EP1063094B1 - Drucker mit Antrieb durch einen Motor, sowohl für Blattvorschub, als auch Blattschneidemechanismus - Google Patents

Drucker mit Antrieb durch einen Motor, sowohl für Blattvorschub, als auch Blattschneidemechanismus Download PDF

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Publication number
EP1063094B1
EP1063094B1 EP20000304893 EP00304893A EP1063094B1 EP 1063094 B1 EP1063094 B1 EP 1063094B1 EP 20000304893 EP20000304893 EP 20000304893 EP 00304893 A EP00304893 A EP 00304893A EP 1063094 B1 EP1063094 B1 EP 1063094B1
Authority
EP
European Patent Office
Prior art keywords
sheet
gear
printer
driving
oscillation
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.)
Expired - Lifetime
Application number
EP20000304893
Other languages
English (en)
French (fr)
Other versions
EP1063094A1 (de
Inventor
Hiroyuki Murayama
Fumihisa Hori
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.)
Alps Alpine Co Ltd
Original Assignee
Alps Electric 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 Alps Electric Co Ltd filed Critical Alps Electric Co Ltd
Publication of EP1063094A1 publication Critical patent/EP1063094A1/de
Application granted granted Critical
Publication of EP1063094B1 publication Critical patent/EP1063094B1/de
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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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
    • B41J23/00Power drives for actions or mechanisms
    • B41J23/02Mechanical power drives
    • B41J23/025Mechanical power drives using a single or common power source for two or more functions
    • 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
    • B41J11/00Devices or arrangements  of selective printing mechanisms, e.g. ink-jet printers or thermal printers, for supporting or handling copy material in sheet or web form
    • B41J11/66Applications of cutting devices
    • B41J11/70Applications of cutting devices cutting perpendicular to the direction of paper feed
    • B41J11/703Cutting of tape

