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JP4048291B2 - Folding electrical equipment - Google Patents
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JP4048291B2 - Folding electrical equipment - Google Patents

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Publication number
JP4048291B2
JP4048291B2 JP2001393923A JP2001393923A JP4048291B2 JP 4048291 B2 JP4048291 B2 JP 4048291B2 JP 2001393923 A JP2001393923 A JP 2001393923A JP 2001393923 A JP2001393923 A JP 2001393923A JP 4048291 B2 JP4048291 B2 JP 4048291B2
Authority
JP
Japan
Prior art keywords
flexible substrate
cylindrical
cylindrical portion
housing
slip
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 - Fee Related
Application number
JP2001393923A
Other languages
Japanese (ja)
Other versions
JP2003198156A (en
Inventor
守 吉田
勉 阿部
大輔 水田
敏康 北村
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.)
Panasonic Corp
Panasonic Holdings Corp
Original Assignee
Panasonic Corp
Matsushita Electric Industrial Co Ltd
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 Panasonic Corp, Matsushita Electric Industrial Co Ltd filed Critical Panasonic Corp
Priority to JP2001393923A priority Critical patent/JP4048291B2/en
Publication of JP2003198156A publication Critical patent/JP2003198156A/en
Application granted granted Critical
Publication of JP4048291B2 publication Critical patent/JP4048291B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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  • Pivots And Pivotal Connections (AREA)
  • Casings For Electric Apparatus (AREA)
  • Mounting Of Printed Circuit Boards And The Like (AREA)
  • Telephone Set Structure (AREA)

Description

【0001】
【発明の属する技術分野】
本発明は、第1、第2の筐体を有し、これらの筐体をヒンジ部で互いに回動自在に枢着した折畳式の電気機器に関する。
【0002】
【従来の技術】
一般に、第1、第2の筐体を互いに回動自在に枢着した、いわゆる、折畳式の電気機器は、携帯電話機、PDA、その他の機器で公知である。
【0003】
ところで、これらの機器において、第1、第2の筐体にはそれぞれプリント基板、電子部品などが収納されており、これらを互いに電気的に接続するために、フレキシブル基板が多く用いられている。そして、この場合、フレキシブル基板が直接外部に露出しないようにするために、ヒンジ部に同軸上に筒状部を形成し、この筒状部にフレキシブル基板を収納するようにしたり、フレキシブル基板が第1、第2の筐体の互いの回動によって屈曲され切断されるのを防止するために、前記筒状部の内部においてフレキシブル基板を1回転捲回しフレキシブル基板に屈曲力が作用しないようにしたりしている。
【0004】
【発明が解決しようとする課題】
