KR20000029493A - 배터리 팩 접점 어셈블리를 통합한 배터리 팩 - Google Patents
배터리 팩 접점 어셈블리를 통합한 배터리 팩 Download PDFInfo
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- KR20000029493A KR20000029493A KR1019997000515A KR19997000515A KR20000029493A KR 20000029493 A KR20000029493 A KR 20000029493A KR 1019997000515 A KR1019997000515 A KR 1019997000515A KR 19997000515 A KR19997000515 A KR 19997000515A KR 20000029493 A KR20000029493 A KR 20000029493A
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01M—PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
- H01M50/00—Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
- H01M50/50—Current conducting connections for cells or batteries
- H01M50/502—Interconnectors for connecting terminals of adjacent batteries; Interconnectors for connecting cells outside a battery casing
- H01M50/514—Methods for interconnecting adjacent batteries or cells
- H01M50/516—Methods for interconnecting adjacent batteries or cells by welding, soldering or brazing
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01M—PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
- H01M50/00—Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
- H01M50/50—Current conducting connections for cells or batteries
- H01M50/502—Interconnectors for connecting terminals of adjacent batteries; Interconnectors for connecting cells outside a battery casing
- H01M50/503—Interconnectors for connecting terminals of adjacent batteries; Interconnectors for connecting cells outside a battery casing characterised by the shape of the interconnectors
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01M—PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
- H01M50/00—Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
- H01M50/50—Current conducting connections for cells or batteries
- H01M50/502—Interconnectors for connecting terminals of adjacent batteries; Interconnectors for connecting cells outside a battery casing
- H01M50/509—Interconnectors for connecting terminals of adjacent batteries; Interconnectors for connecting cells outside a battery casing characterised by the type of connection, e.g. mixed connections
- H01M50/51—Connection only in series
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01M—PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
- H01M50/00—Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
- H01M50/50—Current conducting connections for cells or batteries
- H01M50/502—Interconnectors for connecting terminals of adjacent batteries; Interconnectors for connecting cells outside a battery casing
- H01M50/521—Interconnectors for connecting terminals of adjacent batteries; Interconnectors for connecting cells outside a battery casing characterised by the material
- H01M50/522—Inorganic material
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- Y—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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E60/00—Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
- Y02E60/10—Energy storage using batteries
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- Y—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
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T29/00—Metal working
- Y10T29/49—Method of mechanical manufacture
- Y10T29/49002—Electrical device making
- Y10T29/49108—Electric battery cell making
- Y10T29/49114—Electric battery cell making including adhesively bonding
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Abstract
배터리 팩은 배터리 팩과 배터리 팩이 전원인 장치 사이를 확실히 접속시키기 위해서 배터리 팩 접점 조합을 사용한다. 접점 조합은 용접 가능한 전도 물질로 스탬프된 캐리어, 캐리어와 일체인 제1접점, 및 캐리어와 일체인 제2접점을 포함한다. 캐리어와 접점들 사이에는 스코어 라인이 제공된다. 접점의 선택 부분은 금으로 도금되어 용접 가능한 노출 표면과 선택 도금된 표면의 한계가 정해진다. 조립시, 용접 가능한 노출 표면은 배터리 팩의 양극 단자 및 음극 단자에 용접되고, 캐리어는 스코어 라인을 따라 약화되어 제거된다. 최종 접점은 배터리 팩의 단자에 확실히 고착되고 배터리 팩 전원 장치와의 접속하기 위한 금도금된 표면을 제공한다.
