Bionic lamp for tentacle animals
By incorporating a drive motor and control device within the housing, the structure of the tentacle-like animal bionic lamp has been simplified, solving the problems of high energy loss and limited application scenarios in existing technologies. This has enabled more efficient energy utilization and diversified control methods, thereby enhancing the user experience.
Patent Information
- Application Number
- CN202423194634.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-04-12
- Filing Date
- 2024-12-24
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-24
AI Technical Summary
The driving device of existing tentacle-like animal bionic lamps is set on the base, which results in large energy loss, complex structure, high cost, limited application scenarios, and lack of effective control methods.
The drive and control devices, including a drive motor, PCB board, and sensing module, are installed inside the housing, which simplifies the structure and expands the application scenarios. By driving the tendrils to rotate through the drive motor and gear system inside the housing, a variety of control methods can be achieved.
It simplifies the product structure, reduces energy consumption and production costs, expands the application scenarios, and improves user experience and ease of control.
Smart Images

Figure CN223579732U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to lamp technical field, concretely relates to a kind of bionical lamp of tentaculate animal. BACKGROUND
[0002] Light source develops for a long time, to now except for being used for illumination, it is also widely applied to many fields, for example, provide atmosphere and indication, for decoration or set off environment.
[0003] In order to improve visual effect, people design lamp into various shapes, for example, the modeling of animal or plant.
[0004] In the patent file with the authorization announcement No.CN218565341U discloses a jellyfish lamp ornament with tentacle rotating function, the lamp is made according to the unique modeling of jellyfish, and has good visual effect.
[0005] The scheme discloses a jellyfish lamp ornament with tentacle rotating function, which comprises a base, a circuit board, a power supply and a motor are arranged in the base; a speed reduction gear device comprising a driving gear, a driven gear and a transmission gear assembly; a jellyfish tentacle assembly is fixedly installed above the driven gear through a vertical rod, and the jellyfish tentacle assembly comprises a mounting frame and a plurality of optical fibers arranged around the lower side of the mounting frame; a rotation auxiliary device is installed above the mounting frame and comprises an intermediate gear and a plurality of unit gears which are intermittently engaged on the outer side of the intermediate gear, the upper end of the vertical rod is fixedly connected to the intermediate gear after penetrating through the mounting frame, and the upper end of the optical fiber is fixedly connected to the unit gear after penetrating through the mounting frame; and a lamp bead is installed above the unit gear, the tentacles of the jellyfish can be presented in the form of luminous optical fiber, and the visual effect is good.
[0006] However, the scheme has some deficiencies, the driving device is arranged on the base, the energy loss is large during transmission, a plurality of components are used, the structure is complex, the manufacturing cost is high and faults are easily caused, in addition, since the base must be used, the use scene is limited, and the control mode is not disclosed.
[0007] Therefore, it is necessary to design a new structure to solve the problems in the prior art. SUMMARY
[0008] To solve the problems in the prior art, the utility model provides a tentaculate animal bionical lamp, which is simplified in structure and expanded in use scene by arranging driving devices, sensing modules and other control devices in the shell.
[0009] To achieve the above purpose, the technical scheme of the utility model is as follows:
[0010] The utility model provides a kind of bionic lamp of tentaculate animal, including shell assembly and with the shell assembly form detachable connection multiple curved tentacles;The shell assembly includes shell, driving device for driving the tentacle rotation is equipped in the shell;Control device is equipped in the shell, and the control device includes PCB board, and the driving device is electrically connected with the PCB board;Light source is also equipped in the shell, and the light source is electrically connected with the PCB board;The driving device includes driving motor, driving gear is equipped on the transmission shaft of the driving motor;Driven gear set is rotatably equipped on the shell, and the driving gear is engaged with the driven gear set, and the tentacle is detachably connected on the driven gear set, and the driving motor drives each tentacle independent rotation by the driven gear set.
