Outdoor device
By setting up identification modules and control components in outdoor equipment, the output power of the circuit board can be identified and adjusted, solving the compatibility problem of different functional components, realizing flexible switching of power consumption and speed, and improving the applicability and safety of the equipment.
Patent Information
- Application Number
- PCT/CN2025/084878
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2025-03-19
- Filing Date
- 2025-03-26
- Publication Date
- 2026-02-05
AI Technical Summary
Existing outdoor equipment cannot switch between different power consumption levels and speeds for different functional components, nor can it adjust the current or voltage input to the accessories, resulting in poor adaptability.
By setting an identification module on the circuit board, the type of functional component is identified and identity information is generated. The circuit board outputs different power consumption according to the identity information, and the current or voltage is adjusted step by step through the control component to achieve adaptation to different functional components.
It improves the compatibility of different functional components, enhances the user experience, and ensures the normal operation and safety of functional components under different power consumption conditions.
Smart Images

Figure CN2025084878_05022026_PF_FP_ABST
Abstract
Description
Outdoor equipment Technical Field
[0001] This application relates to the field of outdoor products technology, and more specifically, to an outdoor device. Background Technology
[0002] There is currently a type of lamp with a battery as its main body, on which various detachable accessories with different functions can be attached to meet people's usage needs in different scenarios. However, this type of existing technology often cannot switch between different power consumption and levels for different accessories, thus it cannot adjust the current or voltage input to the accessories, so it urgently needs improvement. Summary of the Invention
[0003] Therefore, it is necessary to provide an outdoor device to address the aforementioned problems, namely the inability to switch between different power consumption levels and speeds for different functional components and the inability to adjust the current or voltage input to the accessories. Compared with the prior art, this application provides an outdoor device that, with the aid of an identification module, can identify the type of the functional component and generate identity information when the circuit board and the functional component are coupled through the mounting part. The identification module sends this information to the circuit board, and the circuit board outputs different power consumption levels to the functional component based on the identity information, thereby achieving different output power for different functional components and improving the adaptability of the functional components. Furthermore, the control unit allows the user to adjust the power consumption of the input functional component in stages. The power consumption increases or decreases at each stage under different identity information, or at least one stage corresponds to a different output power under different identity information. This allows the control unit to use a speed appropriate for the function component when replacing it. Attached Figure Description
[0004] To more clearly illustrate the solutions in this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this application. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0005] Figure 1 is an exploded view of the handheld host in one embodiment of this application;
[0006] Figure 2 is a schematic diagram of the overall structure of the handheld host in one embodiment of this application;
[0007] Figure 3 is a structural diagram showing the separation of the air pump from the handheld main unit when the functional component is an air pump;
[0008] Figure 4 is a schematic diagram of the structure after the functional component is a hand warmer shell and assembled with the handheld host;
[0009] Figure 5 is a schematic diagram of the structure after assembly with the handheld host when the functional component is a charging dock;
[0010] Figure 6 is a schematic diagram of the structure after assembly with the handheld host when the functional component is a high-speed fan;
[0011] Figure 7 is a schematic diagram of the structure after assembly with the handheld host when the functional component is an ignition device;
[0012] Figure 8 is a schematic diagram of the structure after assembly with the handheld host when the functional component is an alarm;
[0013] Figure 9 is a schematic diagram of the handheld shell after it has been separated from the handheld host;
[0014] Figure 10 is a schematic diagram of the overall structure of the plug in one embodiment of this application;
[0015] Figure 11 is an exploded view of the socket in one embodiment of this application;
[0016] Figure 12 is an enlarged structural diagram of part A in Figure 11;
[0017] Figure 13 is a schematic diagram of the structure of the locking component after assembly in one embodiment of this application;
[0018] Figure 14 is a schematic diagram of the assembled structure of the base and frame in this application;
[0019] Figure 15 is a schematic diagram of the structure of the push button in one embodiment of this application;
[0020] Figure 16 is a schematic diagram of the structure of the locking component after disassembly in one embodiment of this application;
[0021] Figure 17 is a schematic diagram of the frame structure in one embodiment of this application;
[0022] Figure 18 is a schematic diagram of the structure of the seat in one embodiment of this application;
[0023] Figure 19 is a schematic diagram of the exploded structure of a plug in one embodiment of this application;
[0024] Figure 20 is a schematic diagram of the connection structure between the functional component (alarm) and the adapter and plug.
