CN216755359U - Electronic jigsaw puzzle - Google Patents

Electronic jigsaw puzzle Download PDF

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Publication number
CN216755359U
CN216755359U CN202220146320.8U CN202220146320U CN216755359U CN 216755359 U CN216755359 U CN 216755359U CN 202220146320 U CN202220146320 U CN 202220146320U CN 216755359 U CN216755359 U CN 216755359U
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China
Prior art keywords
magnetic
splicing
module
lower electrode
insulating film
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CN202220146320.8U
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Chinese (zh)
Inventor
梁志健
李灿斌
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Guangdong Oriental Wheat Field Industrial Design Co ltd
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Guangdong Oriental Wheat Field Industrial Design Co ltd
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Priority to CN202220146320.8U priority Critical patent/CN216755359U/en
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Abstract

The utility model discloses an electronic splicing plate toy which comprises a plate body, a magnetic splicing module and a control circuit, wherein a splicing area is arranged on the plate body, an inductive switch triggered by the magnetic splicing module is arranged in the splicing area and electrically connected with the control circuit, the inductive switch is a magnetic control switch, the magnetic control switch comprises an upper electrode and a lower electrode which are separated from each other at a certain distance in a normal state, and the lower electrode or the upper electrode and the magnetic splicing module are in magnetic transmission so that the lower electrode and the upper electrode are in contact to form an electric signal. This kind of electron made up of dishes toy adopts the cooperation of magnetic control switch and magnetism to put the module in pieces, realizes that magnetism is put the module in pieces and is triggered magnetic control switch and produce the signal of telecommunication, and magnetic control switch adopts the mode that upper and lower electrode is close to realize the contact, and magnetism is put the module in pieces and is left back upper and lower electrode and can reset through elastic component or action of gravity and break off the signal of telecommunication, and its structure is more simple and convenient, the volume is thinner, compares with current cost that adopts hall sensor lower.