Definitions

  • This invention relates to a printer having a sheet cutting mechanism for cutting a printed portion of a sheet fed out of a sheet roll to an appropriate length after performing a desired printing of the sheet.
  • a printer in which a sheet fed out of a sheet roll is pulled around a sheet transferring path within the printer and the sheet is cut into a requisite length after a desired printing is applied to the sheet at a recording section of the printer has been widely used as a printer for use in printing a receipt which is issued as a receipt to a purchaser and the like or a receipt journal printer in which printings for two kinds of sheets of the receipt and a journal stored as a bill for a commodity management or the like at a supplier can be carried out once.
  • a mechanism for cutting the sheet in these printers (hereinafter called as a sheet cutting mechanism), it may be considered as a simple configuration to provide a system in which a long side of an opening part of the case in a printer serving as a transferring path for the printed sheet, for example, is formed with some saw-teeth shaped cutting protrusions and the sheet is cut off while the sheet is being pushed against the cutting protrusions from its end part in a width direction.
  • the sheet cutting mechanism since another driving means was required in addition to the driving means for the printer, the sheet cutting mechanism had double members for constituting the driving means such as a motor or the like, resulting in that the mechanism had some disadvantages that it needed additional cost and an entire size of the printer having the sheet cutting mechanism installed therein was made large.
  • This invention has been invented in reference to the aforesaid fact and it is an object of the present invention to provide a printer in which a dual application of the driving members is reduced and at the same time its cost is also decreased and further a small-sized formation of the printer itself can be realized.
  • the engaged state of the gears can be changed over by oscillating the oscillation arm in response to the rotating direction of the transmission motor while the sheet transferring mechanism and the sheet cutting mechanism are being applied as a common driving source.
  • a printer 1 shown in Fig. 1 a substantial portion of the printer 1 of the preferred embodiment of the present invention is illustrated, wherein a platen roller 2 for use in performing a printing operation against a sheet supplied is suspended at opposing two frames 1A of a casing of the printer 1 in such a way that it can be rotationally driven.
  • a thermal head 3 Near the platen roller 2 is installed a thermal head 3 having a plurality of heat generating elements arranged in rows in a straight line form to be oppositely faced against the central part of the platen roller 2 and moved to or away from an entire width of the platen roller 2 in such a way that the thermal head 3 can be oscillated.
  • the end part of the sheet is pulled out of the sheet roll held at the sheet supplying section (not shown) , the sheet is drawn around the sheet transferring path within the printer 1, the sheet is supplied between the platen roller 2 and the thermal head 3 acting as the printing section so as to cause a desired printing to be carried out.
  • the platen roller 2 may constitute one member of the sheet transferring mechanism and a normal rotation driving force of the driving motor 5 acting as a sheet transferring driving source is transmitted from the motor gear 6 formed at the rotating shaft 5A of the driving motor 5 through transmission gears 7, 8 and the oscillation gear 21 against the roller driving gear 4 formed coaxially with the platen roller 2, thereby the platen roller 2 is rotated and the sheet transferring around the platen roller 2 is performed.
  • the aforesaid driving force transmission mechanism (hereinafter called as a driving transmission mechanism) will be described as follows.
  • the sheet cutting mechanism is integrally formed in the printer of the preferred embodiment of the present invention.
  • This sheet cutting mechanism is installed at a downstream side of the printing section in the sheet transferring path of the printer 1 and this sheet cutting mechanism in the preferred embodiment of the present invention is the casing portion corresponding to the installed position of the platen roller 2 and is installed at a sheet discharging port for use in discharging the sheet, after its printing, out of the casing.
  • the sheet cutting mechanism is comprised of a fixed blade 10 fixed and arranged at the printer 1; a movable member 12 having a movable blade 11 oscillated against the fixed blade 10 and slidingly contacted with the fixed blade 10 in its surface direction to enable the sheet present between the fixed blade and the movable blade to be sheared; and a moving means capable of moving the movable member 12 in the surface direction of the fixed blade 10, and further the moving means is comprised of a spring member 14 for applying a specified tension against the movable member 12 in a surface direction of the fixed blade 10; a cam gear 17 having a pin 16 engaged in a slide hole 15 formed at a base part 12A of the movable member 12; and a plurality of transmission gears 18 for transmitting a driving force to the cam gear 17.
  • the fixed blade 10 of the sheet cutting mechanism has substantially the same length as that of the platen roller 2 of the printer 1 and is fixed and arranged at the casing of the printer 1 in such a way as that the fixed blade 10 is in parallel with the platen roller 2 and its blade edge is positioned in a linear straight manner with its blade edge being faced toward the sheet transferring path.
