CN107610325B - Bill storage device and self-service financial equipment - Google Patents
Bill storage device and self-service financial equipment Download PDFInfo
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- CN107610325B CN107610325B CN201710941141.7A CN201710941141A CN107610325B CN 107610325 B CN107610325 B CN 107610325B CN 201710941141 A CN201710941141 A CN 201710941141A CN 107610325 B CN107610325 B CN 107610325B
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- 230000002159 abnormal effect Effects 0.000 description 1
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- 238000010586 diagram Methods 0.000 description 1
- 230000005484 gravity Effects 0.000 description 1
- 238000009434 installation Methods 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
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- 230000007723 transport mechanism Effects 0.000 description 1
Abstract
The invention discloses a bill storage device, which comprises a box body and a control unit, wherein the control unit is used for controlling the bill to be input into the box body, a liftable bill supporting mechanism is arranged at the bottom of the box body, the received bill is stacked on the bill supporting mechanism, and a position detection unit is arranged in the box body and used for detecting and acquiring the height of the bill stacking surface in the box body and feeding back to the control unit; if the height of the bill stacking surface is between a preset first height and a preset second height, the control unit controls the bill to be normally input into the box body, otherwise, the control unit controls the bill to be stopped from being input into the box body; wherein the height of the note stacking surface and the first and second heights are calculated based on the bottom of the case, and the first height is greater than the second height. By precisely controlling the height position of the note stacking surface at the time of receipt of notes, it is ensured that notes can be stably stacked and stored in the casing.
Description
Technical Field
The invention relates to the technical field of self-service terminal equipment, in particular to a bill storage device and self-service financial equipment.
Background
With the wide use of self-service financial equipment, the demands of various industries on the self-service financial equipment are higher and higher, and the original financial self-service equipment can only simply rely on a bank card to extract paper money, so that the business of exchanging paper money by utilizing notes can only be realized through counter operation, and the efficiency is lower. In order to increase the use efficiency of self-service financial equipment and improve service performance, the equipment requirement for withdrawing money by utilizing bills is more and more increased, and how to better recycle and store the bills is a problem to be solved by taking a bill recycling bin as an important component of the equipment.
Disclosure of Invention
In view of this, the present invention provides a bill storing apparatus that ensures that bills can be stably stacked and stored in a box by precisely controlling the height position of a bill stacking surface at the time of receiving the bills.
In order to achieve the above purpose, the present invention adopts the following technical scheme:
the bill storage device comprises a box body for receiving bills and a control unit, wherein the control unit is used for controlling the bill to be input into the box body, a liftable bill supporting mechanism is arranged at the bottom of the box body, and the bills received by the box body are stacked on the bill supporting mechanism; the box body is internally provided with a position detection unit which is used for detecting and acquiring the height of the bill stacking surface in the box body and feeding back to the control unit; if the height of the bill stacking surface is between a preset first height and a preset second height, the control unit controls the bill to be normally input into the box body, otherwise, the control unit controls the bill to be stopped from being input into the box body; wherein the height of the note stacking surface and the first and second heights are calculated based on the bottom of the case, and the first height is greater than the second height.
Specifically, the box body is provided with a feeding deviceThe height of the ticket inlet in the box body is a third height, and the third height is larger than the first height; wherein the height difference between the third height and the first height is delta H 1 The height difference between the first height and the second height is delta H 2 If the thickness of the single bill is d, d is less than or equal to delta H 1 ≤2d,d≤ΔH 2 ≤2d。
Specifically, the position detection unit includes a first position sensor and a second position sensor that determine the height of the bill stacking surface according to whether or not it is blocked by a bill that has been stacked; the first position sensor is arranged at the position, located at the first height, in the box body, and the second position sensor is arranged at the position, located at the second height, in the box body.
Specifically, the ticket inlet is formed in the side wall of the box body, the number of the first position sensors is two, and the two first position sensors are arranged on the same horizontal plane at intervals in a direction gradually away from the ticket inlet.
Specifically, a bill conveying mechanism is further arranged in the box body, and the bill conveying mechanism is controlled by the control unit and is used for conveying bills input from the bill inlet onto the bill stacking surface.
