JP2001264883A - Liquid crystal projector - Google Patents

Liquid crystal projector

Info

Publication number
JP2001264883A
JP2001264883A JP2000079380A JP2000079380A JP2001264883A JP 2001264883 A JP2001264883 A JP 2001264883A JP 2000079380 A JP2000079380 A JP 2000079380A JP 2000079380 A JP2000079380 A JP 2000079380A JP 2001264883 A JP2001264883 A JP 2001264883A
Authority
JP
Japan
Prior art keywords
liquid crystal
adjustment
crystal panel
movable frame
bracket
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.)
Granted
Application number
JP2000079380A
Other languages
Japanese (ja)
Other versions
JP3490953B2 (en
Inventor
Koichi Fujiwara
弘一 藤原
Toshio Horie
敏生 堀江
Takao Matsumura
隆夫 松村
Nobuyuki Fujimura
信行 藤村
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.)
Sanyo Electric Co Ltd
Original Assignee
Sanyo Electric 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 Sanyo Electric Co Ltd filed Critical Sanyo Electric Co Ltd
Priority to JP2000079380A priority Critical patent/JP3490953B2/en
Publication of JP2001264883A publication Critical patent/JP2001264883A/en
Application granted granted Critical
Publication of JP3490953B2 publication Critical patent/JP3490953B2/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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  • Liquid Crystal (AREA)
  • Projection Apparatus (AREA)
  • Cooling Or The Like Of Electrical Apparatus (AREA)

Abstract

PROBLEM TO BE SOLVED: To enhance the cooling effect of a liquid crystal panel. SOLUTION: The channel of air to cool the liquid crystal panel 75 is provided between the panel 75 and a bracket 6. A branched line 7 presenting cross-sectional shape tapered toward its edge and permitting the air passing between the panel 75 and the bracket 6 to smoothly flow is formed at least on the upstream side of the channel on the panel 75.

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、液晶パネルの画像
を強力な光で照射して写し出す液晶プロジェクタに関す
るものである。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a liquid crystal projector for projecting an image on a liquid crystal panel by irradiating it with strong light.

【0002】[0002]

【従来の技術】従来より、光の3原色であるR、G、B
(赤、緑、青)に対応した3枚の液晶パネルを光源の強い
光で照射した後に、光を合成し、スクリーンに画像を映
し出す液晶プロジェクタが提案されている。図7は、該
液晶プロジェクタの断面平面図である。キャビネット
(8)内には、4枚の全反射ミラー(82a)(82b)(82c)(82d)
が光軸Lに対して傾いて配備され、Rを透過してBとG
を反射するR分光用ダイクロイックミラー(83a)、Gを
反射してBを透過するG分光用ダイクロイックミラー(8
3b)が配備されている。光源(71)からの光は、コンデン
サレンズ(84)に集光されて、各ダイクロイックミラー(8
3a)(83b)によってR、G、Bに分光された後に、夫々に
対応する液晶パネル(75)(74)(76)を照射して、プリズム
体(80)に集光されて投写レンズ(72)からスクリーン(図
示せず)に照射される。図8は、各液晶パネル(75)の保
持構造を示す側面断面図である。液晶パネル(75)は、金
属製のブラケット(6)の一面に密着して取り付けられ、
該ブラケット(6)の下方には液晶パネル(75)を冷却する
ファン(9)が取り付けられている。ファン(9)からの風
は上向きに流れて、ブラケット(6)及びブラケット(6)
に接していない液晶パネル(75)の面を冷却する。ブラケ
ット(6)が金属製であるから、熱を吸収しやすい。
2. Description of the Related Art Conventionally, three primary colors of light, R, G, B
A liquid crystal projector that irradiates three liquid crystal panels corresponding to (red, green, and blue) with strong light from a light source, synthesizes light, and projects an image on a screen has been proposed. FIG. 7 is a sectional plan view of the liquid crystal projector. cabinet
(8) contains four total reflection mirrors (82a) (82b) (82c) (82d)
Are disposed obliquely with respect to the optical axis L, transmit R, and B and G
R spectroscopic dichroic mirror (83a) that reflects G, and G spectroscopic dichroic mirror (8
3b) is deployed. Light from the light source (71) is condensed by the condenser lens (84), and is condensed to each dichroic mirror (8).
3a) After being separated into R, G, and B by (83b), the corresponding liquid crystal panels (75), (74), and (76) are illuminated, and are condensed on the prism body (80) and projected onto the projection lens ( Irradiated from 72) onto a screen (not shown). FIG. 8 is a side sectional view showing a holding structure of each liquid crystal panel (75). The liquid crystal panel (75) is attached in close contact with one surface of the metal bracket (6),
A fan (9) for cooling the liquid crystal panel (75) is mounted below the bracket (6). The wind from the fan (9) flows upward, and the bracket (6) and the bracket (6)
Cool the surface of the liquid crystal panel (75) not in contact with. Since the bracket (6) is made of metal, it can easily absorb heat.

