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JP2005001147A - Printer with paper cutting mechanism - Google Patents

Printer with paper cutting mechanism Download PDF

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Publication number
JP2005001147A
JP2005001147A JP2003164506A JP2003164506A JP2005001147A JP 2005001147 A JP2005001147 A JP 2005001147A JP 2003164506 A JP2003164506 A JP 2003164506A JP 2003164506 A JP2003164506 A JP 2003164506A JP 2005001147 A JP2005001147 A JP 2005001147A
Authority
JP
Japan
Prior art keywords
paper
cut
printing
printer
cutting
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
JP2003164506A
Other languages
Japanese (ja)
Inventor
Noriyuki Arizono
則幸 有薗
Shingo Takayanagi
真悟 高柳
Makoto Kurita
誠 栗田
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.)
Hitachi Ltd
Hitachi Information Technology Co Ltd
Original Assignee
Hitachi Ltd
Hitachi Information Technology Co Ltd
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 Hitachi Ltd, Hitachi Information Technology Co Ltd filed Critical Hitachi Ltd
Priority to JP2003164506A priority Critical patent/JP2005001147A/en
Publication of JP2005001147A publication Critical patent/JP2005001147A/en
Pending legal-status Critical Current

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Abstract

<P>PROBLEM TO BE SOLVED: To solve the problem of a throughput decrease particularly at a slip issuance work or the like required to be carried out promptly, due to the fact that it is difficult to set a large amount of cut forms such as delivery slips into an impact printer, it is necessary to cut manually or by a cutting mechanism a continuous-form paper after printing which can be set by a large amount, or it is necessary to cut and pull-back the continuous-form paper to a printing position when printing is temporarily stopped at the time of cutting or after the paper is sent to a paper cutting position depending on the cutting position of the paper in the case where the continuous-form paper is cut by the cutting mechanism connected to a printer. <P>SOLUTION: The impact printer has a paper cutting mechanism effective at two kinds of paper paths of a paper path in which the printer feeds and prints the continuous-form paper after cutting the continuous-form paper to one pages=cut forms, and a paper path in which the printer cuts by any page number after printing. The impact printer is configured to enable selection of the paper path for every printing job from a host device. <P>COPYRIGHT: (C)2005,JPO&NCIPI

