EP2874126B1 - Münzvereinzelungsgerät mit einer Münzausgabepressvorrichtung - Google Patents

Münzvereinzelungsgerät mit einer Münzausgabepressvorrichtung Download PDF

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Publication number
EP2874126B1
EP2874126B1 EP13193476.2A EP13193476A EP2874126B1 EP 2874126 B1 EP2874126 B1 EP 2874126B1 EP 13193476 A EP13193476 A EP 13193476A EP 2874126 B1 EP2874126 B1 EP 2874126B1
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EP
European Patent Office
Prior art keywords
coin
hopper
rotating disk
coins
delivering
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
EP13193476.2A
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English (en)
French (fr)
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EP2874126A1 (de
Inventor
Tien-Yuan Chien
Dong-Ying Yang
Chia-Hung Hu
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.)
International Currency Technologies Corp
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International Currency Technologies Corp
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Publication date
Application filed by International Currency Technologies Corp filed Critical International Currency Technologies Corp
Priority to ES13193476.2T priority Critical patent/ES2562227T3/es
Priority to PL13193476T priority patent/PL2874126T3/pl
Priority to EP13193476.2A priority patent/EP2874126B1/de
Priority to PT131934762T priority patent/PT2874126E/pt
Priority to HUE13193476A priority patent/HUE028663T2/en
Publication of EP2874126A1 publication Critical patent/EP2874126A1/de
Application granted granted Critical
Publication of EP2874126B1 publication Critical patent/EP2874126B1/de
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    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07DHANDLING OF COINS OR VALUABLE PAPERS, e.g. TESTING, SORTING BY DENOMINATIONS, COUNTING, DISPENSING, CHANGING OR DEPOSITING
    • G07D9/00Counting coins; Handling of coins not provided for in the other groups of this subclass
    • G07D9/008Feeding coins from bulk
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07DHANDLING OF COINS OR VALUABLE PAPERS, e.g. TESTING, SORTING BY DENOMINATIONS, COUNTING, DISPENSING, CHANGING OR DEPOSITING
    • G07D5/00Testing specially adapted to determine the identity or genuineness of coins, e.g. for segregating coins which are unacceptable or alien to a currency
    • G07D5/02Testing the dimensions, e.g. thickness, diameter; Testing the deformation
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07DHANDLING OF COINS OR VALUABLE PAPERS, e.g. TESTING, SORTING BY DENOMINATIONS, COUNTING, DISPENSING, CHANGING OR DEPOSITING
    • G07D9/00Counting coins; Handling of coins not provided for in the other groups of this subclass
    • G07D9/04Hand- or motor-driven devices for counting coins

