JPH02192975A - Automatic interprinted character clearance adjusting mechanism - Google Patents

Automatic interprinted character clearance adjusting mechanism

Info

Publication number
JPH02192975A
JPH02192975A JP1150489A JP1150489A JPH02192975A JP H02192975 A JPH02192975 A JP H02192975A JP 1150489 A JP1150489 A JP 1150489A JP 1150489 A JP1150489 A JP 1150489A JP H02192975 A JPH02192975 A JP H02192975A
Authority
JP
Japan
Prior art keywords
temperature
round shaft
temperature detector
carrier unit
printing
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
JP1150489A
Other languages
Japanese (ja)
Inventor
Hiroyuki Hashimoto
博之 橋本
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.)
NEC Corp
Original Assignee
NEC 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
Application filed by NEC Corp filed Critical NEC Corp
Priority to JP1150489A priority Critical patent/JPH02192975A/en
Publication of JPH02192975A publication Critical patent/JPH02192975A/en
Pending legal-status Critical Current

Links

Abstract

PURPOSE:To use conditions for driving a stepping motor as profile data adjusted to temperature and allow the displacement of a carrier unit to be set to a constant value by providing a temperature detector which detects the internal temperatures of a device, and a control section which selects specific profiles for determining a clearance between printed characters from among those profiles based on an output from the temperature detector. CONSTITUTION:This mechanism has a temperature detector 11 installed inside a device (e.g. a thermister) and a control section 12 which controls the drive of a stepping motor 10 based on a detected temperature. An eccentric round shaft 7 rotates due to a spring 9, and a process in which a carrier unit 3 comes in contact with printing paper 1 is the same as that of a conventional mechanism. Next, the number of steps by which the printing paper 1 is returned to a printing position is set as required and the printing position is controlled so that it can be adjusted in accordance with circumstances. The (c) to (d1) in the figure is generally set so that it becomes a low value at low temperature and a high value at high temperature.

Description

【発明の詳細な説明】 [産業上の利用分野] 本発明は自動印字間隙調整機構に関し、特にドツトマト
リックスプリンタの自動印字間隙調整機構に関する。
DETAILED DESCRIPTION OF THE INVENTION [Field of Industrial Application] The present invention relates to an automatic printing gap adjustment mechanism, and more particularly to an automatic printing gap adjustment mechanism for a dot matrix printer.

[従来の技術] 従来のこの種の自動印字間隙調整機構について、第3図
及び第4図にて説明する。第3図は構成概略平面図であ
り、第4図は動作概要を示すグラフである。
[Prior Art] A conventional automatic printing gap adjustment mechanism of this type will be explained with reference to FIGS. 3 and 4. FIG. 3 is a schematic plan view of the configuration, and FIG. 4 is a graph showing an outline of the operation.

第3図より印字へラド6と用紙検出部材5を搭載したキ
ャリアユニット3には1本の丸シャフト4と偏心構造に
支持された偏心丸シャフト7が通されている。この偏心
丸シャフト7の回転により丸シャフト4を中心にキャリ
アユニット3が回転運動をし、印字へラド6と印字用紙
1との間隙を広くしたり狭くしたり制御する。
As shown in FIG. 3, one round shaft 4 and an eccentric round shaft 7 supported by an eccentric structure are passed through the carrier unit 3 on which the printing pad 6 and the paper detecting member 5 are mounted. The rotation of the eccentric round shaft 7 causes the carrier unit 3 to rotate around the round shaft 4, thereby widening or narrowing the gap between the printing pad 6 and the printing paper 1.

印字用紙1はプラテン2に巻かれ配されている。偏心丸
シャフト7には歯車減速機構8とさらにステップモータ
10が直結される。さらに偏心丸シャフト7にはスプリ
ング9が取付けられ前記丸シャフト7に常に一方向の回
転力を与える。
Print paper 1 is wound around a platen 2. A gear reduction mechanism 8 and a step motor 10 are directly connected to the eccentric round shaft 7. Furthermore, a spring 9 is attached to the eccentric round shaft 7 to always apply rotational force to the round shaft 7 in one direction.

