EP1135319B1 - Dispositif de stockage de piles d'un dispositif d'impression - Google Patents

Dispositif de stockage de piles d'un dispositif d'impression Download PDF

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Publication number
EP1135319B1
EP1135319B1 EP99965419A EP99965419A EP1135319B1 EP 1135319 B1 EP1135319 B1 EP 1135319B1 EP 99965419 A EP99965419 A EP 99965419A EP 99965419 A EP99965419 A EP 99965419A EP 1135319 B1 EP1135319 B1 EP 1135319B1
Authority
EP
European Patent Office
Prior art keywords
storage device
stack
stack storage
conveyor
tray
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
EP99965419A
Other languages
German (de)
English (en)
Other versions
EP1135319A2 (fr
Inventor
Andreas Wirtz
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 Production Printing Germany GmbH and Co KG
Original Assignee
Oce Printing Systems GmbH and Co KG
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 Oce Printing Systems GmbH and Co KG filed Critical Oce Printing Systems GmbH and Co KG
Publication of EP1135319A2 publication Critical patent/EP1135319A2/fr
Application granted granted Critical
Publication of EP1135319B1 publication Critical patent/EP1135319B1/fr
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H31/00Pile receivers
    • B65H31/30Arrangements for removing completed piles
    • B65H31/3054Arrangements for removing completed piles by moving the surface supporting the lowermost article of the pile, e.g. by using belts or rollers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H31/00Pile receivers
    • B65H31/04Pile receivers with movable end support arranged to recede as pile accumulates
    • B65H31/08Pile receivers with movable end support arranged to recede as pile accumulates the articles being piled one above another
    • B65H31/10Pile receivers with movable end support arranged to recede as pile accumulates the articles being piled one above another and applied at the top of the pile
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H43/00Use of control, checking, or safety devices, e.g. automatic devices comprising an element for sensing a variable
    • B65H43/06Use of control, checking, or safety devices, e.g. automatic devices comprising an element for sensing a variable detecting, or responding to, completion of pile
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H2301/00Handling processes for sheets or webs
    • B65H2301/40Type of handling process
    • B65H2301/42Piling, depiling, handling piles
    • B65H2301/422Handling piles, sets or stacks of articles
    • B65H2301/4225Handling piles, sets or stacks of articles in or on special supports
    • B65H2301/42252Vehicles, e.g. carriage, truck

