JPH023317A - Recording apparatus of image - Google Patents

Recording apparatus of image

Info

Publication number
JPH023317A
JPH023317A JP14822888A JP14822888A JPH023317A JP H023317 A JPH023317 A JP H023317A JP 14822888 A JP14822888 A JP 14822888A JP 14822888 A JP14822888 A JP 14822888A JP H023317 A JPH023317 A JP H023317A
Authority
JP
Japan
Prior art keywords
recording
sub
scanning
recorded
rate
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.)
Pending
Application number
JP14822888A
Other languages
Japanese (ja)
Inventor
Masami Izumizaki
昌巳 泉崎
Akio Suzuki
章雄 鈴木
Yoshihiro Takada
吉宏 高田
Hisashi Fukushima
福島 久史
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.)
Canon Inc
Original Assignee
Canon 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 Canon Inc filed Critical Canon Inc
Priority to JP14822888A priority Critical patent/JPH023317A/en
Publication of JPH023317A publication Critical patent/JPH023317A/en
Pending 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
    • B41J2/005Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed characterised by bringing liquid or particles selectively into contact with a printing material
    • B41J2/01Ink jet
    • B41J2/07Ink jet characterised by jet control
    • B41J2/125Sensors, e.g. deflection sensors

Landscapes

  • Ink Jet (AREA)
  • Particle Formation And Scattering Control In Inkjet Printers (AREA)

Abstract

PURPOSE:To prevent a change or the like of the density of a recorded image in relation to materials to be recorded which are different subtly in a blurring rate, and thereby to enable the attainment of image recording of high quality at all times, by controlling the amount of conveyance so that the materials to be recorded are conveyed properly in the sub-scanning direction, in accordance with the blurring rate of the material. CONSTITUTION:An output signal of a blurring rate detecting means 11 which reads data on the blurring rate of a material to be recorded, which are marked beforehand for each material to be recorded, is taken in a control device 14 as the data on the blurring rate of the material to be recorded, through a converting amplifier 12 and an A/D converte 13. Then, the number of sub- scanning feed pulses corresponding to the data on the blurring rate is determined from these data. Based on said data, a signal is sent to a sub-scanning motor driving circuit 16 and thereby a sub-scanning motor is driven by the number of the feed pulses determined by the control device 14. When the blurring rate is higher than a standard, the number of the pulses is increased to increase the amount of sub-scanning feed, and when the blurring rate is low, an operation contrary to the above is conducted.

Description

【発明の詳細な説明】 [産業上の利用分野] 本発明は、画像記録装置に関するものである。[Detailed description of the invention] [Industrial application field] The present invention relates to an image recording device.

[従来の技術] 従来、画像記録装置として、被記録材にインクを吐出す
ることにより記録を行うインクジェット記録装置か知ら
れている。
[Prior Art] Conventionally, as an image recording apparatus, an inkjet recording apparatus that performs recording by ejecting ink onto a recording material is known.

インクジェット記録装置は、ノンインパクト型の記録装
置であって騒音が少ないこと、多色のインクを使うこと
によってカラー画像記録も容易であること等の特長を有
しており、近年急速に普及しつつある。
Inkjet recording devices are non-impact recording devices with features such as low noise and the ability to easily record color images by using multicolored inks, and have become rapidly popular in recent years. be.

第3図は従来例に係るインクジェット記録装置の概略斜
視図である。
FIG. 3 is a schematic perspective view of a conventional inkjet recording apparatus.

第3図においてロール状に巻かれた被記録材5は、搬送
ローラ1.2を経て給送ローラ3て挟持されることによ
りf方向に送られる。この被記録材5を横切ってガイト
レール6.7が平行に置かれており、キャリッジ8に搭
載された記録ヘッドユニット9が左右に走査する。キャ
リッジ8にはイエロー、マセンタ、シアン、ブラックの
4色のヘッド9Y、911,9G、98xか搭載されて
おり、これに4色のインクタンクが配置されている。被
記録材5は記録ヘッド9の印字幅分ずつ間欠送りされる
が、ン皮記録材5か停止している時に記録ヘッド9はP
ブj向に走査し、画像信号に応したインク滴を吐出する
In FIG. 3, the recording material 5 wound into a roll is conveyed in the f direction by being nipped by the feeding roller 3 via the conveying roller 1.2. A guide rail 6.7 is placed in parallel across the recording material 5, and a recording head unit 9 mounted on a carriage 8 scans left and right. Mounted on the carriage 8 are heads 9Y, 911, 9G, and 98x of four colors: yellow, macenta, cyan, and black, and ink tanks of the four colors are arranged on these heads. The recording material 5 is intermittently fed by the printing width of the recording head 9, but when the recording material 5 is stopped, the recording head 9 is
The ink droplets are scanned in the print direction and eject ink droplets according to the image signal.