Description

【0001】
【発明の属する技術分野】
本発明は、連続用紙を切断する機構を備えたプリンタに関する。
【0002】
【従来の技術】
従来、宅配伝票等の単票用紙をインパクトプリンタに大量セットすることは困難であった。また、大量にセット可能な連続用紙は、印刷後に用紙を手作業で切断する、あるいは切断機構により切断する必要があった。特開2001−322323号や特開平10−250162号公報で示されるようにプリンタに接続された切断機構により印刷後に連続用紙を切断する場合、切断時に印字が一時停止したり、用紙の切断位置によっては用紙切断位置まで用紙を送った後、用紙を切断し、印字位置まで用紙を引き戻す必要があり、即時性が要求される伝票発行業務などではスループットが低下するという問題があった。しかし、連続用紙を使用する利点として、印刷後に複数の帳票をつなげて保存できるという点もあり、従来技術では、単票用紙としてページ単位への切断と印刷ジョブ単位などの指定単位で用紙の切断が可能な印刷後での切断方式がとられていた。
【0003】
【特許文献1】
特開2001−322323号公報
【特許文献2】
特開平10−250162号公報
【0004】
【発明が解決しようとする課題】
前述の通り、プリンタに接続された用紙切断機構により、印刷後に用紙を切断した場合、スループットが低下するという問題点と従来通り、複数の帳票をつなげた状態で保存したというニーズがあった。
【0005】
本発明では、連続用紙を印刷前に切断し、単票用紙としてプリンタが給紙し、印刷することで、切断時の用紙引き戻しが発生せずスループットを低下させずに印刷が可能な用紙切断機構および用紙走行経路と、従来通り、印刷後に指定単位で用紙を切断することが可能な用紙切断機構および用紙走行経路と、これら複数用紙走行経路の用紙切断を共通の切断機構で行うことを可能とした用紙切断機構付プリンタを提供し、単票用紙への大量出力結果と、従来通り、連続用紙の利点を活かし、複数帳票がつながった状態での印刷結果を、用紙切断機構付プリンタ制御方式を搭載することにより、プリンタ単体で容易に高スループットで得ることを目的とする。
【0006】
【課題を解決するための手段】
本発明の請求項1記載のプリンタは、プリンタの後方から給紙された連続用紙を所望の用紙長で単票用紙に切断する切断機構により、印刷前に連続用紙を単票用紙に切断し、プリンタの印刷給紙ルートに受け渡すことで、連続用紙をプリンタにセットしたにもかかわらず、単票用紙として印刷を行うことが可能な用紙走行経路と、プリンタの前方から給紙された連続用紙を連続用紙として印刷した後、用紙切断機構により、印刷ジョブなどの指定単位で連続用紙を切断することが可能な用紙走行経路と、これら複数の経路を走行する連続用紙を同一の機構で切断することが可能な用紙切断機構を備え、人手を介さずプリンタ単体で高速かつ容易に、用途に合わせた単位で連続用紙を切断することを可能としたのものである。また、当然前述の“プリンタ後方”および“プリンタ前方”と示した給紙方向にとらわれるものではなく、後方、前方が逆であっても問題はない。
【0007】
請求項2記載のプリンタは、印刷前に連続用紙を所望の用紙長で切断する場合、印刷データに含まれる印刷ページ数をプリンタが解釈し、必要ページ数の単票用紙を実際の印刷とは同期せずに切断しスタックする。これにより、1ページの印刷量が少なく、印刷が短い時間で終了する場合でも、用紙の切断を先行して行うことで、用紙の切断時間によるスループット低下を低減することを可能としたものである。
【0008】
また、請求項3記載の通り、プリンタ後方(あるいは前方)から連続用紙を給紙し、切断、単票用紙として印刷する用紙走行経路および、用紙を切断する時の用紙長の指定と、プリンタの前方(あるいは後方)から連続用紙を給紙し、印刷後に用紙を切断する用紙走行経路および、用紙を切断する時の用紙長あるいは印刷ジョブなどの切断単位の指定を印刷起動ごとに行える手段を有することで、印刷ジョブごとに所望の印刷結果を得ることを可能としたものである。また、本印刷制御方式は、プリンタにセットされている用紙の種類を印刷起動時などに取得する手段と組み合わせることで、より好適に利用することが可能である。
【0009】
【発明の実施の形態】
以下に本発明の実施例の詳細を説明する。
【0010】
図6は本発明における印刷データのフォーマットを示す。
【0011】
印刷データは、拡張コマンド等により定義され、S47給紙先、S48用紙ページ長、S49印刷部数、S50用紙カット単位、S51印刷データにより構成される。
【0012】
図3は本発明における用紙切断機構部の構造図を示す。
【0013】
用紙切断機構部は、S25カッター、S26シャフト、S27フィードローラ部により構成され、S27フィードローラ部により指定されたページ長分連続帳票を搬送し、S26シャフトに接続されるS25カッターが往復動作することにより用紙を切断する。
【0014】
図4は本発明における連続帳票から切断した単票用紙をスタックする構造の断面図を示す。
【0015】