【0003】[0003]

【発明が解決しようとする課題】上記構造では、液晶パ
ネル(75)上にて、ブラケット(6)に接している面には、
冷却空気が当たらず、冷却効果が低い。近年、液晶プロ
ジェクタは市場から高輝度化の要望が高く、光源(71)を
更に明るくすることが求められている。しかし、従来の
構造では冷却効果が低い故に、かかる市場の要求に対応
できない虞れがある。また、従来の構造にあっては、図
8に示すように、ファン(9)からの空気が液晶パネル(7
5)の下面に当たって渦流れ(62)を発生し、空気のスムー
ズな流れを妨げている。この点でも冷却効果が低かっ
た。本発明は、液晶パネルの冷却効果を高めることを目
的とする。
In the above structure, the surface of the liquid crystal panel (75) in contact with the bracket (6) has:
Cooling air does not hit and the cooling effect is low. In recent years, there has been a great demand from the market for higher brightness of liquid crystal projectors, and there has been a demand for further brightening the light source (71). However, since the conventional structure has a low cooling effect, it may not be possible to meet such market demands. In addition, in the conventional structure, as shown in FIG.
A vortex (62) is generated on the lower surface of (5), preventing the smooth flow of air. Also in this respect, the cooling effect was low. An object of the present invention is to enhance the cooling effect of a liquid crystal panel.

【0004】[0004]

【課題を解決する為の手段】液晶パネル(75)とブラケッ
ト(6)の間には、液晶パネル(75)を冷却する空気の流路
が設けられている。液晶パネル(75)上にて、少なくとも
該流路の上流側には、先端に向かって幅狭になる断面形
状を呈し、液晶パネル(75)とブラケット(6)の間を通過
する空気がスムーズに流れることを許す分岐条(7)が形
成されている。
An air flow path for cooling the liquid crystal panel (75) is provided between the liquid crystal panel (75) and the bracket (6). On the liquid crystal panel (75), at least on the upstream side of the flow path, it has a cross-sectional shape that becomes narrower toward the tip, so that air passing between the liquid crystal panel (75) and the bracket (6) is smooth. A branch line (7) is formed to allow the air to flow to the air.

【0005】[0005]

【作用及び効果】液晶パネル(75)とブラケット(6)の間
には、液晶パネル(75)を冷却する空気の流路が設けられ
ているから、液晶パネル(75)は全面が空冷される。これ
により、冷却効果は従来よりも改善される。また、液晶
パネル(75)への空気流れは、分岐条(7)に当たって液晶
パネル(75)とブラケット(6)の間の流路を通る。これに
より、液晶パネル(75)上にて渦流れは発生せず、液晶パ
ネル(75)を冷却する空気はスムーズに流れる。
[Operation and Effect] Since an air flow path for cooling the liquid crystal panel (75) is provided between the liquid crystal panel (75) and the bracket (6), the entire surface of the liquid crystal panel (75) is air-cooled. . Thereby, the cooling effect is improved as compared with the conventional case. The air flow to the liquid crystal panel (75) hits the branch line (7) and passes through the flow path between the liquid crystal panel (75) and the bracket (6). As a result, no vortex flow occurs on the liquid crystal panel (75), and the air for cooling the liquid crystal panel (75) flows smoothly.

【0006】[0006]

【発明の実施の形態】以下、本発明の一例を図を用いて
詳述する。本例は、液晶パネル(75)を保持する構造に特
徴があり、液晶プロジェクタ内のダイクロイックミラー
等の光学部品の配置は、図7に示す従来の装置と同じで
ある。図1は、液晶パネル(75)を保持するブラケット
(6)の側面断面図である。ブラケット(6)は金属製であ
り、液晶パネル(75)はスペーサ(60)を介してブラケット
(6)にビス(61)止めされている。これにより、液晶パネ
ル(75)とブラケット(6)の間には、隙間Mが形成され、
液晶パネル(75)を冷却する空気の流路が設けられる。
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS Hereinafter, an example of the present invention will be described in detail with reference to the drawings. This embodiment is characterized by a structure for holding a liquid crystal panel (75), and the arrangement of optical components such as a dichroic mirror in a liquid crystal projector is the same as that of the conventional device shown in FIG. Figure 1 shows the bracket that holds the LCD panel (75)
It is a side sectional view of (6). The bracket (6) is made of metal, and the liquid crystal panel (75) is bracketed via the spacer (60).
The screw (61) is fixed to (6). Thereby, a gap M is formed between the liquid crystal panel (75) and the bracket (6),
An air flow path for cooling the liquid crystal panel (75) is provided.