このようなインクジェット記録装置においては、被記録
材の特性が重要であり、特に、被記録材上でのインクの
にしみ特性か画質に大杜な影響を与える。
In such an inkjet recording apparatus, the characteristics of the recording material are important, and in particular, the characteristics of ink stains on the recording material have a major influence on image quality.

被記録材のインクにしみ特性を示す指標としては「にじ
み率」というものが知られている。これは、インクシェ
ラ1−ノズルから吐出されたインク滴の径か被記録材上
で何倍に広がるかを示したもので、 にじみ率−被記録材上てのドツト径/吐出インクン商径 て与えられる。例えば、飛翔中のインク滴径か30μm
で、被記録材上で90μmのドツトか形成さゎたとずれ
は、その被記録材のにしみ率は3oとなる。
A ``bleeding rate'' is known as an index indicating the characteristic of ink staining on a recording material. This shows how many times the diameter of the ink droplet ejected from the nozzle spreads on the recording material, and it is calculated as: Ink sheller 1 - Dot diameter on the recording material / Commercial diameter of the ejected ink droplet Given. For example, the diameter of ink droplets in flight is 30 μm.
Therefore, if a dot is formed on the recording material with a deviation of 90 μm, the stain rate of the recording material will be 3o.

にじみ率の大きい被記録月ては画像濃度が高くなり、に
じみ率の小さい被記録オΔでは画像濃度か低くなるのて
、画像変動を小さくするためには被記録材のにしみ率の
変動を十分小とする必要かある。
The image density will be high when the recording material has a large bleeding rate, and the image density will be low when the recording material has a small bleeding rate.In order to reduce image fluctuations, it is necessary to reduce the fluctuations in the bleeding rate of the recording material. Does it need to be small enough?

[発明か解決しようとする課題] しかしなから、被記録材の特性、特ににしみ率は、被記
録材製造時の環境条件や材料の微妙な変化によって変動
し、常に一定のにしみ率の被記録材を製造するのは困難
である。
[Problem to be solved by the invention] However, the characteristics of the recording material, especially the stain rate, vary depending on the environmental conditions and subtle changes in the material during the production of the recording material, and it is difficult to maintain a constant stain rate. Recording materials are difficult to manufacture.

にじみ率か変動すると、画像濃度かそれに応して変動す
るという問題があるほか、第3図て示したようなシリア
ルスキャン型のインクシェツト記録装置では次のような
問題か生じていた。
In addition to the problem that when the bleeding rate fluctuates, the image density also fluctuates accordingly, the following problems also occur in the serial scan type ink sheet recording apparatus as shown in FIG.

第3図のようなシリアルスキャン型のインクジェット記
録装置では、第4図に示すように、複数のノズルを並列
させたマルチノズルヘッド9を入方向に走査して、幅d
だけの画像記録を同図(1)(2) 、 (3)の順に
縁り返してゆく。幅dは、ヘラ)へのノズル数と記録密
度とによって決定され、ノズル数256.記録密度40
0I−ツ1−/インチ(dpi)の場合は、 256x
 25.4/400= 15.2’56mmとなる。
In the serial scan type inkjet recording apparatus as shown in FIG. 3, as shown in FIG.
The image records of only 1,000 yen are turned around in the order of (1), (2), and (3) in the same figure. The width d is determined by the number of nozzles on the spatula and the recording density, and the number of nozzles is 256. Recording density 40
For 0I-2/inch (dpi), 256x
25.4/400 = 15.2'56mm.

単色て記録を行う場合等のように、記録されるインク量
か少ない場合は、被記録材のインク吸収か十分であるの
で、記録された画像の幅は記録幅dとほぼ等しい。この
ため、記録ヘッドをdだけB方向に走査した後に入方向
に記録を行えは、第4図(八)に示すように各記録走査
毎のつなぎ目は画像上問題にならない。
When the amount of ink to be recorded is small, such as when recording in a single color, the ink absorption of the recording material is sufficient, so the width of the recorded image is approximately equal to the recording width d. Therefore, if the recording head is scanned by d in the B direction and then recorded in the incoming direction, the seams between each recording scan do not pose a problem on the image, as shown in FIG. 4 (8).

