The invention relates to a device for handling bills, said device having a dispensing compartment for retrieving bills. The dispensing compartment on a first side is delimited by a depositing element, and on a second side is delimited by a delimiting element. A closure element in a closed position delimits the dispensing compartment on a third side, and in an opened position enables access to bills provided in the dispensing compartment. For opening the dispensing compartment, the closure element is pivotable from the closed position to an opened position, and for closing the dispensing compartment is pivotable from the opened position to the closed position.
Devices for handling bills, in particular automatic teller machines, in which the bills are offered to a user as a wad are known from the prior art. For this purpose, the bills are retrieved from bill cassettes, fed to an intermediate storage, and by a stacking unit stacked so as to form a bill stack which is then transported to the dispensing compartment with the aid of a transport unit, for example with the aid of a displacement slide.
In these devices, it is disadvantageous that a lot of installation space is required for the intermediate storage, the stacking unit and the transport unit, and that the intermediate storage in particular slows down the disbursement procedure.
It is an object of the invention to specify a device for handling bills with the aid of which bills can be provided for dispensing in a simple manner.
This object is achieved by a device having the features of claim 1. Advantageous refinements are set forth in the dependent claims.
In the device having the features of claim 1 the delimiting element is disposed in a first delimiting position for feeding the bills into the dispensing compartment. The control unit is configured to actuate a first drive unit for moving the depositing element in the direction of the delimiting element, wherein the delimiting element is disposed in such a manner that it, in the event of a movement of the depositing element in the direction of the delimiting element, is movable from the first delimiting position to a second delimiting position. Furthermore, the control unit is configured, for opening the dispensing compartment, to actuate a second drive unit so as to move the closure element from the closed position to the opened position, wherein an engagement element of the delimiting element comes to engage with an engagement region of the closure element when the closure element is moved, or in the opened position of the closure element, when the delimiting element is in the second delimiting position.
As a result, it is achieved that the volume of the dispensing compartment when opening is enlarged in a particularly simple manner such that particularly easy access is possible to the bills provided for disbursement. Furthermore, stacking of the bills in the dispensing compartment can occur automatically such that there is no need for an intermediate storage or a transport unit for transporting the stack of bills.
It is particularly advantageous for the delimiting element to be held in the second position with the aid of the closure element or to be movable from the second position to a third position. As a result, it is possible to dispense with complex actuator technology for moving the delimiting element.
It is furthermore advantageous for the control unit to be configured to actuate the first drive unit so as to move the depositing element away from the delimiting element when the delimiting element is moved from the second delimiting position to the third delimiting position. As a result, when opening the closure element, the volume of the dispensing compartment when the closure element is opened is further enlarged so that easier operator access to the provided bills is enabled.
In one advantageous embodiment, the engagement element is movable between a deployed position and a retracted position, wherein the engagement element elastically deforms an elastic element. As a result, the pivot radius of the delimiting element can be changed as a function of the position of the delimiting element.
It is advantageous for the engagement element during the movement of the delimiting element from the second position to the third position to be moved from the deployed position to the retracted position. It is achieved as a result that a minor installation space is required for the conjoint movement of the closure element and the delimiting element.
It is furthermore advantageous for the closure element to be pivotable about a first rotation axis, and for the delimiting element to be pivotable about a second rotation axis, different from the first rotation axis. The pivot radius of the closure element is preferably larger than the pivot radius of the delimiting element. A particularly simple and space-saving disposal of the closure element and of the delimiting element within the device is achieved as a result.
It is particularly advantageous for the first side and the second side to be disposed opposite one another. A space-saving geometry of the dispensing compartment is achieved as a result.
It is advantageous for the closure element in the closed position to serve as a detent element for the bills fed individually to the dispensing compartment. An uncontrolled movement of the bills during feeding into the dispensing compartment is prevented as a result.
It is furthermore advantageous for at least one contact pressure element to be disposed pivotably on the delimiting element for the orderly depositing of the bills in the dispensing compartment. As a result, an orderly bill stack is formed in the dispensing compartment.