Description
배터리 팩과 같은 전원은 휴대용 통신 장치의 물리적 크기(volume)의 상당 부분을 차지한다. 따라서, 이동 통신을 개발함에 있어 이러한 물리적 크기를 최소화하는 것이 중요한 관건이다. 보통, 접점을 금으로 도금하면 배터리와 휴대용 송수신기(transceiver) 사이를 우수하게 접속시킬 수 있다. 이제까지, 보통 배터리 팩은 도 1에 나타낸 바와 같이 조립된 다수의 전지(cell)들을 포함했다. 전지들 사이의 상호 접속은 용접된 니켈 스트랩(nickel strap)들에 의해 이루어진다. 배터리 팩 자체는 팩을 송수신기에 접속시키기 위한 금 도금된 선단(tip)들을 가진 두 개의 비틀린 스프링을 갖추고 있다. 이러한 접근법에 의해, 배터리 팩 내에 스프링들과 스트랩들이 있으므로 불필요한 크기 및 제조 비용의 원인이 된다.
이러한 설계의 대안으로, 스프링들은 배터리 팩에서 통신 장치의 본체로 위치를 바꿔 장착될 수 있다. 이러한 접근 방법에 따라, 도 2에 나타낸 바와 같이 스프링들은 배터리 팩의 전지들에 있는 두 개의 노출 단자(terminal pole)들을 접속시킨다. 접속을 확실하게 하기 위해, 전지들의 극들을 금으로 도금한다. 전지들중 두 개만이 도금을 필요로 하지만, 세 종류의 전지들이 제조되게 된다. 즉, 금으로 도금되지 않은 전지들, 음극이 금으로 도금된 전지들, 및 양극이 금으로 도금된 전지들 모두가 제공되어야 한다.
이러한 세 가지 유형의 전지들을 필요로 하기 때문에, 배터리 팩으로의 이들 팩 조립은 불필요한 품목 제어(inventory control) 및 물품 취급 문제들을 야기한다. 또한, 전지 제조의 현실성 때문에, 전극들의 도금은 전지 제조 과정 초기에 이루어져야 하므로, 세 개의 전지 조립 라인들은 세 가지 유형의 전지들을 만들수 있도록 설치되어야 한다.
본 발명은 일반적으로 이동 통신 장치 및 이와 동일한 종류의 장치를 위한 전원(power supply)에 관한 것이며, 특히, 선택 도금된 접점(contact)들을 지지하는 캐리어(carrier)를 포함한 배터리 팩 접점 조합(battery pack contact assembly)을 이용한 배터리 팩 및 배터리 팩을 제조하는 방법에 관한 것이다.
도 1은 배터리 팩의 종래 구조를 나타낸 도면;
도 2는 종래의 배터리 팩 장치를 나타낸 도면;
도 3은 본 발명에 의한 배터리 팩을 나타낸 도면;
도 4는 접점 조합의 캐리어가 제거되기 전인 도 3에 나타낸 배터리 팩의 평면도;
도 5A는 접점 조합의 대안적 배열을 나타낸 도면;
도 5B는 접점 조합의 또 다른 대안적 배열을 나타낸 도면;
도 6은 접점 조합의 또 다른 대체 장치를 나타낸 도면.
그러므로 본 발명의 목적은 배터리 팩 및 종래의 배터리 팩의 단점을 극복한 배터리 팩 제조 방법을 제공하는 것이다. 이 점에 대해서, 배터리 팩의 크기를 감소시키고 배터리 팩을 효과적으로 생산하는 혁신적인 제조 과정을 제안하는 것이 본 발명의 목적이다.
본 발명의 상기 및 기타의 목적들은 용접가능한 전도 물질로 형성된 캐리어 및 용접 가능한 노출 표면과 선택 도금된 표면이 있는 캐리어를 포함한 제1접점을 포함하는 배터리 팩 접점 조합을 제공하여 성취되었다. 제2접점은 용접 가능한 노출 표면과 선택 도금된 표면을 포함하여, 캐리어와 일체로 만들어진다. 캐리어와 제1 및 제2접점 각각의 사이에는 스코어 라인(score line)이 있다. 용접 가능한 전도 물질로는 니켈이 적당하며, 선택 도금된 표면은 금으로 도금된다.
