JPH01241463A - Thermal head drive circuit - Google Patents
Thermal head drive circuitInfo
- Publication number
- JPH01241463A JPH01241463A JP63070242A JP7024288A JPH01241463A JP H01241463 A JPH01241463 A JP H01241463A JP 63070242 A JP63070242 A JP 63070242A JP 7024288 A JP7024288 A JP 7024288A JP H01241463 A JPH01241463 A JP H01241463A
- Authority
- JP
- Japan
- Prior art keywords
- shift register
- printing
- dot
- pulse width
- thermal head
- 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
Links
- 238000007639 printing Methods 0.000 claims abstract description 27
- 238000010438 heat treatment Methods 0.000 claims description 32
- 238000007651 thermal printing Methods 0.000 claims description 5
- 230000000717 retained effect Effects 0.000 claims description 2
- 239000011159 matrix material Substances 0.000 abstract description 2
- 238000010586 diagram Methods 0.000 description 3
- 230000007274 generation of a signal involved in cell-cell signaling Effects 0.000 description 3
- 230000020169 heat generation Effects 0.000 description 3
- 230000000694 effects Effects 0.000 description 2
- 238000006243 chemical reaction Methods 0.000 description 1
- 238000004040 coloring Methods 0.000 description 1
- 230000000052 comparative effect Effects 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 238000013021 overheating Methods 0.000 description 1
- 238000010792 warming Methods 0.000 description 1
- 238000003079 width control Methods 0.000 description 1
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B41—PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
- B41J—TYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
- B41J2/00—Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed
- B41J2/315—Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed characterised by selective application of heat to a heat sensitive printing or impression-transfer material
- B41J2/32—Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed characterised by selective application of heat to a heat sensitive printing or impression-transfer material using thermal heads
- B41J2/35—Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed characterised by selective application of heat to a heat sensitive printing or impression-transfer material using thermal heads providing current or voltage to the thermal head
- B41J2/355—Control circuits for heating-element selection
Landscapes
- Electronic Switches (AREA)
Abstract
Description
【発明の詳細な説明】
〔産業上の利用分野〕
本発明は熱印刷用の熱ヘッド駆動回路に関し、特に画像
印刷に適用して好ましいものである。DETAILED DESCRIPTION OF THE INVENTION [Industrial Field of Application] The present invention relates to a thermal head drive circuit for thermal printing, and is particularly suitable for application to image printing.
加熱印字情報を並列出力するシフトレジスタに、インバ
ータを含む直列循環路を設け、シフトレジスタの内容更
新直前に保持内容の反転情報を一定期間出力して、前の
印字ドツトが白のとき、後のドツトの加熱パルス幅を上
記一定期間だけ広げ、前の印字ドツトが黒のとき、後の
ドツトの加熱パルス幅を狭め、これにより印字濃度のむ
らを軽減した熱ヘッドの駆動回路である。A serial circulation path including an inverter is installed in the shift register that outputs heated printing information in parallel, and immediately before the contents of the shift register are updated, inverted information of the retained contents is output for a certain period of time. This thermal head drive circuit widens the heating pulse width of a dot by the above-mentioned fixed period, and narrows the heating pulse width of a subsequent dot when the previous printed dot is black, thereby reducing unevenness in print density.
加熱ドツトを有する熱ドツトで感熱紙又は熱転写インク
リボンを印字情報に基づいて加熱して印刷像を得るよう
にした熱印刷装置においては、ヘッドの熱的な慣性によ
り、印字濃度のむらが生じ易い。即ち、書き始めにおい
てはヘッドの温度上昇が不足しがちであり、これを補正
するために加熱電力を大きくすると、連続黒ドツトを印
字したときに温度が上昇し過ぎて次の無印字部分で尾引
き(不要発色)が生しる。In a thermal printing device that obtains a printed image by heating thermal paper or a thermal transfer ink ribbon based on printing information using a heating dot, uneven print density tends to occur due to the thermal inertia of the head. In other words, the temperature of the head tends to rise insufficiently at the beginning of writing, and if the heating power is increased to compensate for this, the temperature will rise too much when printing continuous black dots, and the temperature will rise too much in the next non-printed area. Pulling (unnecessary color development) occurs.
