Battery connector for series connection of batteries and battery pack including the same
11539102 · 2022-12-27
Assignee
Inventors
- Ro Un Kim (Daejeon, KR)
- Sang Uck Kim (Daejeon, KR)
- Gil Young Lee (Daejeon, KR)
- Sang Sok Jung (Daejeon, KR)
Cpc classification
Y02E60/10
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
H01M50/502
ELECTRICITY
Abstract
A battery connector including a conductive plate configured to contact a first battery and a second battery so as to electrically connect the first battery and the second battery to each other, an upper fixer configured to be coupled the first battery, and a lower fixer configured to be coupled to the second battery.
Claims
1. A battery connector comprising: a conductive plate configured to contact a first battery and a second battery so as to electrically connect the first battery and the second battery to each other, the conductive plate not having a through-hole; an upper fixer configured to be coupled to the first battery; and a lower fixer configured to be coupled to the second battery, wherein the lower fixer comprises a fixing latch extending downwards from a lower surface of the conductive plate, and wherein the fixing latch is configured to be inserted into a recess formed in a top cap of the second battery, whereby the fixing latch is coupled to the second battery.
2. The battery connector according to claim 1, wherein the conductive plate is configured to contact a negative electrode terminal of the first battery and to contact a positive electrode terminal of the second battery.
3. A battery connector comprising: a conductive plate configured to contact a first battery and a second battery so as to electrically connect the first battery and the second battery to each other, the conductive plate not having a through-hole; an upper fixer configured to be coupled to the first battery; and a lower fixer configured to be coupled to the second battery, wherein the conductive plate is configured to contact a negative electrode terminal of the first battery and to contact a positive electrode terminal of the second battery, and wherein the upper fixer comprises: an extension member extending upwards from an upper surface of the conductive plate; and a fixing protrusion formed on an inside of the extension member, the fixing protrusion configured to be coupled to a groove or a step formed at a negative electrode side of the first battery.
4. The battery connector according to claim 1, wherein the recess formed in the top cap of the second battery comprises: a vertical recess, into which the fixing latch is coupled in a vertical direction; and a horizontal recess, into which the fixing latch is coupled in a horizontal direction.
5. The battery connector according to claim 1, further comprising a support member extending downwards from the lower surface of the conductive plate so as to be located in a vicinity of the top cap of the second battery when the second battery is coupled to the battery connector.
6. The battery connector according to claim 1, wherein the upper fixer comprises: an extension member extending upwards from an upper surface of the conductive plate; and a screw thread formed at an inside of the extension member, the screw thread being configured to be engaged with a screw thread formed at a negative electrode side of the first battery.
7. The battery connector according to claim 1, wherein an elastic protrusion is formed on an upper surface of the conductive plate.
8. A battery pack comprising at least two batteries electrically connected to each other via the battery connector according to claim 1.
9. A battery connector comprising: a conductive plate configured to contact a first battery and a second battery so as to electrically connect the first battery and the second battery to each other; an upper fixer configured to be coupled to the first battery; and a lower fixer configured to be coupled to the second battery, the lower fixer including a fixing latch extending downwards from a lower surface of the conductive plate, wherein the fixing latch is configured to be inserted into a recess formed in a top cap of the secondary battery, whereby the fixing latch is coupled to the second battery, and wherein the recess formed in the top cap of the second battery comprises: a vertical recess, into which the fixing latch is coupled in a vertical direction; and a horizontal recess, into which the fixing latch is coupled in a horizontal direction.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1) The above and other objects, features and other advantages of the present invention will be more clearly understood from the following detailed description taken in conjunction with the accompanying drawings, in which:
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BEST MODE
(12) The present invention may be variously changed and may have various embodiments. Therefore, specific embodiments will be described in detail with reference to the accompanying drawings. However, it should be understood that the present invention is not limited to the specific embodiments and that the present invention includes all alterations, equivalents, and substitutes that fall within the idea and technical scope of the present invention.
(13) In the following description of the present invention, a detailed description of known functions and configurations incorporated herein will be omitted when it may obscure the subject matter of the present invention. In addition, numerals (for example, first, second, etc.) used to describe this specification are merely identification symbols that are used to distinguish one element from another.
(14) In addition, in the case in which one part is described as being ‘connected’ or ‘coupled’ to another part in this specification, the one part may be directly connected or coupled to the another part, or the one part may be connected or coupled to the another part via an intervening part unless mentioned otherwise.
