Recording medium processing apparatus
A recording medium, processing device technology, applied in the direction of transporting record carriers, processing coins or banknotes, complete banking systems, etc.
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Embodiment 1
[0035] This embodiment relates to, for example, an automatic teller machine (hereinafter referred to as ATM) employed in a financial institution system such as a bank system.
[0036] figure 1 It is an external view of ATM1 which concerns on this embodiment. figure 2 It is the internal structure diagram of ATM1. Using this external view and internal structure view, the general structure will be explained.
[0037] The ATM 1 is an automatic transaction device installed in a financial institution or the like, and performs transactions such as withdrawal and deposit of cash in accordance with operations of customers. This ATM 1 automatically executes various transactions requested by users. ATM1 has an operation part 3, a card / statement slip mechanism part 4, a passbook mechanism part 5, a coin deposit and withdrawal mechanism part 6, a banknote deposit and withdrawal mechanism part 7, a card insertion port 8, and a control part 2 for controlling these respective parts.
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Embodiment 2
[0071] Figure 5 It is a side sectional view of the card mechanism 4a and the card insertion slot 8 of Example 2. In this second embodiment, the protrusions 19 inside the conveyance path are vertically opposed to each other, and are fixed so as not to be displaced. The protrusions 19 are made of an elastic material such as rubber, and the interval L3 between the protrusions 19 inside the upper and lower conveyance paths is adjusted to about 80 to 99% of the thickness of the card. By making the interval L3 between the protrusions 19 narrower than the thickness of the card 21 as described above, the protrusions 19 become obstacles when the card is inserted, and the card insertion speed changes. Due to the change of the card insertion speed, the magnetic data is confused, and it is difficult to restore the magnetic data information. In addition, similarly to the first embodiment, each protrusion 19 arranged up and down has a steep slope on the card insertion opening 8 side, and...
Embodiment 3
[0075] Figure 6 It is a side cross-sectional view of the card mechanism 4a and the card insertion port 8 of Embodiment 3, Figure 7 It is a perspective view of the card mechanism 4a and the card insertion port 8 of Example 3. In this third embodiment, the projection 19 inside the conveyance path hangs like a curtain from the upper portion of the conveyance path 18 . The protrusion 19 is made of an elastic material such as rubber, and has a structure in which the curtain-shaped protrusion is pressed and bent when the card is inserted. In addition, the protrusion 19 is arranged in the conveyance path 18 so that the protrusion 19 can abut on the embossed part 25 (concave and convex part) of the card 21 inserted from the card insertion port 8 . Thus, when the card 21 is inserted, the insertion speed changes due to the resistance when the protrusion 19 bends and the resistance when the protrusion 19 abuts on the embossed portion 25 of the card. Therefore, the magnetic data is c...
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