特公昭57−11784号公報には、連続する印字ドツ
トの先頭及び連続しない独立の印字ド・ノドの印字のと
きに幅広の加熱パルスをへ・ノドに印加し、連続する印
字ドツトの先頭以外のド・ノドの印字には、幅狭の保温
パルスを印加することが開示されている。Japanese Patent Publication No. 57-11784 discloses that a wide heating pulse is applied to the head and throat when printing at the beginning of continuous printing dots and when printing at non-continuous independent printing dots. It has been disclosed that a narrow warming pulse is applied for do-no-do printing.
前記公報に開示された熱ヘッド加熱回路においては、印
字ドツトの連続、独立及び連続ド・ノドの先頭を判定す
る判定回路を必要とし、回路構成が複雑であった。The thermal head heating circuit disclosed in the above-mentioned publication requires a determination circuit for determining whether printed dots are continuous, independent, or the beginning of a continuous dot, and the circuit configuration is complicated.
本発明は、筒車な回路構成で最適加熱制御ができる熱ヘ
ッド駆動回路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 provide a thermal head drive circuit that can perform optimal heating control with an hour wheel circuit configuration.
本発明の熱ヘッド駆動回路は、加熱印字情報を保持し且
つ直列シフトが可能なシフトレジスタ6と、このシフト
レジスタの直列出力を反転してその直列入力に帰還する
インバータ5とを具備する。The thermal head drive circuit of the present invention includes a shift register 6 that holds thermal printing information and is capable of serial shifting, and an inverter 5 that inverts the serial output of this shift register and feeds it back to its serial input.
上記シフトレジスタの一定周期ごとの内容更新により印
字加熱パルスを熱ヘッドに並列出力すると共に、上記更
新直前の所定期間において保持内容の反転情報を並列出
力するように、上記シフトレジスタのシフト制御及び反
転循環制御を行うことを特徴とする。Shift control and inversion of the shift register is performed so that print heating pulses are output in parallel to the thermal head by updating the contents of the shift register at regular intervals, and inversion information of the held contents is output in parallel during a predetermined period immediately before the update. It is characterized by performing circulation control.
シフトレジスタ6の保持情報が“白”のとき、次の加熱
パルスの前に所定期間の“黒“情報が付加されるので、
黒ドツトの独立点又は黒連続の先頭ドツトに対しては加
熱電力が強められる。またシフトレジスタ6の保持情報
が“黒”のとき、次の加、Qパルスは幅狭になるので黒
ドツトの連続に対しては印字に必要な温度を保持し得る
だけの最小限の加熱電力が与えられる。従って先頭黒ド
ツトの発色不足や黒ドツトが連続したときの過熱による
白部分の尾引きが生じないので、濃度むらのない均一な
印刷画像が得られる。When the information held in the shift register 6 is "white", "black" information for a predetermined period is added before the next heating pulse.
The heating power is increased for independent points of black dots or leading dots of continuous black dots. Furthermore, when the information held in the shift register 6 is "black", the width of the next addition and Q pulses is narrow, so for a series of black dots, the minimum heating power required to maintain the temperature required for printing is required. is given. Therefore, there is no lack of color development in the leading black dots or tailing of white parts due to overheating when black dots are continuous, so that a uniform printed image without density unevenness can be obtained.
第1図に本発明の一実施例の熱ヘッド駆動回路を示す。 FIG. 1 shows a thermal head drive circuit according to an embodiment of the present invention.
バッファメモリlには印字すべき画像情報が蓄えられて
いて、アドレス発生回路2からのアドレスにより1列6
4個分の印字情報(黒及び白)がメモリ1からシリアル
で読み出され、切換器4を介してシリアル−パラレル変
換用のシフトレジスタ6に転送される。シフトレジスタ
6の64個の並列出力はラッチ回路7を介しドライブ回
路8に与えられ、印字情報に応じてた加熱パルスがドラ
イブ回路8から並列64個の加熱抵抗素子9に印加され
る。熱ヘッドを構成する加熱抵抗素子9は、縦列配置さ
れ、列と直角方向に熱ヘッドを移動させることにより、
ドツトマトリックスによる画像印字が行われる。なおタ
イミング信号発生回路3が各種のクロック、ラッチパル
ス、ストローブパルス等を形成する。Image information to be printed is stored in the buffer memory l, and one column 6 is stored according to the address from the address generation circuit 2.
