JP2008218080A - Battery pack - Google Patents

Battery pack Download PDF

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Publication number
JP2008218080A
JP2008218080A JP2007051280A JP2007051280A JP2008218080A JP 2008218080 A JP2008218080 A JP 2008218080A JP 2007051280 A JP2007051280 A JP 2007051280A JP 2007051280 A JP2007051280 A JP 2007051280A JP 2008218080 A JP2008218080 A JP 2008218080A
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frame
frame case
battery
case
battery pack
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JP5094162B2 (en
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Naoki Suetsugu
直樹 末次
Takuya Matsuda
卓也 松田
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Sanyo Electric Co Ltd
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Sanyo Electric Co Ltd
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    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries

Abstract

<P>PROBLEM TO BE SOLVED: To firmly connect a frame case while preventing connection of a second frame case in a reverse direction. <P>SOLUTION: The battery pack is provided with a battery core 2 of a square battery 1 arranged in the frame case 3 and an outer label 4 is adhered on a surface. The frame case 3 consists of a first frame case 3A and a second frame case 3B having a form to connect connecting frames 7 of a same length at both sides of a base frame 6 at a right angle. The second frame case 3B has an asymmetric form with respect to the top and bottom and specifies a connection posture to the first frame case 3A. In the battery pack, an insulating plate 15 is provided between one of the connection frames 7 of the second frame case 3B and an outer circumference of the square battery 1 and a connection male part 8 is provided at one of the insulating plate 15 and the connection frames 7 of the second frame case 3B and a connection female part 9 for connecting this connection male part 8 is provided at the other one. The posture of the second frame case 3B is specified by connecting the connection male part 8 with the connection female part 9 and the second frame case 3B is connected to the first frame case 3A. <P>COPYRIGHT: (C)2008,JPO&INPIT

Description

本発明は、プラスチックを枠形状に成形している枠ケースの内側に角形電池の電池コアを配置して電池組立とし、この電池組立に外装ラベルを付着してなるパック電池に関し、とくに枠ケースを2分割して互いに連結しているパック電池に関する。   The present invention relates to a battery pack in which a battery core of a rectangular battery is arranged inside a frame case in which plastic is molded into a frame shape to form a battery assembly, and an exterior label is attached to the battery assembly. The present invention relates to a battery pack divided into two and connected to each other.

角形電池の電池コアの外周を枠ケースでカバーし、その表面に外装ラベルを付着しているパック電池は開発されている。(特許文献1参照)   A battery pack has been developed in which the outer periphery of a battery core of a rectangular battery is covered with a frame case, and an exterior label is attached to the surface. (See Patent Document 1)

特許文献1のパック電池の分解斜視図を図1に示す。このパック電池は、以下のようにして組み立てられる。
(1)角形電池81に出力端子85を有する回路基板91が連結されて電池コア82となる。
(2)電池コア82が、プラスチックをコ字状に成形している第1の枠ケース83Aに連結される。
(3)第1の枠ケース83Aに、コ状の第2の枠ケース83Bを連結して、電池組立92とする。
(4)電池組立92の表面に外装ラベル84を付着する。
An exploded perspective view of the battery pack of Patent Document 1 is shown in FIG. This battery pack is assembled as follows.
(1) A circuit board 91 having an output terminal 85 is connected to the rectangular battery 81 to form a battery core 82.
(2) The battery core 82 is connected to a first frame case 83A in which plastic is molded in a U shape.
(3) The U-shaped second frame case 83B is connected to the first frame case 83A to form a battery assembly 92.
(4) The exterior label 84 is attached to the surface of the battery assembly 92.

以上の方法で組み立てられるパック電池は、第1の枠ケース83Aに、第2の枠ケース83Bを決められた姿勢で連結する必要がある。それは、第2の枠ケース83Bが表裏を非対称な形状に成形しているからである。表裏に非対称な第2の枠ケース83Bは、パック電池を電気機器から取り出すためのツマミ90を片側に設けることができ、また電池コア82の形状を表裏に非対称な形状とすることができる。表裏に非対称な形状の第2の枠ケース83Bは、連結枠87の表面に、逆挿入阻止マーキング93を設けて、第1の枠ケース83Aに決められた姿勢で連結することができる。組み立てる作業者が逆挿入阻止マーキング93を確認して、第2の枠ケース83Bを第1の枠ケース83Aに連結できるからである。逆挿入阻止マーキング93は、プラスチック製の第2の枠ケース83Bを成形する工程で、図1に示すように、連結枠87の表面に凹凸のシボ表示で設けることができる。ただ、成形工程で設けられる逆挿入阻止マーキングは、見えにくくて正確に確認することが難しく、製造工程で間違って第2の枠ケースを逆方向に連結する弊害がある。   The battery pack assembled by the above method needs to connect the second frame case 83B to the first frame case 83A in a determined posture. This is because the second frame case 83B is formed with an asymmetric shape on the front and back. The asymmetric second frame case 83B on the front and back can be provided with a knob 90 for taking out the battery pack from the electric device on one side, and the shape of the battery core 82 can be asymmetric on the front and back. The second frame case 83B having an asymmetric shape on the front and back can be connected to the first frame case 83A in a posture determined by providing a reverse insertion prevention marking 93 on the surface of the connection frame 87. This is because the assembling operator can confirm the reverse insertion prevention marking 93 and connect the second frame case 83B to the first frame case 83A. The reverse insertion prevention marking 93 can be provided on the surface of the connection frame 87 in a concave / convex display as shown in FIG. 1 in the step of molding the plastic second frame case 83B. However, the reverse insertion prevention marking provided in the molding process is difficult to see and difficult to confirm accurately, and has the negative effect of erroneously connecting the second frame case in the reverse direction in the manufacturing process.