(15) In addition, in the case in which elements are expressed as ‘parts (units)’ or ‘modules’ in this specification, two or more elements may be combined into a single element, or a single element may be divided into two or more elements from a functional aspect. In addition, each element that will be described hereinafter may further perform some or all of the functions of other elements in addition to the main functions thereof. Of course, some of the main functions of each element may be performed by other elements.
(16) Hereinafter, embodiments of the present invention based on the technical idea thereof will be described in detail.
(17)
(18) Referring to
(19) The conductive plate 110 may be made of an electric conductor. A negative electrode terminal of the first battery may contact the upper surface of the conductive plate 110, and a positive electrode terminal of the second battery may contact the lower surface of the conductive plate 110.
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(21) The battery connector 100 according to the embodiment of the present invention includes an upper fixing means for fixing the first battery and a lower fixing means for fixing the second battery. As shown in
(22) Each of the extension member 130 and the fixing protrusion 135 may be made of an electric conductor.
(23) In addition, as shown in
(24)
(25) A groove or a step 335 may be formed at the negative electrode side of the first battery 300. The diameter of an outer can 310, which surrounds the first battery 300, may be reduced only at a specific portion of the first battery 300, whereby the groove 335 may be formed. Alternatively, the diameter of the outer can 310 may be reduced only at a specific portion of the first battery 300, and then the reduced diameter of the outer can 310 may extend upwards, whereby the step 335 may be formed.
(26) The height of the fixing protrusion 135 from the conductive plate 110 may correspond to the height of the groove or the step 335 from a negative electrode terminal 332 of the first battery 300. When the first battery 300 is inserted downwards into the battery connector 100, therefore, the fixing protrusion 135 may be coupled to the groove or the step 335 formed at the negative electrode side of the first battery 300.
(27) In another embodiment, as shown in
(28) An elastic protrusion 190 may be formed on the upper surface of the conductive plate 110. The elastic protrusion 190 may be made of an electric conductor, and may guarantee secure contact between the first battery 300 and the conductive plate 110. Specifically, the negative electrode terminal 332 of the first battery may not contact the conductive plate 110 even in the case in which the first battery 300 is coupled to the battery connector 100. In order to prevent this, the elastic protrusion is provided on the upper surface of the conductive plate 110.
(29)
(30) Referring to
(31) As shown in
(32) Subsequently, as shown in
(33) According to the embodiment of the present invention, the first battery 300 is coupled and fixed to the battery connector 100 through the engagement between the fixing protrusion 135 of the battery connector 100 and the groove or the step 335 formed at the negative electrode side of the first battery 300, and the second battery 400 is coupled and fixed to the battery connector 100 through the engagement between the fixing latch 150 of the battery connector 100 and the recess in the top cap 450 of the second battery 400. Consequently, it is possible to easily connect the first battery 300 and the second battery 400 to each other in series. In other words, it is sufficient for a user to insert the first battery 300 into the extension member 130 of the battery connector 100 such that the first battery 300 is coupled to the battery connector 100 and to insert and rotate the fixing latch 150 of the battery connector 100 into the recess formed in the top cap 450 of the second battery 400 such that the first battery 300 and the second battery 400 are connected to each other in series.
(34) Meanwhile, according to the embodiment of the present invention, when the second battery 400 is coupled to the battery connector 100, an empty space is generated in the vicinity of the top cap 450 of the second battery. In this case, the battery connector 100 and the second battery 400 may have low resistance to pressure applied thereto in the lateral direction thereof. The structure of a battery connector 200 configured to prevent this is shown in
(35)
(36) Referring to
(37) That is, the support member 170 surrounds the empty space in the vicinity of the top cap 450, which is formed when the second battery 400 is coupled to the battery connector 200. Consequently, it is possible to prevent the second battery 400 and the battery connector 200 from being separated from each other when pressure is applied to the second battery 400 and to the battery connector 200 in the lateral direction thereof.
(38) A battery pack according to another aspect of the present invention includes a plurality of batteries, and is characterized in that at least two of the batteries are electrically connected to each other via any one of the battery connectors 100 and 200 according to the embodiments of the present invention. That is, a plurality of batteries may be coupled to each other using the battery connectors 100 and 200 according to the embodiments of the present invention, and may then be disposed in a pack housing (not shown) so as to be assembled as a battery pack. Consequently, the batteries are easily connected to each other in series using mechanical fixing means without welding so as to be assembled as a battery pack, whereby the process of assembling the battery pack is simplified.
(39) Those skilled in the art to which the present invention pertains will appreciate that various applications and modifications are possible based on the above description, without departing from the scope of the present invention.