JP3685955B2 - LCD with camera - Google Patents

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Publication number
JP3685955B2
JP3685955B2 JP15814699A JP15814699A JP3685955B2 JP 3685955 B2 JP3685955 B2 JP 3685955B2 JP 15814699 A JP15814699 A JP 15814699A JP 15814699 A JP15814699 A JP 15814699A JP 3685955 B2 JP3685955 B2 JP 3685955B2
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Prior art keywords
circuit board
holding member
lcd panel
liquid crystal
camera
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JP15814699A
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JP2000349465A (en
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英志 中村
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Sharp Corp
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Sharp Corp
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Description

【0001】
【発明の属する技術分野】
この発明は、カーナビゲーションシステム、テレビ電話など液晶表示装置の構造に関する。
【0002】
【従来の技術】
昨今、カーナビゲーションシステム、テレビ電話、ノートパソコン、携帯型ゲーム機など液晶ディスプレイパネル(以下LCDパネルとする。)を表示装置として組み込んだ機器が多数使用されている。LCDパネルは、電力の消費量が少なく、ブラウン管などの表示装置と比べて厚みが非常に薄く軽量なため、LCDパネルを組み込んだ機器は、小型・軽量化できる。
【0003】
図6は、LCDパネルを組み込んだ機器である小型液晶テレビの構造を示す組立図である。前枠4の裏側の所定の位置に、内部フレームを兼ねたLCDパネル1を挿入し、回路基板3を前枠4の爪にはめ込み、さらに図外の小型ビスで回路基板3を前枠4に取り付けている。裏蓋5は、前枠4の外周部の爪を介して前枠4に嵌合させる。このようにして、前枠4および裏蓋5によって、LCDパネルおよび回路基板3を収納する中空のキャビネットが構成される。
【0004】
【発明が解決しようとする課題】
図6に示した小型液晶テレビの構造は、液晶表示装置の一般的な構造であるが、このような機器においては、小型化を実現するために各部品の隙間を極力削減するように設計されている。即ち、キャビネットの内容積の大部分をLCDパネル1が占め、LCDパネル1と回路基板3との隙間、および回路基板3と裏蓋5との隙間は極僅かである。そのため、以下の点が問題となる。
【0005】
(1) 回路基板3において、電子部品を実装する場所や実装する部品の高さが限定される。そのため、部品の選択範囲が制限され、製品のコストが高くなったり、安価で性能の良い部品を使用できないことがある。また、液晶表示装置に機能を追加するために、回路基板3に実装する部品点数を増やしたい場合、部品を実装する場所が制限されているので、現状のキャビネットや回路基板3の大きさでは、部品点数を増やすことが困難である。したがって、液晶表示装置の大きさや回路基板3の大きさを増大させないと多機能化は難しい。
【0006】
(2) キャビネット内は、小型化するために、各部品の間隔を極力削減する様に設計されている。そのため、前枠4と裏蓋5で構成されたキャビネット内のLCDパネル1や回路基板3等の部品から発生した熱を逃がす経路がほとんど無い。また、動作時には裏蓋5と回路基板3の僅かな隙間に熱が籠もりやすく、しばらく使用していると裏蓋5が過熱したり、LCDパネルが過熱して滲んだような表示になることがある。さらに、キャビネットに放熱孔を設けて放熱させることができるが、各部品の間隔が僅かなため、効果は少なく、外観のデザインも制限される。
【0007】
(3) 回路基板のアースを取るために、銅箔テープ等を使用する必要がある。そのため、部品点数や加工の工数が増加し、生産性が低下する。
【0008】
(4) 機種展開する場合などに、同じキャビネットや構造部品を使用して、サイズの異なるLCDパネルを使用したい場合、サイズが異なるとLCDパネルの固定場所が異なってくる。すなわち、前枠4の裏面の所定の位置にLCDパネル1を挿入したのちに、回路基板3を爪と小型ビスで前枠4の裏面の所定の位置に固定するが、LCDの大きさによって回路基板3を固定する爪やビスを固定するボスを設ける場所が異なってくるため、新たにキャビネットや基板の孔加工の位置などを設計しなおさなければならず、構造部品をそのまま流用することは難しい。
【0009】
(5) 図6の小型液晶テレビは、図外の操作部とヒンジ機構で接続され、可動可能な構造になっている。ヒンジ機構の接続部は、キャビネット内に取付場所が無いため、LCDパネルと構造的に独立せざるを得ず、強度的に脆弱になる。本例では、前枠に図外の金属板を接合し、強度を補っている。