Definitions

  • the invention relates to a stack storage device for a Printing device.
  • the output trays are usually with a lift table provided on which a tray to hold the leaves lies.
  • the lift table is in arranged in its uppermost position, so that on the output shaft incoming sheets with a low drop on the tray be filed.
  • a stack of sheets forms on the tray, whereby the lifting table according to the increasing height of the sheet stack is lowered to keep the drop height of the leaves about constant hold. If the lift table is lowered to its lowest position, do so the capacity of the output slot is exhausted.
  • the further Stacking of sheets and operation of the printing device must be interrupted until the output chute is empty. For easy emptying, the tray can be moved on a slide Carriage be arranged so that it is together with the paper stack can be pulled out of the output shaft.
  • Such output trays usually have a holding capacity of up to approximately 1300 sheets of paper, which has a basis weight of 80 g / m 2 . With a sheet rate of approx. 80 sheets / min, such an output slot is filled in about half an hour and must be emptied. In the meantime, however, high-performance printers are used which feed sheets into the output trays at a sheet rate of 158 sheets / min. At such a sheet rate, an output tray with a maximum fill capacity of 1300 sheets would be filled in about a quarter of an hour. An operator who would operate several such high-performance printers is constantly busy with the emptying of the output trays of the individual printers at such short emptying intervals.
  • the existing high-performance printing devices already exist a significant need for a stack device with a high absorption capacity and that of the operator is easy to use and in particular is easy to empty. she should also be easy with existing high performance printing devices can be retrofitted. It is assumed that future high-performance printing devices with even larger ones Blade rates will work, so the aforementioned problem is increasing is gaining in importance.
  • a stack storage device is known from US Pat. No. 3,374,902.
  • This stack storage device consists of a shaft in which a support surface through three parallel horizontal ones lying next to each other Last is formed, which is vertically movable in the shaft are.
  • a conveyor Brochures in the stream of shed fed into the shaft.
  • the brochures are from the opposite in the conveying direction Wall of the shaft stopped and stacked on the support surface. If a predetermined stack height is reached, then the support surface is lowered, which means that on the support surface accumulated piles of brochures from another conveyor is transferred, which conveys the respective stack. On this additional conveyor can have several Put the stack on.
  • CH 683 179 A5 is a device for processing single sheets delivered by a printer. At this Devices are continuously supplied by a printer Single sheets at a first collecting station for a partial stack collected and then gradually after one on the bar code contained in individual sheets. The partial stacks are collected on a conveyor belt. This device is designed as a separate unit, which an output slot on the printer.
  • DE 44 40 367 A1 describes a device for stacking paper or cardboard sheets on pallets.
  • This device has a scaffold for lifting and lowering pallets.
  • a device for feeding the sheets is provided, whereby A bulletin board is arranged in the feed plane above the pallets against which the sheets are promoted. The bow are stopped by the bulletin board and on the one below Pallet stored.
  • a device for feeding stacks is known from US Pat. No. 5,037,078 of paper folded in zigzag format.
  • the paper one stack is bonded to the paper of an adjacent stack, by using a suction device to remove the top layers one stack removed and with the lowest layer of the neighboring one Stack can be associated.
  • DE 197 01 645 A1 describes a device for handling a stack formed by sheets on a printing press.
  • This device has a stacking space in which sheets form one Pile to be accumulated. After reaching a predetermined one Stack height, a stack is automatically shifted by using a conveyor line is transported from the stacking space.
  • the conveyor line has two sections, the first section inside the stacking space and the second section outside of the stacking space is arranged.
  • the stacks are here accumulated on a stacking pad, for example a Palette is.
  • the pallet lies on the conveyor lines and when the specified stack height is reached, the stack space fed out.
  • a sheet feeder emerges that has a storage shaft and a feed shaft, the immediate are arranged side by side. From the feed shaft the sheets are separated and fed to the printer. Is the Feed chute completely emptied, so it is in the storage chute arranged stack of sheets transferred into the feed shaft. For this purpose, conveyor belts are provided, with which the stack from Storage shaft is moved into the feed shaft. With this Sheet feeder is used to reload the feed chute necessary dead time kept low. During further operation the storage compartment can be gradually refilled.
  • No. 5,139,254 discloses a stacking device for an electrophotographic Copier or a laser printer.
  • the stacking device has one to the copying machine can be coupled to the stack of paper to be stacked can be fed through a slot of the stacking device.
  • the arches will then placed on an inclined recording device, which serves as the recording area for the sheets of paper to be stacked.
  • the receiving device is vertically displaceable and is controlled by a processor unit.
  • FR 1 376 864 A describes a device for the automatic stacking of folded Sheets, especially checks, that have a stop against the material to be stacked is conveyed, to lie on a support surface comes.
  • the support surface can be moved vertically and has recesses that can be penetrated by conveyor belts, which are stacked on the support surface Remove the stack.
  • WO 89/08597 describes a stacking device for a printing device a sheet receiving surface for receiving a stack of sheets, one Lifting device provided for raising and lowering the sheet receiving surface is. This corresponds to the output unit of the printing device as set out in claim 1 is defined.
  • the invention has for its object a stack storage device for a printing device for stacking sheets create that allows a high recording capacity, easy to use is simple and on an existing printing device can be retrofitted.
  • the stack storage device has a conveyor on which one is on a sheet receiving surface accumulating sheets of sheets are automatically removed and can be cached.
  • the on the Sheet receiving surface of stacked sheets in several, handy Stack divided and buffered on the conveyor. An operator can therefore use the relatively small and therefore just remove the light stack.