[0011] The above scheme, by setting driving device in shell to drive tentacle individual rotation, visual effect is good, need not complex transmission structure, greatly simplifies the structure of product;Since all control components and driving components are arranged in shell, product structure is compact;While through control device, multiple control modes can be realized, facilitate control, improve user experience.
[0012] The utility model provides a kind of bionic lamp of tentaculate animal, including shell assembly and with the shell assembly form detachable connection multiple curved tentacles;The shell assembly includes shell, driving device for driving the tentacle rotation is equipped in the shell;Control device is equipped in the shell, and the control device includes PCB board, and the driving device is electrically connected with the PCB board;Light source is also equipped in the shell, and the light source is electrically connected with the PCB board;The driving device includes driving motor, driving gear is equipped on the transmission shaft of the driving motor;Driven gear set is rotatably equipped on the shell, and the driving gear is engaged with the driven gear set, and the tentacle is detachably connected on the driven gear set, and the driving motor drives each tentacle independent rotation by the driven gear set.
[0013] The above scheme, by setting driving device in shell to drive tentacle individual rotation, visual effect is good, need not complex transmission structure, greatly simplifies the structure of product;Since all control components and driving components are arranged in shell, product structure is compact;While through control device, multiple control modes can be realized, facilitate control, improve user experience. ACCURACY
[0014] Figure 1 It is the structural schematic diagram of the first embodiment of the utility model;
[0015] Figure 2 It is the structural schematic diagram of the first embodiment of the utility model after removing upper shell.
[0016] Figure 3 It is the first kind of installation structure schematic view of the gear of the first embodiment of the utility model;
[0017] Figure 4 It is the second kind of installation structure schematic view of the gear of the first embodiment of the utility model;
[0018] Figure 5 It is the structure schematic view after the lower shell of the first embodiment of the utility model is removed;
[0019] Figure 6 It is Figure 5 The enlarged view of A in the middle;
[0020] Figure 7 It is the structure schematic view of another connection mode of the first embodiment of the utility model;
[0021] Figure 8 It is the structure schematic view of the PCB board of the first embodiment of the utility model;
[0022] Figure 9 It is the structure schematic view of another perspective of the first embodiment of the utility model;
[0023] Figure 10 It is the schematic view of the first embodiment of the utility model supported and installed by the support frame;
[0024] Figure 11 It is the structure exploded view of another embodiment of the first embodiment of the utility model;
[0025] Figure 12 It is the structure schematic view of the second embodiment of the utility model;
[0026] Figure 13 It is the structure schematic view of another perspective of the second embodiment of the utility model;
[0027] Figure 14 It is the structure schematic view of the third embodiment of the utility model. DETAILED DESCRIPTION
[0028] The utility model will be further explained in detail in combination with the drawings and specific embodiments.
[0029] As Figures 1 to 11 Indicated, a kind of tentaculate animal bionic lamp, including shell assembly 1 and with the shell assembly 1 forms multiple curved tentacle 2 of detachable connection.
[0030] The shell assembly 1 includes shell.
[0031] In the embodiment, tentaculate animal bionic lamp is designed into the shape similar to jellyfish.
[0032] The housing includes a lower housing 11 and an upper housing 12. Both the lower housing 11 and the upper housing 12 are made of rigid materials, preferably rigid light-transmitting materials, such as PE, PC, PS or glass.
[0033] like Figure 3 As shown, a first through hole 110 is provided on the lower housing 11, and an annular flange 111 with an inner diameter larger than the first through hole 110 is provided inside the lower housing 11. The annular flange 111 is coaxially arranged with the first through hole 110.
[0034] like Figure 4 In another embodiment, an annular countersunk hole 112 with an inner diameter larger than the first through hole 110 is provided inside the lower housing 11, and the annular countersunk hole 112 is coaxially arranged with the first through hole 110.
[0035] The above-mentioned annular flange 111 and annular countersunk hole 112 are used to limit the bottom of the gear.
