1. Field of the Invention
The present invention relates to a terminal, and more particularly to a terminal mounted in an electrical connector for signal transmission. The terminal has a resilient contacting arm for excellent electrically contacting and mechanically clamping functions without material fatigue after repeated plugging and pulling actions of the electrical connector. Furthermore, the terminal is manufactured easily such that the manufacturing cost is lowered.
2. Description of Related Art
Electrical connectors are common components of electrical devices and are used to electrically connect different electrical devices such that signal transmission or power supply between the electrical devices is implemented through the electrical connectors.
Taiwan utility model patent No. M415441 discloses an improved terminal mounted in an electrical connector on one end of a signal cable. The electrical connector may be engaged with a corresponding connector fabricated on a motherboard of an electrical device. The terminal has a base, a tail, two conducting portions, two contacting portions and two clamping portions. The tail protrudes from a rear end of the base. The conducting portions protrude from a front end of the base. The contacting portions protrude inward respectively from the conducting portions and extend forward. Each clamping portion extends from one of two sides of a corresponding conducting portion to the other side. Thus, the terminal is able to provide conducting and resiliently clamping effects.
However, the contacting portions of the aforementioned terminal are thin and elongated such that contacting and positioning functions thereof are not ideal. When the electrical connector on which the terminal is mounted suffers repeated plugging and pulling operations, the contacting portions of the terminal are fatigued and become too loose to maintain their original positions. Thus, the terminal cannot provide sufficient contacting force and results in contacting failure. Furthermore, the clamping portions of the terminal are hollow and U-shaped to decrease the clamping ability. The clamping portions are also too structurally complicated to manufacture. Therefore, the terminal has high manufacturing cost and low production yield rate.
To overcome the shortcomings, the present invention provides a terminal for an electrical connector to mitigate or obviate the aforementioned problems.
The main objective of the invention is to provide a terminal mounted in an electrical connector for signal transmission. The terminal has a resilient contacting arm for excellent electrically contacting and mechanically clamping functions without material fatigue after repeated plugging and pulling actions of the electrical connector. Furthermore, the terminal is manufactured easily such that the manufacturing cost is lowered.
A terminal in accordance with the present invention has a base, a wire covering portion, two connecting portions and two resilient arms. The resilient arms are formed on and protrude forward respectively from front ends of the connecting portions and each resilient arm has an extension section, a U-turn portion and a folding contacting section. The extension section is formed on and protrudes forward from the front end of one of the connecting portions. The U-turn portion is formed on the extension section. The folding contacting section is formed on and extends from the U-turn portion, is parallel to the other folding contacting section, and abuts an inside surface of the extension section. The terminal is structurally strong and durable.
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
With further reference to
The connecting portions 12 are formed on and protrude downward respectively from two opposite sides of the base 11.
With further reference to
The extension section 131 is formed on and protrudes forward from the front end of one of the connecting portions 12.
The U-turn portion 133 may be curved, and is formed on the extension section 131. In the first embodiment, the U-turn portion 133 is formed on a front end of the extension section 131.
The folding contacting section 132 is formed on and extends from the U-turn portion 133, is parallel to an inside surface of the extension section 131, and abuts the inside surface of the extension section 131. In the first embodiment, the folding contacting section 132 protrudes backward from the U-turn portion 133. An inserting space 130 is defined between the folding contacting sections 132 of the resilient arms 13. The folding contacting section 132 may further have a guiding slope surface 134 and a contacting bump 136. The guiding slope surface 134 is formed in a bottom edge of the folding contacting section 132 to guide a corresponding terminal of an external electrical connector to smoothly enter the inserting space 130. The contacting bump 136 is formed on and protrudes from an inside surface of the folding contacting section 132 to improve contacting effect.
Preferably, a length of the folding contacting section 132 is substantially equal to a length of the extension section 131.
The abutting portion 14 is formed on and protrudes forward from the base 11 and is located above the resilient arms 13. A front end of the abutting portion 14 may be substantially flush with front ends of the resilient arms 13. The abutting portion 14 may have an embedding protrusion 15 formed on and protruding from the abutting portion 14. The embedding protrusion 15 is embedded into the insulative housing 90 to firmly mount the terminal 1 on the insulative housing 90.
With reference to
The terminal 1, 1a of the present invention has the following advantages.
1. The terminal 1, 1a is manufactured from a one-piece metal sheet by stamping processes. Each resilient arm 13, 13a is made by folding an elongated metal sheet to form the abutting extension section 131 and the folding contacting section 132 such that the resilient arm 13, 13a has a thickness twice the thickness of the metal sheet. Therefore, structural strength of the resilient arm 13, 13a of the present invention is twice the structural strength of a conventional one and is able to provide excellent contacting, clamping and electrical conductive functions. The terminal 1, 1a of the present invention is durable. When the terminal 1, 1a is engaged with a corresponding terminal of another electrical connector, the inserting space 130 of the resilient arms 13, 13a accommodates and tightly clamps a contacting portion of the corresponding terminal to achieve excellent contacting and positioning purposes.
2. The resilient arms are formed by bending reversely without any complicated structures of holes or U-shaped configurations, which improves the structural strength, facilitates the manufacture processing and lowers the cost of the resilient arms
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 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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2014 1 0046436 | Feb 2014 | CN | national |
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Number | Date | Country |
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M415441 | Nov 2011 | TW |
Number | Date | Country | |
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20150229069 A1 | Aug 2015 | US |