  • caching the stack of sheets on the conveyor becomes a high sheet capacity achieved by arbitrarily extending the conveyor is expandable.
  • the stack storage device is designed as a separate structural unit, so that they can easily be placed in an output tray of an existing Printing device can be used. The one in the output bin If necessary, the tray is moved to the conveyor compatible tablet, e.g. a slotted tray replaced.
  • the stacked storage device preferably has one of the Independent electrical control device, so that the retrofitting or preparation of the stack memory device is easy to accomplish on the printing device.
  • a stack memory device 1 which an output unit 2 of a printing device 5 is coupled. It is a conveyor path 3 for printed by the printing device 5 Sheets shown, with pairs of rollers for transporting the sheets 4 are arranged.
  • the stack storage device 1 has an approximately cuboid housing 6 on that to a housing 7 of the printing device 5 in the area whose output unit 2 is detachably coupled.
  • the housing 6 the stack storage device 1 is open on one side.
  • From the output unit 2 is a usually provided carriage for Remove a stack that has accumulated in the output unit removed so that the output unit is also open on one side is.
  • the two housings 6, 7 are placed together with their open sides, so that they have a continuous chamber 8 for stacking or save printed paper.
  • the conveyor path 3 is limited by a stop 13 which is transverse is arranged to the conveying direction and against which on the conveying path 3 conveyed sheets are promoted.
  • the attack 13 consists for example of a sheet metal strip with a length of about 30 cm and a height of 3 to 5 cm.
  • a lifting table 14 is provided in the area below the conveying path 3, the at least 2 longitudinal struts arranged in the conveying direction 15 is formed, on which e.g. three feet 16 attached could be.
  • the longitudinal struts 15 of the lifting table 14 can of one Lifting device (not shown) lifted together or be lowered.
  • a tray 17 lies on the longitudinal struts 15 on that in plan view (Fig. 2) with a rectangular shape has two longitudinal edges 18 and two end edges 19.
  • the size of the tray 17 is dimensioned so that that of the printing device sheets to be processed usually on the tray 17 completely rest. However, sheets can also be stacked, which protrude a bit at the edges of the tray 17.
  • the tray 17 is with respect to the stop 13 with its front Front edge 19 arranged in alignment with the stop 13, so that at the beginning of the stacking process, the tray 17 with his front end edge 19 can be attached to the stop 13 and the sheets braked by the stop 13 securely on the tray 17 come to rest.
  • three slots 20 are provided, which are the same from each other are spaced, the longitudinal struts 15, the tray 17 on the Support between areas between two adjacent slots 20.
  • the slots 20 extend over much of the length the tablet 17.
  • a Belt conveyor 22 arranged in the present embodiment has three endless conveyor belts 23, each two horizontal Loop conveyor rollers 24, 25.
  • the conveyor roller 25 is arranged adjacent to the end wall of the housing 6.
  • the other Conveyor roller is by means of a holding device (not shown) outside the housing 6 of the stacking device arranged such that the belt conveyor 22 on the stacking device 1 protrudes and into the housing 7 of the output unit 2 protrudes.
  • the conveyor belts 23 are each a slot 20 of the tray 17th assigned so that they are at the same distance as the slots 20th and arranged directly in the area below the slots 20 are so that when lowering the lifting table 14, the upper run 26th the conveyor belt 23 does not collide with the tray 17.
  • the tablet 17 can thus be at a level below the upper run 26 the conveyor belt 23 are lowered, the conveyor belt 23 the slots 20 of the tray 17 in each case with their upper run 26 passed through.
  • the area of the output unit 2 in which the lifting table 14 is located forms a receiving area 27 for receiving the supplied Leaves, the surface of the tray 17 a Sheet receiving surface 28 represents.
  • the spread over the recording area 27 extending region of the belt conveyor 22 forms a storage area 29 in which at least one sheet stack 30 can be cached.
  • the memory area preferably has 29 a length that at least the intermediate storage allowed by two or more sheet stacks 30.
  • the output unit 2 has a stack height sensor 8, a lifting table sensor 9 for detecting the lowest position of the lifting table 14 and an extension sensor 10.
  • the extension sensor 10 is intended for detecting a carriage with which a stack can be removed.
  • the sledge is through here Stack storage device 1 according to the invention replaced.
  • the stack storage device 1 has an actuating element 11 provided, which is arranged adjacent to the extension sensor 10 and with which this can be operated.
  • the stack storage device 1 also has another lift table sensor 12/1 and one Sheet stack position sensor 12/2.
  • the lift table sensor is 12/1 provided for detecting the lowest position of the lifting table 14 and with the sheet stacking position sensor 12/2 one Sheet stack 30 can be detected when the output unit 2 has left and completely in the stack device is included.
  • the sheets printed by the printing device run along of the conveyor path 3 promoted against the stop 13.
  • the movement of the leaves is slowed down, so that they on the Sheet receiving surface 28 of the tray 17 fall.
  • the lifting table 14 is in its maximum upper position raised, in which the tray 17 either immediately on Stop 13 abuts or spaced only a small distance from it is arranged.
  • the stacks up Tray 17 a stack of sheets 30 at the height level of the tray 17 lowered according to the height of the sheet stack 30 becomes.
  • the lowering can be done by a continuous gradual Lowering movement or carried out in small steps.
  • the sheet stack height is detected by the sensor 8.
  • the sensor 9 is with the control device the printing device 5 connected.
  • the sensor is 12/1 connected to the control device of the stack storage device 1.
  • Their control device starts the engine (not shown) of the belt conveyor 22. This motor is stopped when the stack 30 to be conveyed from the output unit, the sheet stack position sensor Has reached 12/2.
  • the actuating element 11 acts on the extension sensor 10, only while lowering the operation of the belt conveyor motor 22 this exposure is removed, whereby the Output unit is simulated that the carriage does not exist is extended. This will cause conflicts in the automatic Operation of the printing device with the output unit and the stack storage device 1 avoided without a common electrical control device for both the printing device and must also be provided for the stacking device.