Specifically, the first position sensor is further used for detecting whether the ticket inlet has an input ticket, and if the first position sensor detects that the ticket inlet has the input ticket, the control unit controls and drives the ticket conveying mechanism to start to work so as to convey the input ticket onto the ticket stacking surface.
Specifically, the bill conveying mechanism comprises a rotary impeller, and the rotation of the rotary impeller is controlled to drive the input bill to be conveyed to the bill stacking surface; wherein the blades of the rotating impeller are formed from a flexible material.
Specifically, the ticket inlet is connected with a ticket input mechanism, and the ticket input mechanism is controlled by the control unit and inputs the ticket to the box body through the ticket inlet.
Specifically, the ticket supporting mechanism comprises a supporting plate, the supporting plate is connected to the bottom of the box body through a spring, the lifting of the ticket supporting mechanism is controlled by the elastic force of the spring, and the bills received by the box body are stacked on the supporting plate.
The invention also provides self-service financial equipment with the function of carrying out transactions by adopting bills, wherein the self-service financial equipment comprises the bill storage device.
According to the bill storage device and the self-service financial equipment corresponding to the bill storage device, the height position of the bill stacking surface when the bill is received is accurately controlled, so that the input bill can be stably stacked and stored in the box body.
Drawings
FIG. 1 is a schematic diagram of a bill receiving device according to an embodiment of the present invention;
fig. 2 is a schematic view showing a structure in which the position detecting unit in the embodiment of the present invention is assembled in a case.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the following detailed description of the embodiments of the present invention will be given with reference to the accompanying drawings. Examples of these preferred embodiments are illustrated in the accompanying drawings. The embodiments of the invention shown in the drawings and described in accordance with the drawings are merely exemplary and the invention is not limited to these embodiments.
It should be noted here that, in order to avoid obscuring the present invention due to unnecessary details, only structures and/or processing steps closely related to the solution according to the present invention are shown in the drawings, while other details not greatly related to the present invention are omitted.
Referring to fig. 1 and 2, the bill storage device 100 includes a box 1 and a control unit 2, the control unit 2 controls inputting of a bill 3 into the box 1, the box 1 is used for receiving and storing the bill 3, a lifting bill supporting mechanism 4 is arranged at a bottom 11 of the box 1, and the bill 3 is stacked on the bill supporting mechanism 4. Specifically, a ticket inlet 12 is arranged on a side wall 13 of the box body 1, the ticket inlet 12 is connected with a ticket input mechanism 7, and the ticket input mechanism 7 is controlled by the control unit 2 and inputs the ticket 3 to the box body 1 through the ticket inlet 12. Further, a bill transporting mechanism 6 is further provided in the case 1, the bill transporting mechanism 6 is controlled by the control unit 2, and the bill transporting mechanism 6 is used for transporting the bill 3 inputted from the bill inlet 12 in a horizontal direction so that the bill 3 is stacked on the bill holding mechanism 4. Wherein the ticket supporting mechanism 4 comprises a supporting plate 41, the supporting plate 41 is connected to the bottom 11 of the box body 1 through a spring 42, the lifting of the ticket supporting mechanism 4 is controlled by the elastic force of the spring 42, and the bills 3 received by the box body 1 are stacked on the supporting plate 41. The pallet 41 connected to the bottom 11 of the box 1 by means of springs 42 forms an automatic descent control structure: when the non-stacked bills 3 begin to be stacked, the spring 42 pushes up the supporting plate 41 to be adjacent to the bill inlet 12, as the stacked bills 3 increase, the weight of the bills 3 compresses the spring 42, the supporting plate 41 descends to obtain a space for continuously stacking the bills 3, and when the spring 42 cannot be continuously compressed, the maximum stacking height is reached, and the bills 3 cannot be continuously stacked.