In one advantageous embodiment, there are provided a first sensor unit for detecting a position of the depositing element and/or at least one second sensor unit for detecting a position of the closure element and/or at least one third sensor unit for detecting a position of the contact pressure element. Particularly reliable monitoring of the position of the depositing element and/or of the closure element and/or of the contact pressure element is achieved as a result.
It is advantageous for the first sensor unit to generate a first sensor signal and/or for the second sensor unit to generate a second sensor signal and/or for the third sensor unit to generate a third sensor signal and to transmit the respective sensor signal to the control unit, wherein the control unit is configured to actuate the first drive unit and/or the second drive unit as a function of the transmitted first sensor signal and/or second sensor signal and/or third sensor signal. Simple and fast controlling of the disbursement procedure is achieved as a result.
It is furthermore advantageous for a plurality of bills received in the dispensing compartment to form a bill stack, wherein the bills of the bill stack are disposed on top of one another in such a manner that the lowermost bill by way of the front side thereof or the rear side thereof bears on the depositing element and that the uppermost bill by way of the front side thereof or the rear side thereof contacts the contact pressure element, wherein the direction from the lowermost bill to the uppermost bill is a stacking direction of the bill stack. Secure and reliable depositing and stacking of the bills is possible as a result.
It is particularly advantageous for the device to comprise at least one third drive unit for driving transport elements for transporting the bills, wherein the transport elements for feeding the bills into the dispensing compartment are drivable in a first direction, and wherein the transport elements for transporting the bills out of the dispensing compartment in a direction of a bill handling unit of the device are drivable in a second direction, counter to the first direction. A compact construction mode of the device is achieved as a result.
In one particularly advantageous embodiment, the closure element is a first closure element, and the device comprises a second closure element which can be opened and closed independently of the first closure element. A high degree of security against manipulations of the device by any unauthorized third party is achieved as a result.
It is advantageous for the depositing element to comprise at least one ribbed element which is disposed in such a manner that it engages in a ribbed clearance of the closure element at least in the closed position of the closure element. As a result, access to the dispensing compartment by any unauthorized third party is impeded.
It is particularly advantageous for the depositing element to comprise a clearance which is disposed in such a manner that a bill or stack of bills deposited in the dispensing compartment lies at least above a sub-region of the clearance. As a result, access to the bills deposited in the dispensing compartment when the closure element is opened is facilitated. It is particularly advantageous for the clearance to be disposed in the center beneath the bill or stack of bills in the dispensing compartment.
Further features and advantages are derived from the description hereunder which in conjunction with the appended figures explains in more detail exemplary embodiments.
In the figures:
The bills 28 are deposited in the form of a stack in the bill cassettes 20 to 26. One of these stacks is indicated in an exemplary manner in the first bill cassette 26. In an exemplary manner, one of the bills of this bill stack is identified by the reference sign 28. In the operating position of the bill cassettes 20 to 26 shown in
As soon as a user initiates a disbursement procedure, bills 28 to be disbursed are retrieved from the corresponding bill cassettes 20 to 26 and, after singularizing, are fed to a transport path 40. A sensor unit 42 is disposed along the transport path 40 and detects at least one feature of each bill 28 to be disbursed. The sensor unit 42 transmits a measured value of the detected feature to a control unit 44 which, as a function of the detected feature, is configured to evaluate whether the bill 28 is a first bill 48 cleared for disbursement or a second bill 50 not cleared for disbursement.
The control unit 44 actuates a turnout unit 46 in such a manner that the bill 48 is fed to the bill dispensing unit 16 when said bill 48 is a bill 48 cleared for disbursement. However, if the bill is a bill 50 not cleared for disbursement, the control unit 44 actuates the turnout unit 46 in such a manner that the bill 50 is fed to an intermediate storage 52.