【0010】
この発明は、小型化され内部の空間が限定された液晶表示装置において、回路基板の部品実装範囲、放熱性、ヒンジ機構の組み付けなど、上記の問題を改善した液晶表示装置を提供することを目的とする。
【0011】
【課題を解決するための手段】
この発明は、上記の課題を解決するための手段として、以下の構成を備えている。
【0012】
(1) LCDパネル
端部にカメラが取り付けられた回路基板と、
前面が前記LCDパネルの裏面対向するとともに、裏面が回路基板の前面対向し、前記カメラが前記LCDパネルの近傍に位置する状態で、前記LCDパネルおよび前記回路基板を一体的に保持し、前記カメラ側の端部が前面側に折曲された金属製平板の保持部材と、
前記回路基板の接地端子を前記保持部材に接続させるとともに、前記LCDパネルおよび前記回路基板を前記保持部材に一体的に固定する固定部材と、
前記固定部材によりLCDパネル及び前記回路基板が一体的に固定された前記保持部材を収納するキャビネットと、
を備えたことを特徴とする。
【0013】
この構成においては、金属製の保持部材の両面に、LCDパネルと回路基板を対向させて取り付け、一体型のユニットを形成している。したがって、一体化したユニットを、カメラ付き液晶表示装置のキャビネット内に取り付ければ良いので、組立が簡略化でき、ユニット単体での交換・調整が容易に行えるので、生産性が向上する。また、保持部材を含むユニットによって、カメラ付き液晶表示装置の強度を保っているので、キャビネットが成形品の場合、従来より成形品の厚みを薄くすることができるため、カメラ付き液晶表示装置全体の厚みを薄くできる。また、固定部材により保持部材に回路基板のアースを接続でき、また保持部材を回路基板の放熱板として機能させるとともに、カメラに対する遮光板として機能させることができる。
【0014】
(2) 前記保持部材は、その裏面に絶縁処理層形成されたことを特徴とする。
【0015】
この構成においては、金属製の保持部材の両面に、LCDパネルと回路基板を対向させて取り付け、一体型のユニットを構成し、保持部材の回路基板を取り付ける面に、絶縁処理層を形成している。したがって、金属製の保持部材の面に回路基板を接近させても回路基板に短絡が生じることがなく、保持部材を挟んでLCDパネルと回路基板とを、従来より接近させることができ、カメラ付き液晶表示装置をより小型化できる。
【0024】
【発明の実施の形態】
図1は、この発明の実施形態に係るカメラ付き液晶表示装置の組立図である。本装置は、テレビ電話として使用し、キャビネットを構成する成形品の前枠4および裏蓋5、カメラ12を載置した回路基板3、使用者が話をする相手などの画像を表示するLCDパネル1、LCDパネル1と回路基板3を保持する保持部材2、液晶表示装置を保持して装置本体に固定するヒンジ機構6を含む構成である。
【0025】
LCDパネル1は、その背面を保持部材2の前面に対向させた状態で、ビス21a〜21dをLCDパネル1の貫通孔1a〜1dを介して、保持部材2のネジ孔2a〜2dに各々螺合することにより、保持部材2の前面の所定の位置に保持される。また、回路基板3は、その前面を保持部材2の裏面に対向させた状態で、ビス8a〜8bを回路基板3の貫通孔3a〜3bを介して、保持部材2の図外のネジ孔に各々螺合することにより、保持部材2の前面の所定の位置に保持される。上記のように、保持部材2の両面の所定の位置にビスで、LCDパネル1と回路基板3を対向させて取り付け、一体化したLCDユニットが構成される。LCDユニットを、前枠4の所定の位置にはめ込み、ビス23a〜23bで、前枠4に固定する。また、保持部材2の貫通穴2e、2hおよびヒンジ機構6の貫通孔6a、6bを介して、ビス22a、22bによりLCDユニットを前枠4に螺合する。そして、前枠4の外周部の爪を裏蓋5に嵌合させる。嵌合後、ビス24a、24bにより前枠4の貫通孔4a、4b、保持部材2の貫通孔2f、2g、ヒンジ機構6の貫通孔6c、6dを介して裏蓋5に螺合する。以上の作業により、カメラ付き液晶表示装置は組み立てられる。
【0026】
LCDユニットは、前枠4と裏蓋5で構成されたキャビネットや装置本体との接続構造に関わりのない独立したユニットとして扱うことができ、回路調整やユニットの交換などが容易に実施できるので、生産性が向上する。また、組立が容易なので、生産を外部委託することができ、加工費をコストダウンできる。
【0027】
図2は、LCDユニットを示す斜視図である。LCDユニットは、保持部材2に回路基板3、LCDパネル1が各々取り付けられて構成されている。保持部材2の素材として、金属製の板金を使用し、回路基板3を保持する面に絶縁処理を施している。絶縁処理方法としては、樹脂性のシートを板金の片面に貼る方法と、樹脂がコーティングされた板材を加工して使用する方法がある。従来回路基板3とLCDパネル1の間には所定の絶縁距離Rが必要であったが、絶縁処理を行った保持部材2を介在させるので、絶縁距離はr(<R)でよくなる。そのため、以下の2つの項目のいずれかについて改善できる。
【0028】
(1) 従来は液晶表示装置全体を小型化したために、回路基板3とLCDパネル1の間隔が僅かになり、絶縁距離が確保できずに部品実装できなかった回路基板3のLCDパネル1の裏面部に対向する部分に、絶縁距離(R−r)の余裕ができるので、回路基板3のLCDパネル1の裏面部に対向する部分にも、部品を実装することが可能となり、また、従来実装できなかった背の高い部品を実装することができる。したがって、基板の実装可能範囲が拡がり、保持部材2に対向する面を有効に活用できることである。