  • the maximum height of the sheet stack 30 is to be dimensioned such that at fully lowered tray 17 the top of the sheet stack is arranged below the lower edge of the stop 13.
  • the sheet stack 30 lying on the belt conveyor 22 in this way becomes according to the control operations described above from the conveyor belts 23 in the conveying direction 31 from the output unit 2 into the stack storage device 2 or storage area 29 conveyed.
  • the process of stacking another sheet stack 30 is repeated yourself in the way indicated above.
  • 29 two sheet stacks 30 are temporarily stored.
  • the two Sheet stacks can be used during the substantially continuous Operation of the printing device 5 and the output unit 2 by the operator can be removed at any time.
  • the height of the sheet stack 30 is preferably set so that the sheet stack 30 a good manageable weight of e.g. Have 5 kg to 15 kg.
  • the absolute Height of the sheet stack 30 depends on the size of the Leaves and the properties such as Thickness, basis weight, etc. of the sheets and can be set individually for each sheet type become.
  • the operation of the stack memory device 1 is controlled by one of the printing device and the output unit 2 independent control device (not shown) controlled, which automatically the Stacking of the sheets on the tray 17, lowering the lifting table 14 and transporting the stack of sheets into the storage area 29 controls.
  • Represents the controller of the stack device 1 detects an error, it cancels the application of the extension sensor 10, whereby the control device the printing device interrupts the stacking process.
  • the control device the printing device interrupts the stacking process.
  • FIG. 3 shows a printing device with an output unit 2 and a stack storage device 1 coupled to it.
  • the stack storage device 1 is on a roller frame 32 arranged with a locking and / or locking device (not shown) releasably attached to the output unit 2 is so that their arrangement with respect to the output unit is permanent is definable. From Fig. 3 it is clear that the stack memory device 1 can be moved as a separate unit and attached to an output unit 2 and released from this again can be. With the stack storage device according to the invention 1 can subsequently, easily and quickly increase the output capacity a printing device or its output unit be enlarged.
  • the Output unit has a stop 13, a lifting table 14, longitudinal struts 15 and a slotted tray 17 with longitudinal edges 18 and Front edges 19 on.
  • the belt conveyors 22 are with three conveyor belts 23, which each loop around two conveyor rollers 24, 25, formed. It is also the same as the one described above Embodiment a receiving area 27 with a sheet receiving surface 28 and a memory area 29 are provided.
  • the tray 17 located on the lifting table 14 is with its Front edges 19 parallel and with its longitudinal edges 18 transversely to Conveying direction 33 of the belt conveyor 22 is arranged. Accordingly are the slots 20 in the tray 17 starting from the in Conveying direction 33 longitudinal edge 18 of the tray arranged at the front 17 formed parallel to the end edges 19.
  • sheets are transverse to the conveying direction 33 of the belt conveyor 22 along the transport direction 34 fed to the receiving area 27 of the stack storage device 1 (Fig. 5 to 7).
  • the transport direction 34 is usually predetermined and can by the design of the printing device cannot be changed easily.
  • the stop is accordingly 13 at the rear edge region of the Receiving area 27 parallel to the conveying direction 33 of the belt conveyor 22 arranged to be conveyed in the transport direction 34 To stop leaves over the sheet receiving surface 28.
  • the conveyor belt 23 and the slots 20 of the tray 17 are again arranged at equal distances from each other. 6 to 8, a modification is shown for this, according to which in the transport direction 34 successive conveyor belts 23 with different Distances to each other are arranged. So points which first passed from the leaves in the direction of transport 34 Conveyor belt 23 a greater distance from the second conveyor belt as the second conveyor belt 23 to the third conveyor belt 23, which is arranged adjacent to the stop 13.
  • This embodiment is advantageous because it ensures that 34 short sheets in the transport direction on at least the two conveyor belts 23 adjacent to the stop 13 for support come, and in the transport direction 34 long sheets over their entire length of all three conveyor belts 23 captured and secure in Conveying direction 33 are transported.
  • FIGS 9 and 10 A further modification of this exemplary embodiment is shown in FIGS 9 and 10 shown, according to which the tray 17 with flaps 35 is provided for closing the slots 20.
  • the cover flaps 35 have a slightly narrower width than that Slits 20 open and are double on one side edge angled lever 36 hinged to a swivel joint 37, the is located on the underside of the tray 17.
  • This simple mechanism allows opening and opening independently Closing the slots 20 of the tray 17 without additional electronic Control device or the like.
  • the cover flaps 35 can also with their actuation extension 38 be arranged on the tray so that the actuation extension on Edge of the tablet protrudes. This allows a fixed arrangement of the swiveling mandrel without telescopic rod.
  • the stack memory device according to the second embodiment can be retrofitted to an existing printing device are, wherein the conveyor is designed as a separate unit that is inserted into an existing output tray.
  • the lift table of the output bin can be without or with only the slightest constructive changes are adopted, only that Tray by a tray compatible with the conveyor needs to be replaced.
  • a any other conveyor can be provided for Transporting stacks of sheets is suitable.
  • a vertical conveyor can also be used be provided, e.g. one similar to one Pater-noster elevator working conveyor, where the Stacked on vertically stacked plates become.
  • the conveyor is for the invention essential that the incoming leaf stream into several Sheet stacks are split and saved by the operator can be easily removed. Are the longitudinal struts sufficient arranged closely side by side, so it is also possible to use the tray omit.
  • the invention can be briefly summarized as follows: The invention relates to a stack storage device.
  • the output unit is fed sheets of piled up into a stack of predetermined height and several these stacked sheets of sheets are stored in the stack storage device cached. This will easily achieved a considerable sheet capacity, while at the same time the stack size of the individual sheet stacks was kept relatively small can be, which is why they are easy to handle.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Pile Receivers (AREA)

