This application claims the priority benefit of Chinese Patent Application No. 202011156609.X filed on Oct. 26, 2020, the whole disclosure of which is incorporated herein by reference.
The present disclosure relates to a connector, and more particularly to a connector for electrically connecting an electrode of a power source to a bus bar.
According to the prior art, a connector used to electrically connect an electrode of a power source to a bus bar typically includes a conductor block on which a slot is formed. The electrode of the power source is adapted to be inserted into the slot for electrically connecting to the conductor block. However, the current carrying capacity of this type of connector is insufficient, and the ability to reliably contact the electrode of the power source during an installation process is insufficient, and cannot meet the requirements of customers.
Accordingly, improved connectors for mating a power source to a bus bar are desired.
According to an embodiment of the present disclosure a connector comprises a pair of terminals for clamping and electrically connecting to a first conductive member. A first terminal includes a plurality of first elastic arms arranged in a row, with each first elastic arm having a first contact and a third contact formed thereon. The second terminal is laminated on an outer side of the first terminal and includes a plurality of second elastic arms arranged in a row. Each second elastic arm includes a second contact formed thereon. Each second contact protrudes to an inner side of the first elastic arms from a gap between two adjacent first elastic arms. The plurality of second elastic arms respectively abut against the outer sides of the plurality of first elastic arms. The first contact, the second contact and the third contact are adapted to be in electrical contact with the inserted first conductive member simultaneously.
The invention will now be described by way of example with reference to the accompanying Figures, of which:
Exemplary embodiments of the present disclosure will be described hereinafter in detail with reference to the attached drawings, wherein the like reference numerals refer to the like elements. The present disclosure may, however, be embodied in many different forms and should not be construed as being limited to the embodiment set forth herein; rather, these embodiments are provided so that the present disclosure will be thorough and complete, and will fully convey the concept of the disclosure to those skilled in the art.
In the following detailed description, for purposes of explanation, numerous specific details are set forth in order to provide a thorough understanding of the disclosed embodiments. It will be apparent, however, that one or more embodiments may be practiced without these specific details. In other instances, well-known structures and devices are schematically shown in order to simplify the drawing.
Embodiments of the present disclosure include a connector comprising a pair of laminated terminals adapted to clamp and electrically connect to a first conductive member. Each laminated terminal includes a first terminal and a second terminal laminated on an outer side of the first terminal. The first terminal comprises a plurality of first elastic arms arranged in a row, and the second terminal comprises a plurality of second elastic arms arranged in a row, and the plurality of second elastic arms respectively abut against the outer sides of the plurality of first elastic arms. A first contact and a third contact are formed on each first elastic arm, and a second contact is formed on each second elastic arm. Each second contact is adapted to protrude to an inner side of the first elastic arm from a gap between two adjacent first elastic arms. The first contact, the second contact and the third contact are adapted to be in electrical contact with the inserted first conductive member simultaneously.
According to another embodiment of the present disclosure a connector includes a pair of laminated terminals which are adapted to clamp and electrically connect to a first conductive member. Each laminated terminal comprises a first terminal and a second terminal laminated on an outer side of the first terminal. The first terminal comprises a plurality of first elastic arms arranged in a row, and the second terminal comprises a plurality of second elastic arms arranged in a row. The plurality of second elastic arms and the plurality of first elastic arms are arranged in a staggered manner. A first contact and a third contact are formed on each first elastic arm, and a second contact is formed on each second elastic arm. The first contact, the second contact and the third contact are adapted to make an electrical contact with the inserted first conductive member simultaneously.
As shown in
Referring again to
As shown in
The second contact 321a is formed on the end portion of the second elastic arm 321. As shown the first elastic arm 311 is bent into a wavy shape (i.e., a shape with alternating concavity along its length) with two crests, and the first contact 311a and the third contact 311b constitute the two crests of the first elastic arm 311. The third contact 311b and the first contact 311a are separated by a predetermined distance in the insertion direction F of the first conductive member 10; in the insertion direction F of the first conductive member 10, the second contact 321a is located between the first contact 311a and the third contact 311b.
As shown in
Each laminated terminal 300 further includes an auxiliary terminal 330, which is laminated on the outside of the second terminal 320. The auxiliary terminal 330 has an auxiliary elastic arm 331. The auxiliary elastic arm 331 abuts against the second elastic arm 321. The first terminal 310, the second terminal 320 and the auxiliary terminal 330 are fixed together to form a laminated terminal 300.
The first terminal 310 further includes a first plate-shaped base 312, and the first elastic arm 311 is connected to the first plate-shaped base 312 and extends forward; the second terminal 320 further includes a second plate-shaped base 322, and the second elastic arm 321 is connected to the second plate-shaped base 322 and extends forward; the auxiliary terminal 330 also includes a third plate-shaped base 332, and the auxiliary elastic arm 331 is connected to the third plate-shaped base 332 and extends forward.
