Show output toy
Patent Information
- Application Number
- CN202311509310.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Priority Date
- 2020-07-15
- Filing Date
- 2021-07-06
- Publication Date
- 2026-08-11
- Estimated Expiration
- 2041-07-06
AI Technical Summary
[0014] According to one implementation method, the fun of the performance output toys can be enhanced.
Smart Images

Figure CN117547840B_ABST
Abstract
Description
[0001] This application is a divisional application of Chinese invention patent application filed on July 6, 2021, with application number 202110762472.0 and invention title "Performance Output Toy". Technical Field
[0002] This invention relates to a performance output toy, and more particularly to a performance output toy that outputs a performance in response to user operations. Background Technology
[0003] Previously, a toy was known that outputs a performance by bringing the main toy body and the auxiliary toy body close together (for example, see Patent Document 1). Patent Document 1 describes determining whether the auxiliary toy body is close to or far from the main toy body, and outputting different performances based on this determination.
[0004] Existing technical documents
[0005] Patent documents
[0006] Patent Document 1: Japanese Patent Application Publication No. 2014-4263 Summary of the Invention
[0007] The problem the invention aims to solve
[0008] In Patent Document 1, the specific form of the secondary toy does not change. Therefore, there is no record of outputting different performances based on changes in the specific form of the secondary toy. However, from the perspective of further enhancing the fun of the toy, it is hoped that a variety of performances can be output based on changes in the specific form of the secondary toy.
[0009] Other issues and new features are available from the description and accompanying drawings in this specification.
[0010] Solution for solving the problem
[0011] The following is a brief summary of representative technical solutions disclosed in this application.
[0012] A performance output toy of one technical solution has a main toy body and a secondary toy body that can be attached to and detached relative to the main toy body. The main toy body has a performance output section, and the secondary toy body has a base section and a displacement section disposed on the base section and capable of displacement relative to the base section. The performance output section outputs different performance content corresponding to the displacement state of the displacement section based on the displacement of the displacement section.
[0013] The effects of the invention
[0014] According to one implementation method, the fun of the performance output toys can be enhanced. Attached Figure Description
[0015] Figure 1 This is a perspective view of the performance output toy representing the implementation method.
[0016] Figure 2 This is a perspective view showing the main body and the disk of the implementation method.
[0017] Figure 3 This is a perspective view of the performance output toy representing the implementation method.
[0018] Figure 4 This is a perspective view of the performance output toy representing the implementation method.
[0019] Figure 5 This is a perspective view showing the internal antenna of the performance output toy in the embodiment.
[0020] Figure 6 This is a three-dimensional diagram showing the shape in which the badge is inserted into the performance output toy of the implementation method.
[0021] Figure 7 This is a block diagram of the performance output toy of the implementation method.
[0022] Figure 8 This describes the action flow of the performance output toy in the implementation method.
[0023] Explanation of reference numerals in the attached figures
[0024] 1. Main body; 2. Disc body; 3. Insertion port; 6. Base; 7. Operating part; 8. Plate-shaped accessories; 10. Performance output toy. Detailed Implementation
[0025] Hereinafter, embodiments of the present invention will be described in detail based on the accompanying drawings. Furthermore, in all the drawings used to describe the embodiments, components with the same function are labeled with the same reference numerals, and repeated descriptions are omitted. Additionally, in the following embodiments, unless specifically required, identical or identical parts will generally not be described repeatedly.
[0026] Furthermore, the X, Y, and Z directions described in this application are orthogonal to each other. For the sake of simplicity, the Z direction is sometimes described as the vertical direction, height direction, or thickness direction of a structure.
[0027] Furthermore, the surface formed by the X and Y directions constitutes a plane, which is perpendicular to the Z direction. In this application, "viewing from above" refers to observing the surface formed by the X and Y directions from the Z direction, meaning observing a surface orthogonal to the Z direction.
[0028] (Implementation Method)
[0029] The performance output toy of this embodiment is a watch-shaped toy that achieves high entertainment value by outputting various performances. Performances are output when a badge is inserted into the performance output toy, when the disc of the performance output toy is rotated, or when the plate-like accessories on the surface of the disc are displaced. The performance content may be, for example, sound or light, and varies depending on the type of badge, the position of the disc after rotation, the position of the plate-like accessories, etc., involving various types based on their combinations. It is designed so that by outputting such performances, the user can simulate a transformation experience.
