JPH11208021A - Optical write printer-head, printer and print system - Google Patents

Optical write printer-head, printer and print system

Info

Publication number
JPH11208021A
JPH11208021A JP1153598A JP1153598A JPH11208021A JP H11208021 A JPH11208021 A JP H11208021A JP 1153598 A JP1153598 A JP 1153598A JP 1153598 A JP1153598 A JP 1153598A JP H11208021 A JPH11208021 A JP H11208021A
Authority
JP
Japan
Prior art keywords
hole
light
printer
led
size
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
JP1153598A
Other languages
Japanese (ja)
Other versions
JP3234186B2 (en
Inventor
Susumu Fujita
進 藤田
Tatsuji Saigo
達治 西郷
Saburo Imai
三郎 今井
Koji Maeda
孝司 前田
Kensuke Morizori
健介 森反
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 Instruments Inc
Original Assignee
Seiko Instruments Inc
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 Seiko Instruments Inc filed Critical Seiko Instruments Inc
Priority to JP1153598A priority Critical patent/JP3234186B2/en
Priority to EP19990300459 priority patent/EP0931667B1/en
Priority to DE69921706T priority patent/DE69921706T2/en
Publication of JPH11208021A publication Critical patent/JPH11208021A/en
Application granted granted Critical
Publication of JP3234186B2 publication Critical patent/JP3234186B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41JTYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
    • B41J2/00Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed
    • B41J2/525Arrangement for multi-colour printing, not covered by group B41J2/21, e.g. applicable to two or more kinds of printing or marking process
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41JTYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
    • B41J2/00Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed
    • B41J2/435Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed characterised by selective application of radiation to a printing material or impression-transfer material
    • B41J2/465Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed characterised by selective application of radiation to a printing material or impression-transfer material using masks, e.g. light-switching masks
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41JTYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
    • B41J2/00Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed
    • B41J2/435Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed characterised by selective application of radiation to a printing material or impression-transfer material
    • B41J2/475Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed characterised by selective application of radiation to a printing material or impression-transfer material for heating selectively by radiation or ultrasonic waves
    • B41J2/48Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed characterised by selective application of radiation to a printing material or impression-transfer material for heating selectively by radiation or ultrasonic waves melting ink on a film or melting ink granules

Landscapes

  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Toxicology (AREA)
  • Printers Or Recording Devices Using Electromagnetic And Radiation Means (AREA)
  • Laser Beam Printer (AREA)

Abstract

PROBLEM TO BE SOLVED: To enable utilization of an LED of low emission power and realize miniaturization and low cost by changing a size of a hole according to a corresponding emission wavelength in a printer head having a plurality of light emission sources of different emission wavelengths and the hole limiting an exposure dot size. SOLUTION: A blue light-emitting LED 2, a green light-emitting LED 3 and a red light-emitting LED 4 are mounted on a substrate 1 of an optical write printer-head. The whole of an upper face of the substrate 1 is covered with a cover 5. Holes 6-8 of different diameters are formed in the cover 5 to correspond to the LEDs 2-4, thereby limiting beam sizes of the blue, green and red lights advancing upward. More specifically, the holes 6-8 are changed in size to agree with the human sense. The hole is enlarged for a color not important in terms of spatial recognition, and a count of the LEDs of the same color is reduced, thereby realizing miniaturization and cost reduction. Separators 9 are set between the LED 2 and 3 and, 3 and 4 to prevent the light emitted from the LEDs from leaking sideways.

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】本発明は光書込み波長により
プリント色を選択し、光書込みパワーにより発色濃度を
制御することができるプリンタに用いる光書込みプリン
タヘッドに関し、露光ドットサイズを制限する孔の大き
さを最適化して発光パワーを有効利用し、小型化とロー
コストを達成できる光書込みプリンタヘッドを提供する
ものである。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to an optical writing printer head used for a printer capable of selecting a printing color by an optical writing wavelength and controlling a color density by an optical writing power, and a hole size for limiting an exposure dot size. An object of the present invention is to provide an optical writing printer head capable of optimizing the efficiency and effectively utilizing the light emission power to achieve downsizing and low cost.