[0036] like Figure 2 and Figure 3 As shown, a drive device for driving the tendrils 2 to rotate is provided inside the housing. In this embodiment, the drive device includes a drive motor 30, which is fixed to the lower housing 11 by a motor bracket 300. A drive gear 31 is provided on the output shaft of the drive motor 30.
[0037] A driven gear set is rotatably provided on the housing, the driving gear 31 meshes with the driven gear set, the tentacles 2 are detachably connected to the driven gear set, and the drive motor 30 drives each of the tentacles 2 to rotate independently through the driven gear set.
[0038] In this embodiment, the driven gear set includes a first driven gear set and a second driven gear set.
[0039] The driving gear 31 meshes with the first driven gear set; the first driven gear set meshes with the second driven gear set.
[0040] The first driven gear set includes three or more first gears 321; the second driven gear set includes six or more second gears 322.
[0041] In this embodiment, there are three first gears 321 and twice the number of second gears 322. One first gear 321 drives two second gears 322 to rotate.
[0042] like Figures 4 to 6As shown, the first gear 321 and the second gear 322 are structurally identical, and the first gear 321 is provided with an upper boss 3211 at the top and a lower boss 3212 at the bottom, and the lower boss 3212 is provided with a recessed cavity 3213 for mounting the tentacle 2, and the lower boss 3212 is arranged in the annular flange 111 or the annular counterbore 112, and the side wall of the lower boss 3212 is in clearance fit with the annular flange 111 or the annular counterbore 112.
[0043] The tentacle 2 and the recessed cavity 3213 are connected by interference fit, magnetic attraction, thread or buckle, etc.
[0044] Figure 6 The structure schematic diagram of the connection between the tentacle 2 and the recessed cavity 3213 by thread is shown in the middle, and when the tentacle 2 is installed, it only needs to be screwed into the recessed cavity 3213 to form a stable connection.
[0045] Figure 7 The structure schematic diagram of the connection between the tentacle 2 and the recessed cavity 3213 by buckle is shown, and when the tentacle 2 is installed, it only needs to be inserted into the recessed cavity 3213, and the buckle at the front end of the tentacle 2 hooks the end face of the gear after passing through the gear, thereby forming a stable connection.
[0046] As shown in the left side of the figure, Figure 2 A control device is arranged in the shell, which includes a PCB board 4 connected with the lower shell 11 by screws, and the driving device is electrically connected with the PCB board 4.
[0047] As shown in the left side of the figure, Figure 8 and Figure 9 A second through hole 40 consistent with the number of the upper bosses 3211 is formed on the PCB board 4, the upper bosses 3211 pass through the second through hole 40, and the upper bosses 3211 are in clearance fit with the second through hole 40.
[0048] With the above structure, the upper and lower ends of the first gear 321 and the second gear 322 are respectively limited by the PCB board 4 and the lower shell 11, and the first gear 321 and the second gear 322 can be passively rotated between the PCB board 4 and the lower shell 11.
[0049] This arrangement can simplify the structure, and the PCB board 4 can be used as a control board and a structural member.
[0050] As shown in the left side of the figure, Figure 9 The control device further includes an induction module or a non-contact control module, which is electrically connected with the PCB board, and is used to control the opening or closing of the tentacle-like animal bionic lamp, set the opening or closing time, or display the color, etc.
[0051] The sensing module can be a sound sensing module, a human body sensing module, an infrared sensing module, or a vibration sensing module.
[0052] Among them, the human body sensing module achieves control by detecting changes in the infrared spectrum of the human body through sensors; the infrared sensing module uses infrared light for wireless control, which is usually achieved through a remote control.
[0053] The contactless control module can be a Bluetooth module, a WIFI transmission module, or a radio frequency module.
[0054] The Bluetooth module enables data exchange between the mobile phone and the tentacle animal bionic lamp; while the WIFI transmission module allows for remote monitoring and control of the tentacle animal bionic lamp via a mobile app.
[0055] In this embodiment, a sound sensing module 41 is used. When the sound sensing module 41 detects a sound that can turn it on, the sound sensing module 41 can control the PCB board 4 to supply power to the light source, so that the light source lights up.