Wherein, as shown in fig. 1 and 2, a position detecting unit 5 is provided in the case 1, the position detecting unit 5 is used for detecting and acquiring the height H of the bill stacking surface 31 in the case 1 and feeding back to the control unit 2, and the control unit 2 determines whether the bill 3 can be continuously input into the case 1 according to the height H of the bill stacking surface 31 fed back by the position detecting unit 5. Specifically, if the height H of the bill stacking surface 31 is between a preset first height H1 and a second height H2, the control unit 2 controls the bill 3 to be normally input to the box 1, otherwise, the control unit 2 controls the bill 3 to be stopped from being input to the box 1. Wherein the height H of the note stacking surface 31 and the first height H1 and the second height H2 are calculated based on the bottom 11 of the casing 1, and the first height H1 is larger than the second height H1. Note that, regarding the bill stacking surface 31: when the bill storage device 100 is started to be started, the bill 3 is not yet stacked on the bill holding mechanism 4, and the bill stacking surface 31 refers to the upper surface of the bill holding mechanism 4; after a portion of the notes 3 have been stacked on the note holding mechanism 4, the note stacking surface 31 is referred to as the upper surface of the uppermost note 3 that has been stacked. In addition, in order to more clearly show the position detection unit 5 in the casing 1, the ticket holding mechanism 4 provided in the casing 1 is omitted in fig. 2.
As shown in fig. 1 and 2, the ticket inlet 12 and the top of the box 1 are located on the same horizontal line, the height of the ticket inlet 12 in the box 1 is a third height H3, and the third height H3 is greater than the first height H1. Wherein, the height difference between the third height H3 and the first height H1 is: ΔH 1 =h3-H1, the difference in height between the first height H1 and the second height H2 is: ΔH 2 When the thickness of the bill 3 is d, d is equal to or smaller than Δh =h3-H1 1 ≤2d,d≤ΔH 2 And the time is less than or equal to 2 days. According to the above height condition setting, when the height H of the bill stacking surface 31 is between the preset first height H1 and the second height H2, the vertical distance between the bill stacking surface 31 and the bill inlet 12 is within a reliable range, the single bill 3 inputted from the bill inlet 12 can stably fall into the bill stacking surface 31, and the abnormal occurrence of folding or scattering of the inputted single bill 3 is avoided, so that the control state of the control unit 2 on the bill input mechanism 7 at this time is: the bill can be normally input. Otherwise: (1) When the height H of the note stacking surface 31 is below the second height H2, the vertical distance between the note stacking surface 31 and the note inlet 12 is too large, and the note inlet 12 may be folded or scattered, and the like, so that the control unit 2 controls the note input mechanism 7 in such a manner that: stopping inputting the bill; (2) When the height H of the note stacking surface 31 is above the first height H1, the vertical distance of the note stacking surface 31 from the note inlet 12 is too small,that is, the notes 3 stacked on the ticket holding mechanism 4 have reached the maximum stacking height, and if the notes 3 continue to be input from the ticket inlet 12, an abnormality such as folding may occur, and therefore, the control state of the control unit 2 to the note input mechanism 7 at this time is: and stopping inputting the bill. For the case of (1), it is necessary to service the liftable ticket holding mechanism 4 so that the height H of the ticket stacking surface 31 is between a preset first height H1 and a second height H2, and then re-activate the ticket housing apparatus 100; for the case of (2), it is necessary to take out the stacked notes 3 and then re-activate the note receiving device 100.
In particular, in the present embodiment, referring to fig. 2, the position detecting unit 5 includes a first position sensor 51 and a second position sensor 52, and the first position sensor 51 and the second position sensor 52 determine the height of the bill stacking surface 31 according to whether or not it is blocked by the bills 3 that have been stacked. Wherein the first position sensor 51 is installed in the case 1 at the first height H1, and the second position sensor 52 is installed in the case 1 at the second height H2. When neither the first position sensor 51 nor the second position sensor 52 is blocked by the stacked bills 3, the information fed back by the position detecting unit 5 to the control unit 2 is: the height H of the note stacking surface 31 is below the second height H2. When the first position sensor 51 is not blocked and the second position sensor 52 is blocked, the feedback information from the position detecting unit 5 to the control unit 2 is: the height H of the note stacking surface 31 is located between a preset first height H1 and a second height H2. When both the first position sensor 51 and the second position sensor 52 are blocked by the stacked bills 3, the information fed back by the position detecting unit 5 to the control unit 2 is: the height H of the note stacking surface 31 is above the first height H1.