【0029】
(2) LCDパネル1の裏面部を絶縁距離(R−r)分だけ狭くすることが可能になり、さらに、液晶表示装置を薄型化できる。
【0030】
また、保持部材2は、金属製であるので、回路基板3と接続し、アースとして使用できる。保持部材2に絶縁材として樹脂コーティングがなされている場合は、樹脂コーティング面でアースを取ることはできないが、保持部材2を折曲加工し、樹脂コーティングされていない面を回路基板に当接させることで、リード線などを使用しないで保持部材2と回路基板3とを接続できる。
【0031】
図3は、アース接続部の断面略図である。保持部材2の樹脂コーティングされた面を絶縁面A、樹脂コーティングされていない面を非絶縁面Bとする。回路基板3は保持部材2の絶縁面Aと対向しているが、アース接続部7において同図のように保持部材2の端部をコの字状に折曲加工しているので、非絶縁面Bが回路基板3の面Cと当接する。回路基板3は、金属製のビス8aで保持部材2に固定するが、アース接続を確実にするために、ビス8aを貫通する回路基板3の孔3aはスルーホールになっており、回路基板3の面Cおよび面Dの孔3aの周囲に回路基板3のアースと接続された銅箔部9を設け、スルーホールと銅箔部9に半田盛りを行う。一方、保持部材2の孔2aには、バーリング加工が施されている。ビス8aで保持部材2を固定する際、保持部材2に、銅箔部9に行った半田盛りを変形密着させ、ビス8aを回路基板3の孔3aを貫通させて、バーリング加工した孔2aに螺合することにより、アース接続が確実になる。
【0032】
また、保持部材2は、金属製であるので、回路基板3と接続して放熱板として使用できる。保持部材2は前記の様に、ビスによって回路基板3と密着させているので、回路基板3で発生した熱は保持部材2に伝搬することにより、熱の停滞が緩和される。そして、ヒンジ機構6に伝導し、キャビネットの外部に放出される。
【0033】
ここで、保持部材2は金属製であるので、保持部材自身で液晶表示装置の強度を保つことができるため、成形品の厚みを従来より薄くすることができるので、さらに液晶表示装置の厚みを薄くできる。
【0034】
図4は、図1の構成において、LCDパネル1とLCDパネル1の画面サイズに適合した前枠4を、大型サイズのLCDパネル10とLCDパネル10の画面サイズに適合した前枠11に交換した液晶表示装置の組立図である。
【0035】
従来は、回路基板3を前枠4に固定する方式の場合、前枠4に設けた回路基板3固定用のボスの位置は回路基板3とLCDパネル1との相関関係により決まるので、画面サイズの異なるLCDパネルを使用した機種を新たに作成する場合、取り付け部品を再度設計しなおすか、予め最大サイズLCDパネルにあわせた設計をしておく必要があった。一方、回路基板3を裏蓋5に固定する方式の場合、回路基板3をビスで固定するためにボスを設けないといけないため、裏蓋5の厚みが増すことになり、液晶表示装置全体の厚みが増加する。これに対して、この発明では、LCDパネルはキャビネットを構成する前枠4、前枠11、及び裏蓋5にネジ止めする構造ではないため、LCDユニットのLCDパネルのサイズは、前枠を変更することで比較的自由に変更できる。したがって、LCDパネル1と保持部材2と回路基板3によりLCDユニットを構成することにより、液晶表示装置全体の小型化・薄型化が実現できて、多種類のサイズのLCDパネルを取り付けることが可能になる。
【0036】
図5は、図1に示したカメラ付き液晶表示装置を組み立てた状態の中央部の垂直断面図である。
【0037】
図1で説明した構成と同じであるため、図1で未説明の部分についてのみ述べる。ビス8aは、図3で説明したように回路基板3と保持部材2を接続している。LCDパネル1の裏面には、LCDパネル用の図外のバックライトを誘導するための導光板14が組み込まれている。バックライトには、冷陰極管やELなどを使用する。導光板14は、LCDの画面とほぼ同サイズになる。本装置をテレビ電話として使用する際、液晶表示を見ながら話をするので、使用者の視線に違和感が無いようにするために、カメラ12をLCDパネル1に接近させた構造に設計されている。導光板14からバックライトの光が漏れるとカメラ12に入射し、カメラ12で使用者を撮影する際に使用者をハッキリ撮影できなくなり支障を来す。カメラ12を内蔵しない機器においても、通常不織布などを貼り付けしたり、樹脂成形品で漏洩光遮断壁を作成して光漏れ対策を行うが、本例では、保持部材2の一部を折曲加工した遮光壁13が、導光板14からバックライトの漏洩光がカメラ12に入射することを防止している。この構造では、新たに部品の追加が必要なく、保持部材は金属製の板金であるため、薄く、遮光性が高く、加工性がよい。
【0038】
図5において、本実施例の液晶表示装置は、表示部の折り畳み機能を有する構造のため、ヒンジ機構の接続部15を本体接続部に接続する。保持部材2とヒンジ機構6との接続は、ビスなどを用い、特に追加部品を必要としないので、僅かな部品でヒンジ機構6を構成することができる。液晶表示装置を可動させる必要が無い場合は、ヒンジ機構6を保持部材2に接続せず、保持部材2自体を延長し、他の機器に接続できる構造にすることも可能である。
【0039】