しかしながら、このようにヒンジ部に同軸上に筒状部を形成し、この筒状部にフレキシブル基板を1回転捲回した状態で収納した場合には、筒状部自体の径を相当大きくしないとフレキシブル基板に大きな湾曲力が作用し、筒状部、曳いては、ヒンジ部を小さく構成することができないという問題があった。
【0005】
本発明は、以上のような従来の問題を解決するものであり、ヒンジ部の径を多少小さくしてもフレキシブル基板に余計な屈曲力が作用せず、フレキシブル基板が損傷しない優れた折畳式電気機器を提供するものである。
【0006】
【課題を解決するための手段】
本発明は、第1、第2の筐体を互いに回動自在に枢着するヒンジ部と、このヒンジ部に同軸に形成され、第1、第2のプリント基板を互いに電気的に接続するフレキシブル基板の中央部に形成した捲回部を収納する筒状部と、この筒状部の内面に設けられ、フレキシブル基板の捲回部が接触したとき、その滑りを良くする滑り促進部材とを備えた構成とした。
【0007】
この構成により、フレキシブル基板が第1、第2の筐体の回動により変形してその一部が筒状部の内面に接触してもその面に滑り促進部材が設けられているため、フレキシブル基板が全体としてスムーズに動くことになり、余計な屈曲力が作用せず、フレキシブル基板が切断したり、破損したりするのを容易に防止することができる。
【0008】
また、本発明は、ヒンジ部及筒状部が共に第1の筐体の表面より前方に突出するように構成され、かつ、筒状部がその軸方向に配列された第1、第2の筒状体で構成され、滑り促進部材は第1、第2の筐体を構成するそれぞれの上ケースに一体に形成された第1、第2の筒状体を構成するそれぞれの上半円筒部の内面に設けらる構成とした。
【0009】
このことによって、ヒンジ部及筒状部が共に第1の筐体の表面より前方に突出するように構成されたものにおいて最も問題となる第1、第2の筒状体を構成するそれぞれの上半円筒部の内面に滑り促進部材を設けているため、この滑り促進部材だけでフレキシブル基板に余計な屈曲力が作用するのを充分に排除することができ、全体の構成としても非常に効率的になるという効果を有する。
【0010】
また、本発明は、第1の筐体を構成する下ケースのフレキシブル基板引出し用案内部の内面にも滑り促進部材を設ける構成とした。
【0011】
この構成により、フレキシブル基板引出し用案内部の内面における滑りもスムーズになり、フレキシブル基板がこの部分で屈曲されるのを容易に防止することができ、その分寿命が長くなるという作用を有する。
【0012】
【発明の実施の形態】
以下、本発明の実施の形態について図面を用いて説明する。
図1は、本発明の一実施の形態における折畳式電気機器の斜視図、図2は、同電気機器の要部分解斜視図、図3は、同電気機器を分解した各部の平面図、図4は、同電気機器の要部の断面図、図5は同要部の動作を説明する断面図である。
【0013】
図1において、折畳式の電気機器である携帯電話機は、第1、第2の筐体1、2と、これらを互いに回動自在に枢着するヒンジ部3とを備えている。第1、第2の筐体1、2は、それぞれ互いに係合する上ケース1a、2a、下ケース1b,2bで構成され、第1の筐体の上ケース1aには、ファンクションキー4、テンキー5、送話用の音孔6、呼出音発生用の音孔7などが設けられ、第2の筐体2の上ケース2aには、液晶表示器8、受話用の音孔9などが設けられ、第2の筐体2の下ケース2bには、アンテナ10などが設けられている。
【0014】
そして、ヒンジ部3は、図2に示すように、第1、第2の筐体1、2を構成するそれぞれの上ケース1a、2aにそれぞれ一体に形成された第1、第2の軸受部11a、11b、12a、12bと、これらの軸受部11a、11b、12a、12bに形成した透孔13a、13b、14a、14bにそれぞれ貫通するように挿入された第1、第2の軸15a、15bによって構成されている。
【0015】
ヒンジ部3は、前述したように、軸受部11a、11b、12a、12bとこれらの軸受部11a、11b、12a、12bに挿入された軸15a、15bによって構成されているが、同時に、これらの軸受部12a、12bの間には、これらの軸受部11a、11b、12a、12bと同軸上に第1、第2の筒状部16a、16bが配置されている。
【0016】
そして、第1の筒状部16aは、図3に示すように、第1の筐体1を構成する上ケース1aに一体に形成された半円筒状部17aと、この半円筒状部17aに連結されるように、同じ第1の筐体1を構成する下ケース1bに一体に形成されたほぼ平板状のフレキシブル基板引出し用案内部17bとで構成され、また、第2の筒状部16bは、第2の筐体2を構成する上ケース2aに一体に形成された半円筒状部18aと、この半円筒状部18aに連結されるように、同じ第2の筐体1を構成する下ケース1bに一体に形成された半円筒状部18bとで構成されている。
【0017】
また、第1、第2の筐体1、2には、それぞれキーボードを構成する接点や液晶表示器8を駆動する電気回路、その他の回路を構成する各種電気部品を取付けた第1、第2のプリント基板19a、19bが収納されており、これらの第1、第2のプリント基板19a、19bは、図3に示すように、1回転だけ捲回したフレキシブル基板20で互いに電気的に接続されている。
