JP3008086B2 - Projection display device - Google Patents

Projection display device

Info

Publication number
JP3008086B2
JP3008086B2 JP9111472A JP11147297A JP3008086B2 JP 3008086 B2 JP3008086 B2 JP 3008086B2 JP 9111472 A JP9111472 A JP 9111472A JP 11147297 A JP11147297 A JP 11147297A JP 3008086 B2 JP3008086 B2 JP 3008086B2
Authority
JP
Japan
Prior art keywords
liquid crystal
crystal light
cooling fan
light valve
light valves
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
JP9111472A
Other languages
Japanese (ja)
Other versions
JPH1048591A (en
Inventor
穣児 唐澤
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.)
Seiko Epson Corp
Original Assignee
Seiko Epson Corp
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
Family has litigation
First worldwide family litigation filed litigation Critical https://patents.darts-ip.com/?family=14562124&utm_source=google_patent&utm_medium=platform_link&utm_campaign=public_patent_search&patent=JP3008086(B2) "Global patent litigation dataset” by Darts-ip is licensed under a Creative Commons Attribution 4.0 International License.
Application filed by Seiko Epson Corp filed Critical Seiko Epson Corp
Priority to JP9111472A priority Critical patent/JP3008086B2/en
Publication of JPH1048591A publication Critical patent/JPH1048591A/en
Application granted granted Critical
Publication of JP3008086B2 publication Critical patent/JP3008086B2/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

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、液晶ライトバルブ
により形成した画像を、投写レンズにより拡大投写する
投写型の表示装置に関する。
[0001] 1. Field of the Invention [0002] The present invention relates to a projection type display device in which an image formed by a liquid crystal light valve is enlarged and projected by a projection lens.

【0002】[0002]

【従来の技術】従来は、図7の光学系ユニット外観側面
図に示すように、例えば液晶ライトバルブ3Bを平板の
ガイド板19Bに取り付け、プリズム固定板20及び基
台21によってガイド板19Bを固定した光学系の下部
に、冷却手段22を配した光学系ユニットを用いた表示
装置が知られていた。
2. Description of the Related Art Conventionally, as shown in an external side view of an optical system unit in FIG. 7, for example, a liquid crystal light valve 3B is mounted on a flat guide plate 19B, and the guide plate 19B is fixed by a prism fixing plate 20 and a base 21. A display device using an optical system unit provided with a cooling means 22 below the optical system is known.

【0003】[0003]

【発明が解決しようとする課題】しかし、従来の光学系
ユニットにおいて、例えば冷却手段として冷却ファンを
吹き付け式として用いた場合、図8に矢印で示すように
風が生じ、液晶ライトバルブ3B,3Rに付帯された入
射側偏光板の表面を風が流れ、液晶ライトバルブ3B,
3Rに付帯する入射側偏光板を冷却するものの、入射側
偏光板は液晶ライトバルブに付帯しているため、冷却効
率は低レベルのものであった。
However, in a conventional optical system unit, when a cooling fan is used as a cooling means, for example, as a cooling means, wind is generated as shown by arrows in FIG. 8 and the liquid crystal light valves 3B, 3R. The wind flows on the surface of the incident side polarizing plate attached to the liquid crystal light valve 3B,
Although the incident-side polarizing plate attached to the 3R was cooled, the cooling efficiency was low because the incident-side polarizing plate was attached to the liquid crystal light valve.

【0004】そこで、この冷却効率において冷却能力を
向上するためには冷却ファンの冷却能力を向上する必要
があり、冷却ファンを大型化しなければならず、それは
表示装置の大型化につながる。又、冷却ファンを大型化
する事なく従来の冷却効率において使用する場合、これ
を原因として表示装置の出射光束の向上が困難となると
いう問題点も有していた。
[0004] In order to improve the cooling capacity in this cooling efficiency, it is necessary to increase the cooling capacity of the cooling fan, and the cooling fan must be increased in size, which leads to an increase in the size of the display device. Further, when the cooling fan is used at the conventional cooling efficiency without increasing the size, there is also a problem that it is difficult to improve the emitted light flux of the display device due to this.