しかしながら、高濃度部の画像記録を行う場合、被記録
材の特性によってはインクを十分吸収しきれなくなり、
インクは横力向ににしみ、記録された画像幅はd十△d
となる。このとき、記録ヘッドのB方向への走査幅がd
であるとすると、△dの幅で画像が重なり、第4図(B
) に示すように、この部分に具スジが生じる。逆に、
B方向への走査幅をd十Δdにしておくと、低a度部で
は白スジか現われることになる。
However, when recording images in high density areas, depending on the characteristics of the recording material, it may not be able to absorb enough ink.
The ink smudges in the direction of lateral force, and the recorded image width is d + △d
becomes. At this time, the scanning width of the recording head in the B direction is d
If , the images overlap with a width of △d, and the image shown in Fig. 4 (B
) As shown in (), there will be streaks in this area. vice versa,
If the scanning width in the B direction is set to d+Δd, white stripes will appear in the low a degree portion.

高濃度部での画像幅の広がり量Δdは被記録材の特性に
よって異なり、特ににしみ率が太きいど△dか大きく、
にしみ率か小さいと△dか小さくなることか木発明者ら
の実験により確認されている。従って、黒スジや白スジ
の発生を防止するためには、にじみ率を小さくする必要
かあるか、にじみ率を小さくしすぎると画像濃度が低く
なりずきる等の問題が生しるので、にじみ率に下限と上
限とを設り、一定の範囲に入るものを使用するのか強く
望ましい。
The amount of image width expansion Δd in a high-density area varies depending on the characteristics of the recording material.
It has been confirmed through experiments by wood inventors that when the stain rate is small, Δd is also small. Therefore, in order to prevent the occurrence of black and white stripes, is it necessary to reduce the bleeding rate? It is highly desirable to set a lower limit and an upper limit for the rate and use one that falls within a certain range.

しかしながら、前述したように被記録材の特性を一定の
範囲に管理して製造するのは困難であり、このためにに
しみ率の大きい被記録材を使用せざるを得なくなる場合
が生じ、この場合には高濃度部に黒スジが発生してしま
うことになる。また、このような問題は感熱記録装置に
おいて生じつる。
However, as mentioned above, it is difficult to manufacture the recording material while controlling its characteristics within a certain range, and this sometimes necessitates the use of recording materials with a high stain rate. In this case, black streaks will occur in high-density areas. Further, such problems occur in thermal recording devices.

本発明は、かかる問題点を解決し、にじみ率に代表され
るような吸収性の異なる被記録材に対しても記録画像品
位の劣化することのない画像記録装置を提供することを
目的とする。
SUMMARY OF THE INVENTION An object of the present invention is to solve such problems and provide an image recording apparatus that does not cause deterioration in recorded image quality even when recording materials have different absorbencies, as typified by bleeding rate. .

[課題を解決するだめの手段] そのために、本発明は、被記録材に対して記録を行う記
録ヘッドと、記録ヘラI−と被記録材とを相対的に副走
査させる走査手段とを具えた画像記録装置において、被
記録材のにしみ特性を検知する検知手段と、当該検知内
容に応し副走査の量を調整する調整手段とを具えたこと
を特徴とする。
[Means for Solving the Problems] For this purpose, the present invention includes a recording head that performs recording on a recording material, and a scanning device that causes the recording spatula I- and the recording material to perform sub-scanning relative to each other. An image recording apparatus according to the present invention is characterized in that it includes a detection means for detecting a stain characteristic of a recording material, and an adjustment means for adjusting the amount of sub-scanning in accordance with the detected content.

[作 用1 本発明によれば、被記録材のにしみ率に応して被記録材
の副走査量(搬送量)か調整されるので、用いる被記録
材によらす画像品位か安定する。特に、シリアルプリン
タ形態の装置にあっては、里スジや白スジの発生が防止
される。
[Function 1] According to the present invention, since the sub-scanning amount (conveyance amount) of the recording material is adjusted according to the stain rate of the recording material, the image quality is stabilized depending on the recording material used. . Particularly in the case of a serial printer type device, generation of white lines and white lines can be prevented.

[実施例] 以下、図面を参照して本発明の詳細な説明する。[Example] Hereinafter, the present invention will be described in detail with reference to the drawings.