【0002】[0002]

【従来の技術】従来の光書込みプリンタヘッドの断面図
を図4に示す。基板1の上には青色発光LED2と緑色
発光LED3と赤色発光LED4とが実装されており、
基板1の上面全体をカバー5が覆っている。このカバー
5にはLED2に対応する孔25とLED3に対応する
孔26とLED4に対応する孔27が設けられ、上方に
進む青、緑、赤の光のビームサイズを制限している。こ
れら孔25、孔26、孔27の大きさはほぼ等しい。L
ED2とLED3との間、 LED3とLED4との間
にはそれぞれのLEDが発光した光が横方向に漏れない
ようにセパレータ9が設けられ、光を分離している。
2. Description of the Related Art FIG. 4 is a sectional view of a conventional optical writing printer head. A blue light emitting LED 2, a green light emitting LED 3, and a red light emitting LED 4 are mounted on a substrate 1,
A cover 5 covers the entire upper surface of the substrate 1. The cover 5 is provided with a hole 25 corresponding to the LED2, a hole 26 corresponding to the LED3, and a hole 27 corresponding to the LED4 to limit the beam size of blue, green and red light traveling upward. The sizes of the holes 25, 26, and 27 are substantially equal. L
Separators 9 are provided between the ED 2 and the LED 3 and between the LED 3 and the LED 4 so as to prevent the light emitted by the respective LEDs from leaking in the horizontal direction, and separate the light.

【0003】この光書込みプリンタヘッドの上方にプリ
ントメディアを配置し、プリント画素毎にその画素の色
/濃度に対応してLED2、LED3、LED4を発光
させ露光する。プリントメディアは図4の左右方向に移
動させる。また、ヘッドは図4の断面と垂直方向に移動
させるいわゆるシリアル書込みで、両方の移動により平
面全体を露光している。
[0005] A print medium is arranged above the optical writing printer head, and LED2, LED3, and LED4 emit light corresponding to the color / density of each print pixel to expose. The print medium is moved in the left-right direction in FIG. In addition, the head is moved in a direction perpendicular to the cross section of FIG. 4 by so-called serial writing, and the entire plane is exposed by both movements.

【0004】このプリンタに使われるメディアの例とし
て色素をマイクロカプセルに閉じ込めた方式が実用化さ
れている。これはシアン、マゼンタ、イエローの色素を
それぞれ赤色、緑色、青色の光に反応するマイクロカプ
セルに仕込み、それぞれの光が当たるとカプセルが硬化
し、光が当たらないとカプセルは柔らかく破れ易い状態
を保つものである。このメディアに対してプリントした
い色・濃度に合わせた赤色、緑色、青色の光を露光し、
その後メディアに圧力をかけて硬化していないマイクロ
カプセルを潰し、色素を定着させて発色させている。
[0004] As an example of a medium used in this printer, a system in which a dye is encapsulated in microcapsules has been put to practical use. In this method, cyan, magenta, and yellow pigments are charged into microcapsules that respond to red, green, and blue light, respectively. Things. Expose red, green, and blue light according to the color and density you want to print on this media,
Thereafter, pressure is applied to the medium to crush the uncured microcapsules and fix the pigment to develop color.

【0005】この方式のプリンタは簡単な構成でカラー
プリントが可能で、手軽なプリンタとして製品化されて
いる。
A printer of this type is capable of performing color printing with a simple configuration, and has been commercialized as a simple printer.

【0006】[0006]

【発明が解決しようとする課題】上記の従来例では感光
性のメディアを使っているのでプリントプロセスでは外
光が当たらないようにしているが、若干の漏れ光がある
ので扱い易さの点では光に対する感度が低い方が良い。
一方では、書込みスピード、光源のサイズ・コストの点
では感度が高い事が望ましい。
In the above-mentioned conventional example, a photosensitive medium is used, so that external light is not irradiated in the printing process. However, since there is a slight leakage of light, it is difficult to handle. The lower the sensitivity to light, the better.
On the other hand, it is desirable that the sensitivity be high in terms of the writing speed and the size and cost of the light source.

【0007】実際には、マイクロカプセルをある程度の
強度まで硬化させる必要があるため、それに要する光パ
ワーは比較的高いレベルが要求される。このため、例え
ば青色LED2一個で露光するのではなく複数の青色L
EDを同一の画素に対して露光し、パワーを稼いでい
る。プリンタヘッドの小型化のためにはLEDの個数を
減らす事が望ましく、これはコストダウンにつながる。
また、発光パワーを増すととそれに伴い損失も増え、放
熱機構が必要になり、これも小型化・ローコストにとっ
ては不利になる。
Actually, since it is necessary to cure the microcapsules to a certain degree, a relatively high level of optical power is required. For this reason, for example, instead of exposing with one blue LED 2, a plurality of blue LEDs
The ED is exposed to the same pixel to gain power. To reduce the size of the printer head, it is desirable to reduce the number of LEDs, which leads to cost reduction.
In addition, when the light emission power is increased, the loss also increases, and a heat radiation mechanism is required, which is disadvantageous for miniaturization and low cost.

