Banknote separating device and component positioning method
A technology of paper currency separation and positioning method, which is applied to the device for accepting coins, handling coins or valuable banknotes, and parts of automatic teller machines, etc. It can solve the problems of banknote folding angle, inaccurate tongue positioning, and stuck coins, etc.
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no. 1 example
[0027] In today's society with an unprecedentedly developed economy, shopping malls, banks, etc. need to conduct a large number of high-frequency fast currency transactions, and people's demand for automatic deposit and withdrawal equipment is getting higher and higher. At the same time, while people are concerned about the convenience of the deposit and withdrawal equipment, they also put forward higher requirements for the user experience of using the deposit and withdrawal equipment for currency transactions. The quality of transaction completion is a key factor affecting user experience. Furthermore, if the banknotes withdrawn by the user from the cash deposit and withdrawal device have folded corners, slow delivery speed or even stuck currency, it will seriously affect the user's withdrawal experience. After further research, the applicant found that after the tongues of the existing banknote separation device were hidden under the drive of the motor, the stator and the r...
no. 2 example
[0043] In order to control the above-mentioned banknote separating device 100 to realize the hiding of the tongue pieces and the facing of the friction parts, the second embodiment of the present invention provides a component positioning method. Please refer to image 3 , image 3 It is a flow chart of a component positioning method provided by the second embodiment of the present invention. The specific steps of the component positioning method are as follows:
[0044] Step S100: the processor controls the motor to rotate in the first preset direction through the motor drive chip to drive the first rotating wheel to rotate to the preset position, so that the tongue is not exposed to the Inside the banknote passage.
[0045] Step S200: the processor controls the motor to keep in a locked state for N seconds through the motor driver chip.
[0046] Step S300: the processor controls the motor to rotate in a second preset direction through the motor drive chip to drive the se...
no. 3 example
[0051] Please refer to Figure 4 , Figure 4 A structural block diagram of a deposit and withdrawal device 200 applicable to the embodiment of the present application is shown. The deposit and withdrawal device 200 may include a banknote separation device 100 , a memory 201 , a storage controller 202 , a processor 203 , a peripheral interface 204 , an input and output unit 205 , an audio unit 206 , and a display unit 207 .
[0052] The memory 201, storage controller 202, processor 203, peripheral interface 204, input and output unit 205, audio unit 206, and display unit 207 are electrically connected to each other directly or indirectly to realize data transmission or interact. For example, these components can be electrically connected to each other through one or more communication buses or signal lines. The banknote separating device 100 includes at least one software function module that can be stored in the memory 201 in the form of software or firmware (firmware) or s...
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