【0007】液晶パネル(75)を空冷するファン(9)は、
ブラケット(6)の下方に設けられ、ファン(9)からの空
気は上向きに流れる。液晶パネル(75)の上下端部には、
先端が尖った分岐条(7)(7)が設けられている。ファン
(9)から液晶パネル(75)に向かって流れた空気は、分岐
条(7)に当たって、一部は液晶パネル(75)とブラケット
(6)の隙間Mを通り、他は液晶パネル(75)の外側を流
れ、液晶パネル(75)の両面を冷やす。分岐条(7)を設け
たことにより、渦流れは発生せず、液晶パネル(75)を冷
却する空気はスムーズに流れる。尚、スペーサ(60)に変
えてブラケット(6)に絞り加工を施して、突起を形成し
てもよい。また、分岐条(7)は空気流れの上流側、即ち
下端部のみに設けられていてもよい。更に、分岐条(7)
は先端に向かって幅が狭くなる断面形状であればよう
く、例えば図1に一点鎖線で示すように、円弧状でもよ
い。
A fan (9) for cooling the liquid crystal panel (75) by air
The air from the fan (9) is provided below the bracket (6) and flows upward. At the upper and lower ends of the liquid crystal panel (75),
Branches (7) and (7) with sharp points are provided. fan
The air flowing from (9) toward the liquid crystal panel (75) hits the branch line (7), and a part of the air flows into the liquid crystal panel (75) and the bracket.
Others pass through the gap M of (6), flow outside the liquid crystal panel (75), and cool both sides of the liquid crystal panel (75). Due to the provision of the branch line (7), no vortex flow occurs and the air for cooling the liquid crystal panel (75) flows smoothly. In addition, instead of the spacer (60), the bracket (6) may be subjected to a drawing process to form a projection. Further, the branch line (7) may be provided on the upstream side of the air flow, that is, only on the lower end portion. Furthermore, the branch line (7)
Any shape may be used as long as it has a cross-sectional shape whose width decreases toward the tip, and may be, for example, an arc shape as shown by a dashed line in FIG.

【0008】(位置調整機構)斯種液晶プロジェクタにあ
っては、各液晶パネル(75)(74)(76)を上下左右移動及び
光軸Lを中心に回動させる位置調整機構を設けて、R、
G、Bに対応した画像を正確に重ね合わせる構成が採用
されている。本例にあっては、ブラケット(6)を4枚の
板材を重ね合わせて構成し、位置調整機構(1)を兼ねて
いる。この位置調整機構(1)は、以前出願人が特開平1
1−85027号にて開示しており、概略構成を以下に
示す。以下にあっては、Rの液晶パネル(75)を調整する
機構を例示するが、他の液晶パネル(74)(76)にも同様の
機構が取り付けられる。図2は、位置調整機構(1)の分
解斜視図である。位置調整機構(1)は、キャビネット
(8)に固定される固定枠(2)及び回動調整用可動枠
(3)、左右調整用可動枠(4)、上下調整用可動枠(5)を
重ね合わせており、夫々金属板を折曲して構成される。
回動調整用可動枠(3)に液晶パネル(75)が取り付けられ
る。固定枠(2)および可動枠(3)(4)(5)の下部には、
夫々光源(71)の光が透過可能な開口(20)(30)(40)(50)が
開設され、液晶パネル(75)は回動調整用可動枠(3)の開
口(30)を覆う。各開口(20)(30)(40)(50)の中心は、光軸
Lに一致している。
(Position Adjustment Mechanism) In this type of liquid crystal projector, a position adjustment mechanism for moving each of the liquid crystal panels (75), (74), (76) up and down, right and left, and rotating around the optical axis L is provided. R,
A configuration is adopted in which images corresponding to G and B are accurately overlapped. In this example, the bracket (6) is formed by laminating four plate members, and also serves as the position adjusting mechanism (1). This position adjusting mechanism (1) has been disclosed in
No. 1-85027, the schematic configuration of which is shown below. In the following, a mechanism for adjusting the R liquid crystal panel (75) is exemplified, but a similar mechanism is attached to the other liquid crystal panels (74) and (76). FIG. 2 is an exploded perspective view of the position adjusting mechanism (1). Position adjustment mechanism (1) is a cabinet
Fixed frame (2) fixed to (8) and movable frame for rotation adjustment
(3), a movable frame (4) for left / right adjustment and a movable frame (5) for up / down adjustment are overlapped, and each is configured by bending a metal plate.
A liquid crystal panel (75) is attached to the rotation adjusting movable frame (3). At the bottom of the fixed frame (2) and the movable frames (3), (4), (5),
Openings (20), (30), (40), and (50) through which light from the light source (71) can be transmitted are opened, and the liquid crystal panel (75) covers the opening (30) of the movable frame (3) for rotation adjustment. . The centers of the openings (20), (30), (40), and (50) coincide with the optical axis L.

