IP Library › Granted Patent US 12,260,847
Granted Patent B2
US 12,260,847 · App. 18/109,849 · Granted Mar 25, 2025

Quick-release guitar tremolo sustain block, and associated assembly and method

Inventors: William Woolery (Waterloo, NY); Joshua Borisoff (Trumansburg, NY)
Assignee: Hipshot Products, Inc.
G10D3/153G10D1/085G10D3/04G10D3/12
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Quick Facts
Patent No.
US 12,260,847
App. No.
18/109,849
Granted
Mar 25, 2025
Kind
B2
Abstract

Embodiments of a quick-release sustain block, and associated guitar tremolo assembly and method, are disclosed. The sustain block extends along a main axis from a distal end to a proximal end. The proximal end is affixable to a bridge plate of the tremolo assembly. Linearly straight string retention bores extend through the sustain block in parallel with the main axis, and have a ball capture segment and a string housing segment. Each ball capture segment is located between the string housing segment and distal end. The string retention bores have a ball detent defined between the ball capture segment and string housing segment. The string retention bores are in communication with a respective string transfer slot laterally thereof. The forward face of the sustain block is configured to be oriented toward a headstock of a guitar when the bridge plate is in pivotable engagement with the guitar.

Claims (92)

1. A sustain block for a guitar tremolo assembly, the sustain block extending along a block main axis from a distal end to a proximal end, the proximal end being configured to be affixed to a bridge plate element of the guitar tremolo assembly, the sustain block having a plurality of string retention bores extending therethrough in parallel with the block main axis, each string retention bore being linearly straight and having a ball capture segment and a string housing segment, the ball capture segment being located between the string housing segment and the distal end, each string retention bore having a ball detent defined between the ball capture segment and the string housing segment, the ball detent being configured to prevent a string ball end from passing from the ball capture segment into the string housing segment, each of the string retention bores being in communication with a respective string transfer slot disposed laterally thereof, the sustain block having a forward face and a rearward face disposed oppositely of one another, the forward face being configured to be oriented toward a headstock of a guitar when the bridge plate element is in pivotable engagement with a plate mounting element of the guitar.

2. The sustain block as defined in claim 1 , wherein each string transfer slot extends through the forward face to the respective string retention bore.

3. The sustain block as defined in claim 2 , wherein the sustain block includes a ball guide face disposed between the proximal end and the forward face, the ball guide face being angularly offset from the forward face by 30 to 60 degrees.

4. The sustain block as defined in claim 3 , wherein the sustain block includes a ball alignment channel disposed at each junction between the forward face, the ball guide face and the string transfer slots.

5. The sustain block as defined in claim 4 , wherein each ball alignment channel is defined by a pair of surfaces angularly offset from the forward face and the ball guide face.

6. The sustain block as defined in claim 1 , wherein each string transfer slot extends through the rearward face to the respective string retention bore.

7. The sustain block as defined in claim 6 , wherein the sustain block includes a ball guide face disposed between the proximal end and the rearward face, the ball guide face being angularly offset from the rearward face by 30 to 60 degrees.

8. The sustain block as defined in claim 7 , wherein the sustain block includes a ball alignment channel disposed at each junction between the rearward face, the ball guide face and the string transfer slots.

9. The sustain block as defined in claim 8 , wherein each ball alignment channel is defined by a pair of surfaces angularly offset from the rearward face and the ball guide face.

10. The sustain block as defined in claim 1 , wherein

(a) the sustain block includes a plurality of ball passthrough bores extending therethrough;

(b) each of the ball passthrough bores is in lateral communication with and extends in parallel with a respective one of the string retention bores; and

(c) the lateral communication is by way of the respective string transfer slot being disposed laterally between the ball passthrough bore and the string retention bore.

11. The sustain block as defined in claim 10 , wherein the ball passthrough bores each have a passthrough bore diameter configured to enable a ball end of a guitar string to pass entirely through the ball passthrough bore.

12. The sustain block as defined in claim 10 , wherein

(a) the sustain block includes a ball transfer slot laterally disposed between each ball passthrough bore and respective ball capture segment;

(b) the ball transfer slot is positioned between the respective string transfer slot and the distal end; and

(c) the ball transfer slot is configured to allow a ball end of a guitar string to pass laterally therethrough from the respective ball passthrough bore to the respective ball capture segment.

13. The sustain block as defined in claim 10 , wherein neither the ball passthrough bores nor the string retention bores are in lateral communication with the forward or rearward faces.

