Field of Invention
The present invention relates to improvements in contacts of an IC socket having a no-load detachable mechanism.
Background of Invention
Since a conventional integrated circuit (IC) socket having a no-load detachable mechanism has a less danger of lead damage or bending, e.g., having a zero insertion force (ZIF) feature, when an IC is connected to and disconnected from the IC socket, the integrated circuit can be easily connected to and disconnected from the IC socket. As a result, the conventional no-load IC socket has been used in the field of the associated equipment highly satisfactorily. This type of IC socket, however, has the defect that the IC socket often provided poor contact to the IC leads because connection and disconnection between the IC leads and associated contacts are carried out structurally within a very small distance.
Summary of the Invention
The present invention provides an IC socket which removes the above defect and which enables the highly smooth mounting and removal of an IC on and from the IC socket without causing poor contact even for frequent mounting and removing operations.
The present IC socket having a no-load detachable mechansm, comprises a substrate having a plurality of contact embedding holes arranged in a row which correspond in number to the number of IC leads, a laterally moveable plate mounted on the substrate which slides laterally over the embedding holes through the operation of a handle provided at a portion of the substrate. The moveable plate is formed with a plurality of insert holes at positions corresponding to the embedding holes, and a plurality of contacts are mounted within the contact embedding holes. Each contact has a leg portion extending outwardly from the substrate, a pair of opposing rectangular tongue pieces integrally formed with said leg portion, and abutment portions formed by bending inwardly tip ends of the tongue pieces by an angle more than 90 degrees so that said tip ends come into contact with each other. The side ends of the abutment portions are respectively formed with a sloped angle and a bevel angle so that said side ends come into smooth contact with a corresponding one of said IC leads. In other words, the sloped angle is formed by a vertically running "V"-shaped face, whereas the top portion of the "V"-shaped face has horizontally running bevels.
Brief Description of the Drawings
These and other features of the present invention will be better understood in connection with the Detailed Description taken in conjunction with the drawings of which:
FIG. 1 is a diagrammatic view of the substrate and moveable plate of the subject invention;
FIG. 2 is a diagrammatic illustration of a portion of the contacts for use in the apparatus of FIG. 1;
FIG. 3A and FIG. 3B are respectively diagrammatic and top illustrations of prior art contact showing lateral movement of a lead into the contact; and
FIG. 4A and FIG. 4B are respectively diagrammatic and top views of the subject contact.
Detailed Description
The present invention will be explained with reference to the drawings. There is shown in FIG. 1 an IC socket which comprises a plastic substrate 13 formed therein with rows of contact embedding holes 11.sub.1, 11.sub.2 . . . 11.sub.n and 12.sub.1, 12.sub.2 . . . 12.sub.n corresponding in number to IC leads, a moveable plate 19 having projections 16.sub.1 and 16.sub.2 to be inserted into a pair of through-holes 15.sub.1 and 15.sub.2 made in the substrate 13 when engagedly mounted on the substrate, said plate being slidable on the substrate along array lines 17 and 18 of the embedding holes 11.sub.1, 11.sub.2 . . . 11.sub.n and 12.sub.1, 12.sub.2 . . . 12.sub.n through the turning operation of a handle 14 rotatable provided at a portion of the substrate, said moveable plate being provided with a plurality of insert holes 20.sub.1, 20.sub.2 . . . 20.sub.n and 21.sub.1, 21.sub.2 . . . 21.sub.n at positions corresponding to the contact embedding holes 11.sub.1, 11.sub.2 . . . 11.sub.n and 12.sub.1, 12.sub.2 . . . 12.sub.n in alignment with the array lines, and a plurality of contacts (not shown in this figure) mounted within the contact embedding holes 11.sub.1, 11.sub.2 . . . 11.sub.n and 12.sub.1, 12.sub.2 . . . 12.sub.n. Such contacts 24.sub.1, 24.sub.2 . . . , as shown as partly enlarged in FIG. 2, are mounted within respective holes 23.sub.1, 23.sub.2 . . . arranged in a row on a substrate 22 which is an enlarged portion of substrate 13, and comprise respective leg portions 25.sub.1, 25.sub.2 . . . extending outwardly from the substrate 22.
A prior art contact 33, as shown in FIG. 3, is made by punching a resilient metallic plate and comprises opposing rectangular tongue piece 31.sub.1 and 31.sub.2 and leg portion 32.
The tongue pieces 31.sub.1 and 31.sub.2 are formed at their upper portions with inwardly directed portions 34.sub.1 and 34.sub.2 raised by a pressing process, and the raised portions are positioned so that the faces of the raised portions come into contact with each other.
With such a contact 33, an IC lead 35 is moved in the direction illustrated by arrow 36 by a movement of the moveable plate forcing the lead into the gap between the opposing raised portions 34.sub.1 and 34.sub.2 such that contact is established with the lead.
During movement of the IC lead, however, the contact pressure of the raised portion often causes the deformation of the lead, resulting in a poor contact between the IC lead and raised portions. The major reason is due to the fact that it is difficult to provide the raised portions 34.sub.1 and 34.sub.2 at or close to the tops of the rectangular tongue pieces 31.sub.1 and 32.sub.2 from the viewpoint of its manufacturing technique and thus the raised portions are provided nearly in the middle of the tongue pieces.
Thus, the IC lead does not come into contact with the contact at the base portion of the IC lead, but rather it is the tip of the lead which comes into contact with the raised portions of the contact, whereby a slight deformaton of the lead often causes the shift of the contact position, applying an unnecessary force to the lead and causing the poor contact. In addition, due to contact area considerations, the contact disadvantageously cannot provide the sufficient and positive contact pressure.
On the other hand according to the present invention, a contact 41, as shown in FIG. 4, is provided which includes a leg portion 42 extending outwardly from the substrate, a pair of opposing rectangular tongue pieces 43.sub.1 and 43.sub.2 provided integrally with the leg portion, and abutment portions 44.sub.1 and 44.sub.2 formed by bending inwardly the tip end portions of the tongues by an angle more than 90 degrees and preferably in the range of 100 to 140 degrees so that the tip end portions come into contact with each other close to the top of the contact; and side ends 45.sub.1 and 45.sub.2 of the abutment portions 44.sub.1 and 44.sub.2 are respectively formed with a sloped angle and a bevel angle so that the side ends come into smooth contact with an IC lead 46.
With the contact of such a structure, since the IC lead meets the contact at its base portion, lead deformation will not be caused and the abutment portions 44.sub.1 and 44.sub.2 hold the lead at their tip ends in a linear contact relation therebetween, whereby the contact pressure per unit area can be increased and thus the contact advantageously can secure the sufficient contact by a highly smooth operation.
Having above indicated a preferred embodiment of the present invention, it will occur to those skilled in the art that modifications and alternatives can be practiced within the spirit of the invention. It is accordingly intended to define the scope of the invention only as indicated in the following claims.