【0009】(各枠の構造)固定枠 固定枠(2)の上端左側には、突出板(21)が水平に設けら
れ、該突出板(21)には、後記する調整ビス(23)が嵌まる
切欠き(22)が開設されている。固定枠(2)の上部両側お
よび下部左側には、後記する上下左右調整用ピン(55)が
嵌合する長孔(26)が縦長に開設されている。固定枠(2)
の上部中央には、後記する固定ビス(15)(16)(16)(図4
参照)が貫通する貫通孔(24)(24)(25)が開設されてい
る。
(Structure of each frame) A projecting plate (21) is horizontally provided on the upper left side of the fixed frame fixing frame (2), and an adjusting screw (23) described later is provided on the projecting plate (21). There is a notch (22) that fits. On both upper and lower left sides of the fixed frame (2), elongated holes (26) into which up / down / left / right adjustment pins (55) described later are fitted are formed in a vertically long shape. Fixed frame (2)
At the center of the upper part, there are fixed screws (15), (16) and (16) to be described later (Fig.
) Through which holes (24), (24), (25) are opened.

【0010】上下調整用可動枠 固定枠(2)の背面側には、上下調整用可動枠(5)が配備
される。上下調整用可動枠(5)の上端部両側には、突出
板(51)(52)が水平に設けられ、左側の突出板(51)には、
前記調整ビス(23)が螺合するビス孔(53)が開設されてい
る。右側の突出板(52)上には、左右調整用の偏心シャフ
ト(54)が配備されている。上下調整用可動枠(5)の上端
部両側および下端部左側からは、上下左右調整用ピン(5
5)が突出している。上下調整用可動枠(5)の上端部中央
には、横長の貫通孔(56)が開設され、可動枠(5)上にて
貫通孔(56)の左右両側にビス孔(57)(57)が開設されてい
る。貫通孔(56)には固定ビス(15)が嵌まり、ビス孔(57)
(57)には固定ビス(16)(16)が螺合する。
[0010] the rear side of the vertical adjusting movable frame to the fixed frame (2), the vertical adjustment movable frame (5) is deployed. Projection plates (51) and (52) are provided horizontally on both sides of the upper end of the movable frame (5) for vertical adjustment, and the left projection plate (51) has
A screw hole (53) into which the adjusting screw (23) is screwed is formed. An eccentric shaft (54) for left / right adjustment is provided on the right protruding plate (52). From both sides of the upper end of the movable frame for vertical adjustment (5) and from the left side of the lower end, pins (5
5) is protruding. At the center of the upper end of the vertical adjustment movable frame (5), a horizontally long through hole (56) is opened, and screw holes (57) (57) are formed on the left and right sides of the through hole (56) on the movable frame (5). ) Has been established. The fixing screw (15) fits in the through hole (56), and the screw hole (57)
The fixing screws (16) and (16) are screwed into (57).

【0011】左右調整用可動枠 固定枠(2)の前面側に、左右調整用可動枠(4)が配備さ
れ、該左右調整用可動枠(4)の上端部からは突出板(41)
が水平に設けられている。該突出板(41)上の左側には、
偏心シャフト(42)が回転自在に配備され、右側には前記
偏心シャフト(54)の径と等幅の調整孔(43)が開設されて
いる。左右調整用可動枠(4)には前記上下左右調整用ピ
ン(55)が嵌合する長孔(44)が横長に開設されている。左
右調整用可動枠(4)の上端部中央には、ビス孔(45)が開
設され、該ビス孔(45)の左右に長孔(46)(46)が横長に開
設されている。ビス孔(45)には、固定ビス(15)が螺合
し、長孔(46)(46)には、後記する固定ビス(65)(65)が嵌
合する。また、左右調整用可動枠(4)からは3本の回動
調整用ピン(47)(47)(47)が前方へ突出している。
A movable frame for left and right adjustment (4) is provided on the front side of the fixed frame (2) for left and right adjustment, and a protruding plate (41) extends from the upper end of the movable frame for left and right adjustment (4).
Are provided horizontally. On the left side of the protruding plate (41),
An eccentric shaft (42) is rotatably provided, and an adjustment hole (43) having the same width as the diameter of the eccentric shaft (54) is opened on the right side. The left and right adjustment movable frame (4) has a horizontally long elongated hole (44) into which the up, down, left and right adjustment pins (55) are fitted. A screw hole (45) is formed in the center of the upper end portion of the movable frame (4) for right and left adjustment, and long holes (46) and (46) are formed horizontally on both sides of the screw hole (45). The fixing screw (15) is screwed into the screw hole (45), and the fixing screws (65) (65) described later are fitted into the long holes (46) and (46). Also, three rotation adjustment pins (47), (47), (47) project forward from the left and right adjustment movable frame (4).