【0018】
すなわち、フレキシブル基板20は、両端がそれぞれ第1、第2のプリント基板19a、19bに接続され、中央部が1回転だけ捲回されている。そして、捲回された、いわゆる、捲回部20aは、図4、図5に示すように、プリント基板19a、19bをそれぞれ第1、第2の筐体1、2の所定の位置に取付けたとき、それぞれ第1、第2の筒状部16a、16bに収納されるように構成されている。
【0019】
そして、先に説明した第1、第2の筒状部16a、16bを構成するそれぞれの半円筒状部17a、18aと、第1の筒状部16aを構成するほぼ平板状のフレキシブル基板引出し用案内部17bの内面には、図3〜図5に示すように、フレキシブル基板20が接触してもそれによってフレキシブル基板に余分な力が加わらないようにするためのテフロンシートなどの摩擦抵抗の小さいシート状の滑り促進部材21a、21b、21cがそれぞれ接着、その他の方法で装着されている。
【0020】
このように、本実施の形態は、第1、第2の筐体1、2に一体に形成した筒状部16a、16bの内面に、それぞれ摩擦抵抗の小さいシート状の滑り促進部材21a、21b、21cを装着しており、図4、図5に示すように、第1、第2の筐体1、2を互いにヒンジ部3を中心に回動した際に、フレキシブル基板20の一部が筒状部16a、16bの内面に接触したとしても、摩擦抵抗の小さいシート状の滑り促進部材21a、21b、21cによってフレキシブル基板20に大きな屈曲力、摩擦力などが加わることがほとんどなく、フレキシブル基板20の寿命を大きく改善することができ、また、ヒンジ部3自体をそれだけ径の小さいものにすることができる。以下、このことについて、より詳しく説明する。
【0021】
一般に、フレキシブル基板20は、湾曲自在であるが、それでも極端に小さい径まで湾曲させることは不可能である。また、本実施の形態のように、フレキシブル基板20に捲回部20aを設け、その捲回部20aを有するフレキシブル基板20で互いに回動可能な筐体1、2内のプリント基板19a、19bを電気的に接続した場合、図4、図5に示すように、筐体1、2を互いに開いた状態と、互いに閉じた状態で、それぞれフレキシブル基板20に形成した捲回部20aの径が大きく異なることになる。すなわち、筐体1、2を閉じた状態では、図5に示すように、フレキシブル基板20の捲回部20aにおける径が一番小さい状態になるが、ここで、その径はフレキシブル基板20の湾曲可能範囲で制限を受け、極端に小さくすることができない。また、開いた状態では、図4に示すように、フレキシブル基板20の捲回部20aにおける径が一番大きな状態になるが、ここで、その大きさは筒状部16a、16bの内径を決定する要素になり、筒状部16a、16bの内径をそれ以下に小さくすることはできないことになる。
【0022】
ところで、本実施の形態によれば、筒状部16a、16bの内面に摩擦抵抗の小さい滑り促進部材21a、22bを設けたため、筒状部16a、16bの内径を比較的小さくし、筐体1、2を互いに開いた状態、あるいは、開く段階で、フレキシブル基板20の捲回部20aが一部筒状部16a、16bの内面に接触するような状態になったとしても、これによって直ちにフレキシブル基板20の捲回部20aに余分な屈曲力、摩擦力などが発生することがなく、フレキシブル基板20をスムーズの湾曲させ、寿命を充分保持させることができる。
【0023】
そして、本実施の形態では、ヒンジ部3が第1の筐体1の表面より前方に突出するように、軸受部11a、11b、筒状部16a、16bをそれぞれ第1の筐体1を構成する上ケース1aの端部より前方に突出するように一体に形成している。したがって、図4、図5に示すように、フレキシブル基板20の一方、すなわち、第2の筐体2に内装した第2のプリント基板19bに接続される側は、第2の筒状部16bから比較的直線的に第2のプリント基板19b側に伸び、ここで第2のプリント基板19bに接続されているが、フレキシブル基板20の他方、すなわち、第1の筐体1に内装した第1のプリント基板19aに接続される側は、筒状部16aが第1の筐体1の表面より前方に突出していることから、一旦、フレキシブル基板引出し用案内部17bを通して第1の筐体1の内部に引込まれ、そこで約90度湾曲されて第1の筐体1に内装した第1のプリント基板19aに接続されるようにしている。
【0024】
そのため、フレキシブル基板20が約90度湾曲されるフレキシブル基板引出し用案内部17bでは、筐体1、2の開閉に伴い、フレキシブル基板20が一部前記フレキシブル基板引出し用案内部17bに必ずと言って良いほど接触する。したがって、本実施の形態では、フレキシブル基板20が約90度湾曲されるフレキシブル基板引出し用案内部17bは、フレキシブル基板20がスムーズに湾曲されるように、フレキシブル基板20の湾曲にほぼ沿った形状に形成すると共に、このフレキシブル基板引出し用案内部17bにも摩擦抵抗の小さい滑り促進部材21cを設けている。その結果、本実施の形態では、この部分での摩擦も少なくなり、ヒンジ部3が筐体1より前方に突出しているにも関わらず、全体としてフレキシブル基板20がスムーズに湾曲し、余分な屈曲力、摩擦力がほとんど作用しないという利点を有する。
