Assembled program control circuit device
By designing an assembled programmable circuit device, a detachable connection between the functional module and the control programming module is achieved, which solves the problem of single function of traditional electronic puzzles, enhances the fun and cultivates children's interest.
Patent Information
- Application Number
- CN202422467811.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-12
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-10-12
AI Technical Summary
Traditional electronic puzzles have limited functions, lack programming capabilities, and are not interesting enough.
An assembled programmable circuit device is designed, which includes an insulating base plate, a functional module, a control programming module and a detachable wire module. These components are used to achieve detachable connection between modules and support programming functions.
It enhances the fun of the device, cultivates children's interest in electronic devices and programming, and is easy to assemble and highly versatile.
Smart Images

Figure CN223347434U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of electronic scientific and educational equipment for teenagers, in particular to an assembled program-controlled circuit device. Background Art
[0002] Chinese patent publication number CN206148021U discloses an electronic puzzle that includes two types of electronic building blocks: an electronic component block and a wire block. The electronic component block is constructed from a plastic plate with a printed circuit embedded within. The upper surface features electronic components and a set of protruding first metal male buckles. The lower surface has a set of blind holes and a set of recessed first metal female buckles. The first metal male buckles and first metal female buckles form a metal snap fastener. The electronic components, first metal male buckles, and first metal female buckles are all connected to the printed circuit to form an electronic circuit. The electronic components can be a combination of one or more of a resistor, diode, transistor, switch, light bulb, battery, sensor, capacitor, motor, speaker, touchpad, thyristor, or relay. A group of second metal male buckles with protrusions are arranged at equal distances on the upper surface of the wire block, and wires and second metal female buckles are arranged on the lower surface. The second metal female buckles are arranged at both ends of the lower surface. The second metal male buckle and the second metal female buckle form a metal snap buckle. The second metal female buckle on the lower surface and the second metal male buckle on the upper surface are tightly attached to the inside of the wire block, and the second metal male buckle and the second metal female buckle are both connected to the wires.
[0003] Traditional electronic puzzles are only spliced by electronic component blocks and wire blocks. They have single functions and are not interesting enough. In particular, they cannot provide programming functions and are limited in use. Utility Model Content
[0004] The purpose of the present utility model is to provide an assembled program-controlled circuit device to solve the problems raised in the above background technology.
[0005] To achieve the above purpose, the present invention provides the following technical solutions:
[0006] An assembled program-controlled circuit device comprises an insulating base plate, on which a functional module and a control programming module are detachably arranged, and the functional module and the control programming module are connected via a detachable wire module.
[0007] Furthermore, there are multiple functional modules, and the multiple functional modules can be connected through a detachable wire module.
[0008] Furthermore, a plurality of insulating base plate bumps distributed in an array are provided on the insulating base plate, and the insulating base plate bumps are used for plugging and cooperating with the functional module and the control programming module.
[0009] Furthermore, the control programming module is an Arduino UNO development board.
[0010] Furthermore, a metal female buckle of the control programming module is provided on the lower side of the control programming module, and a metal male buckle of the control programming module is provided on the upper side of the control programming module. The metal female buckle of the control programming module is used to be plugged in and matched with the insulating base plate, and the metal male buckle of the control programming module is used to be plugged in and matched with the wire module.
[0011] Furthermore, the functional module includes a functional board, on which a functional circuit, a first wire unit, a group of functional module metal male buckles, and a group of functional module metal female buckles are arranged. The functional module metal male buckles and the functional module metal female buckles are respectively located on the upper and lower sides of the functional board. The functional module metal male buckle is used to plug and cooperate with the wire module, and the functional module metal female buckle is used to plug and cooperate with the insulating base plate. The functional circuit is connected to the functional module metal male buckle and the functional module metal female buckle through the first wire unit. The first wire unit is a printed circuit or a wire.
[0012] Furthermore, the functional circuit includes functional electronic components, and the functional electronic components are a combination of one or more of LED lights, resistors, travel switches, rocker potentiometer switches, diodes, transistors, buzzers, RGB lights, capacitors, motors, integrated chips, clock digital tubes, display screens, microphones, four-pin switches, infrared sensors, temperature and humidity sensors, photosensors, Hall sensors, ultrasonic sensors, and temperature sensors.