【0008】従って、LEDの発生した光を有効に利用
する事が望まれ、露光ドットサイズを制限する孔を大き
くする事により光パワーを増やす事が考えられる。しか
し、この孔を大きくするとプリント画素の分解能が低下
し、ぼけた画像になってしまう。
Therefore, it is desired to effectively use the light generated by the LED, and it is conceivable to increase the optical power by increasing the size of the hole for limiting the size of the exposure dot. However, if this hole is enlarged, the resolution of the print pixel is reduced, resulting in a blurred image.

【0009】[0009]

【課題を解決するための手段】上記課題を解決する手段
として本発明の光書込みプリンタヘッドでは、赤色LE
D、緑色LED、青色LEDに対応する孔の大きさを人
間の感覚に合わせて変え、空間認識にとって重要でない
色については孔を大きくし、同色のLEDの数を減らす
か、発光パワーの低い低価格のLEDを用いる事により
小型・ローコストを実現している。
According to the present invention, there is provided an optical writing printer head comprising a red LE.
D, the size of the hole corresponding to the green LED and the blue LED is changed according to human perception, and the size of the hole that is not important for spatial recognition is increased, and the number of LEDs of the same color is reduced or the light emission power is low. The use of inexpensive LEDs achieves small size and low cost.

【0010】また、複数の同色LEDで同一画素を露光
する場合、露光から圧力を加えて現像するまでの時間に
差があり、それぞれのLEDの発光が発色に影響する度
合いに差が生じる。このため、最初に発光して影響の大
きいLEDに対応する孔を大きくして発光パワーをより
有効に利用している。これにより、放熱の処理が容易に
なり、発光パワーの低いLEDの利用により小型化・ロ
ーコスト化が可能になる。
Further, when exposing the same pixel with a plurality of LEDs of the same color, there is a difference in the time from the exposure to the development by applying pressure, and a difference occurs in the degree to which the light emission of each LED affects the color development. For this reason, the hole corresponding to the LED which emits light first and has a large influence is enlarged, and the light emission power is more effectively used. As a result, the heat radiation processing is facilitated, and miniaturization and low cost can be achieved by using LEDs having low light emission power.

【0011】また、本発明では、上記光書込みプリンタ
ヘッドを設けてプリンタを構成し、さらにこのプリンタ
を情報処理装置に接続して、情報処理装置から送信され
る情報をこのプリンタによってプリントするようにプリ
ントシステムを構成した。
According to the present invention, a printer is provided with the optical writing printer head, and the printer is connected to an information processing apparatus so that information transmitted from the information processing apparatus is printed by the printer. The printing system was configured.

【0012】[0012]

【発明の実施の形態】本発明の光書込みプリンタヘッド
の実施例を図1の断面図と図2の平面図を用いて説明す
る。基板1の上には青色発光LED2と緑色発光LED
3と赤色発光LED4とが実装されており、基板1の上
面全体をカバー5が覆っている。このカバー5にはLE
D2に対応する孔6とLED3に対応する孔7とLED
4に対応する孔8が設けられ、上方に進む青、緑、赤の
光のビームサイズを制限している。LED2とLED3
との間にはそれぞれのLEDが発光した光が横方向に漏
れないようにセパレータ9が設けられ、光を分離してい
る。
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS An embodiment of an optical writing printer head according to the present invention will be described with reference to a sectional view of FIG. 1 and a plan view of FIG. A blue light emitting LED 2 and a green light emitting LED are provided on a substrate 1.
3 and a red light emitting LED 4 are mounted, and a cover 5 covers the entire upper surface of the substrate 1. This cover 5 has LE
Hole 6 corresponding to D2 and hole 7 corresponding to LED3 and LED
Holes 8 corresponding to 4 are provided to limit the beam sizes of blue, green and red light traveling upward. LED2 and LED3
Between them, a separator 9 is provided so that the light emitted by each LED does not leak in the horizontal direction, and separates the light.

