Intelligent recovery equipment

By using a light-transmitting cover to cover the solar panels in the smart recycling equipment and guiding rainwater to both sides, the problem of rainwater and dirt affecting the solar panels of the garbage bins is solved, improving the photoelectric conversion efficiency and equipment stability, and reducing maintenance difficulty and cost.

CN223990444UActive Publication Date: 2026-03-13SHANDONG TAIAN TOBACCO
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-11
Publication Date
2026-03-13

AI Technical Summary

Technical Problem

Existing solar panels in trash cans are susceptible to rain and dirt, leading to a decrease in photoelectric conversion efficiency and a risk of short circuits, increasing maintenance difficulty and cost.

Method used

A smart recycling device was designed, which uses a light-transmitting cover to cover the solar panel to prevent rainwater from entering, while using an arched structure to guide rainwater to both sides to avoid water accumulation, and using modular electrical components to improve the stability and ease of maintenance of the device.

Benefits of technology

It improves the photoelectric conversion efficiency of solar panels, reduces the risk of circuit damage, lowers maintenance difficulty and cost, and enhances equipment stability and user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses intelligent recycling equipment which comprises a box body, a ceiling, at least one electric appliance assembly and a power supply assembly, and the box body defines at least one first containing cavity used for containing a garbage can; the ceiling is arranged at the top of the box body; the electric appliance assembly is arranged over the first containing cavity and comprises at least one of a first aerosol solid fire extinguishing assembly, a distance measuring assembly and a lighting assembly. The power supply assembly comprises a charging assembly and a battery assembly electrically connected with the charging assembly, and the battery assembly is electrically connected with the electric appliance assembly; the charging assembly is installed on the top face of the ceiling and comprises a solar panel and a light-transmitting cover covering the solar panel. According to the utility model, the light-transmitting cover with the arch-shaped structure can enable sunlight to better irradiate to the solar panel, and can prevent rainwater from entering the solar panel to damage the solar panel at the same time; the light-transmitting cover can guide rainwater to the two sides of the ceiling, the rainwater is prevented from being accumulated on the light-transmitting cover, and dust on the surface of the light-transmitting cover can be better washed away by the rainwater.
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Description

Technical Field

[0001] This utility model relates to the field of waste recycling technology, and in particular to an intelligent recycling device. Background Technology

[0002] Trash cans have been adopted by the vast majority of places as an urban environmental protection infrastructure. However, most existing trash cans only have an inner cavity for holding trash. As people's living standards improve, they pay more and more attention to urban construction and have higher and higher requirements for public infrastructure. Trash cans are a common infrastructure in life.

[0003] The solar panels in these systems are typically placed outdoors, exposing them to various harsh weather conditions, including rain and moisture. This can lead to water and dirt accumulation on the surface of the solar panels, and even water seeping into the panels, affecting their photoelectric conversion efficiency and consequently impacting the stability and reliability of the entire system. Furthermore, rainwater can cause short circuits, damaging electronic components and increasing maintenance difficulty and costs. Utility Model Content

[0004] The technical problem to be solved by this utility model is to provide an intelligent recycling device.

[0005] The technical solution adopted by this utility model to solve its technical problem is:

[0006] A smart recycling device includes:

[0007] The enclosure defines at least one first receiving cavity for accommodating the trash can;

[0008] A canopy is provided at the top of the enclosure;

[0009] At least one electrical component is disposed directly above the first receiving cavity, including at least one of a first aerosol solid fire extinguishing component, a ranging component, and a lighting component;

[0010] A power supply assembly includes a charging assembly and a battery assembly electrically connected to the charging assembly, the battery assembly being electrically connected to the electrical assembly; the charging assembly is mounted on the top surface of the canopy and includes a solar panel and a light-transmitting cover over the solar panel; and

[0011] The motherboard assembly is electrically connected to both the electrical component and the power supply component.