この欠点は、第1と第2の枠ケースの両側の連結枠を異なる長さに成形して解消できる。ただ、枠ケースの連結枠を異なる長さとすることは、以下の理由で好ましくない。第1の理由は、パック電池の外形をできる限りコンパクトにするために、細長い連結枠87をプラスチックで薄く成形することにあり、第2の理由は、第1の枠ケース83Aに角形電池81を入れた状態で、角形電池81にリード板94をスポット溶接して接続することにあり、第3の理由は、金型の抜き勾配から、連結枠87の先端を薄く成形することである。すなわち、第1の枠ケースに角形電池を入れた状態で角形電池にリード板を接続するには、第1の枠ケースに角形電池を入れる状態で角形電池1にリード板をスポット溶接できる構造とする必要がある。このため、第1の枠ケースの連結枠を短くして、第2の枠ケースの連結枠を長くする必要がある。さらに、連結枠を薄く成形することから、両端の連結枠を異なる長さとするには一方の連結枠を長くする必要があり、長い連結枠の先端が極めて薄くなって成形が難しくなる。このため、両側の連結枠を同じ長さに成形する第2の枠ケースは、一方の連結枠の先端が極めて薄くなることがなく、能率よく多量生産できる。   This drawback can be eliminated by forming the connecting frames on both sides of the first and second frame cases into different lengths. However, it is not preferable that the connecting frames of the frame case have different lengths for the following reason. The first reason is to make the elongated connecting frame 87 thin with plastic in order to make the outer shape of the battery pack as compact as possible, and the second reason is that the rectangular battery 81 is attached to the first frame case 83A. The lead plate 94 is spot-welded and connected to the rectangular battery 81 in the inserted state, and the third reason is to form the tip of the connecting frame 87 thinly from the draft angle of the mold. That is, in order to connect the lead plate to the prismatic battery with the square battery inserted in the first frame case, the lead plate can be spot welded to the prismatic battery 1 with the prismatic battery inserted in the first frame case. There is a need to. For this reason, it is necessary to shorten the connection frame of the first frame case and lengthen the connection frame of the second frame case. Further, since the connecting frame is formed thin, it is necessary to lengthen one connecting frame in order to make the connecting frames at both ends different in length, and the tip of the long connecting frame becomes extremely thin, making it difficult to form. For this reason, the 2nd frame case which shape | molds the connection frame of both sides in the same length can mass-produce efficiently, without the front-end | tip of one connection frame becoming very thin.

また、第1の枠ケースと第2の枠ケースの先端を、図1に示すように、逆には連結できない連結構造として、逆連結を阻止できるように考えられるが、現実にはこの構造によっては、枠ケースの逆連結を阻止できない。それは、連結枠の先端部の厚さが極めて薄いことから、現実には逆方向にも連結できるからである。さらに、図1のパック電池は、枠ケース83をしっかりと連結するために、第1の枠ケース83Aと第2の枠ケース83Bの連結枠87を超音波溶着しているので、枠ケース83の連結にも手間がかかる欠点があった。
特開2005−135770号公報
In addition, as shown in FIG. 1, it is considered that the front ends of the first frame case and the second frame case can be prevented from being reversely connected as shown in FIG. Cannot prevent reverse connection of the frame case. This is because the tip of the connecting frame is extremely thin, so that it can be connected in the opposite direction in practice. Further, in the battery pack of FIG. 1, the connection frame 87 of the first frame case 83A and the second frame case 83B is ultrasonically welded to firmly connect the frame case 83. There was a drawback that it took time to connect.
JP 2005-135770 A

本発明は、さらに以上の欠点を解決することを目的に開発されたもので、本発明の重要な目的は、第2の枠ケースが逆方向に連結されるのを確実に阻止しながら、枠ケースと電池コアとをしっかりと連結できるパック電池を提供することにある。   The present invention has been developed for the purpose of solving the above-mentioned drawbacks. An important object of the present invention is to prevent the second frame case from being connected in the reverse direction while securely preventing the frame from being connected in the reverse direction. An object of the present invention is to provide a battery pack capable of firmly connecting a case and a battery core.

本発明のパック電池は、前述の目的を達成するために以下の構成を備える。
本発明の請求項1のパック電池は、出力端子5を有する角形電池1の電池コア2と、この電池コア2を内側に配置する四角形の枠形である枠ケース3と、この枠ケース3の内側に角形電池1を配置する電池組立12の表面に付着される外装ラベル4とを備える。枠ケース3は、出力端子5を外部に表出する開口部19を有する第1の枠ケース3Aと、この第1の枠ケース3Aに連結してなる第2の枠ケース3Bとを有する。さらに、第1の枠ケース3Aと第2の枠ケース3Bはプラスチック製で、ベース枠6の両側に同じ長さの連結枠7を直角に連結する形状として全体の形状をコ字状とし、かつ第2の枠ケース3Bは表裏に非対称な形状であって、第1の枠ケース3Aへの連結姿勢を特定している。第1の枠ケース3Aと第2の枠ケース3Bは、連結枠7の先端部で互いに連結されて全体形状を枠形状とする枠ケース3を形成している。さらに、パック電池は、第2の枠ケース3Bの一方の連結枠7と角形電池1の外周との間に、角形電池1に連結してなる絶縁プレート15を配設し、この絶縁プレート15と第2の枠ケース3Bの連結枠7には、一方に連結雄部8を設けて、他方にはこの連結雄部8が連結される連結雌部9を設けている。パック電池は、連結雄部8を連結雌部9に連結して、第2の枠ケース3Bを第1の枠ケース3Aに連結すると共に、枠ケース3を電池コア2に連結している。
The battery pack of the present invention has the following configuration in order to achieve the aforementioned object.
The battery pack according to claim 1 of the present invention includes a battery core 2 of a rectangular battery 1 having an output terminal 5, a frame case 3 having a quadrangular frame shape in which the battery core 2 is disposed on the inside, The exterior label 4 attached to the surface of the battery assembly 12 which arrange | positions the square battery 1 inside is provided. The frame case 3 includes a first frame case 3A having an opening 19 that exposes the output terminal 5 to the outside, and a second frame case 3B that is connected to the first frame case 3A. Further, the first frame case 3A and the second frame case 3B are made of plastic, and the overall shape is a U-shape as a shape for connecting the connecting frames 7 of the same length on both sides of the base frame 6 at right angles, and The second frame case 3B has an asymmetric shape on the front and back sides, and specifies the connection posture to the first frame case 3A. The first frame case 3A and the second frame case 3B are connected to each other at the distal end portion of the connection frame 7 to form a frame case 3 having an overall shape as a frame shape. Further, the battery pack includes an insulating plate 15 connected to the rectangular battery 1 between the one connecting frame 7 of the second frame case 3B and the outer periphery of the rectangular battery 1. The connecting frame 7 of the second frame case 3B is provided with a connecting male part 8 on one side and a connecting female part 9 to which the connecting male part 8 is connected on the other side. In the battery pack, the connecting male part 8 is connected to the connecting female part 9, the second frame case 3B is connected to the first frame case 3A, and the frame case 3 is connected to the battery core 2.

本発明の請求項2のパック電池は、絶縁プレート15に連結雄部8を設けて、第2の枠ケース3Bの連結枠7に連結雌部9を設けており、この連結雌部9を、連結枠7の連結方向に長いスリットとしている。   The battery pack according to claim 2 of the present invention is provided with the connecting male portion 8 on the insulating plate 15 and the connecting female portion 9 on the connecting frame 7 of the second frame case 3B. The slit is long in the connecting direction of the connecting frame 7.