【0013】青色発光LED2のみで露光すると青色に
発色し、緑色発光LED3のみが発光した場合は緑色に
発色し、赤色発光LED4のみの発光で赤色となり、全
部発光すると白くなる。人間の視覚では緑の感度が高
く、また、赤は比較的目立って色ずれを認識し易い。従
って緑色のLED3に対応する孔7を大きくするとぼけ
た画像になってしまう。一方、青色LED2に対応する
孔6を大きくしても画像に対する影響は少ない。このた
め、図1の断面図では孔7は小さく、孔8、孔6の順に
大きくしている。
When only the blue light emitting LED 2 is exposed, the light is colored blue, when only the green light emitting LED 3 emits light, the light is colored green. When only the red light emitting LED 4 emits light, the light becomes red. In human vision, green has high sensitivity, and red is relatively conspicuous and color misregistration is easily recognized. Therefore, if the hole 7 corresponding to the green LED 3 is enlarged, a blurred image will result. On the other hand, even if the hole 6 corresponding to the blue LED 2 is enlarged, the effect on the image is small. For this reason, in the cross-sectional view of FIG. 1, the hole 7 is small, and the hole 8 and the hole 6 are increased in this order.

【0014】次に図1のカバー5の上面を図2の平面図
に示す。カバー5には合計9個の孔があり、青色LED
と対応したものが孔6、孔10、孔13であり、これら
の孔径はほぼ等しい。緑色LEDと対応したものが孔
7、孔11、孔14で、これらの孔径もほぼ等しく、赤
色LEDと対応したものが孔8、孔12、孔16で、こ
れらの孔径もほぼ等しい。例えばある画素に対して赤の
露光を行う場合、その画素に対して孔8からの光が当
り、次にメディアが図2の上方に移動してその画素が孔
12の位置に来た時に孔12からの光が当り、最後にそ
の画素が孔16の位置に来た時に孔16からの光が当り
露光が完了する。画面全体を露光するためには、上記の
ようにメディアを図2の上方に移動し、更にプリンタヘ
ッドを図2の左右方向に移動しながら露光する。これに
よりひとつの画素に対して青色3回、緑色3回、赤色3
回、合計9回の露光が行われる。
Next, an upper surface of the cover 5 of FIG. 1 is shown in a plan view of FIG. Cover 5 has a total of 9 holes, blue LED
The holes 6, the holes 10, and the holes 13 correspond to, and these holes have almost the same diameter. The holes corresponding to the green LED are the holes 7, 11 and 14, and the hole diameters thereof are substantially equal, and those corresponding to the red LED are the holes 8, 12 and 16 and the hole diameters are substantially equal. For example, when a pixel is exposed to red light, the light from the hole 8 impinges on the pixel, and then the medium moves upward in FIG. The light from the hole 12 hits the light, and when the pixel finally reaches the position of the hole 16, the light from the hole 16 hits and the exposure is completed. In order to expose the entire screen, the medium is moved upward in FIG. 2 as described above, and the exposure is performed while further moving the printer head in the left-right direction in FIG. Thereby, three times blue, three times green, and three times red for one pixel.
Exposure is performed nine times in total.

【0015】このように青色の孔は大きいので光の利用
率が高く、場合によっては青色LEDの数を減らす事が
でき、あるいは発光パワーの小さい安いLEDを使う事
ができる。また、同じLEDを用いても入力電力を下げ
る事ができ、LEDの損失が減り放熱が容易になる。特
にプリンタヘッドが移動するシリアル露光のヘッドでは
ヘッドの小型化が装置全体の小型化に影響し、ヘッドが
移動しているので放熱構造を作りにくいため、光パワー
の有効利用に対する要求が強い。更に、LEDの入力電
力が減ると電源容量も減り、プリンタ全体としての小型
・ローコストに効果がある。
As described above, since the blue hole is large, the light utilization is high, and in some cases, the number of blue LEDs can be reduced, or a cheap LED having a small light emission power can be used. In addition, even if the same LED is used, the input power can be reduced, the loss of the LED is reduced, and heat dissipation is facilitated. In particular, in the case of a serial exposure head in which a printer head moves, the miniaturization of the head affects the miniaturization of the entire apparatus, and since the head is moving, it is difficult to create a heat radiation structure. Further, when the input power of the LED is reduced, the power supply capacity is also reduced, which is effective in reducing the size and cost of the entire printer.

