Medium conveyance route switching device for automated teller machine
11981524 ยท 2024-05-14
Assignee
Inventors
Cpc classification
B65H29/60
PERFORMING OPERATIONS; TRANSPORTING
B65H2403/942
PERFORMING OPERATIONS; TRANSPORTING
B65H5/36
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65H29/60
PERFORMING OPERATIONS; TRANSPORTING
B65H5/36
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A medium conveyance route switching device includes: a support unit located at a branching point where conveyance directions of a medium converge in three directions; a gate assembly including a plurality of gates to guide at the branching point the medium to different conveyance paths; and a rotation mechanism configured to selectively rotate the plurality of gates. The support unit includes: a first support piece having a first through-hole portion; a second support piece having a second through-hole portion; a third support piece having a third through-hole portion; a first bending connection portion rotatably connecting one end of the first support piece and the second support piece; a second bending connection portion rotatably connecting the other end of the first support piece and the third support piece; and a fixing shaft inserted into the first through-hole portion, the second through-hole portion, and the third through-hole portion.
Claims
1. A medium conveyance route switching device for an automated teller machine, comprising: a support unit located at a branching point where conveyance directions of a medium converge in three directions; and a gate assembly including a plurality of gates to guide at the branching point the medium to different conveyance paths, wherein the support unit includes: a first support piece having a first through-hole portion; a second support piece having a second through-hole portion and disposed on one side of the first support piece; a third support piece having a third through-hole portion and disposed on the other side of the first support piece; a first bending connection portion rotatably connecting one end of the first support piece and the second support piece; a second bending connection portion rotatably connecting the other end of the first support piece and the third support piece; and a fixing shaft inserted into the first through-hole portion, the second through-hole portion and the third through-hole portion to prevent the first through-hole portion, the second through-hole portion and the third through-hole portion from being separated from each other in a state in which the first support piece, the second support piece and the third support piece are in contact with each other.
2. The medium conveyance route switching device of claim 1, wherein the support unit is provided in a form of an assembly in which a plurality sets of the first support piece, the second support piece and the third support piece and a plurality sets of a first gate, a second gate and a third gate are alternately provided to be spaced apart and connected along a longitudinal direction of the fixing shaft.
3. The medium conveyance route switching device of claim 2, wherein the first support piece, the second support piece, and the third support piece are disposed symmetrically with the fixing shaft interposed therebetween.
4. The medium conveyance route switching device of claim 1, wherein the plurality of gates include: a first gate for guiding the conveyance direction of the medium from a first conveyance path to a second conveyance path or a third conveyance path among the conveyance paths; a second gate for guiding the conveyance direction of the medium from the second conveyance path to the first conveyance path or the third conveyance path; and a third gate for guiding the conveyance direction of the medium from the third conveyance path to the first conveyance path or the second conveyance path.
5. The medium conveyance route switching device of claim 1, wherein at least one of the first bending connection portion and the second bending connection portion is formed of a flexible material.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(7) Hereinafter, specific embodiments for implementing a spirit of the present disclosure will be described in detail with reference to the drawings.
(8) In describing the present disclosure, detailed descriptions of known configurations or functions may be omitted to clarify the present disclosure.
(9) When an element is referred to as being connected to, supported by, or coupled to another element, it should be understood that the element may be directly connected to, supported by, or coupled another element, but that other elements may exist in the middle.
(10) The terms used in the present disclosure are only used for describing specific embodiments, and are not intended to limit the present disclosure. Singular expressions include plural expressions unless the context clearly indicates otherwise.
(11) Terms including ordinal numbers, such as first and second, may be used for describing various elements, but the corresponding elements are not limited by these terms. These terms are only used for the purpose of distinguishing one element from another element.
(12) In the present specification, it is to be understood that the terms such as including are intended to indicate the existence of the certain features, areas, integers, steps, actions, elements, combinations, and/or groups thereof disclosed in the specification, and are not intended to preclude the possibility that one or more other certain features, areas, integers, steps, actions, elements, combinations, and/or groups thereof may exist or may be added.
(13) In the present specification, expressions such as upper side, lower side and the like are described based on the drawings, but it is to be noted that when the orientation of the corresponding subject is changed, it may be expressed differently.