[0012] Furthermore, in the aforementioned intelligent recycling device, the charging component preferably further includes a first mounting box with an opening at the top, the first mounting box being installed on the top surface of the canopy, the solar panel being installed in the first mounting box, and the light-transmitting cover covering the opening of the first mounting box.

[0013] Furthermore, in the aforementioned intelligent recycling device, the light-transmitting cover preferably includes a light-transmitting plate and a first mounting plate and a second mounting plate respectively installed on two opposite sides of the light-transmitting plate; the first mounting box includes a base plate installed on the top surface of the ceiling, baffles installed on two opposite sides of the base plate, and a first arc-shaped plate and a second arc-shaped plate installed on the other two opposite sides of the base plate, the first mounting plate and the second mounting plate being connected to the baffles, and the first arc-shaped plate and the second arc-shaped plate being connected to two opposite sides of the light-transmitting plate respectively.

[0014] Furthermore, in the aforementioned intelligent recycling device, the electrical components are preferably modular, including a mounting plate installed on the underside of the ceiling, and a control switch, a first aerosol solid fire extinguishing component, a ranging component, and a lighting component installed on the mounting plate. The lighting component includes a lamp. The control switch, the first aerosol solid fire extinguishing component, the ranging component, and the lamp are electrically connected to the mainboard component and the battery component, respectively.

[0015] Furthermore, in the aforementioned intelligent recycling device, the mounting plate is preferably Z-shaped, comprising a horizontally arranged first mounting part, a second mounting part arranged horizontally below the first mounting part, and a vertically arranged connecting part, wherein the connecting part connects the first mounting part and the second mounting part; the free end of the first mounting part is mounted on the lower side of the ceiling, and the free end of the second mounting part is mounted on the upper edge of the housing; the control switch, the first aerosol solid fire extinguishing component, and the ranging component are respectively mounted on the lower surface of the first mounting part, and the lamp is mounted on the upper surface of the second mounting part.

[0016] Furthermore, in the aforementioned intelligent recycling device, the lamp preferably includes a lampshade mounted on the upper surface of the second mounting portion and a lamp plate mounted inside the lampshade, wherein the second mounting portion is provided with a light-transmitting window corresponding to the lamp plate.

[0017] Furthermore, in the aforementioned intelligent recycling device, the lighting component preferably further includes a human body sensor, which is installed on the upper surface of the ceiling; a first dispensing port is provided on each of the two opposite sides of the housing, and the vertical distance from the human body sensor to the two opposite sides of the first dispensing port is approximately equal.

[0018] Furthermore, in the aforementioned intelligent recycling device, the motherboard assembly preferably includes a second mounting box, a protective cover, and a motherboard; the second mounting box is installed on the underside of the roof, and the motherboard and the battery assembly are respectively disposed within the second mounting box; the protective cover is disposed on the second mounting box and connected to the roof.

[0019] Furthermore, in the aforementioned intelligent recycling device, the housing preferably further defines at least one second receiving cavity for accommodating cigarette butt bins; the intelligent recycling device also includes at least one counting component and at least one second aerosol solid fire extinguishing component, the counting component being disposed within the second receiving cavity, and the counting component being electrically connected to the battery component and the mainboard component respectively; the second aerosol solid fire extinguishing component being disposed on the lower side of the ceiling, and being electrically connected to the battery component and the mainboard component respectively, and located directly above the second receiving cavity.

[0020] Furthermore, in the aforementioned intelligent recycling device, the intelligent recycling device preferably also includes a wireless communication component installed on the top of the canopy, the wireless communication component being electrically connected to the battery component and the motherboard component respectively.