【0016】本発明の光書込みプリンタヘッドの別の実
施例を図3の平面図を用いて説明する。図3は図2と同
様にカバー5の上面を示しており、合計9個の孔があ
る。青色LEDと対応したものが孔16、孔19、孔2
2であり、緑色LEDと対応したものが孔17、孔2
0、孔23であり、赤色LEDと対応したものが孔1
8、孔21、孔24である。孔16、孔17、孔18は
大きく、孔22、孔23、孔24は小さい。一方、孔1
6と孔17と孔18の大きさはほぼ等しい。同様に孔1
9と孔20、孔21の大きさはほぼ等しく、孔22と孔
23、孔24の大きさもほぼ等しい。LED光源の発光
動作は図2の場合と同様で、赤の露光を行う場合、その
画素に対して孔18からの光が当り、次に孔21からの
光が当り、最後に孔24からの光が当り露光が完了す
る。
Another embodiment of the optical writing printer head of the present invention will be described with reference to the plan view of FIG. FIG. 3 shows the upper surface of the cover 5 similarly to FIG. 2, and has a total of nine holes. The one corresponding to the blue LED is hole 16, hole 19, hole 2
2 and the one corresponding to the green LED is hole 17, hole 2
0, hole 23, and the one corresponding to the red LED is hole 1
8, hole 21 and hole 24. The holes 16, 17 and 18 are large, and the holes 22, 23 and 24 are small. On the other hand, hole 1
6, the hole 17 and the hole 18 are substantially equal in size. Hole 1
9 and the holes 20 and 21 are substantially equal in size, and the holes 22 and 23 and the holes 24 are almost equal in size. The light emitting operation of the LED light source is the same as that in FIG. 2. When performing red exposure, light from the hole 18 hits the pixel, then light from the hole 21 hits the pixel, and finally light from the hole 24 hits the pixel. Light hits and exposure is completed.

【0017】ここで用いるメディアは光によりマイクロ
カプセルが硬化するもので、化学的反応であるため露光
してから圧力を加えてカプセルを潰すまでの時間により
得られる色素濃度が変わる。つまり、最初に露光する孔
18からの露光の効果が大きく、最後に露光する孔24
の効果が小さい。このため、最初に露光する孔を大きく
する事により発光パワーを有効に用いて発色を大きく制
御し、最後の孔で細かい発色制御と分解能の確保を実現
し、全体の露光パワーを減らすことができる。
The medium used here is a medium in which the microcapsules are hardened by light and is a chemical reaction. Therefore, the concentration of the obtained dye varies depending on the time from exposure to application of pressure to crushing of the capsules. That is, the effect of exposure from the hole 18 to be exposed first is large, and
The effect is small. For this reason, by increasing the size of the hole to be exposed first, the light emission power is effectively used to greatly control the color development, and the last hole can realize fine color control and ensure the resolution, thereby reducing the overall exposure power. .

【0018】これにより図1、図2の場合と同様にプリ
ンタヘッドの小型・ローコスト化が可能となる。これま
ではヘッドが移動するシリアル書込み方式についてのみ
説明したが、1ライン分を同時に書込む方式の場合でも
同様に孔の大きさを最適化する事によりコスト・パフォ
ーマンスの改善が可能である。
This makes it possible to reduce the size and cost of the printer head as in the case of FIGS. Until now, only the serial writing method in which the head moves has been described, but cost performance can be improved by optimizing the size of the holes similarly in the case of writing data for one line at the same time.

【0019】また、LEDの色により孔の大きさを変
え、更に同一色で複数回書込む孔の大きさを変え、両方
の相乗効果を狙う事もできる。更に、光源はLEDのみ
でなく、放電発光ランプや、波長フィルターを用いたフ
ィラメントランプと光シャッターを用いた方式にも用い
る事ができ、これらも本発明に含まれる。
It is also possible to change the size of the hole depending on the color of the LED and to change the size of the hole to be written a plurality of times with the same color, thereby aiming for a synergistic effect of both. Further, the light source can be used not only for the LED, but also for a discharge light emitting lamp, a filament lamp using a wavelength filter and a method using an optical shutter, and these are also included in the present invention.