Description

Electronic jigsaw puzzle
Technical Field
The utility model relates to an electronic game toy, in particular to an electronic jigsaw puzzle.
Background
Chinese patent No. ZL202023190672.3 discloses a huarongdao chess at 24/8/2021, which comprises a prompter, a chessboard and a plurality of chesses, wherein the chesses comprise success-breaking chesses, first sensing pieces are arranged on the success-breaking chesses, second sensing pieces matched with the first sensing pieces are arranged on the chessboard at positions corresponding to the outlets of the success-breaking chesses, the second sensing pieces are electrically connected with the prompter, and the prompter is arranged on the chessboard; or the first sensing piece is electrically connected with the prompter, and the prompter is arranged on the success-breaking chess piece. When the success-breaking chess pieces move to the position of the outlet of the chessboard, the second sensing piece can sense the first sensing piece and transmit signals to the prompter, the prompter gives out sound, images or light rays and the like to prompt a user that the success-breaking chess pieces escape, the game is finished, and therefore the game automatic prompting function is achieved, and the experience of the user is improved. In the structure, the induction part is a Hall sensor, and the Hall sensor has high cost and large volume and is not suitable for large-area use.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide an electronic jigsaw puzzle with reasonable structure, thin volume and low cost.
The purpose of the utility model is realized as follows:
the utility model provides an electron makeup dish toy, includes disk body, magnetism and pieces together module and control circuit, is equipped with the pendulum on the disk body and pieces together the district, is equipped with the inductive switch who puts the module trigger by magnetism in the pendulum piece together the district, inductive switch and control circuit electric connection, its characterized in that: the inductive switch is a magnetic control switch, the magnetic control switch comprises an upper electrode and a lower electrode which are separated from each other at a certain distance in a normal state, and the lower electrode or the upper electrode and the magnetic splicing module are in magnetic transmission so that the lower electrode and the upper electrode are in contact to form an electric signal.
The aim of the utility model can also be solved by the following technical measures:
as a more specific scheme, an upper insulating film and a lower insulating film are arranged at the bottom of the disk body corresponding to the splicing region, the upper electrode is arranged on the bottom surface of the upper insulating film, and the lower electrode is arranged on the top surface of the lower insulating film; or a lower insulating film is arranged at the bottom of the disc body corresponding to the splicing area, the lower electrode is arranged on the top surface of the lower insulating film, and the upper electrode is arranged on the outer bottom surface of the splicing area; the lower electrode has magnetic attraction property, or a magnetic attraction sheet is arranged on the lower insulating film corresponding to the lower electrode. The upper electrode and the lower electrode are respectively arranged on the membrane body, and the membrane body becomes a carrier of the electrodes, so that the electrodes can be better positioned.
As a further scheme, the magnetic attraction sheet is an iron sheet or a magnetic sheet and is positioned on the bottom surface of the lower insulating film, and the lower electrode is positioned right above the magnetic attraction sheet.
As a further scheme, the bottom surface of the upper insulating film is provided with an insulating bump corresponding to the periphery of the upper electrode, and the thickness of the insulating bump is greater than that of the upper electrode. The insulating bump may normally separate the upper and lower insulating films.
As a further scheme, the upper electrode and the lower electrode are both in a strip shape and in a cross shape, so that the upper electrode and the lower electrode can be in contact when moving relatively in a larger area range.
As a further scheme, a plurality of magnetic control switches are arranged in the disc body in an array mode, at least one magnet is arranged on the surface or inside of the magnetic splicing and placing module, and each magnet is used for triggering one magnetic control switch to act.
As a further scheme, the magnetic splicing module comprises a shell, wherein a vertical channel is arranged in the shell, a magnet is arranged in the channel, and the magnet is in up-and-down sliding fit with the channel. Therefore, when the magnetic splicing and placing module is placed in a reversed mode, the magnet moves to the other side close to the shell along the channel, so that the magnetic control switch is conveniently touched, and the front side and the back side of the magnetic splicing and placing module are used.
As a further scheme, the magnetic splicing and placing module is composed of more than one magnetic unit, each unit is provided with a shell and a magnet, and when the magnetic splicing and placing module is provided with more than two magnetic units, the shells of two adjacent magnetic units are connected into a whole.
As a further scheme, a display and/or a buzzer and/or a control panel are/is further arranged on the disc body and are/is electrically connected with the control circuit; the tray body comprises an upper tray and a lower tray, and the swing splicing area is arranged on the top surface of the upper tray in a sinking mode.