Definitions

  • the present invention relates to coin dispensing technology and more particularly, to a coin hopper, which uses a spring-loaded float to adjust a coin-delivery gap, enabling coins having different thicknesses to be individually and smoothly delivered to a coin outlet for dispensing and avoiding a coin stuck problem.
  • a coin hopper is designed for use in a coin exchange machine, gambling machine, amusement machine or vending machine for sending out or issuing coins or tokens one by one.
  • coins or token having different thicknesses, sizes and/or shapes may be used in different countries or different machines.
  • a conventional coin hopper is known using a motor to rotate a rotating disc for dispensing coins/tokens.
  • the rotating disc has a plurality of equiangularly spaced pins.
  • a guide member and a micro switch are respectively mounted in the inner side and outer side of the coin outlet of the coin hopper.
  • coins/tokens are pushed one by one by the pins of the rotating disc toward the coin outlet and then guided out of the coin outlet by the guide member.
  • a lever is provided between the rotating disk and the coin outlet for pushing a stacked coin away, avoiding a coin stuck problem.
  • FIG. 10 illustrates a coin hopper according to the prior art design.
  • the coin hopper comprises a hopper body A , a rotating disk A1 rotatably mounted in the hopper body A and defining a plurality of coin grooves A11, an axle A2 and a stop member A3 disposed near the periphery of the rotating disk A1, and a coin-dispensing mechanism B.
  • the coin-dispensing mechanism B comprises a spring member B2 , and a lever B1 that has one end thereof pivotally coupled to the axle A2 and a bearing portion B11 located on an opposite end thereof and pressed on the stop member A3 .
  • the lever B1 is pivotally coupled to the axle A2 and supported on the spring member B2 .
  • these coins C will give different pressure to the lever B1 against the spring member B2 , causing stress concentration.
  • the spring member B2 will wear and fail quickly. Further, it is difficult to control the gap between the lever B1 and the coin groove A11 of the rotating disk A1 subject to the thickness of the coin C being delivered.
  • coins C may be delivered in a stack, causing a coin stuck problem.
  • Document EP1998293 discloses a coin hopper having pressing means using spherical bearers to push the coins towards the exit, also comprising other mechanisms such as a thickness holder and a presser to avoid any double fed.
  • Document US5167571 discloses a coin hopper having a pressing pad to push the coins to be delivered towards the rotating plate to avoid any unnecessary shaking of the coins.
  • Document EP2410495 discloses a coin hopper having a coin outlet ramp that retracts one of the lateral partitions holding a coin to dispense it through the output path.
  • the present invention has been accomplished under the circumstances in view. It is therefore the main object of the present invention to provide a coin hopper, which is practical for dispensing coins/tokens having different thicknesses, preventing a coin stuck problem.
  • a coin hopper of the invention comprises a coin-dispensing unit and a coin-delivering presser.
  • the coin-dispensing unit comprises a hopper defining a coin outlet, a rotating disk rotatably mounted in the hopper, a circuit module, a power drive controlled by the circuit module to rotate the rotating disk, and a sensor module controlled by the circuit module to detect the value and authenticity of coins having different thicknesses.
  • the coin-delivering presser is mounted in the hopper, comprising an elastic member and a float rotatably supported on the elastic member for pressing on one coin in the rotating disk, enabling coins to be individually and smoothly delivered to the coin outlet for dispensing during rotation of the rotating disk and avoiding a coin stuck problem.
  • the gap between the float and the rotating disk is automatically adjustable for allowing delivery of one individual thick coin or thin coin therethrough.
  • the friction force thus produced between the float and the coin is sufficient to move the coin toward the coin outlet without causing damage.
  • the friction force thus produced between the float and the coin is small, avoiding an overpressure.
  • the elastic member will not wear quickly with use.
  • the coin hopper for use in a coin dispenser in accordance with the present invention is shown.
  • the coin hopper comprises a coin-dispensing unit 1 and a coin-delivering presser 2.
  • the coin-dispensing unit 1 comprises a hopper 11 comprising a hopper body 111 and a support base 112, a rotating disk 12, and a power drive 13.
  • the support base 112 defines a through hole 1121 at a selected location.
  • the hopper body 111 defines an accommodation chamber 10, a top opening 101 disposed at a top side thereof in communication with the accommodation chamber 10 and the atmosphere, and a back opening 113 disposed in a back side thereof in communication with the accommodation chamber 10 and the atmosphere.
  • the rotating disk 12 is rotatably supported on a front side of the support base 112 of the hopper 11 and rotatably positioned in the back opening 113 of the hopper body 111.