【0020】以上のように構成した光書込みプリンタヘ
ッドを採用してプリンタを構成することができることは
明らかである。また、このように構成したプリンタを情
報処理装置に接続し、情報処理装置から送信される情報
をプリンタによってプリントするプリントシステムを構
成することもできる。
It is obvious that a printer can be constructed by employing the optical writing printer head constructed as described above. Further, the printer configured as described above can be connected to an information processing apparatus, and a print system that prints information transmitted from the information processing apparatus by the printer can be configured.

【0021】[0021]

【発明の効果】本発明の光書込みプリンタヘッドを用い
る事により、発光パワーの利用効率が改善され、発光源
の数やパワー・大きさを削減でき、損失による発熱を減
らす事により放熱機構のサイズ・コストを削減できる。
これらの効果によりプリンタヘッドの小型化とローコス
ト化が可能となり、更にプリンタセット全体の小型化・
ローコスト化に大きく貢献する事ができ、本発明を用い
る効果は大きい。
By using the optical writing printer head of the present invention, the utilization efficiency of light emission power is improved, the number, power and size of light emission sources can be reduced, and the size of the heat radiation mechanism can be reduced by reducing heat generation due to loss.・ Cost can be reduced.
These effects make it possible to reduce the size and cost of the printer head.
This can greatly contribute to cost reduction, and the effect of using the present invention is great.

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

【図1】本発明の光書込みプリンタヘッドの実施例を示
す断面図である。
FIG. 1 is a sectional view illustrating an embodiment of an optical writing printer head according to the present invention.

【図2】図1のカバーの上部表面を示す平面図である。FIG. 2 is a plan view showing an upper surface of a cover of FIG. 1.

【図3】本発明の光書込みプリンタヘッドの別の実施例
を示す平面図である。
FIG. 3 is a plan view showing another embodiment of the optical writing printer head of the present invention.

【図4】従来例の光書込みプリンタヘッドの実施例を示
す断面図である。
FIG. 4 is a sectional view showing an embodiment of a conventional optical writing printer head.

【符号の説明】[Explanation of symbols]

1 基板 2 孔青色発光のLED 3 緑色発光のLED 4 赤色発光のLED 5 カバー 6、25 LED2に対応した孔 7、26 LED3に対応した孔 8、27 LED4に対応した孔 9 セパレータ 10〜24 孔 DESCRIPTION OF SYMBOLS 1 board | substrate 2 hole Blue light emitting LED 3 Green light emitting LED 4 Red light emitting LED 5 Cover 6, 25 Hole corresponding to LED2 7, 26 Hole corresponding to LED3 8, 27 Hole corresponding to LED4 9 Separator 10-24 hole

─────────────────────────────────────────────────────
────────────────────────────────────────────────── ───

【手続補正書】[Procedure amendment]

【提出日】平成11年1月25日[Submission date] January 25, 1999

【手続補正1】[Procedure amendment 1]

【補正対象書類名】明細書[Document name to be amended] Statement

【補正対象項目名】特許請求の範囲[Correction target item name] Claims

【補正方法】変更[Correction method] Change

【補正内容】[Correction contents]

【特許請求の範囲】[Claims]

【手続補正2】[Procedure amendment 2]

【補正対象書類名】明細書[Document name to be amended] Statement

【補正対象項目名】0007[Correction target item name] 0007

【補正方法】変更[Correction method] Change

【補正内容】[Correction contents]

【0007】実際には、マイクロカプセルをある程度の
強度まで硬化させる必要があるため、それに要する光パ
ワーは比較的高いレベルが要求される。このため、例え
ば青色LED2一個で露光するのではなく複数の青色L
EDを同一の画素に対して露光し、パワーを稼いでい
る。プリンタヘッドの小型化のためにはLEDの個数を
減らす事が望ましく、これはコストダウンにつながる。
また、発光パワーを増すとそれに伴い損失も増え、放熱
機構が必要になり、これも小型化・ローコストにとって
は不利になる。
Actually, since it is necessary to cure the microcapsules to a certain degree, a relatively high level of optical power is required. For this reason, for example, instead of exposing with one blue LED 2, a plurality of blue LEDs
The ED is exposed to the same pixel to gain power. To reduce the size of the printer head, it is desirable to reduce the number of LEDs, which leads to cost reduction.
Also, increasing the loss due to Re and its increasing emission power, heat dissipation mechanism is required, which is also disadvantageous for miniaturization and low cost.

