JP3530007B2 - Battery storage structure - Google Patents

Battery storage structure

Info

Publication number
JP3530007B2
JP3530007B2 JP05115098A JP5115098A JP3530007B2 JP 3530007 B2 JP3530007 B2 JP 3530007B2 JP 05115098 A JP05115098 A JP 05115098A JP 5115098 A JP5115098 A JP 5115098A JP 3530007 B2 JP3530007 B2 JP 3530007B2
Authority
JP
Japan
Prior art keywords
battery
storage
fitting
convex
fixed
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
JP05115098A
Other languages
Japanese (ja)
Other versions
JPH11250880A (en
Inventor
靖之 玉木
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Kenwood KK
Original Assignee
Kenwood KK
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Kenwood KK filed Critical Kenwood KK
Priority to JP05115098A priority Critical patent/JP3530007B2/en
Publication of JPH11250880A publication Critical patent/JPH11250880A/en
Application granted granted Critical
Publication of JP3530007B2 publication Critical patent/JP3530007B2/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Classifications

    • 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

Landscapes

  • Charge And Discharge Circuits For Batteries Or The Like (AREA)
  • Battery Mounting, Suspending (AREA)

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【発明の属する技術分野】本発明はバッテリ収納構造に
係り、詳しくは移動体通信端末などに用いられるバッテ
リ収納構造に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a battery storage structure, and more particularly to a battery storage structure used in mobile communication terminals and the like.

【0002】[0002]

【従来の技術】従来、例えばコードレス電話機の子機、
PHS、または携帯電話などの移動体通信端末は、ケー
ス内部に使用者が長時間使用できるように、所定の大き
さと重量とを有したバッテリを備えている。このような
移動体通信端末では、携帯するのに優れた小型化したケ
ースと、このケースに効率的にバッテリを収納する収納
部とが必要となる。また、移動体通信端末は、その使用
目的から使用者が、使用中、または携帯中に落下させて
しまい、特に、所定の重量を備えたバッテリ部でケース
の破損を発生させてしまうことがあった。従って、この
ような移動体通信端末は、ケースを小型化するととも
に、バッテリ部の落下に対する耐久性を向上させること
が要求されていた。
2. Description of the Related Art Conventionally, for example, a cordless telephone handset,
A mobile communication terminal such as a PHS or a mobile phone is provided with a battery having a predetermined size and weight inside a case so that the user can use it for a long time. In such a mobile communication terminal, a compact case that is excellent in carrying and a storage section that efficiently stores the battery are required. Further, the mobile communication terminal may be dropped by the user during use or while being carried for the purpose of use, and in particular, the battery part having a predetermined weight may cause damage to the case. It was Therefore, in such a mobile communication terminal, it has been required to reduce the size of the case and improve the durability against the drop of the battery section.

【0003】図8は、このように落下耐久性を向上させ
た、従来のバッテリ収納構造を採用した携帯電話機を示
す斜視図である。また、図9は、収納部にバッテリを収
納したときの図8に示したC−C線の断面を示す断面図
である。図8に示すように、携帯電話機に採用した従来
のバッテリ収納構造は、リアケース40にバッテリ42
を収納する収納部40bを備え、この収納部40bにバ
ッテリ42を収納し、リアケース40にバッテリ蓋43
を嵌合することによりバッテリ42を収納するように構
造されている。また、バッテリ42とバッテリ蓋43と
の間には、携帯電話機を落下したときにバッテリ42に
よる衝撃を吸収する弾性部材44が装着されている。
FIG. 8 is a perspective view showing a mobile phone adopting a conventional battery storage structure which has improved drop durability. 9 is a cross-sectional view showing a cross section taken along the line CC of FIG. 8 when the battery is stored in the storage portion. As shown in FIG. 8, a conventional battery storage structure adopted in a mobile phone has a battery case 42 in a rear case 40.
A storage portion 40b for storing the battery 42 is stored in the storage portion 40b.
Is configured to be housed in the battery 42 by fitting. Further, between the battery 42 and the battery lid 43, an elastic member 44 that absorbs the impact of the battery 42 when the mobile phone is dropped is mounted.

【0004】ここで、バッテリ42は、矩形状で厚みを
有した形状に形成してあり、リアケース40の内部の電
子部品に電源を供給できるようにリード線(図示せず)
により接続されている。また、リアケース40は、バッ
テリ42を動かないように収納するため、背面に凹形状
に形成した収納部40bを設けてある。また、この収納
部40bの近傍には、矩形状に開口する係合穴40dを
設けてある。バッテリ蓋43は、リアケース40の収納
部40bを覆う形状に形成されており、この一端にツメ
部43aが一体に形成されている。また、弾性部材44
は、樹脂バネ、スポンジ、またはウレタンなどの弾性を
有する素材により形成されており、バッテリ42により
バッテリ蓋43に加わる負荷を吸収するために装着され
る。
Here, the battery 42 is formed in a rectangular shape having a thickness, and a lead wire (not shown) for supplying power to electronic components inside the rear case 40.
Connected by. Further, the rear case 40 is provided with a storage portion 40b formed in a concave shape on the back surface in order to store the battery 42 so as not to move. Further, an engaging hole 40d that opens in a rectangular shape is provided near the storage portion 40b. The battery lid 43 is formed in a shape that covers the storage portion 40b of the rear case 40, and a claw portion 43a is integrally formed at one end thereof. In addition, the elastic member 44
Is formed of an elastic material such as a resin spring, sponge, or urethane, and is attached to absorb the load applied to the battery lid 43 by the battery 42.

【0005】このように形成された従来のバッテリ収納
構造では、次のようにバッテリ42を収納部40bに収
納する。まず、バッテリ42をリアケース40に設けた
凹形状の収納部40bに収納する。収納部40bにバッ
テリ42を収納すると、このバッテリ42の上部にスポ
ンジ、またはウレタンなどの弾性素材により形成された
弾性部材44を設置する。その後、バッテリ蓋43を収
納部40bに嵌合する。このときバッテリ蓋43のツメ
部43aをリアケース40の係合穴40dに挿入させて
係合することによりバッテリ蓋43がリアケース40に
固定される。これによりリアケース40の収納部40b
にバッテリ42が収納される。
In the conventional battery housing structure thus formed, the battery 42 is housed in the housing portion 40b as follows. First, the battery 42 is stored in the recessed storage portion 40b provided in the rear case 40. When the battery 42 is stored in the storage portion 40b, the elastic member 44 formed of an elastic material such as sponge or urethane is installed on the battery 42. Then, the battery lid 43 is fitted into the storage portion 40b. At this time, the battery lid 43 is fixed to the rear case 40 by inserting and engaging the claw portion 43a of the battery lid 43 into the engagement hole 40d of the rear case 40. Thereby, the storage portion 40b of the rear case 40
The battery 42 is stored in.