[0013] Furthermore, the wire module is a soft wire module and / or a hard wire module;
[0014] The hard wire module includes a wire board, a group of hard wire metal male buckles are provided on one side of the wire board, and a group of hard wire metal female buckles are provided on the other side. The wire board is also provided with a second wire unit, and the hard wire metal male buckles and hard wire metal female buckles are both connected to the second wire unit. The hard wire metal female buckle is used to connect to the functional module and the control programming module. The second wire unit is a wire or a printed wire.
[0015] The soft wire module includes two soft wire metal male and female buckle components and a soft wire connected between the two soft wire metal male and female buckle components. The soft wire metal male and female buckles include a soft wire metal male buckle and a soft wire metal female buckle that are matingly connected. The soft wire metal female buckle is used to connect with the functional module and the control programming module.
[0016] Furthermore, a power supply module is detachably provided on the insulating base plate, and the power supply module is connected to the control programming module via a detachable wire module.
[0017] Furthermore, a power module metal female buckle is provided on the lower side of the power module, and a power module metal male buckle is provided on the upper side of the power module. The power module metal female buckle is used to be plugged in and matched with the insulating base plate, and the power module metal male buckle is used to be plugged in and matched with the wire module.
[0018] Compared with the prior art, the beneficial effects of the present invention are:
[0019] 1) The utility model can be programmed by controlling the programming module, thereby adjusting and controlling the functions of the device, which can greatly enhance the fun and cultivate children's interest in electronic devices and programming;
[0020] 2) The utility model is easy to assemble and has strong versatility and expandability. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 This is a schematic diagram of the structure of the utility model.
[0022] Figure 2 This is a schematic diagram of the top view of the functional module in the utility model.
[0023] Figure 3 This is a bottom-up structural diagram of the functional modules in the present invention.
[0024] Figure 4 This is a schematic diagram of the structure of the control programming module in the present utility model when viewed from above.
[0025] Figure 5 This is a schematic diagram of the top view of the power module in this utility model.
[0026] Figure 6 This is a bottom view of the structure of the power module in the present invention.
[0027] Figure 7 This is a structural diagram of the hard wire module in the utility model.
[0028] Figure 8 This is a schematic diagram of the structure of the soft wire module in the utility model.
[0029] In the figure: insulating base plate 1, insulating base plate protrusion 100, functional module 2, functional board 200, functional electronic component 201, first wire unit 202, functional module metal male buckle 203, functional module metal female buckle 204, control programming module 3, control programming module metal female buckle 300, soft wire module 4, soft wire 400, soft wire metal male buckle 401, soft wire metal female buckle 402, hard wire module 5, wire board 500, hard wire metal male buckle 501, hard wire metal female buckle 502, second wire unit 503, power module 6, power module metal female buckle 600, power module metal male buckle 601. DETAILED DESCRIPTION
[0030] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0031] See also Figures 1-8 , an assembled programmable circuit device, 2 includes an insulating base plate 1, on which a functional module 2 and a control programming module 3 are detachably arranged, and the functional module 2 and the control programming module 3 are connected via a detachable wire module.
[0032] Continue reading Figure 1 In one embodiment of the present invention, there are one or more functional modules 2. When multiple functional modules 2 are used, the multiple functional modules can be connected through a detachable wire module or not.
[0033] Continue reading Figure 1 In one embodiment of the present invention, the wire module is a soft wire module 4 and / or a hard wire module 5. The soft wire module 4 and the hard wire module 5 can be used separately or together.
[0034] Continue reading Figure 7 In one embodiment of the present invention, the structure of the hard wire module 5 is a well-known technology, which includes a wire board 500. A group of hard wire metal male buckles 501 are provided on one side of the wire board 500, and a group of hard wire metal female buckles 502 are provided on the other side. The positions of the hard wire metal male buckles 501 and the hard wire metal female buckles 502 correspond one to one. A second wire unit 503 is also provided on the wire board 500. The hard wire metal male buckle 501 and the hard wire metal female buckle 502 are both connected to the second wire unit 503. The hard wire metal female buckle 502 is used to connect with the functional module 2 and the control programming module 3. The second wire unit 503 is a wire or a printed wire. The number and position of the hard wire metal male buckle 501 and the hard wire metal female buckle 502 can be adjusted as needed. The hard wire modules 5 can be stacked and spliced through male and female buckles.