[0025] Figure 21 is a partial exploded structure diagram of Figure 20;
[0026] Figure 22 is a schematic diagram of the overall structure of the adapter in one embodiment of this application;
[0027] Figure 23 is a structural schematic diagram of Figure 20 from another perspective;
[0028] Figure 24 is a structural schematic diagram from another perspective of Figure 20;
[0029] Figure 25 is an enlarged structural diagram of part B in Figure 24;
[0030] Figure 26 is a structural schematic diagram of Figure 21 from another perspective;
[0031] Figure 27 is a cross-sectional view of the press cover in one embodiment of this application;
[0032] Figure 28 is a schematic diagram of the structure of an ignition device in one embodiment of this application;
[0033] Figure 29 is a schematic diagram of the main body in one embodiment of this application;
[0034] Figure 30 is a schematic diagram of the pressing part in one embodiment of this application;
[0035] Figure 31 is a schematic diagram of the exploded structure of Figure 28;
[0036] Figure 32 is a structural schematic diagram of Figure 31 from another perspective;
[0037] Figure 33 is a schematic diagram of the structure of the upper outer shell in Figure 28 after disassembly;
[0038] Figure 34 is a schematic diagram of the assembled structure of the outer shell and the lamp panel in one embodiment of this application;
[0039] Figure 35 is a cross-sectional view of a lighting device according to an embodiment of this application;
[0040] Figure 36 is an exploded structural diagram of a lighting device in one embodiment of this application;
[0041] Figure 37 is an enlarged structural diagram of part C in Figure 34;
[0042] Figure 38 is a structural schematic diagram of the outer shell in Figure 36 from another perspective;
[0043] Figure 39 is an enlarged structural diagram of part D in Figure 36;
[0044] Figure 40 is an enlarged structural diagram of part E in Figure 35;
[0045] Figure 41 is a structural schematic diagram of the shell in Figure 36 from another perspective. Detailed Implementation
[0046] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs; the terminology used herein in the specification of the application is for the purpose of describing particular embodiments only and is not intended to be limiting of the application; the terms "comprising" and "having," and any variations thereof, in the specification, claims, and foregoing drawings of this application are intended to cover non-exclusive inclusion. The terms "first," "second," etc., in the specification, claims, or foregoing drawings of this application are used to distinguish different objects, not to describe a particular order.
[0047] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this application. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments. Example 1
[0048] Please refer to Figures 1 to 3. The outdoor device 1000 includes a handheld host 100 and functional components 200. The handheld host 100 contains a circuit board 110 and a power supply 120 that couples the circuit board 110. The handheld host 100 also has a mounting part 100a for detachable assembly and disassembly of the functional components 200. The mounting part 100a can mount one or multiple functional components 200 simultaneously. In this embodiment, it is described with one functional component 200 mounted on the mounting part 100a. Specifically, the handheld host 100 includes a handheld housing 130. The circuit board 110 and the power supply 120 are both mounted inside the handheld housing 130. The mounting part 100a is located at the end of the handheld housing 130 and coupled to the circuit board 110. There are multiple functional components 200, each with different functions. The functional components 200 are coupled to the circuit board 110 through the mounting part 100a so that the circuit board 110 can supply power and control the functional components 200.
[0049] A recognition module 111 is coupled to the circuit board 110. When the circuit board 110 and the functional component 200 are coupled through the mounting part 100a, the recognition module 111 can identify the type of the functional component 200 and generate identity information based on the type of the functional component 200, which is then sent to the circuit board 110. The circuit board 110 recognizes the identity information and calls the corresponding output power to supply power to the functional component 200. Specifically, the circuit board 110 is coupled with a storage module (not shown). The storage module stores multiple output strategies corresponding to different identity information. After receiving the identified identity information, the circuit board 110 matches it with the stored output strategies. After matching, it calls the output strategy corresponding to the identity information to output power to the functional component 200. This ensures that functional components 200 with different power requirements can operate normally. For example, it can prevent the speed of a high-speed fan from being too low due to the input current or voltage being too small compared to its actual demand, and it can also prevent the temperature of a hand warmer from being too high due to excessive input current or voltage. This improves the adaptability of functional components 200 with different power requirements and enhances the user experience.
[0050] A control component 140 is coupled to the circuit board 110. The part of the control component 140 that is pressed by the user is exposed outside the handheld housing 130 of the handheld host 100. The control component 140 allows the user to adjust the output power of the circuit board 110 to the functional component 200 step by step. The output power increases or decreases at each level under different identity information, or the output power corresponding to at least one level is different under different identity information.
[0051] Specifically, the control element 140 comprises multiple buttons coupled to the circuit board 110, including a gear adjustment button 141 and a power switch button 142. The gear adjustment button 141 is pressed by the user, causing the circuit board 110 to adjust the current or voltage input to the functional component 200 via the mounting portion 100a. The power switch button 142, when pressed by the user, allows the circuit board 110 to control the on / off state of the functional component 200. In this embodiment, the gear adjustment button 141 only supports incrementally increasing output power to the functional component 200. When the maximum output power is reached, pressing the gear adjustment button 141 again will either stop the operation of the functional component 200 or maintain the maximum output power.
[0052] Furthermore, the control unit 140 is equipped with a power indicator light (not shown). A long press of the power switch button 142 allows the power indicator light to display the remaining power of the power supply 120. In this embodiment, the display method is as follows: five LEDs are set. The more LEDs that are lit, the more power is available. When fully charged, all five LEDs are lit. When the power is low (less than 5%), only one LED flashes, and the others are off. In other embodiments, only one LED can be used. Different colors of this LED indicate different power levels of the power supply 120. For example, a green LED represents 70% or more power, a yellow LED represents 21%-69% power, and a red LED represents 20% or less power. It should be added that multiple LEDs can also serve as gear indicator lights. When the gear adjustment button 141 is adjusted to different gears, the corresponding LED will light up.