캐리어 자체는 U자형을 취하는데, 제1 및 제2접점은 U자형의 단에서 연장된다. 이에 관하여, 제1 및 제2접점은 U-형의 단에서 서로를 향해 연장되고, 선택 도금된 표면들은 제1 및 제2접점의 가장 안쪽 단에 배치된다. 이와는 달리, 캐리어 및 접점은 L-형태를 취할 수도 있는데, 캐리어는 L-형의 제1다리가 되고 접점은 L-형의 제2다리가 된다. 이 점에 관하여, 선택 도금된 표면은 제2다리의 말단부에 배치되고 실제로 제1다리와 평행하다. 또 다른 대안적인 배열로, 캐리어 및 접점은 T-형태를 취하는데 캐리어는 T-형의 기부(base)를 형성하고 접점은 T-형의 교차 부재(cross member)이다. 이에 관하여, 선택 도금된 표면은 교차 부재의 가장 바깥 부분을 가로질러 기부와 직각으로 배치된다. 또한, 용접 가능한 노출 표면 및 선택 도금된 표면은 90도로 휘어진다.
용접 가능한 노출 표면은 축전지(battery cell)의 전극(contact pole) 용접되기에 적합하고, 선택 도금된 표면은 배터리 팩에 의해 전력 공급된 장치의 리드선(lead)들을 접속하기에 적합하다.
본 발명의 또 다른 양태에 따라서, 서로 인접하여 직렬로 접속 배치된 다수의 축전지를 포함하는 배터리 팩이 제공된다. 다수의 전지들은 배터리 팩에 의해 전력 공급된 장치의 리드선을 연결하기에 적합한 양극 단자(positive terminal pole) 및 음극 단자를 포함한다. 배터리 팩은 또한 용접 가능한 노출 표면 및 선택 도금된 표면을 가진 양극 접점(positive contact)과 음극 접점(negative contact)을 각각 포함한다. 용접 가능한 노출 표면들은 양극 단자 및 음극 단자 지주에 각각 연결되고, 선택 도금된 표면들은 배터리 팩에 의해 전력 공급된 장치의 리드선들을 연결하기에 적합하다. 양극 접점 및 음극 접점은 니켈 도금된 구리(copper)로 만들어지며 선택 도금된 표면들은 금으로 도금된다. 한 장치에서, 배터리 팩은 N개의 축전지를 포함하는데, 여기서 N은 최소한 4가 되어야 한다. 이에 대하여, 축전지들은 한 축전지의 음극이 인접 배치되고 인접 축전지의 양극과 전기적으로 연결되도록 배열된다. (N-1)번째 전지의 양극이든지 음극은 상응하는 양극 단자 또는 음극 단자 지주를 포함하고, N 번째 전지의 또 다른 양극 또는 음극은 상응하는 또 다른 양극 단자 및 음극 단자 지주을 포함한다. N번째 전지의 음극이든지 양극은 제1축전지의 양극이든지 또는 음극에 각각 전기적으로 접속된다.
본 발명의 또 다른 양태에 따라서, 본 발명에 따른 배터리 팩을 제조하는 방법이 제공된다. 이러한 방법은 (a) 금속판(metal sheet)에서, 캐리어와 일체인 양극 접점 및 음극 접점을 포함하는 배터리 팩 접점 조합을 스탬핑하는 단계, (b) 선택 도금된 표면 및 용접 가능한 노출 표면을 정하기 위해서 양극 접점 및 음극 접점을 선택 도금하는 단계, (c) 양극 접점 및 음극 접점의 용접 가능한 노출 표면을 양극 단자 및 음극 단자 각각에 용접하는 단계, 및 (d) 접점들로부타 캐리어를 분리시키는 단계를 포함한다. 단계 (a)는 캐리어와 접점들 사이에 스코어 라인을 형성하는 단계를 포함한다. 이와 관련하여, 단계 (d)는 스코어 라인을 따라서 캐리어의 강도를 약화시키므로서 실시될 수 있다. 단계 (b)는 접점들을 금으로 선택 도금하므로서 실시된다.
