The invention relates to a network jack and processing method for the same, and more particularly to a Keystone jack and processing method for the same.
In a typical Keystone jack for network communication, a supporting portion is normally arranged therein for supporting contacting pins (i.e. gold-plated pins). The supporting portion can be simply classified into two types, one of which provides a resilient force to contacting pins, and the other of which does not provide such resilient force. As for the supporting portion providing the resilient force to contacting pins, it is normally made of the material with strong resiliency.
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Therefore, to overcome the drawbacks from the above complicated method for processing the conventional contacting pins with various bending or curving portions and adding side skirts on the contacting pins, the Applicant dedicated in considerable experimentation and research, and finally accomplishes the “network jack and processing method for the same” of the present invention, which overcomes the above drawbacks regarding the inconvenience in processing the conventional contacting pins and adding the side skirts.
Therefore, the invention is intended to solve the following problems:
The invention is briefly described as follows.
In accordance with one aspect of the present invention, a network jack connecting a device to a network is provided. The network jack comprises a jack body, a printed circuit board configured inside the jack body, and a contacting pin comprising a transmitting portion having a straight configuration and a fixing portion fixed to the printed circuit board.
Preferably, the contacting pin further comprises a plug contacting portion electrically connected to a network plug, the jack body has an outward face, and the printed circuit board is configured substantially parallel to the outward face.
Preferably, the contacting pin further comprises a bent end located opposite to the fixing portion and facilitating the network plug being inserted into the network jack.
Preferably, the network jack further comprises a supporting portion including a protrusion having an elongated face holding the plug contacting portion.
Preferably, the supporting portion has a substantially S-shaped configuration with a top to be pressed downward when the network plug is inserted into the network jack.
Preferably, the top of the supporting portion moves upward to restore the substantially S-shaped configuration when the network plug is removed.
Preferably, the supporting portion has a substantially Z-shaped configuration with a top to be pressed downward when the network plug is inserted into the network jack.
Preferably, the jack body has an elongated wall and the supporting portion has a recess accommodating the elongated wall.
Preferably, the supporting portion has a lateral sliding portion for sliding into the jack body and has a base and a rib strengthening the base.
Preferably, the jack body has a recess accommodating the contacting pin including a plug contacting portion electrically connected to a network plug, a first bending portion connecting the transmitting portion and the plug contacting portion, and a second bending portion located opposite to the fixing portion and facilitating the network plug being inserted into the network jack.
Preferably, the recess of the network jack has two lateral walls fixing the contacting pin.
Preferably, the transmitting portion has a length substantially ranged between 54˜63% of a total length of the contacting pin, and the fixing portion is riveted into the printed circuit board.
Preferably, the transmitting portion has a length ranged between 57˜63% of a total length of the contacting pin.
In accordance with the second aspect of the present invention, a network jack is provided. The network jack includes a jack body, a printed circuit board configured inside the jack body, and a conductor fixed to the printed circuit board and including a transmitting portion having a straight configuration.
Preferably, the network jack is configured to connect a device to a network, wherein the conductor is a contacting pin made of a metal.
Preferably, the conductor further includes a fixing portion fixed to the printed circuit board.
In accordance with further aspect of the present invention, a processing method for a network jack is provided. In the processing method, the network jack includes a printed circuit board and a jack body. The method includes the steps of providing a contact having a transmitting portion with a straight configuration and configured inside the jack body, and assembling the printed circuited board with the jack body.
Preferably, the contact further includes a fixing portion fixed to the printed circuit board and an end portion opposite to the fixing portion. The processing method further includes a step of bending the end portion to facilitate a network plug being inserted into the network jack.
Preferably, the jack body further includes a resilient device therein. The processing method further includes a step of pressing the resilient device to provide an upward resilient force thereon.
Preferably, the processing method further includes a step of supporting the transmitting portion so as to generate a return resilient force therefrom.
Based on the above descriptions for the aspects of the invention, it is able to be understood that the network jack and the processing method thereof of the present invention are implemented by utilizing a contacting pin having a transmitting portion with a straight configuration so that a plurality of contacting pins in a single row are mounted to the printed circuit board and applying a recess having two lateral walls fixing the contacting pin to avoid shifting left- or rightward.