[0053] Further, referring to Figures 2 and 3, the mounting part 100a is a groove 131 formed on the upper part of the handheld casing. The functional component 200 is provided with a protrusion 201 that can be inserted into the groove 131. A positioning element (not shown) that is detachable from the side of the protrusion 201 and the side wall of the groove 131 is provided. The positioning element can be a magnetic block, a hook, or a threaded connection. A conductive pin 132 is provided on the bottom wall of the groove 131. A conductive hole 202 for inserting the conductive pin 132 is provided on the bottom surface of the protrusion 201. When the protrusion 201 on the functional component 200 is inserted into the groove 131, the conductive pin 132 is also inserted into the conductive hole 202. At this time, the functional component 200 is coupled to the circuit board 110 through the mounting part 100a. The circuit board 110 can then send the power supply 120 in the power supply 120 into the functional component 200. The positioning element can also be provided on the outer wall of the handheld housing 130. In this case, the functional element 200 is partially attached to the outer wall of the handheld housing 130, and the inner wall of the part of the functional element 200 that is attached is also provided with a positioning element. The two positioning elements cooperate to realize the detachable assembly of the handheld housing 130 and the functional element 200.
[0054] There are many types of functional components 200 mentioned above. The following sections will describe each functional component 200 as follows: air pump, hand warmer shell, charging base, high-speed fan, ignition device, and alarm. Details are as follows:
[0055] Please refer to Figure 3. Functional component 200 is an air pump. The air pump has multiple buttons 203, one of which controls the pump's on / off state. Other buttons 203 can switch the air pump's inflation modes. Specifically, the air pump's inflation modes include: bicycle tire inflation mode, car inflation mode, balloon inflation mode, and truck inflation mode, etc. The single inflation time or the airflow speed varies depending on the inflation mode. Please refer to Figure 4. Functional component 200 is a hand warmer shell, which is fitted onto the handheld shell 130. The hand warmer shell and the handheld shell 130 are fitted together with a gap, and a positioning element is provided between them to prevent the assembled hand warmer shell from shaking relative to the handheld shell 130. The user presses the control on the handheld shell 130. 140, capable of controlling the temperature of the hand warmer shell or controlling the opening and closing of the hand warmer shell; see Figure 5, functional component 200 is a charging base, the bottom of the charging base is detachably assembled with the mounting part 100a, the charging base after being installed with the mounting part 100a can draw power from the power supply 120, the top of the charging base is provided with multiple charging interfaces of different specifications, the charging interfaces can charge external electronic devices through the power supply 120; see Figure 6, functional component 200 is a high-speed fan, the high-speed fan is also provided with a button 203, the button 203 is for the user to press, after pressing can switch the use mode of the high-speed fan, at least two use modes are set, and the wind speed in one use mode is greater than the wind speed in the other use mode, thus increasing the adjustable wind speed range of the high-speed fan. Specifically, the high-speed fan has two modes: a low-speed mode and a high-speed mode. In either mode, the user can adjust the fan speed using the speed adjustment button 141. Referring to Figure 7, the functional component 200 is an ignition device. Pressing the button 203 on the ignition device turns the igniter on and off. Referring to Figure 8, the functional component 200 is an alarm. The alarm includes an ultrasonic generator to repel nearby creatures sensitive to ultrasonic waves, and an infrared sensor alarm to emit a buzzing sound and flashing light to repel any approaching creature. It can also serve as a warning signal to the user of nearby creatures. The alarm module has multiple buttons 203. One button 203 can reset the alarm module when it is emitting a buzzing sound and flashing light. Other buttons 203 can control the ultrasonic generator and infrared sensor alarm on the alarm module to be turned on or off simultaneously.
[0056] Based on the above-mentioned functional components 200 with built-in buttons 203, the functional components 200 can also be divided into first functional components 200 and second functional components 200. The first functional component 200 has at least two sets of identity information and can switch the identity information through the button 203 on itself, so that outdoor equipment can call different output power to power the first functional component 200. The second functional component 200 has only one set of identity information and can switch its own mode or control its own power supply 120 switch through the button 203 on itself.
[0057] Specifically, the first functional component 200 is the high-speed fan mentioned above. The high-speed fan has two sets of identity information, corresponding to high-speed mode and low-speed mode respectively. By pressing the button 203 on the high-speed fan, the identity information on the high-speed fan can be switched, that is, the resistance value or NFC tag that can be identified by the identification module 111 can be changed. The second functional component 200 is the igniter, air pump or alarm mentioned above. By pressing the button 203 on the igniter, only the igniter can be started to work, or by pressing the button 203 on the air pump and alarm, only the built-in mode or switch of the air pump and alarm can be switched.
