This application claims the benefit of a Taiwanese patent application, 103205577, filed on Apr. 1, 2014, the specification of which is incorporated here by this reference.
A conventional RF (Radio Frequency) connector is provided to externally connect a radio frequency antenna or signal sources from an electronic device, such as: a notebook computer, flat computer (iPad), portable electronic device, or vehicle multi-media communication devices, to enhance the capability for receiving radio frequency signals.
Such a conventional method for receiving radio frequency signals may mate a terminal in the conventional RF connector with another terminal in a socket fixed in the electronic device for signal transmission or communication through the RF connector in between the externally connected antenna and the electronic device. The contact terminal in the RF connector should be kept in a close contact with the signal terminal in the socket of the electronic device in order to complete a well signal connection therebetween. After a long time use, the contact between the RF connector and the socket in electronic device may however be loosened, weakened, or even disconnected due to the following reasons:
The present inventor has found the drawbacks of a conventional RF connector and invented the present spring-loaded RF connector for an easy assembly and a stable connection.
The object of the present invention is to provide a RF pass-through connector including at least a spring-loaded terminal comprised of a rod member and a sleeve member resiliently telescopically formed in a housing and adapted to be correspondingly connected with a signal terminal formed in a socket and a receptacle cavity in the socket to be electrically connected with a grounding loop formed in a circuit board fixed in an electronic device, whereby upon a connection of the RF pass-through connector with the socket of the electronic device, a reliable, stable and efficient signal communication or transmission may be obtained through the terminals.
As shown in
The spring-loaded terminal 20 includes: a sleeve member 23 and a rod member 24 resiliently telescopically retained in the terminal 20 within the housing 10 to be respectively contacted with a cavity 411 in a socket body 41 to be electrically connected with a grounding path and contacted with a signal terminal 42 in the socket body 41 of a socket 40 mounted on a circuit board formed in (or attached to) an electronic device. The socket body 41 is electrically connected with the grounding path or loop of the circuit board formed in the electronic device for grounding and eliminating noise formed during the signal transmission or communication through the RF connector of the present invention and the socket 40. The socket body 41 is made of metallic materials for a nice grounding.
The RF connector of the present invention may be applied in rugged electronic devices including: industrial computer, flat computer, portable electronic devices, notebook computer, etc. The RF connector may be provided in between the electronic device and a signal source or an antenna; or in between two electronic devices for a quick reliable connection and signal transmission therebetween or for a quick disconnection when needed. So, a nice connection with signal sources, such as: Wi-Fi, GPS, 3G, audio video multi-media, can be effected by the present invention for a reliable and quick signal transmission or communication.
As shown in
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While the embodiment as shown in
Such plural-port connector is connected with the corresponding socket 40 formed in a circuit board of an electronic device. The number of ports, terminals 20 and cables 30 are not limited in the present invention in order to be suitable for rapidly developing systems of multiple signal sources, such as: Wi-Fi, GPS, 3G, 5G, etc.
As shown in
The outer cylinder 21 has a flange 21a partially circumferentially formed on the cylinder 21 to “clamp” or fasten the metal shell 10a and the plastic shall 10b by the aid of the cable fastener 27, thereby firmly combining the metal shell 10a and the plastic shell 10b of the housing 10 as fastened between the fastener 27 and the flange 21a (as dotted line shown in
The outer cylinder 21 has a bottom rim 211a centripetally bent inwardly along the bottom opening 211 for limiting an annular extension 231 circumferentially formed on an inner (or upper) portion of the sleeve member 23 for preventing an outward or downward releasing of the sleeve member 23 from the bottom opening 211 of the outer cylinder 21.
The insulating member 22 includes an annular shoulder portion 222 engageable with an annular seat portion 212 formed in the outer cylinder 21 for limiting an outward or downward releasing of the insulating member 22 from the bottom opening 211 of the outer cylinder 21 (
The rod member 24 includes an annular bottom portion 24a formed on a bottom of a rod portion 241 to be outwardly or downwardly limited by an annular seat portion 221a formed in the sliding cavity 221 of the insulating member 22 for preventing an outward or downward releasing of the rod member 24 from a bottom opening 221b of the insulating member 22.
As shown in
The wire-clamping member 25 includes: a disk portion 251 retained between the insulating member 22 and a stopping member 26 embedded on a limiting shoulder portion 121 in the housing 10, a pin sheath 252 axially formed on a first end of the disk portion 251 to be slidably engaged with the engaging pin 243 of the rod member 24 (
The pin sheath 252 of the wire-clamping member 25 includes a chuck 252a for resiliently clamping the engaging pin 243 of the rod member 25; while the wire sheath 253 is formed with a wire hole 253a for fastening the stripped wire 31 in the wire hole 253a for firmly fastening the signal cable 30.
The stopping member 26 includes a central hole 261 formed through the stopping member 26 for protruding the wire sheath 253 outwardly to be connected with the signal cable 30, and a disk hole 262 communicated with the central hole 261 for engaging the disk portion 251 in the disk hole 262; with the stopping member 26 disposed within the outer cylinder 21 and stably embedded on the shoulder portion 121 in the housing 10.
The cable fastener 27 is plugged in the terminal hole 12 of the housing 10, having a crimping tube 271 for fastening the signal cable 30 therein. The cable fastener 27 and the flange 21a of the outer cylinder 21 will cooperatively fasten the housing 10 therebetween, so that the elements of the present invention will be stably confined, engaged, embedded or packed with one another within the housing 10, the cylinder 21 and the fastener 27, and all the elements will be easily assembled, without the aid of adhesive, to form the RF connector of the present invention for simplifying the assembly, reducing the production cost and preventing environmental pollution (as no adhesive used).
The socket 40 includes: a socket body 41 having a receptacle cavity 411 recessed therein and made of metallic materials, and secured on a circuit board, and electrically connected with a grounding loop or path formed on the circuit board, and a plurality of signal terminals 42 each formed in the receptacle cavity 411 to be mated or contacted with a corresponding rod member 24 of the spring-loaded terminal 20 for signal transmission or communication therethrough. The socket body 41 may be integrally formed by mechanical processing or casting process to render its high strength, high precision and low wearing.
When using the RF connector of the present invention, the spring-loaded terminals 20 are plugged into the receptacle cavity 411 of the corresponding socket 40 (
Meanwhile, the rod member 24 is also downwardly (or outwardly) urged by the inner spring 240 to be resiliently contacted with the signal terminal 42 in the socket 40 to electrically connect the spring loaded terminal 20 of the RF connector with the signal terminal 42 of the socket 40 to thereby complete a signal transmission path or system for receiving (or transmitting) the signal from an externally connected antenna (or signal source) or an additional electronic device (not shown) as passing through the RF connector of the present invention.
Even the RF connector of the present invention is not precisely inserted into the socket 40 as shown in
As shown in
The wire 31 is angularly connected with a wire slot 253b formed in a top or an end portion of the wire-clamping member 25 by soldering S (
The present invention may be further modified without departing from the spirit and scope of the present invention.
The present invention has the following advantages superior to the conventional RF connector:
Either spring 230,240 is preferably made of helical spring, but not limited in this invention.
Number | Date | Country | Kind |
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103205577 | Apr 2014 | TW | national |