第1図は本発明の一実施例に係る制御装置の一構成例を
示し、第3図示の装置に適用可能なものである。
FIG. 1 shows an example of the configuration of a control device according to an embodiment of the present invention, which is applicable to the device shown in FIG.

ここで、11は、例えは被記録月ごとに予めマキングさ
れた被記録材のにしみ率データを読み取るなどのにしみ
車検知手段である。12はにしみ率検出手段11の出力
信号を変換増幅する変換増幅器、13は、変換増幅器2
て増幅されたアナログ信号をディジタル信号に変換する
A/D変換器である。15は被記録材5を第3図中方向
に搬送するための副走査モータであり、例えばパルスモ
ータの形態とすることができる。15は副走査モータ1
5を駆動する副走査モータ駆動回路である。
Here, 11 is a stain wheel detection means, for example, which reads stain rate data of the recording material that has been masked in advance for each recording month. 12 is a conversion amplifier that converts and amplifies the output signal of the stain rate detection means 11; 13 is a conversion amplifier 2;
This is an A/D converter that converts the amplified analog signal into a digital signal. Reference numeral 15 denotes a sub-scanning motor for conveying the recording material 5 in the direction shown in FIG. 3, and can be in the form of a pulse motor, for example. 15 is sub-scanning motor 1
This is a sub-scanning motor drive circuit that drives the sub-scanning motor 5.

14は用いる被記録材5に付されたマークを読み取った
にしみ率検出手段11の信号からその被記録材5の副走
査方向の搬送量、すなわちモータ15の駆動量(パルス
モータにあっては駆動パルス数)を決一定し、副走査モ
ータ5を制御する制御装置である。この制御装置14は
、第2図につき後述する処理手順を実行するCPU、お
よびその処理手順に対応したプログラムやにじみ率と搬
送量との対応を示すテーブル等、固定のデータを格納し
たROM等を有するマイクロコンピュータの形態とする
ことかできる。
Reference numeral 14 indicates the conveyance amount of the recording material 5 in the sub-scanning direction, that is, the drive amount of the motor 15 (in the case of a pulse motor, This is a control device that determines and keeps the number of drive pulses constant and controls the sub-scanning motor 5. This control device 14 includes a CPU that executes a processing procedure that will be described later with reference to FIG. It can be in the form of a microcomputer with a

すなわち、第1図において、にじみ率検出手段11の出
力信号は変換増幅器12おにひA/D変換器13を介し
て被記録材のにしみ率データとして制御装置面14に取
り込まれる。そして、にじみ率データからそのデータに
対応する副走査送りパルス数か決定され、そのデータに
基ついて副走査モータ駆動回路16へ信号を送り、副走
査モータ5を制御装置14で決定した送りパルス数たり
駆動させる。
That is, in FIG. 1, the output signal of the bleed rate detection means 11 is taken into the control device 14 via the conversion amplifier 12 and the A/D converter 13 as the bleed rate data of the recording material. Then, the number of sub-scanning feed pulses corresponding to the data is determined from the bleed rate data, and a signal is sent to the sub-scanning motor drive circuit 16 based on the data, and the sub-scanning motor 5 is controlled by the number of feed pulses determined by the control device 14. or drive.

なお、以下では例えばにじみ率か標準よりも大きいとき
はパルス数を増して副走査送り量を増加させ、にじみ率
か小さいときは、その逆を行うものとする。
In the following, it is assumed that, for example, when the blur rate is larger than the standard, the number of pulses is increased to increase the sub-scanning feed amount, and when the blur rate is small, the opposite is done.

第2図は本実施例に係る制御手順の一例を示ます、装置
電源オンの状態で、ステップS2で被記録材のにしみ率
を検知する。次に、ステップS3において、当該検知し
た7皮記録羽のにしみ率に基ついてROMに設りたテー
ブルを参照し、副走査送りパルス数を決定する。この副
走査送りパルス数決定後、ステップS4で1ラインの主
走査により記録幅dの画像記録印字を行う。
FIG. 2 shows an example of the control procedure according to the present embodiment. With the apparatus power on, the stain rate of the recording material is detected in step S2. Next, in step S3, the number of sub-scanning feed pulses is determined by referring to a table provided in the ROM based on the smudge rate of the detected seven skin recording feathers. After determining the number of sub-scanning feed pulses, in step S4, image recording printing with a recording width d is performed by one line of main scanning.