【0025】
尚、本実施の形態では、携帯電話機を例に説明したが、本発明は、PDA、その他の電気機器であっても同様に適用することができる。
【0026】
【発明の効果】
以上説明したように、本発明は、第1、第2の筐体を互いに回動自在に枢着するヒンジ部と、このヒンジ部に同軸に形成され、第1、第2のプリント基板を互いに電気的に接続するフレキシブル基板の中央部に形成した捲回部を収納する筒状部と、この筒状部の内面に設けられ、フレキシブル基板の捲回部が接触したとき、その滑りを良くする滑り促進部材とを備えたものであり、フレキシブル基板が第1、第2の筐体の回動により変形してその一部が筒状部の内面に接触してもその面に滑り促進部材が設けられているため、フレキシブル基板が全体としてスムーズに動くことになり、余計な屈曲力が作用せず、フレキシブル基板が切断したり、破損したりするのを容易に防止することができ、充分な寿命を保持することができるという利点を有する。
【図面の簡単な説明】
【図1】本発明の一実施の形態における折畳式電気機器の斜視図
【図2】本発明の一実施の形態における折畳式電気機器の要部分解斜視図
【図3】本発明の一実施の形態における折畳式電気機器の各部の正面図であり、
(A)上ケースを内側から見た正面図
(B)下ケースを内側から見た正面図
(C)フレキシブル基板で接続されたプリント基板の正面図
【図4】本発明の一実施の形態における折畳式電気機器の要部断面図
【図5】本発明の一実施の形態における折畳式電気機器の動作を説明する要部断面図
【符号の説明】
1 第1の筐体
1a 上ケース
1b 下ケース
2 第2の筐体
2a 上ケース
2b 下ケース
3 ヒンジ部
4 ファンクションキー
5 テンキー
6 送話用音孔
7 呼出音発生用音孔
8 液晶表示器
9 受話用音孔
10 アンテナ
11a、11b、12a、12b 軸受部
13a、13b、14a、14b 透孔
15a、15b 軸
16a、16b 筒状部
17a 半円筒状部
17b フレキシブル基板引出し用案内部
18a、18b 半円筒状部
19a、19b プリント基板
20 フレキシブル基板
20a 捲回部
21a、21b、21c 滑り促進部材
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a foldable electric device having first and second housings and pivoting these housings so as to be pivotable with respect to each other by hinges.
[0002]
[Prior art]
In general, a so-called foldable electric device in which a first housing and a second housing are pivotally attached to each other is known as a mobile phone, a PDA, and other devices.
[0003]
By the way, in these devices, a printed circuit board, an electronic component, and the like are housed in the first and second housings, respectively, and a flexible substrate is often used to electrically connect them. In this case, in order to prevent the flexible substrate from being directly exposed to the outside, a cylindrical portion is formed coaxially in the hinge portion, and the flexible substrate is accommodated in the cylindrical portion, or the flexible substrate is In order to prevent the first and second casings from being bent and cut by mutual rotation, the flexible substrate is wound once in the cylindrical portion so that no bending force acts on the flexible substrate. is doing.
