvil; and

wherein a maximum fastening torque to length ratio of the multi-motor drive unit and the rotary impact mechanism is at least 50 ft-lbs/mm.

2 . The powered rotary impact tool of claim 1 , wherein the multi-motor drive unit and the rotary impact mechanism are configured to generate an output torque enabling a tool holder coupled to the output shaft to tighten a threaded fastener to a fastening torque of greater than or equal to 3600 ft-lbs within 10 seconds of initiation of application of the intermittent rotational impacts on the anvil by the hammer.

3 . The powered rotary impact tool of claim 2 , wherein the multi-motor drive unit and the rotary impact mechanism are configured to generate an output torque enabling the tool holder to loosen a fastener with a breakaway torque of greater than or equal to 4000 ft-lbs.

4 . The powered rotary impact tool of claim 1 , further comprising a transmission operably coupled between the multi-motor drive unit and the rotary impact mechanism, the transmission being configured to reduce a speed output by the multi-motor drive unit transmitted to the rotary impact mechanism.

5 . The powered rotary impact tool of claim 4 , wherein a speed reduction ratio of the transmission is between 3:1 and 13:1 while the rotary impact mechanism provides a fastening torque of greater than or equal to 3600 ft-lbs.

6 . The powered rotary impact tool of claim 1 , wherein the multi-motor drive unit also includes:

a plurality of pinion gears, a pinion gear of the plurality of pinion gears being provided on and driven by each of the plurality of motors; and

a master gear that engages the plurality of pinion gears to provide a first speed reduction.

7 . The powered rotary impact tool of claim 1 , wherein a power to mass ratio of the multi-motor drive unit is in a range of 3 W/g to 10 W/g.

8 . A powered rotary impact tool, comprising:

a housing;

a handle coupled to a first end portion of the housing;

an output spindle at least partially received in the housing and extending along a longitudinal axis;

a tool holder coupled to and configured to rotate with the output spindle;

a motor drive unit disposed in the housing and including an output shaft extending along a motor axis;

a transmission coupled to the output shaft; and

a rotary impact mechanism including:

a cam shaft rotatably driven by an output member of the transmission, the cam shaft extending along a transmission axis;

a hammer received over the cam shaft;

an anvil coupled to the output spindle; and

a spring biasing the hammer toward the anvil,

wherein, in response to a torque on the output spindle is less than or equal to a threshold torque value, the hammer continuously engages the anvil so that the hammer and the anvil rotate together, and in response to a torque on the output spindle is greater than the threshold torque value, the hammer applies intermittent rotational impacts to the anvil, and

wherein a length of the motor drive unit along the motor axis is less than 70 mm, a cross-sectional area of the motor drive unit in a plane transverse to the motor axis is less than 130 cm{circumflex over ( )}2 and a length of the transmission along the transmission axis is less than 10 mm, the transmission providing a speed reduction within a range of 1:1 to 8:1, and

wherein the motor drive unit, the transmission, and the rotary impact mechanism are configured to generate an output torque enabling the tool holder to tighten a threaded fastener to a fastening torque of greater than or equal to 3600 ft-lbs. within 10 seconds of initiation of the intermittent rotational impacts imparted on the anvil by the hammer.

9 . The powered rotary impact tool of claim 7 , wherein the motor drive unit, the transmission, and the rotary impact mechanism are configured to generate an output torque enabling the tool holder to loosen a fastener with a breakaway torque of greater than or equal to 4000 ft-lbs.

10 . The powered rotary impact tool of claim 8 , wherein a maximum fastening torque to length ratio of the motor drive unit is at least 50 ft-lbs/mm.

11 . The powered rotary impact tool of claim 8 , wherein the motor drive unit comprises a plurality of motors configured to cooperatively drive the transmission.

12 . The powered rotary impact tool of claim 11 , wherein the motor drive unit also includes:

a plurality of pinion gears, a pinion gear of the plurality of pinion gears being provided on and driven by each of the plurality of motors; and

a master gear that engages the plurality of pinion gears to provide an additional speed reduction.

13 . The powered rotary impact tool of claim 12 , wherein the additional speed reduction is between 1:1 and 8:1, and the speed reduction provided by the transmission is between 3:1 and 13:1.

14 . A powered rotary impact tool, comprising:

a housing;

a handle coupled to the housing;

an output spindle at least partially received in the housing and extending along an output axis;

a tool holder coupled to the output spindle and configured to rotate in response to rotation of the output spindle;

a motor drive unit disposed in the housing, the motor drive unit having a first axial length along a motor axis and a first width transverse to the motor axis;

a transmission coupled to the motor drive unit and configured to provide a speed reduction, the transmission having a second axial length along a transmission axis and a second width transverse to the transmission axis; and

a rotary impact mechanism, including:

a cam shaft rotatably driven by an output member of the transmission, the cam shaft extending along a cam shaft axis;

a hammer received over the cam shaft;

an anvil coupled to the output spindle; and

a spring biasing the hammer toward the anvil,

wherein, in response to a torque on the output spindle is less than or equal to a threshold torque value, the hammer continuously engages the anvil so that the hammer and the anvil rotate together, and in response to a torque on the output spindle that is greater than the threshold torque value, the hammer applies intermittent rotational impacts to the anvil, the hammer having a moment of inertia;

wherein the motor drive unit, the transmission, and the rotary impact mechanism are configured to generate an output torque enabling the tool holder to tighten a threaded fastener to a fastening torque within 10 seconds of initiation of the intermittent rotational impacts imparted on the anvil by the hammer, and

wherein a ratio of the fastening torque to a product of the first axial length of the motor drive unit and a cross-sectional area of the motor drive unit transverse to the motor axis is between 4 ft-lbs/cm{circumflex over ( )}3 and 11 ft-lbs/cm{circumflex over ( )}3.

15 . The powered rotary impact tool of claim 14 , wherein the hammer has a moment of inertia and a ratio of the fastening torque to the moment of inertia is between 0.5 kg-mm{circumflex over ( )}2/ft-lbs and 2 kg-mm{circumflex over ( )}2/ft-lbs.

16 . The powered rotary impact tool of claim 14 , wherein the motor drive unit, the transmission, and the rotary impact mechanism are configured to generate an output torque enabling the tool holder to loosen a fastener with a breakaway torque, wherein a ratio of the breakaway torque to a product of the first axial length of the motor drive unit and the cross-sectional area of the motor drive unit is between 4 ft-lbs/cm{circumflex over ( )}3 and 12 ft-lbs/cm{circumflex over ( )}3.

17 . The powered rotary impact tool of claim 14 , wherein the motor drive unit comprises a plurality of motors configured to cooperatively drive the transmission.

18 . The powered rotary impact tool of claim 17 , wherein the motor drive unit also includes:

a plurality of pinion gears, a pinion gear of the plurality of pinion gears being provided on and driven by each of the plurality of motors; and

a master gear that engages the plurality of pinion gears.

19 . The powered rotary impact tool of claim 18 , wherein the plurality of pinion gears and the master gear provide a first speed reduction between 1:1 and 8:1, and the transmission provides a second speed reduction between 3:1 and 13:1.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 2, 2024
From: SHECKELLS, SPENCER J.; GANZERMILLER, AUSTIN L.
To: BLACK & DECKER INC.
Reel/Frame 068770/0365 →
Continuity (5)
Continuation In Part PCTUS2024026533 · Apr 26, 2024
Continuation In Part 18647665 · Apr 26, 2024
Provisional Application 63662818 · Jun 21, 2024
Provisional Application 63498443 · Apr 26, 2023
Related Publication 20250018541A1 · Jan 16, 2025
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