【0006】図9に示すように、リアケース40の収納
部40bにバッテリ42を収納すると、バッテリ蓋43
とリアケース40との間の空間にバッテリ42と弾性部
材44とが収納される。このように、バッテリ蓋43と
バッテリ42との間に弾性部材44を介在させて、弾性
部材44の弾性力によりバッテリ42のガタツキを防止
している。この弾性部材44は、落下の際にバッテリ4
2により加わる負荷を緩和する吸収材の役割をする。こ
のように、従来のバッテリ収納構造は、リアケース40
の収納部40b内でバッテリ42のガタツキ、またはバ
ッテリ蓋43に加わる負荷を弾性部材44により吸収し
ていた。
As shown in FIG. 9, when the battery 42 is stored in the storage portion 40b of the rear case 40, the battery lid 43 is formed.
The battery 42 and the elastic member 44 are housed in the space between the rear case 40 and the rear case 40. In this way, the elastic member 44 is interposed between the battery lid 43 and the battery 42, and the elastic force of the elastic member 44 prevents the rattling of the battery 42. This elastic member 44 prevents the battery 4 from being dropped when dropped.
2 plays the role of an absorber that relieves the load applied. As described above, the conventional battery storage structure has the rear case 40.
The elastic member 44 absorbs the rattling of the battery 42 or the load applied to the battery lid 43 in the storage portion 40b.

【0007】[0007]

【発明が解決しようとする課題】しかしながら従来のバ
ッテリ収納構造では、落下の際にバッテリ42の負荷が
弾性部材44に加わるとともにバッテリ蓋43にも加わ
るため、この衝撃がバッテリ蓋43のツメ部43aに集
中してしまう。このため落下の際に、ツメ部43aが折
れたり、バッテリ蓋43が開いてしまう不具合があっ
た。また、バッテリ蓋43に所定の落下強度を確保させ
るためには、弾性部材を大きく、かつ厚くしたり、樹脂
厚を厚く設けなければならないため、ケース本体が大型
化するとともにバッテリ収納部の重量が重くなる不具合
があった。本発明は上述した課題を解決し、ケース内に
収納するバッテリのガタツキを防止するとともに、十分
な落下強度を備えたバッテリ収納構造を提供することを
目的とする。
However, in the conventional battery storage structure, when the battery 42 is dropped, the load of the battery 42 is applied to the elastic member 44 and also to the battery lid 43. Therefore, this impact is applied to the claw portion 43a of the battery lid 43. Concentrate on. Therefore, there is a problem that the claw portion 43a is broken or the battery lid 43 is opened when it is dropped. Further, in order to secure a predetermined drop strength to the battery lid 43, it is necessary to make the elastic member large and thick, or to provide a thick resin thickness, so that the case main body becomes large and the weight of the battery storage portion becomes large. There was a problem that it became heavy. An object of the present invention is to solve the above-mentioned problems and to provide a battery storage structure that prevents rattling of a battery stored in a case and has sufficient drop strength.

【0008】[0008]

【課題を解決するための手段】本発明は上述の課題を解
決するために、バッテリの取り出し方向に直交する横方
向から嵌合させてバッテリを収納部内に引っ掛け固定
きるようにバッテリまたは収納部の一方に凹部を他方に
凸部を各々設けた嵌合部を有し、この嵌合部にバッテリ
を横方向に押し付ける弾性体を設けるとともに、前記嵌
合部の凹部と凸部とが、前記バッテリと前記収納部との
前記横方向両側に複数個設けられたバッテリ収納構造と
する。また、本発明によるバッテリ収納構造の他の実施
形態として、バッテリの取り出し方向に直交する横方向
から嵌合させてバッテリを収納部内に引っ掛け固定でき
るようにバッテリまたは収納部の一方に凹部を他方に凸
部を各々設けた嵌合部を有し、この嵌合部にバッテリを
横方向に押し付ける弾性体を設けるとともに、バッテリ
と収納部との横方向の一辺側に凹部及び凸部を設け、こ
れに対向する他辺側に櫛歯状の小片を備えて取り出し方
向を固定する第2の嵌合部をさらに設けたバッテリ収納
構造とする。ここで、第2の嵌合部は、収納部に櫛歯状
の小片を設けて弾性体によりバッテリを押し付けて固
定、またはバッテリと収納部とに櫛歯状の小片を設けて
取り出し方向からお互いに嵌合して弾性体により押し付
けて固定することが好ましい。また、本発明によるバッ
テリ収納構造の更なる他の実施形態として、バッテリの
取り出し方向に直交する横方向から嵌合させてバッテリ
を収納部内に引っ掛け固定できるようにバッテリまたは
収納部の一方に凹部を他方に凸部を各々設けた嵌合部を
有し、この嵌合部にバッテリを横方向に押し付ける弾性
体を設けるとともに、バッテリと収納部との横方向の一
辺側に凹部及び凸部を設け、これに対向する他辺側の収
納部に櫛歯状の小片を、バッテリに櫛歯状の凹部を各々
設けて取り出し方向から嵌合して弾性体により押し付け
て固定する第3の嵌合部をさらに設けたバッテリ収納構
造とする。また、収納部には、バッテリを収納して封止
するように嵌合するバッテリ蓋をさらに設けることが好
ましい。
The present invention SUMMARY OF] In order to solve the problems described above, by lateral or al-fitted perpendicular to the extraction direction of the battery with a fixed hooking battery receiving portion
The battery or compartment so that the recess
Each have provided mating portions of the convex portions, Rutotomoni an elastic member that presses the battery laterally to the fitting portion, the fitting
The concave portion and the convex portion of the mating portion form the battery and the storage portion.
A plurality of battery storage structures are provided on both sides in the lateral direction . Another embodiment of the battery storage structure according to the present invention
As a form, transverse direction orthogonal to the battery removal direction
The battery can be hooked and fixed in the storage part by fitting
Make sure that the recess on one side of the battery or the
It has a fitting part where each part is provided, and the battery is attached to this fitting part.
An elastic body that can be pressed laterally is provided, and the battery
A concave portion and a convex portion on one side in the lateral direction between the
How to take out by providing a comb-shaped small piece on the other side facing it
Battery storage further provided with a second fitting portion for fixing the orientation
The structure. Here, the second fitting portion is comb-shaped in the storage portion.
A small piece of it and press the battery with an elastic body
Fixed, or by providing a comb-like small piece on the battery and storage
Fitted together from the direction of removal and pressed by the elastic body
It is preferable to fix it by fixing. In addition, the bag according to the present invention
As yet another embodiment of the battery storage structure,
Align the battery from the lateral direction, which is orthogonal to the take-out direction.
So that it can be hooked and fixed in the storage
Fit the fitting part with the concave part on one side and the convex part on the other side.
Has elasticity that pushes the battery laterally against this fitting
The body is installed and the battery and the storage compartment are laterally aligned.
The concave and convex parts are provided on the side and the other side opposite to this is accommodated.
Comb-shaped small pieces in the storage part and comb-shaped recesses in the battery
Provided, fitted from the extraction direction and pressed by the elastic body
Battery storage structure further provided with a third fitting portion for fixing
I will make it. Also, the battery is stored in the storage part and sealed.
It is preferable to additionally provide a battery lid that fits
Good

