一种具有双通道的上币装置
By increasing the size of the rotating wheel and adding more accommodating cavities in the dual-channel coin feeding device, and combining it with a rotating coin throwing mechanism, dual-channel coin feeding can be achieved in a single device, solving the problem of low coin throwing rate in existing devices, improving the coin output rate and reducing the loss rate.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGZHOU WENTUO TECHNOLOGY CO LTD
- Filing Date
- 2025-10-30
- Publication Date
- 2026-07-17
Smart Images

Figure CN224519366U_ABST
Abstract
Claims
1. A coin in device having dual passageways characterized by: It includes a coin box, a first coin loading channel and a second coin loading channel. The coin box is equipped with a rotating coin throwing mechanism. The bottom of the coin box is equipped with a first coin loading port and a second coin loading port. The lower part of the first coin loading channel is connected to the first coin loading port, and the lower part of the second coin loading channel is connected to the second coin loading port. The upper part of the first coin loading channel has a first coin outlet, and the upper part of the second coin loading channel has a second coin outlet. The rotating coin-throwing mechanism includes a rotating wheel. When the rotating wheel is driven to rotate in a first direction, the rotating coin-throwing mechanism throws the game coins in the coin box toward the first coin loading channel so that the coins can be dispensed from the first coin outlet. When the rotating wheel is driven to rotate in a second direction opposite to the first direction, the rotating coin-throwing mechanism throws the game coins in the coin box toward the second coin loading channel so that the coins can be dispensed from the second coin outlet. The spool has more than five accommodating cavities spaced along its circumference, which are connected to the first coin loading port and the second coin loading port.
2. The coin stacking device of claim 1, wherein: The bottom side of the rotating wheel is provided with a coin throwing channel, which is connected to the receiving cavity, the first coin loading port and the second coin loading port respectively.
3. The coin stacking device of claim 2, wherein: The rotating wheel has a coin-blocking component between two adjacent receiving cavities. The coin-blocking component passes through the coin-throwing channel and the rotating wheel along the axial direction of the rotating wheel and protrudes from the upper surface of the rotating wheel at a predetermined height.
4. The coin stacking device of claim 2, wherein: The rotating coin-throwing mechanism is equipped with a limiting component for selecting the first coin-loading channel or the second coin-loading channel; One end of the limiting member is provided with a resettable spring mechanism, and the other end is provided with a locking post that passes through the coin throwing channel along the axial direction of the rotating wheel.
5. The coin stacking device of claim 2, wherein: A first coin feeding port is provided between the first coin feeding port and the rotating wheel, and a second coin feeding port is provided between the second coin feeding port and the rotating wheel. The first coin feeding port and the second coin feeding port are respectively connected to the coin throwing channel.
6. The coin stacking device of claim 5, wherein: A base plate is provided below the rotating wheel. A first coin guide plate, a second coin guide plate, and a third coin guide plate are affixed at intervals on the side of the base plate facing the rotating wheel. The second coin guide plate is located between the first coin guide plate and the third coin guide plate. The first coin sliding channel is formed by the space between the first coin guide plate and the second coin guide plate, and the second coin sliding channel is formed by the space between the second coin guide plate and the third coin guide plate.
7. The coin stacking device of claim 6, wherein: The first coin slide channel and the second coin slide channel are covered with a cover plate.
8. The coin stacking device of claim 7, wherein: A first spring-loaded component is provided at the connection between the first coin sliding channel and the coin throwing channel, and a second spring-loaded component is provided at the connection between the second coin sliding channel and the coin throwing channel.
9. The coin stacking device of claim 8, wherein: The cover plate has a first ball at the connection between the first coin sliding channel and the coin throwing channel, and a second ball at the connection between the second coin sliding channel and the coin throwing channel. The first ball and the second ball both pass through the cover plate and extend into the first coin sliding channel and the second coin sliding channel respectively. A first spring and a second spring are provided above the cover plate. One end of the first spring is connected to the first coin guide piece, and the other end is pressed on the first sphere. One end of the second spring is connected to the second coin guide piece, and the other end is pressed on the second sphere.
10. The coin filling apparatus according to claim 5 or 6, characterized by: The first and / or second coin sliding passage is an arc-shaped passage which is convex to the outside of the corresponding side of the rotating wheel.