[0058] Specifically, the gear adjustment button 141 allows the user to adjust the output power of the circuit board 110 to the functional component 200 step by step. Under different identity information, the output power of each step of the gear adjustment button is different. For example, under some identity information, the adjustable output power of the gear adjustment button 141 is 1W, 2W, 3W, 4W, and 5W, while under other identity information, the adjustable output power of the gear adjustment button 141 is 1W, 3W, 5W, 7W, and 9W. That is, the output power step value is different under different identity information.
[0059] It should be added that, under different identity information, at least one level of output power may be different. For example, under some identity information, the adjustable output power of the gear adjustment button 141 is 1W, 2W, 3W, 4W, and 5W, while under other identity information, the adjustable output power of the gear adjustment button 141 is 3W, 4W, 5W, 6W, and 7W. That is, under two different identity information, although some adjustable output power of the gear adjustment button 141 is the same or overlaps, there are still some different adjustable output power.
[0060] Furthermore, the identification module 111 can be used to identify the resistance information of the functional component 200, i.e., the identity information, and the identification object of the identification module 111 in this case is the resistance of the functional component 200; or the identification module 111 can be used to identify the electronic tag information of the functional component 200, which can also be the identity information, and the identification object of the identification module 111 in this case is the NFC tag on the functional component 200.
[0061] The aforementioned identification module 111 can be a microcontroller, MCU chip, or other component capable of identifying the resistance or electronic tag information of the functional component 200. The microcontroller has multiple different preset resistance values or multiple different preset electronic tag information pre-loaded into it. The multiple different preset resistance values correspond to multiple different functional components 200, and the multiple different preset electronic tag information corresponds to multiple different functional components 200. The electronic tag information can be the name of the functional component 200, the resistance value of the functional component 200, or other information that can identify the type of the functional component 200.
[0062] When the functional component 200 is identified by resistance, the functional component 200 is installed in the mounting section 100a. The microcontroller is electrically connected to the functional component 200. The microcontroller compares the current resistance value of the functional component 200 with multiple preset resistance values until a match is found. Then, it calls the output power corresponding to that resistance value to power the functional component 200. For example, if four different preset resistance values are pre-entered, corresponding to a hand warmer shell, a charging base, an igniter, and an air pump, and the current functional component 200 is a charging base, the microcontroller compares the current resistance value of the charging base with the four preset resistance values until a match is found. Then, it calls the output power of the corresponding charging base to power the charging base. Similarly, when the functional component 200 is identified through electronic tag information, the functional component 200 is installed in the mounting section 100a. The microcontroller is electrically connected to the functional component 200. The microcontroller compares the electronic tag information of the current functional component 200 with multiple preset electronic tag information until a match is found. Then, it calls the output power corresponding to the electronic tag information to power the current functional component 200. For example, if four different electronic tag information are pre-entered, corresponding to the names of a hand warmer shell, charging base, igniter, and air pump, and the current functional component 200 is a hand warmer shell, the microcontroller compares the name of the current hand warmer shell with the four preset names until a match is found. Then, it calls the output power corresponding to the hand warmer shell to power the hand warmer shell.
[0063] Please refer to Figure 1. The lower part of the handheld host 100 is provided with a light-emitting part 150. The light-emitting part 150 includes a lamp holder 151, a light source 152, and a lamp cover 153. The lamp holder 151 is assembled with the inner wall of the handheld housing 130 to fix the lamp holder 151. The light source 152 is provided on the lamp holder 151 and is coupled to the circuit board 110 so that the user can control the light source 152 to turn on and off through the control component 140. The lamp holder 151 is hollow and has a ring of inclined surfaces at the bottom. The diameter of the inclined surfaces increases gradually from top to bottom. The light source 152 is an LED light 1521. Multiple LED lights 1521 are provided and are evenly arranged around the outer surface of the inclined surfaces.
[0064] To enhance the assembly stability of the handheld main unit 100 and the functional component 200, please refer to Figures 8 and 9. The outdoor device 1000 also includes a socket 300, a plug 400, and a locking assembly 500. The mounting part 100a is the socket 300, and the plug 400 is disposed on the functional component 200. The socket 300 has a slot 301, which is engaged with the plug 400. Furthermore, the electrical connection portion of the socket 300 and the electrical connection portion of the plug 400 can come into contact when the socket 300 and the plug 400 are engaged, thereby realizing the electrical connection between the socket 300 and the plug 400.
[0065] Please refer to Figure 10. The outer peripheral wall of the plug 400 is provided with a locking groove 401. The locking groove 401 has many shapes, including cylindrical, prismatic, and other shapes. The shape of the locking groove 401 is adapted to the shape of the reaction end 512 of the locking member 510, which will be described below. The locking assembly 500 includes a locking member 510 and a resilient reset member 520. The locking member 510 is movably mounted on the socket 300. The resilient reset member 520 is mounted on the socket 300 and acts on the locking member 510. The locking member 510 has an unlocked position where it is released from the locking groove 401 by an external force and a locked position where it engages with the locking groove 401 by the resilient reset member 520 after the external force is removed.