Further, in this embodiment, as shown in fig. 1 and 2, the number of the first position sensors 51 is two, and the two first position sensors 51 are disposed at intervals from each other on the same horizontal plane in a direction gradually away from the ticket inlet 12. In normal condition where a bill 3 can be input, the height H of the bill stacking surface 31 is located between the first height H1 and the second height H2, that is, between the first position sensor 51 and the second position sensor 52 in the height direction, and the height difference between the first position sensor 51 and the second position sensor 52 is not more than twice the thickness of a single bill, the height difference between the first position sensor 51 and the bill stacking surface 31 is smaller, so that the first position sensor 51 is also blocked during inputting when a bill 3 is input from the bill inlet 12. Accordingly, two or more first position sensors 51 spaced apart from each other are provided in the horizontal direction at the first height H1, and the position of the bill 3 fed from the bill inlet 12 moving in the lateral direction can also be detected, ensuring that the fed bill 3 is completely stacked on the bill stacking surface 31. Note that, after the newly input bill 3 is completely stacked on the bill stacking surface 31, the bill holding mechanism 4 descends due to gravity, and at this time, the bill 3 which has been stacked no longer shields the first position sensor 51 unless the maximum stacking height has been reached.
Further, as described above, since the first position sensor 51 can detect the position of the bill 3 inputted from the bill inlet 12 moving in the lateral direction, the first position sensor 51 is also used to detect whether the bill inlet 12 has inputted a bill 3 or not, and to control the driving of the bill transport mechanism 6 as a trigger signal by the control unit 2. Specifically, if the first position sensor 51 detects that the ticket inlet 12 has an input ticket 3, the control unit 2 controls and drives the ticket conveying mechanism 6 to operate so as to convey the input ticket 3 onto the ticket stacking surface 31; otherwise, the control unit 2 controls the bill conveying mechanism 6 to stop working.
In particular, in the present embodiment, referring to fig. 1 and 2, the bill transporting mechanism 6 includes a rotary impeller 61, the rotary impeller 61 is mounted on the top of the casing 1, and the rotation of the rotary impeller 61 is controlled to drive the inputted bill 3 to be transported onto the bill stacking surface 31, wherein the blades of the rotary impeller 61 are made of flexible materials. The bill transporting mechanism 6 in this embodiment includes two rotary impellers 61, and the two rotary impellers 61 are disposed at intervals on the same horizontal plane in a direction gradually away from the bill inlet 12. Taking the installation structure in fig. 2 as an example, in the horizontal direction, with the ticket inlet 12 as a reference, according to the direction gradually separating from the ticket inlet 12, the two first position sensors 51 are sequentially marked as a sensor a and a sensor B in sequence, the two rotary impellers 61 are sequentially marked as a rotary impeller a and a rotary impeller B in sequence, and then the rotary impeller a is relatively assembled behind the sensor a, and the rotary impeller B is relatively assembled behind the sensor B. When a new bill is input into the bill inlet 12, the sensor A is blocked, the control unit 2 controls the driving rotary impeller A to rotate so as to drive the bill to move transversely, and when the bill moves to the position of the sensor B, the sensor B is blocked, the control unit 2 controls the driving rotary impeller B to rotate, and the rotary impeller B continuously drives the bill to move transversely.
The invention also provides self-service financial equipment with the function of carrying out transactions by adopting bills, wherein the self-service financial equipment comprises the bill storage device provided by the embodiment of the invention.
In summary, according to the bill storage device and the corresponding self-service financial device provided by the embodiment of the invention, the input bills can be stably stacked and stored in the box body by precisely controlling the height position of the bill stacking surface when receiving the bills.
It is noted that relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising one … …" does not exclude the presence of other like elements in a process, method, article, or apparatus that comprises the element.
It should be noted that the foregoing embodiments are merely illustrative of the technical concept and features of the present invention, and are intended to enable those skilled in the art to understand the present invention and implement the same according to the present invention without limiting the scope of the present invention. All equivalent changes or modifications made in accordance with the spirit of the present invention should be construed to be included in the scope of the present invention.