14. The sustain block as defined in claim 1 , wherein

(a) the string transfer slots each have a slot width;

(b) the ball capture segments each have a ball segment diameter; and

(c) the slot width is smaller than the ball segment diameter.

15. The sustain block as defined in claim 14 , wherein the slot width is configured to prevent a ball end of a guitar string from passing through the string transfer slots.

16. A guitar tremolo assembly comprising:

a bridge plate element having a forward portion configured to be placed in pivotable engagement with a plate mounting element of a guitar with the forward portion oriented toward a headstock of the guitar, the bridge plate element being configured to retain a multiplicity of saddle assemblies; and

a sustain block extending along a block main axis from a distal end to a proximal end, the proximal end being configured to be affixed to the bridge plate element, the sustain block having a plurality of string retention bores extending therethrough in parallel with the block main axis, each string retention bore being linearly straight and having a ball capture segment and a string housing segment, the ball capture segment being located between the string housing segment and the distal end, each string retention bore having a ball detent defined between the ball capture segment and the string housing segment, the ball detent being configured to prevent a string ball end from passing from the ball capture segment into the string housing segment, each of the string retention bores being in communication with a respective string transfer slot disposed laterally thereof, the sustain block having a forward face and a rearward face disposed oppositely of one another, the forward face being configured to be oriented toward a headstock of the guitar when the bridge plate element is in the pivotable engagement.

17. The guitar tremolo assembly as defined in claim 16 , wherein each string transfer slot extends through the forward face to the respective string retention bore.

18. The guitar tremolo assembly as defined in claim 17 , wherein the sustain block includes a ball guide face disposed between the proximal end and the forward face, the ball guide face being angularly offset from the forward face by 30 to 60 degrees.

19. The guitar tremolo assembly as defined in claim 18 , wherein the sustain block includes a ball alignment channel disposed at each junction between the forward face, the ball guide face and the string transfer slots.

20. The guitar tremolo assembly as defined in claim 19 , wherein each ball alignment channel is defined by a pair of surfaces angularly offset from the forward face and the ball guide face.

21. The guitar tremolo assembly as defined in claim 16 , wherein each string transfer slot extends through the rearward face to the respective string retention bore.

22. The guitar tremolo assembly as defined in claim 21 , wherein the sustain block includes a ball guide face disposed between the proximal end and the rearward face, the ball guide face being angularly offset from the rearward face by 30 to 60 degrees.

23. The guitar tremolo assembly as defined in claim 22 , wherein the sustain block includes a ball alignment channel disposed at each junction between the rearward face, the ball guide face and the string transfer slots.

24. The guitar tremolo assembly as defined in claim 23 , wherein each ball alignment channel is defined by a pair of surfaces angularly offset from the rearward face and the ball guide face.

25. The guitar tremolo assembly as defined in claim 16 , wherein

(a) the sustain block includes a plurality of ball passthrough bores extending therethrough;

(b) each of the ball passthrough bores is in lateral communication with and extends in parallel with a respective one of the string retention bores; and

(c) the lateral communication is by way of the respective string transfer slot being disposed laterally between the ball passthrough bore and the string retention bore.

26. The guitar tremolo assembly as defined in claim 25 , wherein the ball passthrough bores each have a passthrough bore diameter configured to enable a ball end of a guitar string to pass entirely through the ball passthrough bore.

27. The guitar tremolo assembly as defined in claim 25 , wherein

(a) the sustain block includes a ball transfer slot laterally disposed between each ball passthrough bore and respective ball capture segment;

(b) the ball transfer slot is positioned between the respective string transfer slot and the distal end; and

(c) the ball transfer slot is configured to allow a ball end of a guitar string to pass laterally therethrough from the respective ball passthrough bore to the respective ball capture segment.

28. The guitar tremolo assembly as defined in claim 25 , wherein neither the ball passthrough bores nor the string retention bores are in lateral communication with the forward or rearward faces.

29. The guitar tremolo assembly as defined in claim 16 , wherein

(a) the string transfer slots each have a slot width;

(b) the ball capture segments each have a ball segment diameter; and

(c) the slot width is smaller than the ball segment diameter.

30. The guitar tremolo assembly as defined in claim 29 , wherein the slot width is configured to prevent a ball end of a guitar string from passing through the string transfer slots.