さらに、本発明の請求項3のパック電池は、第2の枠ケース3Bの連結枠7を第1の枠ケース3Aの連結枠7よりも長くして、連結雌部9又は連結雄部8を絶縁プレート15の端部に設けている。   Further, in the battery pack of claim 3 of the present invention, the connecting frame 7 of the second frame case 3B is made longer than the connecting frame 7 of the first frame case 3A, and the connecting female portion 9 or the connecting male portion 8 is provided. It is provided at the end of the insulating plate 15.

また、本発明の請求項4のパック電池は、第2の枠ケース3Bのベース枠6の厚さ方向の片側にツマミ10を設けている。   In the battery pack of claim 4 of the present invention, the knob 10 is provided on one side in the thickness direction of the base frame 6 of the second frame case 3B.

さらにまた、本発明の請求項5のパック電池は、絶縁プレート15を角形電池1の凸部電極側の端面に配設して、凸部電極1Aに電気接続されるリード板14と角形電池1の封口板1Bとを絶縁している。さらに、この絶縁プレート15は、凸部電極1Aを貫通させる貫通孔18を開口すると共に、凸部電極1Aの両側をカバーする形状として、一方の端部に連結雄部8を設けている。   Furthermore, in the battery pack of claim 5 of the present invention, the insulating plate 15 is disposed on the end face of the prismatic battery 1 on the convex electrode side, and the lead plate 14 and the rectangular battery 1 are electrically connected to the convex electrode 1A. The sealing plate 1B is insulated. Further, the insulating plate 15 has a through hole 18 that penetrates the convex electrode 1A and a shape that covers both sides of the convex electrode 1A, and is provided with a connecting male part 8 at one end.

本発明のパック電池は、第2の枠ケースが逆方向に連結されるのを阻止しながら、枠ケースと角形電池とをしっかりと連結できる特徴がある。それは、本発明のパック電池が、第2の枠ケースの一方の連結枠と角形電池の外周との間に、角形電池に連結してなる絶縁プレートを配設すると共に、この絶縁プレートと第2の枠ケースの連結枠には、一方に連結雄部を、他方にはこの連結雄部を連結する連結雌部を設けて、連結雄部を連結雌部に連結して、第2の枠ケースを第1の枠ケースに連結し、さらに枠ケースを電池コアに連結するからである。   The battery pack of the present invention is characterized in that the frame case and the square battery can be firmly connected while preventing the second frame case from being connected in the reverse direction. In the battery pack of the present invention, an insulating plate connected to the rectangular battery is disposed between one connecting frame of the second frame case and the outer periphery of the rectangular battery. The connecting frame of the frame case is provided with a connecting male part on one side and a connecting female part for connecting the connecting male part on the other side, and the connecting male part is connected to the connecting female part to provide a second frame case. Is connected to the first frame case, and the frame case is further connected to the battery core.

以下、本発明の実施例を図面に基づいて説明する。ただし、以下に示す実施例は、本発明の技術思想を具体化するためのパック電池を例示するものであって、本発明はパック電池を以下のものに特定しない。   Embodiments of the present invention will be described below with reference to the drawings. However, the example shown below illustrates the battery pack for embodying the technical idea of the present invention, and the present invention does not specify the battery pack as follows.

さらに、この明細書は、特許請求の範囲を理解しやすいように、実施例に示される部材に対応する番号を、「特許請求の範囲」および「課題を解決するための手段の欄」に示される部材に付記している。ただ、特許請求の範囲に示される部材を、実施例の部材に特定するものでは決してない。   Further, in this specification, in order to facilitate understanding of the scope of claims, numbers corresponding to the members shown in the examples are indicated in the “claims” and “means for solving problems” sections. It is added to the members. However, the members shown in the claims are not limited to the members in the embodiments.

図2ないし図8に示すパック電池は、出力端子5を有する角形電池1の電池コア2と、この電池コア2を内側に配置する四角形の枠形である枠ケース3と、この枠ケース3の内側に角形電池1を配置する電池組立12の表面に付着される外装ラベル4とを備える。   The battery pack shown in FIGS. 2 to 8 includes a battery core 2 of a rectangular battery 1 having an output terminal 5, a frame case 3 having a rectangular frame shape in which the battery core 2 is disposed inside, and a frame case 3. The exterior label 4 attached to the surface of the battery assembly 12 which arrange | positions the square battery 1 inside is provided.

[電池コア2]
電池コア2は、図4の分解斜視図に示すように、角形電池1に回路基板11を連結している。回路基板11は表面に出力端子5を固定しており、この出力端子5を枠ケース3に設けた開口部19から外部に表出する。回路基板11は、角形電池1との間に基板ホルダー16を配設している。この基板ホルダー16は、表面に回路基板11を嵌合させ、裏面に角形電池1を嵌合させて、回路基板11を角形電池1の定位置に配置する。基板ホルダー16は、リード板14で角形電池1に連結される回路基板11と角形電池1との間に挟まれて保持される。図4の電池コア2は、回路基板11を角形電池1に連結する一方のリード板14を保護素子17とする。保護素子17はPTCである。保護素子17は、一方のリード板14を角形電池1の凸部電極1Aに溶接して固定しており、他方のリード板14を回路基板11に連結している。
[Battery core 2]
As shown in the exploded perspective view of FIG. 4, the battery core 2 has a circuit board 11 coupled to the rectangular battery 1. The circuit board 11 has an output terminal 5 fixed on the surface, and the output terminal 5 is exposed to the outside through an opening 19 provided in the frame case 3. A substrate holder 16 is disposed between the circuit board 11 and the square battery 1. The substrate holder 16 has the circuit board 11 fitted to the front surface and the square battery 1 fitted to the back surface, and the circuit board 11 is disposed at a fixed position of the square battery 1. The substrate holder 16 is sandwiched and held between the circuit substrate 11 connected to the rectangular battery 1 by the lead plate 14 and the rectangular battery 1. In the battery core 2 of FIG. 4, one lead plate 14 that connects the circuit board 11 to the rectangular battery 1 is used as a protective element 17. The protection element 17 is PTC. The protective element 17 has one lead plate 14 welded and fixed to the convex electrode 1A of the square battery 1, and the other lead plate 14 is connected to the circuit board 11.