본 발명의 상기 및 기타 양태들과 장점들은 첨부한 도면을 참조하여 자세히 설명될 것이다.
도 3은 본 발명에 의한 배터리 팩 내의 축전지(battery cell)들의 배열을 나타낸 것이다. 배터리 팩은, 예를 들어, 네 개의 축전지를 포함하는 것으로 나타나 있다. 이것은 단지 예일 뿐 다른 수의 전지가 포함될 수도 있으며, 축전지의 수를 네 개로 제한하는 것은 아니라는 것을 해당 기술의 당업자들은 잘 알고 있을 것이다.
축전지(12)는 서로 인접 배치되어 직렬로 접속되고 양극 단자(14)와 음극 단자(16)를 형성한다. 양극 단자 및 음극 단자(14, 16)에는, 이동 통신 장치(나타내지 않음)와 같이, 배터리 팩에 의해 전력 공급된 장치의 리드선(lead)을 연결시키기에 적합하다.
도 3에서 나타낸 바와 같이, 축전지들은 양극 단자(14) 및 음극 단자(16)를 제외하고, 한 축전지의 음극이 인접 배치되어 인접 축전지의 양극과 전기적으로 연결되는 방식으로 배열된다.
단자(14, 16) 및 배터리 팩 동력을 갖춘 장치의 접촉 리드선 사이를 확실하게 접촉시키기 위해서, 금 또는 금 도금된 접점을 이용하는 것이 좋다. 그러나, 종래에는 장치 리드선들과 접촉시키기 위해 금 또는 금 도금된 접점들을 단자(14, 16)에 고착시키는 것이 어려웠었다. 도 4에 나타낸 본 발명에 따라서, 배터리 팩 접점 조합(20)은 선택 도금된 접점들을 배터리 열의 단자(14, 16)에 확실히 고착시키기 위해 사용된다. 접점 조합(20)은 캐리어(22), 캐리어와 일체로 형성된 제1접점(24), 및 캐리어(22)와 일체로 형성된 제2접점(26)으로 구성된다. 접점 조합(20)은 니켈과 같은 금속판에서 스탬프된다. 캐리어(22)와 제1 및 제2접점(24, 26) 각각의 사이에는 스코어 라인(score line)(28)이 있다. 접점(24, 26)은, 예를 들어, 금으로 도금되어 각 접점(24, 26) 상에는 선택 도금된 표면(30)과 용접 가능한 노출 표면(32)이 존재하게 된다. 선택 도금되는 표면은 종래의 방법으로 도금된다.
접점(24, 26) 및 선택 도금되는 부분의 크기는 전화기의 매팅 접속기(mating connector)의 단자 피치(terminal pitch)와 배터리 팩에서 사용된 전지의 직경에 따라 결정된다. 양극 단자 지주를 나타내는 접점에는 더 작은 '+' 극관(cap)에 용접하기에 충분한 도금되지 않은 표면이 있어야 한다. 또한, 단락 회로가 되는 것을 막기 위한 절연기가 없기 때문에, 전체 접점 크기는 인접 전지 음극단과 접촉되지 않도록 설계되어야 한다. 음극 단자 지주를 나타내는 접점은 용접을 하기에 충분한 도금되지 않은 표면을 여유로 두어야 하며, 한편 양극 접점에 대해서 적당히 선택 도금된 표면이 있어야 한다. 이것은 양극 접점과 음극 접점의 선택 도금된 표면이 전화기에서 매팅 배터리 접속기 단자 피치와 동등한 거리(또는 간격)로 격리되게 한다.
조립시, 캐리어(22)는 단자(14, 16) 주변에 있는 접점(24, 26)을 지지하고, 접점(24, 26)의 용접 가능한 노출 표면(32)은 각 단자(14, 16)에 용접된다. 캐리어(22)는 스코어 라인(28)을 따라서 강도가 약화되어 조합에서 분리된다. 그 결과 접점들은 단자(14, 16)에 확실히 용접되고 배터리 팩에 의해 전력 공급되는 장치의 리드선과 접속되는 금-도금된 표면을 제공한다.