In order not to unnecessarily delay the disbursement procedure for the operator, replacement bills for the bills 50 not cleared for disbursement are retrieved from the bill cassettes 20 to 26 and, to the extent that said replacement bills by virtue of the features detected with the aid of the sensor unit 42 are cleared for disbursement, are transported to the bill dispensing unit 16. In this way, the desired total value can be dispensed to the operator without interrupting the disbursement procedure. Upon completion of the disbursement procedure, the bills 50 not cleared for disbursement, by way of a further transport path 56, are fed to a container 54, in particular to a so-called reject and retract container 54 which is preferably configured in the form of a further bill cassette.
The reject and retract container 54 comprises in particular a first compartment for receiving the rejected bills 50 (so-called rejects) and a second compartment, separate from the first compartment, for receiving bills 48 not retrieved from the dispensing compartment (so-called retracts). In this way, the rejects and the retracts can be separately stored, as a result of which tracing the notes is easily possible.
In an alternative embodiment, the device 10 can be configured as an automatic recycling cash machine, i.e. as a device 10 for disbursing and depositing bills. In this embodiment, the sensor unit 42, or a further sensor unit which is in particular disposed in the head module, also checks the features of the bills 28 which by way of a bill dispensing and depositing unit are fed to the device 10 by an operator. Bills 28 cleared for depositing are fed to the bill cassettes 20 to 26, while bills not cleared for depositing are fed to the intermediate storage 52. The device 10 in other embodiments can comprise a larger or smaller number of bill cassettes 20 to 26, as well as separate reject and retract containers 54.
A depositing element 62 for depositing the bills 48 provided for disbursement can be seen in the illustration as per
Further to be seen in
The bill dispensing unit 16 furthermore comprises a transport unit 70 with the aid of which bills 48 retrieved from the strongbox module 14 are transported in a direction T1 to the dispensing compartment 72. Those bills not retrieved from the dispensing compartment, with the aid of the transport unit 70, are transported in a direction counter to the direction T1.
The closure element 60 is a first inner closure element of the device 10 which as a “shadow” closure element 60 is disposed behind a second outer closure element, not illustrated. The outer closure element can be opened and closed independently of the closure element 60. In this way, the retrieval of bills 48 from the bill dispensing unit 16 is possible only when both closure elements 60 are simultaneously opened. A particularly high degree of security is achieved as a result because the “shadow” closure element 60 remains closed in particular when the outer closure element is manipulated by any unauthorized third party.
When feeding the bills 48 into the dispensing compartment 72, the drive unit 76 is actuated by the control unit 44 in such a manner that the shafts 80 and 82 are in each case driven in a first rotating direction. In particular, the shaft 80 rotates in a counter-clockwise manner, and the shaft 82 correspondingly rotates in a clockwise manner, so that the bill 48 is fed to the dispensing compartment 72.
If the bills 48 are not retrieved from the device 10, the so-called retracts from the dispensing compartment 72 are fed to the reject and retract container 54. The retrieval takes place with the aid of discharge rollers 92 which ensure that the bills 48 are retrieved, preferably individually or alternatively as a stack, from the dispensing compartment 72. When retrieving the bills 48 from the dispensing compartment 72, the shafts 80 and 82 are in each case driven in a second rotating direction. In particular, the shaft 80 rotates in a clockwise manner, and the shaft 82 correspondingly rotates in a counter-clockwise manner, so as to retrieve the bill 48 from the dispensing compartment 72.