[0035] Continue reading Figure 8In one embodiment of the present invention, the soft wire module 4 includes two soft wire metal male and female buckle components and a soft wire 400 connected between the two soft wire metal male and female buckle components. The soft wire 400 is covered with an insulating layer. The metal male and female buckles include a soft wire metal male buckle 401 and a soft wire metal female buckle 402 that are matched and connected. The soft wire metal male buckle 401 and the soft wire metal female buckle 402 are respectively facing the two ends. The soft wire metal female buckle 402 is used to connect with the functional module 2 and the control programming module 3. The soft wire modules 4 can be stacked and spliced through male and female buckles.
[0036] Continue reading Figure 1 In one embodiment of the present invention, a plurality of insulating base plate bumps 100 and process holes distributed in an array are provided on the insulating base plate 1, and the insulating base plate bumps 100 are used to be plugged in and matched with the functional module 2 and the control programming module 3.
[0037] Continue reading Figure 1 and Figure 4 In one embodiment of the present invention, the control and programming module 3 is an Arduino UNO development board with programming functionality. Two female metal snaps 300 are located on the bottom side of the control and programming module 3, and two male metal snaps 301 are located on the top side of the control and programming module 3. These female metal snaps 300 and male metal snaps 301 are connected in a one-to-one relationship and are both electrically connected to the circuitry within the Arduino UNO development board. The female metal snaps 300 are designed to plug and mate with the insulating base plate protrusions 100 of the insulating base plate 1 to secure the control and programming module 3. The male metal snaps 301 are designed to plug and mate with the female snaps of the wiring module to establish an electrical connection between the control and programming module 3 and the wiring module. The number of female metal snaps 300 and male metal snaps 301 can be adjusted.
[0038] Continue reading Figure 1-Figure 3In one embodiment of the present utility model, the main structure of the functional module 2 is a well-known technology, which includes a functional board 200, on which a functional circuit, a first wire unit 202, two functional module metal male buckles 203, and two functional module metal female buckles 204 are arranged. The functional module metal male buckle 203 and the functional module metal female buckle 204 are respectively located on the upper and lower sides of the functional board 200, and the positions of the two correspond one to one. The functional module metal male buckle 203 is used to plug and cooperate with the female buckle of the wire module to realize the electrical connection between the functional module 2 and the wire module. The functional module metal female buckle 204 is used to plug and cooperate with the insulating base plate 1 to fix the functional module 2. The functional circuit is connected to the functional module metal male buckle 203 and the functional module metal female buckle 204 through the first wire unit 202. The first wire unit 202 is a printed circuit or a wire. The functional circuit includes functional electronic components 201 and corresponding printed wires. Functional electronic components 201 can be a combination of one or more of an LED, resistor, limit switch, rocker potentiometer switch, diode, transistor, buzzer, RGB light, capacitor, motor, integrated chip, clock digital tube, display, microphone, four-pin switch, infrared sensor, temperature and humidity sensor, light sensor, Hall effect sensor, ultrasonic sensor, and temperature sensor. Other electronic components may also be included. The number of functional module metal male buckles 203 and functional module metal female buckles 204 can be adjusted.
[0039] The present invention forms different program-controlled circuit devices, such as traffic light circuit devices, alarm circuit devices, etc., by selecting and matching functional modules 2 with electronic components 201 of different functions.
[0040] Continue reading Figure 1 、 Figure 5 and Figure 6 In one embodiment of the present invention, a power module 6 is removably mounted on the insulating base plate 1. The power module 6 is connected to the control programming module 3 via a removable wire module. Specifically, two power module metal female buckles 600 are disposed on the lower side of the power module 6, and two power module metal male buckles 601 are disposed on the upper side of the power module 6. The power module metal female buckles 600 are used to plug and mate with the insulating base plate protrusions 100 of the insulating base plate 1, thereby securing the power module 6. The power module metal male buckles 601 are used to plug and mate with the female buckles of the wire module, thereby achieving an electrical connection between the power module 6 and the wire module. The present invention can power other modules by adding a power module 6. In addition, it is also possible to power each module through an external power supply without adding a power module 6.
[0041] The method of using the present utility model is as follows: the user selects the corresponding functional module 2 according to the circuit to be built, and then plugs the power module 6, the control programming module 3 and the functional module 2 into the insulating base plate 1, and then uses the wire module to connect the power module 6, the control programming module 3 and the functional module 2 to form a complete programmable circuit device. The user can program through the control programming module 3 to adjust the function of the device, which can greatly enhance the fun and cultivate children's interest in electronic devices and programming.