【0005】そこで、本発明はこのような問題点を解決
するもので、その目的とするところは、冷却ファンの冷
却能力を最大限に引き出し、軽薄短小にして高出射光束
の投写型表示装置を提供することにある。さらに他の目
的は温度に弱い偏光板を効率よく冷却することである。
Accordingly, the present invention is to solve such a problem. An object of the present invention is to provide a projection type display device which maximizes the cooling capacity of a cooling fan, is light, thin and short, and has a high emission light flux. To provide. Still another object is to efficiently cool a polarizing plate that is vulnerable to temperature.

【0006】[0006]

【課題を解決するための手段】上記問題点を解決するた
めに、本発明の投写型表示装置は、3つの色光を各々変
調する3つの液晶ライトバルブと、該3つの液晶ライト
バルブにより変調された色光を合成するプリズムと、該
プリズムにより合成された光を投写する投写光学手段と
を有する投写型表示装置において、前記3つの液晶ライ
トバルブは、前記プリズムの3つの外側面に沿って配置
され、それぞれの入射側偏光板を該液晶ライトバルブと
の間に間隙を有して配置してなり、冷却ファンによって
発生する風が、前記3つの液晶ライトバルブと3つの前
記入射側偏光板との間の各間隙に対して下方から通風す
るように構成されてなることを特徴とする。
In order to solve the above-mentioned problems, a projection display apparatus according to the present invention comprises three liquid crystal light valves for modulating three color lights, respectively, and three liquid crystal light valves for modulating the three color lights. The liquid crystal light valves are arranged along three outer surfaces of the prism, wherein the three liquid crystal light valves have a prism that combines the colored lights and a projection optical unit that projects the light combined by the prism. The respective incident-side polarizing plates are arranged with a gap between the liquid-crystal light valves, and the wind generated by the cooling fan causes the three liquid-crystal light valves and the three incident-side polarizing plates to generate air. It is characterized in that it is configured to ventilate each gap between them from below.

【0007】[0007]

【作用】上記構成によれば、冷却ファンによって生じる
風によって、3つの液晶ライトバルブの入射側偏光板を
各々効率的に冷却することができる。特に、入射側偏光
板をそれぞれ液晶ライトバルブから間隙を有して配置
し、最も熱を帯びる入射側偏光板を、この間隙を下方か
ら通過する風により冷却するので、効率的に偏光板の熱
を奪って上昇させて冷却することができる。
According to the above arrangement, the incident side polarizing plates of the three liquid crystal light valves can be efficiently cooled by the wind generated by the cooling fan. In particular, the incident-side polarizing plates are arranged with a gap from the liquid crystal light valve, and the hottest incoming-side polarizing plate is cooled by wind passing through the gap from below. Can be lifted and cooled.

【0008】[0008]

【発明の実施の形態】以下に、本発明の実施例を図面に
基づいて説明する。図1は、本発明の実施例の基本構成
図を表す平面図である。図1において、光源1を出射し
た光は、光学系手段の1例である光導波管2内で選択反
射特性を有するミラー等により赤,緑,青の3原色に分
光されて導かれ、液晶ライトバルブ3R,3G,3Bに
よってそれぞれの色に対応し電気光学変調を受けた後、
プリズム4によって合成され、投写レンズ5によって前
方のスクリーン上に拡大投写される。
Embodiments of the present invention will be described below with reference to the drawings. FIG. 1 is a plan view illustrating a basic configuration diagram of an embodiment of the present invention. In FIG. 1, light emitted from a light source 1 is separated into three primary colors of red, green, and blue by a mirror having selective reflection characteristics in an optical waveguide 2 which is an example of an optical system, and is guided. After undergoing electro-optic modulation corresponding to each color by the light valves 3R, 3G, 3B,
The light is synthesized by the prism 4 and is enlarged and projected on the screen in front by the projection lens 5.