【0009】[0009]

【発明の実施の形態】次に添付図面を参照して本発明に
よるバッテリ収納構造の実施の形態を詳細に説明する。
図1は、本発明によるバッテリ収納構造を携帯電話機に
採用した第1の実施の形態を示す斜視図である。また、
図2は、収納部にバッテリを収納したときの図1に示し
たA−A線の断面を示す断面図である。また図3は、図
2示したB部の詳細を示す拡大図である。
BEST MODE FOR CARRYING OUT THE INVENTION Next, an embodiment of a battery storage structure according to the present invention will be described in detail with reference to the accompanying drawings.
FIG. 1 is a perspective view showing a first embodiment in which a battery storage structure according to the present invention is adopted in a mobile phone. Also,
FIG. 2 is a sectional view showing a section taken along the line AA shown in FIG. 1 when the battery is stored in the storage portion. Further, FIG. 3 is an enlarged view showing details of the B portion shown in FIG.

【0010】図1に示すように、本発明によるバッテリ
収納構造を携帯電話機に採用した第1の実施の形態は、
リアケース1にバッテリ2を収納する収納部1bを備
え、この収納部1bにバッテリ2を収納し、リアケース
1にバッテリ蓋3を嵌合することによりバッテリ2を収
納する構造を備えている。
As shown in FIG. 1, the first embodiment in which the battery storage structure according to the present invention is adopted in a mobile phone is as follows.
The rear case 1 is provided with an accommodating portion 1b for accommodating the battery 2, the accommodating portion 1b is accommodated with the battery 2, and the rear case 1 is fitted with the battery lid 3 to accommodate the battery 2.

【0011】ここで、バッテリ2は、矩形状で厚みを有
した長方形板状に形成してあり、リアケース1の内部の
電子部品に電源を供給できるようにリード線(図示せ
ず)により接続されている。このバッテリ2は、従来の
バッテリ収納構造とは異なり、一方の短辺の中央部に角
形の凸部2aが一体に形成されている。
Here, the battery 2 is formed into a rectangular plate having a rectangular shape and a thickness, and is connected by a lead wire (not shown) so that power can be supplied to electronic components inside the rear case 1. Has been done. Unlike the conventional battery storage structure, the battery 2 has a square convex portion 2a integrally formed at the center of one short side.

【0012】また、リアケース1は、バッテリ2を動か
ないように収納するために背面に凹形状に形成した収納
部1bを設けてある。この収納部1bは、バッテリ2に
対応して長方形状に形成されている。この収納部1bに
は、矩形状に開口する係合穴1dが設けてある。また、
収納部1bには、従来のバッテリ収納構造とは異なり、
バッテリ2の凸部2aが横から挿入される凹部1aを設
けてある。この凹部1aは、収納部1bに突出するよう
に設けてあり、収納方向に対して直交する後端面が塞が
れているとともに、側面の断面が逆L形となっている
(図2のB部参照)。この凹部1aには、バッテリ2を
係合穴1dの方向に(凹部1aの反対側)に押し付ける
ための弾性部材4が装着されている。この弾性部材4
は、スポンジ、またはウレタンなどの弾性を有する素材
により形成されている。また、リアケース1には、弾性
部材4により押し付けられるバッテリ2の端部が当接す
る壁部1cが形成されている。この壁部1cは、3枚の
小片が櫛歯状に垂直に所定の間隔を有して設けてある。
Further, the rear case 1 is provided with a storage portion 1b formed in a concave shape on the back surface in order to store the battery 2 so as not to move. The storage portion 1b is formed in a rectangular shape corresponding to the battery 2. The storage portion 1b is provided with an engagement hole 1d that opens in a rectangular shape. Also,
Unlike the conventional battery storage structure, the storage portion 1b has a
A concave portion 1a into which the convex portion 2a of the battery 2 is laterally inserted is provided. The concave portion 1a is provided so as to project into the storage portion 1b, the rear end surface orthogonal to the storage direction is closed, and the side surface has an inverted L-shape (B in FIG. 2). See section). An elastic member 4 for pressing the battery 2 toward the engagement hole 1d (on the opposite side of the recess 1a) is attached to the recess 1a. This elastic member 4
Is formed of an elastic material such as sponge or urethane. Further, the rear case 1 is formed with a wall portion 1c with which the end portion of the battery 2 pressed by the elastic member 4 abuts. In this wall portion 1c, three small pieces are provided vertically in a comb-like shape with a predetermined interval.

【0013】また、バッテリ蓋3は、リアケース1の収
納部1bを覆うように形成されており、この一端にツメ
部3aが一体に形成されている。このバッテリ蓋3は、
リアケース1の収納部1bに一部を係合させて装着さ
れ、一端のツメ部3aを係合穴1dに挿入することによ
り、収納部1bを覆った状態に固定される。
The battery lid 3 is formed so as to cover the storage portion 1b of the rear case 1, and a claw portion 3a is integrally formed at one end thereof. This battery lid 3
A part of the rear case 1 is attached to the storage part 1b so as to be engaged, and the claw part 3a at one end is inserted into the engagement hole 1d to fix the storage part 1b in a covered state.