도 5A 및 도 5B는 본 발명에 의한 접점 조합의 실시예를 나타낸 것이다. 도 5A에서, 캐리어(22') 및 그와 일체인 단일 접점(24')은 거의 L 모양을 이루는데, 여기서 캐리어(22')는 L형의 제1다리이고, 접점(24')은 L형의 제2다리가 된다. 접점(24') 역시 용접 가능한 노출 표면(32') 및 선택 도금된 표면(30')을 포함한다. 선택 도금된 표면(30')은 제2다리의 말단부에 배치되고 제1다리와 평행하다. 캐리어(22') 및 접점(24') 사이에는 스코어 라인(28')이 있다.
도 5B에서, 캐리어(22") 및 접점(24")은 T 모양을 이루고 있는데, 캐리어(22")가 T형의 기부가 되고 접점(24")이 T형의 교차 부재이다. 접점(24") 역시 용접 가능한 노출 표면(32")과 선택 도금된 표면(30")으로 이루어져 있다. 이러한 실시예에서, 선택 도금된 표면(30")은 T형 교차 부재의 가장 바깥 부분을 가로질러 기부와 수직으로 배치된다.
또 다른 대안으로서(나타내지 않음), 도 2에 나타낸 전지 장치가 본 발명에 따른 배터리 팩 접점 조합으로 사용될 수 있다. 이러한 장치에서, 접점 조합(20)은 도 4에 나타낸 것과 유사하게 만들어질 수 있지만, 양극 및 음극 단자 지주에 상응하는 가장 바깥쪽 전지들에 인접 접점(24, 26)을 위치시키기 위한 캐리어(22)는 더 길다.
배터리 팩의 표면에서 액세스하기 위해서, 용접 가능한 노출 표면(32) 및 선택적으로 용접된 표면(30)은 도 6에 나타낸 바와 같이 90°의 각으로 휘어진다.
본 발명에 의한 구조에 따라서, 이동 통신 장치 또는 그와 동종의 장치를 위한 배터리 팩이 더 작게 만들어질 수 있으며, 또한 장치와의 우수한 접속이 보장된다. 본 발명의 배터리 팩 접점 조합을 이용하므로서 품목 제어 및 물품 취급 문제가 해결된다. 또한 배터리 팩의 전지들이 단일 조립 라인으로 제조될 수 있기 때문에 배터리 팩을 제조하는 것이 더 쉬워진다.
비록 본 발명이 현재 가장 현실적이고 바람직한 실시예를 토대로 하여 설명되었다 할지라도, 본 발명이 설명된 실시예에 국한되는 것은 아니라는 것을 해당 기술의 당업자들은 알고 있을 것이다. 본 발명은 다양하게 수정되고 변형 실시될 수 있지만 이는 청구항으로 정해진 본 발명의 범위에 포함된다.
Claims (20)
- 배터리 팩 접점 조합(battery pack contact assembly)에 있어서:용접 가능한 전도 물질로 만들어진 캐리어(carrier); 및용접 가능한 노출 표면 및 선택 도금된 표면으로 이루어진, 상기 캐리어와 일체로 형성된 제1접점을 포함하는 것을 특징으로 하는 배터리 팩 접점 조합.
- 제1항에 있어서, 용접 가능한 노출 표면 및 선택 도금된 표면으로 이루어진, 상기 캐리어와 일체로 형성된 제2접점을 포함하는 것을 특징으로 하는 조합.
- 제2항에 있어서, 상기 캐리어와 상기 제1접점 사이 및 상기 캐리어와 상기 제2접점 사이에 있는 스코어 라인(score line)을 더 포함하는 것을 특징으로 하는 조합.
- 제2항에 있어서, 상기 용접 가능한 전도 물질은 니켈을 포함하는 것을 특징으로 하는 조합.
