IP Library Granted Patent US 12,661,766
Granted Patent B2
US 12,661,766 · App. 18/678,033 · Granted Jun 23, 2026

Powered fastener driver

Inventors: Mitchell T. Neuhoff (Waukesha, WI); Bradley S. Houskamp (Wauwatosa, WI); Mark C. Hughes (Waukesha, WI)
Assignee: MILWAUKEE ELECTRIC TOOL CORPORATION
B25C1/008B25C1/003B25C1/047B25C1/06
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Quick Facts
Patent No.
US 12,661,766
App. No.
18/678,033
Granted
Jun 23, 2026
Kind
B2
Abstract

A powered fastener driver includes a housing, a nosepiece extending from the housing, a driver blade movable within the nosepiece between a ready position and a driven position, a piston coupled to the driver blade for movement therewith, a driver cylinder within which the piston is movable, a magazine coupled to the nosepiece in which collated fasteners are receivable, a fastener delivery mechanism coupled to the nosepiece for individually transferring collated fasteners in the magazine to a fastener driving channel in the nosepiece, the fastener delivery mechanism movable between a fastener retrieval position and a fastener delivered position, and a sensor for determining a position of the fastener delivery mechanism.

Claims (36)

1 . A powered fastener driver comprising:

a housing;

a nosepiece extending from the housing;

a driver blade movable within the nosepiece;

a piston coupled to the driver blade for movement therewith;

a driver cylinder within which the piston is movable from a top dead center position (TDC) and a bottom dead center (BDC) position;

a magazine coupled to the nosepiece in which collated fasteners are receivable;

a fastener delivery mechanism coupled to the nosepiece for individually transferring collated fasteners in the magazine to a fastener driving channel in the nosepiece, the fastener delivery mechanism movable between a fastener retrieval position and a fastener delivered position in which a fastener of the collated fasteners is properly loaded into the fastener driving channel; and

a sensor for determining when the fastener delivery mechanism is in the fastener delivered position,

wherein the fastener delivery mechanism includes a first rocker arm, and wherein the sensor monitors a location of the first rocker arm to determine when the fastener delivery mechanism is in the fastener delivered position.

2 . The powered fastener driver of claim 1 , wherein the powered fastener driver is allowed to fire and drive a fastener into a workpiece when the fastener delivery mechanism is in the fastener delivered position.

3 . The powered fastener driver of claim 1 , wherein the powered fastener driver is prevented from firing when the fastener delivery mechanism is in an error position.

4 . The powered fastener driver of claim 1 , wherein the powered fastener driver is not allowed to fire and drive a fastener into a workpiece when the fastener delivery mechanism is not in the fastener delivered position.

5 . The powered fastener driver of claim 1 , wherein the fastener delivery mechanism includes an actuator portion coupled to an advancer, and wherein the actuator portion moves the advancer in a first direction to retrieve a fastener when the fastener delivery mechanism is in the fastener retrieval position.

6 . The powered fastener driver of claim 5 , wherein the actuator portion moves the advancer in a second direction to move a fastener into the fastener driving channel when the fastener delivery mechanism is in the fastener delivered position.

7 . The powered fastener driver of claim 1 , wherein the fastener delivery mechanism includes at least one magnet and the at least one magnet is sensed by the sensor to determine when the fastener delivery mechanism is in the fastener delivered position.

8 . The powered fastener driver of claim 7 , wherein the sensor is a Hall-effect sensor.

9 . The powered fastener driver of claim 1 , wherein the fastener delivery mechanism includes at least one metal target and the at least one metal target is sensed by the sensor to determine when the fastener delivery mechanism is in the fastener delivered position.

10 . The powered fastener driver of claim 9 , wherein the sensor is an inductive sensor.

11 . The powered fastener driver of claim 1 , further comprising:

a workpiece contact bracket disposed on the nosepiece, the workpiece contact bracket including a workpiece contact bracket target; and

a second sensor for detecting a location of the workpiece contact bracket target.

12 . A method of operating a powered fastener driver, the method comprising:

monitoring a position of a fastener delivery mechanism;

determining whether the fastener delivery mechanism has moved from a fastener retrieval position to a fastener delivered position in which a fastener is properly loaded into a fastener driving channel; and

allowing the powered fastener driver to fire when a trigger is actuated and when the fastener delivered position is detected,

wherein the position of the fastener delivery mechanism is monitored by monitoring a location of a first rocker arm of the fastener delivery mechanism.

13 . The method of claim 12 , further comprising:

preventing the powered fastener driver from firing when the fastener delivered position is not detected.

14 . The method of claim 13 , wherein in response to the fastener delivered position not being detected, further comprising indicating that a fastener jam is likely to occur.

15 . The method of claim 14 , wherein indicating that a fastener jam is likely to occur includes providing a visual indication, an audible indication, haptic feedback, or a combination thereof.

16 . The method of claim 12 , wherein the first rocker arm includes a magnet disposed thereon.

17 . The method of claim 16 , wherein the location of the first rocker arm is determined by sensing the magnet on the first rocker arm.

18 . The method of claim 12 , wherein the first rocker arm includes a first metal target disposed therein.

19 . The method of claim 18 , wherein the first rocker arm includes a second metal target disposed therein.

20 . The method of claim 19 , wherein the location of the first rocker arm is determined by sensing the first metal target and the second metal target within the first rocker arm.