【0014】このように形成された第1の実施の形態で
は、次のようにバッテリ2を収納部1bに収納する。ま
ず、バッテリ2を、凸部2aを収納方向と直交する横方
向から収納部1bの凹部1aに挿入しながら収納部1b
に収納する。このように、凹部1aに凸部2aを挿入す
ることにより、バッテリ2の収納方向の動きを固定する
ことができる。
In the first embodiment thus formed, the battery 2 is stored in the storage portion 1b as follows. First of all, the battery 2 is inserted into the concave portion 1a of the storage portion 1b while inserting the convex portion 2a from the lateral direction orthogonal to the storage direction.
To store. Thus, by inserting the convex portion 2a into the concave portion 1a, the movement of the battery 2 in the storage direction can be fixed.

【0015】この際、バッテリ2を収納部1bに収納し
たとき、凹部1a内の弾性部材4は凸部2aにより押し
つぶされる。従って、この押しつぶされた弾性部材4に
よりバッテリ2には係合穴1dの方向(凹部1aの反対
側)に弾性部材4の弾性力が加わり、この弾性力により
バッテリ2の端部は小片からなる壁部1cに押し付けら
れる。このようにバッテリ2は、弾性部材4の弾性力に
よる押し付けと、凸部2aおよび凹部1aの嵌合とによ
り、安定して収納部1b内に収納される。
At this time, when the battery 2 is accommodated in the accommodating portion 1b, the elastic member 4 in the concave portion 1a is crushed by the convex portion 2a. Therefore, the crushed elastic member 4 applies the elastic force of the elastic member 4 to the battery 2 in the direction of the engaging hole 1d (the side opposite to the recessed portion 1a), and the elastic force causes the end of the battery 2 to be a small piece. It is pressed against the wall 1c. In this way, the battery 2 is stably stored in the storage portion 1b by being pressed by the elastic force of the elastic member 4 and by fitting the convex portion 2a and the concave portion 1a.

【0016】このようにリアケース1の収納部1b内に
バッテリ2が固定されると、バッテリ蓋3をリアケース
1の収納部1bに一部を係合させて一端のツメ部3aを
係合穴1dに挿入することにより、収納部1bを覆った
状態で固定する。これによりリアケース1の収納部1b
にバッテリ2を収納することができる。
When the battery 2 is fixed in the storage portion 1b of the rear case 1 in this way, the battery lid 3 is partly engaged with the storage portion 1b of the rear case 1 and the tab portion 3a at one end is engaged. By being inserted into the hole 1d, the storage portion 1b is fixed while being covered. Thereby, the storage portion 1b of the rear case 1
The battery 2 can be stored in the.

【0017】図2に示すように、リアケース1の収納部
1bにバッテリ2を収納すると、バッテリ蓋3とリアケ
ース1との空間にバッテリ2が弾性部材4の弾性力によ
り壁部1c押し付けられるように付勢して収納される。
このように、本発明によるバッテリ収納構造の第1の実
施の形態では、図3に示すように凸部2aと凹部1aと
の間に弾性部材4を介在させて、バッテリ2を弾性部材
4の弾性力により、ガタツキを防止して固定する。
As shown in FIG. 2, when the battery 2 is stored in the storage portion 1b of the rear case 1, the battery 2 is pressed against the wall portion 1c by the elastic force of the elastic member 4 in the space between the battery lid 3 and the rear case 1. Is urged and stored.
As described above, in the first embodiment of the battery storage structure according to the present invention, as shown in FIG. 3, the elastic member 4 is interposed between the convex portion 2a and the concave portion 1a so that the battery 2 is connected to the elastic member 4. The elastic force prevents rattling and secures.

【0018】このような構造の第1の実施の形態によれ
ば、バッテリ2が弾性部材4の弾性力による押し付け
と、凸部2aおよび凹部1aの嵌合とにより、リアケー
ス1に固定されるため、バッテリ蓋3とツメ部3aとに
負荷がかからなくなる。
According to the first embodiment having such a structure, the battery 2 is fixed to the rear case 1 by pressing the elastic member 4 by the elastic force and fitting the convex portion 2a and the concave portion 1a. Therefore, no load is applied to the battery lid 3 and the claw portion 3a.

【0019】次に、図4を参照して本発明によるバッテ
リ収納構造の第2の実施の形態を詳細に説明する。図4
は、本発明によるバッテリ収納構造を携帯電話機に採用
した第2の実施の形態を示す斜視図である。また、第2
の実施の形態は、第1の実施の形態にバッテリ12の凸
部12bと、リアケース10の凹部10cとを追加した
ものであり、第1の実施の形態と重複する部分の説明は
省略する。
Next, a second embodiment of the battery storage structure according to the present invention will be described in detail with reference to FIG. Figure 4
FIG. 7 is a perspective view showing a second embodiment in which the battery storage structure according to the present invention is adopted in a mobile phone. Also, the second
In this embodiment, the convex portion 12b of the battery 12 and the concave portion 10c of the rear case 10 are added to the first embodiment, and the description of the portions overlapping the first embodiment will be omitted. .

【0020】図4に示すように、本発明によるバッテリ
収納構造を携帯電話機に採用した第2の実施の形態は、
収納部10bを備えたリアケース10と、このリアケー
ス10の収納部10bに収納されるバッテリ12と、収
納部10bに嵌合するバッテリ蓋3とを備えている。
As shown in FIG. 4, the second embodiment in which the battery storage structure according to the present invention is adopted in a mobile phone is as follows.
A rear case 10 having a storage portion 10b, a battery 12 stored in the storage portion 10b of the rear case 10, and a battery lid 3 fitted in the storage portion 10b are provided.

【0021】ここで、バッテリ12は、第1の実施の形
態と同様に、一方の短辺の中央部に角形の凸部12aが
形成されている。また、バッテリ12は、第1の実施の
形態とは異なり、凸部12aを形成した短辺に対向する
他の短辺に凸部12aと同形状の凸部12bが形成され
ている。
Here, in the battery 12, as in the first embodiment, a rectangular convex portion 12a is formed at the center of one short side. Further, unlike the first embodiment, the battery 12 has a convex portion 12b having the same shape as the convex portion 12a formed on the other short side facing the short side on which the convex portion 12a is formed.