  • the power drive 13 comprises a motor 131 mounted in a back side of the support base 112 of the hopper 11, and a transmission mechanism 132 mounted in the back side of the support base 112 of the hopper 11 and coupled to the motor 131.
  • the transmission mechanism 132 comprises an output shaft 1321 inserted through the through hole 1121 of the support base 112 and coupled to the rotating disk 12.
  • the motor 131 can be driven to rotate the transmission mechanism 132 and the rotating disk 12 relative to the hopper 11.
  • the hopper 11 of the coin-dispensing unit 1 further comprises a coin outlet 110 defined between the hopper body 111 and the support base 112 and disposed in communication between the inside space of the support base 112 and the atmosphere and facing toward the circumference of the rotating disk 12, a stopper member 114 located on the front side of the support base 112 below the coin outlet 110, a coin ejection mechanism 115 pivotally mounted at the front side of the support base 112 above the coin outlet 110 and disposed opposite to the stopper member 114 and comprising a torsion spring 1151 (see FIG. 6 ), and a back cover 116 covered on the back side of the support base 112.
  • the back cover 116 defines therein a receiving chamber 1161.
  • the coin-dispensing unit 1 further comprises a sensor module 14 mounted in the support base 112 corresponding to the coin outlet 110, and a circuit module 15 mounted in the receiving chamber 1161 within the back cover 116 and electrically connected with the power drive 13 and the sensor module 14.
  • the support base 112 of the hopper 11 of the coin-dispensing unit 1 defines a recessed portion 1101 corresponding to the coin outlet 110 for receiving one end of the coin ejection mechanism 115 and guiding pivot motion of the coin ejection mechanism 115.
  • the hopper body 111 of the hopper 11 of the coin-dispensing unit 1 comprises a smoothly arched mounting slot 1131 extending along an upper part of the back opening 113.
  • the rotating disk 12 comprises a plurality of coin-pushing units 121 located on a front side thereof and arranged around a circle.
  • Each coin-pushing unit 121 comprises a plurality of smoothly arched ribs 1211 equally spaced from one another in direction away from the center of the rotating disk 12 in a parallel manner, a smoothly arched groove 1212 defined between each two adjacent smoothly arched ribs 1211, and a push block 1213 located at one end of each smoothly arched rib 1211.
  • the stopper member 114 comprises a beveled guide face 1141 sloping downwardly outwardly from a top side thereof, and a plurality of stop blocks 1142 located on a back side thereof and respectively inserted into the smoothly arched grooves 1212 of one coin-pushing unit 121 of the rotating disk 12 (see FIGS. 8 and 9 ).
  • the coin-delivering presser 2 comprises a base member 21, a cover member 22, a float 23 and an elastic member 24.
  • the base member 21 comprises an accommodation hole 211 for accommodating the float 23, a stop flange 2111 extending around one end of the accommodation hole 211 for stopping the float 23 in the accommodation hole 211, a locating groove 2112 extending around an opposite end of the accommodation hole 211, and a plurality of hook blocks 212 spaced around the border thereof.
  • the cover member 22 of the coin-delivering presser 2 is capped on the base member 21 and fastened to the base member 21 by, for example, a hook joint.
  • the cover member 22 and the base member 21 can be fastened together with screws or high-frequency heat sealing.
  • the cover member 22 comprises a receiving chamber 20 for accommodating the float 23 and the elastic member 24, comprising a first bevel wall 221 and a second bevel wall 222 disposed at two opposite lateral sides thereof and defining therebetween an acute angle, a mounting flange 223 backwardly extended from a rear side thereof, and a plurality of mounting through holes 2231 cut through the mounting flange 223.
  • the cover member 22 further comprises an inside tube 224 suspending in the receiving chamber 20 and facing toward the base member 21, a plurality of hook holes 225 spaced around the periphery thereof adjacent to the outer open side 201 of the receiving chamber 20 and respectively forced into engagement with the hook blocks 212 of the base member 21.
  • the inside tube 224 comprises an axially extending tube hole 2241 and an annular locating flange 2242 located at a distal end thereof around the axial extending tube hole 2241 and positioned in the locating groove 2112 of the base member 21.
  • the float 23 in this embodiment is a rolling ball. In actual application, the float 23 can be a rolling cylinder or elliptical cylinder.
  • the elastic member 24 can be, for example, a compression spring, having its one end inserted into the axially extending tube hole 2241 of the inside tube 224 and its other end stopped against the float 23.