[0030] <Structure of Performance Output Toys>
[0031] The following uses Figures 1 to 7 The performance output toy 10 of the embodiment will be described. In this embodiment, as... Figure 1 As shown, the performance output toy 10 is described as a toy with a watch shape, but the shape can be any shape. The performance output toy 10 has a main body (main toy body) 1 and a disc body (secondary toy body) 2 that can be attached to and detached from the main body 1. A strap 24 is mounted on one side of the main body 1 in the Y direction, and a strap 25 is mounted on the other side of the main body 1 in the Y direction. The main body 1 has a surface that allows for subsequent loading... Figure 2 The disk body 2 described herein has a mounting surface 9; and a back surface, which is located on the side opposite to this surface in the Z direction. (As will be discussed later...) Figure 2 As described above, the disc 2 can be mounted on the mounting surface 9 on the surface side of the main body 1.
[0032] An insertion port 3 is provided on one side of the main body 1 in the Y direction, allowing the badge (described later) to be inserted from the Y direction. Additionally, although not shown, an outlet is provided on the other side of the main body 1 in the Y direction, allowing the badge to be ejected. A push switch 4 is provided on the side of the main body for ejecting the badge from the outlet by user operation (pressing). Furthermore, a light-emitting part (performance output part) 5a, serving as a performance output light output section, is provided on the side of the main body 1 adjacent to the insertion port 3.
[0033] Mounting surface 9 can rotate clockwise or counterclockwise relative to the main body 1 in a plane formed by the X and Y directions from a predetermined position. Therefore, the disc 2 mounted on mounting surface 9 can also rotate clockwise or counterclockwise relative to the main body 1 in the same plane. In other words, the disc 2 can rotate with its axis of rotation along the Z direction. For example, the disc 2 can rotate within a 90-degree range relative to the main body 1 from its predetermined position. Here, viewed from above in the Z-axis direction, the position where the disc 2 has rotated counterclockwise from its initial predetermined position to its final position is the first rotational position, and the position where the disc 2 has rotated clockwise to its final position is the second rotational position. Figure 1 In the first rotational position, the disc component 2 is located. The base portion 6 of the disc body 2 is located at the center of the upper surface and is disc-shaped.
[0034] Viewed from above, an operating part 7 is provided at the end of the base part 6. The operating part 7 is operable by pressing it towards the center of the disc surface in a direction along the plane formed by the X and Y directions. The operating part 7 is applied force in a direction along the plane formed by the X and Y directions and away from the center of the disc surface. Therefore, after the user presses the operating part 7 with their finger, if the pressure on the operating part 7 is reduced, the operating part 7 will automatically return to the previous position.
[0035] A semi-circular plate-shaped fitting (displacement part) 8 is provided on the circular disk surface, and the semi-circular surface of the plate-shaped fitting 8 occupies half of the area of the circular disk surface. That is, along the plane formed by the X and Y directions, with the center line passing through the center of the circular disk surface when viewed from above as the boundary, the disk surface is divided into a first position 1A and a second position 2B. Figure 1 In the middle, plate-shaped fitting 8 is located at position 1A.
[0036] The plate-shaped component 8 is capable of rotating 180 degrees about the center line on the base portion 6. In other words, the plate-shaped component 8 is capable of displacement relative to the base portion 6. That is, the plate-shaped component 8 can be displaced (tilted, swung) towards the first position 1A or the second position 2B by the user's operation. That is, the plate-shaped component 8 can be displaced from the first position 1A corresponding to the state before displacement to the second position 2B corresponding to the state after displacement.
[0037] On the disc surface, a force-applying part 12 is provided at a position overlapping the center line when viewed from above. The force-applying part 12 is configured, for example, to have a spring, and applies force to the plate-shaped fitting 8, causing the plate-shaped fitting 8 to move in an inclined direction from the first position 1A side to the second position 2B side. However, a locking part 14, described later, is provided on the base part 6, and the plate-shaped fitting 8 is locked by this locking part 14 at the first position 1A. The locking part 14 has a protrusion on the plate-shaped fitting 8 that protrudes to a side opposite to the center line side when viewed from above. The plate-shaped fitting 8 is pressed against the lower surface of this protrusion, thereby locking the plate-shaped fitting 8. In this way, the plate-shaped fitting 8 is located at the first position 1A when it is being forceped in an inclined direction towards the second position 2B side. A light-emitting part (performance output part) 5b, serving as the output light performance area, is provided at the center of the circular disc surface. The light-emitting parts 5a and 5b each have, for example, LEDs (Light Emitting Diodes).