[0004]
[Problems to be solved by the invention]
However, when a cylindrical portion is formed coaxially in the hinge portion and the flexible substrate is stored in a state where the flexible substrate is wound once in this cylindrical portion, the diameter of the cylindrical portion itself must be considerably increased. A large bending force acts on the flexible substrate, and there is a problem that the cylindrical portion, that is, the hinge portion cannot be made small.
[0005]
The present invention solves the above-mentioned conventional problems, and even if the diameter of the hinge portion is made somewhat small, an excessive folding force does not act on the flexible substrate, and an excellent folding type that does not damage the flexible substrate Provide electrical equipment.
[0006]
[Means for Solving the Problems]
The present invention provides a hinge portion for pivotally attaching the first and second housings to each other and a flexible shaft formed coaxially with the hinge portion and electrically connecting the first and second printed circuit boards to each other. A cylindrical portion that accommodates a winding portion formed in the central portion of the substrate, and a slip promoting member that is provided on the inner surface of the cylindrical portion and improves the slippage when the winding portion of the flexible substrate comes into contact. The configuration was as follows.
[0007]
With this configuration, even if the flexible substrate is deformed by the rotation of the first and second casings and part of the flexible substrate comes into contact with the inner surface of the cylindrical portion, the slip promoting member is provided on the surface. Since the substrate moves smoothly as a whole, an extra bending force does not act, and the flexible substrate can be easily prevented from being cut or damaged.
[0008]
In the present invention, the hinge portion and the cylindrical portion are both configured to protrude forward from the surface of the first housing, and the cylindrical portions are arranged in the axial direction thereof. Each upper half cylindrical part which comprises the 1st and 2nd cylindrical body comprised by the upper case which is comprised by the upper case which is comprised by the cylindrical body and comprised the 1st, 2nd housing | casing, respectively. It was set as the structure provided in the inner surface.
[0009]
As a result, each of the upper and lower cylindrical bodies, which are the most problematic in the case where both the hinge part and the cylindrical part are configured to protrude forward from the surface of the first housing, are formed. Since the slip promoting member is provided on the inner surface of the semi-cylindrical portion, it is possible to sufficiently eliminate the excessive bending force from acting on the flexible substrate with this slip promoting member alone, and the overall configuration is very efficient. It has the effect of becoming.
[0010]
Further, according to the present invention, a slip accelerating member is also provided on the inner surface of the flexible board drawing guide portion of the lower case constituting the first housing.
[0011]
With this configuration, sliding on the inner surface of the guide portion for pulling out the flexible substrate becomes smooth, and it is possible to easily prevent the flexible substrate from being bent at this portion.
[0012]
DETAILED DESCRIPTION OF THE INVENTION
Hereinafter, embodiments of the present invention will be described with reference to the drawings.
FIG. 1 is a perspective view of a foldable electric device according to an embodiment of the present invention, FIG. 2 is an exploded perspective view of a main part of the electric device, and FIG. 3 is a plan view of each part of the electric device disassembled. FIG. 4 is a cross-sectional view of the main part of the electric device, and FIG. 5 is a cross-sectional view illustrating the operation of the main part.
[0013]
In FIG. 1, a cellular phone that is a foldable electric device includes first and second casings 1 and 2 and a hinge portion 3 that pivotably mounts the two casings 1 and 2 to each other. The first and second housings 1 and 2 are respectively composed of upper cases 1a and 2a and lower cases 1b and 2b that engage with each other. The upper case 1a of the first housing has a function key 4 and a numeric keypad. 5, a transmitting sound hole 6, a ringing sound generating sound hole 7 and the like are provided, and an upper case 2a of the second casing 2 is provided with a liquid crystal display 8, a receiving sound hole 9 and the like. The antenna 10 and the like are provided on the lower case 2b of the second casing 2.
