The present invention relates to a claw crane structure, and more particularly to a claw crane structure with an improved design for the connection between the coil and the winding wire of a claw crane of a crane game machine. The improved structure facilitates easier installation, maintenance, and replacement while reducing costs.
The current crane game machines (or claw machines, claw vending machines, etc.) both toy grabbing entertainment and commodity sales devices. People with all ages, including young children, students, professionals, and older individuals, can play these games to obtain prizes. Businesses also place special goods, limited items or other commodities inside crane game machines to attract players, enhance product value and popularity, and boost marketing effectiveness. As a result, crane game machines are widely enjoyed by the public and remain a popular form of entertainment and retail.
Currently, a claw crane in a crane game machine includes a main body 10 that houses a coil 11. At the bottom of the main body 10, a clamping claw 12 is pivotally connected to a standing tube 13 within the coil 11. So that the clamping claw 12 can be clamped inwardly or expanded outwardly according to the rise and fall of the standing tube 13 within the coil 11, and the claw crane is primarily connected to the terminals of a winding wire 14 of a power supply through both ends of the coil 11. When the coil 11 is powered onto generate a magnetic field, the standing tube 13 in connection with the clamping claw 12 is caused to rise, allowing the clamping claw 12 to clamp inward. Furthermore, the both ends of the coil 11 are respectively connected with the terminals of the winding wire 14, coupling the coil 11 and the winding wire 14 together (as shown in
However, when the coil 11, winding wire 14 or clamping claw 12 becomes damaged, or requires maintenance and replacement, the process is time-consuming and labor-intensive. Since the coil 11 is sealed and hidden, and the connections between the coil 11 and the winding wire 14 are wrapped in insulating tape 15, technicians must remove the tape before performing maintenance. After completing the repairs or replacements, the insulating tape 15 must be reapplied to reseal and conceal the coil 11, resulting in unnecessary waste and inefficiency.
To overcome the disadvantages mentioned above, the present invention is proposed.
An object of the present invention is to provide a claw crane with convenient assembly and disassembly.
To achieve this object, the present invention proposes a claw crane structure that includes a main body and a coil being provided inside. The bottom of the main body is provided with a clamping claw pivotally coupled to a standing tube extending inside the coil. This allows the clamping claw to clamp inward or expand outward based on the rise and fall of the standing tube inside the coil. According to the present invention, a PC circuit board is provided on the main body, positioned above the coil. Both ends of the coil are in electrical connection with two coil contacts provided on the PC circuit board. Additionally, the main body includes a winding wire for supplying electrical energy, with two terminals similarly connected to two winding wire contacts provided on the PC circuit board. Each pair of the coil contacts and winding wire contacts are electrically connected, allowing power from the winding wire to pass through the PC circuit board to energize the coil and generate a magnetic field.
With the above structure, the claw crane structure provides convenient assembly, maintenance and replacement, while reducing costs.
Referring to
As mentioned above, in a preferred embodiment, both ends of the coil 21 is electrically connected with the lower side of the PC circuit board 30, while the terminals of the winding wire 22 connect to the upper side of the PC circuit board 30.
With the above structure, the present invention does not need an insulating tape to join the coil 21 and the terminals of the winding wire 24 thereby providing easy assembly and rapid maintenance. Since both ends of the coil 21 are electrically connected with the PC circuit board 30 and the terminals of the winding wire 24 are also electrically connected with the PC circuit board 30. In addition, since the PC circuit board 30 provided on the main body 20 is relatively positioned above the coil 21, the PC circuit board will not be covered and sealed, so that when the coil 21 and the terminal of the winding wire 22 is required to be maintained and replaced, personnel can directly disconnect, short circuit or reconnect the connection between the coil 21, winding wire 24 and PC circuit board 30 to carry out the maintenance, replacement without removing an insulating tape or a sealing layer outside the coil 21, resulting in time and cost savings.
Furthermore, the PC circuit board 30 includes a temperature sensor (not shown in the figures), and the working pins of the temperature sensor are electrically connected with the coil contacts 31 and winding wire contacts 32 configured on the PC circuit board 30, which can be used to detect the working temperature of the coil 21 and PC circuit board 30, thereby enabling the temperature sensor to control the conduction or short-circuit of the coil 21 and winding wire 24 and preventing the coil 21 from being damaged due to overheating. In a preferred embodiment, the temperature sensor is attached to the tube wall around the coil 21, so as to enhance temperature sensing accuracy and responsiveness.
Number | Date | Country | Kind |
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111203261 | Mar 2022 | TW | national |
Number | Name | Date | Kind |
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9898885 | Wang | Feb 2018 | B1 |
11183017 | Tsai | Nov 2021 | B1 |
20160082345 | Balaban | Mar 2016 | A1 |
Number | Date | Country |
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111569407 | Aug 2020 | CN |
2178328 | Feb 1987 | GB |
M630320 | Aug 2022 | TW |
Number | Date | Country | |
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20230316875 A1 | Oct 2023 | US |