保護素子17のリード板14と角形電池1の封口板1Bとの間には絶縁プレート15を配設している。絶縁プレート15は、保護素子17のリード板14と角形電池1の封口板1Bとを絶縁する。角形電池1は、外装缶1Cの開口部を封口板1Bで閉塞する外形であって、封口板1Bに設けた凸部電極1Aと、封口板1B及び外装缶1Cとを異なる極性としている。図の電池コア2は、保護素子17を封口板1Bの凸部電極1Aに接続しているので、絶縁プレート15は封口板1Bの表面に配設されて、リード板14と封口板1Bとを絶縁する。リード板は、必ずしも凸部電極に接続されず、外装缶に接続することもあるので、リード板を外装缶に接続する電池コアにあっては、絶縁プレートは外装缶の表面に配設される。図に示す絶縁プレート15は、絶縁材のプラスチック製で、基板ホルダー16に一体的に成形している。一体成形される絶縁プレート15と基板ホルダー16は、全体の形状をL字状として、絶縁プレート15を角形電池1の端面に沿って配置し、基板ホルダー16を角形電池1の側面に沿って配置している。この構造は、角形電池1の封口板1Bと外装缶1Cの両方をリード板14から絶縁できる。ただ、絶縁プレートは、必ずしも基板ホルダーと一体的に成形する必要はなく、基板ホルダーと別部材とすることもできる。   An insulating plate 15 is disposed between the lead plate 14 of the protection element 17 and the sealing plate 1B of the rectangular battery 1. The insulating plate 15 insulates the lead plate 14 of the protection element 17 from the sealing plate 1B of the rectangular battery 1. The rectangular battery 1 has an outer shape in which the opening of the outer can 1C is closed with the sealing plate 1B, and the convex electrode 1A provided on the sealing plate 1B has a different polarity from the sealing plate 1B and the outer can 1C. In the illustrated battery core 2, the protective element 17 is connected to the convex electrode 1A of the sealing plate 1B. Therefore, the insulating plate 15 is disposed on the surface of the sealing plate 1B, and the lead plate 14 and the sealing plate 1B are connected to each other. Insulate. Since the lead plate is not necessarily connected to the convex electrode and may be connected to the outer can, the insulating plate is disposed on the surface of the outer can in the battery core that connects the lead plate to the outer can. . The insulating plate 15 shown in the drawing is made of an insulating plastic and is integrally formed with the substrate holder 16. The insulating plate 15 and the substrate holder 16 that are integrally molded are L-shaped as a whole, the insulating plate 15 is disposed along the end surface of the prismatic battery 1, and the substrate holder 16 is disposed along the side surface of the prismatic battery 1. is doing. This structure can insulate both the sealing plate 1 </ b> B and the outer can 1 </ b> C of the square battery 1 from the lead plate 14. However, the insulating plate is not necessarily formed integrally with the substrate holder, and can be a separate member from the substrate holder.

絶縁プレート15は、保護素子17のリード板14と封口板1Bとを絶縁すれば足りる。ただ、図のパック電池は、この絶縁プレート15に第2の枠ケース3Bを連結して、第2の枠ケース3Bを第1の枠ケース3Aに連結する姿勢を特定する。したがって、絶縁プレート15は、凸部電極1Aの両側をカバーして、封口板1Bのほぼ全面をカバーする形状に成形している。すなわち、絶縁プレート15の外形を封口板1Bの外形としている。この絶縁プレート15は、凸部電極1Aを貫通させる貫通孔18を設けている。   The insulating plate 15 only needs to insulate the lead plate 14 of the protection element 17 from the sealing plate 1B. However, the battery pack of the figure connects the second frame case 3B to the insulating plate 15 and specifies the posture of connecting the second frame case 3B to the first frame case 3A. Therefore, the insulating plate 15 is formed in a shape that covers both sides of the convex electrode 1A and covers almost the entire surface of the sealing plate 1B. That is, the outer shape of the insulating plate 15 is the outer shape of the sealing plate 1B. This insulating plate 15 is provided with a through hole 18 through which the convex electrode 1A passes.

さらに、絶縁プレート15は、第2の枠ケース3Bを連結する連結雄部8を表面に突出して設けている。絶縁プレート15の連結雄部8を、図4、図6、図7の拡大図、及び、図9ないし図11に示している。これらの図に示す連結雄部8は、封口板1Bに沿って細長く伸びる突出部である。連結雄部8である突出部は、その幅を絶縁プレート15の幅よりも狭く、図においては、絶縁プレート15の幅の1/4ないし1/8としている。さらに、連結雄部8の突出部は、細長い形状として、第2の枠ケース3Bの挿入方向に向かって登り勾配に傾斜する形状としている。さらに、突出部からなる連結雄部8は、絶縁プレート15の端部に設けている。この絶縁プレート15は、第2の枠ケース3Bをスムーズに挿入できる特徴がある。それは、連結雄部8からなる突出部を傾斜する姿勢とすると共に、絶縁プレート15の端部に配設しているからである。絶縁プレート15の端部にある突出部からなる連結雄部8は、第1の枠ケース3Aに連結する連結枠7の先端から離れた位置にある。ここに位置する突出部からなる連結雄部8は、連結枠7に設けた後述する連結雌部9であるスリットに案内される。連結雄部8の突出部を連結雌部9のスリットに案内する状態で、第2の枠ケース3Bの先端は、突出部で変形されることなく、第1の枠ケース3Aの連結枠7に無理なく連結される。さらに、第1の枠ケース3Aに連結された第2の枠ケース3Bは、先端部を第1の枠ケース3Aに連結し、先端から離れた後端部を絶縁プレート15を介して電池コア2に連結することから、互いに離れた2カ所をしっかりと固定できる特徴も実現する。   Furthermore, the insulating plate 15 is provided with a connecting male portion 8 for connecting the second frame case 3B protruding from the surface. The connecting male part 8 of the insulating plate 15 is shown in the enlarged views of FIGS. 4, 6, and 7 and FIGS. The connecting male portion 8 shown in these drawings is a protruding portion that extends elongated along the sealing plate 1B. The width of the protruding portion which is the connecting male portion 8 is narrower than the width of the insulating plate 15, and is ¼ to 8 of the width of the insulating plate 15 in the drawing. Furthermore, the protrusion part of the connection male part 8 is made into the shape which inclines in a climbing gradient toward the insertion direction of the 2nd frame case 3B as an elongate shape. Further, the connecting male portion 8 formed of a protruding portion is provided at the end of the insulating plate 15. The insulating plate 15 has a feature that the second frame case 3B can be smoothly inserted. This is because the projecting portion composed of the connecting male portion 8 is inclined and disposed at the end of the insulating plate 15. The connecting male portion 8 formed of a protruding portion at the end of the insulating plate 15 is located away from the tip of the connecting frame 7 connected to the first frame case 3A. The connecting male portion 8 formed of the protruding portion located here is guided by a slit which is a connecting female portion 9 described later provided in the connecting frame 7. In a state where the protruding portion of the connecting male portion 8 is guided to the slit of the connecting female portion 9, the tip of the second frame case 3B is not deformed by the protruding portion, and is connected to the connecting frame 7 of the first frame case 3A. It is connected without difficulty. Further, the second frame case 3B connected to the first frame case 3A has a front end portion connected to the first frame case 3A, and a rear end portion away from the front end via the insulating plate 15 through the battery core 2. Since it is connected to the two, a feature that can firmly fix two places apart from each other is also realized.