  • the coin-delivering presser 2 When assembling the coin hopper, the coin-delivering presser 2 is fastened to the hopper body 111 of the hopper 11 of the coin-dispensing unit 1 adjacent to the coin outlet 110 between the hopper body 111 and the support base 112 by: attaching the mounting flange 223 of the cover member 22 of the coin-delivering presser 2 to the inside wall of the hopper body 111 adjacent to the back opening 113 to aim the mounting through holes 2231 of the cover member 22 at the smoothly arched mounting slot 1131 of the hopper body 111 and then inserting respective screw bolts (not shown) through the mounting through holes 2231 of the cover member 22 at the smoothly arched mounting slot 1131 and fastening respective screw nuts (not shown) to the respective screw bolts to affix the mounting flange 223 of the cover member 22 to the hopper body 111.
  • the user can loosen the screw nuts and then move the coin-delivering presser 2 along the smoothly arched mounting slot 1131 to adjust the position of the coin-delivering presser 2 relative to the coin outlet 110 of the hopper 11, and then fasten up the screw nuts after adjustment of the position of the coin-delivering presser 2.
  • the float 23 is aimed at the rotating disk 12 and kept apart the rotating disk 12 at a predetermined distance.
  • the coin hopper can be used independently.
  • the coin hopper can be used in an automatic vending machine, a game machine, or any consumer system for selling consumer services.
  • the circuit module 15 After installation of the coin hopper in a main unit of an automatic vending machine, game machine or consumer system, the circuit module 15 is electrically connected to the main unit by a transmission line.
  • the circuit module 15 controls the operation of the power drive 13 to rotate the rotating disk 12, and the operation of the sensor module 14 to detect the amount, value and authenticity of coins.
  • the sensor module 14 and the circuit module 15 are of the known art and not within the scope of the claims of the present invention, no further detailed description in this regard will be necessary.
  • Some other coins 3 or 4 that are squeezed by the stop blocks 1142 of the stopper member 114 are forced to move downwardly along the beveled guide face 1141 to bias the coin ejection mechanism 115, causing the torsion spring 1151 to store elastic potential energy. As soon as squeezing pressure is released from the downwardly moving coins 3 or 4, the torsion spring 1151 immediately forces the coin ejection mechanism 115 to push the coins 3 or 4 out of the coin outlet 110 of the hopper 11.
  • the push blocks 1213 of the coin-pushing units 121 of the rotating disk 12 push the coins 3;4 to move to the gap between the float 23 of the coin-delivering presser 2 and the rotating disk 12 in proper order, or to move down along the first bevel wall 221 and second bevel wall 222 of the cover member 22.
  • this thick coin 3 pushes the float 23 toward the inside of the accommodation hole 211 of the base member 21 to compress the elastic member 24 due to that the thickness of the thick coin 3 is larger than the distance between the float 23 of the coin-delivering presser 2 and the rotating disk 12, and the float 23 is kept rotating over the thick coin 3 during continuous rotation of the rotating disk 12, enabling the thick coin 3 to be carried to the sensor module 14 adjacent to the coin outlet 110 where the sensor module 14 detect the value and authenticity of the thick coin 3.
  • the friction force thus produced between the float 23 and the thick coin 3 is small but sufficient to move the thick coin 3 to the sensor module 14 for recognition.
  • the distance between the float 23 of the coin-delivering presser 2 and the rotating disk 12 is larger than the thickness of thin coins 4. If one thin coin 4 is carried by the rotating disk 12 of the coin hopper 1 to the gap between the float 23 of the coin-delivering presser 2 and the rotating disk 12, this thin coin 4 can enter the gap between the float 23 of the coin-delivering presser 2 and the rotating disk 12 directly without pushing the float 23 backwards.
  • the rotating disk 12 of the coin hopper 1 carries two stacked thin coins 4 to the coin-delivering presser 2 at the same time, the combined thickness of these two stacked thin coins 4 is larger than the gap between the float 23 of the coin-delivering presser 2 and the rotating disk 12, one of these two stacked thin coins 4 will be peripherally stopped against the float 23 and forced by the float 23 to fall down from the respective coin-pushing unit 121, allowing the other thin coin 4 to be carried to the sensor module 14 for recognition and further dispensing and, avoiding stuck coins.
  • the invention provides a coin hopper, which comprises a coin-dispensing unit 1 comprising a hopper 11, a rotating disk 12, a power drive 13, a sensor module 14 and a circuit module 15 for dispensing coins 3;4 having different thicknesses, and a coin-delivering presser 2 mounted in the hopper 11 and comprising an elastic member 24 and a float 24 rotatably supported on the elastic member 24 for pressing the coins 3;4 in the rotating disk 12, enabling the coins 3;4 to be individually and smoothly delivered to a coin outlet 110.
  • a coin-dispensing unit 1 comprising a hopper 11, a rotating disk 12, a power drive 13, a sensor module 14 and a circuit module 15 for dispensing coins 3;4 having different thicknesses
  • a coin-delivering presser 2 mounted in the hopper 11 and comprising an elastic member 24 and a float 24 rotatably supported on the elastic member 24 for pressing the coins 3;4 in the rotating disk 12, enabling the coins 3;4 to be individually and smoothly delivered to a coin