(14) Hereinafter, a medium conveyance route switching device for an automated teller machine according to one embodiment of the present disclosure will be described with reference to
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(16) As shown in
(17) The frame/housing 700 may provide a storage space for storing media. In the present embodiment, the frame/housing 700 is not limited to a storage space for media (a banknote, a check, etc.). The frame/housing 700 may provide the overall appearance of the automated teller machine.
(18) The deposit/withdrawal part 300 may provide a deposit/withdrawal space for inputting or receiving media. The deposit/withdrawal part 300 may be provided with belts, rollers, motors and the like for conveying the medium. Configurations of the belts, the rollers, the motors and the like are generally known in the art of medium conveyance and, therefore, the detailed description thereof will be omitted.
(19) The conveyance path 200 may provide a medium conveyance path in the internal space of the frame/housing 700. The conveyance path 200 may provide a conveyance route of a medium to be deposited and withdrawn through the deposit/withdrawal part 300. For example, the conveyance path 200 may guide a medium deposited through the deposit/withdrawal part 300 to the discrimination part 400, the temporary holding part 500 or the recycle cassette 600, or may guide a medium discharged from the recycle cassette 600 to the discrimination part 400 or the deposit/withdrawal part 300.
(20) The medium conveyance route switching device 100 may be installed on the conveyance path 200. The medium conveyance route switching device 100 may branch the conveyance path so that the moving direction of a medium is guided. Details of the medium conveyance route switching device 100 will be described later.
(21) The discrimination part 400 may be installed on the conveyance path 200. The discrimination part 400 may discriminate the type and the presence or absence of abnormality of a medium moving through the conveyance path 200. At the time of counting the deposited media, the normal medium discriminated as a medium having no abnormality by the discrimination part 400 may be temporarily stored in the temporary holding part 500. The suspected medium discriminated as a medium having an abnormality by the discrimination part 400 may be returned to the customer through the deposit/withdrawal part 300.
(22) The temporary holding part 500 may provide a storage space for temporarily storing the medium discriminated by the discriminating part 400. The temporary holding part 500 may receive the medium discriminated by the discrimination part 400 through the conveyance path 200.
(23) The recycle cassette 600 may provide a stacking space capable of storing a medium during deposition. The recycle cassette 600 may discharge the medium stored in the stacking space during withdrawal. The recycle cassette 600 may include a plurality of cassettes having different sizes depending on the types of media.
(24) The configuration of the automated teller machine 10 described above is exemplified to help understanding of the present embodiment. Accordingly, other components may be added to the above-described configuration as needed. The configuration and structure may be modified or changed according to the needs.
(25) As shown in
(26) Specifically, the support unit 110 may be located at a branching point of the conveyance path 200 where medium conveyance routes converge in three directions. The medium moving on the conveyance path 200 may be supported by a guide roller 710. In the case of the three-way conveyance path 200, for the sake of convenience and understanding of the description, the conveyance path located on the lower side in the drawings is defined as a first conveyance path 201, the conveyance path located on the left side in the drawings is defined as a second conveyance path 202, and the conveyance path located on the right side in the drawings is defined as a third conveyance path 203. The support unit 110 may be located at a point where the conveyance path 200 is branched into switching paths 120.
(27) The support unit 110 may include a first support piece 111, a second support piece 112, a third support piece 113, a fixing shaft 114, a first bending connection portion 115 and a second bending connection portion 116.
(28) The first support piece 111 may be rotatably connected to the second support piece 112 and the third support piece 113. For example, one end of the first support piece 111 may be rotatably connected to the second support piece 112 through the first bending connection portion 115, and the other end of the first support piece 111 may be rotatably connected to the third support piece 113 through the second bending connection portion 116.
(29) The first bending connection portion 115 and the second bending connection portion 116 are bent without being folded and notched to respectively rotate the second support piece 112 and the third support piece 113 with respect to the first support piece 111. The first bending connection portion 115 and the second bending connection portion 116 may be formed of a flexible material that can be bent without being folded or notched. In addition, the first support piece 111, the second support piece 112 and the third support piece 113 may be integrally formed, and the first bending connection portion 115 and the second bending connection portion 116 may also be integrally formed with the first support piece 111, the second support piece 112 and the third support piece 113.