[0038] When the plate-shaped fitting 8 is in position 1A, such as Figure 1 As shown, a predetermined design is displayed on the dial (here, for example, the letter "A").
[0039] Figure 2 This represents the main body 1 and the disk 2 that was detached from the main body 1. Figure 2 The image shows the surface side of the main body 1 and the back side of the disk 2. (See image for details.) Figure 2 As shown, a mounting portion 9 is provided on the surface of the main body 1. As previously described, the mounting portion 9 is capable of rotating clockwise or counterclockwise relative to the main body 1 in a plane formed by the X and Y directions. In other words, the axis of rotation of the mounting portion 9 is along the Z direction. The mounting portion 9 is capable of rotating relative to the main body 1 within a range of 90 degrees from a predetermined position.
[0040] When the disc 2 is mounted on the main body 1, the back surface of the base portion 6 and the upper surface of the mounting portion 9 face each other. Multiple holes 11 are provided on the upper surface of the mounting portion 9. Furthermore, multiple protrusions 6a are provided on the back surface of the base portion 6 (the mounted portion) at positions corresponding to the holes 11. When the disc 2 is mounted on the main body 1, the protrusions 6a engage with the holes 11, thereby fixing the base portion 6 to the mounting portion 9. That is, the disc 2 is rotated relative to the main body 1 by rotating the mounting portion 9 relative to the main body 1.
[0041] The mounting part 9 has a pair of protrusions 9a on both sides, and a magnet is built into the protrusion 9a. The magnet is used to detect the rotation of the disk 2.
[0042] A power switch 26 for turning the power supply of the main body 1 on and off is provided on the side of the main body 1.
[0043] The disc 2 comes in several types, and the disc component 2 mounted on the main body 1 can be replaced with other types of disc 2. Each type of disc 2 has different identification information, which is stored for subsequent use. Figure 7 The storage unit 23.
[0044] Figure 3 This indicates that the disk 2 is activated by the user's operation. Figure 1 The diagram shown is rotated 90 degrees clockwise.
[0045] Figure 4 This diagram illustrates the displacement of the plate-shaped component 8 from position 1A to position 2B. The user presses the operating part 7 with their finger, causing the plate-shaped component 8 to move towards position 2B under the force applied by the force-applying part 12. In other words, the user can release the locking part 14 by operating the operating part 7. When the locking part 14 is released, the plate-shaped component 8 rotates and tilts 180 degrees towards position 2B under the force applied by the force-applying part 12. Figure 4 As shown, with the plate-shaped accessory 8 in the second position 2B, a predetermined design (for example, the letter "B") is displayed on the panel. To move the plate-shaped accessory 8 from the second position 2B to the first position 1A, the user only needs to rotate the plate-shaped accessory 8 and lock it into the locking part 14.
[0046] exist Figure 5 In the image, antenna 1r, built into the main body 1, and antenna 2r, built into the disk 2, are shown through the main body 1 and the disk 2. Figure 5 In the diagram, the outlines of the main body 1 and the disk 2 are represented by double-dotted lines, and only the antenna 1r inside the main body 1 and the antenna 2r inside the disk 2 are shown.
[0047] like Figure 5 As shown, antenna 1r has a coil structure with multiple layers surrounding the outer periphery of a main body 1, which has a generally circular shape when viewed from above. Antenna 1r is connected to an electronic substrate (not shown) built into the main body 1. Antenna 2r has a coil structure with multiple layers surrounding the outer periphery of a disk 2, which has a generally circular shape when viewed from above. Antenna 2r is connected to an electronic substrate (not shown) built into the disk 2.
[0048] Additionally, although not shown in the figure, the main body 1 has a built-in sound output unit (performance output unit) that serves as the part for outputting sound during performances. The sound output unit is connected to the electronic board built into the main body 1.