The second plate-shaped base 322 is laminated on the first plate-shaped base 312, and the third plate-shaped base 332 is laminated on the second plate-shaped base 322. The first plate-shaped base 312, the second plate-shaped base 322, and the third plate-shaped base 332 are fixed together to fix the first terminal 310, the second terminal 320, and the auxiliary terminal 330 together. The first plate-shaped base 312, the second plate-shaped base 322 and the third plate-shaped base 332 are riveted together by a plurality of rivets 301. However, the present disclosure is not limited to this. The first plate-shaped base 312, the second plate-shaped base 322, and the third plate-shaped base 332 can also be fixed together in other ways, for example, in a way of a bolt connection or a way of a snap-fit.
The first terminal 310 further includes a first plate-shaped fixing portion 313, and the second terminal 320 further includes a second plate-shaped fixing portion 323 which is laminated on the first plate-shaped fixing portion 313. The first plate-shaped fixing portion 313 and the second plate-shaped fixing portion 323 are adapted to be fixed and electrically connected to a second conductive member 20 by screws 302, thereby electrically connecting the connector to the second conductive member 20.
The first plate-shaped fixing portion 313 is connected to the side of the first plate-shaped base portion 312 opposite to the first elastic arm 311, and is bent with respect to the first plate-shaped base 312 at a predetermined angle, for example, of around 90 degrees. The second plate-shaped fixing portion 323 is connected to the side of the second plate-shaped base 322 opposite to the second elastic arm 321 and is bent with respect to the second plate-shaped base 322 at a predetermined angle, for example, of around 90 degrees.
In the exemplary embodiment, the first conductive member 10 is the electrode of the power source, the second conductive member 20 is the bus bar, and the connector is adapted to electrically connect the electrode of the power source to the power connector of the bus bar.
The first terminal 310 and the second terminal 320 may be made of a first metal material, and the auxiliary terminal 330 is made of a second metal material. In one embodiment, the electrical conductivity of the first metal material is greater than that of the second metal material, and the mechanical strength (e.g., yield strength) of the second metal material is greater than that of the first metal material. More specifically, the first terminal 310 and the second terminal 320 are made of copper or copper alloy, and the auxiliary terminal 330 is made of stainless steel.
Although not shown, in another exemplary embodiment of the present disclosure, a connector is also disclosed which includes a pair of laminated terminals, and the pair of laminated terminals are adapted to clamp and be electrically connected to a first conductive member. Each laminated terminal includes a first terminal and a second terminal laminated on the outer side of the first terminal. The first terminal includes a plurality of first elastic arms arranged in a row, the second terminal includes a plurality of second elastic arms arranged in a row, and the plurality of second elastic arms and the plurality of first elastic arms are arranged in a staggered manner, that is, one second elastic arm is arranged in the gap between two adjacent first elastic arms, or one first elastic arm is arranged in the gap between two adjacent second elastic arms. A first contact and a third contact are formed on the first elastic arm, and a second contact is formed on the second elastic arm. The first contact, the second contact and the third contact are adapted to make an electrical contact with the inserted first conductive member simultaneously.
It should be appreciated for those skilled in this art that the above embodiments are intended to be illustrated, and not restrictive. For example, many modifications may be made to the above embodiments by those skilled in this art, and various features described in different embodiments may be freely combined with each other without conflicting in configuration or principle.
Although several exemplary embodiments have been shown and described, it would be appreciated by those skilled in the art that various changes or modifications may be made in these embodiments without departing from the principles and spirit of the disclosure, the scope of which is defined in the claims and their equivalents.
As used herein, an element recited in the singular and proceeded with the word “a” or “an” should be understood as not excluding plural of said elements or steps, unless such exclusion is explicitly stated. Furthermore, references to “one embodiment” of the present disclosure are not intended to be interpreted as excluding the existence of additional embodiments that also incorporate the recited features. Moreover, unless explicitly stated to the contrary, embodiments “comprising” or “having” an element or a plurality of elements having a particular property may include additional such elements not having that property.
Number | Date | Country | Kind |
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202011156609.X | Oct 2020 | CN | national |
Number | Name | Date | Kind |
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6652322 | Ito | Nov 2003 | B2 |
9033750 | Miller | May 2015 | B2 |
9537242 | Chen | Jan 2017 | B2 |
10826215 | Zhang | Nov 2020 | B2 |
Number | Date | Country |
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106654666 | May 2017 | CN |
Number | Date | Country | |
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20220131300 A1 | Apr 2022 | US |