【0012】回動調整用可動枠 左右調整用可動枠(4)の前面側には、回動調整用可動枠
(3)が配備される。回動調整用可動枠(3)の上端部に
は、突出板(31)が水平に設けられ、該突出板(31)上に
は、前記偏心シャフト(42)の径に略等しい幅の調整孔(3
2)が開設されている。回動調整用可動枠(3)の上端部両
側および下端部左側には、前記上下左右調整用ピン(55)
が移動自在に嵌まる貫通孔(33)が開設されている。回動
調整用可動枠(3)の上部中央には、固定ビス(15)(16)(1
6)が夫々移動自在に貫通する貫通孔(34)(35)(35)が開設
されている。また、回動調整用可動枠(3)には、左右調
整用可動枠(4)の回動調整用ピン(47)(47)(47)が嵌合す
る長孔(36)(36)(36)が開設されている。各長孔(36)は、
開口(30)の中心、即ち光軸Lからの距離が略等しい位置
に開設されている。
[0012] on the front side of the rotation adjusting movable frame lateral adjustment movable frame (4), the rotary adjusting movable frame
(3) is deployed. A protruding plate (31) is horizontally provided at the upper end of the rotation adjusting movable frame (3), and the protruding plate (31) has an adjustment of a width substantially equal to the diameter of the eccentric shaft (42). Hole (3
2) has been established. On both sides of the upper end of the movable frame for rotation adjustment (3) and on the left side of the lower end, the pins (55)
A through-hole (33) into which is freely movable is provided. At the center of the upper part of the rotation adjustment movable frame (3), fixed screws (15) (16) (1
The through holes (34), (35), and (35) through which 6) are movably penetrated are respectively provided. In addition, the long holes (36), (36) (36) 36) has been established. Each slot (36)
It is opened at the center of the opening (30), that is, at a position where the distance from the optical axis L is substantially equal.

【0013】(位置調整機構の組立)図3(a)は、位置
調整機構(1)の平面図、図3(b)は同上の正面図であ
る。図4は位置調整機構(1)を図3(b)のA−A線を含
む面にて破断した左側面断面図である。まず、回動調整
用可動枠(3)に左右調整用可動枠(4)を重ね、左右調整
用可動枠(4)の偏心シャフト(42)を、回動調整用可動枠
(3)の調整孔(32)に嵌める。左右調整用可動枠(4)の各
回動調整用ピン(47)を、回動調整用可動枠(3)の対応す
る長孔(36)に嵌める。固定ビス(15)が、回動調整用可動
枠(3)の前側から、回動調整用可動枠(3)の貫通孔(34)
を通り、左右調整用可動枠(4)のビス孔(45)に螺合す
る。
(Assembly of Position Adjusting Mechanism) FIG. 3 (a) is a plan view of the position adjusting mechanism (1), and FIG. 3 (b) is a front view of the same. FIG. 4 is a left side sectional view of the position adjusting mechanism (1) cut along a plane including the line AA in FIG. 3 (b). First, the movable frame for left and right adjustment (4) is overlapped on the movable frame for rotation adjustment (3), and the eccentric shaft (42) of the movable frame for left and right adjustment (4) is connected to the movable frame for rotation adjustment.
Fit into the adjustment hole (32) of (3). Each rotation adjusting pin (47) of the movable frame for left and right adjustment (4) is fitted into a corresponding slot (36) of the movable frame for rotation adjustment (3). The fixed screw (15) is inserted from the front side of the rotation adjusting movable frame (3) through the through hole (34) of the rotation adjusting movable frame (3).
And screwed into the screw hole (45) of the movable frame (4) for left and right adjustment.

【0014】次に、固定枠(2)に回動調整用可動枠(3)
を締結した左右調整用可動枠(4)を重ね、該固定枠(2)
の裏側に上下調整用可動枠(5)を重ねる。上下調整用可
動枠(5)の偏心シャフト(54)を、左右調整用可動枠(4)
の調整孔(43)に嵌め、上下調整用可動枠(5)の上下左右
調整用ピン(55)を、固定枠(2)の対応する長孔(26)およ
び左右調整用可動枠(4)の対応する長孔(44)に嵌める。
図4に示すように、固定ビス(16)(16)が、回動調整用可
動枠(3)の前側から、左右調整用可動枠(4)及び固定枠
(2)を貫通し、上下調整用可動枠(5)のビス孔(57)(57)
に螺合することにより、回動調整用可動枠(3)および左
右調整用可動枠(4)は、上下調整用可動枠(5)に締結さ
れる。固定枠(2)の切欠き(22)に調整ビス(23)の頭部を
嵌め、該調整ビス(23)をビス孔(53)に螺合することによ
り、上下調整用可動枠(5)は、固定枠(2)に取り付けら
れる。
Next, the movable frame (3) for rotation adjustment is fixed to the fixed frame (2).
The movable frame (4) for right and left adjustment, to which the
The movable frame (5) for up and down adjustment on the back side of. Move the eccentric shaft (54) of the movable frame (5) for vertical adjustment to the movable frame (4)
Of the movable frame for vertical adjustment (5), and the pin (55) for vertical and horizontal adjustment of the movable frame for vertical adjustment (5) with the corresponding long hole (26) of the fixed frame (2) and the movable frame for horizontal adjustment (4). Into the corresponding slot (44).
As shown in FIG. 4, the fixed screws (16) and (16) are moved from the front side of the rotation adjustment movable frame (3) to the left and right adjustment movable frame (4) and the fixed frame.
Screw holes (57) (57) of the movable frame (5) for vertical adjustment, penetrating through (2)
The movable frame for rotation adjustment (3) and the movable frame for left / right adjustment (4) are fastened to the movable frame for vertical adjustment (5). The head of the adjustment screw (23) is fitted into the notch (22) of the fixed frame (2), and the adjustment screw (23) is screwed into the screw hole (53) to thereby move the movable frame (5) for vertical adjustment. Is attached to the fixed frame (2).