切断用紙スタック機構は、S28ホッパローラ、S29用紙ガイド、S30セット量検出センサ、S31偏心ローラ、S33上部ガイド、S34開閉用バネにより構成され、用紙切断機構により切断された用紙をスタックする場合、S35フィードローラにて搬送された用紙をS31偏心ローラを駆動させ用紙ガイドを開放し、S32切断された用紙は自重によりスタックされる。スタックされた用紙を印字ヘッド部へ給紙する場合、S31偏心ローラを駆動させ用紙ガイドを閉鎖し、S28ホッパローラを回転させ用紙の表面を押し上げることにより給紙する。
【0016】
図5は本発明における給紙ルート別の用紙の流れを示すS36プリンタにS37用紙切断機構を搭載した構造の断面図を示す。
【0017】
特開2001−322323号や特開平10−250162号公報で示される公知の技術によってS38前トラクタよりS39連続帳票を給紙し、S40印字ヘッド部にて印字、S41用紙カッタ部にて用紙指定単位で切断する。
【0018】
本発明では、S41用紙カッタ部をS42後トラクタでも流用し、印刷前に用紙を印刷と非同期に切断することによってスループットの向上を実現する。
【0019】
以下にS42後トラクタより給紙時の用紙の流れを説明する。
【0020】
S42後トラクタにS43連続帳票をセットし、S44フィードローラにより連続帳票を搬送し、S41用紙カッタ部により受信したページ長および部数に切断し、S46切断用紙スタック部にスタックされる。スタックされた用紙は、S46スタック機構部よりS40印字ヘッド部へ給紙後印刷し、S45スタッカへスタックする。
【0021】
以下本実施例を図1、図2のフローに従い説明する。
【0022】
図1、図2は本実施例の制御方式のフローを給紙先ごとに示すものである。
【0023】
S1で印刷データに含まれる給紙先、用紙のページ長、印刷部数、用紙カット単位、印刷データを受信及び解析する。
【0024】
S2で給紙先を確認する。
【0025】
後トラクタを受信した場合、1ページ毎用紙をカットするモードのため、S3で受信した1ページ分用紙を送り、用紙をカットする。
【0026】
S4で受信した印刷部数を確認し、1枚の場合S16で印刷処理を行いS17で用紙を排出する。
【0027】
印刷部数が2枚以上の場合、スループットの低下を抑えるためS5で用紙カットおよび印刷処理を非同期で実行する。
【0028】
印刷処理は、S6で次ページの有無を判断し、次ページが無い場合S16で印刷処理を行いS17にて用紙を排出する。
【0029】
S6で次ページが有る場合S7でペーパーエンドを検出し、検出した場合S10用紙カット処理待ち、S7でペーパーエンドを検出しない場合S8で印刷処理を行いS9にて用紙を排出する。
【0030】
また、S5印刷処理と非同期にて用紙カット処理を行う。
【0031】
S11で次ページの有無を判断し、次ページが無い場合用紙カット処理終了となる。
【0032】
S11で次ページが有る場合S12でスタッカの状態を確認し、スタッカがFULLの場合S15でFULL解除となるまで待つ。
【0033】
また、スタッカがFULLでない場合、S13用紙カット処理S14用紙スタック処理を行い、再度S11次ページが有るか判断する。
【0034】
S2給紙先にて、前トラクタを受信した場合、S21で印刷処理を行い、S22で用紙カット有りかを判断し、用紙カット無しの場合、S24で次ページの有無を判断し、次ページがあれば、S21に戻り、次ページが無ければ、終了となる。
【0035】
S22で用紙カット有りの場合、S23にて用紙カット処理を行い、S24で次ページの有無を判断する。
【0036】
S2給紙先にて、手差しを受信した場合、S18にて単票をセットし、S19で印刷処理をおこない、S20で用紙を排出する。
【0037】
【発明の効果】
本発明により、給紙した連続用紙を、用紙カッタ部で指定された用紙長に切断、1ページ=単票用紙としてプリンタが給紙、印字する(連続用紙を印字する前に切断する)ことにより、印字の一時停止や用紙の引き戻し動作をする必要がないためスループットを低下させることなく印字結果として大量の単票用紙を得ることが可能となる。
【図面の簡単な説明】
【図1】本発明のアルゴリズムを示すフローチャートである。
【図2】図1に続く本発明のアルゴリズムを示すフローチャートである。
【図3】本発明の用紙切断機構部の構造図である。
【図4】本発明の連続帳票から切断した単票用紙をスタックする構造の断面図である。
【図5】本発明の給紙ルート別の用紙の流れを示す構造図である。
【図6】本発明の印刷データのフォーマットである。
【符号の説明】
S25…用紙カッター、S26…シャフト、S27…フィードローラ、S28…ホッパローラ、S29…用紙ガイド、S30…セット量検出センサ、S31…偏心ローラ、S32…切断された用紙、S33…上部ガイド、S34…開閉用バネ、S35…フィードローラ、S36…プリンタ本体、S37…用紙切断機構、S38…前トラクタ、S39…連続帳票、S40…印字ヘッド部、S41…用紙カッター部、S42…後トラクタ、S43…連続帳票、S44…フィードローラ、S45…スタッカ、S46…切断用紙スタック部。
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a printer having a mechanism for cutting continuous paper.
