Cash box having a storage area for storing notes of value
10676309 ยท 2020-06-09
Assignee
Inventors
Cpc classification
B65H31/10
PERFORMING OPERATIONS; TRANSPORTING
B65H2553/412
PERFORMING OPERATIONS; TRANSPORTING
B65H1/20
PERFORMING OPERATIONS; TRANSPORTING
B65H2553/61
PERFORMING OPERATIONS; TRANSPORTING
B65H2701/1912
PERFORMING OPERATIONS; TRANSPORTING
B65H43/02
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65H31/10
PERFORMING OPERATIONS; TRANSPORTING
B65H1/20
PERFORMING OPERATIONS; TRANSPORTING
B65H43/02
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A cash box has a storage area for storing several notes of value and a counterpressure unit, which delimits the storage area and is movable between first and second positions. The cash box includes a sensor unit with at least one sensor element, the sensor unit emitting a sensor signal that is dependent on the position of the sensor element. The counterpressure unit has a recess for receiving at least a part of the sensor element. The sensor element and the recess are arranged such that the sensor element is only received whenever the counterpressure unit is in the first position and no note of value is present between the sensor element and the recess. The cash box has a control unit which determines on the basis of the sensor signal of the sensor unit and the position of the counterpressure unit whether the cash box is empty.
Claims
1. A cash box comprising a storage area in which several notes of value are storable as a value note stack, a counterpressure unit which delimits the storage area and is movable in a deposit direction and opposite to the deposit direction between a first position in which the storage area has a minimum volume and a second position in which the storage area has a maximum volume, a sensor unit with at least one sensor element, at least one optical transmitter, and at least one optical receiver, the sensor unit outputting a sensor signal that is dependent on the position of the sensor element, said sensor unit further having said optical receiver positioned to confront said optical transmitter and thereby directly receive a light beam emitted by said optical transmitter, said sensor unit configured to transmit a first sensor signal corresponding to a first position of said sensor element and a second sensor signal corresponding to a second position of said sensor element to a control unit, the counterpressure unit has a recess for receiving at least a part of the sensor element, wherein the sensor element and the recess are arranged and designed such that the sensor element is only received in the recess whenever the counterpressure unit is in the first position and no note of value is present between the sensor element and the recess, wherein said sensor element is further arranged such that it is positioned between said optical transmitter and said optical receiver to block said light beam while at least one note of value is present between said sensor element and said recess, wherein said sensor element is further arranged such that it is not positioned between said optical transmitter and said optical receiver to block said light beam when there are no notes of value present between said sensor element and said recess, wherein said sensor unit outputs said first sensor signal while at least one note of value is present between said sensor element and said recess and said sensor unit outputs said second sensor signal when no note of value is present between said sensor element and said recess, said control unit determines on the basis of said sensor signal of said sensor unit and the position of the counterpressure unit whether said cash box is empty, wherein a drive unit for moving the counterpressure unit is provided, in particular an electric motor, such as a direct current motor or a stepper motor, wherein the control unit determines with the aid of a step counting of the stepper motor the position of the counterpressure unit.
2. The cash box according to claim 1, wherein the sensor unit detects a first sensor element position of the sensor element when at least one note of value is present between the sensor element and the counterpressure unit, the note of value contacts the sensor element with its front or back, and wherein the sensor element is moved opposite to the deposit direction by the contact with the note of value.
3. The cash box according to claim 2, wherein the control unit detects the condition cash box empty when the counterpressure unit is in the first position and the sensor element is not in the first sensor element position.
4. The cash box according to claim 2, wherein the control unit detects the condition cash box not empty when the counterpressure unit is in the first position and the sensor element is in the first sensor element position.
5. The cash box according to claim 1, wherein several notes of value stored in the storage area form a value note stack, wherein in an operating position of the cash box the notes of value of the value note stack are arranged on top of one another such that the lowest note of value rests on the counterpressure unit with its front or back.
6. The cash box according to claim 1, wherein during the feed of notes of value into the cash box the control unit controls the counterpressure unit or a drive unit of the counterpressure unit based on the sensor signal that the sensor element is in the first sensor element position such that the counterpressure unit is moved in the deposit direction until the sensor element is no longer in the first sensor element position and the sensor unit outputs a corresponding sensor signal that the sensor element is in the first position.
7. The cash box according to claim 1, wherein a feeding and/or separating unit for feeding and/or removing the notes of value is provided, wherein the notes of value are feedable or removable individually one after the other to or from the storage area with the aid of the feeding and/or separating unit.
8. The cash box according to claim 1, wherein the control unit determines with the aid of a current measurement of the electric motor the position of the counterpressure unit in which the counterpressure unit bears against a stop.
9. The cash box according to claim 1, wherein the counterpressure unit is firmly connected with at least one belt, the belt being driven by the drive unit.
10. The cash box according to claim 1, wherein the recess of the counterpressure unit has a width of 5 mm to 7 mm, and that the sensor element that is received in the recess has a width of 2 mm to 4 mm.