[0014]
As shown in FIG. 2, the hinge portion 3 includes first and second bearing portions formed integrally with the upper cases 1 a and 2 a constituting the first and second housings 1 and 2, respectively. 11a, 11b, 12a, 12b, and first and second shafts 15a inserted through the through holes 13a, 13b, 14a, 14b formed in the bearing portions 11a, 11b, 12a, 12b, respectively. 15b.
[0015]
As described above, the hinge part 3 is constituted by the bearing parts 11a, 11b, 12a, 12b and the shafts 15a, 15b inserted into these bearing parts 11a, 11b, 12a, 12b. Between the bearing parts 12a and 12b, the 1st, 2nd cylindrical parts 16a and 16b are arrange | positioned coaxially with these bearing parts 11a, 11b, 12a, and 12b.
[0016]
As shown in FIG. 3, the first cylindrical portion 16a includes a semi-cylindrical portion 17a formed integrally with the upper case 1a constituting the first housing 1, and the semi-cylindrical portion 17a. It is composed of a substantially flat flexible substrate drawing guide portion 17b formed integrally with the lower case 1b constituting the same first casing 1 so as to be connected, and the second cylindrical portion 16b. The semi-cylindrical portion 18a formed integrally with the upper case 2a constituting the second housing 2 and the same second housing 1 are configured so as to be connected to the semi-cylindrical portion 18a. A semi-cylindrical portion 18b formed integrally with the lower case 1b.
[0017]
Further, the first and second casings 1 and 2 are provided with first and second housings 1 and 2, respectively, which are provided with contacts constituting the keyboard, an electric circuit for driving the liquid crystal display 8, and various electric parts constituting other circuits. The first and second printed circuit boards 19a and 19b are electrically connected to each other by a flexible board 20 wound only once as shown in FIG. ing.
[0018]
That is, both ends of the flexible substrate 20 are connected to the first and second printed circuit boards 19a and 19b, respectively, and the central portion is wound only once. Then, the so-called wound part 20a that has been wound has the printed circuit boards 19a and 19b attached to predetermined positions of the first and second casings 1 and 2, respectively, as shown in FIGS. At this time, the first and second cylindrical portions 16a and 16b are configured to be accommodated, respectively.
[0019]
And each semi-cylindrical part 17a, 18a which comprises the 1st, 2nd cylindrical part 16a, 16b demonstrated previously, and the substantially flat-shaped flexible substrate drawer which comprises the 1st cylindrical part 16a As shown in FIGS. 3 to 5, the inner surface of the guide portion 17 b has a low frictional resistance such as a Teflon sheet for preventing the flexible substrate 20 from contacting with the flexible substrate 20 even if the flexible substrate 20 comes into contact therewith. Sheet-like slip promotion members 21a, 21b, and 21c are attached by adhesion or other methods, respectively.
[0020]
As described above, in the present embodiment, the sheet-like slip promotion members 21a and 21b having a small frictional resistance are formed on the inner surfaces of the cylindrical portions 16a and 16b formed integrally with the first and second casings 1 and 2, respectively. 21c, and when the first and second casings 1 and 2 are rotated around the hinge portion 3 with respect to each other, as shown in FIGS. Even if it contacts the inner surfaces of the cylindrical portions 16a and 16b, the flexible substrate 20 is hardly subjected to a large bending force or frictional force by the sheet-like slip promotion members 21a, 21b and 21c having a low frictional resistance. The life of 20 can be greatly improved, and the hinge portion 3 itself can have a smaller diameter. This will be described in more detail below.
[0021]
In general, the flexible substrate 20 can be bent, but still cannot be bent to an extremely small diameter. Further, as in the present embodiment, a winding part 20a is provided on the flexible board 20, and the printed boards 19a and 19b in the casings 1 and 2 that can be rotated with each other by the flexible board 20 having the winding part 20a. When electrically connected, as shown in FIG. 4 and FIG. 5, the diameter of the wound portion 20a formed on the flexible substrate 20 is large when the housings 1 and 2 are opened and closed. Will be different. That is, when the casings 1 and 2 are closed, as shown in FIG. 5, the diameter of the winding portion 20a of the flexible substrate 20 is the smallest. Limited to the extent possible and cannot be made extremely small. In the opened state, as shown in FIG. 4, the diameter of the wound portion 20a of the flexible substrate 20 is the largest, but here the size determines the inner diameter of the cylindrical portions 16a and 16b. Therefore, the inner diameters of the cylindrical portions 16a and 16b cannot be made smaller than that.