[0002]
[Prior art]
Conventionally, it has been difficult to set a large amount of sheet paper such as a home delivery slip on an impact printer. In addition, continuous paper that can be set in large quantities has to be cut manually after printing or by a cutting mechanism. When cutting continuous paper after printing by a cutting mechanism connected to a printer as shown in Japanese Patent Laid-Open No. 2001-322323 and Japanese Patent Laid-Open No. 10-250162, printing is temporarily stopped at the time of cutting, or depending on the cutting position of the paper In this case, it is necessary to cut the paper after the paper has been sent to the paper cutting position, and to pull back the paper to the printing position. However, the advantage of using continuous paper is that multiple forms can be connected and stored after printing. With the conventional technology, paper is cut into single-sheet paper and cut into specified units such as print jobs. It was possible to cut after printing.
[0003]
[Patent Document 1]
JP 2001-322323 A [Patent Document 2]
Japanese Patent Laid-Open No. 10-250162
[Problems to be solved by the invention]
As described above, there is a problem that throughput is reduced when paper is cut after printing by a paper cutting mechanism connected to a printer, and there is a need to store a plurality of forms in a connected state as in the past.
[0005]
In the present invention, a continuous sheet is cut before printing, and is fed by a printer as a single sheet, and is printed, so that paper pulling does not occur at the time of cutting, and printing can be performed without reducing throughput In addition, it is possible to perform a sheet cutting mechanism and a sheet traveling path capable of cutting a sheet in a specified unit after printing, and a sheet cutting mechanism of these plural sheet traveling paths with a common cutting mechanism. The printer control system with a paper cutting mechanism is used to provide the results of mass output to single-sheet paper and the printing results in a state where multiple forms are connected, taking advantage of continuous paper as before. The purpose is to obtain a printer with high throughput easily by mounting.
[0006]
[Means for Solving the Problems]
The printer according to claim 1 of the present invention cuts continuous paper into single-cut paper before printing by a cutting mechanism that cuts continuous paper fed from the back of the printer into single-cut paper with a desired paper length, By passing it to the printer's print feed route, a continuous paper fed from the front of the printer, along with a paper travel path that allows printing as single-cut paper even though continuous paper is set in the printer Is printed as continuous paper, and then the paper cutting mechanism cuts the continuous paper in a specified unit such as a print job, and the continuous paper that runs through these multiple paths is cut by the same mechanism. The paper cutting mechanism capable of cutting the continuous paper can be cut at a high speed and easily by a single unit of the printer without human intervention. Of course, the present invention is not limited to the feeding directions indicated as “printer rear” and “printer front”, and there is no problem even if the rear and front are reversed.
[0007]
In the printer according to claim 2, when continuous paper is cut at a desired paper length before printing, the printer interprets the number of printed pages included in the print data, and actual printing of the required number of single-sheet papers Disconnect and stack without synchronizing. As a result, even when the printing amount of one page is small and printing is completed in a short time, it is possible to reduce throughput reduction due to the cutting time of the paper by cutting the paper in advance. .
[0008]
According to a third aspect of the present invention, a continuous paper is fed from the back (or front) of the printer, cut, printed as a cut sheet, a paper path when cutting the paper, a paper length when cutting the paper, There is a means for feeding a continuous sheet from the front (or the rear) and cutting the sheet after printing, and a means for specifying a cutting unit such as a sheet length or a print job when cutting the sheet every time printing is started. This makes it possible to obtain a desired print result for each print job. Further, this print control method can be used more suitably by combining with a means for acquiring the type of paper set in the printer at the time of starting printing.