- 제4항에 있어서, 상기 선택 도금된 표면은 금으로 도금된 것을 특징으로 하는 조합.
- 제2항에 있어서, 상기 캐리어는 U자 형태이고, 상기 제1 및 제2접점은 U자형의 단에서 연장되는 것을 특징으로 하는 조합.
- 제6항에 있어서, 상기 제1 및 제2접점은 U자형의 단(end)들로부터 서로를 향해 연장되고, 상기 선택 도금된 표면들은 상기 제1 및 제2접점의 가장 안쪽 단들에 배치되는 것을 특징으로 하는 조합.
- 제1항에 있어서, 상기 캐리어 및 상기 접점은 L형을 이루는데, 상기 캐리어는 L형의 제1다리가 되고 상기 접점은 L형의 제2다리가 되는 것을 특징으로 하는 조합.
- 제8항에 있어서, 상기 선택 도금된 표면은 상기 제2다리의 말단부에서 상기 제1다리와 평행하게 배치되는 것을 특징으로 하는 조합.
- 제1항에 있어서, 상기 캐리어 및 상기 접점은 T-형태를 취하는데, 상기 캐리어는 T형의 기부(base)가 되고 상기 접점은 T형의 교차 부재(cross member)가 되는 것을 특징으로 하는 조합.
- 제10항에 있어서, 상기 선택 도금된 표면은 교차 부재의 가장 바깥쪽 부분을 가로질러 상기 기부와 직각으로 배치되는 것을 특징으로 하는 조합.
- 제1항에 있어서, 상기 용접 가능한 노출 표면 및 상기 선택 도금된 표면은 90°의 각으로 휘어진 것을 특징으로 하는 조합.
- 제1항에 있어서, 상기 용접 가능한 노출 표면은 축전지의 전극(contact pole)에 용접되기에 알맞고, 상기 선택 도금된 표면은 배터리 팩에 의해 전력 공급된 장치의 리드선을 접속하기에 적합한 것이 특징인 조합.
- 배터리 팩에 있어서:배터리 팩에 의해 전력 공급된 장치의 리드선을 접속시키기에 적합한 양극 단자 및 음극 단자 지주를 포함하는, 서로 인접 배치되어 직렬로 접속된 다수의 축전지; 및상기 양극 단자 및 상기 음극 단자, 각각에 용접되는 상기 용접 가능한 노출 표면, 및 배터리 팩에 의해 전력 공급된 장치의 리드선들을 접속시키기에 적합한 상기 선택 도금된 표면으로 이루어진 양극 접점 및 음극 접점 각각을 포함하는 것을 특징으로 하는 배터리 팩.
- 제14항에 있어서, 상기 양극 접점 및 상기 음극 접점은 니켈로 형성되며, 상기 선택 도금되는 표면들은 금으로 도금되는 것이 특징인 배터리 팩.
- 제14항에 있어서, N개의 축전지를 포함하는데 N은 적어도 네 개이며, 상기 축전지들은 한 축전지의 음극이 인접 배치되고 인접 축전지의 양극에 전기적으로 접속되는 형태로 배열되고, (N-1)번째 전지의 양극 및 음극 중 하나는 상기 양극 단지 지주 및 상기 음극 단자 중 상응하는 하나를 포함하고, N번째 전지의 양극 및 음극 중 다른 하나는 상기 양극 단자 및 상기 음극 단자 중 상응하는 다른 하나를 포함하며, 여기에서 상기 N번째 전지의 음극 및 양극 중 하나는 제1축전지의 양극 및 음극 중 하나에 전기적으로 접속되는 것을 특징으로 하는 배터리 팩.