【0022】また、リアケース10には、バッテリ12
を収納するためにバッテリ12に対応して長方形状に形
成した収納部10bを設けてある。この収納部10bに
は、第1の実施の形態と同様に、バッテリ12の凸部1
2aが横から挿入される凹部10aを設けてある。ま
た、収納部10bには、第1の実施の形態と異なり、バ
ッテリ12の凸部12bが横から挿入される凹部10a
と同形状の凹部10cを設けてある。ここで、凹部10
a、10cには、第1の実施の形態と同様に弾性部材
(図示せず)が装着されている。これによりバッテリ1
2は、凹部10a、10cの両側面に設けた弾性部材に
より収納部10bの中央部に付勢されて固定される。
The rear case 10 has a battery 12
A storage portion 10b formed in a rectangular shape corresponding to the battery 12 is provided for storing the battery. As in the first embodiment, the storage portion 10b has a convex portion 1 of the battery 12 therein.
A recess 10a into which 2a is inserted from the side is provided. Further, unlike the first embodiment, the storage portion 10b has a recess 10a into which the protrusion 12b of the battery 12 is inserted from the side.
A recess 10c having the same shape as that of is provided. Here, the recess 10
Elastic members (not shown) are attached to a and 10c as in the first embodiment. This allows the battery 1
2 is biased and fixed to the central portion of the storage portion 10b by elastic members provided on both side surfaces of the recesses 10a and 10c.

【0023】このように形成された第2の実施の形態で
は、次のようにバッテリ12を収納部10bに収納す
る。まず、バッテリ12は、凸部12aを収納方向と直
交する横方向から収納部10bの凹部10aに挿入され
る。次に、凹部10aに凸部12aを挿入したままで、
凸部12bを凹部10cを挿入することによりバッテリ
12が弾性部材により収納部10bの中央部に付勢され
て固定される。以後、収納部10bにバッテリ12を固
定した状態からは、第1の実施の形態と同様に収納され
るため説明は省略する。
In the second embodiment thus formed, the battery 12 is stored in the storage portion 10b as follows. First, the battery 12 is inserted into the recess 10a of the storage portion 10b from the lateral direction orthogonal to the storage direction with the convex portion 12a. Next, with the convex portion 12a still inserted in the concave portion 10a,
By inserting the convex portion 12b into the concave portion 10c, the battery 12 is biased and fixed to the central portion of the storage portion 10b by the elastic member. After that, from the state in which the battery 12 is fixed to the storage portion 10b, the battery 12 is stored in the same manner as in the first embodiment, and the description thereof will be omitted.

【0024】このよな構造の第2の実施の形態によれ
ば、バッテリ2が弾性部材4の弾性力により収納部10
bの中央部に付勢されて固定されるため、落下によりバ
ッテリ蓋3とツメ部3aとに負荷がかからなくなり、第
1の実施の形態に比べて、より効果的なバッテリの収納
構造を得ることができる。
According to the second embodiment having such a structure, the battery 2 is accommodated in the storage portion 10 by the elastic force of the elastic member 4.
Since it is biased and fixed to the central portion of b, the load is not applied to the battery lid 3 and the claw portion 3a due to the drop, and a more effective battery storage structure is provided as compared with the first embodiment. Obtainable.

【0025】次に、図5を参照して本発明によるバッテ
リ収納構造の第3の実施の形態を詳細に説明する。図5
は、本発明によるバッテリ収納構造を携帯電話機に採用
した第3の実施の形態を示す斜視図である。また、第3
の実施の形態は、第1の実施の形態にバッテリ22に凹
部22aと、リアケース20に凸部20aとを設けたも
のであり、第1の実施の形態と重複する部分の説明は省
略する。
Next, a third embodiment of the battery storage structure according to the present invention will be described in detail with reference to FIG. Figure 5
FIG. 9 is a perspective view showing a third embodiment in which the battery storage structure according to the present invention is adopted in a mobile phone. Also, the third
In this embodiment, the battery 22 is provided with the concave portion 22a and the rear case 20 is provided with the convex portion 20a in the first embodiment, and the description of the portions overlapping the first embodiment will be omitted. .

【0026】図5に示すように、本発明によるバッテリ
収納構造を携帯電話機に採用した第3の実施の形態で
は、収納部20bを備えたリアケース20と、このリア
ケース20の収納部20bに収納されるバッテリ22
と、収納部20bに嵌合するバッテリ蓋23とを備えて
いる。
As shown in FIG. 5, in the third embodiment in which the battery storage structure according to the present invention is adopted in a mobile phone, a rear case 20 having a storage portion 20b and a storage portion 20b of the rear case 20 are provided. Battery 22 to be stored
And a battery lid 23 fitted into the storage portion 20b.

【0027】ここで、バッテリ22は、第1の実施の形
態と異なり、一方の短辺の中央部に開口する凹部22a
を形成している。ここで、凹部22aには、弾性部材
(図示せず)が装着されている。
Here, unlike the first embodiment, the battery 22 has a concave portion 22a which opens at the center of one short side.
Is formed. Here, an elastic member (not shown) is attached to the recess 22a.

【0028】また、リアケース20には、バッテリ22
を収納するためにバッテリ22に対応して長方形状に形
成した収納部20bが設けられている。この収納部20
bには、第1の実施の形態と異なり、バッテリ22の凹
部22aに横から挿入される凸部20aを設けてある。
またリアケース20には、第1の実施の形態と同様にバ
ッテリ22の端部が当接する壁部20cが形成されてい
る。この壁部20cは、3枚の小片が櫛歯状に垂直に所
定の間隔を有して設けてある。これによりバッテリ22
は、凹部22aに設けた弾性部材により壁部20c付勢
されて当接することにより固定される。
The rear case 20 has a battery 22
A storage portion 20b formed in a rectangular shape corresponding to the battery 22 is provided for storing the battery. This storage section 20
Different from the first embodiment, a convex portion 20a that is laterally inserted into the concave portion 22a of the battery 22 is provided at b.
Further, the rear case 20 is formed with a wall portion 20c with which the end portion of the battery 22 abuts, as in the first embodiment. In this wall portion 20c, three small pieces are vertically provided in a comb-like shape with a predetermined interval. This allows the battery 22
Is fixed by being urged against the wall portion 20c by an elastic member provided in the concave portion 22a and contacting the wall portion 20c.