[0042] It should be noted that the male buckle is a raised structure, while the female buckle is a recessed structure. The male buckle, female buckle, and insulating base plate protrusion 100 are essentially connected and engaged via the concave-convex structure. Therefore, the positional relationship of the concave-convex structures can be interchanged. For example, the insulating base plate 1 is provided with an insulating base plate recess, while the functional module 2 is provided with a male buckle on the bottom and a female buckle on the top. The functional module 2, control and programming module 3, and power module 6 all have circular holes to avoid the insulating base plate protrusion 100.
[0043] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An assembled program-controlled circuit device, characterized in that: It comprises an insulating base plate (1), on which a functional module (2) and a control programming module (3) are detachably arranged, and the functional module (2) and the control programming module (3) are connected via a detachable wire module.
2. The assembled program-controlled circuit device according to claim 1, characterized in that: There are multiple functional modules (2), and the multiple functional modules (2) can be connected via a detachable wire module.
3. The assembled program-controlled circuit device according to claim 1, characterized in that: A plurality of insulating base plate protrusions (100) distributed in an array are provided on the insulating base plate (1), and the insulating base plate protrusions (100) are used for plugging and matching with the functional module (2) and the control programming module (3).
4. The assembled program-controlled circuit device according to claim 1, characterized in that: The control programming module (3) is an Arduino UNO development board.
5. The assembled program-controlled circuit device according to claim 1, characterized in that: A control programming module metal female buckle (300) is provided on the lower side of the control programming module (3), and a control programming module metal male buckle (301) is provided on the upper side of the control programming module (3). The control programming module metal female buckle (300) is used to be plugged into and matched with the insulating base plate (1), and the control programming module metal male buckle (301) is used to be plugged into and matched with the wire module.
6. The assembled program-controlled circuit device according to claim 1, characterized in that: The functional module (2) comprises a functional board (200), on which a functional circuit, a first wire unit (202), a group of functional module metal male buckles (203), and a group of functional module metal female buckles (204) are arranged. The functional module metal male buckles (203) and the functional module metal female buckles (204) are respectively located on the upper and lower sides of the functional board (200). The functional module metal male buckle (203) is used to plug and match with the wire module, and the functional module metal female buckle (204) is used to plug and match with the insulating base plate (1). The functional circuit is connected to the functional module metal male buckle (203) and the functional module metal female buckle (204) via the first wire unit (202). The first wire unit (202) is a printed circuit or a wire.
7. The assembled program-controlled circuit device according to claim 6, characterized in that: The functional circuit comprises functional electronic components (201), wherein the functional electronic components (201) are a combination of one or more of an LED lamp, a resistor, a travel switch, a rocker potentiometer switch, a diode, a triode, a buzzer, an RGB lamp, a capacitor, a motor, an integrated chip, a clock digital tube, a display screen, a microphone, a four-pin switch, an infrared sensor, a temperature and humidity sensor, a photosensor, a Hall sensor, an ultrasonic sensor, and a temperature sensor.
8. The assembled program-controlled circuit device according to claim 1, characterized in that: The wire module is a soft wire module (4) and / or a hard wire module (5); The hard wire module (5) comprises a wire board (500), a group of hard wire metal male buckles (501) are provided on one side of the wire board (500), and a group of hard wire metal female buckles (502) are provided on the other side. A second wire unit (503) is also provided on the wire board (500), the hard wire metal male buckle (501) and the hard wire metal female buckle (502) are both connected to the second wire unit (503), the hard wire metal female buckle (502) is used to connect to the functional module (2) and the control programming module (3), and the second wire unit (503) is a wire or a printed wire; The soft wire module (4) comprises two soft wire metal male and female buckle assemblies and a soft wire (400) connected between the two soft wire metal male and female buckle assemblies. The soft wire (400) metal male and female buckles comprise a soft wire metal male buckle (401) and a soft wire metal female buckle (402) that are matched and connected. The soft wire metal female buckle (402) is used to connect with the functional module (2) and the control programming module (3).
9. The assembled program-controlled circuit device according to claim 1, characterized in that: A power supply module (6) is detachably provided on the insulating base plate (1), and the power supply module (6) is connected to the control programming module (3) via a detachable wire module.
10. The assembled program-controlled circuit device according to claim 9, characterized in that: A power module metal female buckle (600) is provided on the lower side of the power module (6), and a power module metal male buckle (601) is provided on the upper side of the power module (6). The power module metal female buckle (600) is used to be plugged into and matched with the insulating base plate (1), and the power module metal male buckle (601) is used to be plugged into and matched with the wire module.
Citation Information
Patent Citations
Hundred picture arragements of electron
CN206148021U