  • One movable blade 11 is arranged at a side of the plate-like movable member 12 where it is directed toward an arranging direction of the fixed blade 10 and in the preferred embodiment of the present invention, the central part of the movable blade 11 at its extending direction is formed like a dogleg shape where it is spaced apart from the arranging direction of the fixed blade 10.
  • the movable member 12 is formed into a substantial Y-shape in its entire shape and its side opposite to the forming of the movable blade 11, i.e. the side spaced apart from the sheet transferring path is applied as a base section 12A.
  • the spring member 14 constituting the moving means for supporting the central part of the movable member 12 in its longitudinal direction (the extending direction of the fixed blade 10) at the casing of the printer 1 and the one side (the lower side as viewed in the figure) of the engaging position of the spring member 14 of the base section 12A is formed with a long-groove shaped slide hole 15 extending in an arranging direction of the fixed blade 10.
  • the cam gear 17 is installed at the most downstream side within the sheet cutting mechanism and the driving force generated when the driving motor 6 acting as a driving source for transferring sheet of the printer 1 is rotated in a reverse direction is transmitted to the cam gear 17 through a plurality of transmission gears 18 including a helical gear in order from the cutter driving gear 19 installed at the most upstream side in the sheet cutting mechanism.
  • a motor gear 6 is arranged at the output shaft 5A of the driving motor 5 and a transmission gear 7 for use in transferring the driving force of the driving motor 5 to either the sheet transferring mechanism or the sheet cutting mechanism is engaged with the motor gear 6.
  • the oscillation arm 20 oscillated to enable the driving force to be transmitted to the gears 4, 19 positioned at the downstream side in a transmitting direction through the normal or reverse rotation of the driving motor 5.
  • Two oscillation gears 21, 22 having small diameter and large diameter, respectively, are formed coaxially at the extremity end of the oscillation arm 20, wherein the oscillation gear 22 having the large diameter is engaged with the transmission gear 8 having the small diameter which is coaxially arranged with the transmission gear 7, and the driving force of the driving motor 5 is transmitted to cause the oscillation gears 21, 22 coaxially supported to each other to be rotated.
  • the oscillation gear 21 having the small diameter is engaged with the roller driving gear 4 formed at the platen roller 2 under an oscillation of the oscillation arm 20 as the rotating shaft 7A of the transmission gear 7 is rotated when the driving motor 5 is rotated in a normal direction as shown in Fig. 3, resulting in that the driving force can be transmitted only to the sheet transferring mechanism.
  • the oscillation gear 22 having large diameter is engaged with the cutter driving gear 19 arranged at the uppermost upstream side of the sheet cutting mechanism by a method wherein the oscillation arm is oscillated through rotation of the rotating shaft 7A of the transmission gear 7 when the driving motor 5 is rotated in a reverse direction as shown in Fig. 4 and then the driving force can be transmitted only to the sheet cutting mechanism.
  • the sheet transferring mechanism and the sheet cutting mechanism can be driven by the same driving means as described above.
  • the sheet in the printer is fed out of the sheet roll through driving of the sheet transferring mechanism, applied to have a desired printing at the printing section, thereafter the printed sheet is discharged out of the casing through the sheet discharging port and cut.
  • the driving motor 5 is driven to rotate in a normal direction, the oscillation gear 21 is engaged with the roller driving gear 4 and its driving force is transmitted only to the sheet transferring mechanism. That is, at this time, since the oscillation gear 22 is not engaged with the cutter driving gear 19, the sheet cutting mechanism is not driven.
  • the sheet of appropriate length is transferred to cause the printed sheet portion to be discharged out of the printer 1 and thereafter the driving motor 5 is driven to rotate in a reverse direction.
  • the oscillation arm 20 is oscillated under a reverse driving operation of the driving motor 5, the oscillation gear 22 is engaged with the cutter driving gear 19 of the sheet cutting mechanism to cause its driving force to be transmitted only to the sheet cutting mechanism.
  • the driving force of the driving motor 5 transmitted to the cutter driving gear 19 is transmitted up to the cam gear 17 through the transmission gears 18 arranged with the sheet cutting mechanism.
  • the movable blade 11 is oscillated in a horizontal direction so as to perform a sliding contacted state in relation with the fixed blade 10 while the pin 16 formed at the upper surface of the cam gear 17 is being slid within the slide hole 15 of the movable member 12 and while resisting against a tension of the spring member 14.
  • the sheet present between the fixed blade 10 and the movable blade 11 can be sheared under this oscillation performed in a horizontal direction.
  • the shape of the movable blade in the preferred embodiment is not formed into a dogleg shape, but it may be formed into a linear straight shape.
  • two kinds of gears of large diameter and small diameter are arranged as the oscillation gears in the preferred embodiment of the present invention, only one oscillation gear may also be applied.