Four pieces of print information (black and white) are serially read out from the memory 1 and transferred via the switch 4 to the shift register 6 for serial-to-parallel conversion. The 64 parallel outputs of the shift register 6 are applied to the drive circuit 8 via the latch circuit 7, and heating pulses corresponding to print information are applied from the drive circuit 8 to the 64 heating resistance elements 9 in parallel. The heating resistance elements 9 constituting the thermal head are arranged in columns, and by moving the thermal head in a direction perpendicular to the columns,
Image printing is performed using a dot matrix. Note that the timing signal generation circuit 3 generates various clocks, latch pulses, strobe pulses, etc.
シフトレジスタ6のシリアル出力が、インバータ5を介
し、切換器4のb側接点を通り、シフトレジスタ6のシ
リアル入力に帰還される構成になっている。この構成に
より加熱パルス幅のコントロールを行っている。The serial output of the shift register 6 is configured to be fed back to the serial input of the shift register 6 via the inverter 5, through the b-side contact of the switch 4. This configuration controls the heating pulse width.
第2図は第1図の駆動回路の動作タイミングを示し、第
3図はヘッドの発生熱制御状態を示す。FIG. 2 shows the operation timing of the drive circuit shown in FIG. 1, and FIG. 3 shows the state of controlling the heat generated by the head.
第2図AのストローブパルスS1は1列分の基本印字周
期を示し、タイミング信号発生回路3からドライブ回路
8に供給される。第2図Cのスイッチコントロール信号
S4はストローブパルスS1の反転であり、“a” (
低レベル)で切換器4がa接点に、“b” (高レベル
)でb接点に接続される。A strobe pulse S1 in FIG. 2A indicates a basic printing cycle for one column, and is supplied from the timing signal generation circuit 3 to the drive circuit 8. The switch control signal S4 in FIG.
When "b" (high level), the switch 4 is connected to the a contact, and when "b" (high level), the switch 4 is connected to the b contact.
従って“a”区間ごとに、バッファメモリ1から印字情
報が切換器4を通り、シフトレジスタ6に転送され、そ
の並列出力がラッチ回路7、ドライブ回路8を介して加
熱抵抗素子9に与えられる。Therefore, in each interval "a", print information is transferred from the buffer memory 1 through the switch 4 to the shift register 6, and its parallel output is applied to the heating resistor element 9 via the latch circuit 7 and the drive circuit 8.
“a”区間の1列の印字が終了するごとに、“b”区間
で切換器4がb接点側に切換えられると共に、シフトレ
ジスタ6に64個のシフトクロックS5(第2図D)が
与えられて、シリアルシフトが行われる。そのシリアル
出力がインバータ5、切換器4を通りシリアル入力とし
てシフトレジスタ6に帰還されるので、シフトレジスタ
6には“a”区間の印字情報の反転信号が入れられる。Every time printing of one column in the "a" period is completed, the switch 4 is switched to the b contact side in the "b" period, and 64 shift clocks S5 (D in FIG. 2) are applied to the shift register 6. serial shift is performed. The serial output passes through the inverter 5 and the switch 4 and is fed back to the shift register 6 as a serial input, so that the shift register 6 receives an inverted signal of the print information in the "a" section.
シフトレジスタ6の1循環が終了すると、ストローブパ
ルスS1の前縁で第1ランチパルスS2がラッチ回路7
に供給されて、シフトレジスタ6の並列出力がランチ回
路7に取込まれる。このランチ回路7の出力は次の第2
ランチパルスS3が与えられるまで短時間ΔTだけ保持
されるので、前回の1列の印字で黒ドツトの所では白(
無加熱)、白ドツトの所では黒(加熱)となる。When one cycle of the shift register 6 is completed, the first launch pulse S2 is applied to the latch circuit 7 at the leading edge of the strobe pulse S1.
The parallel outputs of the shift register 6 are taken into the launch circuit 7. The output of this launch circuit 7 is
Since ΔT is held for a short time until the launch pulse S3 is applied, the black dots in the previous row of printing will be white (
(no heating), white dots are black (heated).
一方、“a”区間の前縁では切換スイッチ4が接点a側
に切換ねり、続いて64個のシフトクロックS6がシフ
トレジスタ6に与えられて、次の1列分の印字情報がメ
モリ1から取込まれる。更にその直後(ΔT後)に第2
ラツチパルスS3がラッチ回路7に与えられて、新規な
印字情報がラッチ回路7からドライブ回路8に並列転送
される。On the other hand, at the leading edge of the "a" section, the changeover switch 4 switches to the contact a side, and then 64 shift clocks S6 are applied to the shift register 6, and the print information for the next column is transferred from the memory 1. be taken in. Furthermore, immediately after that (after ΔT), the second
A latch pulse S3 is applied to the latch circuit 7, and new print information is transferred from the latch circuit 7 to the drive circuit 8 in parallel.