【0029】このように形成された第3の実施の形態で
は、次のようにバッテリ22を収納部20bに収納す
る。まず、バッテリ22は、凹部22aを収納方向と直
交する横方向から凸部20aに挿入して収納部20bに
収納する。この際、バッテリ20を収納部20bに収納
したとき、バッテリ22の凹部22a内の弾性部材は凸
部20aにより押しつぶされ、バッテリ22の端部を壁
部20cに押し付けて固定する。以後、収納部20bに
バッテリ22を固定した状態からは、第1の実施の形態
と同様に収納されるため説明を省略する。
In the third embodiment thus formed, the battery 22 is stored in the storage portion 20b as follows. First, the battery 22 is stored in the storage portion 20b by inserting the recess 22a into the protrusion 20a from the lateral direction orthogonal to the storage direction. At this time, when the battery 20 is stored in the storage portion 20b, the elastic member in the concave portion 22a of the battery 22 is crushed by the convex portion 20a, and the end portion of the battery 22 is pressed against the wall portion 20c and fixed. After that, from the state in which the battery 22 is fixed to the storage portion 20b, the battery 22 is stored in the same manner as in the first embodiment, and the description thereof will be omitted.

【0030】このような構造の第3の実施の形態によれ
ば、バッテリ22を弾性部材の弾性力により壁部20c
に押し付けて固定するため、バッテリ蓋23とツメ部2
3aとに負荷がかからなくなり、第1の実施の形態と同
様に効果的なバッテリの収納構造を得ることができる。
According to the third embodiment having such a structure, the battery 22 is moved to the wall portion 20c by the elastic force of the elastic member.
The battery lid 23 and the claw portion 2 are pressed against each other to be fixed.
No load is applied to 3a, and an effective battery storage structure can be obtained as in the first embodiment.

【0031】次に、図6を参照して本発明によるバッテ
リ収納構造の第4の実施の形態を詳細に説明する。図6
は、本発明によるバッテリ収納構造を携帯電話機に採用
した第4の実施の形態を示す斜視図である。また、第4
の実施の形態は、第1の実施の形態にバッテリ32に壁
部32bを追加したものであり、第1の実施の形態と重
複する説明は省略する。
Next, a fourth embodiment of the battery storage structure according to the present invention will be described in detail with reference to FIG. Figure 6
FIG. 8 is a perspective view showing a fourth embodiment in which the battery storage structure according to the present invention is adopted in a mobile phone. Also, the fourth
In this embodiment, the wall portion 32b is added to the battery 32 in the first embodiment, and the description overlapping with the first embodiment will be omitted.

【0032】図6に示すように、本発明によるバッテリ
収納構造を携帯電話機に採用した第4の実施の形態は、
収納部30bを備えたリアケース30と、このリアケー
ス30の収納部30bに収納するバッテリ32とを備え
ている。
As shown in FIG. 6, the fourth embodiment in which the battery storage structure according to the present invention is adopted in a mobile phone is as follows.
A rear case 30 having a storage portion 30b and a battery 32 stored in the storage portion 30b of the rear case 30 are provided.

【0033】ここで、バッテリ32は、第1の実施の形
態と同様に一方の短辺の中央部に角形の凸部32aを形
成している。また、バッテリ32は、第1の実施の形態
とは異なり、凸部32aを形成した短辺に対向する他の
短辺に3枚の小片が櫛歯状に所定の間隔を有して設た壁
部32bを形成している。
Here, in the battery 32, as in the first embodiment, a rectangular convex portion 32a is formed at the center of one short side. Further, unlike the first embodiment, the battery 32 has three small pieces arranged in a comb-like shape at predetermined intervals on the other short side facing the short side on which the convex portion 32a is formed. The wall portion 32b is formed.

【0034】また、リアケース30は、バッテリ32を
収納するためにバッテリ32に対応して長方形状に形成
した収納部30bを設けている。この収納部30bに
は、第1の実施の形態と同様に、バッテリ32の凸部3
2aが横から挿入される凹部30aを設けてある。この
凹部32aには、弾性部材(図示せず)が装着されてい
る。またリアケース30には、第1の実施の形態と同様
にバッテリ32の端部が当接する壁部30cが形成され
ている。この壁部30cは、3枚の小片を櫛歯状に垂直
に所定の間隔を有して設けたものである。また、バッテ
リ32は、凹部32aに設けた弾性部材により壁部30
cに付勢されて当接し、壁部30cと壁部32bとが嵌
合することにより固定される。
Further, the rear case 30 is provided with a storage portion 30b formed in a rectangular shape corresponding to the battery 32 for storing the battery 32. In the storage portion 30b, as in the first embodiment, the convex portion 3 of the battery 32 is provided.
A recess 30a into which 2a is inserted from the side is provided. An elastic member (not shown) is mounted in the recess 32a. Further, the rear case 30 is formed with a wall portion 30c with which the end portion of the battery 32 abuts, as in the first embodiment. The wall portion 30c is composed of three small pieces vertically arranged in a comb shape with a predetermined interval. In addition, the battery 32 uses the elastic member provided in the recess 32 a to form the wall portion 30.
The wall portion 30c and the wall portion 32b are fixed to each other by being urged and abutted by c.

【0035】このように形成された第4の実施の形態で
は、次のようにバッテリ32を収納部30bに収納す
る。まず、バッテリ32は、凸部32aを収納方向と直
交する横方向から収納部30bの凹部30aに挿入す
る。次に、凹部30aに凸部32aを挿入したままで、
バッテリ32の壁部32bとリアケース30の壁部30
cとを図6に示した矢印方向に収納して嵌合させる。こ
のように、バッテリ32の壁部32bをリアケース30
の壁部30cに嵌合し、弾性部材により収納部30bの
壁部30cに押し付けて固定することにより収納され
る。以後、収納部30bにバッテリ32を固定した状態
からは、第1の実施の形態と同様に収納するため説明は
省略する。
In the fourth embodiment thus formed, the battery 32 is stored in the storage portion 30b as follows. First, in the battery 32, the convex portion 32a is inserted into the concave portion 30a of the storage portion 30b from the lateral direction orthogonal to the storage direction. Next, with the convex portion 32a still inserted in the concave portion 30a,
The wall 32b of the battery 32 and the wall 30 of the rear case 30
c and are housed in the direction of the arrow shown in FIG. In this way, the wall portion 32 b of the battery 32 is attached to the rear case 30.
It is accommodated by being fitted to the wall portion 30c of the above, and pressed and fixed to the wall portion 30c of the accommodation portion 30b by the elastic member. After that, from the state in which the battery 32 is fixed to the storage portion 30b, the battery 32 is stored in the same manner as in the first embodiment, and the description thereof is omitted.