[0066] The outer peripheral wall of the plug 400 has locking grooves 401 on both sides facing each other. The locking components 500 are provided in two sets. The two locking pieces 510 in the two sets of locking components 500 can cooperate with the two locking grooves 401 or release the constraint to realize locking or unlocking, thereby improving the stability of the plug 400 and socket 300 plug-in connection.
[0067] Through the above technical solution, when assembling the handheld host 100 and the functional component 200, firstly, an external force is applied to the locking member 510 to put it in the unlocked position, while simultaneously causing the elastic reset member 520 to undergo elastic deformation. Secondly, the plug 400 is inserted into the socket 300. Finally, the external force applied to the locking member 510 is removed, causing the locking member 510 to engage with the locking groove 401 under the drive of the elastic reset member 520's own rebound force, thus placing it in the locked position. This locks the plug 400 and the socket 300, completing the assembly of the handheld host 100 and the functional component. Assembly of 200: When disassembling the handheld host 100 and the functional component 200, firstly, an external force is applied to the locking member 510 to make the locking member 510 be in the unlocked position. The locking member 510 is released from the lock groove 401, which can unlock the plug 400 and the socket 300. Secondly, the plug 400 is pulled out of the socket 300, which completes the disassembly of the handheld host 100 and the functional component 200. This setting can not only enhance the assembly stability of the handheld host 100 and the functional component 200, but also make the disassembly and assembly of the handheld host 100 and the functional component 200 convenient.
[0068] It should be noted that since the locking element 510 is movably installed in the socket 300, the locking element 510 can move relative to the socket 300 in various ways. The locking element 510 can move linearly relative to the socket 300, or it can swing back and forth relative to the socket 300; no specific limitation is made here. Furthermore, regardless of whether the locking element 510 moves linearly, swings back and forth, or moves in any other way relative to the socket 300, it is only necessary to ensure that the unlocked position and the locked position of the locking element 510 do not coincide.
[0069] Referring to Figures 11 to 13, the locking member 510 is configured to rotate relative to the socket 300. Specifically, the locking member 510 has a force-receiving end 511 and a reaction end 512 arranged opposite to each other. The force-receiving end 511 is exposed from the socket 300, and the reaction end 512 is located inside the socket 300. The locking member 510 is rotatably connected to the socket 300 at a position between the force-receiving end 511 and the reaction end 512. The position where the elastic reset member 520 acts on the locking member 510 is spaced apart from the position where the locking member 510 is rotatably connected to the socket 300. When the locking member 510 is in the unlocked position, the reaction end 512 is released from the constraint of the locking groove 401. When the locking member 510 is in the locked position, the reaction end 512 engages with the locking groove 401. With this configuration, by pressing or releasing the force end 511, the locking member 510 can be rotated clockwise or counterclockwise relative to the socket 300, thereby releasing the constraint or engaging with the locking groove 401, and thus placing the locking member 510 in the unlocked or locked position, which facilitates the control of the locking member 510 in the unlocked or locked position.
[0070] Preferably, the distance between the force-receiving end 511 and the position where the locking member 510 is rotatably connected is less than the distance between the reaction end 512 and the position where the locking member 510 is rotatably connected. This arrangement causes one side of the force-receiving end 511 of the locking member 510 to form a power arm, and the other side of the reaction end 512 of the locking member 510 to form a resistance arm. The length of the power arm is less than the length of the resistance arm, forming a lever that requires a greater force to rotate the locking member 510, thus preventing the locking member 510 from rotating due to accidental contact with the force-receiving end 511. In other embodiments, the distance between the force-receiving end 511 and the position where the locking member 510 is rotatably connected can also be greater than or equal to the distance between the reaction end 512 and the position where the locking member 510 is rotatably connected.
[0071] Please refer to Figures 11 to 13. The reaction end 512 is provided with a guide surface 5121. The guide surface 5121 is inclined outward in the direction from the bottom to the opening of the slot 301. With this configuration, when the plug 400 is inserted into the socket 300, the plug 400 is first inserted into the slot 301 from the opening until the edge of the end face of the plug 400 abuts against the guide surface 5121. Then, the plug 400 is pressed further so that the edge of the end face of the plug 400 follows the guide surface. 5121 slides, simultaneously driving the reaction end 512 to rotate away from the slot 301, causing the elastic reset member 520 to undergo elastic deformation until the plug 400 is fully inserted into the slot 301. At the same time, the reaction end 512 rotates towards the slot 301 under the drive of the elastic reset member 520's own rebound force until it engages with the locking groove 401. Thus, without having to rotate the reaction end 512 of the locking member 510 out of the slot 301 beforehand, the plug 400 and the socket 300 can be plugged in and engaged.
[0072] Please refer to Figures 11 to 14. The inner peripheral wall of the slot 301 is provided with a mounting cavity 302. The cavity wall of the mounting cavity 302 extends to the outer peripheral wall of the socket 300 to form an operation window 303. The locking member 510 and the elastic reset member 520 are both installed in the mounting cavity 302. The reaction end 512 of the locking member 510 is located in the slot 301, and the force-receiving end 511 of the locking member 510 is exposed from the operation window 303. In this way, the locking member 510 and the elastic reset member 520 can be integrated into the socket 300.