【0015】上下調整 上下調整を行なうには、図4に示すように、固定枠(2)
に取り付けた調整ビス(23)を回転する。調整ビス(23)
は、ネジ推力により、上下調整用可動枠(5)の突出板(5
1)を上下に駆動する。上下調整用可動枠(5)の上下左右
調整用ピン(55)(55)(55)は、固定枠(2)の長孔(26)(26)
(26)内を上下に摺動する。また、前記上下左右調整用ピ
ン(55)(55)(55)および左右の固定ビス(16)(16)が、夫々
左右調整用可動枠(4)の長孔(44)(44)(44)および長孔(4
6)(46)の上下縁を押して、左右調整用可動枠(4)は、上
下調整用可動枠(5)と一体となって上下に移動する。
左右調整用可動枠(4)が上下に移動すると、図2に示す
左右調整用可動枠(4)の回動調整用ピン(47)(47)(47)(4
7)が、回動調整用可動枠(3)の長孔(36)(36)(36)(36)の
上下縁を押すから、回動調整用可動枠(3)が左右調整用
可動枠(4)と一体となって上下に移動する。
Up and down adjustment To perform up and down adjustment, as shown in FIG.
Turn the adjustment screw (23) attached to. Adjustment screw (23)
Is the projecting plate (5) of the movable frame (5) for vertical adjustment by screw thrust.
1) Drive up and down. The up / down / left / right adjustment pins (55), (55), and (55) of the up / down adjustment movable frame (5) are elongated holes (26) (26) of the fixed frame (2).
(26) Slide up and down inside. In addition, the pins 55, 55, 55, 55, and 55 for fixing the left, right, up, and down are provided with the long holes 44, 44, 44, and 44, respectively, of the movable frame 4 for left and right adjustment. ) And slot (4
6) By pushing the upper and lower edges of (46), the movable frame for left / right adjustment (4) moves up and down integrally with the movable frame for vertical adjustment (5).
When the left and right adjustment movable frame (4) moves up and down, the rotation adjustment pins (47), (47), (47) and (4) of the left and right adjustment movable frame (4) shown in FIG.
7) pushes the upper and lower edges of the long holes (36), (36), (36), and (36) of the movable frame for rotation adjustment (3). It moves up and down together with (4).

【0016】左右調整 図5(a)、(b)は、左右の位置調整を示す図であり、(a)
は平面図、(b)は正面図である。左右調整を行なうに
は、上下調整用可動枠(5)上の偏心シャフト(54)を回
す。偏心シャフト(54)は、左右調整用可動枠(4)の調整
孔(43)の左右縁を押して、左右調整用可動枠(4)の突出
板(41)を左右方向に駆動する。このとき、上下調整用可
動枠(5)の上下左右調整用ピン(55)(55)(55)及び左右の
固定ビス(16)(16)が、夫々左右調整用可動枠(4)の長孔
(44)(44)(44)及び長孔(46)(46)内に嵌まっているから、
左右調整用可動枠(4)は左右に移動する。左右調整用可
動枠(4)の回動調整用ピン(47)(47)(47)が、回動調整用
可動枠(3)の長孔(36)(36)(36)の端縁を押し、回動調整
用可動枠(3)は左右調整用可動枠(4)と一体となって左
右に移動する。
The lateral adjustment Figure 5 (a), (b) is a diagram showing the positional adjustment of the left and right, (a)
Is a plan view, and (b) is a front view. To perform left-right adjustment, the eccentric shaft (54) on the movable frame (5) for vertical adjustment is turned. The eccentric shaft (54) pushes the left and right edges of the adjustment hole (43) of the left and right adjustment movable frame (4) to drive the projecting plate (41) of the left and right adjustment movable frame (4) in the left and right direction. At this time, the up / down / left / right adjustment pins (55), (55), (55) and the left and right fixing screws (16) and (16) of the up / down adjustment movable frame (5) are respectively connected to the length of the left / right adjustment movable frame (4). Hole
(44) (44) (44) and the long holes (46) (46)
The movable frame (4) for left / right adjustment moves right and left. The rotation adjustment pins (47), (47), and (47) of the left and right adjustment movable frame (4) are aligned with the edges of the long holes (36), (36), and (36) of the rotation adjustment movable frame (3). The push / rotation adjustment movable frame (3) moves right and left integrally with the left / right adjustment movable frame (4).

