1. Field of the Invention
The present invention generally relates to a cable connector assembly, and more particularly to a cable connector assembly used for high speed transmission.
2. Description of Related Art
A cable connector assembly usually includes a cable including some discrete wires arranged in a side-by-side manner with relative high-density and at least an electrical connector connecting with the wires. The cable connector assembly generally comprises a spacer/cable holder/cable organizer for holding cables/wires to make it easy to trim and connect cables/wires to the electrical connecter. U.S. Pat. No. 6,203,376 B1 discloses a cable wafer connector with an integrated strain relief. The strain relief includes a cable clamp having a series of grooves that are separated by intervening land portions. The grooves receive a plurality of cables and space them in a particular spacing. The leads of the cables are terminated to corresponding tail portions. U.S. Pat. No. 6,939,165 B1 discloses a cable holder that can reliably hold plural different types of cables together in an array in side-by-side parallel relationship and includes a pair of hermaphroditic half receiving chambers. The half receiving chambers are separated from each other by interventing land portions. U.S. Pat. No. 5,992,802 discloses a support for a plurality of parallel rows coaxial cables made up of pairs of molded blocks stacked on a single threaded rod. The blocks of each pair are identical, and have semi-circular cylindrical recesses which cooperate to provide circular, cable-gripping passages. The threaded rod extends in orthogonal relationship to the axes of the cable-gripping passages, through another passage located between two of the circular, cable-gripping passages.
In recent years, as high-density, high-speed backplane cable connector assembly is widely used in network, server and storage applications for high-speed data process. Generally, in high-speed transmission, the signal is transmitted by plural differential pairs with each differential pair containing two wires and it may cause miss-wiring if the pair is in the wrong direction, so a wire spacer is needed to hold and orient the plural wires. However, the cable holders mentioned foregoing are all made from two parts/halves with plural cavities formed between the parts/halves to receive one row cables therebetween, some problems may occur. Firstly, since the cable holder is a two-half structure, one half must be assembled to the other half after the cables assembled to the other half. However, there isn't any means to position the cables relative to the other half, thus, when one half assembled, the cables are prone to shift to the two halves. Secondly, the two-half structure is relatively complex in manufacture and costly in manufacture cost. These two shortcomings are not glad to be seen by the manufacturers and customers.
Hence, a cable connector assembly with an improved wire spacer is highly desired to overcome the disadvantages of the related art.
Accordingly, an object of the present invention is to provide a cable connector assembly having a wire spacer for fixing and orienting wires and making them easy to be trimmed and connected to a circuit substrate or contacts.
In order to achieve the object set forth, a cable connector assembly in accordance with the present invention comprises an insulative housing, a plurality of contacts received in the insulative housing, a plurality of wires electrically connecting with the contacts, at least a wire spacer defining a plurality of wire receiving cavities along a first direction respectively receiving the wires and at least a window in top surface communicating with the wire receiving cavities, and securing means arranged into the window securely positioning the wires within the wire receiving cavities.
Other objects, advantages and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
Reference will now be made in detail to the preferred embodiment of the present invention.
Referring to
Referring to
The reinforcing member 301/302 is die casted from metal material or other conductive material and consists of a first half 301 and a second half 302 combinable with the first half 301 with the circuit substrate 20 sandwiched therebetween by a pair of screws 303. The second half 302 is wider than the first half 301 along front-to-back direction and comprises a front portion 3020, a rear portion 3021 with a width equal to that of the first half 301 and a depression 3025 defined between the front and the rear portions 3020, 3021. When the contacts 102 are soldered to the circuit substrate 20, the tail portions of contacts 102 and the soldering dots will be received in the depression 3025 to prevent shirt circuit. The first half 301 and the rear portion 3021 of the second portion 302 respectively define a pair of screw holes 3012 aligning with the pair of first positioning holes 201 for permitting the screws 303 passing therethrough. The rear portion 3021 forms a pair of positioning posts 3023 protruding upwardly therefrom and in alignment with the second positioning holes 202. The first half 301 defines a pair of receiving grooves 3013 for receiving the positioning posts 3023 of the second half 302. Both the first half 301 and the rear portion 3021 of the second half 302 comprise three fixing protrusions 3016 spaced arranged on outer surfaces thereof. Since the circuit substrate 20 is constrained by the first and the second halves 301, 302 assembled thereto, when the first electrical connector 1 is mated/unmated with/from the complementary connector, the circuit substrate 20 is unlikely to be shifted by force exerted on the first cable connector 1 during mating/unmating, that is, the connecting module 10 is more reliable relative to conventional backplane connector.
Referring to
When the wires are aligned only in a row, the first/second holding half serves as the wire spacer. Firstly, each wire 31 (
In the embodiment of the present invention, the wires 31 aligned in upper and lower rows are received in the cavities 510 of the first holding and the second holding halves 5a, 5b. Each wire 31 received in the cavity 510 of the first holding half 5a respectively aligned with the wire 31 received in the cavity 510 of the second holding half 5b form a differential pair and a plurality of differential pairs aligned in a row along the second direction. The first holding half 5a is combined with the second holding half 5b to serve as the wire spacer 5. Thus, the differential pairs of the wires 31 are respectively correctly oriented and positioned. Firstly, the first holding half 5a is assembled to the second holding half 5b with the posts 551 aligning with the circular recesses 552, and the first and the second halves 5a, 5b are stayed together stably by the interference between the posts 551 and the circular recesses 552. Secondly, the wires 31 are put into the wire receiving cavities 510 of the first holding half 5a and the second holding half 5b respectively with each wire receiving cavity 510 receiving a wire 31 along the first direction, then glue or other adhesive material is apply to the windows 5 and the wires 31 are securely positioned and oriented within the wire receiving cavities 510, thus, the wire spacer 5 receives two rows of wires 31. Thirdly, a force is exerted to the pair of cutouts 550 to separate the wire spacer 5 into the first holding half 5a and the second holding half 5b, and the wires 31 received in the first holding half 5a and the second holding half 5b are trimmed, respectively. Lastly, the first holding half 5a is assembled to the second holding half 5b again and the wires 31 are connected to the circuit substrate 20.
Referring to
It is to be understood, however, that even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and function of the invention, the disclosure is illustrated only, and changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.
This application is a continuation-in-part (CIP) of U.S. patent application Ser. No. 11/144,114 filed on Jun. 3, 2005, invented by Jerry Wu, entitled “ELECTRICAL ADAPTER WITH REINFORCING MEMBER”, which is assigned to the same assignee as this application.
| Number | Date | Country | |
|---|---|---|---|
| Parent | 11144114 | Jun 2005 | US |
| Child | 11476295 | Jun 2006 | US |