[0056] A light source is also provided inside the housing, and the light source is electrically connected to the PCB board 4. The light source can be located on the PCB board 4, or inside the upper housing 12 or the lower housing 11. In this embodiment, the light source is a colored LED 42. The colored LED 42 can emit various colors of light, and different colors can be changed according to the settings, resulting in a good visual effect. The LED 42 is also arranged on both sides of the PCB board 4, so that when the LED 42 is powered on, the entire housing assembly 1 can emit light without dead angles or blind spots, resulting in a good visual effect.
[0057] Furthermore, a circuit board can be installed on the upper housing 12 or the lower housing 11, and LED lights can be installed on the circuit board. These LED lights are located on top of the first gear 321 and the second gear 322, and the light emission direction of the LED lights is towards the first gear 321 and the second gear 322. At the same time, the tendons 2 are made of a light-transmitting material. In this way, when the LED lights emit light, the light will spread along the tendons 2, further enhancing the visual effect.
[0058] like Figure 8 As shown, a battery 43 is provided on the PCB board 4, and the battery 43 is electrically connected to the PCB board 4; a lighting effect switching button 44, a mode selection switch 45 and a charging interface 46 are also provided on the PCB board 4.
[0059] In this embodiment, pressing the lighting effect switching button 44 can switch the light emission mode of the lamp. For example, pressing it once can switch to the constant light mode, and pressing it again can switch to the breathing light mode.
[0060] In the embodiment, the mode selection switch 45 has three switchable gears, one of which is a power-off state, the second is a sound control mode, and the third is a manual mode. The sound control mode and the manual mode can switch the light effect by pressing the light effect switch button 44.
[0061] The upper shell 12 and the lower shell 11 are connected by threads, buckles or welding, and in the embodiment, the upper shell 12 and the lower shell 11 are connected by ultrasonic welding.
[0062] The tentacled animal bionic lamp further comprises a support frame 5, and the shell is provided with a first mounting hole 6 for hanging the jellyfish lamp and a second mounting hole (not shown) for mounting the support frame 5, and the support frame 5 supports the tentacled animal bionic lamp as a whole through the second mounting hole. In this way, the tentacled animal bionic lamp can be hung in a scene where it is needed to be used, and can also be placed in a scene where it is needed to be used through the support frame 5.
[0063] As another embodiment of the embodiment, as shown in Figure 11 A gear cover plate 7 is arranged on the lower shell 11, and a third through hole 70 consistent in number with the upper bosses 3211 is arranged on the gear cover plate 7, the upper bosses 3211 pass through the third through hole 70, and the upper bosses 3211 are in clearance fit with the third through hole 70.
[0064] In the embodiment, the gear cover plate 7 is made of a light-transmitting material and can be injection molded, thus being low in cost.
[0065] In the embodiment, the PCB board 4b is designed in a triangular shape, the triangular-shaped PCB board can reduce the use area of the PCB board, and the triangular-shaped PCB board has small loss when being cut, thus effectively reducing the production cost.
[0066] In order to expand the application scene of the product and enable the product to be used outdoors, the product is expanded, and therefore the second embodiment is provided, the overall structure of the second embodiment is consistent with that of the first embodiment, and the difference lies in that the upper shell 12b is made of a light-transmitting flexible material, and a solar cell panel 120b is arranged on the upper shell and electrically connected with the PCB board.
[0067] In the embodiment, as shown in Figure 12 The solar cell panel 120b is arranged inside the upper shell 12b, and the solar cell panel 120b is parallel to the bottom surface of the upper shell 12b.
[0068] As another embodiment, as shown in Figure 13As shown, the solar panels 120d are arranged in a ring array inside the upper housing 12d to increase the area and absorb more solar energy, and the solar panels 120d are electrically connected with the PCB board.
