IP Library › Granted Patent US 12,356,888
Granted Patent B2
US 12,356,888 · App. 17/589,965 · Granted Jul 15, 2025

Dual function power tool

Inventors: Ronald J. Hoffman (Iva, SC); Eric J. Nolin (Anderson, SC)
Assignee: TECHTRONIC CORDLESS GP
A01D34/733A01D34/736A01D34/81A01D34/82A01D34/90A01D2101/00
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Quick Facts
Patent No.
US 12,356,888
App. No.
17/589,965
Granted
Jul 15, 2025
Kind
B2
Abstract

A dual function tool head including a first selectively deployable cutting tool configured to automatically deploy when the tool head rotates in a first direction and automatically move to a stowed position when the tool head rotates in a second direction opposite the first direction; and a second selectively deployable cutting tool configured to automatically deploy when the tool head rotates in the second direction and automatically moved to a stowed position when the tool head rotates in the first direction.

Claims (30)

1. A dual function tool head comprising:

a first selectively deployable cutting tool configured to automatically deploy when the tool head rotates in a first direction and automatically move to a stowed position when the tool head rotates in a second direction opposite the first direction; and

a second selectively deployable cutting tool configured to automatically deploy when the tool head rotates in the second direction and automatically moved to a stowed position when the tool head rotates in the first direction.

2. The dual function tool head of claim 1 , wherein the first selectively deployable cutting tool defines a first projection distance, as measured by a length of the first selectively deployable cutting tool extending beyond a housing of the tool head, wherein the second selectively deployable cutting tool defines a second projection distance, as measured by a length of the second selectively deployable cutting tool extending beyond the housing, and wherein an effective cutting distance of the tool head, as measured by a sum of the first and second projection distances, is configured to remain generally constant when using the tool head in the first and second rotational directions.

3. The dual function tool head of claim 1 , wherein the tool head is configured to operably rotate in the first direction and the second direction at generally equal or variable rotational velocities.

4. The dual function tool head of claim 1 , wherein automatic deployment of the first or second selectively deployable cutting tool is configured to occur at velocities over a threshold deployment velocity, and wherein the threshold deployment velocity is at least 200 revolutions per minute (RPM).

5. The dual function tool head of claim 1 , wherein the first selectively deployable cutting tool comprises trimmer line, and wherein the second selectively deployable cutting tool comprises a blade.

6. The dual function tool head of claim 5 , wherein the trimmer line and blade are coupled together through a first support member, the first support member extending through a housing of the tool head and configured to translate radially relative to an axis of rotation of the tool head.

7. The dual function tool head of claim 1 , wherein the first selectively deployable cutting tool comprises a plurality of first selectively deployable cutting tools, and wherein the second selectively deployable cutting tool comprises a plurality of second selectively deployable cutting tools.

8. The dual function tool head of claim 1 , wherein the second selectively deployable cutting tool is held in a stowed position by a spring-loaded lock, the spring-loaded lock defining a release pressure above which the second deployable cutting tool is automatically deployed.

9. The dual function tool head of claim 1 , wherein the first and second selectively deployable cutting tools are coupled to a gear assembly, the gear assembly comprising a rack gear or a pivot gear.

10. A dual function power tool comprising:

a handle;

an electric motor;

a battery configured to provide power to the electric motor; and

a dual function tool head rotatably driven by the electric motor, the tool head comprising:

a first selectively deployable cutting tool configured to automatically deploy when the tool head rotates in a first direction and automatically move to a stowed position when the tool head rotates in a second direction opposite the first direction; and

a second selectively deployable cutting tool configured to automatically deploy when the tool head rotates in the second direction and automatically moved to a stowed position when the tool head rotates in the first direction.

11. The power tool of claim 10 , wherein the power tool further comprises a user interface element configured to selectively change the tool head between the first and second rotational directions.

12. The power tool of claim 10 , wherein the tool head is configured to operably rotate in the first direction and the second direction at generally equal rotational velocities.

13. The power tool of claim 10 , wherein the first and second selectively deployable cutting tools are coupled to a gear assembly, the gear assembly comprising a rack gear or a pivot gear.

14. The power tool of claim 10 , wherein the second selectively deployable cutting tool is held in a stowed position by a spring-loaded lock, the spring-loaded lock defining a release pressure above which the second deployable cutting tool is automatically deployed.

15. The power tool of claim 10 , wherein the first selectively deployable cutting tool defines a first projection distance, as measured by a length of the first selectively deployable cutting tool extending beyond a housing of the tool head, wherein the second selectively deployable cutting tool defines a second projection distance, as measured by a length of the second selectively deployable cutting tool extending beyond the housing, and wherein an effective cutting distance of the tool head, as measured by a sum of the first and second projection distances, is configured to remain generally constant when using the tool head in the first and second rotational directions.

16. A method of performing outdoor work, the method comprising:

operating a power tool in a first direction to use a first selectively deployable cutting tool of the power tool; and

switching the power tool to rotate in a second direction opposite the first direction, wherein switching the power tool to operate in the second direction causes the first selectively deployable cutting tool to move to a stowed position while generally simultaneously deploying a second selectively deployable cutting tool of the power tool.

17. The method of claim 16 , wherein the first and second selectively deployable cutting tools are disposed on opposite ends of a first support member, and wherein switching the power tool to operate in the second direction causes the first support member to translate generally radially with respect to an axis of rotation of a tool head of the power tool such that a first projection distance of the first selectively deployable cutting tool decreases while a second projection distance of the second selectively deployable cutting tool increases by an inverse amount.

18. The method of claim 16 , wherein the first selectively deployable cutting tool comprises a trimmer line, and wherein the second selectively deployable cutting tool comprises a blade.

19. The method of claim 16 , wherein the second deployable cutting tool is automatically deployed upon reaching a threshold deployment velocity in the second rotational direction, and wherein the threshold deployment velocity is at least 200 revolutions per minute (RPM).

20. The method of claim 16 , wherein switching the power tool to rotate in a second direction comprises toggling a user interface element of the power tool between a first position and a second position.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 1, 2022
From: HOFFMAN, RONALD J.; NOLIN, ERIC J.
To: TECHTRONIC CORDLESS GP
Reel/Frame 058840/0922 →
Continuity (2)
Provisional Application 63145272 · Feb 3, 2021
Related Publication 20220240445A1 · Aug 4, 2022
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