次にステップS5で副走査モータ15を駆動させ、ステ
ップS6で決定した副走査パルス数たり副走査モータ1
5が駆動されたかを判断する。そして、決定した副走査
送りパルス数に対応した搬送がなされた時点て、ステッ
プS7で副走査モータ15を停止する。一方、決定した
副走査送りパルス数に対応した搬送かなされていないと
きは、ステップS5に復帰して同様の処理を繰り返す。
Next, in step S5, the sub-scanning motor 15 is driven, and the sub-scanning motor 1 is driven by the number of sub-scanning pulses determined in step S6.
5 is driven. Then, when the conveyance corresponding to the determined number of sub-scanning feed pulses is completed, the sub-scanning motor 15 is stopped in step S7. On the other hand, if the conveyance corresponding to the determined number of sub-scanning feed pulses has not been carried out, the process returns to step S5 and the same process is repeated.

以降、同様な画像記録を行ない、ステップS8て必要回
数記録したかどうか判断する。そして、必要回数の画像
記録か終了していれはそこで記録を終了し、また必要回
数の画像記録が終了していなけれはステップS4に復帰
して同様の処理を繰り返す。
Thereafter, similar image recording is performed, and in step S8 it is determined whether recording has been performed the necessary number of times. Then, if the required number of image recordings have been completed, the recording is ended there, and if the required number of image recordings have not been completed, the process returns to step S4 and the same process is repeated.

前述の制御動作を行うことにより、にじみ率の異なった
被記録材を使用して記録を行った場合、それぞれのにし
み率に適合した副走査を行なうことて高7Q度部の異ス
ジの発生や、低濃度部の白スジの発生等を抑制すること
ができた。
By performing the above-mentioned control operation, when printing is performed using recording materials with different bleeding rates, the occurrence of different streaks in the high 7Q degree area can be prevented by performing sub-scanning that matches the respective bleeding rates. It was also possible to suppress the occurrence of white streaks in low-density areas.

なお、上側では、被記録材5の特性に係る情報を装置に
設定するために、例えはその材質、製造時の75境条件
その他にしみ率が関与するデータが既知であるとし、被
記録材5に付されたマークを読取るようにしたか、その
ようなデータはいかなるものであってもよく、適宜の入
力手段により制御回路14に設定することかできる。
In addition, in the upper part, in order to set information related to the characteristics of the recording material 5 in the apparatus, it is assumed that the material, 75 environmental conditions at the time of manufacturing, and other data related to the stain rate are already known, and the recording material 5 is However, such data may be of any kind and can be set in the control circuit 14 by an appropriate input means.

また、制御回路14は、これらデータに使用環境条件を
加味して最適の搬送量を定めるようにすることもてきる
Further, the control circuit 14 can determine the optimum conveyance amount by taking into account the environmental conditions of use to these data.

さらに、にじみ率を装置において評価するようにしても
よい。すなわち、にじみ率検知手段を、例えは、既に記
録かなされた被記録材5に対向する部位、すなわち記録
ヘッド5の下流側に配置された光センサを含む構成とし
、テスト記録後に記録1〜ツト径を検出してにしみ率を
求めるようにすることもてきる。
Furthermore, the bleeding rate may be evaluated in the apparatus. That is, the bleed rate detection means is configured to include an optical sensor disposed at a portion facing the recorded material 5 on which recording has already been performed, that is, on the downstream side of the recording head 5, and after test recording, It is also possible to detect the diameter and determine the stain rate.

加えて、実施例においては、被記録材に対して記録ヘッ
ドを走査しつつ記録を行うシリアルスキャン型のインク
ジェット記録装置に本発明を適用した場合について述へ
たか、本発明は被記録制の全幅に吐出口を整列させたラ
インプリンタ形態のインクジェット記録装置にも適用で
きるのは勿論である。そのような装置に本発明を適用し
た場合、「白スジ」や「黒スジ」の発生に係る問題より
も、むしろ被記録材毎に均一な画像を得る上で効果が得
られた。
In addition, in the embodiments, a case has been described in which the present invention is applied to a serial scan type inkjet recording apparatus that performs recording while scanning a recording head with respect to a recording material. Of course, the present invention can also be applied to an inkjet recording apparatus in the form of a line printer in which the ejection ports are aligned. When the present invention was applied to such an apparatus, the effect was obtained in obtaining a uniform image for each recording material rather than solving problems related to the occurrence of "white stripes" and "black stripes."