[0069] The upper housing 12b and the upper housing 12d are made of flexible materials because the size of the product needs to be larger when used outdoors than when used indoors, and if the upper housing 12b and the upper housing 12d are made of hard materials, they will occupy a large volume and are not convenient to store and transport.
[0070] The solar panels 120d can be arranged inside the upper housing 12d, or arranged outside the upper housing 12d, or integrated with the upper housing 12d.
[0071] Meanwhile, the bottom of the upper housing 12b and the upper housing 12d can also be made of hard materials to facilitate connection with the lower housing.
[0072] Of course, the upper housing 12b and the upper housing 12d can also be sleeved on the lower housing.
[0073] Figure 14 The structure of the third embodiment of the utility model is shown in the figure.
[0074] As shown in the figure, Figure 14 A tentaculate animal bionic lamp includes a shell assembly 1c and a plurality of curved tentacles 2c which are detachably connected with the shell assembly 1c.
[0075] The shell assembly 1c includes a shell.
[0076] In this embodiment, the tentaculate animal bionic lamp is designed in the shape of a jellyfish. The shell includes a lower housing 11c and an upper housing 12c. The lower housing 11c is made of a hard material, preferably a hard light-transmitting material such as PE, PC, PS or glass, etc. The upper housing 12c can be made of a hard material or a flexible material. In this embodiment, the lower housing 11c and the upper housing 12c can be arranged in the same way as in the first embodiment and the second embodiment.
[0077] A first through hole 110c is arranged on the lower housing 11c, and an annular flange 111c with a larger inner diameter than the first through hole 110c is arranged inside the lower housing 11c. The annular flange 111c is coaxially arranged with the first through hole 110c. Of course, the annular flange here can also be the annular counterbore in the first embodiment and the second embodiment.
[0078] The annular flange 111c is used to limit the bottom of the gear.
[0079] A driving device is arranged in the shell to drive the tentacle 2c to rotate. In the embodiment, the driving device comprises a driving motor 30c which is fixed on the lower shell 11c through a motor support 300c. A driving gear (not shown) is arranged on the output shaft of the driving motor 30c.
[0080] A rotating disc 8c is rotatably arranged on the shell. In the embodiment, the rotating disc 8c is arranged in the annular flange 111c. The side wall of the rotating disc 8c is in clearance fit with the inner wall of the annular flange 111c, i.e. the rotating disc 8c can rotate freely in the annular flange 111c.
[0081] A driven gear 9c is arranged on the rotating disc 8c. The driving gear is engaged with the driven gear 9c. The tentacle 2c is detachably connected to the rotating disc 8c. The driving motor 30c drives all the tentacles 2c to rotate as a whole through the rotating disc 8c.
[0082] The tentacle 2c and the rotating disc 8c are connected through interference fit, magnetic attraction, thread or buckle.
[0083] In the embodiment, the structure diagram of the connection between the tentacle 2c and the rotating disc 8c through thread is shown. When the tentacle 2c is installed, it only needs to be screwed into the rotating disc 8c to form stable connection.
[0084] Of course, the tentacle 2c can also be connected through the buckle in the first embodiment.
[0085] A control device is arranged in the shell. The control device comprises a PCB board 4c which is connected to the lower shell 11c through screws. The driving device is electrically connected to the PCB board 4c.
[0086] In order to limit the axial movement of the rotating disc 8c, a pressing plate can be arranged on the lower shell to prevent the rotating disc 8c from being pulled out of the annular flange or the annular counterbore. In the embodiment, the PCB board 4c can be regarded as a kind of pressing plate structure.
[0087] The control device further comprises an induction module or a non-contact control module which is electrically connected to the PCB board to control the opening or closing of the tentacle-like animal bionic lamp, set the opening or closing time, or display the color, etc.
[0088] The induction module can be a sound induction module, a human body induction module, an infrared induction module or a vibration induction module.
[0089] The human body sensing module is realized by detecting the change of human body infrared spectrum through a sensor; the infrared sensing module is realized by using infrared for wireless control, and is usually realized by a remote controller.