[0049] Figure 6This indicates the shape in which the badge 13 is inserted into the performance output toy 10. The badge 13 is a thin cylindrical shape. A tag is embedded in the badge 13, which integrates an antenna coil and an IC (Integrated Circuit). This tag is an information storage medium for holding electronic information; different identification information is stored in the tag for each type of badge 13.
[0050] exist Figure 6 In this case, the surface of badge 13 displays a letter "C". It is conceivable to attach designs such as characters to the surface of badge 13. That is, for example, multiple types of badge 13 could exist corresponding to multiple characters, with different identification information for each character.
[0051] Figure 5 Antennas 1r and 2r shown are the transmitting and receiving units for information communication between the main body 1, the disc body 2, and the badge 13, respectively. By pressing the push switch 4, the badge 13 inserted into the main body 1 is discharged from the outlet.
[0052] Figure 7 This is a block diagram showing the performance output toy according to this embodiment. The main body 1 includes a power supply unit 15, a control circuit 16, a storage unit 17, and a communication unit 18. The communication unit 18 includes a communication control unit 19 connected to the control circuit 16, and an antenna 1r connected to the communication control unit 19. The power supply unit 15 and the storage unit 17 are respectively connected to the control circuit 16. The power supply unit 15 is, for example, a dry cell battery that can be attached to and detached from the main body 1.
[0053] The disk body 2 has an RF (Radio Frequency) tag 20 disposed on the base portion 6. The RF tag 20 includes: a control circuit 22, a storage portion 23 connected to the control circuit 22, and an antenna 2r connected to the control circuit 22.
[0054] The communication unit 18 built into the main body 1 and the RF tag 20 built into the disc body 2 are not electrically connected to each other; communication between them is achieved through wireless communication using antennas 1r and 2r. Therefore, the main body 1 and the disc body 2 can be easily attached and detached, and the disc body 2 can be rotated relative to the main body 1. Furthermore, the components of the RF tag 20 are driven by an electromotive force induced by electromagnetic waves, including an interrogation signal transmitted from the communication unit 18 on the main body 1 side. Therefore, the disc body 2 does not require a power supply, is small and lightweight, and can be easily operated even by young users. In this way, the main body 1 and the disc body 2 communicate wirelessly with each other, and the disc body does not require a power supply, so even young users can easily use the performance output toy 10 (see reference). Figure 1 ).
[0055] Although not illustrated, but Figures 1-4 A push-button switch is provided near the locking part 14 of the base part 6 shown, and the push-button switch is connected to... Figure 7 The control circuit 22 is shown. Therefore, the control circuit 22 functions as a judgment unit that can determine the displacement state of the plate-shaped accessory 8 by detecting the pressing state of the push switch. The push switch has an on state and an off state. When the plate-shaped accessory 8 is locked in the locking part 14 and is in the first position 1A, the push switch is pressed and becomes the on state; when the plate-shaped accessory 8 is not in the first position 1A, the push switch is released and becomes the off state. That is, the push switch is configured such that: when the plate-shaped accessory 8 is in the first position 1A and the plate-shaped accessory 8 is in the state of pressing the push switch, the push switch becomes the on state; when the displacement of the plate-shaped accessory 8 from the first position 1A is detected and the state of the plate-shaped accessory 8 pressing the push switch is released, the push switch becomes the off state accordingly.
[0056] That is, the control circuit 22 includes a push switch that can switch between an on state and an off state according to the change in the pressing state caused by the plate-shaped accessory 8, and the control circuit 22 has a determination unit that determines whether the plate-shaped accessory 8 is in the state before displacement or the state after displacement based on whether the push switch is in the on state or the off state.
[0057] Additionally, a mechanical switch is built into the main body 1 to detect the insertion of the badge 13. This switch is connected to the control circuit 16.
[0058] <The movement of the performance toy>
[0059] Next, use Figure 8 The illustrated process explains the operation of the performance output toy. The following instructions will explain the use of... Figures 1 to 7 The names of the described items are labeled with reference numerals and explained. In addition, the various performances described herein are, for example, performances using sound or light, and are output through the performance output unit (sound output unit, light-emitting unit 5a or light-emitting unit 5b built into the main body 1).