次に動作概要を示す。The following is an overview of the operation.

印字へラド7は図示していない制御部によって印字ヘッ
ド退避位fiaに戻される。この時ステップモータ10
はホールド保持されるが、用紙検出命令を受けるとステ
ップモータ10のホールドが切られスプリング9の力に
よりキャリアユニットが用紙検出部材4が印字用紙1に
接触するまで移動する(第4図中a−b間)。
The print head 7 is returned to the print head retracted position fia by a control section (not shown). At this time, the step motor 10
However, when a paper detection command is received, the hold of the step motor 10 is broken and the carrier unit moves by the force of the spring 9 until the paper detection member 4 comes into contact with the printing paper 1 (a- in FIG. 4). b).

次にステップモータ10が定められたステップ数だけ今
度はスプリングによる回転方向と逆方向に駆動されホー
ルド保持される(第4図中c−d)、これが印字位置と
なる。
Next, the step motor 10 is driven by a predetermined number of steps in the direction opposite to the direction of rotation by the spring and held (c-d in FIG. 4), which becomes the printing position.

[発明が解決しようとする課題] 上述した従来の自動印字間隙調整機構にあっては、機構
部材、特にベアリング、ブツシュが温度による影響を受
けやすい0例えばベアリングのブリース、ブツシュとシ
ャフトの摩擦係数が低温では負荷を大きくする方向に、
また高温では逆に小さく作用し、偏心丸シャフト7の回
転力に温度差を作っていた。これにより用紙検出部材4
の押付力が変化し、用紙接触位置がバラつき、合せて印
字位置にパラつきが生ずるという欠点を有していた。
[Problems to be Solved by the Invention] In the above-mentioned conventional automatic printing gap adjustment mechanism, mechanical members, especially bearings and bushings, are easily affected by temperature. In the direction of increasing the load at low temperatures,
Moreover, at high temperatures, the effect is small, creating a temperature difference in the rotational force of the eccentric round shaft 7. As a result, the paper detection member 4
This has the disadvantage that the pressing force changes, the paper contact position varies, and the printing position also varies.

[課題を解決するための手段] 本発明は、上記課題を解決するためになしたもので、そ
の解決手段として本発明は、ドツトマトリックスプリン
タの印字ヘッド及び用紙検出部材を搭載したキャリアユ
ニットと、各々上記キャリアユニットに通されたプラテ
ン側の1本の丸シャフト及びプラテンと遠い位置で偏心
構造に支持された偏心丸シャフトと、該偏心丸シャフト
に連結したステップモータと、上記ステップモータの駆
動を制御する制御部とを備える自動印字間隙調整機構に
おいて、装首内部の温度を検出する温度検出器と、印字
間隙を決める複数のプロフィールと、上記温度検出器の
出力により特定の上記プロフィールを選択する制御部を
備える構成としている。
[Means for Solving the Problems] The present invention was made to solve the above problems, and as a means for solving the problems, the present invention provides a carrier unit equipped with a print head and a paper detection member of a dot matrix printer, A round shaft on the platen side that is passed through the carrier unit, an eccentric round shaft supported by an eccentric structure at a position far from the platen, a step motor connected to the eccentric round shaft, and a step motor that drives the step motor. In the automatic printing gap adjustment mechanism, the automatic printing gap adjustment mechanism includes a temperature detector that detects the temperature inside the neck mounting, a plurality of profiles that determine the printing gap, and a specific profile that is selected based on the output of the temperature sensor. The configuration includes a control section.

[実施例] 次に、本発明の実施例について図面を参照して説明する
[Example] Next, an example of the present invention will be described with reference to the drawings.

第1図は本発明の一実施例を示す概略平面図、第2図は
その動作概要を示すグラフである。
FIG. 1 is a schematic plan view showing an embodiment of the present invention, and FIG. 2 is a graph showing an outline of its operation.