[0090] The non-contact control module can be a Bluetooth module, a WIFI transmission module or a radio frequency module.
[0091] The data exchange between the mobile phone and the bionic lamp for tentacled animals can be realized through the Bluetooth module; and the WIFI transmission module can realize remote monitoring and control of the bionic lamp for tentacled animals through a mobile phone APP.
[0092] In the embodiment, when the sound sensing module 41 detects the sound that can make it start, the sound sensing module 41 can control the PCB board 4 to supply power to the light source, so that the light source is turned on.
[0093] The light source is arranged in the shell, and is electrically connected with the PCB board 4c. The light source can be arranged on the PCB board 4c, or arranged in the upper shell 12c or the lower shell 11c. In the embodiment, the light source is a colored LED lamp 42c, which can emit light of various colors, and can change the color according to the setting, and has a good visual effect. The LED lamp 42c is arranged on both sides of the PCB board 4c, so that when the LED lamp 42c is powered on, the entire shell assembly 1c can emit light without dead angle or blind area, and has a good visual effect.
[0094] A battery 43c is arranged on the PCB board 4, and is electrically connected with the PCB board 4c. A light effect switching button 44c, a mode selection switch 45c and a charging interface (not shown) are further arranged on the PCB board 4c.
[0095] In the embodiment, the light effect switching button 44c can switch the light emission mode of the lamp by pressing. For example, one press can switch to a constant light mode, and another press can switch to a breathing light mode.
[0096] In the embodiment, the mode selection switch 45c has three switchable gears. One gear is a shutdown state, the second gear is a sound control mode, and the third gear is a manual mode. The light effect switching button 44c can be pressed to switch the light effect in the sound control mode and the manual mode.
[0097] The upper shell 12c and the lower shell 11c are connected by threads, screws, buckles, adhesives or welding. In the embodiment, the upper shell 12c and the lower shell 11c are connected by ultrasonic welding.
[0098] The tentacled animal bionic lamp further comprises a supporting frame (not shown); the housing is provided with a first mounting hole 6c for hanging the jellyfish lamp and a second mounting hole (not shown) for mounting the supporting frame, and the supporting frame supports the tentacled animal bionic lamp as a whole through the second mounting hole. In this way, the tentacled animal bionic lamp can be hung in a scene where it is needed to be used, and can also be placed in a scene where it is needed to be used through the supporting frame.
[0099] This embodiment has simpler structure and lower production cost, and is beneficial to popularization and use.
Claims
1. A bionic lamp of a tentaculate animal, characterized in that: The shell assembly comprises a shell, and a plurality of curved tentacles detachably connected with the shell assembly; The shell assembly comprises a shell, and a plurality of curved tentacles detachably connected with the shell assembly; The shell assembly comprises a shell, and a plurality of curved tentacles detachably connected with the shell assembly; The shell assembly comprises a shell, and a plurality of curved tentacles detachably connected with the shell assembly; 2. The bionic lamp of claim 1, wherein: The driving device comprises a driving motor, and a driving gear is arranged on a transmission shaft of the driving motor; a driven gear set is rotatably arranged on the shell, the driving gear is engaged with the driven gear set, the tentacles are detachably connected with the driven gear set, and the driving motor drives each of the tentacles to independently rotate through the driven gear set. The shell comprises a lower shell and an upper shell, a first through hole is arranged on the lower shell, an annular flange or an annular counterbore with a larger inner diameter than the first through hole is arranged inside the lower shell, and the annular flange or the annular counterbore is coaxially arranged with the first through hole.
3. The tentacle-like animal bionic lamp according to claim 2, wherein: The driven gear set comprises a first driven gear set and a second driven gear set; The driving gear is engaged with the first driven gear set, and the first driven gear set is engaged with the second driven gear set; The first driven gear set comprises three or more first gears, and the second driven gear set comprises six or more second gears, the number of the second gears is twice that of the first gears, and one first gear drives two second gears to rotate; 4. The bionic lamp of claim 3, wherein: The first gears and the second gears are identical in structure, an upper boss is arranged on the top of the first gear, a lower boss is arranged on the bottom of the first gear, a recessed cavity for mounting the tentacles is arranged on the lower boss, the lower boss is arranged in the annular flange, and the side wall of the lower boss is in clearance fit with the annular flange.