[枠ケース3]
枠ケース3は、出力端子5を外部に表出する開口部19を有する第1の枠ケース3Aと、この第1の枠ケース3Aに連結してなる第2の枠ケース3Bとからなる。第1の枠ケース3Aと第2の枠ケース3Bはプラスチック製で、ベース枠6の両側に同じ長さの連結枠7を直角に連結する形状として全体の形状をコ字状としている。ベース枠6と連結枠7は、その両側に沿ってひさし20を設けて、ひさし20の内側に電池コア2を案内している。
[Frame case 3]
The frame case 3 includes a first frame case 3A having an opening 19 that exposes the output terminal 5 to the outside, and a second frame case 3B connected to the first frame case 3A. The first frame case 3 </ b> A and the second frame case 3 </ b> B are made of plastic, and the overall shape is a U-shape as a shape in which connecting frames 7 having the same length are connected to both sides of the base frame 6 at right angles. The base frame 6 and the connecting frame 7 are provided with eaves 20 along both sides thereof to guide the battery core 2 inside the eaves 20.

[第1の枠ケース3A]
第1の枠ケース3Aは、ベース枠6の内側に電池コア2の回路基板11を配設する。したがって、ベース枠6は、回路基板11に固定している出力端子5のある位置に開口部19を設けて、出力端子5をパック電池の外部に表出している。さらに、第1の枠ケース3Aは、パック電池を電気機器(図示せず)の定位置にセットするために位置決め凸部21をベース枠6の両端の片側表面に突出して設けている。この構造から、第1の枠ケース3Aは、表裏に非対称な形状に成形される。また、第1の枠ケース3Aは、回路基板11を検査するテスト穴22をベース枠6に設けて、このテスト穴22を剥離できるシール23で閉塞している。さらに、水没を検出する水没検査シール24を回路基板11に接着して、この水没検査シール24を第1の枠ケース3Aの外部に表出させている。水没検査シール24を外部に表出させるベース枠6は、水没検査シール24を外部から確認できる確認窓29を開口している。ただ、水没検査シールは、ベース枠の表面や内面に接着することもできる。
[First frame case 3A]
In the first frame case 3 </ b> A, the circuit board 11 of the battery core 2 is disposed inside the base frame 6. Therefore, the base frame 6 is provided with an opening 19 at a position where the output terminal 5 fixed to the circuit board 11 is located, and exposes the output terminal 5 to the outside of the battery pack. Further, the first frame case 3 </ b> A is provided with positioning protrusions 21 protruding from one side surfaces of both ends of the base frame 6 in order to set the battery pack at a fixed position of an electric device (not shown). From this structure, the first frame case 3A is formed into an asymmetric shape on both sides. Further, the first frame case 3A is provided with a test hole 22 for inspecting the circuit board 11 in the base frame 6, and is closed with a seal 23 that can peel off the test hole 22. Further, a submergence inspection seal 24 for detecting submergence is adhered to the circuit board 11, and the submergence inspection seal 24 is exposed to the outside of the first frame case 3A. The base frame 6 for exposing the submergence inspection seal 24 to the outside has a confirmation window 29 through which the submergence inspection seal 24 can be confirmed from the outside. However, the submersion inspection seal can be adhered to the surface or inner surface of the base frame.

さらに、図の第1の枠ケース3Aは、電池コア2に係止構造で連結している。図に示す係止構造は、第1の枠ケース3Aのひさし20に開口した係止孔30と基板ホルダー16の側面に設けた係止凸部31である。この第1の枠ケース3Aは、ひさし20の内側に電池コア2を案内する状態で、基板ホルダー16の係止凸部31を、ひさし20の係止孔30に挿入して、電池コア2の定位置に連結する。   Further, the first frame case 3A shown in the figure is connected to the battery core 2 by a locking structure. The locking structure shown in the figure is a locking hole 30 opened in the eaves 20 of the first frame case 3 </ b> A and a locking projection 31 provided on the side surface of the substrate holder 16. The first frame case 3 </ b> A is configured to insert the locking protrusion 31 of the substrate holder 16 into the locking hole 30 of the eave 20 while guiding the battery core 2 inside the eave 20. Connect in place.

さらに、第1の枠ケース3Aは、連結枠7の長さを、ここに角形電池1を入れる状態で、角形電池1にリード板14を溶接して連結できるようにする。この連結枠7は、凸部電極1Aを外部に表出する長さに成形される。第1の枠ケース3Aが凸部電極1Aをカバーしないので、凸部電極1Aは第2の枠ケース3Bの連結枠7でカバーする。したがって、図2と図3に示す枠ケース3は、第2の枠ケース3Bの連結枠7を第1の枠ケース3Aの連結枠7よりも長くしている。   Further, the first frame case 3A is configured such that the length of the connecting frame 7 can be connected to the prismatic battery 1 by welding the lead plate 14 with the prismatic battery 1 inserted therein. The connecting frame 7 is formed to a length that exposes the convex electrode 1A to the outside. Since the first frame case 3A does not cover the convex electrode 1A, the convex electrode 1A is covered by the connecting frame 7 of the second frame case 3B. Accordingly, in the frame case 3 shown in FIGS. 2 and 3, the connecting frame 7 of the second frame case 3B is longer than the connecting frame 7 of the first frame case 3A.

[第2の枠ケース3B]
第2の枠ケース3Bは、図9ないし図11に示すように、ベース枠6の厚さ方向の片側にツマミ10を設けて表裏に非対称な形状に成形して、第1の枠ケース3Aへの連結姿勢を特定している。ツマミ10は、パック電池を電気機器にセットする状態で、ユーザーがここをつかんで簡単に脱着するための突出部である。
[Second frame case 3B]
As shown in FIGS. 9 to 11, the second frame case 3B is provided with a knob 10 on one side in the thickness direction of the base frame 6 and formed into an asymmetric shape on the front and back sides, to the first frame case 3A. The connection posture is specified. The knob 10 is a projecting portion for the user to easily grasp and remove the battery pack in a state where the battery pack is set in the electric device.