液晶表示装置の折り畳み機能を実現するために、回転機構を有するヒンジ機構6は、汎用の回転機構を使用することが可能で、中央部に機器本体と回路接続する為のケーブルスペースが必要なため、回転機構は左右別々になっている。ヒンジ機構6単体では、左右が別々の角度になり得るので、表示装置がねじれ応力に対して脆弱だと回転操作に支障を来すが、保持部材2の左右端にヒンジ機構を接続しているため、ヒンジ機構6の回転運動を左右で高精度に同期することが可能である。そのため、液晶表示装置を高精度で保持でき、微小な角度の可動にも対応できる。
【0040】
以上のような改善効果により、液晶表示装置は小型化・薄型化することができ、安価で高性能の部品を使用することが可能で、放熱性・組立性が良く、総合的にコストダウンを実施できる。
【0041】
【発明の効果】
本発明によれば、以下の効果が得られる。
【0042】
(1) 金属製の保持部材の両面に、LCDパネルと回路基板を対向させて取り付け、一体型のユニットを形成することにより、一体化したユニットをカメラ付き液晶表示装置のキャビネット内に取り付ければ良いので、組立が簡略化でき、ユニット単体での交換・調整が容易に行えるので、生産性が向上し、保持部材を含むユニットによって、カメラ付き液晶表示装置の強度を保っているので、キャビネットが成形品の場合、従来より成形品の厚みを薄くすることができるため、カメラ付き液晶表示装置全体の厚みを薄くできる。また、固定部材により保持部材に回路基板のアースを接続でき、また保持部材を回路基板の放熱板として機能させるとともに、カメラに対する遮光板として機能させることができる。
【0043】
(2) 金属製の保持部材の両面に、LCDパネルと回路基板を対向させて取り付け、一体型のユニットを構成し、保持部材の回路基板を取り付ける面に、絶縁処理層を形成している。したがって、金属製の保持部材の面に回路基板を接近させても回路基板に短絡が生じることがなく、保持部材を挟んでLCDパネルと回路基板とを、従来より接近させることができ、カメラ付き液晶表示装置をより小型化できる。
【図面の簡単な説明】
【図1】この発明の実施形態に係る液晶表示装置の組立図である。
【図2】この発明の実施形態に係る液晶表示装置の表示ユニットの斜視図である。
【図3】この発明の実施形態に係る液晶表示装置の回路基板と保持部材との接続部の断面略図である。
【図4】この発明の実施形態に係る液晶表示装置の別の組立図である。
【図5】この発明の実施形態に係る液晶表示装置の中央部断面略図である。
【図6】従来の液晶表示装置の形状を示す小型液晶テレビの組立図である。
【符号の説明】
1−LCDパネル
1a〜d、2a〜h、3a〜b、4a〜b、6a〜d−孔
2−保持部材
3−回路基板
4−前枠
5−裏蓋
6−ヒンジ機構
8a〜b、21a〜d、22a〜b、23a〜b、24a〜b−ビス
12−カメラ
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a structure of a liquid crystal display device such as a car navigation system and a videophone.
[0002]
[Prior art]
In recent years, a large number of devices incorporating a liquid crystal display panel (hereinafter referred to as an LCD panel) as a display device such as a car navigation system, a video phone, a notebook computer, and a portable game machine are used. Since the LCD panel consumes less power and is much thinner and lighter than a display device such as a cathode ray tube, a device incorporating the LCD panel can be reduced in size and weight.
[0003]
FIG. 6 is an assembly diagram showing the structure of a small-sized liquid crystal television that is a device incorporating an LCD panel. The LCD panel 1 that also serves as an internal frame is inserted into a predetermined position on the back side of the front frame 4, the circuit board 3 is fitted into the claws of the front frame 4, and the circuit board 3 is attached to the front frame 4 with a small screw (not shown). It is attached. The back cover 5 is fitted to the front frame 4 via the claws on the outer periphery of the front frame 4. In this way, the front frame 4 and the back cover 5 constitute a hollow cabinet that houses the LCD panel and the circuit board 3.