[0060] When the performance output toy 10 is activated, the power switch 26 is turned on first. At this time, the control circuit 16 can also cause the performance output unit to output the performance at startup.
[0061] Next, the badge 13 is inserted into the performance output toy 10 (step S1). This activates the switch at the badge insertion position on the main body 1, allowing the control circuit 16 to detect the insertion of the badge 13. Next, the control circuit 16 sends two interrogation signals from the antenna 1r via the communication control unit 19 (step S2). Specifically, the control circuit 16 sends: a first interrogation signal, which inquires about the badge's identification information corresponding to the type of badge 13; and a second interrogation signal, which inquires about the identification information of the disc body 2 corresponding to the position of the plate-shaped accessory 8 on the disc body 2 (identification information associated with the state before the plate-shaped accessory 8 was displaced or identification information associated with the state after the plate-shaped accessory 8 was displaced). The antenna 1r, powered by electricity supplied from the power supply unit 15, is the transmitter that sends the first and second interrogation signals to the disc body 2 and the badge 13.
[0062] By sending a first interrogation signal, the identification information held by the tag in the badge 13 is received and transmitted between the antenna 1r and the tag in the badge 13. As a result, the control circuit 16 can determine the type of badge 13 and cause the performance output unit to output a badge insertion performance corresponding to the type of badge 13. The badge insertion performance corresponding to the type of badge 13 is stored in the storage unit 17.
[0063] By sending a second interrogation signal, an induced electromotive force is generated in the antenna 2r. The antenna 2r, control circuit 22, and storage unit 23 constituting the RF tag 20 are each driven by this induced electromotive force.
[0064] The second interrogation signal is received by antenna 2r. Here, storage unit 23 stores: first identification information, which is associated with the state of the plate-shaped accessory 8 before displacement (located at position 1A); and second identification information, which is associated with the state of the plate-shaped accessory 8 after displacement (not located at position 1A). Therefore, control circuit 22 determines that the plate-shaped accessory 8 is in the state before displacement based on the aforementioned push-button switch being in the on state, or that the plate-shaped accessory 8 is in the state after displacement based on the aforementioned push-button switch being in the off state.
[0065] Based on these judgment results, the control circuit 22 reads either the first identification information or the second identification information stored in the storage unit 23, and transmits it to the antenna 1r using the antenna 2r.
[0066] Antenna 1r is powered by electricity supplied from power supply unit 15 and receives identification information sent from disk 2. That is, antenna 1r is a transmitting / receiving unit that transmits interrogation signals and receives identification information. Control circuit 16 causes the performance output unit to output first performance content associated with the first identification information received by antenna 1r and stored in storage unit 17. Here, the sound output unit and light-emitting unit 5a built into main body 1 are driven by power supply unit 15 of main body 1, while the light-emitting unit 5b is driven by the aforementioned induced electromotive force. That is, during a performance that makes the light-emitting unit 5b emit light, by receiving a second interrogation signal from antenna 2r, an induced electromotive force capable of driving the light-emitting unit 5b is generated in antenna 2r, and control circuit 22 issues a control command to output the light-emitting performance based on the identification information of disk 2 read from storage unit 23. This is also the case when outputting other performances described below.
[0067] The first performance content mentioned above is, for example, a standby performance. However, in addition to the standby performance, the first performance content may also include a pre-transformation performance (transformation preparation performance) that is output before the standby performance. Here, as an example, the pre-transformation performance is output as the first performance content (step S3), and then the standby performance is output (step S4).
[0068] As described above, control circuit 22 outputs the first performance content upon receiving the first identification information. However, if the plate-shaped accessory 8 is in a displaced state (not located at the first position 1A) and therefore control circuit 22 receives the second identification information instead of the first identification information, it does not output the first performance content. In this case, a performance different from, for example, the first performance content, the second performance content described later, and the third performance content are output. That is, if the second identification information is received before the first performance content associated with the first identification information is output, the second performance content associated with the second identification information described later is not output.
