EP2738746B1 - Coffret à argent avec une unité à contre-pression contenant un ressort rotatif - Google Patents

Coffret à argent avec une unité à contre-pression contenant un ressort rotatif Download PDF

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Publication number
EP2738746B1
EP2738746B1 EP12194757.6A EP12194757A EP2738746B1 EP 2738746 B1 EP2738746 B1 EP 2738746B1 EP 12194757 A EP12194757 A EP 12194757A EP 2738746 B1 EP2738746 B1 EP 2738746B1
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EP
European Patent Office
Prior art keywords
counter
torsion spring
pressure unit
cash box
gearwheel
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.)
Active
Application number
EP12194757.6A
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German (de)
English (en)
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EP2738746A1 (fr
Inventor
André MICHELS
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.)
Wincor Nixdorf International GmbH
Original Assignee
Wincor Nixdorf International GmbH
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 Wincor Nixdorf International GmbH filed Critical Wincor Nixdorf International GmbH
Priority to EP12194757.6A priority Critical patent/EP2738746B1/fr
Priority to PCT/EP2013/062005 priority patent/WO2014082760A1/fr
Publication of EP2738746A1 publication Critical patent/EP2738746A1/fr
Application granted granted Critical
Publication of EP2738746B1 publication Critical patent/EP2738746B1/fr
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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
    • B65H31/04Pile receivers with movable end support arranged to recede as pile accumulates
    • B65H31/12Devices relieving the weight of the pile or permitting or effecting movement of the pile end support during piling
    • B65H31/14Springs
    • 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
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07DHANDLING OF COINS OR VALUABLE PAPERS, e.g. TESTING, SORTING BY DENOMINATIONS, COUNTING, DISPENSING, CHANGING OR DEPOSITING
    • G07D11/00Devices accepting coins; Devices accepting, dispensing, sorting or counting valuable papers
    • G07D11/10Mechanical details
    • G07D11/12Containers for valuable papers
    • G07D11/13Containers for valuable papers with internal means for handling valuable papers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H2402/00Constructional details of the handling apparatus
    • B65H2402/50Machine elements
    • B65H2402/54Springs, e.g. helical or leaf springs
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H2403/00Power transmission; Driving means
    • B65H2403/40Toothed gearings
    • B65H2403/41Rack-and-pinion, cogwheel in cog railway