[0021] The present invention has the following advantages: the arched structure of the light-transmitting cover allows sunlight to shine better onto the solar panel, while also preventing rainwater from entering and damaging the solar panel; the light-transmitting cover can also guide rainwater to both sides of the roof, preventing rainwater from accumulating in the light-transmitting cover, and allowing rainwater to better wash away dust on the surface of the light-transmitting cover. Attached Figure Description

[0022] The present invention will be further described below with reference to the accompanying drawings and embodiments. In the accompanying drawings:

[0023] Figure 1 This is a three-dimensional structural schematic diagram of the intelligent recycling device in some embodiments of this utility model;

[0024] Figure 2 yes Figure 1 The diagram shows the exploded three-dimensional structure of the box and the roof.

[0025] Figure 3 yes Figure 2 A schematic diagram of the three-dimensional structure of the ceiling shown;

[0026] Figure 4 yes Figure 3 A three-dimensional structural diagram of the ceiling from another perspective is shown;

[0027] Figure 5 yes Figure 4 The diagram shows a three-dimensional exploded view of the charging components, canopy, electrical components, and motherboard components.

[0028] Figure 6 yes Figure 5 A three-dimensional exploded view of the charging component shown.

[0029] Figure 7 yes Figure 5 A three-dimensional exploded view of the electrical components shown.

[0030] Figure 8 yes Figure 5 A three-dimensional exploded view of the motherboard components shown.

[0031] Figure 9 yes Figure 1 A three-dimensional structural diagram of the removal box door shown;

[0032] Figure 10 yes Figure 9 A partial three-dimensional structural diagram of the box shown;

[0033] Figure 11 yes Figure 1 The diagram shows a longitudinal sectional view of the three-dimensional structure of the box and the roof. Detailed Implementation

[0034] To provide a clearer understanding of the technical features, objectives, and effects of this utility model, the specific embodiments of this utility model are now described in detail with reference to the accompanying drawings. In the following description, it should be understood that the orientations or positional relationships indicated by terms such as "front," "rear," "upper," "lower," "left," "right," "longitudinal," "horizontal," "vertical," "horizontal," "top," "bottom," "inner," "outer," "head," and "tail" are based on the orientations or positional relationships shown in the accompanying drawings, and are constructed and operated in a specific orientation. They are only for the convenience of describing this technical solution and do not indicate that the device or component referred to must have a specific orientation; therefore, they should not be construed as limitations on this utility model.

[0035] It should also be noted that, unless otherwise explicitly specified and limited, terms such as "installation," "connection," "joining," "fixing," and "setting" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. When an component is referred to as being "on" or "below" another component, the component can be located "directly" or "indirectly" on the other component, or there may be one or more intermediary components. The terms "first," "second," "third," etc., are only for the convenience of describing this technical solution and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Therefore, features defined with "first," "second," "third," etc., may explicitly or implicitly include one or more of that feature. For those skilled in the art, the specific meaning of the above terms in this utility model can be understood according to the specific circumstances.

[0036] In the following description, specific details such as particular system structures and techniques are set forth for illustrative purposes and not for limitation, in order to provide a thorough understanding of the embodiments of the present invention. However, those skilled in the art will understand that the present invention can be implemented in other embodiments without these specific details. In other instances, detailed descriptions of well-known systems, apparatuses, circuits, and methods are omitted so as not to obscure the description of the present invention with unnecessary detail.

[0037] The technical solution adopted by this utility model to solve its technical problem is:

[0038] like Figure 1 and Figure 4 As shown, some embodiments of this utility model disclose an intelligent recycling device. In some embodiments, this intelligent recycling device may include a housing 10, a canopy 20, and at least one electrical component 30. The housing 10 defines at least one first receiving cavity 110 for accommodating a trash can. The canopy 20 is disposed on top of the housing 10 to shield the trash can in the first receiving cavity 110 from rainwater. The electrical component 30 is disposed directly above the first receiving cavity 110 and may include at least one of a first aerosol solid fire extinguishing component 33, a ranging component 34, and a lighting component 35. The first aerosol solid fire extinguishing component 33 is used to extinguish fires other than those in the trash can. The ranging component 34 detects the overflow level of the trash can, so as to promptly remind people to empty the trash can when it is full. The lighting component 35 illuminates the trash can to facilitate nighttime trash disposal.