- 배터리 팩이 전원인 장치의 리드선들과, 양극 접점 및 음극 접점을 접속시키기에 적합한 양극 단자 및 음극 단자를 포함하는, 서로 인접 배치되어 직렬로 연결된 다수의 축전지들을 포함하는 배터리 팩을 제조하는 방법에 있어서:(a) 금속판(metal sheet)에서, 캐리어와 일체인 양극 접점 및 음극 접점을 포함하는 배터리 팩 접점 조합을 스탬핑하는 단계;(b) 선택 도금된 표면과 용접 가능한 노출 표면을 정하기 위해서 양극 접점 및 음극 접점을 선택 도금하는 단계;(c) 양극 접점 및 음극 접점의 용접 가능한 노출 표면을 양극 단자 및 음극 단자에 용접하는 단계; 및(d) 접점들로부터 캐리어를 분리시키는 단계를 포함하는 것을 특징으로 하는 방법.
- 제17항에 있어서, 단계 (a)는 캐리어 및 접점들 사이에 스코어 라인을 형성하는 단계를 포함하는 것을 특징으로 하는 방법.
- 제18항에 있어서, 단계 (d)는 스코어 라인을 따라서 캐리어의 강도를 약화시키므로서 실시되는 것을 특징으로 하는 방법.
- 제17항에 있어서, 단계 (b)는 선택적으로 금으로 도금하므로서 실시되는 것을 특징으로 하는 방법.
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US08/702,138 US5830598A (en) | 1996-08-15 | 1996-08-15 | Battery pack incorporating battery pack contact assembly and method |
US8/702,138 | 1996-08-15 | ||
US08/702,138 | 1996-08-15 |
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KR20000029493A true KR20000029493A (ko) | 2000-05-25 |
KR100340949B1 KR100340949B1 (ko) | 2002-06-20 |
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US (1) | US5830598A (ko) |
EP (1) | EP0944927B1 (ko) |
JP (1) | JP4322962B2 (ko) |
KR (1) | KR100340949B1 (ko) |
CN (1) | CN1228200A (ko) |
AU (1) | AU725270B2 (ko) |
BR (1) | BR9711132A (ko) |
DE (1) | DE69734458T2 (ko) |
EE (1) | EE03712B1 (ko) |
RU (1) | RU2189091C2 (ko) |
TR (1) | TR199900313T2 (ko) |
WO (1) | WO1998007203A1 (ko) |
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1996
- 1996-08-15 US US08/702,138 patent/US5830598A/en not_active Expired - Lifetime
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1997
- 1997-08-13 KR KR1019997000515A patent/KR100340949B1/ko not_active IP Right Cessation
- 1997-08-13 WO PCT/US1997/014107 patent/WO1998007203A1/en active IP Right Grant
- 1997-08-13 EP EP97936480A patent/EP0944927B1/en not_active Expired - Lifetime
- 1997-08-13 CN CN97197374A patent/CN1228200A/zh active Pending
- 1997-08-13 RU RU99105124/09A patent/RU2189091C2/ru not_active IP Right Cessation
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- 1997-08-13 JP JP50994998A patent/JP4322962B2/ja not_active Expired - Lifetime
- 1997-08-13 TR TR1999/00313T patent/TR199900313T2/xx unknown
- 1997-08-13 DE DE69734458T patent/DE69734458T2/de not_active Expired - Lifetime
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EE03712B1 (et) | 2002-04-15 |
DE69734458T2 (de) | 2006-07-13 |
WO1998007203A1 (en) | 1998-02-19 |
RU2189091C2 (ru) | 2002-09-10 |
EP0944927A1 (en) | 1999-09-29 |
AU3913997A (en) | 1998-03-06 |
JP2000516383A (ja) | 2000-12-05 |
TR199900313T2 (xx) | 1999-04-21 |
JP4322962B2 (ja) | 2009-09-02 |
DE69734458D1 (de) | 2005-12-01 |
CN1228200A (zh) | 1999-09-08 |
EE9900051A (et) | 1999-08-16 |
US5830598A (en) | 1998-11-03 |
KR100340949B1 (ko) | 2002-06-20 |
BR9711132A (pt) | 1999-08-17 |
EP0944927B1 (en) | 2005-10-26 |
AU725270B2 (en) | 2000-10-12 |
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