The above aspects and advantages of the present invention will become more readily apparent to those ordinarily skilled in the art after reviewing the following detailed descriptions and accompanying drawings, in which:
The present invention will now be described more specifically with reference to the following embodiments. It is to be noted that the following descriptions of preferred embodiments of this invention are presented herein for the purposes of illustration and description only; it is not intended to be exhaustive or to be limited to the precise form disclosed.
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The contacting pins 33 can be gold-plated pins with round cross-sectional shapes, which are very solid in physical property. The respective contacting pins 33 include a transmitting portion 34 having a straight configuration and a fixing portion 35 fixedly riveted to the printed circuit board 32. Preferably, the respective contacting pins 33 further include a plug contacting portion 331.
Since the universal printed circuit board 32 at present is capable of eliminating crosstalk in signal transmission, there is no need to bend the contacting pins 33. Furthermore, the printed circuit board 32 is arranged with eight pierce terminals 301 and a terminal block 302. Therefore, the transmitting portion 34 in the present invention without bending portions still can work well in signal transmission without significant crosstalk.
Preferably, the transmitting portion 34 has a length substantially ranged between 54˜63% of a total length of the respective contacting pins 33. More preferably, the transmitting portion 34 has a length ranged between 57˜63% of a total length of the respective contacting pins 33. Most preferably, the transmitting portion 34 has a length ranged between 57.89% of a total length of the respective contacting pins 33. For example, the transmitting portion 34 is 20.11 mm in length when the respective contacting pins 33 is 34.74 mm in length.
The jack body 30 of the network jack 30 has an outward face 36, and the printed circuit board 32 is configured substantially parallel to the outward face 36. The jack body 31 has eight recesses 371 accommodating the above eight contacting pins 33. The network jack 30 further includes a supporting portion 38 including a protrusion 39 having an elongated face 391. The supporting portion 38 has seven recesses 392. In addition, the supporting portion 38 has a lateral sliding portion 395 for sliding into the jack body 31 and has two ribs 396 strengthening a base 397 of the supporting portion 38.
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According to another aspect of the present invention, a network jack 30 is provided. The network jack 30 includes a jack body 31, a printed circuit board 32 configured inside the jack body, a conductor fixed to the printed circuit board 32, in which the conductor has a transmitting portion 34 having a straight configuration. The conductor may be, but is not limited to, contacting pins 33 made of a metal, such as a gold-plated pin, and can further includes a fixing portion 35 fixed to the printed circuit board 32. Certainly, such jack can connect a device to a network.
According to further aspect of the present invention, a processing method for a network jack 30 is provided. In this method, the network jack 30 includes a printed circuit board 32 and a jack body 31. The method includes the steps of providing a contact (such as eight contacting pins 33) having a transmitting portion 34 with a straight configuration and configured inside the jack body, and assembling the printed circuited board 32 with the jack body 31. Preferably, the contact further includes a fixing portion 35 fixed to the printed circuit board and an end portion 44 opposite to the fixing portion 35.
The processing method further includes a step of bending the end portion 44 to facilitate a network plug 51 being inserted into the network jack 30.
Preferably, the jack body 31 further includes a resilient device, such as the above supporting portion 38 therein. The processing method further includes a step of pressing the resilient device to provide an upward resilient force thereon. Preferably, the processing method further includes a step of supporting the transmitting portion 34 so as to generate a return resilient force therefrom.
In conclusion, based on the novel design of the present invention, the network jack and the processing method thereof of the present invention are implemented by utilizing a contacting pin having a transmitting portion with a straight configuration so that a plurality of contacting pins in a single row are mounted to the printed circuit board and applying a recess having two lateral walls fixing to the contacting pin so that the contacting pins are prevented from shifting left- or rightward.
Based on the above descriptions, it is understood that the present invention is indeed an industrially applicable, novel and non-obvious one with values in industrial development. While the invention has been described in terms of what are presently considered to be the most practical and preferred embodiments, it is to be understood that the invention should not be limited to the disclosed embodiment. On the contrary, it is intended to cover numerous modifications and variations included within the spirit and scope of the appended claims which are to be accorded with the broadest interpretation so as to encompass all such modifications and variations. Therefore, the above description and illustration should not be taken as limiting the scope of the present invention which is defined by the appended claims.
Number | Date | Country | Kind |
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097131655 | Aug 2008 | TW | national |