第2の枠ケース3Bは、第1の枠ケース3Aに連結枠7の先端部で互いに連結される。第1の枠ケース3Aと第2の枠ケース3Bを連結枠7の先端で連結するために、連結枠7の先端部を係止構造に成形している。図3に示す第1の枠ケース3Aと第2の枠ケース3Bは、一方の連結枠7の先端に連結孔25を設けて、他方の連結枠7の先端に連結孔25に挿入される連結凸部27を設けて係止構造としている。第2の枠ケース3Bは、ベース枠6の内面に、互いに平行な姿勢で複数列の補強リブ27を一体的に成形して設けている。この補強リブ27は、角形電池1の湾曲する側面に嵌入できる形状に成形している。   The second frame case 3 </ b> B is connected to the first frame case 3 </ b> A at the tip of the connection frame 7. In order to connect the first frame case 3 </ b> A and the second frame case 3 </ b> B at the front end of the connection frame 7, the front end portion of the connection frame 7 is formed into a locking structure. The first frame case 3 </ b> A and the second frame case 3 </ b> B shown in FIG. 3 are provided with a connection hole 25 at the tip of one connection frame 7 and inserted into the connection hole 25 at the tip of the other connection frame 7. Protrusions 27 are provided to form a locking structure. The second frame case 3B is provided with a plurality of rows of reinforcing ribs 27 integrally formed on the inner surface of the base frame 6 in a posture parallel to each other. The reinforcing rib 27 is formed into a shape that can be fitted into the curved side surface of the rectangular battery 1.

さらに、第2の枠ケース3Bは、一方の連結枠7、図3において右側の連結枠7に、絶縁プレート15に設けている連結雄部8の突出部を案内する連結雌部9のスリットを設けている。スリットは、図7の矢印で示す連結枠7の連結方向に長いスリットとしている。図7と図8に示すように、スリットは、突出部よりも長くしている。この構造によると、連結雄部8の突出部を連結雌部9のスリットに案内した後、第2の枠ケース3Bの連結枠7の先端を第1の枠ケース3Aの先端に連結できる。すなわち、第2の枠ケース3Bの連結枠7の先端を第1の枠ケース3Aの連結枠7の先端に連結する状態で、第2の枠ケース3Bの連結枠7が突出部で曲げられることがなく、両連結枠7の先端を確実に連結できる位置に配置して連結できる。連結雌部9であるスリットは、連結雄部8である突出部を入れて、第2の枠ケース3Bの連結枠7を電池コア2に連結するものであるから、第2の枠ケース3Bを第1の枠ケース3Aに連結する状態で、突出部をスリットに案内できる位置と大きさに開口される。とくに、第2の枠ケース3Bの連結枠7の先端を第1の枠ケース3Aの連結枠7の先端に連結するに先だって、突出部をスリットに入れることができる位置に開口される。   Further, the second frame case 3B has a slit of the connecting female portion 9 that guides the protruding portion of the connecting male portion 8 provided on the insulating plate 15 in one connecting frame 7, that is, the right connecting frame 7 in FIG. Provided. The slits are long slits in the connecting direction of the connecting frame 7 indicated by the arrows in FIG. As shown in FIGS. 7 and 8, the slits are longer than the protrusions. According to this structure, after the protruding portion of the connecting male portion 8 is guided to the slit of the connecting female portion 9, the tip of the connecting frame 7 of the second frame case 3B can be connected to the tip of the first frame case 3A. That is, the connecting frame 7 of the second frame case 3B is bent at the protruding portion in a state where the leading end of the connecting frame 7 of the second frame case 3B is connected to the leading end of the connecting frame 7 of the first frame case 3A. There is no, and it can arrange | position and connect in the position which can connect the front-end | tip of both connection frames 7 reliably. The slit that is the connecting female portion 9 is provided with a protruding portion that is the connecting male portion 8 to connect the connecting frame 7 of the second frame case 3B to the battery core 2. In a state of being connected to the first frame case 3A, the protrusion is opened at a position and size that can guide the protrusion to the slit. In particular, prior to connecting the leading end of the connecting frame 7 of the second frame case 3B to the leading end of the connecting frame 7 of the first frame case 3A, the protruding portion is opened at a position where it can be put into the slit.

図に示すパック電池は、絶縁プレート15に連結雄部8の突出部を設けて、第2の枠ケース3Bの連結枠7に連結雌部9のスリットを設けている。この構造のパック電池は、枠ケース3の表面に外装ラベル4を接着して、第2の枠ケース3Bに設けたスリットを閉塞できる。また、突出部を第2の枠ケース3Bの連結枠7の表面から突出しない構造にできる。ただし、本発明のパック電池は、絶縁プレートに連結雌部を設けて、第2の枠ケースの連結枠に連結雄部を設けることができる。また、連結雌部は、スリットのように必ずしも貫通して設けることなく、連結雄部を案内する凹部とすることもできる。   In the battery pack shown in the figure, the protruding portion of the connecting male portion 8 is provided on the insulating plate 15, and the slit of the connecting female portion 9 is provided on the connecting frame 7 of the second frame case 3 </ b> B. In the battery pack having this structure, the exterior label 4 is adhered to the surface of the frame case 3, and the slit provided in the second frame case 3B can be closed. Further, the protruding portion can be structured not to protrude from the surface of the connecting frame 7 of the second frame case 3B. However, the battery pack of the present invention can be provided with a connecting female portion on the insulating plate and a connecting male portion on the connecting frame of the second frame case. Further, the connecting female part may be a recess that guides the connecting male part without necessarily being provided through like a slit.

[外装ラベル4]
外装ラベル4は、内面に粘着層を設けたプラスチックシートである。図2の外装ラベル4は、中間でU曲する状態に湾曲して、電池組立12の両面に接着される。さらに、ツマミ10を外部に突出させるように、ツマミ10の両側に突出片28を設けている。突出片28は、外装ラベル4の表面に付着されて、電池組立12に確実に付着される。第1の枠ケース3Aのベース枠6は、外装ラベル4を付着する部分に低く成形する段差部を設けて、ここに外装ラベル4を接着している。
[Exterior label 4]
The exterior label 4 is a plastic sheet having an adhesive layer on the inner surface. The exterior label 4 of FIG. 2 is bent in a U-curved state in the middle, and is adhered to both surfaces of the battery assembly 12. Further, projecting pieces 28 are provided on both sides of the knob 10 so as to project the knob 10 to the outside. The protruding piece 28 is attached to the surface of the exterior label 4 and is securely attached to the battery assembly 12. The base frame 6 of the first frame case 3 </ b> A is provided with a step portion to be formed low at a portion to which the exterior label 4 is attached, and the exterior label 4 is adhered thereto.