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Control Of Vending Devices And Auxiliary Devices For Vending Devices (AREA)
  • Slot Machines And Peripheral Devices (AREA)

Claims (10)

  1. Münzenmagazin zum Ausgeben von Münzen, umfassend:
    eine Münzausgabeeinheit (1), die ein Magazin (11) umfasst, wobei das Magazin (11) einen Magazinkörper (111) und einen Münzenauslass (110) umfasst, wobei der Magazinkörper (111) darin eine Unterbringungskammer (10) zum Halten von vorgegebenen dicken Münzen (3) und dünnen Münzen (4), eine Drehscheibe (12), die dem Münzenauslass (110) benachbart drehbar im Magazin (11) angebracht ist, und einen Kraftantrieb (13) definiert, der zum Drehen der Drehscheibe (12) zum Zuführen der dicken Münzen (3) und der dünnen Münzen (4) zum Münzenauslass (110) geeignet ist; und gekennzeichnet durch
    eine Münzzufuhrpressvorrichtung (2), die dem Münzenauslass (10) benachbart im Magazinkörper (111) des Magazins (11) angebracht ist, wobei die Münzzufuhrpressvorrichtung (2) ein Basisglied (21), ein Abdeckglied (22), das auf dem Basisglied (21) abgedeckt ist, wobei das Basisglied (21) darin eine Aufnahmekammer (20) und ein Unterbringungsloch (211) definiert, das in Verbindung mit der Aufnahmekammer (20) und der Atmosphäre steht und der Drehscheibe (12) zugekehrt ist, ein elastisches Glied (24), das in der Aufnahmekammer angebracht ist, und einen Schwimmkörper (23) umfasst, der auf dem elastischen Glied (24) gestützt ist und teilweise aus dem Unterbringungsloch (211) zum Pressen auf eine individuelle dicke Münze (3) oder dünne Münze (4) in der Drehscheibe (12) vorsteht, wobei der Schwimmkörper (23) in das und aus dem Unterbringungsloch (211) zwischen einer ausgefahrenen Position und einer aufgenommenen Position zum Einstellen des Spalts zwischen dem Basisglied (21) und der Drehscheibe (12) beweglich ist, um zu ermöglichen, dass die dicken Münzen (3) und die dünnen Münzen (4) individuell den Spalt zwischen dem Basisglied (21) und der Drehscheibe (12) durchlaufen.
  2. Münzenmagazin nach Anspruch 1, wobei der Magazinkörper eine rückwärtige Öffnung umfasst, die in Verbindung mit der Unterbringungskammer angeordnet ist; wobei das Magazin ferner eine Stützbasis umfasst, die den Magazinkörper stützt; wobei die Drehscheibe drehbar auf der Stützbasis in der rückwärtigen Öffnung des Magazinkörpers gestützt ist; wobei der Kraftantrieb einen Motor, der in einer Rückseite der Stützbasis des Magazins angebracht ist, und einen Getriebemechanismus umfasst, der in der Rückseite der Stützbasis des Magazins angebracht und an den Motor gekuppelt ist, wobei der Getriebemechanismus eine Abtriebswelle umfasst, die durch die Stützbasis verläuft und an die Drehscheibe gekuppelt ist und durch den Motor zum Drehen der Drehscheibe bezüglich des Magazins drehbar ist.
  3. Münzenmagazin nach Anspruch 2, wobei der Münzenauslass zwischen dem Magazinkörper und der Stützbasis definiert ist.
  4. Münzenmagazin nach Anspruch 2, wobei das Magazin ferner eine rückwärtige Abdeckung aufweist, die auf der Rückseite der Stützbasis abgedeckt ist und darin eine Aufnahmekammer definiert; wobei die Münzzufuhrpressvorrichtung ferner ein Sensormodul, das dem Münzenauslass benachbart in der Stützbasis des Magazins angebracht ist, und ein Schaltkreismodul umfasst, das in der Aufnahmekammer innerhalb der rückwärtigen Abdeckung des Magazins angebracht ist und elektrisch mit dem Kraftantrieb und dem Sensormodul zum Steuern des Kraftantriebs zum Drehen der Drehscheibe und des Sensormoduls zur Erkennen des Werts und der Echtheit der dicken Münzen und der dünnen Münzen verbunden ist.
