1. Field of the Invention
The present invention relates to a connector combination, and more particularly, relates to a connector combination with seamless noise block by soldering a woven shield of a transmission line with a soldering area of a connector.
2. Description of the Prior Art
Cable electronic products such as cable modem and cable television set-top box are designed with a radio-frequency (RF) connector, hereinafter called F-connector, wherein the F-connector is used for connecting the cable with the cable modem or cable television set-top box to transmit radio-frequency signals. Basic requirements for the F-connector include return loss for avoiding reflecting noise from the cable signal system. Also, insertion loss ensures the signal quality for tuners of the cable modem and the cable television set-top.
Recently, the popularity of handheld products brings evolution of mobile communication systems, where different mobile communication systems can support communication schemes such as amplitude modulation (AM), Global System for Mobile Communication (GSM) standard by third Generation Partnership Project (3GPP), and/or long term evolution (LTE) for wireless communication, and interactions between wired and wireless communications can be achieved. To ensure signal quality, the challenge of noise blocking for cable electronic products rises. In the traditional cable electronic products, the F-connector is connected by riveting and tin soldering, wherein noise blocking is achieved by soldering the tin onto the seam between the transmission line and the connector, or pasting a conductive patch onto the seam.
In addition, considering aesthetic design, many cable electronic products are designed with chic and smooth appearances, thereby the design of the F-connector becomes more flexible in order to adapt to the chic and smooth appearances. Most of the transmission lines in the market are used for products with Wi-Fi communication, while the transmission lines used for the F-connector of the cable products are quite rare, and its performance for noise blocking is bad.
For a cable (including a transmission line and a connector) with 75 ohms impedance, it is traditionally fixed by crimping. For example, an operator exposes the conductor of the cable to contact the contact springs of the connector, and then fixes the conductor with the contact springs by a thermal casing to crimp the transmission line with the connector. However, such assembly method is benefit for production, but there is hardly performance for noise blocking. Therefore, the cable made by the assembly method is mostly used for testing or products with loose requirements, which cannot be used in the cable modem and the cable television set-top box with relatively strict requirements.
Therefore, in order to improve signal quality, there is a need to design a connector combination capable of noise blocking to apply to the cable modem and the cable television set-top box.
It is therefore an objective of the present invention to provide a connector combination in which a woven shield of a transmission line is soldered with a soldering area of a connector to completely block noise.
The present invention discloses a connector combination includes a transmission line and a connector. The transmission line includes a woven shield for providing a signal reference of a radio-frequency signal, and blocking noise to prevent the radio-frequency signal from being interfered with the noise. The connector is coupled to the transmission line, includes a pipe, wherein a soldering area is formed on the pipe for allowing the woven shield to be soldered with the pipe after the transmission line is combined with the connector.
These and other objectives of the present invention will no doubt become obvious to those of ordinary skill in the art after reading the following detailed description of the preferred embodiment that is illustrated in the various figures and drawings.
Based on the transmission line theory, the radio-frequency signal RF_sig is reflected if its signal path and signal reference encounter discontinuous impedances, which lead to bad signal quality of the radio-frequency signal RF_sig. An insertion loss is defined as a ratio of transmitted signal and incident signal, and a return loss is defined as a ratio of reflected signal and incident signal. Accordingly, given that the F-connector 20 and the transmission line 10 have the same impedance, e.g., 75 ohms, to be matched with each other, so as to ensure the signal quality of the radio-frequency signal RF_sig.
Note that the woven shield 13 and the pipe 22 can be seamlessly connected by soldering, so the signal reference of the radio-frequency signal RF_sig can have continuous impedance to improve the insertion loss and the return loss, thereby meet the application requirements and design standards.
In other words, the present invention reserves the soldering area for the pipe of the F-connector, so the woven shield of the transmission line can be soldered with the soldering area to seamlessly combine the woven shield with the pipe. Therefore, the noise can be completely blocked, and the insertion loss and the return loss can be improved to meet the application requirements and design standards. Those skilled in the art can make modifications and alterations according to the structure and operations above mentioned, which is not limited to the embodiments of the present invention.
For example, the woven shield and the pipe can be connected by any means of metal welding. The characteristics impedances of the transmission line and the F-connector are variable as long as they are matched. The pipe can be made of any kinds of metal materials.
In addition, torque test should be considered on where the F-connector and transmission line are connected (i.e., where the woven shield and the pipe are soldered with) to ensure the lifetime of the connector combination 30. In one embodiment, at two sides of the pipe, two retainers are used for fixing the pipe, where the two retainers can be formed with the pipe in one piece. In another embodiment, the pipe can be fixed with the two contact springs by riveting and metal welding. Furthermore, the housing is connected to the pipe by at least one of metal welding, soldering and riveting to ensure the housing and the pipe are seamlessly connected to completely block the noise.
To sum up, the present invention reserves the soldering area for the pipe of the F-connector, so the woven shield of the transmission line can be soldered with the soldering area to seamlessly combine the woven shield with the pipe. Therefore, the noise can be completely blocked, and the insertion loss and the return loss can be improved to meet the application requirements and design standards.
Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.
Number | Date | Country | Kind |
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104220170 | Dec 2015 | TW | national |
This application claims the benefit of U.S. Provisional Application No. 62/193,099, filed on 2015 Jul. 16, the contents of which are incorporated herein.
Number | Date | Country | |
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62193099 | Jul 2015 | US |