[0073] Please refer to Figures 9, 13, and 14. The cavity wall of the mounting cavity 302 extends through to the outer peripheral wall of the socket 300, forming a clearance opening 304. The socket 300 is fitted with a handheld housing 130. The elastic reset member 520 is confined between the reactive end 512 and the housing. The reactive end 512 of the locking member 510 is provided with a mounting post 513. The elastic reset member 520 is a spring, with one end of the spring sleeved with the mounting post 513 and the other end abutting against the inner peripheral wall of the handheld housing 130, making it easy to install and remove the elastic reset member 520. When the locking member 510 is driven to the unlocked position by an external force, the spring is compressed; when the external force is removed, the spring drives the locking member 510 to rotate to the locked position under its own rebound force. In this embodiment, a part of the handheld housing 130 is fitted outside the socket 300, and another part is fitted at other positions of the handheld host 100.
[0074] Please refer to Figures 9, 13, and 14. The handheld housing 130 is provided with an assembly port 133 communicating with the operation window 303. The locking assembly 500 also includes a push button 530 that is limited between the handheld housing 130 and the force-bearing end 511 of the locking member 510 and exposed from the assembly port 133. Pressing the push button 530 can press the force-bearing end 511 of the locking member 510, making it convenient for the user to press the force-bearing end 511 of the locking member 510. Preferably, please refer to Figures 9, 13, and 14. The mounting cavity 302 is provided with retaining strips 305 on both walls in the direction from the bottom of the slot 301 to the opening of the slot. The retaining strips 305 extend from the operation window 303 to the mounting cavity 302. The push button 530 is provided with retaining slots 531 on both sides in the direction from the bottom of the slot 301 to the opening of the slot. Each retaining slot 531 is slidably engaged with the corresponding retaining strip 305, making it convenient to press the button 203.
[0075] Please refer to Figures 13 to 15. A stop piece 532 is provided in the middle of the side of the button 530 near the slot of the slot 301. The outer peripheral wall of the socket 300 is provided with a stop groove 306 that communicates with the operation window 303. The depth of the stop groove 306 is greater than the thickness of the stop piece 532. The stop piece 532 is located in the stop groove 306. When the button 203 is pressed until the stop piece 532 abuts against the wall of the stop groove 306 near the slot 301, the locking member 510 can be in the unlocked position. Additionally, please refer to Figure 16. The button 530 is provided with a pressing protrusion 533 in an outwardly convex arc shape. The pressing protrusion 533 abuts against the force receiving end 511. The force receiving end 511 is provided with an inwardly concave arc shape at the position where the pressing protrusion 533 abuts, so that the button 203 and the force receiving end 511 are in close contact, which facilitates the application of external force to the force receiving end 511 by pressing the button 203.
[0076] Please refer to Figures 13, 14, 17, and 18. The socket 300 includes a base 310 and an annular frame 320. The base 310 and the frame 320 are connected and enclosed to form a slot 301, a mounting cavity 302, an operating window 303, and a clearance opening 304. The base 310 and the frame 320 are respectively provided with a first bushing 311 and a second bushing 321, both located in the mounting cavity 302. The locking member 510 has two rotating shafts 514 on its opposite sides. 4. Corresponding to the first bushing 311 and the second bushing 321, the socket 300 is configured as two parts: a base 310 and a frame 320. When installing the locking member 510, first place the locking member 510 in the corresponding position on the base 310, so that one rotating shaft 514 of the locking member 510 engages with the first bushing 311. Then connect the frame 320 to the base 310, so that the other rotating shaft 514 of the locking member 510 engages with the second bushing 321, thus completing the installation of the locking member 510. Please refer to Figures 17 and 18. The surface of the base 310 facing the frame 320 is provided with a guide hole 312 and a threaded hole 313. The surface of the frame 320 facing the base 310 is provided with a guide post 322 that engages with the guide hole 312 and a countersunk hole 323. The countersunk hole 323 and the threaded hole 313 are connected by bolts, thus achieving a detachable connection between the base 310 and the frame 320.
[0077] Please refer to Figures 11 and 19. The socket 300 is embedded with a plurality of first magnets 330, and the plug 400 is embedded with a plurality of second magnets 430. Specifically, the surface of the frame 320 away from the base 310 is embedded with a plurality of first magnets 330 arranged at intervals along its circumference, where "a plurality of" means at least two. The plug 400 includes a plug 400 part that is inserted into the slot 301 and a fixing part 420 connected to the plug 400 part. The outer diameter of the fixing part 420 is larger than the outer diameter of the plug 400 part. The surface of the fixing part 420 near the plug 400 part is embedded with a plurality of second magnets 430 arranged at intervals along its circumference. Each second magnet 430 can be magnetically connected to the corresponding first magnet 330 when the plug 400 part is engaged with the slot 301, which can further enhance the connection strength between the plug 400 and the socket 300. Please refer to Figures 11 and 19. The surface of the frame 320 away from the base 310 is provided with a plurality of first mounting slots 324 arranged at intervals along its circumference. Each first magnet 330 mates with the corresponding first mounting slot 324. The surface of the fixing part 420 near the plug 400 is provided with a plurality of second mounting slots 421 arranged at intervals along its circumference. Each second magnet 430 mates with the corresponding second mounting slot 421. This makes the installation of the first magnet 330 and the second magnet 430 convenient.