Definitions

  • the invention relates to a cash box, which comprises a receiving area for receiving a value note stack, wherein the notes of value can be fed to the receiving area in a depositing direction by machine. Furthermore, the cashbox has a arranged in the receiving area, movable in the depositing direction and against the storage direction counter-pressure unit for exercising a counter to the deposit direction counter-pressure force on a recordable in the receiving area value note stack. In addition, an elastic element is provided, which biases the counter-pressure unit against the depositing direction for generating the counter-pressure force. Furthermore, the invention relates to such a counter pressure unit for cash boxes.
  • the notes of value received in cash cassettes are received in the cash cassettes in the form of a value note stack, with the notes of value contacting each other with their front and / or back sides.
  • the notes of value are here supplied by means of supply and / or withdrawal modules from the head of the cashbox the receiving area and / or removed. In this case, newly supplied notes of value are pressed against the face of the value-note stack already received in the cash-box.
  • this counter-pressure unit is moved in each case according to the amount of recorded notes in the storage direction or against the storage direction.
  • a known possibility for this is to move the counter-pressure unit by means of a drive unit, for example a motor, according to the direction of deposit or against the direction of deposit.
  • the disadvantage of this is that such structures are expensive and require appropriate control.
  • such counter-pressure units moved by drive units require a large number of sensors and actuators in order to reliably apply the necessary counter-pressure force. As a result, the production is costly and expensive.
  • the force acting on the counterpressure unit by the value stack increases the more notes of value the value note stack comprises. Is by the drive unit always generates the same counter-pressure force, this has the consequence that the contact pressure, against the newly added notes of value are supplied to the value note stack, the lower, the more notes of value are already included in the receiving area.
  • Another possibility is to attach the counter-pressure unit via pressure or tension springs on a bottom element of the cashbox, so that the counterpressure force is applied via these tension or compression springs.
  • a cashbox is known for example from German patent application 10th 2011 000 790.3 known.
  • the disadvantage of this is that this space-consuming and prone to errors, since the open arranged in the cash box pressure or tension springs can be moved by contact with others in components and / or in the handling of the cashbox from its predetermined position.
  • the document EP 1 465 123 A1 describes a cashbox whose Andruckwagen is biased by a compression spring.
  • the elastic element comprises a torsion spring, which is arranged on the counter-pressure unit.
  • such a spring has the advantage that the counter-pressure force applied by it becomes greater, the more notes of value the recorded value note stack comprises, so that the depositing of the newly supplied notes of value always takes place counter to the same force, so that a particularly secure, reliable and reliable uniform storage of notes of value is ensured in the storage direction.
  • the provision of a torsion spring directly on the counter-pressure unit has the advantage that a particularly compact and space-saving design is achieved.
  • the torsion spring is always moved together with the counter-pressure unit in the storage direction or against the storage direction and is not, like compression or tension springs, fixed only at one end to the counter-pressure unit and with the other end to the housing. Thus, the error rate is reduced.
  • the cash box comprises, in particular, a feed unit, via the notes of value supplied in a feed direction of the cash box in the depositing direction to the receiving area be supplied.
  • a diversion of the notes of value from the feed direction into the actual depositing direction can take place.
  • the feed unit is arranged in particular in a head region of the cashbox.
  • the counterpressure unit can be moved, in particular, over the entire receiving area, ie, from the feed unit to a housing part of a housing of the cashbox opposite the feed unit.
  • the counter-pressure unit preferably has at least one recess in which the torsion spring is at least partially, preferably completely received.
  • the counter-pressure unit has a housing which surrounds the torsion spring at least partially, preferably completely.
  • the torsion spring is surrounded on all sides by the housing, so that it is protected by the housing and thus is not exposed to environmental influences.
  • the counterpressure unit has at least a first gear whose teeth engage in the toothing of the first rack and with the aid of which the counter-pressure unit is mounted on the first rack.
  • At least one second rack is provided in the cash box, wherein the counter-pressure unit has a second gear meshing with the teeth of the second rack and with the first gear.
  • the counter-pressure unit comprises at least a third toothed wheel whose toothing engages in the toothing of the third toothed rack and with the aid of which the counterpressure unit is mounted on the third toothed rack.
  • the cash box may have a fourth rack and the counter-pressure unit a fourth gear, wherein the fourth gear meshes with the teeth of the fourth rack and with the third gear.
  • a two-sided storage of the counter pressure unit on the two side walls reaches the cashbox, so that the counter-pressure unit is guided uniformly in the storage direction and against the storage direction and in particular a tilting and / or tilting is avoided.
