Mounting System For Pivotal Coupling Of A Tuner To An Instrument
Disclosed herein are embodiments of a mounting system for pivotal coupling to an instrument, the mounting system including a tuner, a ball element outwardly extending from the tuner, and a socket element having a wall defining a socket in communication with a wall opening; whereby the socket is configured to pivotally receive at least a portion of the ball element via the wall opening to pivotally couple the ball element to the socket element.
1 . A mounting system for pivotal coupling of a tuner to an instrument, comprising:
said tuner;
a ball element outwardly extending from said tuner;
a rod which couples said ball element to said tuner in spaced apart relation;
a mount;
a socket element coupled to said mount, said socket element defining a socket; and
a first slot disposed in said socket element to provide a pivot plane along a longitudinal axis of said mount, said first slot communicating with said socket;
wherein upon reception of said ball element within said socket, said tuner is able to pivot to a first end position in which said rod passes through said first slot.
2 . The mounting system of claim 1 , wherein said ball element has a generally spherical shape.
3 . The mounting system of claim 2 , wherein said socket has a generally spherical shape.
4 . The mounting system of claim 1 , wherein said ball element and said tuner are formed as a one-piece construct.
5 . The mounting system of claim 1 , wherein upon receipt of said ball element within said socket, said tuner is able to rotate about 360° about a rotation axis which runs through said ball element and said tuner.
6 . The mounting system of claim 5 , wherein upon receipt of said ball element within said socket, said tuner is able to pivot about 90° between a medial position, in which said rod passes through a top portion of said socket element, and said first end position, in which said rod passes through said first slot.
7 . The mounting system of claim 6 , further comprising a second slot disposed in said socket element, said second slot communicating with said socket.
8 . The mounting system of claim 7 , wherein upon receipt of said ball element within said socket, said tuner is able to pivot about 90° between said medial position and a second end position, in which said rod passes through said second slot.
9 . The mounting system of claim 8 , wherein upon receipt of said ball element within said socket, said tuner is able to pivot about 180° between said first end position and said second end position.
10 . The mounting system of claim 1 , wherein a back face of said mount is configured to couple to said instrument.
11 . The mounting system of claim 10 , wherein said back face of said mount is configured to removably couple to said instrument.
12 . The mounting system of claim 11 , further comprising a removable adhesive layer coupled to said back face of said mount.
13 . The mounting system of claim 12 , further comprising a clip coupled to said back face of said mount.
14 . The mounting system of claim 1 , wherein said mount is configured as a clip having pivotally connected opposing first and second jaws.
15 . The mounting system of claim 14 , wherein said mount further comprises a cushioning element coupled to an inner surface of each of said first and second jaws.
16 . The mounting system of claim 1 , wherein said socket element is integrated with said instrument.
17 . The mounting system of claim 1 , wherein said ball element outwardly extends from said tuner along a longitudinal axis of said tuner.
18 . The mounting system of claim 1 , wherein said mount and said socket are formed as a one-piece construct.
19 . The mounting system of claim 1 , wherein when said tuner is in said first end position, said tuner overlays said mount.
20 . The mounting system of claim 19 , wherein when said tuner is in said first end position, said tuner overlays a front face of said mount.