Energy-saving currency detector

By controlling the start-up and low-power mode switching of the banknote detector with a metal sensor, and combining it with a multi-layer banknote detector light source, the problems of insufficient convenience and energy efficiency of existing banknote detectors are solved, realizing a banknote detector design that is easy to operate and low in energy consumption.

CN223884036UActive Publication Date: 2026-02-06ZHEJIANG KAIXUN MECHANICAL & ELECTRICAL
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Patent Information

Application Number
CN202520387302.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-07
Publication Date
2026-02-06
Estimated Expiration
2035-03-07

AI Technical Summary

Technical Problem

Existing banknote detectors are inadequate in terms of ease of use and energy efficiency. Traditional button operation is cumbersome, infrared sensor location is inconvenient and has high energy consumption.

Method used

The banknote detector is controlled by a metal sensor, and is activated by human touch and automatically switches to a low-power mode. It combines white light and UV lamps for multi-layer banknote verification, increasing convenience and accuracy and reducing the use of physical buttons.

Benefits of technology

This banknote detector features convenient operation and low energy consumption, reducing equipment wear and failure rate, improving banknote verification accuracy, and extending service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

An energy-saving currency detector comprises a base, a power circuit board and a control board electrically connected with the power circuit board are arranged in the base, a power switch used for controlling the power circuit board is arranged on the base, an external power source is connected to the power switch, a light-transmitting board is arranged on the upper surface of the base, and the light-transmitting board is connected with the control board. The base is provided with a first lamp tube electrically connected with the control panel on the lower side of the light-transmitting plate, the upper side of the base is provided with a light shield of a semi-surrounding structure, the lower side of the light shield is provided with a second lamp tube irradiating the light-transmitting plate, and the base is provided with a change-over switch used for controlling mode switching of the second lamp tube. The change-over switch, the second lamp tube and the control panel are electrically connected, and an induction metal sheet electrically connected with the control panel is arranged on the surrounding side, away from the light shield, of the light-transmitting plate of the base. The utility model has the advantages of simple structure, reasonable design, multiple functions, simple operation, low energy consumption, long service life and the like.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a currency detector, especially to an energy-saving currency detector. BACKGROUND

[0002] The point currency detector is mainly used for checking and counting currency, and is generally applicable to occasions with large cash throughput. With the popularization of mobile payment, people use cash less and less. Therefore, it is not cost-effective to purchase a point currency detector for checking currency. Thus, currency detectors gradually become popular on the market. The common currency detectors can be divided into two categories according to energy consumption: 1. Non-energy-saving currency detector. After being powered on, the light of the currency detector is in an open state, and energy-saving operation cannot be performed. The traditional physical button must be used to turn off the device. 2. Energy-saving currency detector. The energy-saving technology of infrared emission type is used. Only when the infrared tube at a specific position is touched, the energy-saving mode can be switched to the normal working mode. The use is not very convenient. SUMMARY

[0003] The utility model discloses a simple structure, reasonable in design, multiple functions, simple operation, low energy consumption and long service life of energy-saving currency detector.

[0004] The utility model discloses a technical scheme that solves the technical problems: an energy-saving currency detector, including the base, be equipped with power line board in the base, with the control panel of power line board electric connection, be equipped with the power switch for controlling power line board on the base, be connected with external power supply on the power switch, the upper surface of base is equipped with the light transmission plate, the first lamp tube of light transmission plate downside of base is equipped with with control panel electric connection, the half surrounding structure's light shield of base upside is equipped with the second lamp tube of irradiation on the light transmission plate, be equipped with the switch for controlling second lamp tube mode switching on the base, switch, second lamp tube with control panel electric connection, the side of surrounding of light transmission plate away from the light shield of base is equipped with with control panel electric connection's inductive metal sheet. Adopt above -mentioned structure, through setting inductive metal sheet, only need to detect human body touch inductive metal sheet to control the operation of currency detector, do not need traditional physical button, compared with infrared type, the touch sensing position is increased, do not need to touch specific position, greatly facilitate the use of currency detector, when human body touches the area of inductive metal sheet, currency detector starts rapidly and enters the working state, reduces the use frequency of physical button or switch, thereby reduces the wear and failure rate of equipment, when human body leaves the inductive area, currency detector then automatically enters the low power consumption mode, realizes intelligent energy-saving, greatly reduces the energy consumption, ensures that the user enjoys the convenient operation, also can realize the goal of energy-saving.