[0009]
DETAILED DESCRIPTION OF THE INVENTION
Details of the embodiments of the present invention will be described below.
[0010]
FIG. 6 shows a format of print data in the present invention.
[0011]
The print data is defined by an extension command or the like, and is composed of S47 paper feed destination, S48 paper page length, S49 number of copies, S50 paper cut unit, and S51 print data.
[0012]
FIG. 3 is a structural diagram of the paper cutting mechanism in the present invention.
[0013]
The paper cutting mechanism unit is composed of an S25 cutter, an S26 shaft, and an S27 feed roller unit, and conveys a continuous form for the page length specified by the S27 feed roller unit, and the S25 cutter connected to the S26 shaft reciprocates. To cut the paper.
[0014]
FIG. 4 is a cross-sectional view of a structure for stacking cut sheets cut from a continuous form according to the present invention.
[0015]
The cut sheet stacking mechanism is composed of an S28 hopper roller, an S29 sheet guide, an S30 set amount detection sensor, an S31 eccentric roller, an S33 upper guide, and an S34 opening / closing spring. The sheet conveyed by the roller is driven by the S31 eccentric roller to open the sheet guide, and the sheet cut in S32 is stacked by its own weight. When the stacked sheets are fed to the print head unit, the sheet is fed by driving the S31 eccentric roller to close the sheet guide and rotating the S28 hopper roller to push up the surface of the sheet.
[0016]
FIG. 5 is a sectional view of a structure in which the S37 paper cutting mechanism is mounted on the S36 printer showing the flow of paper according to the paper feed route in the present invention.
[0017]
S39 continuous forms are fed from the tractor in front of S38 by a known technique disclosed in Japanese Patent Laid-Open No. 2001-322323 or Japanese Patent Laid-Open No. 10-250162, printed by the S40 print head unit, and specified by the S41 paper cutter unit. Disconnect with.
[0018]
In the present invention, the S41 paper cutter unit is also used in the post-S42 tractor, and the paper is cut asynchronously with printing before printing, thereby improving the throughput.
[0019]
Hereinafter, the flow of paper when feeding from the tractor after S42 will be described.
[0020]
After S42, the S43 continuous form is set on the tractor, the continuous form is conveyed by the S44 feed roller, cut into the page length and the number of copies received by the S41 paper cutter unit, and stacked on the S46 cut paper stack unit. The stacked sheets are printed after being fed from the S46 stack mechanism to the S40 print head and stacked on the S45 stacker.
[0021]
Hereinafter, this embodiment will be described with reference to the flowcharts of FIGS.
[0022]
1 and 2 show the flow of the control method of this embodiment for each paper feed destination.
[0023]
In S1, the paper feed destination, paper page length, number of copies, paper cut unit, and print data included in the print data are received and analyzed.
[0024]
In S2, the paper feed destination is confirmed.
[0025]
When the rear tractor is received, because the mode is to cut the paper for each page, the paper for one page received in S3 is sent and the paper is cut.
[0026]
The number of copies received in S4 is confirmed. If there is one, the printing process is performed in S16, and the sheet is discharged in S17.
[0027]
If the number of print copies is two or more, the paper cut and print processing are executed asynchronously in S5 in order to suppress a decrease in throughput.
[0028]
In the printing process, the presence or absence of the next page is determined in S6. If there is no next page, the printing process is performed in S16 and the sheet is discharged in S17.
[0029]
If there is a next page in S6, a paper end is detected in S7. If detected, S10 waits for a paper cut process. If no paper end is detected in S7, a print process is performed in S8 and the paper is discharged in S9.
[0030]
Further, the paper cutting process is performed asynchronously with the S5 printing process.
[0031]
In S11, it is determined whether or not there is a next page. If there is no next page, the paper cutting process ends.
[0032]
If there is a next page in S11, the status of the stacker is confirmed in S12. If the stacker is FULL, the process waits until FULL is released in S15.
[0033]
If the stacker is not FULL, S13 paper cut processing S14 paper stack processing is performed, and it is determined again whether there is an S11 next page.
