Connecting assembly for an end of a coaxial cable and method of connecting a coaxial cable to a connector
View Patent ↗A connecting assembly for an end of a coaxial cable and having a first element, that is turned around a first axis in a first rotational direction to progressively tighten the first element to a connector, and a housing. The connecting assembly further has: a) an axially elongated first groove in one component; and b) an axially elongated first finger on a second component that resides within the first groove with the connecting assembly in a first state. With the connecting assembly in the first state, turning of the housing in the first rotational direction causes the first finger to cause driving of the first element with a torque up to a predetermined torque. Continued turning of the housing with a torque exceeding the predetermined torque causes reconfiguration of the connecting assembly in a manner whereby the first finger moves circumferentially out of the first groove.
1. A connecting assembly for an end of a coaxial cable, the connecting assembly comprising:
a first element that is turned around a first axis in a first rotational direction to progressively tighten the first element to a connector;
a housing having an exposed surface that can be engaged by a user and turned around the first axis; and
the connecting assembly further comprising: a) an axially elongated first groove in one component; and b) an axially elongated first finger on a second component that resides within the first groove with the connecting assembly in a first state,
with the connecting assembly in the first state, turning of the housing in the first rotational direction causes the first finger to cause driving of the first element in the first rotational direction with a torque up to a predetermined torque,
whereupon continued turning of the housing in the first rotational direction with a torque exceeding the predetermined torque causes reconfiguration of the connecting assembly in a manner whereby: i) the first finger moves circumferentially out of the first groove; and ii) the housing moves in the first rotational direction a first circumferential distance without causing movement of the first element a corresponding first circumferential distance,
wherein the first finger is reconfigured by being deformed primarily by radial material compression to allow the first finger to move circumferentially out of the first groove with the connecting assembly in the first state and a torque applied to the housing that exceeds the predetermined torque.
2. The connecting assembly for an end of a coaxial cable according to claim 1 wherein the first element has threads extending around the first axis.
3. The connecting assembly for an end of a coaxial cable according to claim 1 wherein the first element comprises a threaded body with an axial extent and the first groove and first finger co-extend and interact over a majority of the axial extent of the body on the first element.
4. The connecting assembly for an end of a coaxial cable according to claim 1 wherein the first groove is on one of the first element and housing and the first finger is on the other of the first element and housing.
5. The connecting assembly for an end of a coaxial cable according to claim 1 wherein the connecting assembly further comprises: a) an axially elongated second groove in the one component; and b) an axially elongated second finger on the second component that resides within the second groove with the connecting assembly in the first state and the first finger residing within the first groove, the second finger and second groove cooperating in a manner substantially the same as the first finger cooperates with the first groove.
6. The connecting assembly for an end of a coaxial cable according to claim 4 wherein the housing has an axially opening receptacle within which the first element can be axially press fit to place the housing and first element in assembled relationship.
7. The connecting assembly for an end of a coaxial cable according to claim 4 wherein at least part of the exposed surface and one of the first finger and first groove is formed as one piece.
8. The connecting assembly for an end of a coaxial cable according to claim 7 wherein the one piece is formed by a molding process.
9. The connecting assembly for an end of a coaxial cable according to claim 1 wherein the first finger is on the housing and the housing comprises a body with a portion defining the first finger that is one of: a) press fit to the body; and b) co-molded with the body.
10. The connecting assembly for an end of a coaxial cable according to claim 1 wherein the exposed surface of the housing is contoured to facilitate hand grasping and turning of the housing by a user around the first axis.
11. The connecting assembly for an end of a coaxial cable according to claim 1 wherein the first finger has a circumferential surface that is one of: a) convexly curved; and b) defined by separate flat surfaces meeting at an axially extending apex line.
12. The connecting assembly for an end of a coaxial cable according to claim 1 in combination with a coaxial cable that is mechanically and electrically coupled to the connecting assembly.
13. The connecting assembly for an end of a coaxial cable according to claim 12 in combination with a connector to which the coaxial cable is mechanically and electrically coupled through the connecting assembly.
14. A connecting assembly for a coaxial cable, the connecting assembly comprising:
a threaded element having a first axis for rotation in a first direction, the threaded element comprising:
an internal passageway having internal threads; and
an outer surface having a first groove bounded by a surface; and
a housing having a first surface configured to be engaged by a user for rotation about the first axis, the housing having a housing internal passageway, the housing internal passageway at one end having an axial engagement portion for engaging the first groove,
whereby turning the housing in the first direction causes the axial engagement portion to engage the first groove to cause the threaded element to move in the first direction with a predetermined torque, whereupon continued turning of the housing in the first direction with a torque exceeding the predetermined torque causes the axial engagement portion to rotatably move out of the first groove,
wherein at least one of the surface bounding the groove and the axial engagement portion is reconfigured by being deformed primarily by radial material compression to allow the axial engagement portion to rotatably move out of the first groove as an incident of the housing being turned with a torque exceeding the predetermined torque.