以上のパック電池は以下のようにして組み立てられる。
(1)図4に示すように、角形電池1にリード板14を介して回路基板11を連結して電池コア2とする。このとき、回路基板11と角形電池1との間に基板ホルダー16を挟着し、また、一方のリード板14である保護素子17と封口板1Bとの間に絶縁プレート15を配設する。絶縁プレート15は、貫通孔18に凸部電極1Aを挿入して定位置に配置される。
(2)図9に示すように、電池コア2を第1の枠ケース3Aに連結する。
(3)図7と図10に示すように、第2の枠ケース3Bを挿入して、連結枠7の先端を第1の枠ケース3Aの連結枠7の先端に連結して電池組立12とする。このとき、第2の枠ケース3Bの連結枠7に設けた連結雌部9であるスリットに、絶縁プレート15に設けた連結雄部8の突出部を案内して、第2の枠ケース3Bを決められた姿勢で第1の枠ケース3Aに連結する。
(4)図2に示すように、電池組立12の表面に外装ラベル4を接着してパック電池とする。
The above battery pack is assembled as follows.
(1) As shown in FIG. 4, the circuit board 11 is connected to the rectangular battery 1 via the lead plate 14 to form the battery core 2. At this time, the substrate holder 16 is sandwiched between the circuit board 11 and the prismatic battery 1, and the insulating plate 15 is disposed between the protective element 17 which is one lead plate 14 and the sealing plate 1B. The insulating plate 15 is arranged at a fixed position by inserting the convex electrode 1A into the through hole 18.
(2) As shown in FIG. 9, the battery core 2 is connected to the first frame case 3A.
(3) As shown in FIG. 7 and FIG. 10, the second frame case 3B is inserted, and the tip of the connecting frame 7 is connected to the tip of the connecting frame 7 of the first frame case 3A. To do. At this time, the protrusion of the connecting male portion 8 provided on the insulating plate 15 is guided to the slit which is the connecting female portion 9 provided on the connecting frame 7 of the second frame case 3B, and the second frame case 3B is attached. Connect to the first frame case 3A in the determined posture.
(4) As shown in FIG. 2, the exterior label 4 is bonded to the surface of the battery assembly 12 to obtain a battery pack.

本発明のパック電池は、携帯電話等の携帯機器に脱着できるように装着されて携帯機器に電力を供給する。   The battery pack of the present invention is mounted so as to be removable from a mobile device such as a mobile phone and supplies power to the mobile device.

従来のパック電池の分解斜視図である。It is a disassembled perspective view of the conventional battery pack. 本発明の一実施例にかかるパック電池の分解斜視図である。1 is an exploded perspective view of a battery pack according to an embodiment of the present invention. 図2に示すパック電池の電池組立の分解斜視図である。It is a disassembled perspective view of the battery assembly of the battery pack shown in FIG. 図3に示す電池組立の電池コアの分解斜視図である。It is a disassembled perspective view of the battery core of the battery assembly shown in FIG. 図2に示すパック電池の正面図である。It is a front view of the battery pack shown in FIG. 図5に示すパック電池のA−A線の断面図である。It is sectional drawing of the AA line of the battery pack shown in FIG. 第1の枠ケースに第2の枠ケースを連結する状態を示す電池組立の分解斜視図である。It is a disassembled perspective view of a battery assembly which shows the state which connects a 2nd frame case to a 1st frame case. 第1の枠ケースに第2の枠ケースを連結した状態を示す電池組立の斜視図である。It is a perspective view of a battery assembly which shows the state which connected the 2nd frame case to the 1st frame case. 電池コアに第1の枠ケースと第2の枠ケースを連結する状態を示す側面図である。It is a side view which shows the state which connects a 1st frame case and a 2nd frame case to a battery core. 第1の枠ケースに第2の枠ケースを連結する状態を示す側面図である。It is a side view which shows the state which connects a 2nd frame case to a 1st frame case. 第1の枠ケースに第2の枠ケースを連結した状態を示す電池組立の側面図である。It is a side view of a battery assembly which shows the state which connected the 2nd frame case to the 1st frame case.

符号の説明Explanation of symbols

1…角形電池 1A…凸部電極
1B…封口板
1C…外装缶
2…電池コア
3…枠ケース 3A…第1の枠ケース
3B…第2の枠ケース
4…外装ラベル
5…出力端子
6…ベース枠
7…連結枠
8…連結雄部
9…連結雌部
10…ツマミ
11…回路基板
12…電池組立
14…リード板
15…絶縁プレート
16…基板ホルダー
17…保護素子
18…貫通孔
19…開口部
20…ひさし
21…位置決め凸部
22…テスト穴
23…シール
24…水没検査シート
25…連結孔
26…連結凸部
27…補強リブ
28…突出片
29…確認窓
30…係止孔
31…係止凸部
81…角形電池
82…電池コア
83…枠ケース 83A…第1の枠ケース
83B…第2の枠ケース
84…外装ラベル
85…出力端子
87…連結枠
90…ツマミ
91…回路基板
92…電池組立
93…逆挿入阻止マーキング
94…リード板
DESCRIPTION OF SYMBOLS 1 ... Rectangular battery 1A ... Convex part electrode
1B ... Sealing plate
1C ... outer can 2 ... battery core 3 ... frame case 3A ... first frame case
3B: Second frame case 4 ... Exterior label 5 ... Output terminal 6 ... Base frame 7 ... Connection frame 8 ... Connection male part 9 ... Connection female part 10 ... Knob 11 ... Circuit board 12 ... Battery assembly 14 ... Lead plate 15 ... Insulating plate 16 ... Substrate holder 17 ... Protection element 18 ... Through hole 19 ... Opening 20 ... Eaves 21 ... Positioning convex part 22 ... Test hole 23 ... Seal 24 ... Submergence inspection sheet 25 ... Connecting hole 26 ... Connecting convex part 27 ... Reinforcement Rib 28 ... Projection piece 29 ... Confirmation window 30 ... Locking hole 31 ... Locking protrusion 81 ... Square battery 82 ... Battery core 83 ... Frame case 83A ... First frame case
83B ... second frame case 84 ... exterior label 85 ... output terminal 87 ... connection frame 90 ... knob 91 ... circuit board 92 ... battery assembly 93 ... reverse insertion prevention mark 94 ... lead plate

Claims (5)