【0009】液晶ライトバルブ3R,3G,3Bは、そ
の確実な固定及び調整のために中央部に窓及び下方部に
導風構造を有するガイド板6R,6G,6Bにそれぞれ
取り付けられて固定される。冷却ファン7は、液晶ライ
トバルブ3R,3G,3B及びプリズム4の下部に取り
付けられ、下部より吹き付け式として液晶ライトバルブ
3R、3G,3Bに係る偏光板を冷却する。基台8は、
冷却ファン7を完全に包含しうる形状を有し、その上面
にしてガイド板6R,6G,6Bの導風構造との相対位
置(図1中の斜線部)に通風孔を有する。図2は、本発
明の実施例における光学系ユニットの外観側面図であ
り、図中の光軸AーAによる縦断面図を図3に示す。図
3において、説明は赤色用液晶ライトバルブ3R及びそ
の周辺構造についてのみ行うが、構造的には緑色用液晶
ライトバルブ3G,青色用液晶ライトバルブ3Bの周辺
構造についても全く同様である。液晶ライトバルブ3R
は、ネジによって液晶ライトバルブプレート11Rに締
結され、液晶ライトバルブプート11Rをネジによって
ガイド板6Rに締結し、ガイド板6Rをネジによってア
ッププレート14に締結することにより保持される。液
晶ライトバルブ3Rは、画像表示のためにその前後に偏
光板12R及び13Rを配する必要があり、本例におい
ては液晶ライトバルブ3Rに対して光の入射側の偏光板
12Rをガイド板6Rのプリズム4側の面に貼り付け、
液晶ライトバルブ3Rに対して光の出射側の偏光板13
Rをプリズム4に貼りつける。ガイド板6Rは中央部に
光の入射用の窓15Rを有し、その下部に導風構造10
Rを有する。一方、基台8は、冷却ファン7を包含する
のみならず、アッププレート14との間でプリズム4を
保持し、アッププレート14に保持されている液晶ライ
トバルブ3R及びその周辺構造を保持する。
The liquid crystal light valves 3R, 3G, 3B are mounted and fixed to guide plates 6R, 6G, 6B each having a window at the center and a wind guide structure at a lower portion for secure fixing and adjustment. . The cooling fan 7 is attached to the lower part of the liquid crystal light valves 3R, 3G, 3B and the prism 4, and cools the polarizing plates related to the liquid crystal light valves 3R, 3G, 3B by spraying from below. The base 8 is
It has a shape capable of completely including the cooling fan 7, and has a ventilation hole on the upper surface thereof at a position relative to the air guide structure of the guide plates 6R, 6G, 6B (shaded portion in FIG. 1). FIG. 2 is an external side view of the optical system unit according to the embodiment of the present invention, and FIG. 3 is a longitudinal sectional view along the optical axis AA in the figure. In FIG. 3, the description will be made only for the liquid crystal light valve for red 3R and its peripheral structure, but the structure is exactly the same for the peripheral structure of the liquid crystal light valve for green 3G and the liquid crystal light valve for blue 3B. Liquid crystal light valve 3R
Is fixed to the liquid crystal light valve plate 11R by screws, the liquid crystal light valve plate 11R is fastened to the guide plate 6R by screws, and the guide plate 6R is fastened to the up plate 14 by screws. In the liquid crystal light valve 3R, it is necessary to arrange polarizing plates 12R and 13R before and after the liquid crystal light valve 3R for displaying an image. In this example, the polarizing plate 12R on the light incident side with respect to the liquid crystal light valve 3R is connected to the guide plate 6R. Paste on the prism 4 side,
Polarizing plate 13 on the light emission side with respect to liquid crystal light valve 3R
Attach R to prism 4. The guide plate 6R has a window 15R for light incidence at the center, and a wind guide structure 10 below the window 15R.
R. On the other hand, the base 8 not only includes the cooling fan 7 but also holds the prism 4 with the up plate 14 and holds the liquid crystal light valve 3R held by the up plate 14 and its peripheral structure.