Claims (9)
1. The bill storage device comprises a box body for receiving bills and a control unit, wherein the control unit is used for controlling the bill to be input into the box body, a liftable bill supporting mechanism is arranged at the bottom of the box body, and the bills received by the box body are stacked on the bill supporting mechanism; the device is characterized in that a position detection unit is arranged in the box body and is used for detecting and acquiring the height of the bill stacking surface in the box body and feeding back to the control unit;
if the height of the bill stacking surface is between a preset first height and a preset second height, the control unit controls the bill to be normally input into the box body, otherwise, the control unit controls the bill to be stopped from being input into the box body;
wherein the height of the note stacking surface and the first and second heights are calculated based on the bottom of the case, and the first height is greater than the second height; the box body is provided with a ticket inlet, the height of the ticket inlet in the box body is a third height, and the third height is larger than the first height; the height difference between the third height and the first height is delta H 1 The height difference between the first height and the second height is delta H 2 If the thickness of the single bill is d, d is less than or equal to delta H 1 ≤2d,d≤ΔH 2 ≤2d。
2. The bill storing device according to claim 1, wherein the position detecting unit includes a first position sensor and a second position sensor that determine a height of the bill stacking surface according to whether or not it is blocked by bills that have been stacked;
the first position sensor is arranged at the position, located at the first height, in the box body, and the second position sensor is arranged at the position, located at the second height, in the box body.
3. The ticket housing apparatus of claim 2, wherein the ticket inlet is formed in a side wall of the box body, the number of the first position sensors is two, and the two first position sensors are arranged at intervals on the same horizontal plane in a direction gradually away from the ticket inlet.
4. The bill storing device according to claim 2, wherein a bill transporting mechanism is further provided in the casing, the bill transporting mechanism being controlled by the control unit for transporting the bill input from the bill inlet onto the bill stacking surface.
5. The bill receiving apparatus according to claim 4, wherein the first position sensor is further configured to detect whether the bill inlet has an input bill, and the control unit controls the bill transporting mechanism to be driven to operate so as to transport the inputted bill onto the bill stacking surface if the first position sensor detects that the bill inlet has an input bill.
6. The bill receiving apparatus according to claim 4 or 5, wherein the bill transporting mechanism includes a rotary impeller, and the inputted bill is transported onto the bill stacking surface by controlling rotation of the rotary impeller; wherein the blades of the rotating impeller are formed from a flexible material.
7. The bill storing device according to claim 1, wherein the bill inlet is connected with a bill input mechanism which is controlled by the control unit to input a bill to the box body through the bill inlet.
8. The bill receiving apparatus according to claim 1, wherein the bill holding mechanism includes a pallet connected to a bottom of the casing by a spring, lifting of the bill holding mechanism is controlled by an elastic force of the spring, and bills received by the casing are stacked on the pallet.
9. A self-service financial device having a function of conducting transactions using notes, characterised in that the self-service financial device comprises a note receiving device as claimed in any one of claims 1 to 8.
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CN201710941141.7A CN107610325B (en) | 2017-10-11 | 2017-10-11 | Bill storage device and self-service financial equipment |
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CN201710941141.7A CN107610325B (en) | 2017-10-11 | 2017-10-11 | Bill storage device and self-service financial equipment |
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CN109272634A (en) * | 2018-10-23 | 2019-01-25 | 恒银金融科技股份有限公司 | A kind of force-note mechanism and the containing box with force-note mechanism |
CN109649794A (en) * | 2018-12-19 | 2019-04-19 | 合肥银龙印务有限公司 | Bill storage device |
CN109649795A (en) * | 2018-12-19 | 2019-04-19 | 合肥银龙印务有限公司 | Bill classification storing unit |
CN110599670B (en) * | 2019-08-26 | 2021-11-16 | 深圳市合众金融设备服务有限公司 | Abnormal detection method and system for number of paper money in money box, server and financial equipment |
CN110728785A (en) * | 2019-09-03 | 2020-01-24 | 深圳怡化电脑股份有限公司 | Ticket distributing mechanism, ticket box and self-service financial equipment |
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