第2図E−Hに示すように、成る列の印字においてシフ
トレジスタ6の出力(データDI、D2など)が0″の
ときには、シフトレジスタ6の反転循環の結果、次の列
の印字区間の先頭におけるΔTの区間で、ラッチ回路7
の出力に第2図F、HのPで示す“1”のパルスが必ら
ず付加される。As shown in FIG. 2 E-H, when the output of the shift register 6 (data DI, D2, etc.) is 0'' during printing of the next column, as a result of the inversion cycle of the shift register 6, the printing section of the next column is In the section of ΔT at the beginning, the latch circuit 7
A pulse of "1" shown by P in FIG. 2F and H is always added to the output of the circuit.
つまり前列が白ドツト(無加熱)で次の列が黒ドツト(
加熱)であれば、その加熱パルスは第3図Aにも示すよ
うに基本加熱パルス幅TよりΔTだけ広げられる。従っ
て独立の黒ドツト又は連続黒ドツトの先頭ドツトについ
ては、第3図Bに示すように加熱電力が増強されて発熱
温度が発色レベルL(又は転写可能レベル)以上まで急
上昇される。In other words, the front row has white dots (no heating) and the next row has black dots (
heating), the heating pulse is widened by ΔT from the basic heating pulse width T, as also shown in FIG. 3A. Therefore, for an independent black dot or a leading dot of continuous black dots, the heating power is increased as shown in FIG. 3B, and the heat generation temperature is rapidly raised to the color development level L (or transferable level) or higher.
一方、成る列の印字でシフトレジスタ6の出力が“1”
のときには、シフトレジスタ6の反転循環の結果、次の
印字区間の先頭において、ラッチ回路7の出力がΔTの
区間だけ第2図F、HのQで示すように“0”となる。On the other hand, the output of the shift register 6 is “1” when printing the column consisting of
At this time, as a result of the inversion circulation of the shift register 6, the output of the latch circuit 7 becomes "0" for a period of .DELTA.T at the beginning of the next printing period, as shown by Q in FIG. 2F and H.
つまり前列が黒ドツトで次の列が黒ドツトであれば、加
熱パルスは第3図Aに示すように基本幅Tに狭められ、
発色レベルLを超える温度を保持するだけの加熱電力が
与えられる。That is, if the previous row is a black dot and the next row is a black dot, the heating pulse is narrowed to the basic width T as shown in FIG. 3A,
Heating power sufficient to maintain the temperature above the color development level L is provided.
なお第2図F、■]及び第3図Aに示すように白ドツト
が連続すると、シフトレジスタ6の反転循環により、R
で示すようなΔTの幅の“1”がランチ回路7の出力に
現われる。しかしこのΔTの幅のパルスRは、第3図B
に示すように発色レベルLに達するほどの加熱電力を抵
抗素子9に与えないので、白ドツトが着色されることは
ない。むしろパルスRを印加することで、予備加熱が行
われるので、次の黒ドツトの加熱立上りが良くなり、印
字むらの解消に役立つ。Note that when white dots are continuous as shown in FIGS. 2F and 3) and FIG. 3A, R
“1” with a width of ΔT as shown in FIG. 1 appears at the output of the launch circuit 7. However, this pulse R with a width of ΔT is
As shown in FIG. 3, since heating power sufficient to reach the coloring level L is not applied to the resistance element 9, the white dots are not colored. Rather, by applying the pulse R, preheating is performed, which improves the heating start-up of the next black dot, which helps eliminate printing unevenness.
第3図Cは加熱パルス幅の補正をしない場合の比較例で
あり、この場合の発熱温度は黒ドツトが連続したとき次
第に高まり、次の白ドツトにおいてヘッド温度が十分低
下するまで尾引きが生じる。Figure 3C is a comparative example in which the heating pulse width is not corrected; in this case, the heat generation temperature gradually increases when black dots are continuous, and a tail trail occurs until the head temperature drops sufficiently at the next white dot. .