[0005] As preferred, the first lamp tube is a white light lamp, and the second lamp tube is a UV lamp.

[0006] As preferred, the base is provided with a magnetic head and an indicator lamp between the light-transmitting plate and the inductive metal sheet, and the magnetic head and the indicator lamp are arranged on the control board.

[0007] As preferred, the base is provided with an arc-shaped transition plate on the side away from the light-transmitting plate, and the inductive metal sheet is attached to the inner side of the arc-shaped transition plate.

[0008] As preferred, the external power supply is a battery or a plug-in wire.

[0009] The utility model has the advantages of simple structure, reasonable design, multiple functions, simple operation, low energy consumption, long service life and the like. BRIEF DESCRIPTION OF DRAWINGS

[0010] Fig. 1 is the structural schematic diagram of the utility model embodiment;

[0011] Fig. 2 is the internal structure connection diagram of the utility model embodiment.

[0012] In the drawing: 1, base; 2, power supply circuit board; 3, control board; 4, power switch; 5, external power supply; 6, light-transmitting plate; 7, first lamp tube; 8, light shield; 9, second lamp tube; 10, switching switch; 11, inductive metal sheet; 12, magnetic head; 13, indicator lamp; 14, arc-shaped transition plate. DETAILED DESCRIPTION

[0013] The technical scheme of the utility model will be further concretely explained below by specific embodiments and in combination with the drawings. EMBODIMENT

[0014] As Figs. 1-2The energy-saving type banknote detector shown in the application comprises a base 1, a power supply circuit board 2 arranged in the base 1, a control board 3 electrically connected with the power supply circuit board 2, a power switch 4 arranged on the base 1 and used for controlling the power supply circuit board 2, an external power supply 5 connected with the power switch 4, a light transmission plate 6 arranged on the upper surface of the base 1, a first lamp 7 arranged on the lower side of the light transmission plate 6 and electrically connected with the control board 3, a light shield cover 8 arranged on the upper side of the base 1 and having a semi-enclosing structure, a second lamp 9 arranged on the lower side of the light shield cover 8 and irradiating the light transmission plate 6, a switch 10 arranged on the base 1 and used for controlling the mode switching of the second lamp 9, the switch 10 and the second lamp 9 being electrically connected with the control board 3, and a metal sensing sheet 11 arranged on the side of the base 1 away from the light shield cover 8 and electrically connected with the control board 3. By arranging the metal sensing sheet 11, the operation of the banknote detector can be controlled by detecting the human body touching the metal sensing sheet 11, and the traditional physical button is not needed. Compared with the infrared type, the touching sensing position is increased, and the specific position is not needed to be touched, so that the use of the banknote detector is greatly facilitated. When the human body touches the area where the metal sensing sheet 11 is arranged, the banknote detector is rapidly started and enters the working state, the use frequency of the physical button or switch is reduced, and thus the abrasion and failure rate of the equipment are reduced. When the human body leaves the sensing area, the banknote detector automatically enters the low-power mode, the intelligent energy saving is realized, the energy consumption is greatly reduced, and the user can enjoy the convenient operation and realize the energy saving target at the same time. An arc-shaped transition plate 14 is arranged on the side of the base 1 away from the light transmission plate 6, and the metal sensing sheet 11 is pasted on the inner side of the arc-shaped transition plate 14. When the banknote is detected, the finger can touch the metal sensing sheet 11 when the banknote is placed on the light transmission plate 6. The external power supply 5 is a battery or a plug-in wire, and the power supply is realized through the battery or the plug-in wire, so that the banknote detection can be realized in an emergency.