【0010】基台8は又、その上部の導風構造10Rと
の相対位置に通風孔9Rを有し、冷却ファン7によって
生じた風をその通風孔9Rに収束させる。通風孔9Rに
収束した風は真上に吹き上る風と冷却ファン7の回転中
心から外へ逃げようとする風とに別れ、前者は液晶ライ
トバルブ3Rと出射側偏光板13Rとの間及び液晶ライ
卜バルブ3Rと入射側偏光板12Rとの間を通り偏光板
12R,13R表面の熱を奪ってアッププレート14に
設けられた穴より上部に吹き抜ける。後者はガイド板6
Rに設けられた導風構造10Rによってその方向を偏光
板12R方向に変えられ、ガイド板6Rの中央の光の入
射用窓15Rを通って偏光板12R表面の熱を奪い、偏
光板12Rによって方向を変えられて外部へ吹き抜け
る。これらの風の流れを模式的に表すと図4のようにな
る。光の入射側偏光板12Rはその偏光作用のために光
の熱を約60%吸収し表面温度が特に上昇するが、上記
のようにその表面と裏面を効率的に冷却することによっ
て偏光特性を損なうことを防止できる。昨今、軽薄短小
にして高出射光束の表示装置の要求が強まるにつれて、
小型の冷却ファンによって効率よく液晶ライトバルブに
係る偏光板を冷却する本例は益々有効となる。
The base 8 also has a ventilation hole 9R at a position relative to the air guiding structure 10R on the upper side, and converges the wind generated by the cooling fan 7 to the ventilation hole 9R. The wind converged on the ventilation hole 9R is divided into a wind blowing right above and a wind trying to escape from the center of rotation of the cooling fan 7, and the former is between the liquid crystal light valve 3R and the exit-side polarizing plate 13R and the liquid crystal. The heat passes through the space between the light valve 3R and the incident-side polarizing plate 12R, removes heat from the surfaces of the polarizing plates 12R and 13R, and blows out above a hole provided in the up plate 14. The latter is a guide plate 6
The direction is changed to the direction of the polarizing plate 12R by the wind guide structure 10R provided in R, the heat of the surface of the polarizing plate 12R is removed through the central light entrance window 15R of the guide plate 6R, and the direction is changed by the polarizing plate 12R. Can be changed and blow out to the outside. FIG. 4 schematically shows the flow of these winds. The light incident side polarizing plate 12R absorbs about 60% of the heat of light due to its polarizing action and the surface temperature particularly rises. However, as described above, the polarizing property is improved by efficiently cooling the front and back surfaces. Damage can be prevented. In recent years, as the demand for display devices that are light, thin, small, and has a high emission light flux has increased,
This example in which the polarizing plate of the liquid crystal light valve is efficiently cooled by the small cooling fan is more and more effective.

【0011】今後益々表示装置の軽薄短小化が進む時、
図5に示す本例の基台8に変えて、図6に示すような薄
型の基台16を用い、液晶ライトバルブの下部から冷却
ファン18を切り離し、導風管17によって冷却ファン
18からの風をレンズ方向から基台16に送り込むと、
本例と同様な風の流れが考えられ、表示装置の軽薄短小
化に非常に有効である。
[0011] In the future, as display devices become more and more light and compact,
Instead of the base 8 of this example shown in FIG. 5, a thin base 16 as shown in FIG. 6 is used, the cooling fan 18 is cut off from the lower part of the liquid crystal light valve, and the cooling fan 18 When the wind is sent from the lens direction to the base 16,
A wind flow similar to that in this example is conceivable, which is very effective in reducing the size and weight of the display device.

【0012】[0012]