[0069] Alternatively, for example, after the badge is inserted in step S2, the user can cause the disc 2 to... Figure 1 The first rotational position shown is towards Figure 3 The output of the first performance content in steps S3 and S4 is performed based on the condition of rotating to the second rotation position shown. In this case, after the control circuit 16 determines that the disk 2 has rotated from the first rotation position to the second rotation position, the performance output unit outputs the first performance content. That is, the first performance content is not output immediately after the badge is inserted, but rather after the disk 2 has rotated. This is achieved by detecting the magnetic force of the disk 2 rotating on the main body 1. Figure 2 The magnetic force of the magnet in the protrusion 9a of the mounting part 9 shown can be used to determine whether the disk body 2 has rotated from the first rotation position to the second rotation position.
[0070] Next, the control circuit 16 determines whether the plate-shaped accessory 8 has moved from the first position to the second position within a predetermined time during the standby performance output process (step S5). Here, the plate-shaped accessory 8 is moved from the first position to the second position by the user operating the operation unit 7 (pressing). Figure 3 Position 1A shown Figure 4 The second position 2B is displaced. The plate-shaped accessory 8 is displaced from the first position 1A, thereby releasing the press switch, which is capable of changing the pressing state due to the plate-shaped accessory 8 provided on the base 6, from the pressed state, and the press switch becomes the open state. The control circuit 22 connected to the press switch determines that the plate-shaped accessory 8 has been displaced according to the user's operation, and that the plate-shaped accessory 8 is in the displaced state. Based on this determination, the second identification information stored in the storage unit 23 is read and transmitted to the antenna 1r via the antenna 2r.
[0071] In step S5, after the standby performance output begins, the control circuit 16 receives the second identification information within a predetermined time. Based on this, it determines that the plate-shaped accessory 8 has shifted from the first position to the second position. The control circuit 16 then causes the performance output unit to output the second performance content (step S6). The second performance content is associated with the second identification information received by the antenna 1r and stored in the storage unit 17. This second performance content is different from the first performance content. For example, the second performance content is a transformation performance; by outputting this performance, the user can simulate experiencing the transformation of using the performance output toy.
[0072] As a condition for the control circuit 16 to determine the output of the second performance content, it is stipulated that, as described above, after the standby performance output begins, the control circuit 16 receives the second identification information within a predetermined time. The predetermined time refers to, for example, the time during the standby performance output process, that is, the time from the start to the end of the standby performance output.
[0073] If the control circuit 16 does not receive the second identification information within the predetermined time, that is, if the user does not operate the operation unit 7 and the plate-shaped accessory 8 does not move from the first position 1A, after the predetermined time has ended and the standby performance output has ended, the control circuit 16 causes the performance output unit to output the third performance content (step S7). The third performance content is different from either the first or the second performance content. The third performance content output may include, for example, a sound informing the user that the transformation has failed or a sound prompting the user to perform the transformation operation again.
[0074] Afterwards, the user operates the plate-shaped accessory 8 to move it from the second position 2B to the first position 1A and returns the disc body 2 to the first rotation position. Then, the disc body 2 rotates from the first rotation position to the second rotation position, thereby performing the action of the output toy 10 and returning to step S4.
[0075] <Effects of this implementation method>
[0076] As described above, the performance output toy 10 of this embodiment outputs different performance content corresponding to the displacement state of the plate-shaped accessory 8 based on the displacement of the plate-shaped accessory 8, thereby achieving a high level of entertainment.
[0077] That is, the performance content can be changed not only based on the type of badge 13 and the rotational position of the disc 2, but also based on at least a partial displacement state of the disc 2 (the change in the shape of the disc 2 caused by at least a partial displacement). In other words, the performance output toy 10 can change the performance content output by the performance output toy 10 based on the change in the appearance of the disc 2.
[0078] Furthermore, the second performance content is not limited to one type; for example, multiple types can be prepared based on the type of badge 13, the type of disc 2, or a combination of both. That is, a wide variety of performances can be output based on the type of badge 13, the type of disc 2, or a combination of both.
[0079] Furthermore, it is conceivable that the push switch used to determine the displacement of the plate-shaped component 8 is configured to be pressed when the plate-shaped component 8 is in the second position 2B. In this embodiment, when the plate-shaped component 8 is in the first position 1A, the plate-shaped component 8 is locked by the locking part 14, while when the plate-shaped component 8 is in the second position 2B, it is not locked. Therefore, the plate-shaped component 8 is easily displaced from the second position 2B due to movement of the main body 1, etc. Therefore, when the push switch is pressed when the plate-shaped component 8 is in the second position 2B, the plate-shaped component 8 is easily displaced from the second position 2B, and therefore, erroneous operation may occur when determining whether the plate-shaped component 8 has displaced from the first position 1A to the second position 2B.