As a further scheme, bright areas are correspondingly distributed on the display according to the distribution mode of the magnetic control switches, and after the magnetic control switches are triggered by the magnetic splicing module, the corresponding bright areas on the display are lightened.
The utility model has the following beneficial effects:
(1) this kind of electron made up of dishes toy adopts the cooperation of magnetic control switch and magnetism to put the module in pieces, realizes that magnetism is put the module in pieces and is triggered magnetic control switch and produce the signal of telecommunication, and magnetic control switch adopts the mode that upper and lower electrode is close to realize the contact, and magnetism is put the module in pieces and is left back upper and lower electrode and can reset through elastic component or action of gravity and break off the signal of telecommunication, and its structure is more simple and convenient, the volume is thinner, compares with current cost that adopts hall sensor lower.
Drawings
Fig. 1 is an exploded view of an embodiment of the present invention.
FIG. 2 is another exploded view of the present invention.
FIG. 3 is a schematic view of the tray structure of the present invention.
Fig. 4 is a schematic front view of the present invention.
FIG. 5 is a schematic sectional view A-A of FIG. 4.
Fig. 6 is an enlarged schematic view of the structure at C in fig. 5.
FIG. 7 is a schematic sectional view of the structure of FIG. 4B-B.
Fig. 8 is an enlarged schematic view of the structure at D in fig. 7.
Fig. 9 is a schematic structural diagram of an L-shaped magnetic splicing module according to the present invention.
FIG. 10 is an angle exploded view of the L-shaped magnetic assembly module of the present invention.
Fig. 11 is another angle structure diagram of fig. 10.
FIG. 12 is a schematic view of a Z-shaped magnetic splicing module according to the present invention.
Fig. 13 is a schematic view of an inverted structure of the Z-shaped magnetic splicing and placing module in fig. 12.
FIG. 14 is a schematic structural diagram of a linear magnetic splicing module according to the present invention.
FIG. 15 is a schematic view of the magnetic splicing module shaped like Chinese character tian in the utility model.
FIG. 16 is a schematic structural diagram of a T-shaped magnetic splicing module according to the present invention.
FIG. 17 is a schematic structural diagram of a dotted magnetic splicing module according to the present invention.
FIG. 18 is a schematic structural diagram of a C-shaped magnetic splicing module according to the present invention.
FIG. 19 is a schematic structural diagram of an F-shaped magnetic splicing module according to the present invention.
Fig. 20 is a front and back schematic view of the subject card of the present invention.
Detailed Description
The utility model is further described with reference to the following figures and examples:
referring to fig. 1 to 8, an electronic jigsaw puzzle comprises a disc body 2, a magnetic jigsaw module 1 and a control circuit, wherein a jigsaw area 211 is arranged on the disc body 2, an inductive switch triggered by the magnetic jigsaw module 1 is arranged in the jigsaw area 211, the inductive switch is electrically connected with the control circuit, the inductive switch is a magnetic switch, the magnetic switch comprises an upper electrode 41 and a lower electrode 51 which are separated from each other by a certain distance in a normal state, and the lower electrode 51 or the upper electrode 41 is in magnetic transmission with the magnetic jigsaw module 1, so that the lower electrode 51 is in contact with the upper electrode 41 to form an electric signal.
An upper insulating film 4 and a lower insulating film 5 are arranged at the bottom of the disk body 2 corresponding to the swing splicing region 211, the upper electrode 41 is arranged on the bottom surface of the upper insulating film 4, and the lower electrode 51 is arranged on the top surface of the lower insulating film 5. The lower insulating film 5 is further provided with a magnetic attraction sheet 52 corresponding to the lower electrode 51, and the magnetic attraction sheet 52 is circular. The upper insulating film 4 and the lower insulating film 5 are matched in a positioning mode, the upper insulating film 4 is fixed, and the lower insulating film 5 can move up and down or be fixed.
The magnetic attraction sheet 52 is an iron sheet or a magnetic sheet and is positioned on the bottom surface of the lower insulating film 5, and the lower electrode 51 is positioned right above the magnetic attraction sheet 52.
The bottom surface of the upper insulating film 4 is provided with an insulating bump 42 (a silicone bump) corresponding to the periphery of the upper electrode 41, and the thickness of the insulating bump 42 is greater than the sum of the thicknesses of the upper electrode 41 and the lower electrode 51.
The upper electrode 41 and the lower electrode 51 are both in a strip shape and are distributed in a cross shape.
A plurality of the magnetic control switches are arranged in the disk body 2 in an array mode, at least one magnet 13 is arranged inside the magnetic splicing and placing module 1, and each magnet 13 is used for triggering one magnetic control switch to act.