[0022]
By the way, according to the present embodiment, since the slip promotion members 21a and 22b having a small frictional resistance are provided on the inner surfaces of the cylindrical portions 16a and 16b, the inner diameters of the cylindrical portions 16a and 16b are made relatively small, and the housing 1 Even if the winding portion 20a of the flexible substrate 20 is partially in contact with the inner surfaces of the cylindrical portions 16a and 16b at the opening stage, the flexible substrate immediately No excessive bending force, frictional force, or the like is generated in the winding portion 20a of the 20, so that the flexible substrate 20 can be smoothly bent and the life can be sufficiently maintained.
[0023]
In the present embodiment, the first housing 1 is composed of the bearing portions 11 a and 11 b and the cylindrical portions 16 a and 16 b so that the hinge portion 3 protrudes forward from the surface of the first housing 1. The upper case 1a is integrally formed so as to protrude forward from the end of the upper case 1a. Therefore, as shown in FIGS. 4 and 5, one side of the flexible board 20, that is, the side connected to the second printed board 19 b housed in the second housing 2 is from the second cylindrical portion 16 b. The second printed circuit board 19b extends relatively linearly, and is connected to the second printed circuit board 19b. The first flexible circuit board 20 is connected to the second printed circuit board 19b. Since the cylindrical portion 16a protrudes forward from the surface of the first housing 1 on the side connected to the printed circuit board 19a, the inside of the first housing 1 is temporarily passed through the flexible substrate drawing guide portion 17b. Then, it is bent about 90 degrees and is connected to the first printed circuit board 19 a built in the first housing 1.
[0024]
Therefore, in the flexible substrate drawer guide portion 17b in which the flexible substrate 20 is bent by about 90 degrees, the flexible substrate 20 is partly in the flexible substrate drawer guide portion 17b as the casings 1 and 2 are opened and closed. Contact better. Therefore, in the present embodiment, the flexible substrate pull-out guide portion 17b in which the flexible substrate 20 is bent by approximately 90 degrees has a shape substantially along the curve of the flexible substrate 20 so that the flexible substrate 20 is smoothly bent. In addition to the formation, the flexible substrate drawing guide portion 17b is also provided with a slip accelerating member 21c having a low frictional resistance. As a result, in this embodiment, the friction at this portion is also reduced, and the flexible substrate 20 is smoothly curved as a whole, and the excessive bending is caused even though the hinge portion 3 protrudes forward from the housing 1. There is an advantage that almost no force or friction force acts.
[0025]
In the present embodiment, a mobile phone has been described as an example. However, the present invention can be similarly applied to a PDA and other electric devices.
[0026]
【The invention's effect】
As described above, according to the present invention, the first and second casings are pivotally attached to each other so that the first and second casings are pivotably connected to each other, and the first and second printed circuit boards are connected to each other. Provided on the inner surface of the cylindrical portion that accommodates the winding portion formed in the central portion of the flexible substrate to be electrically connected, and when the winding portion of the flexible substrate comes into contact, the sliding is improved. Even if the flexible substrate is deformed by the rotation of the first and second casings and part of the flexible substrate comes into contact with the inner surface of the cylindrical portion, the slip promoting member is provided on the surface. As a result, the flexible substrate moves smoothly as a whole, no excessive bending force is applied, and the flexible substrate can be easily prevented from being cut or damaged. The advantage of being able to maintain a lifetime A.