【0017】回動調整 図6(a)、(b)は、回動調整を示す図であり、(a)は平面
図、(b)は正面図である。回動調整を行なうには、左右
調整用可動枠(4)に取り付けた偏心シャフト(42)を回転
する。偏心シャフト(42)は、回動調整用可動枠(3)の調
整孔(32)の左右縁を押す。回動調整用可動枠(3)は、左
右調整用可動枠(4)の回動調整用ピン(47)(47)(47)(47)
に案内されて開口(30)の中心、即ち光軸Lを中心として
回動する。
Rotation Adjustment FIGS. 6A and 6B are diagrams showing rotation adjustment, wherein FIG. 6A is a plan view and FIG. 6B is a front view. To perform the rotation adjustment, the eccentric shaft (42) attached to the movable frame (4) for right and left adjustment is rotated. The eccentric shaft (42) pushes the left and right edges of the adjustment hole (32) of the rotation adjustment movable frame (3). The pivotable movable frame (3) is a pivotal adjustment pin (47) (47) (47) (47) of the horizontal adjustable movable frame (4).
To rotate around the center of the opening (30), that is, the optical axis L.

【0018】図4に示すように、回動調整用可動枠(3)
上にスペーサ(60)を設けて、液晶パネル(75)と回動調整
用可動枠(3)の間に隙間を設けて、ファン(9)の空気の
流路を形成している。また、液晶パネル(75)の上下端部
に分岐条(7)(7)を設けていることにより、液晶パネル
(75)の下端部近傍にて渦流れは発生せず、液晶パネル(7
5)を冷却する空気はスムーズに流れる。
As shown in FIG. 4, the movable frame for rotation adjustment (3)
A spacer (60) is provided thereon, and a gap is provided between the liquid crystal panel (75) and the movable frame for rotation adjustment (3) to form an air flow path of the fan (9). In addition, by providing the branch lines (7) and (7) at the upper and lower ends of the liquid crystal panel (75),
No vortex occurs near the lower end of (75), and the liquid crystal panel (7
5) Cooling air flows smoothly.

【0019】上記実施例の説明は、本発明を説明するた
めのものであって、特許請求の範囲に記載の発明を限定
し、或は範囲を減縮する様に解すべきではない。又、本
発明の各部構成は上記実施例に限らず、特許請求の範囲
に記載の技術的範囲内で種々の変形が可能であることは
勿論である。
The description of the above embodiments is for the purpose of illustrating the present invention and should not be construed as limiting the invention described in the appended claims or reducing the scope thereof. Further, the configuration of each part of the present invention is not limited to the above-described embodiment, and it is needless to say that various modifications can be made within the technical scope described in the claims.

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

【図1】液晶パネルを保持する機構の側面断面図であ
る。
FIG. 1 is a side sectional view of a mechanism for holding a liquid crystal panel.

【図2】位置調整機構の分解斜視図である。FIG. 2 is an exploded perspective view of a position adjusting mechanism.

【図3】(a)は、位置調整機構の平面図、(b)は同上の正
面図である。
3A is a plan view of a position adjusting mechanism, and FIG. 3B is a front view of the same.

【図4】位置調整機構を図3(b)のA−A線を含む面に
て破断した左側面断面図である。
FIG. 4 is a left side sectional view in which the position adjustment mechanism is cut along a plane including the line AA in FIG. 3 (b).

【図5】(a)、(b)は、左右の位置調整を示す図であり、
(a)は平面図、(b)は正面図である。
FIGS. 5A and 5B are diagrams showing left and right position adjustments,
(a) is a plan view, and (b) is a front view.

【図6】(a)、(b)は、回動調整を示す図であり、(a)は
平面図、(b)は正面図である。
6 (a) and 6 (b) are diagrams showing rotation adjustment, where (a) is a plan view and (b) is a front view.

【図7】液晶プロジェクタの断面平面図である。FIG. 7 is a cross-sectional plan view of the liquid crystal projector.

【図8】従来の液晶パネルの保持構造を示す側面断面図
である。
FIG. 8 is a side sectional view showing a conventional liquid crystal panel holding structure.