(30) Both sidewalls of the first support piece 111 may be in close contact with a sidewall of the second support piece 112 and a sidewall of the third support piece 113, respectively. A first through-hole portion 111a may be formed in a lower edge portion of the first support piece 111. When assembling the support unit 110, in a state in which the first support piece 111 is in close contact with the second support piece 112 and the third support piece 113, the fixing shaft 114 may be inserted and fixed to the first through-hole portion 111a of the first support piece 111.
(31) Further, the first support piece 111 may include first shaft grooves 111d and 111e for respectively supporting at least a portion of a second rotation shaft 152 and at least a portion of a third rotation shaft 153, and a first fixing shaft groove 111f for supporting at least a portion of the fixing shaft 114.
(32) The second support piece 112 may be connected to the first support piece 111 through the first bending connection portion 115 so as to be bendable without being folded or notched. When assembling the support unit 110, the second support piece 112 is folded toward the first support piece 111 with respect to the first bending connection portion 115 to be in close contact with the sidewall of the first support piece 111.
(33) Both sidewalls of the second support piece 112 may be in close contact with the sidewall of the first support piece 111 and the sidewall of the third support piece 113, respectively. A second through-hole portion 112a may be formed at a side edge portion of the second support piece 112. When assembling the support unit 110, in a state in which the second support piece 112 is in close contact with the first support piece 111 and the third support piece 113, the fixing shaft 114 may be inserted and fixed to the second through-hole portion 112a of the second support piece 112.
(34) Further, the second support piece 112 may include second shaft grooves 112d and 112e for respectively supporting at least a portion of the second rotation shaft 152 and at least a portion of a first rotation shaft 151, and a second fixing shaft groove 112f for supporting at least a portion of the fixing shaft 114.
(35) The third support piece 113 may be connected to the first support piece 111 through the second bending connection portion 116 so as to be bendable without being folded or notched. When assembling the support unit 110, the third support piece 113 is folded toward the first support piece 111 with respect to the second bending connection portion 116 to be in close contact with the sidewall of the first support piece 111.
(36) Both sidewalls of the third support piece 113 may be in close contact with the sidewall of the second support piece 112 and the sidewall of the first support piece 111, respectively. A third through-hole portion 113a may be formed at a side edge portion of the third support piece 113. When assembling the support unit 110, in a state in which the third support piece 113 is in close contact with the first support piece 111 and the second support piece 112, the fixing shaft 114 may be inserted and fixed to the third through-hole portion 113a of the third support piece 113.
(37) Further, the third support piece 113 may include third shaft grooves 113d and 113e for respectively supporting at least a portion of the third rotation shaft 153 and at least a portion of the first rotation shaft 151, and a third fixing shaft groove 113f for supporting at least a portion of the fixing shaft 114.
(38) The first support piece 111, the second support piece 112, and the third support piece 113 may be disposed symmetrically to each other with the fixing shaft 114 interposed therebetween.
(39) The fixing shaft 114 may be inserted through the first through-hole portion 111a, the second through-hole portion 112a and the third through-hole portion 112a in a state in which the first support piece 111, the second support piece 112 and the third support piece 113 are in close contact with each other. The fixing shaft 114 fixes the first through-hole portion 111a, the second through-hole portion 112a and the third through-hole portion 113a, so that the first support piece 111, the second support piece 112 and the third support piece 113 can be prevented from being separated from each other. The first through-hole portion 111a, the second through-hole portion 112a and the third through-hole portion 113a may be alternately disposed according to a predetermined order. For example, the first through-hole portion 111a, the second through-hole portion 112a and the third through-hole portion 113a may be alternately arranged according to the order of the first through-hole portion 111a, the second through-hole portion 112a and the third through-hole portion 113a.
(40) The first bending connection portion 115 may connect the first support piece 111 and the second support piece 112 to be bendable without being folded and notched. The first bending connection portion 115 may be formed of a soft material capable of being bent at a predetermined angle. The second bending connection portion 116 may connect the first support piece 111 and the third support piece 113 to be bendable without being folded and notched. The second bending connection portion 116 may be formed of a soft material capable of being bent at a predetermined angle without being folded and notched.
(41) The gate assembly 130 may guide a conveyance direction of a medium moving on the three-way conveyance path 200. To this end, the gate assembly 130 may include a plurality of gates that are rotatably installed on the support unit 110. Since one end of each of the gates is rotated at a point where the conveyance path 200 is branched into the switching paths 120, the other end of each of the gates can selectively open or close each of the switching paths 120.
