(a) Field of the Invention
The present invention relates to a terminal block, and particularly to a fastener for a separate male terminal block.
(b) Description of the Prior Art
Referring to
Whereas the clips 20 are implanted into bearing holes 101 from a front surface of the male terminal block 10, which is in the same direction as drawing force produced by the screws 301. The clips 20 are retained only by friction with the bearing holes 101. Therefore, when the screws 301 are pulled backward due to inappropriate force, (for instance, the female terminal block 30 is pulled reverse to the male terminal block 10, or the female terminal block 30 is forced to disengage from the male terminal block 10 as the screws 301 still engage with the clips 20), the clips 20 are brought by the screws 301 off the bearing holes 101, thus destroying electrical connection between the male terminal block 10 and the female terminal block 30.
An object of the present invention is to provide a fastener for separate male terminal block which retains electrical connection between the male terminal block and the female terminal block.
Another object of the present invention is to provide a male terminal block which prevents clips against taking off when a female terminal block mated thereto suffers from inappropriate force.
The male terminal block is integrally shaped by plastic injection and defines an elongated slot in a center of a front surface thereof for mating with a female terminal block. A plurality of conductive terminals is implanted in the slot. The fastener for separate male terminal block in accordance with the present invention comprises through holes in a front surface of the male terminal block and at both sides of the slot. Each through hole has a bearing hole with relatively larger diameter and at a bottom thereof. Each bearing hole receives a clip with a screw hole. The clips settle in the bottom of the bearing holes.
Referring to
The male terminal block 1 defines through holes 13 in a front surface thereof and at both sides of the slot 11. Each through hole 13 has a bearing hole 14 with relatively larger diameter and at a bottom thereof. Each bearing hole 14 receives a clip 3 therein, where the clip 3 settles in the bottom of the bearing hole 14. The clips 3 abut against inner surfaces of the bearing holes 14. Each clip 3 defines a screw hole (not labeled) in a center thereof.
When screws 21 on both sides of the female terminal block 2 extend through the through holes 13 and are retained on the clips 3, as shown in
The clips 3 effectively retain the screws 21, avoiding disengagement of the female terminal block 2 from the male terminal block 1. The clips 3 are not confined in shape, for example, the clips 3 may be columniform, as shown in
The clips 3 of the present invention are implanted to the bearing holes 14 from a bottom surface of the male terminal block 1. The force suffered by the clips 3 is located at sides of through holes 13. In the case that the female terminal block 2 is forced to depart from the male terminal block 1 while the screws 21 still engage with the clips 3, the clips 3 have retention force to prevent from disengagement.
It is understood that the invention may be embodied in other forms without departing from the spirit thereof. Thus, the present examples and embodiments are to be considered in all respects as illustrative and not restrictive, and the invention is not to be limited to the details given herein.