図中1は印字用紙、2はプラテン、3はキャリアユニッ
ト、4は丸シャフト、5は用紙検出部材、6は印字ヘッ
ド、7は偏心丸シャフト、8は歯車減速機構、9はスプ
リングで、これらの構成は従来と同様につき説明を省略
する。
In the figure, 1 is a printing paper, 2 is a platen, 3 is a carrier unit, 4 is a round shaft, 5 is a paper detection member, 6 is a print head, 7 is an eccentric round shaft, 8 is a gear reduction mechanism, and 9 is a spring. The configuration is the same as the conventional one, so the explanation will be omitted.

また、第1図の11は装置内に取付けられた温度検出器
(例えばサーミスタ)、12は検出された温度によりス
テップモータ10の駆動を制御する制御部を示す。
Further, 11 in FIG. 1 indicates a temperature detector (for example, a thermistor) installed in the apparatus, and 12 indicates a control section that controls the drive of the step motor 10 based on the detected temperature.

次に、動作について第2図にて説明する。Next, the operation will be explained with reference to FIG.

スプリング9によって偏心丸シャフト7が回転し、キャ
リアユニット3が印字用紙1に接触する(第2図中a−
b間)過程は従来と同じである。
The eccentric round shaft 7 is rotated by the spring 9, and the carrier unit 3 comes into contact with the printing paper 1 (a- in FIG. 2).
b) The process is the same as before.

次に印字用紙lより印字位置へ戻すステップ数が温度設
定によって数段階に設定され印字位置を状況に合せて調
整できる(第2図中c−d+d3)よう制御される。一
般に低温時は第2図中Cレベルが小さく(第2図中Cレ
ベル)高温時は大きく(第2図中Cレベル)に設定され
る。
Next, the number of steps for returning the printing paper l to the printing position is set in several stages depending on the temperature setting, and is controlled so that the printing position can be adjusted according to the situation (c-d+d3 in FIG. 2). Generally, the C level in FIG. 2 is set small (C level in FIG. 2) when the temperature is low, and large (C level in FIG. 2) when the temperature is high.

[発明の効果] 以上説明したように本発明の自動印字間隙調整機構は、
次のような効果がある。
[Effects of the Invention] As explained above, the automatic printing gap adjustment mechanism of the present invention has the following effects:
It has the following effects.

経験的に低温時はメカ部の負荷が大きいため、偏心丸シ
ャフトの回転力が小さく、印字用紙押付時のメカのガタ
、撓み等の影響が小さいため0〜6間のステップモータ
の駆動に対してロスがなく大きくキャリアユニットを移
動できる。逆に高温時は回転力が大きくなり、ロスも増
えキャリアユニットの移動が小さくなる。この現象を温
度検出によりステップモータの駆動条件を温度に合せた
プロフィールとすることにより、上記のキャリアユニッ
トの移動を一定の値に設定することが可能となる。
Experience has shown that when the temperature is low, the load on the mechanical part is large, so the rotational force of the eccentric round shaft is small, and the influence of mechanical play and deflection when pressing printing paper is small, so it is suitable for driving a step motor between 0 and 6. Carrier units can be moved significantly without loss. Conversely, when the temperature is high, the rotational force increases, loss increases, and the movement of the carrier unit decreases. By detecting this phenomenon and setting the drive conditions of the step motor to a profile that matches the temperature, it becomes possible to set the movement of the carrier unit to a constant value.

これにより、より高い信頼性を有した自動印字間隙調整
機構が実現できる効果がある。
This has the effect of realizing an automatic printing gap adjustment mechanism with higher reliability.