  • the second gear and the fourth gear are in particular connected to each other via a shaft, wherein the two gears are each rotatably mounted on this shaft.
  • the torsion spring is in particular so coupled to the first gear that the torsion spring is twisted in a first rotational direction upon rotation of the first gear. This ensures that the torsion spring is all the more twisted, the more the first gear is rotated and thus the more the counter-pressure unit is moved in the direction of deposit. Thus, the more counterprints are received in the receiving area, the more the amount of counterprints generated by the weight of the bill stack is compensated for, and the force that must be applied to supply a new bill, regardless of Number of recorded banknotes is always about the same.
  • the torsion spring is coupled to the first gear in such a way that the torsion spring is relaxed during a rotation of the first gear in a second rotational direction opposite to the first rotational direction.
  • the second direction of rotation is in this case in particular that direction of rotation in which the gearwheel is rotated when the counterpressure unit moves counter to the depositing direction.
  • the first rotational direction of the gear is the direction of rotation in which the gear is rotated when a bill of exchange is supplied.
  • the note When feeding the note of value, the note is pressed against the front of the already recorded value note stack.
  • the counter-pressure unit is moved counter to the restoring force of the torsion spring in the depositing direction, so that the value note can be fed to the receiving area.
  • the first gear is engaged with the first rack such that the first gear moves the counter-pressure element is rotated in the direction of deposition in the first direction of rotation and when moving counter to the direction of deposition in the second direction of rotation.
  • the torsion spring comprises a wound wire having a first end and a second end.
  • the torsion spring is supported on the housing via the first end and is coupled to the first gear via the second end in such a way that the second end is rotated upon rotation of the first gear.
  • the first gear is in particular rotatably mounted on a shaft, wherein the second end of the wire is fixed to this shaft, so that upon rotation of the first gear and thus a rotation of the shaft, the second end of the wire is rotated, so that the torsion spring accordingly is twisted and thus the counter-pressure force is increased.
  • the shaft has a hole into which the second end of the wire is inserted. This allows a particularly simple installation of the counter-pressure unit.
  • the third gear may be coupled to the torsion spring such that upon rotation of the third gear in the Direction in which the third gear when supplying notes of value, that is rotated when moving the counter-pressure unit in the storage direction, the torsion spring is also twisted and thus the counter-pressure force is increased.
  • a torsion spring is used, the characteristic of which is such that the increase of the applied counterpressure force by supplying a bill of exchange approximately corresponds to the weight of this bill of exchange, so that the force which must be applied for supplying further banknotes to the receiving area always is about the same force.
  • the feeder unit must always press the new banknotes to be delivered against the front of the banknote stack with the same force.
  • a counter-pressure unit for cash boxes comprising an elastic member for biasing the counter-pressure unit against a depositing direction for generating a counter-pressure force when the counter-pressure unit is inserted in a cash box.
  • the elastic element comprises at least one arranged on the counter-pressure unit torsion spring.
  • the counterpressure unit can in particular be further developed with the features previously described in connection with the counterpressure unit of the cashbox.
  • FIG. 1 is a schematic, perspective view of a cashbox 10 for receiving notes of value shown.
  • parts of the housing 12 of the cashbox 10 are hidden, so that the internal components are more visible.
  • cashbox 10 is a pure depository cassette, that is, that the cashbox 10 is used exclusively for depositing banknotes and the stored banknotes are not removed again by machine for a payment of the cashbox 10.
  • the cash box 10 can also be a recycling cassette, ie the cash box 10 can be supplied with notes of value as well as withdrawn again.
  • the cashbox 10 can also be a pure cashout cassette, ie the recorded banknotes are taken exclusively but no new banknotes are mechanically fed.
  • the banknotes can be both banknotes and checks, with the Size of the cashbox can be adjusted according to the recorded notes of value.
  • the cash box 10 comprises a supply unit 14, via which notes of value mechanically fed to the cash box 10 can be supplied to a receiving area 16 of the cash box 10 for receiving a value note stack.
  • the feed unit 14, which is shown purely schematically, is in this case designed such that it moves the notes of value in a depositing direction P1 into the receiving area 16, wherein the notes of value are moved forward with their front or rear side into the receiving area 16, so that the notes of value are at an operational level Arrangement of the cashbox 10, as this in FIG. 1 is shown, rest with their front and back sides on each other.
  • the cash box 10 is particularly intended for vertical use in a bill handling apparatus.
  • a counter-pressure unit 100 is provided in the receiving area 16, the value-added stack accommodated in the receiving area 16 being accommodated in the area between this counter-pressure unit 100 and the feed unit 14.