[0078] Please refer to Figures 11 and 19. When the plug 400 mates with the slot 301, that is, when the plug 400 mates with the slot 301, at least one of the plurality of first magnets 330 is magnetically connected to the corresponding second magnet 430 via its N pole. The remaining parts of the plurality of first magnets 330 are magnetically connected to the corresponding second magnet 430 via their S poles. This arrangement results in some first magnets 330 having an N pole on one side and others having an S pole on one side, and some second magnets 430 having an N pole on one side and others having an S pole on the other side. Since one side is the S pole, the plug 400 can only be inserted into the slot 301 when each magnetically connected first magnet 330 with one side being the N pole is aligned with its corresponding magnetically connected second magnet 430 with one side being the S pole, and vice versa. Otherwise, if one magnetically connected first magnet 330 with one side being the N pole is aligned with one magnetically connected second magnet 430 with one side being the N pole, a repulsive force will be generated between them, making it impossible to insert the plug 400 into the slot 301. In summary, this application cleverly utilizes the characteristics of opposite magnetic poles attracting and like magnetic poles repelling to provide auxiliary positioning when the plug 400 is inserted into the slot 301.
[0079] In this embodiment, there are four first magnets 330 and four second magnets 430. The side where two adjacent first magnets 330 are magnetically connected is the N pole, and the side where the other two adjacent first magnets 330 are magnetically connected is the S pole. The side where two adjacent second magnets 430 are magnetically connected is the N pole, and the side where the other two adjacent second magnets 430 are magnetically connected is the S pole.
[0080] Please refer to Figures 11 and 19. The surface of the frame 320 away from the base 310 is provided with a first ring 325 surrounding the slot 301. The first ring 325 is covered by a first washer 340 that inherently covers a plurality of first magnets 330. The surface of the fixing part 420 near the plug 400 is provided with a second ring 422 surrounding the plug 400. The second ring 422 is covered by a second washer 440 that inherently covers a plurality of second magnets 430. In this way, by setting the first washer 340 and the second washer 440, it is possible to avoid the first magnet 330 and the second magnet 430 from being directly connected during magnetic connection, which helps to overcome the magnetic attraction between the first magnet 330 and the second magnet 430.
[0081] Please refer to Figures 9, 11 and 19. The outer peripheral wall of the seat 310 is fitted with a first sealing ring 350, which enhances the sealing between the outer peripheral wall of the seat 310 and the inner peripheral wall of the handheld housing 130. The outer peripheral wall of the fixing part 420 is fitted with a second sealing ring 450, which enhances the sealing between the outer peripheral wall of the fixing part 420 and the inner peripheral wall of the corresponding position of the functional component 200.
[0082] Referring to Figure 20, the outdoor device 1000 also includes an adapter 600, which has a mounting end 601 and a docking end 602 perpendicular to the mounting end 601. The mounting end 601 is connected to the housing 210a of the functional component 200, and the docking end 602 is used for detachable docking with the mounting part 100a. Specifically, the housing 210a has a first surface 2101a, the mounting end 601 is disposed on the first surface 2101a, and the docking end 602 is used for detachable docking with the handheld main unit 100. The perpendicularity of the mounting end 601 and the docking end 602 means that the plane containing the mounting end 601 is perpendicular to the plane containing the docking end 602.
[0083] It is worth mentioning that the adapter 600 is a hollow tubular structure with both the mounting end 601 and the docking end 602 being open. This design allows for a detachable connection between the housing 210a and the handheld host 100 via the adapter 600, and also enables the connection of electronic components inside the housing 210a with the components of the docking end 602 via wires, thus achieving an electrical connection.
[0084] Specifically, referring to Figures 20 and 21, the first surface 2101a is provided with a groove 2102a. The bottom of the groove 2102a is provided with a connecting port 2103a that communicates with the interior of the housing 210a. The mounting end 601 is inserted into the groove 2102a. This arrangement facilitates the installation and removal of the mounting end 601. Both the groove 2102a and the mounting end 601 are square in shape. The four corners of the bottom of the groove 2102a are provided with through holes 2104a. The adapter 600 contains four hollow pillars 603, which are positioned near the four corners of the mounting end 601. Each pillar 603 is connected to the corresponding through hole 2104a by bolts, thereby enhancing the fixing strength of the adapter 600.
[0085] Furthermore, referring to Figures 20 and 21, a sealing ring 220a is sandwiched between the mounting end 601 and the bottom of the groove 2102a. The sealing ring 220a extends circumferentially along the inner peripheral wall of the groove 2102a. This arrangement allows the sealing ring 220a to seal the bottom of the groove 2102a, improving the sealing performance of the connection between the mounting end 601 and the groove 2102a. Specifically, the bottom edge of the groove 2102a has a sealing groove 2105a extending circumferentially. The sealing ring 220a mates with the sealing groove 2105a and partially extends out of the sealing groove 2105a into the groove 2102a, thus facilitating the installation of the sealing ring 220a.