出力端子(5)を有する角形電池(1)の電池コア(2)と、この電池コア(2)を内側に配置する四角形の枠形である枠ケース(3)と、この枠ケース(3)の内側に角形電池(1)を配置する電池組立(12)の表面に付着される外装ラベル(4)とを備え、前記枠ケース(3)が、前記出力端子(5)を外部に表出する開口部(19)を有する第1の枠ケース(3A)と、この第1の枠ケース(3A)に連結してなる第2の枠ケース(3B)とからなり、
第1の枠ケース(3A)と第2の枠ケース(3B)はプラスチック製で、ベース枠(6)の両側に同じ長さの連結枠(7)を直角に連結する形状として全体の形状をコ字状とし、かつ第2の枠ケース(3B)は表裏に非対称な形状であって、第1の枠ケース(3A)への連結姿勢が特定されており、第1の枠ケース(3A)と第2の枠ケース(3B)が連結枠(7)の先端部で互いに連結されて全体形状を枠形状とする枠ケース(3)を形成しており、
さらに、第2の枠ケース(3B)の一方の連結枠(7)と角形電池(1)の外周との間には、角形電池(1)に連結してなる絶縁プレート(15)が配設され、この絶縁プレート(15)と第2の枠ケース(3B)の連結枠(7)は、一方に連結雄部(8)を設けて、他方にはこの連結雄部(8)が連結される連結雌部(9)を設けており、連結雄部(8)が連結雌部(9)に連結されて、第2の枠ケース(3B)が第1の枠ケース(3A)に連結されると共に、枠ケース(3)を電池コア(2)に連結してなるパック電池。
A battery core (2) of a rectangular battery (1) having an output terminal (5), a frame case (3) having a rectangular frame shape in which the battery core (2) is disposed inside, and the frame case (3) And an exterior label (4) attached to the surface of the battery assembly (12), in which the square battery (1) is disposed, and the frame case (3) exposes the output terminal (5) to the outside. A first frame case (3A) having an opening (19) to be connected, and a second frame case (3B) connected to the first frame case (3A),
The first frame case (3A) and the second frame case (3B) are made of plastic, and the overall shape is formed by connecting the connecting frame (7) of the same length on both sides of the base frame (6) at a right angle. The U-shaped second frame case (3B) has an asymmetric shape on the front and back, and the connection posture to the first frame case (3A) is specified. The first frame case (3A) And the second frame case (3B) are connected to each other at the front end of the connection frame (7) to form a frame case (3) whose overall shape is a frame shape,
Furthermore, an insulating plate (15) connected to the prismatic battery (1) is disposed between one connecting frame (7) of the second frame case (3B) and the outer periphery of the prismatic battery (1). The connecting plate (7) of the insulating plate (15) and the second frame case (3B) is provided with a connecting male part (8) on one side and the connecting male part (8) on the other side. The connecting female part (9) is provided, the connecting male part (8) is connected to the connecting female part (9), and the second frame case (3B) is connected to the first frame case (3A). And a battery pack in which the frame case (3) is connected to the battery core (2).
絶縁プレート(15)が連結雄部(8)を有し、第2の枠ケース(3B)が連結枠(7)に連結雌部(9)を有しており、この有連結雌部(9)が、連結枠(7)の連結方向に長いスリットである請求項1に記載されるパック電池。   The insulating plate (15) has a connecting male part (8), and the second frame case (3B) has a connecting female part (9) in the connecting frame (7). ) Is a slit long in the connecting direction of the connecting frame (7). 第2の枠ケース(3B)の連結枠(7)が第1の枠ケース(3A)の連結枠(7)よりも長く、連結雌部(9)又は連結雄部(8)を絶縁プレート(15)の端部に設けてなる請求項1に記載されるパック電池。   The connecting frame (7) of the second frame case (3B) is longer than the connecting frame (7) of the first frame case (3A), and the connecting female part (9) or the connecting male part (8) is insulated plate ( The battery pack according to claim 1, wherein the battery pack is provided at an end of 15). 第2の枠ケース(3B)のベース枠(6)が、厚み方向の片側にツマミ(10)を設けている請求項1に記載されるパック電池。   The battery pack according to claim 1, wherein the base frame (6) of the second frame case (3B) is provided with a knob (10) on one side in the thickness direction. 絶縁プレート(15)が角形電池(1)の凸部電極側の端面に配設されて、凸部電極(1A)に電気接続されるリード板(14)と角形電池(1)の封口板(1B)とを絶縁しており、さらに、この絶縁プレート(15)は、凸部電極(1A)を貫通させる貫通孔(18)を開口すると共に、凸部電極(1A)の両側をカバーする形状として、一方の端部に連結雄部(8)を設けている請求項1に記載されるパック電池。   An insulating plate (15) is disposed on the end surface of the prismatic battery (1) on the convex electrode side, and a lead plate (14) electrically connected to the convex electrode (1A) and a sealing plate of the rectangular battery (1) ( 1B), and the insulating plate (15) has a shape that opens the through-hole (18) that penetrates the convex electrode (1A) and covers both sides of the convex electrode (1A). The battery pack according to claim 1, wherein a connecting male part (8) is provided at one end.
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Publication number Priority date Publication date Assignee Title
JP2009026631A (en) * 2007-07-20 2009-02-05 Nec Tokin Corp Lithium ion battery pack
JP2010161067A (en) * 2009-01-09 2010-07-22 Samsung Sdi Co Ltd Battery pack
KR20180049696A (en) * 2016-11-03 2018-05-11 삼성에스디아이 주식회사 Battery pack
US10483518B2 (en) 2016-07-11 2019-11-19 Samsung Sdi Co., Ltd. Secondary battery including pull tab protruding from bottom

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JP2006049047A (en) * 2004-08-03 2006-02-16 Sanyo Electric Co Ltd Battery pack and method of manufacturing battery pack
JP2006164579A (en) * 2004-12-03 2006-06-22 Sanyo Electric Co Ltd Battery pack
JP2006164558A (en) * 2004-12-02 2006-06-22 Sanyo Electric Co Ltd Battery pack
JP2006185823A (en) * 2004-12-28 2006-07-13 Sony Corp Battery

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JP2006049047A (en) * 2004-08-03 2006-02-16 Sanyo Electric Co Ltd Battery pack and method of manufacturing battery pack
JP2006164558A (en) * 2004-12-02 2006-06-22 Sanyo Electric Co Ltd Battery pack
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JP2009026631A (en) * 2007-07-20 2009-02-05 Nec Tokin Corp Lithium ion battery pack
JP2010161067A (en) * 2009-01-09 2010-07-22 Samsung Sdi Co Ltd Battery pack
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KR20180049696A (en) * 2016-11-03 2018-05-11 삼성에스디아이 주식회사 Battery pack
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KR102617690B1 (en) 2016-11-03 2023-12-26 삼성에스디아이 주식회사 Battery pack

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