  • the counter-pressure unit 100 as will be described in more detail below, a counter-pressure P1 directed against the direction of deposit P1 is exerted on the value-dept stack.
  • the feed unit 14 exerts a feed force directed into the depositing direction onto the newly supplied notes of value and thus the value note stack, so that the counterpressure unit 100 advances the advances against the counterpressure force applied by it is moved in the storage direction P1, the more notes of value are received in the receiving area 16.
  • the counter-pressure force applied by the counter-pressure unit 100 that the banknotes of the banknote stack are always held together by a predetermined contact pressure and thus slippage of the banknotes against each other and / or tilting of the banknotes is avoided. This ensures that new banknotes can be fed safely via the feed unit 14.
  • FIG. 2 and 3 is schematic, perspective views of a section of the cashbox 10 after FIG. 1 shown.
  • housing parts and also other elements of the cashbox 10 are not shown in order to better represent the storage of the counter-pressure unit 100 described below on the housing 12 of the cashbox 10.
  • the back pressure unit 100 is in FIG. 4 shown isolated.
  • the back pressure unit 100 includes a first gear 102 and a second gear 104 that mesh with each other. Further, on one of the side on which the first gear 102 and the second gear 104 are arranged, opposite side a third gear 106 and the third gear 106 meshing fourth gear 108 is provided.
  • the cash box 100 includes a first rack 20, a second rack 22, a third rack 24, and a fourth rack 26 that are parallel to each other.
  • the racks 20 to 26 are all directed in the direction of deposit P1.
  • the first gear 102 is engaged with the first rack 20, the second gear 104 with the second rack 22, the third gear 106 with the third rack 24 and the fourth gear 108 with the fourth rack 26 in engagement.
  • the second gear 104 and the fourth gear 108 are each rotationally fixed on a common shaft 110 (FIG. FIG. 5 ), so that all four gears 102 to 108 are engaged with each other and thus always rotated uniformly. This ensures that the counter-pressure unit is moved uniformly in the depositing direction P1 and against the depositing direction P1 and can not tilt it.
  • a value unit stack contacting contact unit 30 always has the same orientation within the cashbox 10, so that a secure concern of the value note stack is ensured on the contact unit 30 and thus also on the counter-pressure unit 100.
  • the contact unit 30 is in this case attached in particular via a plurality of compression springs on the counter-pressure unit 100 and is moved together with the counter-pressure unit 100 in the direction of deposit P1 and against the deposit direction P1.
  • the counterpressure unit 100 comprises a housing 112, which has a first housing part 114 and a second housing part 116.
  • the first housing part 114 is hidden so that the internal components of the back pressure unit 100, which are protected by the housing 112, are more visible.
  • a torsion spring 118 is arranged, which has a wound wire 120 having a first end 122 and a second end 124.
  • the torsion spring 118 is supported with its first end 122 on the housing 112, so that this first end 122 of the torsion spring 118 is mounted in a rotationally fixed relative to the housing 112.
  • the first gear 102 is rotatably mounted on a shaft 130, so that the shaft 130 is rotated accordingly with a rotation of the gear 104.
  • the second end 124 of the torsion spring 120 is also secured to the shaft 130 by being inserted into a hole 132 of the shaft 130.
  • This portion of the back pressure unit 100 is shown enlarged in detail.
  • the shaft 130 is rotated in the second rotational direction P2, so that the torsion spring 118 is twisted.
  • the required for the safe storage of notes of value in the receiving area 16 counter-pressure force is applied.
  • the torsion spring 118 is all the more twisted, the more notes of value are received in the receiving area 16, since the counter-pressure unit 100 is further moved in accordance with the deposit direction P1.
  • the more counterprints the recorded value note stack comprises, the greater the applied counterpressure force.
  • the characteristic of the torsion spring 118 is chosen in particular such that the weight force additionally acting by feeding new notes of value is approximately compensated by the corresponding greater counterpressure force due to the further twisting of the torsion spring 118, so that the feed force to be applied by the feed unit 14 is independent of the number the already recorded notes are about the same.
  • the previously described embodiment with a torsion spring 118 has the advantage that the counter-pressure force is applied purely passive, ie that no drive unit for moving the counter-pressure unit 100 is necessary.
  • the Moving the counter pressure unit 100 in the storage direction P1 is effected exclusively by the force applied by the feed unit 14, moving counter to the feed direction P1 by the force applied via the torsion spring 118 counter-pressure force, if notes of value are removed and thus the force acting on the counter-pressure unit 100 force is reduced.
  • the torsion spring 118 is completely received in the housing 116, it is ensured that it does not come into contact with other components of the cashbox 100 or with the banknotes, so that a particularly simple, space-saving and reliable construction is provided.
  • more than one torsion spring 118 may be provided.
  • two torsion springs 118 may be provided, wherein one torsion spring 118 is connected to the first gear 102 and the other torsion spring 118 to the third gear 106.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Pile Receivers (AREA)
  • Sheets, Magazines, And Separation Thereof (AREA)