5. The bionic lamp of claim 3, wherein: Second through holes corresponding in number and position to the upper bosses are arranged on the PCB, the upper bosses pass through the second through holes, and the upper bosses are in clearance fit with the second through holes. Gear cover plates are arranged on the lower shell, third through holes corresponding in number and position to the upper bosses are arranged on the gear cover plates, the upper bosses pass through the third through holes, and the upper bosses are in clearance fit with the third through holes.
6. The tentacle-like animal bionic lamp according to claim 3, wherein:
7. The bionic lamp of claim 2, wherein: The shell is made of a light-transmitting material, the upper shell and the lower shell are connected by threads, buckles or welding, and the tentacles and the recessed cavities are connected by interference fit, magnetic attraction, threads or buckles. The upper shell is made of a light-transmitting flexible material, and a solar cell panel is arranged on the upper shell.
8. The tentacle-like animal bionic lamp according to claim 1, wherein: The control device further comprises an induction module or a non-contact control module, and the induction module or the non-contact control module is electrically connected with the PCB. The sensing module is a sound sensing module, a human body sensing module, an infrared sensing module or a vibration sensing module; The non-contact control module is a Bluetooth module, a WIFI transmission module or a radio frequency module; A battery is arranged in the shell, and the battery is electrically connected with the PCB; the light source is arranged on both sides of the PCB; a light effect switching button, a mode selection switch and a charging interface are further arranged on the PCB; A support frame is further included; a first mounting hole for hanging the jellyfish lamp and a second mounting hole for mounting the support frame are arranged on the shell.
9. A bionic lamp of a tentaculate animal, characterized in that: The shell assembly includes a shell, and a plurality of curved tentacles are detachably connected to the shell assembly; The shell assembly includes a shell, and a driving device is arranged in the shell to drive the tentacles to rotate; A control device is arranged in the shell, and the control device includes a PCB; the driving device is electrically connected with the PCB; a light source is further arranged in the shell, and the light source is electrically connected with the PCB; The driving device includes a driving motor, and a driving gear is arranged on a transmission shaft of the driving motor; a rotating disc is rotatably arranged on the shell, and a driven gear is arranged on the rotating disc; the driving gear is engaged with the driven gear; the tentacles are detachably connected to the rotating disc; the driving motor drives all the tentacles to rotate as a whole through the rotating disc.
10. The bionic lamp of claim 9, wherein: The shell is made of a light-transmitting material; The shell includes a lower shell and an upper shell; a first through hole is arranged on the lower shell; an annular flange or an annular counterbore with a larger inner diameter than the first through hole is arranged in the lower shell; and the annular flange or the annular counterbore is coaxially arranged with the first through hole; The side wall of the rotating disc is gap-fitted with the annular flange or the annular counterbore; The control device further includes a sensing module or a non-contact control module, and the sensing module or the non-contact control module is electrically connected with the PCB; The sensing module is a sound sensing module, a human body sensing module, an infrared sensing module or a vibration sensing module; The non-contact control module is a Bluetooth module, a WIFI transmission module or a radio frequency module; A battery is arranged in the shell, and the battery is electrically connected with the PCB; the light source is arranged on both sides of the PCB; a light effect switching button, a mode selection switch and a charging interface are further arranged on the PCB; The upper shell and the lower shell are connected by threads, buckles or welding; the tentacles and the rotating disc are connected by interference fit, magnetic attraction, threads or buckles; A support frame is further included; a first mounting hole for hanging the jellyfish lamp and a second mounting hole for mounting the support frame are arranged on the shell.
Citation Information
Patent Citations
Jellyfish lamp ornament with whisker rotating function
CN218565341U