【発明の効果】以上に説明したように本発明は、3つの
液晶ライトバルブにより変調された色光を合成するプリ
ズムを有する投写型表示装置において、3つの液晶ライ
トバルブは、プリズムの3つの外側面に沿って配置さ
れ、それぞれの入射側偏光板を液晶ライトバルブとの間
に間隙を有して配置してなり、冷却ファンによって発生
する風が、3つの液晶ライトバルブと3つの入射側偏光
板との間の各間隙に対して下方から通風するように構成
されてなるので、冷却ファンによって生じる風によって
3つの液晶ライトバルブの入射側偏光板をそれぞれ効率
的に冷却できる。特に、液晶ライトバルブとその入射側
偏光板との間隙に通風するので、入射側偏光板と液晶ラ
イトバルブを一緒に冷却することができ、効率的な冷却
となる。加えて、その通風は下方からであり、熱を奪っ
て温まった空気が上昇するように構成されるので、装置
内に熱がこもり難く、また上方からのゴミが入り込み難
い構成とすることができる。
As described above, the present invention relates to a projection type display device having a prism for synthesizing the color light modulated by the three liquid crystal light valves, wherein the three liquid crystal light valves have three outer surfaces of the prism. And each of the incident-side polarizing plates is disposed with a gap between the liquid-crystal light valve, and the wind generated by the cooling fan generates three liquid-crystal light valves and three incident-side polarizing plates. Is configured to allow air to flow from below into each gap between the three liquid crystal light valves, so that the incident side polarizers of the three liquid crystal light valves can be efficiently cooled by wind generated by the cooling fan. In particular, since air flows through the gap between the liquid crystal light valve and the incident side polarizing plate, the incident side polarizing plate and the liquid crystal light valve can be cooled together, resulting in efficient cooling. In addition, since the ventilation is from the bottom, and the warm air rises by taking heat, it is difficult for heat to be trapped in the device, and it is possible to prevent dust from entering from above. .

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

【図1】本発明の実施例を表わす基本構成図。FIG. 1 is a basic configuration diagram showing an embodiment of the present invention.

【図2】本発明の実施例における光学系ユニットの外観
側面図。
FIG. 2 is an external side view of an optical system unit according to the embodiment of the present invention.

【図3】図2における縦断面図。FIG. 3 is a longitudinal sectional view in FIG. 2;

【図4】風の流れを表わす模式図。FIG. 4 is a schematic diagram showing a flow of wind.

【図5】本発明の実施例における基台の模式図。FIG. 5 is a schematic view of a base in the embodiment of the present invention.

【図6】別の実施例における基台及ビ冷却ファンの構成
図。
FIG. 6 is a configuration diagram of a base and a cooling fan in another embodiment.

【図7】従来の光学系ユニットの外観側面図。FIG. 7 is an external side view of a conventional optical system unit.

【図8】従来の光学系ユニットにおける風の流れを表す
模式図。
FIG. 8 is a schematic diagram showing a flow of wind in a conventional optical system unit.

【符号の説明】[Explanation of symbols]

1・・・光源 2・・・光導波管 3R,3G,3B・・・液晶ライトバルブ 4・・・プリズム 5・・・投写レンズ 6R,6G,6B・・・ガイド板 7・・・冷却ファン 8・・・基台 9R,9B・・・通風孔 10R,10B・・・導風構造 11R,11B・・・入射側偏光板 12R,12B・・・出射側偏光板 14・・・アッププレート 15R,15B・・・入射窓 DESCRIPTION OF SYMBOLS 1 ... Light source 2 ... Optical waveguide 3R, 3G, 3B ... Liquid crystal light valve 4 ... Prism 5 ... Projection lens 6R, 6G, 6B ... Guide plate 7 ... Cooling fan 8 Base 9R, 9B Ventilation hole 10R, 10B Ventilation structure 11R, 11B Input-side polarizing plate 12R, 12B Output-side polarizing plate 14 Up plate 15R , 15B ... entrance window

───────────────────────────────────────────────────── フロントページの続き (56)参考文献 特開 昭63−10128(JP,A) 特開 昭63−67979(JP,A) 特開 昭62−109024(JP,A) 実開 昭63−68694(JP,U) (58)調査した分野(Int.Cl.7,DB名) G02F 1/13 505 G02F 1/1333 G02F 1/1335 530 G03B 21/16 ──────────────────────────────────────────────────続 き Continuation of the front page (56) References JP-A-63-10128 (JP, A) JP-A-63-67979 (JP, A) JP-A-62-109024 (JP, A) 68694 (JP, U) (58) Field surveyed (Int. Cl. 7 , DB name) G02F 1/13 505 G02F 1/1333 G02F 1/1335 530 G03B 21/16

Claims (1)