なお、上述の実施例において付加期間ΔTは印字速度に
応じて加減するが、基本加熱パルス幅Tとの比は一定で
あってよい。Note that in the above-described embodiment, the additional period ΔT is adjusted depending on the printing speed, but the ratio to the basic heating pulse width T may be constant.
本発明は上述の如く、加熱印字情報を保持するシフトレ
ジスタに、反転循環路を設けることにより、加熱パルス
幅の最適制御を可能にしたものである。よって印字ドツ
トの連続、独立及び連続ドツトの先頭を判定してパルス
幅制御を行う従来の判定回路が全く不要であるから、回
路構成が極めて簡単になる。As described above, the present invention makes it possible to optimally control the heating pulse width by providing a reversing circulation path in the shift register that holds thermal printing information. Therefore, there is no need for a conventional determination circuit that performs pulse width control by determining whether printed dots are continuous, independent, or the beginning of continuous dots, and the circuit configuration becomes extremely simple.
第1図は本発明の一実施例を示す熱ヘッド駆動回路の回
路図、第2図は駆動タイミング図、第3図は発熱制御を
示す波形図である。
なお図面に用いた符号において、
1−−−−−−−−−−一・−バッファメモリ2−・−
−−−−−−−−−−−−−・・アドレス発生回路3−
−−−−−−−−・−・−・−タイミング信号発生回路
4−・・・−・−−−−−−−−−−−−・切換器5・
−−−−−−−−−−−一・−・・・−インバータ6・
・−−−−〜・−−一一一一・・−シフトレジスタ7−
・−・・=・−・−・・ラッチ回路8−・−・・−・・
−−−−ドライブ回路9・・−・−−−−−−−−一−
−−加熱抵抗素子である。FIG. 1 is a circuit diagram of a thermal head drive circuit showing one embodiment of the present invention, FIG. 2 is a drive timing diagram, and FIG. 3 is a waveform diagram showing heat generation control. In addition, in the symbols used in the drawings, 1---------1・-Buffer memory 2-・-
−−−−−−−−−−−−− Address generation circuit 3−
−−−−−−−−・−・−・−Timing signal generation circuit 4−−・−−−−−−−−−−−・Switcher 5・
−−−−−−−−−−−1・−・−−Inverter 6・
・−−−−〜・−−1111・・・−Shift register 7−
・−・・=・−・−・・Latch circuit 8−・−・・−・・
−−−Drive circuit 9・・−−−−−−−−−1−
--Heating resistance element.
Claims (1)
ジスタと、このシフトレジスタの直列出力を反転してそ
の直列入力に帰還するインバータとを具備し、 上記シフトレジスタの一定周期ごとの内容更新により印
字加熱パルスを熱ヘッドに並列出力すると共に、上記更
新直前の所定期間において保持内容の反転情報を並列出
力するように、上記シフトレジスタのシフト制御及び反
転循環制御を行うことを特徴とする熱ヘッド駆動回路。[Scope of Claims] A shift register capable of holding thermal printing information and serially shifting; and an inverter that inverts the serial output of this shift register and feeds it back to its serial input; Shift control and reversal circulation control of the shift register are performed so that printing heating pulses are output in parallel to the thermal head by updating the contents at each time, and inversion information of the retained contents is output in parallel during a predetermined period immediately before the update. Features a thermal head drive circuit.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP63070242A JPH01241463A (en) | 1988-03-24 | 1988-03-24 | Thermal head drive circuit |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP63070242A JPH01241463A (en) | 1988-03-24 | 1988-03-24 | Thermal head drive circuit |
Publications (1)
Publication Number | Publication Date |
---|---|
JPH01241463A true JPH01241463A (en) | 1989-09-26 |
Family
ID=13425903
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP63070242A Pending JPH01241463A (en) | 1988-03-24 | 1988-03-24 | Thermal head drive circuit |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPH01241463A (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111688362A (en) * | 2020-06-10 | 2020-09-22 | 珠海佳博网络有限公司 | Thermal history control method for thermal print head, thermal printer and computer readable storage medium |
-
1988
- 1988-03-24 JP JP63070242A patent/JPH01241463A/en active Pending
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111688362A (en) * | 2020-06-10 | 2020-09-22 | 珠海佳博网络有限公司 | Thermal history control method for thermal print head, thermal printer and computer readable storage medium |
CN111688362B (en) * | 2020-06-10 | 2021-05-14 | 珠海佳博网络有限公司 | Thermal history control method for thermal print head, thermal printer and computer readable storage medium |
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