[Brief description of the drawings]
FIG. 1 is a perspective view of a foldable electric apparatus according to an embodiment of the present invention. FIG. 2 is an exploded perspective view of a main part of the foldable electric apparatus according to an embodiment of the present invention. It is a front view of each part of the foldable electric device in one embodiment,
(A) Front view of the upper case as seen from the inside (B) Front view of the lower case as seen from the inside (C) Front view of the printed circuit board connected by the flexible board [FIG. 4] In one embodiment of the present invention Cross-sectional view of the main part of the folding electric device [FIG. 5] Cross-sectional view of the main part for explaining the operation of the folding electric device in the embodiment of the present invention
DESCRIPTION OF SYMBOLS 1 1st housing | casing 1a Upper case 1b Lower case 2 2nd housing | casing 2a Upper case 2b Lower case 3 Hinge part 4 Function key 5 Numeric keypad 6 Transmission sound hole 7 Ringing sound generation sound hole 8 Liquid crystal display 9 Receiving sound hole 10 Antenna 11a, 11b, 12a, 12b Bearing part 13a, 13b, 14a, 14b Through hole 15a, 15b Shaft 16a, 16b Cylindrical part 17a Semi-cylindrical part 17b Flexible substrate drawing guide part 18a, 18b Half Cylindrical parts 19a, 19b Printed circuit board 20 Flexible board 20a Winding parts 21a, 21b, 21c Slip accelerating member

Claims (1)

第1、第2の筐体を互いに回動自在に枢着するヒンジ部と、このヒンジ部に同軸に形成され、前記第1、第2のプリント基板を互いに電気的に接続するフレキシブル基板の中央部に形成した捲回部を収納する筒状部と、この筒状部の内面に設けられた滑りを良くする滑り促進部材とを備え、
前記ヒンジ部及前記筒状部は、共に前記第1の筐体の表面より前方に突出するように構成され、
前記筒状部は、その軸方向に配列された第1、第2の筒状体で構成され、
前記滑り促進部材は、前記第1、第2筐体を構成するそれぞれの上ケースに一体に形成された前記第1、第2の筒状体を構成するそれぞれの上半円筒部の内面および
前記第1の筐体を構成する下ケースのフレキシブル基板引出し用案内部の内面に設けたことを特徴とする折畳式電気機器。
A hinge part pivotally attaching the first and second housings to each other, and a center of a flexible board formed coaxially with the hinge part and electrically connecting the first and second printed circuit boards to each other A cylindrical portion that accommodates the wound portion formed in the portion, and a slip promoting member that is provided on the inner surface of the cylindrical portion to improve the slip,
The hinge part and the cylindrical part are both configured to protrude forward from the surface of the first housing,
The cylindrical portion is composed of first and second cylindrical bodies arranged in the axial direction,
The slip promotion member includes an inner surface of each upper half cylindrical portion constituting the first and second cylindrical bodies integrally formed with each upper case constituting the first and second housings, and A foldable electric device, characterized in that it is provided on the inner surface of a guide part for pulling out a flexible substrate in a lower case constituting the first housing.
JP2001393923A 2001-12-26 2001-12-26 Folding electrical equipment Expired - Fee Related JP4048291B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2001393923A JP4048291B2 (en) 2001-12-26 2001-12-26 Folding electrical equipment

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Application Number Priority Date Filing Date Title
JP2001393923A JP4048291B2 (en) 2001-12-26 2001-12-26 Folding electrical equipment

Related Child Applications (1)

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JP4048291B2 true JP4048291B2 (en) 2008-02-20

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Families Citing this family (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2005205671A (en) * 2004-01-21 2005-08-04 Olympus Corp Exterior casing
JP4703386B2 (en) * 2005-11-30 2011-06-15 富士通株式会社 Foldable information processing device
JP4597072B2 (en) * 2006-02-27 2010-12-15 東芝テック株式会社 Handy terminal
JP5515171B2 (en) * 2009-12-18 2014-06-11 住友電工プリントサーキット株式会社 Flexible printed wiring board, housing structure, electronic equipment
US9104379B2 (en) 2012-12-25 2015-08-11 Kabushiki Kaisha Toshiba Electronic apparatus
JP6049441B2 (en) * 2012-12-25 2016-12-21 株式会社東芝 Electronics

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