【図面の簡単な説明】[Brief explanation of the drawing]

第1図は本発明の一実施例に係る自動印字間隙調整機構
の概略平面図、第2図は本実施例の動作概要を示すグラ
フ、第3図は従来の自動印字間隙調整機構の概略平面図
、第4図は従来例の動作概要を示すグラフである。 l:印字用紙 2ニブラテン 3:キャリアユニット 4:丸シャフト 5:用紙検出部材 6:印字ヘッド 7:偏心丸シャフ 11:温度検出器 12:制御部 ト
Fig. 1 is a schematic plan view of an automatic printing gap adjustment mechanism according to an embodiment of the present invention, Fig. 2 is a graph showing an outline of the operation of this embodiment, and Fig. 3 is a schematic plan view of a conventional automatic printing gap adjustment mechanism. 4 are graphs showing an outline of the operation of the conventional example. l: Printing paper 2 nib laten 3: Carrier unit 4: Round shaft 5: Paper detection member 6: Print head 7: Eccentric round shaft 11: Temperature detector 12: Control unit

Claims (1)

【特許請求の範囲】[Claims] ドットマトリックスプリンタの印字ヘッド及び用紙検出
部材を搭載したキャリアユニットと、各々上記キャリア
ユニットに通されたプラテン側の1本の丸シャフト及び
プラテンと遠い位置で偏心構造に支持された偏心丸シャ
フトと、該偏心丸シャフトに連結したステップモータと
、上記ステップモータの駆動を制御する制御部とを備え
る自動印字間隙調整機構において、装置内部の温度を検
出する温度検出器と、印字間隙を決める複数のプロフィ
ールと、上記温度検出器の出力により特定の上記プロフ
ィールを選択する制御部を備えることを特徴とする自動
印字間隙調整機構。
a carrier unit equipped with a print head and a paper detection member of a dot matrix printer, one round shaft on the platen side that is passed through each of the carrier units, and an eccentric round shaft supported by an eccentric structure at a position far from the platen; An automatic printing gap adjustment mechanism that includes a step motor connected to the eccentric round shaft and a control unit that controls driving of the step motor, a temperature detector that detects the temperature inside the device, and a plurality of profiles that determine the printing gap. and a control section that selects the specific profile based on the output of the temperature detector.
JP1150489A 1989-01-20 1989-01-20 Automatic interprinted character clearance adjusting mechanism Pending JPH02192975A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP1150489A JPH02192975A (en) 1989-01-20 1989-01-20 Automatic interprinted character clearance adjusting mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP1150489A JPH02192975A (en) 1989-01-20 1989-01-20 Automatic interprinted character clearance adjusting mechanism

Publications (1)

Publication Number Publication Date
JPH02192975A true JPH02192975A (en) 1990-07-30

Family

ID=11779852

Family Applications (1)

Application Number Title Priority Date Filing Date
JP1150489A Pending JPH02192975A (en) 1989-01-20 1989-01-20 Automatic interprinted character clearance adjusting mechanism

Country Status (1)

Country Link
JP (1) JPH02192975A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0343279A (en) * 1989-07-12 1991-02-25 Fujitsu Ltd Printing head gap setting mechanism
JPH04176679A (en) * 1990-11-13 1992-06-24 Nec Niigata Ltd Paper interval adjusting mechanism of printer

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS60234872A (en) * 1984-05-09 1985-11-21 Brother Ind Ltd Paper thickness detector for printer
JPS6121912B2 (en) * 1982-05-13 1986-05-29 Auto Stamp Kenkyusho Kk
JPS62212180A (en) * 1986-03-14 1987-09-18 Nec Corp Printer
JPS63212556A (en) * 1987-02-28 1988-09-05 Brother Ind Ltd Impact type dot printer

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6121912B2 (en) * 1982-05-13 1986-05-29 Auto Stamp Kenkyusho Kk
JPS60234872A (en) * 1984-05-09 1985-11-21 Brother Ind Ltd Paper thickness detector for printer
JPS62212180A (en) * 1986-03-14 1987-09-18 Nec Corp Printer
JPS63212556A (en) * 1987-02-28 1988-09-05 Brother Ind Ltd Impact type dot printer

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0343279A (en) * 1989-07-12 1991-02-25 Fujitsu Ltd Printing head gap setting mechanism
JPH04176679A (en) * 1990-11-13 1992-06-24 Nec Niigata Ltd Paper interval adjusting mechanism of printer

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