[0039] For reference Figure 2 In some embodiments, the intelligent recycling device also includes a power supply component 40 and a motherboard component 50. The power supply component 40 supplies power to the electrical component 30 and the motherboard component 50, and includes a charging component 41 and a battery component 42 electrically connected to the charging component 41. The battery component 42 is electrically connected to both the electrical component 30 and the motherboard component 50 to supply electrical energy. The motherboard component 50 controls the operation of the electrical component 30.

[0040] In some embodiments, the charging assembly 41 may be installed on the top surface of the canopy 20, and may include a solar panel 411 and a light-transmitting cover 412 covering the solar panel 411 (see reference). Figure 6 The solar panel 411 in the charging assembly 41 converts solar energy into electrical energy and stores it in the battery assembly 42, so that the battery assembly 42 can provide a continuous power supply for the operation of the electrical assembly 30. The light-transmitting cover 412 may be arched, which allows sunlight to reach the solar panel better and prevents rainwater from entering and damaging the solar panel 411. The light-transmitting cover 412 can also guide rainwater to both sides of the canopy 20, preventing rainwater from accumulating in the light-transmitting cover 412 and allowing rainwater to better wash away dust on the surface of the light-transmitting cover 412. The light-transmitting cover 412 may be made of transparent materials such as acrylic. The main board assembly 50 is electrically connected to the electrical assembly 30 and the power supply assembly 40 respectively, and is used to control the operation of the electrical assembly 30.

[0041] For example Figure 2 As shown, in some embodiments, the bin 10 can be generally rectangular in shape, and can be installed in outdoor public places such as roadsides and squares to facilitate users' garbage disposal and ensure that the environment remains clean and tidy. The shape of the garbage bin is adapted to the shape of the first receiving cavity 110 of the bin 10. For example, in Figure 1 In the illustrated embodiment, the container 10, the first receiving cavity 110, and the trash can are all generally rectangular box-shaped. Of course, in other embodiments, the container 10 can also be circular, elliptical, polygonal, or irregular in shape. The first receiving cavity 110 and the trash can can correspond to the shape of the container 10, or they can have different shapes. The shape of the first receiving cavity 110 corresponds to the shape of the trash can.

[0042] refer to Figure 6In some embodiments, the charging assembly 41 may include a first mounting box 413 with an opening at the top. The first mounting box 413 is mounted on the top surface of the roof 20, and the solar panel 411 is disposed in the first mounting box 413. A light-transmitting cover 412 covers the opening of the first mounting box 413. The first mounting box 413 is fixed to the top of the roof 20 by a first mounting structure 4135, which consists of multiple gaskets welded to the roof 20. The gaskets are distributed around the first mounting box 413, and the first mounting box 413 is fixed to the gaskets by bolts. A second mounting structure 4136 is also provided inside the first mounting box 413. The second mounting structure 4136 fixes the solar panel 411 inside the first mounting box 413, while the light-transmitting cover 412 covers the opening of the first mounting box 413 and is fixed to the gaskets of the first mounting structure 4135.

[0043] In some embodiments, the light-transmitting cover 412 may be U-shaped (i.e., with a U-shaped cross-section), and may include a C-shaped light-transmitting plate 4121 and a first mounting plate 4122 and a second mounting plate 4123 respectively mounted on the two long sides of the light-transmitting plate 4121. The C-shaped structure of the light-transmitting plate 4121 guides rainwater falling on its surface to both sides, preventing rainwater from seeping into the solar panel 411 and damaging the circuitry. It is understood that the light-transmitting cover 412 is not limited to a U-shape; it may also have a spherical arched structure.