(42) The gate assembly 130 includes a first gate 131, a second gate 132 and a third gate 133 located on the side of the first conveyance path 201, the second conveyance path 202 and the third conveyance path 203, respectively.
(43) The first gate 131 may guide the conveyance direction of a medium from the first conveyance path 201 to the second conveyance path 202 or the third conveyance path 203. The first gate 131 may include the first rotation shaft 151 rotatably mounted to the support unit 110, and a plurality of first gate pieces spaced apart along the longitudinal direction on one side of the first rotation shaft 151. The first rotation shaft 151 is a rotation axis of the first gate 131 and may be rotatably installed on a lower portion of the support unit 110.
(44) The second gate 132 may guide the conveyance direction of a medium from the second conveyance path 202 to the first conveyance path 201 or the third conveyance path 203. The second gate 132 may include the second rotation shaft 152 rotatably mounted to the support unit 110, and a plurality of second gate pieces spaced apart along the longitudinal direction on one side of the second rotation shaft 152. The second rotation shaft 152 is a rotation axis of the second gate 132 and may be rotatably installed on one side portion of the support unit 110.
(45) The third gate 133 may guide the conveyance direction of a medium from the third conveyance path 203 to the first conveyance path 201 or the second conveyance path 202. The third gate 133 may include the third rotation shaft 153 rotatably mounted to the support unit 110, and a plurality of third gate pieces 163 spaced apart along the longitudinal direction on one side of the third rotation shaft 153. The third rotation shaft 153 is a rotation axis of the third gate 133 and may be rotatably installed on the other side portion of the support unit 110.
(46) The rotation mechanism may include a driving shaft (not shown) of an actuator that is operatively connected to at least one of the first rotating shaft 151, the second rotating shaft 152 and the third rotating shaft 153, and a transmission gear (not shown) for transmitting the driving force of the actuator to the other rotating shafts.
(47) In the present embodiment, the first rotation shaft 151 is operatively connected to the driving shaft of the actuator, and the second rotation shaft 152 and the third rotation shaft 153 receive the driving force of the actuator through the transmission gear (including, e.g., a driving gear, a driven gear and the like). However, the present disclosure is not limited thereto, and the rotation shafts may receive the driving force through various types of rotation mechanisms. Hereinafter, the operation of the medium conveyance route switching device having the above configuration according to one embodiment of the present disclosure will be described.
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(49) As illustrated in
(50) The first switching path 121 may connect the second conveyance path 202 and the third conveyance path 203. The second switching path 122 may connect the first conveyance path 201 and the third conveyance path 203. The third switching path 123 may connect the first conveyance path 201 and the second conveyance path 202. In this case, the first conveyance path 201 may be branched into the second switching path 122 and the third switching path 123. The second conveyance path 202 may be branched into the first switching path 121 and the third switching path 123. The third conveyance path 203 may be branched into the first switching path 121 and the second switching path 122.
(51) For example, as shown in
(52) Accordingly, a medium moving through the first conveyance path 201 may be guided to the third conveyance path 203 through the second switching path 122, or a medium moving through the third conveyance path 203 may be guided to the first conveyance path 201 through the second switching path 122.
(53) As shown in
(54) Accordingly, a medium moving through the first conveyance path 201 may be guided to the second conveyance path 202 through the third switching path 123, or a medium moving through the second conveyance path 202 may be guided to the first conveyance path 201 through the third switching path 123.
(55) As shown in
(56) Accordingly, a medium moving through the second conveyance path 202 may be guided to the third conveyance path 203 through the first switching path 121, or a medium moving through the third conveyance path 203 may be guided to the second conveyance path 202 through the first switching path 121.
(57) As described above, the present disclosure provides a structure capable of accurately and rapidly changing the conveyance direction of a medium at the time of depositing or withdrawing the medium. It is possible to reduce the installation space of the actuator for driving the gate and consequently realize space-intensive arrangement of components in the device. Further, it is possible to increase the branching directions of the conveyance path in conformity with the diversified medium cassette arrangement. In addition, since the three support pieces are connected as one unit, the assemblability of the medium conveyance route switching device can be improved.
(58) While the present disclosure has been shown and described with respect to the preferred embodiments, the scope of the present disclosure does not limited to the particular embodiments described, and those skilled in the art may variously change and substitute components within the scope of the present disclosure, which also belong to the scope of the present disclosure.