[0080] In contrast, the push-button switch of this embodiment is pressed when the plate-shaped accessory 8 is in the first position 1A locked by the locking part 14. Therefore, as long as the locking part 14 is not released, the plate-shaped accessory 8 will not shift, thus preventing accidental operation. Furthermore, since the push-button switch is pressed when the plate-shaped accessory 8 is in the first position 1A locked by the locking part 14, it is possible to immediately detect the displacement of the plate-shaped accessory 8 after the user operates the operation unit 7 to release the locking part 14. Therefore, the output of the second performance content can be quickly performed after the operation unit 7 is operated to release the locking part 14. That is, the time difference between operation and performance output can be reduced, and the performance can be better adjusted based on changes in the shape of the disc body 2.
[0081] The invention of this application has been specifically described above based on the embodiments, but the invention of this application is not limited to the above embodiments and can be modified in various ways without departing from its spirit.
Claims
1. A secondary toy body detachable from a primary toy body, said secondary toy body comprising: Base section; A displacement portion, provided on the base portion, is capable of displacement relative to the base portion; and The second transmitting unit is capable of sending either a first identification information or a second identification information to the main toy body based on the displacement state of the displacement unit. The first identification information indicates the state before displacement relative to the main toy body, and the second identification information indicates the state after displacement relative to the main toy body. in, The first identification information is associated with the first performance content output in the main toy body. The second identification information is associated with a second performance content that is different from the first performance content and is output in the main toy body. The displacement unit is capable of moving from a first position corresponding to the state before the displacement to a second position corresponding to the state after the displacement. The auxiliary toy body has: The force-applying part applies force to the displacement part in a manner that causes the displacement part to displace from the first position to the second position; A locking part, provided on the base part, is used to lock the displacement part in the first position; and An operating unit, which is operated by the user to release the locking mechanism.
2. The auxiliary toy body according to claim 1, wherein, It also includes a judgment unit located in the base portion, which is capable of judging the displacement state of the displacement portion. The determination unit determines whether the displacement unit is in the state before the displacement or in the state after the displacement.
3. The auxiliary toy body according to claim 2, wherein, The determination unit is provided on the base portion. The determination unit includes a push switch that can switch between an on state and an off state according to the change in the pressing state caused by the displacement portion. The determination unit determines whether the displacement portion is in the state before the displacement or the state after the displacement based on whether the push switch is in the on state or the off state.
4. The auxiliary toy body according to claim 3, wherein, The push-button switch is configured such that: when the displacement part is located at the first position and is in a state of pressing the push-button switch, the push-button switch becomes an ON state; when the displacement part is detected to have moved from the first position and the state of the displacement part pressing the push-button switch is released, the push-button switch becomes an OFF state accordingly. The determination unit determines that the displacement unit is in the state before the displacement based on the push switch being in the on state, and the determination unit determines that the displacement unit is in the state after the displacement based on the push switch being in the off state.
5. The auxiliary toy body according to any one of claims 2 to 4, wherein, The main toy body has: The performance output unit outputs the first performance content and the second performance content; Power supply section; The first storage unit is used to store performance content associated with the specific identification information of the sub-player; The first transmitting unit, driven by power supplied from the power supply unit, sends an interrogation signal to the auxiliary toy body; and The first receiving unit, driven by power supplied from the power supply unit, receives the first identification information and the second identification information from the second transmitting unit. The performance output unit is driven by electricity supplied from the power supply unit. The auxiliary toy body has: A second storage unit is used to store the first identification information and the second identification information; and The second receiving unit receives the interrogation signal from the first transmitting unit, and is driven by the induced electromotive force generated by receiving the interrogation signal. The second transmitting unit is driven by the induced electromotive force. Based on the judgment result of the judgment unit, the second transmitting unit reads either the first identification information or the second identification information stored in the second storage unit and transmits it to the first receiving unit.
6. The auxiliary toy body according to claim 5, wherein, The judgment unit is driven by the induced electromotive force.
Citation Information
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