[0044] See also Figure 6 and Figure 7 In some embodiments, the first mounting box 413 may include a base plate 4131 mounted on the top surface of the ceiling 20, two baffles 4132 respectively disposed on two opposite sides of the base plate 4131, and a first arc-shaped plate 4133 and a second arc-shaped plate 4134 disposed on the other two opposite sides of the base plate 4131. The first mounting plate 4122 and the second mounting plate 4123 of the light-transmitting cover 412 are respectively sealed and connected to the two baffles 4132, and the first arc-shaped plate 4133 and the second arc-shaped plate 4134 are respectively sealed and connected to the two ends of the light-transmitting plate 4121. The shape and size of the first arc-shaped plate 4133 and the second arc-shaped plate 4134 are adapted to the shape and size of the two ends of the light-transmitting plate 4121 so that a good fit is formed when the light-transmitting cover 412 covers the first mounting box 413.

[0045] In some embodiments, the electrical component 30 is modular to reduce electrical wiring within the intelligent recycling device and improve assembly efficiency. Furthermore, the modular design of the electrical component 30 facilitates its replacement and maintenance.

[0046] like Figure 5 and Figure 7As shown, in some embodiments, the electrical component 30 may include a mounting plate 31 installed on the underside of the ceiling 20, and a control switch 32, a first aerosol solid fire extinguishing component 33, a ranging component 34, and a lighting component 35 integrated on the mounting plate 31. The first aerosol solid fire extinguishing component 33, the ranging component 34, and the lighting component 35 are also electrically connected to the main board component 50 and the battery component 42, respectively, to realize their respective functions under the control of the main board component 50. By integrating the first aerosol solid fire extinguishing component 33, the ranging component 34, and the lighting component 35, the electrical component 30 enables the intelligent recycling device to simultaneously possess multiple functions such as fire extinguishing, overflow detection, and nighttime illumination. It is understood that the intelligent recycling device is not limited to having these functions; some functions may be reduced or added as needed.

[0047] For example Figure 7 As shown, the mounting plate 31 is Z-shaped in some embodiments, including a horizontally arranged first mounting part 311, a second mounting part 312 arranged horizontally below the first mounting part 311, and a vertically arranged connecting part 313. The connecting part 313 connects the first mounting part 311 and the second mounting part 312. The mounting plate 31 can be formed by integrally bending a metal plate.

[0048] like Figure 11 As shown, the free end of the first mounting part 311 is mounted on the lower side of the ceiling 20, and the free end of the second mounting part 312 is mounted on the upper edge of the housing 10. The housing 10 includes a housing body 11 and a pair of support arms 13 mounted on opposite sides of the housing body 11 (see reference). Figure 9 The first mounting part 311 is mounted on the support arm 13. A reinforcing rib 21 is mounted on the lower side of the aforementioned canopy 20, and the second mounting part 312 is mounted on the lower side of the reinforcing rib 21 (see reference). Figure 4 The control switch 32, the first aerosol solid fire extinguishing component 33, and the ranging component 34 are respectively installed on the lower surface of the first mounting part 311; the lamp 351 is installed on the upper surface of the second mounting part 312, wherein the lamp 351 and the ranging component 34 correspond to the trash can in the first receiving cavity 110; the lamp 351 corresponds to the first dispensing port 111 formed between the box body 11 and the support arm 13.

[0049] Refer again Figure 7 The lamp 351 includes a lampshade 3511 mounted on the upper surface of the second mounting part 312 and a lamp plate 3512 mounted inside the lampshade 3511. The second mounting part 312 is provided with a light-transmitting window 3121 corresponding to the lamp plate 3512, so that the light source can be emitted through the light-transmitting window 3121 to illuminate the first projection port 111.

[0050] For example Figure 2 and Figure 3As shown, the lighting assembly 35 also includes a lamp 351 and a human body sensor 352, which are electrically connected to the main board assembly 50. The lamp 351 illuminates the first disposal port 111 when powered on, and can be kept off at night under the control of the main board assembly 50. The human body sensor 352 senses the approach of a user at night and transmits a sensing signal to the main board assembly 50 when the user approaches, causing the main board assembly 50 to control the lamp 351 to power on and illuminate. The human body sensor 352 serves two purposes: firstly, it illuminates the first disposal port 111 when a user approaches and needs to dispose of trash, facilitating trash disposal; secondly, it keeps the lamp 351 off when no user is nearby, saving energy.