【符号の説明】[Explanation of symbols]

(1) 位置調整機構 (6) ブラケット (7) 分岐条 (9) ファン (71) 光源 (75) 液晶パネル (1) Position adjustment mechanism (6) Bracket (7) Branch line (9) Fan (71) Light source (75) LCD panel

───────────────────────────────────────────────────── フロントページの続き (72)発明者 松村 隆夫 大阪府守口市京阪本通2丁目5番5号 三 洋電機株式会社内 (72)発明者 藤村 信行 大阪府守口市京阪本通2丁目5番5号 三 洋電機株式会社内 Fターム(参考) 2H088 EA12 HA13 HA23 HA28 MA20 2H089 JA10 QA06 TA18 UA05 5E322 BA05 BB10 EA11  ──────────────────────────────────────────────────続 き Continued on the front page (72) Inventor Takao Matsumura 2-5-5 Keihanhondori, Moriguchi-shi, Osaka Sanyo Electric Co., Ltd. (72) Inventor Nobuyuki Fujimura 2-5-5 Keihanhondori, Moriguchi-shi, Osaka No. 5 Sanyo Electric Co., Ltd. F term (reference) 2H088 EA12 HA13 HA23 HA28 MA20 2H089 JA10 QA06 TA18 UA05 5E322 BA05 BB10 EA11

Claims (2)

【特許請求の範囲】[Claims] 【請求項1】 光源(71)により照射される液晶パネル(7
5)と、該液晶パネル(75)を支持するブラケット(6)と、
液晶パネル(75)を冷却するファン(9)を具えた液晶プロ
ジェクタに於いて、 液晶パネル(75)とブラケット(6)の間には、液晶パネル
(75)を冷却する空気の流路が設けられて、 液晶パネル(75)上にて、少なくとも該流路の上流側に
は、先端に向かって幅狭になる断面形状を有し、液晶パ
ネル(75)とブラケット(6)の間を通過する空気がスムー
ズに流れることを許す分岐条(7)が形成されたことを特
徴とする液晶プロジェクタ。
A liquid crystal panel (7) illuminated by a light source (71).
5), a bracket (6) for supporting the liquid crystal panel (75),
In a liquid crystal projector equipped with a fan (9) for cooling the liquid crystal panel (75), a liquid crystal panel is provided between the liquid crystal panel (75) and the bracket (6).
A flow path of air for cooling the liquid crystal panel; a liquid crystal panel having a cross-sectional shape that narrows toward a front end at least on an upstream side of the flow path on the liquid crystal panel; A liquid crystal projector characterized in that a branch line (7) is formed to allow air passing between (75) and the bracket (6) to flow smoothly.
【請求項2】 ブラケット(6)は、液晶パネル(75)を上
下左右移動及び光軸Lを中心に回動させることが可能な
位置調整機構(1)を構成する請求項1に記載の液晶プロ
ジェクタ。
2. The liquid crystal according to claim 1, wherein the bracket (6) constitutes a position adjusting mechanism (1) capable of moving the liquid crystal panel (75) up, down, left and right and rotating about the optical axis L. projector.
JP2000079380A 2000-03-22 2000-03-22 LCD projector Expired - Lifetime JP3490953B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2000079380A JP3490953B2 (en) 2000-03-22 2000-03-22 LCD projector

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2000079380A JP3490953B2 (en) 2000-03-22 2000-03-22 LCD projector

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Publication Number Publication Date
JP2001264883A true JP2001264883A (en) 2001-09-26
JP3490953B2 JP3490953B2 (en) 2004-01-26

Family

ID=18596635

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Country Link
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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6950308B2 (en) 2002-12-20 2005-09-27 Seiko Epson Corporation Electro-optical device encased in mounting case, projection display apparatus, and mounting case
US7018054B2 (en) 2002-12-20 2006-03-28 Seiko Epson Corporation Electro-optical device encased in mounting case, projection display apparatus, and mounting case
WO2010013307A1 (en) * 2008-07-28 2010-02-04 Necディスプレイソリューションズ株式会社 Display device
US8641202B2 (en) 2008-09-03 2014-02-04 Sanyo Electric Co., Ltd. Projection display device

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6950308B2 (en) 2002-12-20 2005-09-27 Seiko Epson Corporation Electro-optical device encased in mounting case, projection display apparatus, and mounting case
US7018054B2 (en) 2002-12-20 2006-03-28 Seiko Epson Corporation Electro-optical device encased in mounting case, projection display apparatus, and mounting case
WO2010013307A1 (en) * 2008-07-28 2010-02-04 Necディスプレイソリューションズ株式会社 Display device
US8547312B2 (en) 2008-07-28 2013-10-01 Nec Display Solutions, Ltd. Display apparatus
US8641202B2 (en) 2008-09-03 2014-02-04 Sanyo Electric Co., Ltd. Projection display device

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