【0036】このような構造の第4の実施の形態によれ
ば、バッテリ32が弾性部材の弾性力により収納部30
bの壁部30cに付勢し、バッテリ32の壁部32bと
リアケース30の壁部30cとを嵌合して固定するた
め、バッテリ蓋とツメ部とに負荷がかからず、リアケー
ス30長辺の両側面方向にバッテリ32が動くことを防
止できる。これにより、第1の実施の形態に比べて、よ
り効果的なバッテリの収納構造を得ることができる。
According to the fourth embodiment having such a structure, the battery 32 causes the accommodating portion 30 by the elastic force of the elastic member.
Since the wall portion 32b of the battery 32 and the wall portion 30c of the rear case 30 are fitted and fixed by being urged to the wall portion 30c of b, the load is not applied to the battery lid and the claw portion, and the rear case 30 It is possible to prevent the battery 32 from moving in the direction of both sides of the long side. As a result, a more effective battery storage structure can be obtained as compared with the first embodiment.

【0037】また、前述したバッテリ32の壁部32b
を、図7に示すバッテリ35のように凹部35bとし、
図6に示した収納部30bの壁部30cと嵌合させるこ
とにより、バッテリ収納部をより一層小型化できるとと
もに第1の実施の形態に比べてより効果的なバッテリ収
納構造が得られる。
The wall 32b of the battery 32 described above is also used.
Is a recess 35b like the battery 35 shown in FIG.
By fitting with the wall portion 30c of the storage portion 30b shown in FIG. 6, the battery storage portion can be further downsized, and a more effective battery storage structure can be obtained as compared with the first embodiment.

【0038】以上、本発明によるバッテリ収納構造の実
施の形態を詳細に説明したが、本発明は上述の実施の形
態に限定されるものではなく、その要旨を逸脱しない範
囲で変更可能である。例えば、バッテリ収納構造を携帯
電話機に採用した実施の形態を説明したが、特に携帯電
話機に限定されるものではない。また、バッテリを固定
する凹部、凸部、壁部などの嵌合部を実施の形態で各々
説明したが、これに限定されるものではなく、この嵌合
部を組み合わせて形成してもよい。また、バッテリを固
定する凹部、凸部、壁部などの嵌合部は、バッテリの短
辺に1つ、または短辺両側に2つ設けた実施の形態を説
明したが、これに限定されるものではなく、例えば、固
定強度を向上させるために複数設けてもよい。また、バ
ッテリを固定する凹部、凸部、壁部などの嵌合部をバッ
テリの短辺側面に形成した実施の形態を説明したが、こ
れに限定されるものではなく、例えば、バッテリの長辺
側面に形成してもよい。
Although the embodiment of the battery storage structure according to the present invention has been described above in detail, the present invention is not limited to the above-mentioned embodiment, and can be modified within the scope of the invention. For example, although the embodiment in which the battery storage structure is adopted in the mobile phone has been described, the present invention is not particularly limited to the mobile phone. Further, the fitting portions such as the concave portion, the convex portion, and the wall portion for fixing the battery have been described in the embodiments, but the present invention is not limited to this, and the fitting portions may be formed in combination. In addition, the embodiment has been described in which one fitting portion such as a concave portion, a convex portion, or a wall portion for fixing the battery is provided on the short side of the battery, or two fitting portions are provided on both sides of the short side, but the present invention is not limited to this. However, a plurality of them may be provided in order to improve the fixing strength. Further, although the embodiment in which the fitting portion such as the concave portion, the convex portion, or the wall portion for fixing the battery is formed on the short side surface of the battery has been described, the present invention is not limited to this, and for example, the long side of the battery It may be formed on the side surface.

【0039】[0039]

【発明の効果】このように本発明のバッテリ収納構造に
よれば、バッテリのガタをケース本体の長手方向で吸収
し、かつバッテリとケースとに設けた凸部と凹部とが嵌
合して固定されているため、バッテリが飛び出ることが
なくなるとともに、バッテリ蓋に負荷がかかりツメ部を
折ることがなくなる。また、バッテリ蓋に負荷が加わら
ないため、バッテリ蓋の樹脂厚を薄くすることができ、
軽量化および小型化することが可能となる。
As described above, according to the battery housing structure of the present invention, the play of the battery is absorbed in the longitudinal direction of the case body, and the convex portion and the concave portion provided on the battery and the case are fitted and fixed. Therefore, the battery is prevented from popping out, and a load is not applied to the battery lid to break the claw portion. Moreover, since the load is not applied to the battery lid, the resin thickness of the battery lid can be reduced,
It is possible to reduce the weight and size.

【図面の簡単な説明】[Brief description of drawings]

【図1】本発明によるバッテリ収納構造の第1の実施の
形態を示す斜視図。
FIG. 1 is a perspective view showing a first embodiment of a battery storage structure according to the present invention.

【図2】図1に示したA−A線の断面を示す断面図。FIG. 2 is a sectional view showing a section taken along the line AA shown in FIG.

【図3】図2示したB部の詳細を示す拡大図。FIG. 3 is an enlarged view showing details of a B section shown in FIG.

【図4】本発明によるバッテリ収納構造の第2の実施の
形態を示す斜視図。
FIG. 4 is a perspective view showing a second embodiment of the battery storage structure according to the present invention.

【図5】本発明によるバッテリ収納構造の第3の実施の
形態を示す斜視図。
FIG. 5 is a perspective view showing a third embodiment of the battery storage structure according to the present invention.

【図6】本発明によるバッテリ収納構造の第4の実施の
形態を示す斜視図。
FIG. 6 is a perspective view showing a battery storage structure according to a fourth embodiment of the present invention.

【図7】本発明によるバッテリ収納構造の第5の実施の
形態を示す斜視図。
FIG. 7 is a perspective view showing a fifth embodiment of the battery storage structure according to the present invention.

【図8】従来のバッテリ収納構造を採用した携帯電話機
を示す斜視図。
FIG. 8 is a perspective view showing a mobile phone adopting a conventional battery storage structure.

【図9】図8に示したC−C線の断面を示す断面図。9 is a cross-sectional view showing a cross section taken along the line CC of FIG.