The magnetic splicing module 1 comprises a shell, wherein a vertical channel 12 is arranged in the shell, a magnet 13 is arranged in the channel 12, and the magnet 13 and the channel 12 are in up-and-down sliding fit (shown in the arrow direction D in fig. 6). The shell comprises an upper shell 11 and a lower shell 14, wherein the inner side of the top surface of the lower shell 14 is provided with an annular convex rib 141, and the annular convex rib is in inserted fit with the inner side of the bottom surface opening of the upper shell 11; the passage 12 is located between the upper and lower shells 11, 14.
The magnetic splicing and putting module 1 is composed of more than one magnetic unit G, each unit is provided with a shell and a magnet 13, and when the magnetic splicing and putting module 1 is provided with more than two magnetic units G, the shells of the two adjacent magnetic units G are connected into a whole. As shown in fig. 9 and 10, the magnetic splicing and placing module 1 has four magnetic units G forming a reverse L-shape, and since the magnet 13 can move up and down inside the housing, it can be used as a forward L-shaped magnetic splicing and placing module 1 when turned over, as shown in fig. 11. Referring to fig. 12, the Z-shaped magnetic splicing module 1 is shown in the direction, and fig. 13 shows the Z-shaped magnetic splicing module 1 in the forward direction. Fig. 14 shows a linear magnetic splicing module 1, fig. 15 shows a rectangular magnetic splicing module 1, fig. 16 shows a T-shaped magnetic splicing module 1, fig. 17 shows a dot-shaped magnetic splicing module 1 (i.e., only one magnetic unit G), fig. 18 shows a C-shaped magnetic splicing module 1 composed of 5 magnetic units, and fig. 19 shows an F-shaped magnetic splicing module 1 composed of 6 magnetic units.
In this embodiment, at least two kinds of magnetic putting modules 1 in fig. 9 and fig. 12 to 19 may be included, and each kind of magnetic putting module 1 includes several blocks.
The disc body 2 is also provided with a display 3, a buzzer (not shown in the figure) and a control panel, and the display 3, the buzzer and the control panel are electrically connected with a control circuit; the tray body 2 comprises an upper tray 21 and a lower tray 22, and the swing splicing region 211 is arranged on the top surface of the upper tray 21 in a sinking way. In this embodiment, the upper plate 21 is provided with a display window 212, a sound emitting hole 213, and a control switch 214 corresponding to the display 3, the buzzer, and the control panel, respectively.
One of the playing methods of the electronic jigsaw puzzle is as follows: the magnetic splicing and putting toy comprises a plurality of magnetic splicing and putting modules 1 shown in figures 9 and 12-16, a switch on the electronic splicing and putting toy is turned on, then the magnetic splicing and putting modules 1 are taken, a swinging and splicing area 211 is just spliced fully, a display 3 indicates that the user passes the switch, and a buzzer sends out a prompt sound. In addition, the toy can also be matched with a question card, one side of the question card is shown as a left side view in fig. 20, a shadow display area is used for prompting a user to put corresponding magnetic splicing modules 1 according to the area arranged in the magnetic control switch array of the splicing area 211, the user can pass through the situation that the remaining area of the splicing area 211 is completely covered with the magnetic splicing modules 1 by extracting other magnetic splicing modules 1, and if the user does not understand how to splice, the question card 6 can be turned over to see answers to the questions, which is shown as a right side view in fig. 20. When the magnetic splicing and placing module 1 is placed in the splicing and placing area 211, the magnet 13 of the magnetic splicing and placing module 1 is close to the magnetic switch as shown in fig. 6, the magnetic attraction piece 52 is attracted (moved in the direction of arrow E), the lower insulating film 5 is deformed, and the lower electrode 51 and the upper electrode 41 are in conductive contact, so as to form an electric signal to the control circuit. When the magnetic splicing module 1 leaves the magnetic switch, the lower electrode 51 leaves the upper electrode 41 under the action of its own gravity and the gravity of the magnetic attraction piece 52, and the magnetic switch is turned off.
In addition, the above-mentioned question card 6 is not necessary, and the combination of the display 3 and the control circuit can replace the function of the question card, for example, the control circuit can call up the question and display it through the display 3, or display the reference answer and/or the answering process (thereby providing the function of teaching for the user) through the display; when the user finishes the game and finds a new answer, the display 3 will have a new prompt, and the control circuit can memorize the new reference answer.
As a further scheme, bright areas 31 are correspondingly distributed on the display 3 according to the distribution mode of the magnetic control switches, and after the magnetic control switches are triggered by the magnetic splicing module 1, the corresponding bright areas 31 on the display 3 are lightened through the program setting of the control circuit.
The foregoing is a preferred embodiment of the present invention, and the basic principles, principal features and advantages of the utility model are shown and described. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are merely illustrative of the principles of the present invention, but various changes and modifications may be made without departing from the spirit and scope of the utility model as defined by the appended claims and their equivalents.