Claims (13)

  1. Dispositif de stockage de piles pour un dispositif d'impression,
       dans lequel le dispositif d'impression comprend une unité de sortie présentant une surface de réception de feuilles (28) destinée à recevoir une pile (30) de feuilles, et comportant une butée (13) qui est agencée par rapport à la surface de réception de feuilles (28) de telle façon qu'une feuille amenée à l'unité de sortie (2) soit transportée contre la butée (13) et soit freinée par celle-ci, de manière à déposer la feuille sur la surface de réception de feuilles (28),
       dans lequel il est prévu un dispositif de levage (14) en vue de soulever et d'abaisser la surface de réception de feuilles (28), et le dispositif de stockage de piles (1) comporte un dispositif de transport (22) qui peut être introduit dans la zone de la surface de réception de feuilles (28) et qui s'étend au-dessus d'une zone de stockage (29) se trouvant à l'extérieur de la surface de réception de feuilles (28), de telle façon que la pile de feuilles (30) puisse être emportée de la surface de réception de feuilles par le dispositif de transport (22) et être stockées provisoirement dans le dispositif de stockage de piles,
       et dans lequel le dispositif de stockage de piles est conformé en module séparé qui peut être couplé de façon amovible à l'unité de sortie du dispositif d'impression.
  2. Dispositif de stockage de piles selon la revendication 1, caractérisé en ce que la surface de réception de feuilles (28) est formée par un plateau (17) compatible avec le dispositif de transport, lequel plateau peut être remplacé par un plateau du dispositif de levage de l'unité de sortie (2) du dispositif d'impression.
  3. Dispositif de stockage de piles selon la revendication 1 ou 2, caractérisé en ce que la zone de stockage (29) du dispositif de transport (22) a une longueur telle qu'au moins deux piles de feuilles (30) peuvent être stockées provisoirement.
  4. Dispositif de stockage de piles selon l'une des revendications 1 à 3, caractérisé en ce que le dispositif de transport est un transporteur à courroies (22) comportant au moins deux courroies de transport sans fin (23), et le plateau (17) présente des fentes (20), une fente (20) étant associée à chaque courroie de transport (23), et en ce que, lorsque l'on abaisse le plateau (17) au-dessous du niveau des courroies de transport (23), celles-ci sont disposées à chaque fois dans une des fentes (20) et n'entrent pas en collision avec le plateau (17).
  5. Dispositif de stockage de piles selon la revendication 4, caractérisé en ce que le transporteur à courroies (22) comporte trois courroies de transport (23), les courroies de transport (23) étant disposées à des écartements différents les unes des autres.
  6. Dispositif de stockage de piles selon la revendication 4 ou 5, caractérisé en ce qu'il est prévu sur le plateau des volets de recouvrement (35) pour fermer les fentes (20) pour le cas où le plateau (17) se trouve au-dessus du transporteur à courroies (22).
  7. Dispositif de stockage de piles selon l'une des revendications 1 à 6, caractérisé en ce que le dispositif de transport se compose de deux unités de transport séparées, une unité de transport étant agencée au niveau de la surface de réception de feuilles (28), et l'autre unité de transport étant agencée à proximité de la surface de réception de feuilles (28), et les deux unités de transport pouvant être entraínées dans le même sens de transport.
  8. Dispositif de stockage de piles selon la revendication 7, caractérisé en ce qu'au moins l'une des unités de transport est un transporteur à galets.
  9. Dispositif de stockage de piles selon la revendication 7 ou 8, caractérisé en ce qu'au moins l'une des unités de transport est conformée en bande transporteuse.
  10. Dispositif de stockage de piles selon l'une des revendications 1 à 9, caractérisé en ce que le dispositif de stockage de piles (1) comporte un dispositif de commande électronique qui est conformé indépendamment du dispositif de commande électronique du dispositif d'impression (5).
  11. Dispositif de stockage de piles selon la revendication 10, caractérisé en ce que le dispositif de commande du dispositif de stockage de piles (1) comporte un capteur de plateau de levage (12/1) pour détecter la position la plus inférieure du dispositif de levage, et un capteur de position de pile (12/2) qui détecte la position d'une pile immédiatement après que celle-ci a quitté l'unité de sortie du dispositif d'impression (2).
  12. Dispositif de stockage de piles selon la revendication 10 ou 11, caractérisé en ce que le dispositif de commande comporte un élément de réglage (11) qui peut solliciter un capteur (10) du dispositif d'impression (5), et en ce que le processus d'enlèvement de pile peut être interrompu dans l'unité de sortie (2) en actionnant ledit élément de réglage.
  13. Dispositif de stockage de piles selon l'une des revendications 1 à 12, caractérisé en ce que le dispositif de stockage de piles (1) comporte un boítier (6), et en ce que le dispositif de transport (22) fait saillie au niveau du boítier (6) de telle façon que le dispositif de transport peut être introduit dans une unité de sortie (2) d'un dispositif d'impression.
EP99965419A 1998-11-30 1999-11-30 Dispositif de stockage de piles d'un dispositif d'impression Expired - Lifetime EP1135319B1 (fr)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
DE19855191 1998-11-30
DE19855191A DE19855191C2 (de) 1998-11-30 1998-11-30 Abstapelvorrichtung für eine Ausgabeeinheit einer Druckvorrichtung
PCT/EP1999/009313 WO2000032505A2 (fr) 1998-11-30 1999-11-30 Dispositif de stockage de piles d'un dispositif d'impression