The dispensing compartment 72 on a first side is delimited by the depositing element 62, and on an opposite second side is delimited by a delimiting element 74. The delimiting element 74 comprises two contact pressure elements for the orderly depositing of the bills 48, wherein only the contact pressure element 96 is visible in the illustration as per
The contact pressure element 96 is preferably disposed so as to be pivotable on the delimiting element 76 and is connected to the latter. No bills 48 are deposited in the dispensing compartment 72 in the illustration as per
The fed bills 48 form a bill stack, wherein the bills 48 of the bill stack are stacked on top of one another in such a manner that the lowermost, i.e. the first fed, bill 48 by way of the front side thereof or the rear side thereof bears on the depositing element 62. The uppermost bill 48 by way of the front side thereof or the rear side thereof contacts the contact pressure element 96. The direction from the lowermost bill 48 to the uppermost bill 48 is a stacking direction R1 of the bill stack. The more bills 48 deposited on the depositing element 62, the higher the bill stack formed by the bills 48 and the greater the deflection of the contact pressure element 96 in the direction of the delimiting element 74. Visible in the illustration as per
The sensor unit 98 preferably comprises a light barrier having a transmitter and having a receiver which are disposed opposite one another. The sensor unit 98, which is assigned to the contact pressure element 96, and a further sensor unit 99, which is assigned to the contact pressure element 97, will be explained in more detail in the context of
As a result of this movement, the contact pressure element 96 is moved from the second contact pressure position, away from the delimiting element 74, so that the second contact pressure position of the contact pressure element 96 is no longer detected by the sensor unit 98. Subsequently, further bills 48 can be fed to the dispensing compartment 72, wherein the procedure of the movement of the depositing element 62 counter to the direction R1 described above is repeated when the contact pressure element 96 is moved yet again to the second contact pressure position by the deposited bills 48.
The depositing element 62 comprises a plurality of ribbed elements of which one ribbed element identified by the reference sign 100 is visible in the illustration as per
As soon as all bills 48 destined for disbursement have been fed to the dispensing compartment 72, the control unit 44 performs steps for opening the dispensing compartment 72. In a first step, the dispensing element 62, with the aid of the drive unit 94, is moved in the direction of the delimiting element 74, wherein the delimiting element 74 is disposed in such a manner that the latter in this movement of the depositing element 62 is moved to a second delimiting position. In a second step, the control unit actuates a further drive unit 104, not visible in the illustration as per
Upon engaging with the closure element 60, the engagement element 102 and the delimiting 74 are moved conjointly with the closure element 60 until the closure element 60 assumes the opened position illustrated in
During the movement from the closed position to the opened position, the closure element 60 is guided in a guide track, a movement of the closure element 60 about a virtual rotation axis D1 being in particular performed herein. In contrast, the delimiting element 74 is rotated about a second rotation axis D2, which is different from the rotation axis D1 and is congruent with the longitudinal axis of the shaft 80. In this way, the pivot radius S1 of the closure element 60 is larger than the pivot radius S2 of the delimiting element 74. As a result of the described disposal of the closure element 60 and of the delimiting element 74, it is achieved that the engagement element 102 is moved from the deployed to the retracted position, while the delimiting element 74 is moved from the second delimiting position to the third delimiting position. The engagement element 102 herein deforms an elastic element, preferably a restoring spring, which is not visible in the illustration as per
Furthermore, the control unit 44, during the movement of the delimiting element 74 from the second delimiting position to the third delimiting position, is configured to actuate the drive unit 94 so as to move the depositing element 62 in the direction counter to the delimiting element 74. It is achieved as a result that the volume of the dispensing compartment 72 in the case of an opened closure element 60 is further enlarged so that ready access to the bill 48 or bill stack situated in the dispensing compartment 72 is possible. The position of the dispensing element 62 is monitored with the aid of a sensor unit 140, wherein the control unit 44 is configured to actuate the drive unit 94 as a function of a signal of the sensor unit 140.
The illustration as per
As opposed to the contact pressure elements 96, 97, the contact pressure elements 196, 197 are not connected to the delimiting element 76 but are disposed so as to be pivotable about a fixed rotation axis (D3 in
In the same way as described for the contact pressure elements 96 and 97 of the bill dispensing unit 16, the contact pressure elements 196, 197 are situated in a first contact pressure position, and the delimiting element 74 is situated in a first delimiting position, before bills are deposited in the dispensing compartment 72 by the bill dispensing unit 116. The contact pressure element 196, 197 herein contacts the depositing element 62. When a bill 28, 48 is fed to the dispensing compartment 72, the movement of the bill 48 is decelerated or stopped by the contact pressure elements 196, 197. Moreover, the fed bill 48 deflects the contact pressure element 96 in the direction of the sensor unit 198, 199. The fed bill 48, already when being fed into the dispensing compartment 72, by the contact pressure elements 196, 197 is pushed against the depositing element 62, thus ensuring an orderly depositing of the bills 28, 48.