Landscapes

  • Handling Of Sheets (AREA)
  • Common Mechanisms (AREA)

Claims (2)

  1. Drucker mit:
    einem Blattvorschubmechanismus, der eine Walzrolle (2) und ein Walzrollgetriebe 4 aufweist und der auf einer Drehwelle der Walzrolle angeordnet ist;
    einer Druckeinrichtung (3) zur Ausführung einer Aufzeichnung auf einem Blatt, das von der Walzrolle befördert wird;
    einem Blattschneidemechanismus, welcher jeweils mit einem fixierten Schneidemesser (10) versehen ist, und welcher an dem Drucker befestigt und angeordnet ist, sowie einer beweglichen Komponente mit einem beweglichen Schneidemesser (12), welches das vorhandene Blatt zwischen dem beweglichen und dem fixierten Schneidemesser trennen kann, wenn das bewegliche Schneidemesser an einer Fläche des fixierten Schneidemessers sich unter Reibung bewegt, sowie ferner Bewegungsmittel für das Führen der beweglichen Komponente in eine Richtung zur Fläche des fixierten Schneidemessers;
    einem einzigen Motor (5) für den selektiven Antrieb des Blattvorschubmechanismus und des Blattschneidemechanismus; einem Schwinghebel (20), der auf der Drehwelle (7a) des Zwischenübertragungsgetriebes angeordnet ist, das sich mit einem Motorgetriebe in Eingriff befindet und das am Antriebsmotor angeordnet ist;
    der Drucker ist dadurch gekennzeichnet, dass
    ein Oszillationsgetriebe (21, 22) lediglich an einem Ende des Schwinghebels angeordnet ist; und Antriebsübertragungsmittel, wobei der Antriebsmotor sich in eine normale Richtung oder in eine umgekehrte Richtung dreht, um den Schwinghebel zu veranlassen, sich in die Drehrichtung des Schwinghebels zu schwingen, und um den Schwinghebel zu veranlassen, sich selektiv mit einem der Walzroll-Antriebsgetriebe in Eingriff zu setzen, sowie mit einem Schneideantriebsgetriebe (19), das an der zuoberst nachgeschalteten Stelle des Blattschneidemechanismus positioniert ist.
  2. Drucker nach Anspruch 1, wobei das Oszillationsgetriebe so konstruiert ist, dass zwei Getriebe mit unterschiedlichen Durchmessern auf der gleichen Welle ausgebildet werden; und
    wobei eines der Getriebe mit dem Walzroll-Antriebsgetriebe ineinander greift und dann das andere Getriebe mit dem Schneideantriebsgetriebe ineinander greift.
EP20000304893 1999-06-23 2000-06-09 Drucker mit Antrieb durch einen Motor, sowohl für Blattvorschub, als auch Blattschneidemechanismus Expired - Lifetime EP1063094B1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP17673699 1999-06-23
JP11176736A JP2001001590A (ja) 1999-06-23 1999-06-23 プリンタ

Publications (2)

Publication Number Publication Date
EP1063094A1 EP1063094A1 (de) 2000-12-27
EP1063094B1 true EP1063094B1 (de) 2003-08-27

Family

ID=16018906

Family Applications (1)

Application Number Title Priority Date Filing Date
EP20000304893 Expired - Lifetime EP1063094B1 (de) 1999-06-23 2000-06-09 Drucker mit Antrieb durch einen Motor, sowohl für Blattvorschub, als auch Blattschneidemechanismus

Country Status (3)

Country Link
EP (1) EP1063094B1 (de)
JP (1) JP2001001590A (de)
DE (1) DE60004735T2 (de)

Families Citing this family (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US9123395B2 (en) 2007-11-09 2015-09-01 SK Hynix Inc. Stack bank type semiconductor memory apparatus capable of improving alignment margin
JP5684015B2 (ja) * 2011-03-18 2015-03-11 スター精密株式会社 印刷装置のカッター機構への駆動力伝達装置
JP5849742B2 (ja) * 2012-02-01 2016-02-03 セイコーエプソン株式会社 印刷装置
JP6297773B2 (ja) 2012-10-31 2018-03-20 富士通コンポーネント株式会社 プリンタ装置
KR101282299B1 (ko) * 2012-12-21 2013-07-10 이일복 프린터의 커터
KR101618599B1 (ko) 2014-04-30 2016-05-10 주식회사 신흥정밀 프린터의 동력 전환장치
KR20230157166A (ko) 2022-05-09 2023-11-16 주식회사 렉소드 프린터용 인쇄용지 절단장치

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4544293A (en) * 1984-06-11 1985-10-01 Eaton Corporation Printer apparatus and cutting mechanism
KR970003395B1 (ko) * 1993-12-01 1997-03-18 삼성전자 주식회사 팩시밀리의 기록지 이송과 자동 절단장치
DE19609527C2 (de) * 1996-03-11 1998-03-12 Siemens Nixdorf Inf Syst Anordnung zum Antrieb eines Schneidemessers zum Schneiden eines in einer Druckeinrichtung bedruckbaren bandförmigen Aufzeichnungsträgers
JP3461430B2 (ja) * 1997-03-31 2003-10-27 シャープ株式会社 ロール状記録紙送給装置
US5893670A (en) * 1997-08-28 1999-04-13 International Business Machines Corporation Gear with teeth of decreasing height for a printer

Also Published As

Publication number Publication date
DE60004735D1 (de) 2003-10-02
DE60004735T2 (de) 2004-02-26
EP1063094A1 (de) 2000-12-27
JP2001001590A (ja) 2001-01-09

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