31. A guitar comprising the guitar tremolo assembly of claim 16 .

32. A method of installing a string on a guitar, the method comprising:

providing a guitar having a tremolo assembly, the tremolo assembly including

(i) a bridge plate element having a forward portion in pivotable engagement with a plate mounting element of a guitar with the forward portion oriented toward a headstock of the guitar, the bridge plate element being configured to retain a multiplicity of saddle assemblies; and

(ii) a sustain block extending along a block main axis from a distal end to a proximal end, the proximal end being configured to be affixed to the bridge plate element, the sustain block having a plurality of string retention bores extending therethrough in parallel with the block main axis, each string retention bore being linearly straight and having a ball capture segment and a string housing segment, the ball capture segment being located between the string housing segment and the distal end, each string retention bore having a ball detent defined between the ball capture segment and the string housing segment, the ball detent being configured to prevent a string ball end from passing from the ball capture segment into the string housing segment, each of the string retention bores being in communication with a respective string transfer slot disposed laterally thereof, the sustain block having a forward face and a rearward face disposed oppositely of one another, the forward face being configured to be oriented toward a headstock of the guitar when the bridge plate element is in the pivotable engagement;

inserting a ball end of a guitar string through a saddle string aperture of one of the saddle assemblies;

pushing the ball end through a bridge plate string aperture in the bridge plate element;

after the step of pushing, moving the ball end toward the distal end;

transporting the ball end into the ball capture segment of a respective said string retention bore; and

pulling the ball end into engagement with the ball detent of the respective said string retention bore.

33. The method as defined in claim 32 , wherein

each string transfer slot extends through the forward face to the respective string retention bore; and

the step of moving includes sliding the ball end along the forward face.

34. The method as defined in claim 33 , wherein

the sustain block includes a ball guide face disposed between the proximal end and the forward face, the ball guide face being angularly offset from the forward face by 30 to 60 degrees; and

the method includes, after the step of pushing, guiding the ball end toward the forward face by way of the ball guide face.

35. The method as defined in claim 34 , wherein

the sustain block includes a ball alignment channel disposed at each junction between the forward face, the ball guide face and the string transfer slots; and

the method includes, after the step of guiding, aligning the ball end with the respective string transfer slot way of the ball alignment channel.

36. The method as defined in claim 35 , wherein each ball alignment channel is defined by a pair of surfaces angularly offset from the forward face and the ball guide face.

37. The method as defined in claim 32 , wherein

each string transfer slot extends through the rearward face to the respective string retention bore; and

the step of moving includes sliding the ball end along the rearward face.

38. The method as defined in claim 37 , wherein

the sustain block includes a ball guide face disposed between the proximal end and the rearward face, the ball guide face being angularly offset from the rearward face by 30 to 60 degrees; and

the method includes, after the step of pushing, guiding the ball end toward the rearward face by way of the ball guide face.

39. The method as defined in claim 32 , wherein

the sustain block includes a plurality of ball passthrough bores extending therethrough;

each of the ball passthrough bores is in lateral communication with and extends in parallel with a respective one of the string retention bores;

the lateral communication is by way of the respective string transfer slot being disposed laterally between the ball passthrough bore and the string retention bore; and

the step of moving involves the ball end passing through the respective ball passthrough bore.

40. The method as defined in claim 39 , wherein the step of moving involves passing the ball end entirely through the respective ball passthrough bore.

41. The method as defined in claim 39 , wherein

the sustain block includes a ball transfer slot laterally disposed between each ball passthrough bore and respective ball capture segment;

the ball transfer slot is positioned between the respective string transfer slot and the distal end;

the ball transfer slot is configured to allow a ball end of a guitar string to pass laterally therethrough from the respective ball passthrough bore to the respective ball capture segment; and

the step of transporting involves the ball end passing from the respective ball passthrough bore into the respective ball capture segment by way of the respective ball transfer slot.

42. The method as defined in claim 39 , wherein neither the ball passthrough bores nor the string retention bores are in lateral communication with the forward or rearward faces.

43. The method as defined claim 32 , wherein

(a) the string transfer slots each have a slot width;

(b) the ball capture segments each have a ball segment diameter; and

(c) the slot width is smaller than the ball segment diameter.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 24, 2023
From: BORISOFF, JOSHUA GEOFFREY; WOOLERY, WILLIAM
To: HIPSHOT PRODUCTS, INC.
Reel/Frame 063086/0026 →
Continuity (2)
Provisional Application 63310114 · Feb 15, 2022
Related Publication 20230260484A1 · Aug 17, 2023
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