[0051] In some embodiments, the housing 10 has two opposite sides with first dispensing ports 111. Specifically, there is a gap between the upper edge of the opposite sides of the housing 11 and the ceiling 20, forming the two first dispensing ports 111. The human body sensor 352 can be installed on the upper surface of the ceiling 20, and its vertical distance to the two opposite sides of the two first dispensing ports 111 is equivalent (i.e., the human body sensor 352 is located at the center line of the top surface of the ceiling 20). In this way, when a user approaches the housing 10 from either side of the two first dispensing ports 111 at night, the human body sensor 352 can detect a corresponding signal, preventing the problem of uneven sensing signals on both sides due to positional deviation of the human body sensor 352, i.e., the side with weaker signal strength cannot control the lamp 351 to light up, thereby reducing the user experience.

[0052] For example Figure 5 and Figure 7 As shown, in some embodiments, the ranging component 34 includes a ranging mounting bracket 341 mounted on the first mounting part 311 and a ranging probe 342 mounted on the ranging mounting bracket 341. The ranging probe 342 is longitudinally aligned with the opening of the trash can. The ranging probe 342 can be an ultrasonic ranging sensor or a laser ranging sensor, capable of measuring the distance between the trash and the sensor (the overflow status of the trash), thereby obtaining information such as the storage height of items, providing users with a reference for the rational use of the space inside the trash can and the storage status of the trash.

[0053] For example Figure 5 and Figure 7 As shown, the first aerosol solid fire extinguishing component 33 includes an aerosol injector 331 and a temperature detector 332 installed on the aerosol injector 331. When a fire breaks out outside the trash can, the temperature detector 332 detects that the temperature inside the trash can exceeds a predetermined threshold, and will promptly control the aerosol injector 331 to spray fire extinguishing aerosol into the trash can to extinguish the fire.

[0054] See also Figure 5 and Figure 8 In some embodiments, the mainboard assembly 50 may include a second mounting box 51, a protective cover 52, and a mainboard 53. The mainboard 53 is electrically connected to the control switch 32, the lamp 351, the human body sensor 352, the temperature detector 332, the ranging probe 342, and the battery assembly 42, respectively, to form the control core of the intelligent recycling device. The second mounting box 51 can be installed on the underside of the ceiling 20, and the mainboard 53 and the battery assembly 42 can be respectively housed inside the second mounting box 51. The protective cover 52 is placed over the second mounting box 51 and connected to the ceiling 20. The protective cover 52 is fixed to the underside of the ceiling 20 by bolts and protects the second mounting box 51 from rainwater and dust entering the second mounting box 51, thereby protecting the mainboard 53 and the battery assembly 42.

[0055] See also Figure 2 and Figure 9 The housing 10 further defines at least one second receiving cavity 112 for receiving a cigarette butt container. This second receiving cavity 112 is communicatively connected to the first receiving cavity 110, through which the cigarette butt container can be removed. The housing body 11 also has a second dispensing port 113 communicating with the second receiving cavity 112, through which cigarette butts can be placed into the cigarette butt container within the second receiving cavity 112. (See also...) Figure 10 The second receiving cavity 112 (between the inner walls of the two opposite sides of the box body 11) is equipped with a seat 115 for carrying the cigarette butt can. The edge of the seat 115 is provided with a positioning structure 1151 that limits the edge wall of the cigarette butt can, so as to prevent the box body 11 from being impacted or from shaking the cigarette butt can in strong winds.