[0004]
[Problems to be solved by the invention]
The structure of the small-sized liquid crystal television shown in FIG. 6 is a general structure of a liquid crystal display device, but such a device is designed to reduce the gap between components as much as possible in order to reduce the size. ing. That is, the LCD panel 1 occupies most of the internal volume of the cabinet, and the gap between the LCD panel 1 and the circuit board 3 and the gap between the circuit board 3 and the back cover 5 are very small. Therefore, the following points are problematic.
[0005]
(1) In the circuit board 3, the place where the electronic component is mounted and the height of the mounted component are limited. For this reason, the selection range of parts is limited, and the cost of the product may be high, or inexpensive and high-performance parts may not be used. In addition, in order to add functions to the liquid crystal display device, when it is desired to increase the number of components to be mounted on the circuit board 3, the location where the components are mounted is limited. It is difficult to increase the number of parts. Therefore, it is difficult to increase the number of functions unless the size of the liquid crystal display device and the size of the circuit board 3 are increased.
[0006]
(2) The interior of the cabinet is designed to reduce the space between each part as much as possible to reduce the size. Therefore, there is almost no path for releasing heat generated from components such as the LCD panel 1 and the circuit board 3 in the cabinet constituted by the front frame 4 and the back cover 5. In addition, during operation, heat is likely to be trapped in a slight gap between the back cover 5 and the circuit board 3, and the back cover 5 may be overheated or the LCD panel may be overheated after being used for a while. There is. Furthermore, although heat dissipation holes can be provided in the cabinet to dissipate heat, the effects are small and the appearance design is limited because the intervals between the parts are small.
[0007]
(3) It is necessary to use copper foil tape to ground the circuit board. For this reason, the number of parts and the number of processing steps increase, and the productivity decreases.
[0008]
(4) If you want to use different sizes of LCD panels using the same cabinet or structural parts, such as when deploying models, the location where the LCD panel is fixed varies depending on the size. That is, after the LCD panel 1 is inserted into a predetermined position on the back surface of the front frame 4, the circuit board 3 is fixed to a predetermined position on the back surface of the front frame 4 with claws and small screws. Since the place for providing the claw for fixing the substrate 3 and the boss for fixing the screw is different, it is necessary to redesign the cabinet and the position of the hole processing of the substrate, and it is difficult to divert the structural parts as they are. .
[0009]
(5) The small-sized liquid crystal television shown in FIG. 6 is connected to an operation unit (not shown) by a hinge mechanism and has a movable structure. Since the connecting portion of the hinge mechanism does not have a mounting place in the cabinet, it must be structurally independent from the LCD panel and becomes weak in strength. In this example, a metal plate (not shown) is joined to the front frame to supplement the strength.
[0010]
An object of the present invention is to provide a liquid crystal display device in which the above-described problems are improved in a liquid crystal display device that is miniaturized and has a limited internal space, such as a circuit board component mounting range, heat dissipation, and a hinge mechanism. And
[0011]
[Means for Solving the Problems]
The present invention has the following configuration as means for solving the above problems.
[0012]
(1) and the LCD panel,
A circuit board with a camera attached to the end , and
With the front faces the rear surface of the LCD panel, the rear surface faces the front surface of the circuit board, in a state where the camera is positioned in the vicinity of the LCD panel, integrally holding the LCD panel and the circuit board, A holding member of a metal flat plate whose end on the camera side is bent to the front side ;
Together to connect the ground terminal of the circuit board to the holding member, a fixing member for integrally fixing the LCD panel and the circuit board to the holding member,
A cabinet for storing the holding member in which the LCD panel and the circuit board are integrally fixed by the fixing member ;
It is provided with.
[0013]
In this configuration, an LCD panel and a circuit board are attached to both surfaces of a metal holding member so as to face each other to form an integral unit. Therefore, since the integrated unit may be mounted in the cabinet of the camera-equipped liquid crystal display device, the assembly can be simplified and the unit can be easily replaced and adjusted, so that productivity is improved. Also, the unit including a retaining member, since keeping the intensity of the camera-equipped liquid crystal display device, the cabinet case of molded articles, it is possible to reduce the thickness of the molded article conventionally the entire camera-equipped liquid crystal display device The thickness can be reduced. Further, the grounding of the circuit board can be connected to the holding member by the fixing member, and the holding member can function as a heat sink for the circuit board and can also function as a light shielding plate for the camera.
[0014]
(2) the holding member is characterized by the rear surface of its possible insulation treatment layer is formed.