  5. Münzenmagazin nach Anspruch 2, wobei der Magazinkörper ferner einen gleichmäßig bogenförmigen Montageschlitz umfasst, der entlang eines Oberteils der rückwärtigen Öffnung verläuft; wobei das Abdeckglied der Münzzufuhrpressvorrichtung eine erste abgeschrägte Wand und eine zweite abgeschrägte Wand, die an zwei gegenüberliegenden Lateralseiten davon angeordnet sind und dazwischen einen spitzen Winkel definieren, und einen Montageflansch umfasst, der von einer Rückseite nach hinten verläuft und einstellbar am gleichmäßig bogenförmigen Montageschlitz des Magazinkörpers mit Schraubbolzen und Muttern befestigt ist.
  6. Münzenmagazin nach Anspruch 1, wobei das Magazin ferner ein Anschlagglied, das an einer Bodenseite bezüglich des Münzenauslasses angeordnet ist, wobei das Anschlagglied eine abgeschrägte Führungsfläche umfasst, die von einer Oberseite davon abwärts nach außen zur Drehscheibe hin geneigt ist, und einen federbelasteten Münzauswurfmechanismus umfasst, der schwenkbar an einer Oberseite bezüglich des Münzenauslasses und gegenüber dem Anschlagglied zum Auswerfen der dicken Münzen und der dünnen Münzen aus dem Münzenauslass angeordnet ist.
  7. Münzenmagazin nach Anspruch 6, wobei die Drehscheibe Münzschubeinheiten, die sich auf einer Vorderseite davon befinden und um einen Kreis herum angeordnet sind, wobei jede Münzschubeinheit mehrere gleichmäßig bogenförmige Rippen umfasst, die gleich zueinander in einer Richtung weg von der Mitte der Drehscheibe parallel beabstandet sind, eine gleichmäßig bogenförmige Nut, die zwischen jeden zwei benachbarten der gleichmäßig bogenförmigen Rippen definiert ist, und einen Schubblock umfasst, der sich an einem Ende von jeder der gleichmäßig bogenförmigen Rippen befindet; wobei das Anschlagglied des Magazins ferner mehrere Anschlagblöcke umfasst, die sich auf einer Rückseite davon befinden und jeweils in die gleichmäßig bogenförmigen Nuten von einer der Münzschubeinheiten der Drehscheibe eingeführt sind.
  8. Münzenmagazin nach Anspruch 6, wobei das Magazin ferner einen Aussparungsabschnitt umfasst, der dem Münzenauslass entspricht und zum Aufnehmen von einem Ende des federbelasteten Münzauswurfmechanismus und Führen einer Schwenkbewegung des federbelasteten Münzauswurfmechanismus geeignet ist.
  9. Münzenmagazin nach Anspruch 1, wobei das Basisglied der Münzzufuhrpressvorrichtung ferner einen Anschlagflansch, der um ein Ende des Unterbringungslochs zum Anhalten des Schwimmkörpers im Unterbringungsloch verläuft, und eine Fixiernut umfasst, die um ein gegenüberliegendes Ende des Unterbringungslochs verläuft; wobei das Abdeckglied der Münzzufuhrpressvorrichtung ferner ein Innenseitenrohr umfasst, das dem Basisglied zugekehrt ist, wobei das Innenseitenrohr ein axial verlaufendes Rohrloch und einen ringförmigen Fixierflansch umfasst, der an einem distalen Ende davon um das axial verlaufende Rohrloch herum angeordnet ist und in der Fixiernut des Basisglieds positioniert ist; wobei das elastische Glied ein Ende davon in das axial verlaufende Rohrloch des Innenseitenrohrs eingeführt aufweist und ein gegenüberliegendes Ende davon an den Schwimmkörper anschlägt.
  10. Münzenmagazin nach Anspruch 1, wobei das Basisglied der Münzzufuhrpressvorrichtung ferner mehrere Hakenblöcke aufweist, die um die Abgrenzung davon beabstandet sind; wobei das Abdeckglied der Münzzufuhrvorrichtung ferner mehrere Hakenlöcher aufweist, die um den Umfang davon beabstandet sind und jeweils mit den Hakenblöcken des Basisglieds in Eingriff stehen.
EP13193476.2A 2013-11-19 2013-11-19 Münzvereinzelungsgerät mit einer Münzausgabepressvorrichtung Active EP2874126B1 (de)