【手続補正3】[Procedure amendment 3]

【補正対象書類名】明細書[Document name to be amended] Statement

【補正対象項目名】0012[Correction target item name] 0012

【補正方法】変更[Correction method] Change

【補正内容】[Correction contents]

【0012】[0012]

【発明の実施の形態】本発明の光書込みプリンタヘッド
の実施例を図1の断面図と図2の平面図を用いて説明す
る。基板1の上には青色発光LED2と緑色発光LED
3と赤色発光LED4とが実装されており、基板1の上
面全体をカバー5が覆っている。このカバー5にはLE
D2に対応する孔6とLED3に対応する孔7とLED
4に対応する孔8が設けられ、上方に進む青、緑、赤の
光のビームサイズを制限している。LED2とLED3
との間、LED3とLED4との間にはそれぞれのLE
Dが発光した光が横方向に漏れないようにセパレータ9
が設けられ、光を分離している。
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS An embodiment of an optical writing printer head according to the present invention will be described with reference to a sectional view of FIG. 1 and a plan view of FIG. A blue light emitting LED 2 and a green light emitting LED are provided on a substrate 1.
3 and a red light emitting LED 4 are mounted, and a cover 5 covers the entire upper surface of the substrate 1. This cover 5 has LE
Hole 6 corresponding to D2 and hole 7 corresponding to LED3 and LED
Holes 8 corresponding to 4 are provided to limit the beam sizes of blue, green and red light traveling upward. LED2 and LED3
, And each LE3 between LED3 and LED4.
Separator 9 so that the light emitted by D does not leak in the horizontal direction.
Are provided to separate light.

【手続補正4】[Procedure amendment 4]

【補正対象書類名】明細書[Document name to be amended] Statement

【補正対象項目名】符号の説明[Correction target item name] Explanation of sign

【補正方法】変更[Correction method] Change

【補正内容】[Correction contents]

【符号の説明】 1 基板 2 色発光のLED 3 緑色発光のLED 4 赤色発光のLED 5 カバー 6、25 LED2に対応した孔 7、26 LED3に対応した孔 8、27 LED4に対応した孔 9 セパレータ 10〜24 孔[EXPLANATION OF SYMBOLS] 1 substrate 2 of blue light emitting LED 3 green light LED 4 red light LED 5 cover 6 and 25 LED2 corresponding to holes 8,27 LED 4 corresponding to the hole 7,26 LED 3 corresponding to the hole 9 Separator 10 to 24 holes

【手続補正5】[Procedure amendment 5]

【補正対象書類名】図面[Document name to be amended] Drawing

【補正対象項目名】全図[Correction target item name] All figures

【補正方法】変更[Correction method] Change

【補正内容】[Correction contents]

【図1】 FIG.

【図2】 FIG. 2

【図3】 FIG. 3

【図4】 FIG. 4

───────────────────────────────────────────────────── フロントページの続き (72)発明者 今井 三郎 千葉県千葉市美浜区中瀬1丁目8番地 セ イコーインスツルメンツ株式会社内 (72)発明者 前田 孝司 千葉県千葉市美浜区中瀬1丁目8番地 セ イコーインスツルメンツ株式会社内 (72)発明者 森反 健介 千葉県千葉市美浜区中瀬1丁目8番地 セ イコー電子機器株式会社内 ──────────────────────────────────────────────────続 き Continuing on the front page (72) Inventor Saburo Imai 1-8-1, Nakase, Mihama-ku, Chiba City, Chiba Prefecture Inside of Iko Instruments Inc. (72) Koji Maeda 1-8-8, Nakase, Nakase, Mihama-ku, Chiba City, Chiba Prefecture (72) Inventor Kensuke Moritari 1-8-1 Nakase, Mihama-ku, Chiba-shi, Chiba Seiko Electronic Equipment Co., Ltd.