[0056] In some embodiments, a guide plate 114 is further provided inside the second receiving cavity 112. The guide plate 114 is installed on one side wall of the box body 11 facing the second receiving cavity 112 and extends into the cigarette butt bin. The side of the guide plate 114 near the box body 11 is attached to the lower part of the second dispensing port 113 so that the cigarette butts placed in the second dispensing port 113 fall into the cigarette butt bin along the guide plate 114. The guide plate 114 may also be a guide hopper, a guide box, or other guiding structures.

[0057] Continue to refer to Figure 10In some embodiments, the intelligent recycling device further includes at least one counting component 60 and at least one second aerosol solid fire extinguishing component 80. The counting component 60 is disposed within the second receiving cavity 112 and is electrically connected to the battery assembly 42 and the main board assembly 50, respectively. The counting component 60 is correspondingly positioned to the second dispensing port 113 to accurately count the number of cigarette butts entering the cigarette butt box. In some embodiments, the counting component 60 may also be correspondingly positioned to the open end of the cigarette butt box or to a depth position of the guide plate 114 (where the cigarette butts are on any movement path of the guide plate 114).

[0058] See also Figure 4 and Figure 8 The second aerosol solid fire extinguishing component 80 is located on the lower side of the ceiling 20 and is electrically connected to the battery component 42 and the mainboard component 50, respectively. The second aerosol solid fire extinguishing component 80 can be located directly above the second receiving cavity 112 so that in the event of an accidental fire in the cigarette butt box, fire extinguishing aerosol can be sprayed in time to extinguish the fire.

[0059] like Figure 3 and Figure 5 As shown, in some embodiments, the intelligent recycling device also includes a wireless communication component 70 installed on the top of the canopy 20. The wireless communication component 70 is electrically connected to the battery component 42 and the motherboard component 50, respectively. The wireless communication component 70 transmits the status information and monitoring data of the intelligent recycling device to external monitoring equipment or user terminals in real time. Users can remotely view the status and safety of the items in the temporary storage bin through mobile phones, computers, and other devices, realizing remote monitoring and management of the trash can.

[0060] In some embodiments, the container 10 further includes a door 12 rotatably mounted on the container body 11. The door 12 covers the first receiving cavity 110 to lock the trash can inside the first receiving cavity 110 and prevent outsiders from taking the trash can. The door 12 is rotatably mounted on one side of the first receiving cavity 110 of the container body 11.

[0061] It should be noted that, for those skilled in the art, without departing from the concept of this utility model, the above-mentioned technical features can be freely combined, and several modifications and improvements can be made, all of which fall within the protection scope of this utility model.

Claims

1. An intelligent recycling device, characterized in that, The utility model relates to a garbage can with solar charging and distance measuring and lighting functions, comprising: a box (10) defining at least one first receiving cavity (110) for receiving a garbage can; a ceiling (20) arranged on the top of the box (10); at least one electrical component (30) arranged directly above the first receiving cavity (110), comprising at least one of a first aerosol solid-state fire extinguishing component (33), a distance measuring component (34), and a lighting component (35); a power supply component (40) comprising a charging component (41) and a battery component (42) electrically connected to the charging component (41), the battery component (42) being electrically connected to the electrical component (30); the charging component (41) is mounted on the top surface of the ceiling (20) and comprises a solar panel (411) and an arched light-transmitting cover (412) covering the solar panel (411); and a mainboard component (50) electrically connected to the electrical component (30) and the power supply component (40), respectively.

2. The smart recycling device of claim 1, wherein, The charging component (41) further comprises a first mounting box (413) with an opening at the top, which is mounted on the top surface of the ceiling (20), and the solar panel (411) is mounted in the first mounting box (413), and the light-transmitting cover (412) covers the opening of the first mounting box (413).