Priority Applications (5)

Application Number Priority Date Filing Date Title
ES13193476.2T ES2562227T3 (es) 2013-11-19 2013-11-19 Tolva de monedas con un prensador de entrega de monedas
PL13193476T PL2874126T3 (pl) 2013-11-19 2013-11-19 Zasobnik na monety z dociskaczem podającym monety
EP13193476.2A EP2874126B1 (de) 2013-11-19 2013-11-19 Münzvereinzelungsgerät mit einer Münzausgabepressvorrichtung
PT131934762T PT2874126E (pt) 2013-11-19 2013-11-19 Depósito de moedas com uma prensa de distribuição de moedas
HUE13193476A HUE028663T2 (en) 2013-11-19 2013-11-19 Coin storage coin carrying press

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP13193476.2A EP2874126B1 (de) 2013-11-19 2013-11-19 Münzvereinzelungsgerät mit einer Münzausgabepressvorrichtung

Publications (2)

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EP2874126A1 EP2874126A1 (de) 2015-05-20
EP2874126B1 true EP2874126B1 (de) 2015-11-18

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EP13193476.2A Active EP2874126B1 (de) 2013-11-19 2013-11-19 Münzvereinzelungsgerät mit einer Münzausgabepressvorrichtung

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EP (1) EP2874126B1 (de)
ES (1) ES2562227T3 (de)
HU (1) HUE028663T2 (de)
PL (1) PL2874126T3 (de)
PT (1) PT2874126E (de)

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2017138791A (ja) * 2016-02-03 2017-08-10 グローリー株式会社 硬貨送出装置及び硬貨処理装置
CN108545480B (zh) * 2018-05-16 2023-08-08 东莞市好润精密电子有限公司 一种弹簧分料器
WO2020012532A1 (ja) * 2018-07-09 2020-01-16 グローリー株式会社 硬貨処理装置

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5167571A (en) * 1991-04-11 1992-12-01 International Game Technology Coin handling machine
WO2005038730A1 (fr) * 2003-10-14 2005-04-28 Dun Liu Appareil distributeur de pieces
TW200905612A (en) * 2007-05-28 2009-02-01 Asahi Seiko Co Ltd Coin hopper
ES2390726B1 (es) * 2010-07-22 2013-10-16 Azkoyen , S.A. Dispensador unitario de monedas y metodo de dispensacion unitaria de monedas que utiliza dicho dispensador

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EP2874126A1 (de) 2015-05-20
ES2562227T3 (es) 2016-03-03
HUE028663T2 (en) 2016-12-28
PL2874126T3 (pl) 2016-05-31
PT2874126E (pt) 2016-01-18

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