Claims (13)

  1. Caisse à espèces,
    comprenant une zone de réception (16) destinée à recevoir une pile de documents de valeur, les documents de valeur pouvant être amenés mécaniquement à la zone de réception (16) dans une direction de dépôt,
    une unité de contre-pression (100) agencée dans la zone de réception (16), mobile dans la direction de dépôt (P1) et à l'encontre de la direction de dépôt (P1) et servant à exercer une force de contre-pression orientée à l'encontre de la direction de dépôt (P1) sur une pile de documents de valeur pouvant être logée dans la zone de réception (16), et
    un élément élastique, lequel précontraint l'unité de contre-pression (100) à l'encontre de la direction de dépôt (P1) pour produire la force de contre-pression,
    l'élément élastique comportant au moins un ressort de torsion (118) agencé sur l'unité de contre-pression (100),
    caractérisée en ce que l'unité de contre-pression (110) comporte un boîtier (112), et en ce que le ressort de torsion (118) est entièrement agencé à l'intérieur de ce boîtier (112), et
    en ce que le ressort de torsion (118) est entouré de toutes parts par le boîtier (112).
  2. Cassette à espèces (10) selon la revendication 1, caractérisée en ce que l'unité de contre-pression (100) présente un évidement dans lequel le ressort de torsion (118) est reçu au moins en partie, de préférence intégralement.
  3. Cassette à espèces (10) selon l'une quelconque des revendications précédentes, caractérisée en ce qu'au moins une première crémaillère (20) s'étendant dans la direction de dépôt (P1) est agencée dans la zone de réception (16), et en ce que l'unité de contre-pression (100) comporte au moins une première roue dentée (102) dont la denture s'insère dans la denture de la première crémaillère (20) et à l'aide de laquelle l'unité de contre-pression (100) est montée sur la première crémaillère (8).
  4. Cassette à espèces (10) selon la revendication 3, caractérisée en ce que la cassette à espèces (10) comprend une deuxième crémaillère (22) s'étendant dans la direction de dépôt (P1), en ce que l'unité de contre-pression (100) comprend une deuxième roue dentée (104), qui s'engrène avec la denture de la deuxième crémaillère (22) et avec la première roue dentée (102).
  5. Cassette à espèces (10) selon la revendication 3 ou 4, caractérisée en ce qu'au moins une troisième crémaillère (24) s'étendant dans la direction de dépôt (P1) est agencée dans la zone de réception (16) sur le côté qui est opposé au côté sur lequel la première crémaillère (20) est agencée, et en ce que l'unité de contre-pression (100) comprend au moins une troisième roue dentée (116) dont la denture s'insère dans la denture de la troisième crémaillère (24) et à l'aide de laquelle l'unité de contre-pression (100) est montée sur la troisième crémaillère (24).
  6. Cassette à espèces (10) selon la revendication 5, caractérisée en ce que la cassette à espèces (10) comprend une quatrième crémaillère (26) s'étendant dans la direction de dépôt (P1), en ce que l'unité de contre-pression (100) comprend une quatrième roue dentée (108), qui s'engrène avec la denture de la quatrième crémaillère (26) et avec la troisième roue dentée (106).
  7. Cassette à espèces (10) selon l'une quelconque des revendications 3 à 6, caractérisée en ce que le ressort de torsion (118) est accouplé à la première roue dentée (102) de telle manière que le ressort de torsion (118) est tordu lorsque la première roue dentée (102) est amenée en rotation dans une première direction de rotation (P2).
  8. Cassette à espèces (10) selon la revendication 7, caractérisée en ce que le ressort de torsion (118) est accouplé à la première roue dentée (102), de telle manière que le ressort de torsion (118) est détendu lorsque la première roue dentée (102) se trouve dans une deuxième direction de rotation opposée à la première direction de rotation (P2).
  9. Cassette à espèces (10) selon la revendication 7 ou 8, caractérisée en ce que la première roue dentée (102) est en prise avec la première crémaillère (20) de telle manière que la première roue dentée (102) est amenée en rotation dans la première direction de rotation (P2) lorsque l'unité de contre-pression se déplace dans la direction de dépôt (P1) et dans la deuxième direction de rotation lorsque l'unité de contre-pression se déplace à l'encontre de la direction de dépôt (P1).
  10. Cassette à espèces (10) selon l'une quelconque des revendications 3 à 9, caractérisée en ce que le ressort de torsion (118) comprend un fil enroulé (120) présentant une première extrémité (122) et une deuxième extrémité (124), en ce que le ressort de torsion (118) s'appuie sur le boîtier (112) par la première extrémité (122), et en ce que la deuxième extrémité (124) est accouplée à la première roue dentée (102) de telle manière qu'elle est amenée en rotation lors d'une rotation de la première roue dentée (102).
  11. Cassette à espèces (10) selon la revendication 10, caractérisée en ce que la première roue dentée (102) est montée solidaire en rotation sur un arbre (130), et en ce que la deuxième extrémité (124) du fil (120) est fixée sur l'arbre (130).
  12. Cassette à espèces selon la revendication 11, caractérisée en ce que l'arbre (130) comprend un trou dans lequel la deuxième extrémité (124) du fil (120) est enfoncée.
  13. Unité de contre-pression pour cassettes à espèces,
    comprenant un élément élastique servant à pré-contraindre l'unité de contre-pression à l'encontre d'une direction de dépôt (P1) pour produire une force de contre-pression lorsque l'unité de contre-pression (100) est insérée dans une cassette à espèces (10),
    l'élément élastique comprenant au moins un ressort de torsion (118),
    caractérisée en ce que l'unité de contre-pression (110) comprend un boîtier (112), et en ce que le ressort de torsion (118) est agencé entièrement à l'intérieur de ce boîtier (112), et
    en ce que le ressort de torsion (118) est entouré de toutes parts par le boîtier (112).
EP12194757.6A 2012-11-29 2012-11-29 Coffret à argent avec une unité à contre-pression contenant un ressort rotatif Active EP2738746B1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
EP12194757.6A EP2738746B1 (fr) 2012-11-29 2012-11-29 Coffret à argent avec une unité à contre-pression contenant un ressort rotatif
PCT/EP2013/062005 WO2014082760A1 (fr) 2012-11-29 2013-06-11 Caisse à espèces pourvue d'une unité de contre-pression comprenant un ressort de torsion et/ou un ressort d'entraînement

