IP Library Granted Patent US 10,732,664
Granted Patent B2
US 10,732,664 · App. 15/818,418 · Granted Aug 4, 2020

Fixed adjustment dial

Inventor: Anthony Livolsi (Oswego, NY)
G05G1/12G05G1/08G05G5/005Y10T74/2084
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Quick Facts
Patent No.
US 10,732,664
App. No.
15/818,418
Granted
Aug 4, 2020
Kind
B2
Abstract

A rotary controller selectively-disengageable locking knob assembly, having a hub having a longitudinal axis and an axial bore extending at least partially through the inner hub along the longitudinal axis, wherein the axial bore is configured to receive a shaft of the rotary controller arranged in or on a device surface. The assembly also includes a knob concentrically disposed about at least a portion of the hub, wherein the knob includes a first engagement arrangement. A post is threadedly engaged with the radial bore so as to secure the hub to the shaft of the rotary controller, and projecting radially outwardly through the radial slot, such that rotation of the knob induces a rotation of the hub via contact of the post with the radial slot. The knob is axially moveable on the hub to selectively disengage the first engagement arrangement from contact with a second engagement arrangement.

Claims (32)

1. A rotary controller selectively-disengageable locking knob assembly, comprising:

a hub having a longitudinal axis and an axial bore extending at least partially through the hub along the longitudinal axis, wherein the axial bore is configured to receive a shaft of the rotary controller arranged in or on a device surface;

the hub including a radial bore extending from an outer surface of the inner hub to the axial bore, wherein the radial bore is perpendicular to the axial bore;

a knob concentrically disposed about at least a portion of the hub, wherein the knob includes:

at least one central bore structured to receive at least a portion of the hub;

a radial slot alignable with the radial bore; and

a circumferential bottom surface having a first engagement arrangement comprising first projections;

a post threadedly engaged with the radial bore so as to secure the hub to the shaft of the rotary controller, and projecting radially outwardly through the radial slot, such that rotation of the knob induces a rotation of the hub via contact of the post with the radial slot;

a base having a first side securely fastenable to the device surface and a circumferential second surface having a second engagement arrangement comprising second projections configured to interact with the first engagement arrangement to prevent relative rotational movement between the base and the knob when the first engagement arrangement is in contact with the second engagement arrangement;

a biasing member arranged within the knob and structured and arranged to bias the first engagement arrangement into contact with the second engagement arrangement,

wherein the knob is axially moveable on the hub to selectively disengage the first engagement arrangement from contact with the second engagement arrangement.

2. The rotary controller selectively-disengageable locking knob assembly of claim 1 , further comprising an adhesive layer structured and arranged to securely fasten the base to the device surface.

3. The rotary controller selectively-disengageable locking knob assembly of claim 1 , further comprising a cap threadedly-engageable with the hub, wherein the cap is structured and arranged to maintain the biasing member within the knob.

4. The rotary controller selectively-disengageable locking knob assembly of claim 3 , wherein the cap is structured and arranged to restrict an extent of an upward movement of the knob away from the base.

5. The rotary controller selectively-disengageable locking knob assembly of claim 1 , wherein the hub includes a circumferential flange structured and arranged to maintain the biasing member within the knob.

6. The rotary controller selectively-disengageable locking knob assembly of claim 5 , wherein the circumferential flange is structured and arranged to restrict an extent of an upward movement of the knob away from the base.

7. The rotary controller selectively-disengageable locking knob assembly of claim 1 , wherein the biasing member comprises a spring.

8. The rotary controller selectively-disengageable locking knob assembly of claim 1 , wherein the radial slot extends in an axial direction of the knob.

9. The rotary controller selectively-disengageable locking knob assembly of claim 1 , wherein the first engagement arrangement and the second engagement arrangement each comprise projecting teeth.

10. The rotary controller selectively-disengageable locking knob assembly of claim 1 , wherein the base and the knob have approximately a same outer diameter.

11. The rotary controller selectively-disengageable locking knob assembly of claim 1 , wherein the hub comprises a cylindrical shape.

12. The rotary controller selectively-disengageable locking knob assembly of claim 1 , wherein the knob comprises one or more of metal, plastics, and composite materials.

13. The rotary controller selectively-disengageable locking knob assembly of claim 1 , wherein the rotary controller is a potentiometer.

14. The rotary controller selectively-disengageable locking knob assembly of claim 1 , wherein the rotary controller is a rotary encoder.

15. A method of releasably locking adjustability of a rotary controller, the method comprising:

attaching the selectively-disengageable locking knob assembly of claim 1 to the rotary controller,

wherein, when attached to the rotary controller, the selectively-disengageable locking knob assembly is operable to prevent rotation of the rotary controller when the first engagement arrangement is engaged with the second engagement arrangement.

16. A rotary controller assembly, comprising:

a rotary controller having the shaft; and

the selectively-disengageable locking knob assembly of claim 1 arranged on the rotary controller.

17. The rotary controller assembly of claim 16 , wherein the rotary controller is a potentiometer.

18. The rotary controller assembly of claim 16 , wherein the rotary controller is a rotary encoder.

Continuity (2)
Continuation 13973393 · Aug 22, 2013
Related Publication 20180074542A1 · Mar 15, 2018
Cited By (2)
US 1,087,927 US 1,105,008