[0034]
If the previous tractor is received at the S2 paper feed destination, the printing process is performed at S21, it is determined whether there is a paper cut at S22, and if there is no paper cut, the presence / absence of the next page is determined at S24. If there is, the process returns to S21, and if there is no next page, the process ends.
[0035]
If there is a paper cut in S22, a paper cut process is performed in S23, and the presence or absence of the next page is determined in S24.
[0036]
When manual feeding is received at the S2 paper supply destination, a single sheet is set at S18, a printing process is performed at S19, and a sheet is discharged at S20.
[0037]
【The invention's effect】
According to the present invention, the fed continuous paper is cut into the paper length specified in the paper cutter unit, and the printer feeds and prints as 1 page = cut sheet paper (cut before printing the continuous paper). Since it is not necessary to temporarily stop printing or to pull back the paper, it is possible to obtain a large amount of cut paper as a printing result without reducing the throughput.
[Brief description of the drawings]
FIG. 1 is a flowchart showing an algorithm of the present invention.
FIG. 2 is a flowchart showing the algorithm of the present invention following FIG.
FIG. 3 is a structural diagram of a paper cutting mechanism unit of the present invention.
FIG. 4 is a cross-sectional view of a structure for stacking cut sheets cut from a continuous form according to the present invention.
FIG. 5 is a structural diagram showing the flow of paper according to a paper feed route of the present invention.
FIG. 6 is a format of print data according to the present invention.
[Explanation of symbols]
S25 ... paper cutter, S26 ... shaft, S27 ... feed roller, S28 ... hopper roller, S29 ... paper guide, S30 ... set amount detection sensor, S31 ... eccentric roller, S32 ... cut paper, S33 ... upper guide, S34 ... open / close Spring, S35 ... feed roller, S36 ... printer body, S37 ... paper cutting mechanism, S38 ... front tractor, S39 ... continuous form, S40 ... print head part, S41 ... paper cutter part, S42 ... rear tractor, S43 ... continuous form , S44: Feed roller, S45: Stacker, S46: Cut sheet stacking unit.

Claims (3)

2種類以上の用紙走行経路に対して印刷が可能なプリンタにおいて、印刷の前に連続用紙を切断し、単票用紙として印刷を行うことが可能な用紙走行経路と、印刷後に連続用紙を切断することが可能な用紙走行経路と、これら用紙の切断を同一の機構で行うことが可能な切断機構を具備することを特徴とする用紙切断機構付プリンタ。In a printer capable of printing on two or more types of paper travel paths, continuous paper is cut before printing, a paper travel path capable of printing as a cut sheet, and continuous paper is cut after printing A printer with a paper cutting mechanism comprising: a paper travel path capable of cutting the paper, and a cutting mechanism capable of cutting the paper with the same mechanism. 請求項1のプリンタにおいて、印刷前に連続用紙を切断する場合、印刷データに含まれる印刷ページ数を解釈し、実際の印刷とは同期せず、連続用紙を所望の用紙長で必要ページ数分単票用紙に切断し、スタックすることが可能な機構を具備したことを特徴とする用紙切断機構付プリンタ。2. The printer according to claim 1, wherein when continuous paper is cut before printing, the number of printed pages included in the print data is interpreted, and the continuous paper is not synchronized with actual printing, and the continuous paper is equal to the required number of pages with a desired paper length. A printer with a paper cutting mechanism, comprising a mechanism capable of cutting and stacking into cut paper. 請求項1および請求項2のプリンタにおいて、用紙長などの用紙の切断単位および用紙走行経路を、印刷起動ごとに選択することが可能な手段を有する用紙切断機構付プリンタ制御方式。3. The printer control system with a paper cutting mechanism according to claim 1, wherein the printer has a means capable of selecting a paper cutting unit such as a paper length and a paper traveling path every time printing is started.
JP2003164506A 2003-06-10 2003-06-10 Printer with paper cutting mechanism Pending JP2005001147A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2007136717A (en) * 2005-11-15 2007-06-07 Fujifilm Corp Method for printing and printer

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2007136717A (en) * 2005-11-15 2007-06-07 Fujifilm Corp Method for printing and printer

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