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP12194757.6A EP2738746B1 (fr) 2012-11-29 2012-11-29 Coffret à argent avec une unité à contre-pression contenant un ressort rotatif

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EP2738746A1 EP2738746A1 (fr) 2014-06-04
EP2738746B1 true EP2738746B1 (fr) 2016-07-13

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Publication number Priority date Publication date Assignee Title
EP2919205B1 (fr) 2014-03-10 2021-11-10 Wincor Nixdorf International GmbH Cassette d'espèces comprenant une unité de pression possédant un élément d'encliquetage élastique
KR102580006B1 (ko) * 2016-11-18 2023-09-19 효성티앤에스 주식회사 매체 저장 카세트
CN114098313B (zh) * 2021-12-02 2023-08-18 甘肃中医药大学 一种跨境电商经济与贸易数据管理装置

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GB2136498B (en) * 1983-03-16 1986-07-09 Burroughs Corp Money cassette for an autoteller
DE10151145B4 (de) * 2001-10-17 2010-04-08 Giesecke & Devrient Gmbh Kassette zur Aufnahme von Wertdokumenten
US8146914B2 (en) * 2003-04-01 2012-04-03 Mei, Inc. Currency cassette pressure plate assembly
JP5124254B2 (ja) * 2007-12-07 2013-01-23 株式会社ユニバーサルエンターテインメント 紙幣処理装置
EP2481029B1 (fr) * 2009-09-22 2016-11-02 Crane Payment Innovations, Inc. Ensemble stockage de documents
DE102011000790A1 (de) 2011-02-17 2012-08-23 Wincor Nixdorf International Gmbh Vorrichtung zur Handhabung von Wertscheinen mit einem Zuführmodul mit verfahrbaren Rückhalteelementen

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WO2014082760A1 (fr) 2014-06-05
EP2738746A1 (fr) 2014-06-04

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