Publications (2)

Publication Number Publication Date
EP1135319A2 EP1135319A2 (fr) 2001-09-26
EP1135319B1 true EP1135319B1 (fr) 2003-04-16

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EP99965419A Expired - Lifetime EP1135319B1 (fr) 1998-11-30 1999-11-30 Dispositif de stockage de piles d'un dispositif d'impression

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EP (1) EP1135319B1 (fr)
DE (2) DE19855191C2 (fr)
WO (1) WO2000032505A2 (fr)

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US7182358B2 (en) 2001-07-06 2007-02-27 Andreas Felsl Bicycle
DE10302953B4 (de) * 2003-01-24 2005-02-24 Baumann Maschinenbau Solms Gmbh & Co. Kg Abladeanordnung und Verfahren zum sortierten Abladen von in Format und/oder Aufdruck unterschiedlicher Lagen aus blattförmigen Materialien
US7416177B2 (en) 2004-09-16 2008-08-26 Ricoh Company, Ltd. Sheet folding apparatus, sheet processing apparatus and image forming apparatus
DE502006000065D1 (de) 2005-04-27 2007-10-04 Koenig & Bauer Ag Anleger mit Sicherheitseinrichtung
DE102005019537A1 (de) * 2005-04-27 2006-11-09 Koenig & Bauer Ag Sicherheitseinrichtung im Anleger
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WO2000032505A3 (fr) 2000-11-23
DE59905108D1 (de) 2003-05-22
DE19855191C2 (de) 2002-06-20
EP1135319A2 (fr) 2001-09-26
DE19855191A1 (de) 2000-06-15
WO2000032505A2 (fr) 2000-06-08

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