[0015]
In this configuration, the LCD panel and the circuit board are attached to both sides of the metal holding member so as to face each other, constitute an integrated unit, and an insulating treatment layer is formed on the surface of the holding member to which the circuit board is attached. Yes. Therefore, even if the circuit board is brought close to the surface of the metal holding member, the circuit board is not short-circuited, and the LCD panel and the circuit board can be brought closer to each other with the holding member interposed therebetween, with a camera. The liquid crystal display device can be further downsized.
[0024]
DETAILED DESCRIPTION OF THE INVENTION
FIG. 1 is an assembly diagram of a camera-equipped liquid crystal display device according to an embodiment of the present invention. This apparatus is used as a video phone, and is an LCD panel for displaying images of a front frame 4 and a back cover 5 of a molded product constituting a cabinet, a circuit board 3 on which a camera 12 is placed, and a person to whom a user talks. 1, a holding member 2 that holds the LCD panel 1 and the circuit board 3, and a hinge mechanism 6 that holds the liquid crystal display device and fixes it to the device body.
[0025]
The LCD panel 1 is screwed into the screw holes 2a to 2d of the holding member 2 through the through holes 1a to 1d of the LCD panel 1 with the back surface thereof facing the front surface of the holding member 2, respectively. By combining, the holding member 2 is held at a predetermined position on the front surface. In addition, the circuit board 3 has screws 8a to 8b that are not shown in the drawing of the holding member 2 through the through holes 3a to 3b of the circuit board 3 with the front surface thereof facing the back surface of the holding member 2. By being screwed to each other, the holding member 2 is held at a predetermined position. As described above, the LCD panel 1 and the circuit board 3 are attached to each other at predetermined positions on both surfaces of the holding member 2 so as to face each other, and an integrated LCD unit is configured. The LCD unit is fitted into a predetermined position of the front frame 4 and fixed to the front frame 4 with screws 23a to 23b. Further, the LCD unit is screwed to the front frame 4 by screws 22 a and 22 b through the through holes 2 e and 2 h of the holding member 2 and the through holes 6 a and 6 b of the hinge mechanism 6. And the nail | claw of the outer peripheral part of the front frame 4 is fitted to the back cover 5. FIG. After the fitting, screws 24a and 24b are screwed into the back cover 5 through the through holes 4a and 4b of the front frame 4, the through holes 2f and 2g of the holding member 2, and the through holes 6c and 6d of the hinge mechanism 6. Through the above operation, the camera-equipped liquid crystal display device is assembled.
[0026]
The LCD unit can be handled as an independent unit regardless of the connection structure between the cabinet and the device body composed of the front frame 4 and the back cover 5, and circuit adjustment and unit replacement can be easily performed. Productivity is improved. In addition, since assembly is easy, production can be outsourced and processing costs can be reduced.
[0027]
FIG. 2 is a perspective view showing the LCD unit. The LCD unit is configured by attaching a circuit board 3 and an LCD panel 1 to a holding member 2. As a material of the holding member 2, a metal sheet metal is used, and an insulating process is performed on the surface holding the circuit board 3. As an insulation treatment method, there are a method of sticking a resinous sheet on one surface of a sheet metal and a method of processing and using a plate material coated with a resin. Conventionally, a predetermined insulation distance R is required between the circuit board 3 and the LCD panel 1, but since the holding member 2 subjected to insulation treatment is interposed, the insulation distance may be r (<R). Therefore, it can improve about either of the following two items.
[0028]
(1) Conventionally, since the entire liquid crystal display device is downsized, the distance between the circuit board 3 and the LCD panel 1 becomes small, and the back surface of the LCD panel 1 of the circuit board 3 that cannot be mounted without securing an insulation distance. Since the insulation distance (Rr) can be provided in the part facing the part, it is possible to mount the component on the part facing the back side of the LCD panel 1 of the circuit board 3 as well. Tall parts that could not be mounted can be mounted. Therefore, the mountable range of the substrate is expanded, and the surface facing the holding member 2 can be effectively used.
[0029]
(2) The back surface of the LCD panel 1 can be narrowed by the insulation distance (Rr), and the liquid crystal display device can be made thinner.
[0030]
Since the holding member 2 is made of metal, it can be connected to the circuit board 3 and used as a ground. If the holding member 2 is resin-coated as an insulating material, the resin-coated surface cannot be grounded, but the holding member 2 is bent so that the non-resin-coated surface contacts the circuit board. Thus, the holding member 2 and the circuit board 3 can be connected without using a lead wire or the like.