(57)【特許請求の範囲】(57) [Claims] 【請求項1】 3つの色光を各々変調する3つの液晶ラ
イトバルブと、該3つの液晶ライトバルブにより変調さ
れた色光を合成するプリズムと、該プリズムにより合成
された光を投写する投写光学手段とを有する投写型表示
装置において、 前記3つの液晶ライトバルブは、前記プリズムの3つの
外側面に沿って配置され、それぞれの入射側偏光板を該
液晶ライトバルブとの間に間隙を有して配置してなり、 冷却ファンによって発生する風が、前記3つの液晶ライ
トバルブと3つの前記入射側偏光板との間の各間隙に対
して下方から通風するように構成されてなることを特徴
とする投写型表示装置。
1. A liquid crystal light valve for modulating three color lights, a prism for synthesizing the color lights modulated by the three liquid crystal light valves, and projection optical means for projecting the light combined by the prisms. Wherein the three liquid crystal light valves are arranged along three outer surfaces of the prism, and the respective incident-side polarizing plates are arranged with a gap between the liquid crystal light valves. The air generated by the cooling fan is configured to flow from below into each gap between the three liquid crystal light valves and the three incident-side polarizing plates from below. Projection display device.
JP9111472A 1997-04-28 1997-04-28 Projection display device Expired - Lifetime JP3008086B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP9111472A JP3008086B2 (en) 1997-04-28 1997-04-28 Projection display device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP9111472A JP3008086B2 (en) 1997-04-28 1997-04-28 Projection display device

Related Parent Applications (1)

Application Number Title Priority Date Filing Date
JP63119920A Division JP2707599B2 (en) 1988-05-17 1988-05-17 Projection display device

Related Child Applications (3)

Application Number Title Priority Date Filing Date
JP10264989A Division JP3024637B2 (en) 1998-09-18 1998-09-18 Projection display device
JP11009790A Division JP3067754B2 (en) 1999-01-18 1999-01-18 Projection display device
JP11009789A Division JP3003698B2 (en) 1999-01-18 1999-01-18 Projection display device

Publications (2)

Publication Number Publication Date
JPH1048591A JPH1048591A (en) 1998-02-20
JP3008086B2 true JP3008086B2 (en) 2000-02-14

Family

ID=14562124

Family Applications (1)

Application Number Title Priority Date Filing Date
JP9111472A Expired - Lifetime JP3008086B2 (en) 1997-04-28 1997-04-28 Projection display device

Country Status (1)

Country Link
JP (1) JP3008086B2 (en)

Cited By (22)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7778031B1 (en) 2009-07-15 2010-08-17 Teradyne, Inc. Test slot cooling system for a storage device testing system
US7848106B2 (en) 2008-04-17 2010-12-07 Teradyne, Inc. Temperature control within disk drive testing systems
US7890207B2 (en) 2008-04-17 2011-02-15 Teradyne, Inc. Transferring storage devices within storage device testing systems
US7904211B2 (en) 2008-04-17 2011-03-08 Teradyne, Inc. Dependent temperature control within disk drive testing systems
US7908029B2 (en) 2008-06-03 2011-03-15 Teradyne, Inc. Processing storage devices
US7911778B2 (en) 2008-04-17 2011-03-22 Teradyne, Inc. Vibration isolation within disk drive testing systems
US7929303B1 (en) 2010-02-02 2011-04-19 Teradyne, Inc. Storage device testing system cooling
US7932734B2 (en) 2009-07-15 2011-04-26 Teradyne, Inc. Individually heating storage devices in a testing system
US7940529B2 (en) 2009-07-15 2011-05-10 Teradyne, Inc. Storage device temperature sensing
US7945424B2 (en) 2008-04-17 2011-05-17 Teradyne, Inc. Disk drive emulator and method of use thereof
US7987018B2 (en) 2008-04-17 2011-07-26 Teradyne, Inc. Transferring disk drives within disk drive testing systems
US7996174B2 (en) 2007-12-18 2011-08-09 Teradyne, Inc. Disk drive testing
US8041449B2 (en) 2008-04-17 2011-10-18 Teradyne, Inc. Bulk feeding disk drives to disk drive testing systems
US8102173B2 (en) 2008-04-17 2012-01-24 Teradyne, Inc. Thermal control system for test slot of test rack for disk drive testing system with thermoelectric device and a cooling conduit
US8116079B2 (en) 2009-07-15 2012-02-14 Teradyne, Inc. Storage device testing system cooling
US8238099B2 (en) 2008-04-17 2012-08-07 Teradyne, Inc. Enclosed operating area for disk drive testing systems
US8405971B2 (en) 2007-12-18 2013-03-26 Teradyne, Inc. Disk drive transport, clamping and testing
US8482915B2 (en) 2008-04-17 2013-07-09 Teradyne, Inc. Temperature control within disk drive testing systems
US8547123B2 (en) 2009-07-15 2013-10-01 Teradyne, Inc. Storage device testing system with a conductive heating assembly
US8628239B2 (en) 2009-07-15 2014-01-14 Teradyne, Inc. Storage device temperature sensing
US10775408B2 (en) 2018-08-20 2020-09-15 Teradyne, Inc. System for testing devices inside of carriers
US10948534B2 (en) 2017-08-28 2021-03-16 Teradyne, Inc. Automated test system employing robotics

