The present invention relates to an anti-attenuation apparatus, especially to one having a securing assembly for securing a male connector onto a predetermined electronic device.
Nowadays, in order to connect a cable with a circuit board, the cable has to be connected to a cable end connector, then the cable end connector can be inserted into a socket pre-soldered onto a circuit board of a device. The said socket is then called board end connector. Usually, the board end connector is a female-type connector and the cable end connector is a male-type connector.
In detail, the board end connector has a plurality of terminals, an end of each of the terminals is soldered onto the copper pad of the circuit board respectively and the other end of each of the terminals is connected to a terminal of the cable end connector respectively, so as to allow the cable end connector to be connected to the circuit board.
However, for some reasons, for example, terminals are not tightly connected, every junction suffers a certain level of signal strength loss, the said signal strength loss phenomenon is called “attenuation”, which is unfavorable to signal transmission. In the foreseeable future, with the development of 5G communications, artificial intelligence, edge computing, and Internet of things devices, the increase of signal frequency and transmission volume makes the said matter of attenuation worse. The attenuation caused by transmission affects the signal quality more and more significantly.
To overcome the shortcomings, the present invention provides an anti-attenuation apparatus to mitigate or obviate the aforementioned problems.
The main objective of the present invention is to provide an anti-attenuation apparatus that requires no board end connector so to improve the attenuation problem in signal transmission by decreasing junctions between the cable and the circuit board. More specifically, the present invention discloses a securing assembly that is utilized to secure a male connector onto a circuit board directly, by omitting board end connector that pre-soldered onto a circuit board, resulting in less junctions, and therefore attenuation can be decreased accordingly.
The omission of the board end connector can be achieved by utilizing a male connector and a securing assembly pre-soldered onto a circuit board. The connector comprises a plurality of elastic terminals, each of the elastic terminals has an independent or common guiding unit connected at a front end thereof. When the male connector is plugged into the securing assembly, the guiding unit will be pressed downward toward the circuit board and the elastic terminal will be bent and be pressed onto the connecting pad of the circuit board. Accordingly, by omitting the conventional board end connector, an amount of junctions between cable and the circuit board can be decreased, which solves the attenuation problem so as to ensure the stability of high-frequency signal transmission.
Other objectives, advantages and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
With reference to
Please refer to both
In the present embodiment, the securing assembly 12 is mounted on the circuit board 11 and defines an inserting space therebetween for allowing the male connector 20 to be plugged therein via a front entrance and accommodating the male connector 20 therein. A reference surface S is defined as a virtual surface of an external component. The external component is defined as any component and is capable of contacting and electrically connected with the male connector 20, but the external component is not a board end connector or any elements (for example, terminals) within thereof. In the present embodiment, the external component is the circuit board 11. The securing assembly 12 comprises a base 121, a shield 122, a cover 123 and a plurality of shafts for connecting the base 121 and the cover 123.
The shield 122 having a plurality of connective legs 1221 for grounding, each of the connective legs 1221 extends downward and toward the circuit board 11. In the present embodiment, the connective legs 1221 are utilized to be inserted into and penetrates through the through hole 111 of the circuit board 11 and electrically connected and securely mounted thereto. Therefore, the shield 122 can be grounded via the connective legs 1221 with the circuit board 11. Moreover, the shield 122 can be formed of a one-piece formed sheet metal as depicted in
In this embodiment, the shield 122 has at least one engagement recess 1220 formed on various lateral surfaces thereof, each of the various lateral surfaces of the shield 122 facing various directions. As depicted by
Please refer to
The base 121 has an abutting portion 121A being extended along a plugging direction D toward the front entrance defined by the shield 122, the abutting portion 121A has an inclined surface, at least part of the inclined surface facing downward toward the circuit board 11 as depicted in
As depicted by
The casing 221 comprises two longer side surfaces (upper surface and bottom surface) and two shorter side surfaces (lateral surfaces) connected to each other. As depicted in
As depicted in the
As depicted in
The guiding unit 223 is connected with the front end of the plurality of elastic terminals 222, the guiding unit 223 having an inclined surface, at least part of the inclined surface facing upward. In this embodiment, the front end of each of the elastic terminals 222 are secured with a shared guiding unit 223 and thereby all the elastic terminal 222 are connected and sharing force. Besides, such structure makes displacement of the elastic terminals 222 the same when the elastic terminals 222 are bent. In this embodiment, the guiding unit 223 and the elastic terminal 222 are two different elements, however, by bending the elastic terminal 222 into a certain shape to has the said incline surface, the end portion of the elastic terminal 222 can also function as the guiding unit 223, or say, the elastic terminal 222 can be one piece formed with guiding unit 223, Moreover, by a bridge liked structure connecting every end of the elastic terminal 222, the displacement of the elastic terminals 222 can also be maintained the same when the elastic terminals 222 are bent.
The protecting frame 224 is fixed inside the casing 221, the protecting frame 224 has a plurality of securing hooks 224A formed on two lateral surfaces thereof. Each of the securing hooks 224A is utilized to be buckled into the lateral notches 2211B of the casing 221 respectively. Moreover, an upper surface of the protecting frame 224 has a top groove 224B. At least part of the top notch 2211A is aligned with the top groove 224B for forming a common hole and allowing the first engaging portion 1231 of the cover 123 to penetrate therethrough so as to secure the cover 123 with casing 221 and the protecting frame 224. The protecting frame 224 encloses part of the elastic terminal 222 and the guiding unit 223, which prevents the elastic terminal 222 from over-bent and be damaged under unexpected force. Moreover, the protecting frame 224 is a frame-shaped hollow structure (or say a rectangular ring-shaped structure) for allowing the elastic terminals 222 to pass therethrough for contacting with the circuit board 11 via the bottom opening 221C of the casing 221. The protecting frame 224 has at least one first cable hole 224E formed on a lateral surface thereof, each of the first cable hole 224E is a closed-hole and the cable 210 passes through the first cable hole 224E to connect with the rear end of the elastic terminal 222.
The cable stand 225 has a second cable hole 225A, the second cable hole 225A is a closed-hole allowing the cable 210 to pass therethrough, the rear end of the elastic terminal 222 is clipped and secured between the cable stand 225 and the pressing plate 226. The cable stand 225, the elastic terminal 222, and the pressing plate 22, as a whole, are secured into an accommodating cavity 224C formed at an inner surface of the protecting frame 224 as depicted by
After assembly of male connector 20 is completed as depicted by
Before assembling the male connector 20 with the electronic device 10, the cover 123 of the securing assembly 12 of the electronic device 10 should be lift opened as shown in
Then, the cover 123 is rotated downward and be engaged with the inserting connector 22 as shown in
Consequently, the anti-attenuation apparatus in accordance with the present invention is an electronic device 10 for being inserted and the other one is a male connector 20 for inserting. As a result, the electronic device 10 and the male connector 20 in accordance with the present invention can be assembled as a set of anti-attenuation apparatus.
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 features of the invention, the disclosure is illustrative only. Changes may be made in the details, 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.
Number | Date | Country | Kind |
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109125786 | Jul 2020 | TW | national |