[0031]
FIG. 3 is a schematic cross-sectional view of the ground connection. The surface of the holding member 2 that is resin-coated is referred to as an insulating surface A, and the surface that is not resin-coated is referred to as a non-insulating surface B. Although the circuit board 3 faces the insulating surface A of the holding member 2, the end of the holding member 2 is bent into a U-shape as shown in FIG. The surface B is in contact with the surface C of the circuit board 3. The circuit board 3 is fixed to the holding member 2 with a metal screw 8a. In order to ensure the ground connection, the hole 3a of the circuit board 3 penetrating the screw 8a is a through hole. A copper foil portion 9 connected to the ground of the circuit board 3 is provided around the hole 3a on the surface C and the surface D, and soldering is performed on the through hole and the copper foil portion 9. On the other hand, the hole 2a of the holding member 2 is subjected to burring. When the holding member 2 is fixed with the screw 8a, the solder pile applied to the copper foil portion 9 is deformed and adhered to the holding member 2, and the screw 8a is passed through the hole 3a of the circuit board 3 to form the burring hole 2a. The ground connection is ensured by screwing.
[0032]
Since the holding member 2 is made of metal, it can be connected to the circuit board 3 and used as a heat sink. Since the holding member 2 is in close contact with the circuit board 3 by screws as described above, the heat generated in the circuit board 3 is propagated to the holding member 2 so that the stagnation of heat is alleviated. Then, it is conducted to the hinge mechanism 6 and discharged to the outside of the cabinet.
[0033]
Here, since the holding member 2 is made of metal, since the strength of the liquid crystal display device can be maintained by the holding member itself, the thickness of the molded product can be made thinner than before, so that the thickness of the liquid crystal display device can be further reduced. Can be thin.
[0034]
FIG. 4 shows that the front panel 4 suitable for the screen size of the LCD panel 1 and the LCD panel 1 is replaced with a large size LCD panel 10 and the front frame 11 suitable for the screen size of the LCD panel 10 in the configuration of FIG. It is an assembly drawing of a liquid crystal display device.
[0035]
Conventionally, when the circuit board 3 is fixed to the front frame 4, the position of the boss for fixing the circuit board 3 provided on the front frame 4 is determined by the correlation between the circuit board 3 and the LCD panel 1. When a new model using a different LCD panel is created, it is necessary to redesign the mounting parts or design in advance according to the maximum size LCD panel. On the other hand, in the case of the method of fixing the circuit board 3 to the back cover 5, a boss must be provided to fix the circuit board 3 with screws, so that the thickness of the back cover 5 increases, and the entire liquid crystal display device Thickness increases. In contrast, in the present invention, the LCD panel is not structured to be screwed to the front frame 4, the front frame 11, and the back cover 5 constituting the cabinet, so the size of the LCD panel of the LCD unit is changed from the front frame. Can be changed relatively freely. Therefore, by configuring the LCD unit with the LCD panel 1, the holding member 2, and the circuit board 3, the entire liquid crystal display device can be reduced in size and thickness, and various types of LCD panels can be attached. Become.
[0036]
FIG. 5 is a vertical cross-sectional view of the central portion of the assembled liquid crystal display device with a camera shown in FIG.
[0037]
Since the configuration is the same as that described with reference to FIG. 1, only the portions not described in FIG. 1 will be described. The screw 8a connects the circuit board 3 and the holding member 2 as described in FIG. On the back surface of the LCD panel 1, a light guide plate 14 for guiding a backlight (not shown) for the LCD panel is incorporated. A cold cathode tube or EL is used for the backlight. The light guide plate 14 is approximately the same size as the LCD screen. When this apparatus is used as a videophone, since the user talks while watching the liquid crystal display, the camera 12 is designed to be close to the LCD panel 1 so that the user's line of sight does not feel strange. . When light from the backlight leaks from the light guide plate 14, the light enters the camera 12, and when the user is photographed by the camera 12, the user cannot be clearly photographed, causing a problem. Even in devices that do not incorporate the camera 12, a non-woven fabric or the like is usually applied, or a leakage light blocking wall is created with a resin molded product to prevent light leakage. In this example, a part of the holding member 2 is bent. The processed light shielding wall 13 prevents the leakage light of the backlight from entering the camera 12 from the light guide plate 14. In this structure, no additional parts are required, and the holding member is a metal sheet metal. Therefore, the holding member is thin, has high light shielding properties, and has good workability.
[0038]
In FIG. 5, since the liquid crystal display device of the present embodiment has a structure having a folding function of the display unit, the connection part 15 of the hinge mechanism is connected to the main body connection part. Since the connection between the holding member 2 and the hinge mechanism 6 uses screws or the like and does not require any additional parts, the hinge mechanism 6 can be configured with few parts. When it is not necessary to move the liquid crystal display device, the hinge mechanism 6 may not be connected to the holding member 2, but the holding member 2 itself may be extended to be connected to other devices.
[0039]
In order to realize the folding function of the liquid crystal display device, the hinge mechanism 6 having a rotation mechanism can use a general-purpose rotation mechanism, and requires a cable space for circuit connection with the device body at the center. The rotation mechanism is separate on the left and right. In the hinge mechanism 6 alone, the left and right can be at different angles. Therefore, if the display device is vulnerable to torsional stress, the rotation operation is hindered, but the hinge mechanism is connected to the left and right ends of the holding member 2. Therefore, it is possible to synchronize the rotational movement of the hinge mechanism 6 with high accuracy on the left and right. Therefore, the liquid crystal display device can be held with high accuracy and can be moved at a minute angle.