Claims (5)

【特許請求の範囲】[Claims] 【請求項1】 発光波長の異なる複数の発光源、または
発光波長の異なる複数の発光源と該発光源に対応する複
数の光シャッターと、露光ドットサイズを制限する孔と
を有するプリンタヘッドにおいて、前記孔の大きさを、
それに対応する発光波長により変えた事を特徴とする光
書込みプリンタヘッド。
1. A printer head comprising: a plurality of light sources having different emission wavelengths; or a plurality of light sources having different emission wavelengths; a plurality of optical shutters corresponding to the light sources; and a hole for limiting an exposure dot size. The size of the hole,
An optical writing printer head characterized by being changed according to the corresponding emission wavelength.
【請求項2】 発光波長の異なる複数の発光源、または
発光波長の異なる複数の発光源と該発光源に対応する光
シャッターと、前記発光源のそれぞれの発光波長に対し
て発光波長のほぼ等しい複数の発光源、 または複数の発光源と該発光源に対応する複数の光シャ
ッターを有し、 前記発光源に対応して露光ドットサイズを制限する孔と
を有するプリンタヘッドにおいて、 前記発光波長のほぼ等しい複数の発光源、または複数の
発光源と複数の光シャッターに対応する孔の大きさを変
えた事を特徴とする光書込みプリンタヘッド。
2. A plurality of light sources having different emission wavelengths, or a plurality of light sources having different emission wavelengths and an optical shutter corresponding to the light sources, the emission wavelengths of the respective light emission sources being substantially equal to each other. A plurality of light sources, or a plurality of light sources and a plurality of optical shutters corresponding to the light sources, a printer head having a hole for limiting the exposure dot size corresponding to the light source, the printer head, An optical writing printer head, wherein the size of holes corresponding to a plurality of light sources, or a plurality of light sources and a plurality of light shutters, which are substantially equal, is changed.
【請求項3】 プリント平面に対して一方向に機械的に
移動しながら書込みを行うことを特徴とする、請求項1
または請求項2記載の光書込みプリンタヘッド。
3. The writing is performed while mechanically moving in one direction with respect to a printing plane.
An optical writing printer head according to claim 2.
【請求項4】 請求項1ないし請求項3記載の光書込み
プリントヘッドを備えたことを特徴とするプリンタ。
4. A printer comprising the optical writing print head according to claim 1.
【請求項5】 請求項4記載のプリンタと情報処理装置
とを接続し、前記情報処理装置から送信される情報を前
記プリンタによってプリントすることを特徴とするプリ
ントシステム。
5. A printing system, wherein the printer according to claim 4 is connected to an information processing apparatus, and information transmitted from the information processing apparatus is printed by the printer.
JP1153598A 1998-01-23 1998-01-23 Optical writing printer head, printer and print system Expired - Fee Related JP3234186B2 (en)

Priority Applications (3)

Application Number Priority Date Filing Date Title
JP1153598A JP3234186B2 (en) 1998-01-23 1998-01-23 Optical writing printer head, printer and print system
EP19990300459 EP0931667B1 (en) 1998-01-23 1999-01-21 Optical writing printer head, printer, and print system
DE69921706T DE69921706T2 (en) 1998-01-23 1999-01-21 Optical printer stylus, printer and printing system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP1153598A JP3234186B2 (en) 1998-01-23 1998-01-23 Optical writing printer head, printer and print system

Publications (2)

Publication Number Publication Date
JPH11208021A true JPH11208021A (en) 1999-08-03
JP3234186B2 JP3234186B2 (en) 2001-12-04

Family

ID=11780669

Family Applications (1)

Application Number Title Priority Date Filing Date
JP1153598A Expired - Fee Related JP3234186B2 (en) 1998-01-23 1998-01-23 Optical writing printer head, printer and print system

Country Status (3)

Country Link
EP (1) EP0931667B1 (en)
JP (1) JP3234186B2 (en)
DE (1) DE69921706T2 (en)

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4841316A (en) * 1988-02-17 1989-06-20 The Gerber Scientific Instrument Company Photohead system for positioning an aperture wheel and method of making an aperture disc
US5506614A (en) * 1993-07-12 1996-04-09 Xerox Corporation Selective optical elements for multiwavelength electronic print heads
WO1996011110A1 (en) * 1994-10-05 1996-04-18 Rohm Co., Ltd. Led printing head
US5754217A (en) * 1995-04-19 1998-05-19 Texas Instruments Incorporated Printing system and method using a staggered array spatial light modulator having masked mirror elements
KR19990044364A (en) * 1996-07-09 1999-06-25 오오시마 야스히로 Exposure Head and Printing Device

Also Published As

Publication number Publication date
DE69921706T2 (en) 2005-10-06
EP0931667A2 (en) 1999-07-28
EP0931667B1 (en) 2004-11-10
EP0931667A3 (en) 2000-01-12
JP3234186B2 (en) 2001-12-04
DE69921706D1 (en) 2004-12-16

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