The fed bills 28, 48 form a bill stack, wherein the uppermost bill of the bill stack by way of the front side thereof or the rear side thereof contacts the contact pressure elements 196, 197. The more bills deposited in the dispensing compartment 72, the greater the deflection of the contact pressure element 196, 197 in the direction of the sensor unit 198, 199. A second contact pressure position of the contact pressure elements 196, 197 is detected with the aid of the sensor units 198, 199, said second contact pressure position corresponding to a pre-set deflection of the contact pressure elements 196, 197 and thus to a pre-set height of the bill stack. To this end, the respective interrupter element 214, 215 interrupts the light beams emitted by the transmitter of the sensor units 198, 199, wherein the respective receiver detects the interruption, as a result of which a detection signal is transmitted to the control unit 44.
Proceeding therefrom, the control unit 44 actuates the drive unit 94 which by way of a gearbox assembly 95 moves the depositing element 62 by a pre-set distance counter to the stacking direction R1. As a result of this movement, the contact pressure elements 196, 197 are moved from the second contact pressure position, away from the sensor units 198, 199, so that the second contact pressure position of the contact pressure elements 196, 197 is no longer detected by the sensor units 198, 199. Subsequently, further bills can be fed to the dispensing compartment 72, wherein the procedure of the movement of the depositing element 62 counter to the direction R1 described above is repeated when the contact pressure elements 196, 197 are moved yet again to the second contact pressure position by the deposited bills.
The initialization sequence is started by step S1. Subsequently, the lower position of the depositing element 62 is detected with the aid of the sensor unit 140. To this end, the depositing element 62 with the aid of the drive unit 96 for moving the depositing element 62 is moved down to the lower position, if required. Subsequently, in step S3, the depositing element 62 with the aid of the drive unit 94 is displaced in the direction of the delimiting element 74. In step S4, it is then checked whether the depositing element 62 is displaced so far in the direction of the delimiting element 74 to the point that the depositing element 62 has deflected the contact pressure elements 96, 97, 196, 197 so far that the sensor units 98, 99, 198, 199 detect the respective interrupter element 214, 125, 114, 115. When both sensor units 98, 99, or 198, 199, respectively, detect a second upper position of the contact pressure elements 96, 97, 196, 197, the movement of the depositing element 62 in the direction of the delimiting element 74 is interrupted. In step S5, the depositing element 62 with the aid of the drive unit 94 is subsequently moved by a predetermined distance away from the delimiting element 74 again so that the depositing element 62 is then disposed in the feeding position in which depositing bills in the depositing compartment 72 is possible. The initialization sequence is then completed in step S6.
In the signal diagram shown in
At the time T1, the drive unit 94 for moving the depositing element 62 is actuated in such a manner that the depositing element 62 is displaced downward to the lower position. Once it has been detected with the aid of the sensor unit 140 at the time T2 (step S2) that the lower position of the depositing element 62 has been reached, the depositing element 62 with the aid of the drive unit is displaced in the direction of the delimiting element 74 (step S3) until the sensor unit 98, 99, or 198, 199, respectively, each detect a second position of the depositing elements 96, 97, or 196, 197, respectively, (step S4) and the movements of the depositing element 62 are stopped at the time T3. Subsequently, the depositing element 62 is moved in the direction of the lower position, away from the delimiting element 74 again. Once the sensor units 98, 99, or 198, 199, respectively, at the time T4 no longer detect the second position of the contact pressure elements 96, 97, 196, 197 at the time T4, the depositing element 62 is moved further downward by a pre-set distance. In the present exemplary embodiment, the latter corresponds to 21 steps of the stepper motor serving as the drive of the depositing element 62. Upon performing the controlled movement at the time T5, the control unit 46 generates a signal which indicates that the depositing element 62 has reached the feeding position for feeding bills into the depositing compartment 72.
Number | Date | Country | Kind |
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10 2019 125 993.2 | Sep 2019 | DE | national |
Filing Document | Filing Date | Country | Kind |
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PCT/EP2020/076656 | 9/24/2020 | WO |