また、本発明は、インクジェット記録装置にのみ限定さ
れるものではなく、感熱転写記録など、にじみが生じつ
る記録装置に対してJ’f1めて有効か・つ容易に適用
できるのはいうまてもない。
It goes without saying that the present invention is not limited only to inkjet recording apparatuses, but can be applied effectively and easily to recording apparatuses where bleeding occurs, such as thermal transfer recording. do not have.

[発明の効果] 以上説明したように、本発明によれは、被記録材のにし
み率に応して被記録材が適切に副走査方向に搬送される
ように搬送量を制御する手段を設りたことにより、にじ
み率の微妙に異なる被記録材に対しても画像記録の高濃
度部頭載でのスジの発生や、記録画像濃度の変動等を防
止でき、苓に高品位な画像記録を行うことが可能となっ
た。
[Effects of the Invention] As explained above, the present invention provides means for controlling the conveyance amount so that the recording material is appropriately conveyed in the sub-scanning direction in accordance with the stain rate of the recording material. By installing this, it is possible to prevent the occurrence of streaks and fluctuations in the density of recorded images even when recording materials with slightly different bleeding rates when recording images in high-density areas, resulting in extremely high-quality images. It is now possible to record.

3・・・給送ローラ、 5・・・被記録材、 6.7・・・ガイトレール、 8・・・キャリッジ、 9・・・記録ヘッド、 11・・・にじみ率検知手段、 14・・・制御装置、 15・・・副走査モータ、 16・・・副走査モータ駆動回路。3...Feeding roller, 5...Recorded material, 6.7...Guytrail, 8... Carriage, 9...recording head, 11... Bleeding rate detection means, 14...control device, 15... Sub-scanning motor, 16... Sub-scanning motor drive circuit.

層側に、係る制御系の一構成例を示すブロック図、第2
図はその制御手順の一例を示すフローヂャト 第3図は本発明を適用可能なインクジェット記録装置の
概略構成例を示す斜視図、 第4図(八)およびCB) は黒スジ発生のメカニズム
を説明するための説明図である。
On the layer side, a block diagram showing an example of the configuration of such a control system, a second
FIG. 3 is a perspective view showing a schematic configuration example of an inkjet recording apparatus to which the present invention can be applied. FIG. 4 (8) and CB) explain the mechanism of black streak occurrence. FIG.

1.2・・搬送ローラ、 第 ! 図 第2 図 第 図1.2...conveyance roller, No. ! figure Second figure No. figure

Claims (1)

【特許請求の範囲】[Claims] 1)被記録材に対して記録を行う記録ヘッドと、該記録
ヘッドと前記被記録材とを相対的に副走査させる走査手
段とを具えた画像記録装置において、前記被記録材のに
じみ特性を検知する検知手段と、当該検知内容に応じ前
記副走査の量を調整する調整手段とを具えたことを特徴
とする画像記録装置。
1) In an image recording apparatus equipped with a recording head that performs recording on a recording material, and a scanning means that performs sub-scanning of the recording head and the recording material relative to each other, the bleeding characteristics of the recording material are determined. An image recording apparatus comprising: a detection means for detecting; and an adjustment means for adjusting the amount of sub-scanning according to the detected content.
JP14822888A 1988-06-17 1988-06-17 Recording apparatus of image Pending JPH023317A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP14822888A JPH023317A (en) 1988-06-17 1988-06-17 Recording apparatus of image

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP14822888A JPH023317A (en) 1988-06-17 1988-06-17 Recording apparatus of image

Publications (1)

Publication Number Publication Date
JPH023317A true JPH023317A (en) 1990-01-08

Family

ID=15448143

Family Applications (1)

Application Number Title Priority Date Filing Date
JP14822888A Pending JPH023317A (en) 1988-06-17 1988-06-17 Recording apparatus of image

Country Status (1)

Country Link
JP (1) JPH023317A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2012254574A (en) * 2011-06-09 2012-12-27 Canon Inc Data generation apparatus, data generation method, and program
US20230417168A1 (en) * 2022-06-23 2023-12-28 Paccar Inc Pulse turbo charging exhaust system

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2012254574A (en) * 2011-06-09 2012-12-27 Canon Inc Data generation apparatus, data generation method, and program
US20230417168A1 (en) * 2022-06-23 2023-12-28 Paccar Inc Pulse turbo charging exhaust system

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