Claims (10)

1. The utility model provides an electron made a jigsaw toy, includes disk body (2), magnetism and pieces together module (1) and control circuit, is equipped with the pendulum on disk body (2) and pieces together district (211), is equipped with the inductive switch who is put module (1) and triggers by magnetism in pendulum piecing together district (211), inductive switch and control circuit electric connection, its characterized in that: the inductive switch is a magnetic switch, the magnetic switch comprises an upper electrode (41) and a lower electrode (51) which are separated from each other at a certain distance in a normal state, and the lower electrode (51) or the upper electrode (41) and the magnetic splicing module (1) are in magnetic transmission so that the lower electrode (51) and the upper electrode (41) are in contact to form an electric signal.
2. The electronic puzzle toy of claim 1, wherein: an upper insulating film (4) and a lower insulating film (5) are arranged at the bottom of the splicing region (211) in the tray body (2), the upper electrode (41) is arranged on the bottom surface of the upper insulating film (4), and the lower electrode (51) is arranged on the top surface of the lower insulating film (5); or a lower insulating film (5) is arranged at the bottom of the disc body (2) corresponding to the splicing region (211), the lower electrode (51) is arranged on the top surface of the lower insulating film (5), and the upper electrode (41) is arranged on the outer bottom surface of the splicing region (211);
the lower electrode (51) has magnetic attraction property, or a magnetic attraction sheet (52) is arranged on the lower insulating film (5) corresponding to the lower electrode (51).
3. The electronic puzzle according to claim 2, wherein: the magnetic attraction sheet (52) is an iron sheet or a magnetic sheet and is positioned on the bottom surface of the lower insulating film (5), and the lower electrode (51) is positioned right above the magnetic attraction sheet (52).
4. The electronic puzzle according to claim 2, wherein: and the bottom surface of the upper insulating film (4) is provided with an insulating bump (42) corresponding to the periphery of the upper electrode (41), and the thickness of the insulating bump (42) is greater than that of the upper electrode (41).
5. The electronic puzzle according to claim 1, wherein: the upper electrode (41) and the lower electrode (51) are both in a strip shape and are distributed in a cross shape.
6. The electronic puzzle according to claim 1, wherein: the magnetic control switches are arranged in the disk body (2) in an array mode, at least one magnet (13) is arranged on the surface or inside the magnetic splicing module (1), and each magnet (13) is used for triggering one magnetic control switch to act.
7. The electronic puzzle according to claim 1, wherein: the magnetic splicing module (1) comprises a shell, wherein a vertical channel (12) is arranged in the shell, a magnet (13) is arranged in the channel (12), and the magnet (13) is in up-and-down sliding fit with the channel (12).
8. The electronic puzzle toy of claim 6, wherein: the magnetic splicing and putting module (1) is composed of more than one magnetic unit (G), each unit is provided with a shell and a magnet (13), and when the magnetic splicing and putting module (1) is provided with more than two magnetic units (G), the shells of two adjacent magnetic units (G) are connected into a whole.
9. The electronic puzzle toy of claim 1, wherein: the disc body (2) is also provided with a display (3) and/or a buzzer and/or a control panel, and the display (3) and/or the buzzer and/or the control panel are electrically connected with the control circuit; the tray body (2) comprises an upper tray (21) and a lower tray (22), and the splicing area (211) is arranged on the top surface of the upper tray (21) in a sinking mode.
10. The electronic puzzle toy of claim 9, wherein: bright areas (31) are correspondingly distributed on the display (3) according to the distribution mode of the magnetic control switches, and after the magnetic control switches are triggered by the magnetic splicing module (1), the corresponding bright areas (31) on the display (3) are lightened.
CN202220146320.8U 2022-01-19 2022-01-19 Electronic jigsaw puzzle Active CN216755359U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220146320.8U CN216755359U (en) 2022-01-19 2022-01-19 Electronic jigsaw puzzle

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220146320.8U CN216755359U (en) 2022-01-19 2022-01-19 Electronic jigsaw puzzle

Publications (1)

Publication Number Publication Date
CN216755359U true CN216755359U (en) 2022-06-17

Family

ID=81979750

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220146320.8U Active CN216755359U (en) 2022-01-19 2022-01-19 Electronic jigsaw puzzle

Country Status (1)

Country Link
CN (1) CN216755359U (en)

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