11. A method for storing several notes of value as a value note stack in a storage area of a cash box, comprising: delimiting the storage area with the aid of a counterpressure unit, wherein the counterpressure unit is movable between a first position in which the storage area has a minimum volume and a second position in which the storage area has a maximum volume, generating, with the aid of a sensor unit with at least one sensor element, at least one optical transmitter, and at least one optical receiver, a sensor signal that is dependent on the position of the sensor element, receiving the sensor element in a recess of the counterpressure unit when no note of value is present between the counterpressure unit and the sensor element, wherein said sensor unit outputs a first sensor signal while at least one note of value is present between said sensor element and said recess and said sensor unit outputs a second sensor signal when no note of value is present between said sensor element and said recess, providing a drive unit for moving the counterpressure unit, consisting of the following group: a direct current electric motor and a stepper motor, determining, with the aid of a step counting of the stepper motor, the position of the counterpressure unit, and determining, based on the sensor signal and on the position of the counterpressure unit, whether the cash box is empty.
12. The method of claim 11, wherein a determination of the cash box being empty occurs when the counterpressure unit is in the first position and the sensor element is not in the first sensor element position.
13. The method of claim 11, wherein the determination of the cash box being not empty occurs when the counterpressure unit is in the first position and the sensor element is not in the first sensor element position.
14. The method of claim 11, further comprising: feeding of notes into said cash box; controlling said counterpressure unit based on the sensor signal that the sensor element is in the first sensor element position, such that the counterpressure unit is moved in the deposit direction until the sensor element is no longer in the first sensor element position, and the sensor unit outputs a corresponding sensor signal that the sensor element is in the first position.
15. The method of claim 11, further comprising: determining, with the aid of a current measurement of the electric motor, the first position of the counterpressure unit in which the counterpressure unit bears against a stop.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
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(13) The rollers 216b and 216d are fixedly arranged on a drive shaft 221 not visible in
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(15) A control unit 500 monitors the position of the counterpressure unit 210 and controls the drive unit 400, wherein the drive unit 400 comprises a direct current motor in this embodiment. The control unit 500 measures the motor current and detects whether the counterpressure unit 210 is in the first position, i.e. at the line P0, when the counterpressure unit 210 is pressed against the stop or against the delimiting element 310 by the drive unit 400 so that the motor current increases. In an alternative embodiment, the drive unit 400 may also comprise a stepper motor instead of the direct current motor, wherein the position determination of the counterpressure unit 210 is accomplished with the aid of a step counting of the stepper motor by the control unit 500. Further, alternatively or additionally, a further sensor unit for detecting the position of the counterpressure unit 210 may be provided.
(16) In the present embodiment, the feed unit 300 comprises four vane wheels 130a to 130d, which are arranged on a drive shaft 140 in a rotationally fixed manner and each, have three vanes 131a to 133d projecting tangentially from a hub 135a to 135d. The drive shaft 140 is driven for feeding notes of value 10 into the storage area 200 with the aid of a further non-illustrated drive unit, wherein the connection of the shaft 140 with the further drive unit is accomplished via the gearwheel 142 that is connected with the shaft 140 in a rotationally fixed manner and that projects from the housing 120 of the cash box 100. Between the vane wheels 130a to 130b a drive roller 136a and between the vane wheels 130c and 130d a drive roller 136b is respectively connected with the shaft 140 in a rotationally fixed manner. The two drive rollers 136a and 136b project into the feed slot 126, which is delimited, by the delimiting element 310 and a second delimiting element 320. Opposite to the two drive rollers 136a and 136b, one non-driven roller 138a and 138b, respectively, is arranged, which are covered in
(17) When feeding a note of value, the shaft 140 is rotated, which in turn rotates the vane wheels 130a to 130d and the drive rollers 136a and 136b. With the aid of the drive rollers 136a and 136b, the note of value is fed through the feed slot 126 in a feed direction Z1, wherein the note of value is pressed against the rollers 138a and 138b and thus causes a rotation of the two rollers 138a and 138b. After passing through the feed slot 126, at least one vane 131a to 133d contacts the note of value and pushes it into the storage area 200 of the cash box 100 in deposit direction A1.
(18) As shown in
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(20) The light barrier arrangement 612 comprises an optical transmitter 614 for emitting light and an optical receiver 616 for receiving the light emitted by the transmitter 614. The transmitter 614 and the receiver 616 are arranged such that given a positioning of the sensor element 610 between the optical transmitter 614 and the optical receiver 616 the light beam emitted by the transmitter 614 is interrupted. This interruption is detected by the receiver 616, which transmits a corresponding first sensor signal to the control unit 500. The sensor element 610 and the light barrier arrangement 612 that serves as a detecting element together form a sensor unit 600.
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(25) The receiver 616 transmits the first sensor signal indicating that the sensor element 610 is in the first sensor element position to the control unit 500. The control unit 500 subsequently controls the drive unit 400 for driving the counterpressure unit 210 such that it moves the counterpressure unit 210 in deposit direction A1 until the sensor unit 600 transmits the second sensor signal to the control unit, which second sensor signal indicates that the sensor element 610 is no longer in the first sensor element position.
(26) In an alternative embodiment, instead of the light barrier arrangement 612 an analogous detection element for detecting the sensor element position may be provided. Alternatively, the sensor unit 600 may also comprise a digital detection element detecting more than two different positions of the sensor element 610. In alternative embodiments, the sensor element 610 may be arranged displaceably in the feeding unit and/or a spring force may be applied thereto, which biases the sensor element 610 in the direction of the storage area 200.