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20020071339A (en) * 2001-03-06 2002-09-12 삼성에스디아이 주식회사 Projection System having Cooling Apparatus
JP4042474B2 (en) * 2001-08-08 2008-02-06 セイコーエプソン株式会社 Optical device and projector
JP2003084260A (en) * 2001-09-10 2003-03-19 Tamron Co Ltd Liquid crystal projector

Cited By (38)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8549912B2 (en) 2007-12-18 2013-10-08 Teradyne, Inc. Disk drive transport, clamping and testing
US8405971B2 (en) 2007-12-18 2013-03-26 Teradyne, Inc. Disk drive transport, clamping and testing
US8467180B2 (en) 2007-12-18 2013-06-18 Teradyne, Inc. Disk drive transport, clamping and testing
US7996174B2 (en) 2007-12-18 2011-08-09 Teradyne, Inc. Disk drive testing
US8712580B2 (en) 2008-04-17 2014-04-29 Teradyne, Inc. Transferring storage devices within storage device testing systems
US7890207B2 (en) 2008-04-17 2011-02-15 Teradyne, Inc. Transferring storage devices within storage device testing systems
US8305751B2 (en) 2008-04-17 2012-11-06 Teradyne, Inc. Vibration isolation within disk drive testing systems
US8655482B2 (en) 2008-04-17 2014-02-18 Teradyne, Inc. Enclosed operating area for storage device testing systems
US7848106B2 (en) 2008-04-17 2010-12-07 Teradyne, Inc. Temperature control within disk drive testing systems
US8482915B2 (en) 2008-04-17 2013-07-09 Teradyne, Inc. Temperature control within disk drive testing systems
US7945424B2 (en) 2008-04-17 2011-05-17 Teradyne, Inc. Disk drive emulator and method of use thereof
US7987018B2 (en) 2008-04-17 2011-07-26 Teradyne, Inc. Transferring disk drives within disk drive testing systems
US7904211B2 (en) 2008-04-17 2011-03-08 Teradyne, Inc. Dependent temperature control within disk drive testing systems
US7911778B2 (en) 2008-04-17 2011-03-22 Teradyne, Inc. Vibration isolation within disk drive testing systems
US8041449B2 (en) 2008-04-17 2011-10-18 Teradyne, Inc. Bulk feeding disk drives to disk drive testing systems
US8238099B2 (en) 2008-04-17 2012-08-07 Teradyne, Inc. Enclosed operating area for disk drive testing systems
US8095234B2 (en) 2008-04-17 2012-01-10 Teradyne, Inc. Transferring disk drives within disk drive testing systems
US8102173B2 (en) 2008-04-17 2012-01-24 Teradyne, Inc. Thermal control system for test slot of test rack for disk drive testing system with thermoelectric device and a cooling conduit
US8117480B2 (en) 2008-04-17 2012-02-14 Teradyne, Inc. Dependent temperature control within disk drive testing systems
US8451608B2 (en) 2008-04-17 2013-05-28 Teradyne, Inc. Temperature control within storage device testing systems
US8140182B2 (en) 2008-04-17 2012-03-20 Teradyne, Inc. Bulk feeding disk drives to disk drive testing systems
US8160739B2 (en) 2008-04-17 2012-04-17 Teradyne, Inc. Transferring storage devices within storage device testing systems
US8086343B2 (en) 2008-06-03 2011-12-27 Teradyne, Inc. Processing storage devices
US7908029B2 (en) 2008-06-03 2011-03-15 Teradyne, Inc. Processing storage devices
US7940529B2 (en) 2009-07-15 2011-05-10 Teradyne, Inc. Storage device temperature sensing
US7932734B2 (en) 2009-07-15 2011-04-26 Teradyne, Inc. Individually heating storage devices in a testing system
US8116079B2 (en) 2009-07-15 2012-02-14 Teradyne, Inc. Storage device testing system cooling
US8466699B2 (en) 2009-07-15 2013-06-18 Teradyne, Inc. Heating storage devices in a testing system
US7995349B2 (en) 2009-07-15 2011-08-09 Teradyne, Inc. Storage device temperature sensing
US7778031B1 (en) 2009-07-15 2010-08-17 Teradyne, Inc. Test slot cooling system for a storage device testing system
US8547123B2 (en) 2009-07-15 2013-10-01 Teradyne, Inc. Storage device testing system with a conductive heating assembly
US8279603B2 (en) 2009-07-15 2012-10-02 Teradyne, Inc. Test slot cooling system for a storage device testing system
US8628239B2 (en) 2009-07-15 2014-01-14 Teradyne, Inc. Storage device temperature sensing
US7920380B2 (en) 2009-07-15 2011-04-05 Teradyne, Inc. Test slot cooling system for a storage device testing system
US8687356B2 (en) 2010-02-02 2014-04-01 Teradyne, Inc. Storage device testing system cooling
US7929303B1 (en) 2010-02-02 2011-04-19 Teradyne, Inc. Storage device testing system cooling
US10948534B2 (en) 2017-08-28 2021-03-16 Teradyne, Inc. Automated test system employing robotics
US10775408B2 (en) 2018-08-20 2020-09-15 Teradyne, Inc. System for testing devices inside of carriers