[0040]
Due to the above improvements, the liquid crystal display device can be reduced in size and thickness, and it is possible to use inexpensive, high-performance parts, good heat dissipation and assembly, and overall cost reduction. Can be implemented.
[0041]
【The invention's effect】
According to the present invention, the following effects can be obtained.
[0042]
(1) The LCD panel and the circuit board are attached to both sides of the metal holding member so as to face each other to form an integrated unit, so that the integrated unit can be mounted in the cabinet of the camera-equipped liquid crystal display device. Therefore, assembling can be simplified and replacement and adjustment of the unit can be easily performed, so that productivity is improved and the strength of the liquid crystal display device with the camera is maintained by the unit including the holding member, so the cabinet is molded. In the case of a product, since the thickness of the molded product can be made thinner than before, the thickness of the entire liquid crystal display device with a camera can be made thinner. Further, the grounding of the circuit board can be connected to the holding member by the fixing member, and the holding member can function as a heat sink for the circuit board and can also function as a light shielding plate for the camera.
[0043]
(2) The LCD panel and the circuit board are attached to both surfaces of the metal holding member so as to face each other to constitute an integrated unit, and an insulating treatment layer is formed on the surface of the holding member to which the circuit board is attached. Therefore, even if the circuit board is brought close to the surface of the metal holding member, the circuit board is not short-circuited, and the LCD panel and the circuit board can be brought closer to each other with the holding member interposed therebetween, with a camera. The liquid crystal display device can be further downsized.
[Brief description of the drawings]
FIG. 1 is an assembly view of a liquid crystal display device according to an embodiment of the present invention.
FIG. 2 is a perspective view of a display unit of the liquid crystal display device according to the embodiment of the present invention.
FIG. 3 is a schematic cross-sectional view of a connection portion between a circuit board and a holding member of a liquid crystal display device according to an embodiment of the present invention.
FIG. 4 is another assembly view of the liquid crystal display device according to the embodiment of the present invention.
FIG. 5 is a schematic cross-sectional view of a central portion of a liquid crystal display device according to an embodiment of the present invention.
FIG. 6 is an assembly view of a small liquid crystal television showing the shape of a conventional liquid crystal display device.
[Explanation of symbols]
1-LCD panel 1a-d, 2a-h, 3a-b, 4a-b, 6a-d-hole 2-holding member 3-circuit board 4-front frame 5-back cover 6-hinge mechanism 8a-b, 21a -D, 22a-b, 23a-b, 24a-b-bis 12-camera

Claims (2)

LCDパネル
端部にカメラが取り付けられた回路基板と、
前面が前記LCDパネルの裏面対向するとともに、裏面が回路基板の前面対向し、前記カメラが前記LCDパネルの近傍に位置する状態で、前記LCDパネルおよび前記回路基板を一体的に保持し、前記カメラ側の端部が前面側に折曲された金属製平板の保持部材と、
前記回路基板の接地端子を前記保持部材に接続させるとともに、前記LCDパネルおよび前記回路基板を前記保持部材に一体的に固定する固定部材と、
前記固定部材によりLCDパネル及び前記回路基板が一体的に固定された前記保持部材を収納するキャビネットと、
を備えたことを特徴とするカメラ付き液晶表示装置。
And the LCD panel,
A circuit board with a camera attached to the end , and
With the front faces the rear surface of the LCD panel, the rear surface faces the front surface of the circuit board, in a state where the camera is positioned in the vicinity of the LCD panel, integrally holding the LCD panel and the circuit board, A holding member of a metal flat plate whose end on the camera side is bent to the front side ;
Together to connect the ground terminal of the circuit board to the holding member, a fixing member for integrally fixing the LCD panel and the circuit board to the holding member,
A cabinet for storing the holding member in which the LCD panel and the circuit board are integrally fixed by the fixing member ;
Camera-equipped liquid crystal display device comprising the.
前記保持部材は、その裏面に絶縁処理層形成されたことを特徴とする請求項1に記載のカメラ付き液晶表示装置。The holding member, a camera-equipped liquid crystal display device according to claim 1, characterized in that the rear surface to the insulation treatment layer of that is formed.
JP15814699A 1999-06-04 1999-06-04 LCD with camera Expired - Fee Related JP3685955B2 (en)

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JP4356355B2 (en) * 2003-05-02 2009-11-04 ソニー株式会社 Liquid crystal display device and electronic apparatus provided with the same
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JP4659697B2 (en) * 2006-07-21 2011-03-30 シャープ株式会社 An electronic device having a flat metal chassis with a female screw projecting
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