[0015] The first lamp 7 is a white light lamp, and the second lamp 9 is a UV lamp. The light emitted by the white light lamp passes through the light transmission plate 6, and the banknote placed on the light transmission plate 6 can be used to check the watermark. After the watermark is checked, the surface of the banknote is irradiated by the UV lamp to check the hidden fluorescent mark, so that the accuracy of the banknote detection is improved. A magnetic head 12 and an indicator lamp 13 are arranged between the light transmission plate 6 and the metal sensing sheet 11. The magnetic head 12 and the indicator lamp 13 are arranged on the control board 3. After the banknote is checked by the watermark and the fluorescent mark, the banknote can be directly slid back along the light transmission plate 6 to pass through the magnetic head 12, so that the magnetic anti-fake of the banknote is further detected, and thus the accuracy of the banknote detection is ensured.

[0016] In use, the power switch 4 is turned on, at which time the currency detector is in a standby state, and the light sources on the currency detector are all in an off state. When the banknote is placed on the light transmission plate 6, the finger touches the arc transition plate 14, the sensing metal sheet 11 on the inner wall of the arc transition plate 14 receives the signal, and the currency detector is rapidly started and enters a working state through the control of the control board 3. At this time, the first lamp tube 7 is lit to check the watermark. After the check is completed, the second lamp tube 9 is controlled to be lit by the switching switch 10 to check the hidden fluorescent mark. After the check is completed, the banknote is slid back along the light transmission plate 6, and the magnetic head 12 detects the magnetic anti-fake of the banknote. After the check is completed, the human body leaves the sensing area, and the currency detector automatically enters a standby state of a low-power consumption mode.

[0017] The above-described embodiment is only a preferred scheme of the present application, and does not limit the present application in any form. Other variants and modifications can be made without departing from the technical scheme recited in the claims.

Claims

1. An energy saving currency counter comprising a base (1), characterised in that: The base (1) is internally provided with a power circuit board (2), a control board (3) electrically connected with the power circuit board (2), the base (1) is provided with a power switch (4) for controlling the power circuit board (2), the power switch (4) is connected with an external power supply (5), the upper surface of the base (1) is provided with a light transmission plate (6), the lower side of the base (1) is provided with a first lamp tube (7) electrically connected with the control board (3) under the light transmission plate (6), the upper side of the base (1) is provided with a light shield cover (8) of a semi-enclosing structure, the lower side of the light shield cover (8) is provided with a second lamp tube (9) irradiating on the light transmission plate (6), the base (1) is provided with a switch switch (10) for controlling the mode switching of the second lamp tube (9), the switch switch (10), the second lamp tube (9) and the control board (3) are electrically connected, the base (1) is provided with an inductive metal sheet (11) electrically connected with the control board (3) on the side of the light transmission plate (6) away from the surrounding of the light shield cover (8).

2. The energy saving currency counter according to claim 1, characterized in that: The first lamp tube (7) is a white light lamp, and the second lamp tube (9) is a UV lamp.

3. The energy saving currency counter according to claim 1, wherein: The base (1) is provided with a magnetic head (12) and an indicator light (13) between the light transmission plate (6) and the inductive metal sheet (11), and the magnetic head (12) and the indicator light (13) are arranged on the control board (3).

4. The energy saving currency counter according to claim 3, wherein: The base (1) is provided with an arc-shaped transition plate (14) on the side of the magnetic head (12) away from the light transmission plate (6), and the inductive metal sheet (11) is pasted to the inner side of the arc-shaped transition plate (14).

5. The energy saving currency counter according to claim 1, characterized in that: The external power supply (5) is a battery or a plug-in wire.