3. The smart recycling apparatus of claim 2, wherein, The light-transmitting cover (412) is in the shape of a U and comprises a C-shaped light-transmitting plate (4121) and a first mounting plate (4122) and a second mounting plate (4123) arranged on both long sides of the light-transmitting plate (4121), respectively; the first mounting box (413) comprises a bottom plate (4131) mounted on the top surface of the ceiling (20), two blocking walls (4132) arranged on opposite sides of the bottom plate (4131), respectively, and a first arc-shaped plate (4133) and a second arc-shaped plate (4134) arranged on the other two opposite sides of the bottom plate (4131), respectively; the first mounting plate (4122) and the second mounting plate (4123) are sealingly connected to the two blocking walls (4132), respectively, and the first arc-shaped plate (4133) and the second arc-shaped plate (4134) are sealingly connected to the two opposite ends of the light-transmitting plate (4121), respectively.

4. The smart recycling apparatus of claim 1, wherein, The electrical component (30) is modular and comprises a mounting plate (31) mounted on the lower side of the ceiling (20), a control switch (32), a first aerosol solid-state fire extinguishing component (33), a distance measuring component (34), and a lighting component (35) mounted on the mounting plate (31), and the lighting component (35) comprises a lamp (351); the control switch (32), the first aerosol solid-state fire extinguishing component (33), the distance measuring component (34), and the lamp (351) are electrically connected to the mainboard component (50) and the battery component (42), respectively.

5. The smart recycling apparatus of claim 4, wherein, The mounting plate (31) is Z-shaped, comprising a first mounting part (311) arranged horizontally, a second mounting part (312) arranged horizontally below the first mounting part (311), and a connecting part (313) arranged vertically connecting the first mounting part (311) and the second mounting part (312); the free end of the first mounting part (311) is mounted on the lower side of the ceiling (20), and the free end of the second mounting part (312) is mounted on the upper side edge of the box body (10); the control switch (32), the first aerosol solid fire extinguishing assembly (33), and the distance measuring assembly (34) are respectively mounted on the lower surface of the first mounting part (311), and the lamp (351) is mounted on the upper surface of the second mounting part (312).

6. The smart recycling apparatus of claim 5, wherein, The lamp (351) comprises a lampshade (3511) mounted on the upper surface of the second mounting part (312) and a lamp panel (3512) mounted in the lampshade (3511), and the second mounting part (312) is provided with a light-transmitting window (3121) corresponding to the lamp panel (3512).

7. The smart recycling apparatus of claim 4, wherein, The lighting assembly (35) further comprises a human body sensor (352) mounted on the upper surface of the ceiling (20); the box body (10) is provided with a first dropping port (111) on each of the two opposite sides, and the vertical distance from the human body sensor (352) to the two opposite sides of the first dropping port (111) is equivalent.

8. The smart recycling apparatus of claim 1, wherein, The mainboard assembly (50) comprises a second mounting box (51), a protective cover (52), and a mainboard (53); the second mounting box (51) is mounted on the lower side of the ceiling (20), and the mainboard (53) and the battery assembly (42) are respectively arranged in the second mounting box (51); the protective cover (52) is arranged on the second mounting box (51) and connected with the ceiling (20).

9. The smart recycling apparatus of claim 1, wherein, The box body (10) further defines at least one second receiving cavity (112) for receiving a cigarette butt barrel; the intelligent recycling device further comprises at least one counting assembly (60) and at least one second aerosol solid fire extinguishing assembly (80); the counting assembly (60) is arranged in the second receiving cavity (112), and the counting assembly (60) is electrically connected with the battery assembly (42) and the mainboard assembly (50) respectively; the second aerosol solid fire extinguishing assembly (80) is arranged on the lower side of the ceiling (20) and electrically connected with the battery assembly (42) and the mainboard assembly (50) respectively and located directly above the second receiving cavity (112).

10. The smart recycling apparatus of claim 1, wherein, The intelligent recycling device further comprises a wireless communication assembly (70) mounted on the top of the ceiling (20), and the wireless communication assembly (70) is electrically connected with the battery assembly (42) and the mainboard assembly (50) respectively.