【符号の説明】[Explanation of symbols]

1 リアケース 1a 凹部 1b 収納部 1c 壁部 1d 係合穴 2 バッテリ 2a 凸部 3 バッテリ蓋 3a ツメ部 4 弾性部材 1 rear case 1a recess 1b storage 1c wall 1d engagement hole 2 battery 2a convex part 3 Battery lid 3a Claw part 4 Elastic member

Claims (5)

(57)【特許請求の範囲】(57) [Claims] 【請求項1】 バッテリの取り出し方向に直交する横方
向から嵌合させてバッテリを収納部内に引っ掛け固定
きるように前記バッテリまたは前記収納部の一方に凹部
を他方に凸部を各々設けた嵌合部を有し、この嵌合部に
前記バッテリを横方向に押し付ける弾性体を設けるとと
もに、前記嵌合部の凹部と凸部とが、前記バッテリと前
記収納部との前記横方向両側に複数個設けられている
とを特徴とするバッテリ収納構造。
We claim: 1. lateral or al-fitted perpendicular to the extraction direction of the battery with a fixed hooking battery receiving portion
So that one of the battery and the storage can be recessed
The each have provided mating portions of the convex portions on the other, Rutoto an elastic member that presses the battery into the fitting portion in the lateral direction
At the same time, the concave and convex portions of the fitting portion are
A plurality of battery storage structures are provided on both sides of the storage part in the lateral direction .
【請求項2】 バッテリの取り出し方向に直交する横方
向から嵌合させてバッテリを収納部内に引っ掛け固定で
きるように前記バッテリまたは前記収納部の一方に凹部
を他方に凸部を各々設けた嵌合部を有し、この嵌合部に
前記バッテリを横方向に押し付ける弾性体を設けるとと
もに、前記バッテリと収納部との前記横方向の一辺側に
前記凹部及び凸部を設け、これに対向する他辺側に櫛歯
状の小片を備えて取り出し方向を固定する第2の嵌合部
をさらに設けたことを特徴とするバッテリ収納構造。
2. A lateral direction orthogonal to the battery take-out direction.
The battery can be hooked and fixed in the storage part by fitting from the direction
So that one of the battery and the storage can be recessed
Has a fitting part with a convex part on the other side.
By providing an elastic body that pushes the battery laterally,
On the one side of the battery in the horizontal direction of the storage unit
The concave portion and the convex portion are provided, and the comb teeth are provided on the other side facing the concave portion and the convex portion.
Second fitting part having a small piece and fixing the take-out direction
A battery storage structure further comprising:
【請求項3】 請求項に記載のバッテリ収納構造にお
いて、前記第2の嵌合部は、前記収納部に前記櫛歯状の小片を
設けて前記弾性体により前記バッテリを押し付けて固
定、または前記バッテリと収納部とに前記櫛歯状の小片
を設けて取り出し方向からお互いに嵌合して前記弾性体
により押し付けて固定する ことを特徴とするバッテリ収
納構造。
3. The battery storage structure according to claim 2 , wherein the second fitting portion includes the comb-tooth-shaped small piece in the storage portion.
Install the battery by pressing the battery with the elastic body.
Fixed, or the comb-shaped small piece in the battery and the storage section
And the elastic body is fitted to each other from the take-out direction.
Battery storage structure characterized by being pressed and fixed by .
【請求項4】 バッテリの取り出し方向に直交する横方
向から嵌合させてバッテリを収納部内に引っ掛け固定で
きるように前記バッテリまたは前記収納部の一方に凹部
を他方に凸部を各々設けた嵌合部を有し、この嵌合部に
前記バッテリを横方向に押し付ける弾性体を設けるとと
もに、前記バッテリと収納部との前記横方向の一辺側に
前記凹部及び凸部を設け、これに対向する他辺側の前記
収納部に櫛歯状の小片を、前記バッテリに櫛歯状の凹部
を各々設けて取り出し方向から嵌合して前記弾性体によ
り押し付けて固定する第3の嵌合部をさらに設けたこと
を特徴とするバッテリ収納構造。
4. A lateral direction orthogonal to a battery take-out direction.
The battery can be hooked and fixed in the storage part by fitting from the direction
So that one of the battery and the storage can be recessed
Has a fitting part with a convex part on the other side.
By providing an elastic body that pushes the battery laterally,
On the one side of the battery in the horizontal direction of the storage unit
The concave portion and the convex portion are provided, and the other side opposite to the concave portion and the convex portion is provided.
Comb-shaped small piece in the storage part, comb-shaped recess in the battery
Are provided respectively and are fitted from the take-out direction, and
A battery housing structure further comprising a third fitting portion that is pressed against and fixed .
【請求項5】 請求項1〜4いずれかに記載のバッテリ
収納構造において、前記収納部には、前記バッテリを収納して封止するよう
に嵌合するバッテリ蓋を さらに設けたことを特徴とする
バッテリ収納構造。
5. The battery storage structure according to claim 1, wherein the storage unit stores and seals the battery.
A battery storage structure further comprising a battery lid fitted to the .
JP05115098A 1998-03-03 1998-03-03 Battery storage structure Expired - Lifetime JP3530007B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP05115098A JP3530007B2 (en) 1998-03-03 1998-03-03 Battery storage structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP05115098A JP3530007B2 (en) 1998-03-03 1998-03-03 Battery storage structure

Publications (2)

Publication Number Publication Date
JPH11250880A JPH11250880A (en) 1999-09-17
JP3530007B2 true JP3530007B2 (en) 2004-05-24

Family

ID=12878798

Family Applications (1)

Application Number Title Priority Date Filing Date
JP05115098A Expired - Lifetime JP3530007B2 (en) 1998-03-03 1998-03-03 Battery storage structure

Country Status (1)

Country Link
JP (1) JP3530007B2 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2007037405A1 (en) * 2005-09-29 2007-04-05 Kyocera Corporation Portable terminal device

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP4974590B2 (en) * 2006-05-31 2012-07-11 三洋電機株式会社 Electrical equipment
JP2009026582A (en) * 2007-07-19 2009-02-05 Iwatsu Electric Co Ltd Battery pack storage structure for portable electronic device
JP5517855B2 (en) 2010-09-17 2014-06-11 キヤノン株式会社 X-ray equipment
JP2017073352A (en) * 2015-10-09 2017-04-13 小島プレス工業株式会社 Battery holding structure

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2007037405A1 (en) * 2005-09-29 2007-04-05 Kyocera Corporation Portable terminal device
US8478365B2 (en) 2005-09-29 2013-07-02 Kyocera Corporation Mobile terminal apparatus

Also Published As

Publication number Publication date
JPH11250880A (en) 1999-09-17

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