Also Published As

Publication number Publication date
JPH1048591A (en) 1998-02-20

Similar Documents

Publication Publication Date Title
JP3008086B2 (en) Projection display device
JP3583062B2 (en) Display element and projection type liquid crystal display device
JP3090480B2 (en) Display device and display optical system
JP2000298311A (en) Projection type display device
JP2003066404A (en) Liquid crystal projector
KR20020077113A (en) Optical part mounting structure and projector
JPH11295814A (en) Liquid crystal panel cooling device
JP2707599B2 (en) Projection display device
JP3003698B2 (en) Projection display device
JP3099827B2 (en) Projection display device
JP3067754B2 (en) Projection display device
JP2000338478A (en) Optical component and liquid crystal projector using the same
JP2001004931A (en) Video projecting device
JP3024637B2 (en) Projection display device
JP3525827B2 (en) Display device
JP3807219B2 (en) projector
JP2944354B2 (en) LCD projector
JP3267279B2 (en) Display device
JP3990890B2 (en) Projection display
JP2002090873A (en) Projection-type display device
JP2004226914A (en) Projection type display device
JP2000147449A (en) Liquid crystal projection television
JP4125631B2 (en) Projection display
JP2836619B2 (en) projector
JP3147370B2 (en) Projection display device

Legal Events

Date Code Title Description
FPAY Renewal fee payment (event date is renewal date of database)

Free format text: PAYMENT UNTIL: 20081203

Year of fee payment: 9

EXPY Cancellation because of completion of term
FPAY Renewal fee payment (event date is renewal date of database)

Free format text: PAYMENT UNTIL: 20081203

Year of fee payment: 9