[0086] Through the above technical solution, by setting an adapter 600 on the housing 210a of the functional component 200, and detachably connecting the adapter 602 to the handheld host 100, the connection between the housing 210a and the handheld host 100 is indirectly realized. Correspondingly, the adapter 600 can provide corresponding installation space for installing components that are detachably connected to the handheld host 100, thus eliminating the need to set corresponding components on the housing 210a of the functional component 200, thereby facilitating the installation of components that are detachably connected to the handheld host 100.
[0087] Referring to Figure 20, the side of the adapter 600 facing away from the docking end 602 is formed as a control surface 604. The control surface 604 is connected to the first surface 2101a at an obtuse angle. A button 605 is embedded in the control surface 604. The button 605 is electrically connected to the electronic components inside the housing 210a via a wire through the connecting port 2103a. The function 200 can be controlled by pressing the button 203 with the thumb. In this embodiment, the angle between the control surface 604 and the first surface 2101a is 110 degrees. This setting allows the user's thumb to be parallel to the control surface 604 when holding the handheld host 100 with one hand, making it easier for the user to press the button 203 with their thumb.
[0088] Referring to Figure 20, to facilitate the formation of the control surface 604, the adapter 600 includes a first segment 610 and a second segment 620 connected at an obtuse angle. The end of the first segment 610 away from the second segment 620 is formed as a mounting end 601, and the end of the second segment 620 away from the first segment 610 is formed as a mating end 602. The side of the first segment 610 facing away from the mating end 602 forms the control surface 604. With this configuration, the control surface 604 can be directly formed through the structure of the adapter 600 itself, thus facilitating its formation. Furthermore, the angle between the first segment 610 and the second segment 620 is the same as the angle between the control surface 604 and the first surface 2101a, which will not be elaborated further here.
[0089] Referring to Figure 22, two reinforcing ribs 611 are provided between the two inner walls of the first segment 610 and the second segment 620 along the axial direction. The two reinforcing ribs 611 and the inner wall of the first segment 610 form a through-hole 612 communicating with the second segment 620, thus enhancing the structural strength of the adapter 600. Furthermore, both reinforcing ribs 611 extend circumferentially along the second segment 620 and are arranged in an arc shape, allowing the shape of the reinforcing ribs 611 to match the shape of the second segment 620, increasing the connection area between the reinforcing ribs 611 and the inner wall of the first segment 610, thereby further enhancing the support strength of the reinforcing ribs 611 for the first segment 610. Additionally, the sides of the two reinforcing ribs 611 that are far apart are connected to the two inner walls of the first segment 610 that are opposite to each other, which also further enhances the support strength of the reinforcing ribs 611 for the first segment 610.
[0090] Please refer to Figures 20 and 23. Functional component 200 is an alarm. Housing 210a also has a second surface 2106a that is arranged opposite to the first surface 2101a. The first surface 2101a and the second surface 2106a are respectively provided with a first sound output area 21011a and a second sound output area 21061a. The mounting end 601 is located between the first sound output area 21011a and the docking end 602. With this arrangement, on the one hand, the arrangement of the first sound output area 21011a and the second sound output area 21061a can emit an alarm in two different directions by broadcasting sound. On the other hand, with the mounting end 601 located between the first sound output area 21011a and the docking end 602, both the mounting end 601 and the docking end 602 are located below the first sound output area 21011a, thereby making the adapter 600 located below the sound output path of the first sound output area 21011a and not obstructing the sound output of the first sound output area 21011a.
[0091] Specifically, referring to Figures 24 and 25, the first surface 2101a is provided with a plurality of first sound outlet grooves 2107a evenly spaced apart. Each first sound outlet groove 2107a is arranged in an inclined strip shape, and each first sound outlet groove 2107a partially penetrates on the same side in the width direction to form a first sound outlet 2108a communicating with the interior of the housing 210a. The first sound outlet 2108a extends along the length direction of the first sound outlet groove 2107a. The first sound outlet groove 2107a and the first sound outlet 2108a constitute the aforementioned first sound outlet area 21011a. The formation method of the second sound outlet area 21061a is the same as that of the first sound outlet area 21011a, and will not be described in detail here. In other embodiments, a plurality of sound outlet holes may also be directly provided on the first surface 2101a, and the first sound outlet area 21011a may be formed by the plurality of sound outlet holes. Please refer to Figures 20 and 23. The mounting end 601 is located between the first sound output area 21011a and the second sound output area 21061a. With this arrangement, not only can sound be broadcast in different directions through the first sound output area 21011a and the second sound output area 21061a, but the first sound output area 21011a and the second sound output area 21061a are also located at different heights, and thus can sound be broadcast in different directions through the first sound output area 21011a and the second sound output area 21061a.
[0092] Please refer to Figures 20 and 21. The functional component 200 also includes a control circuit board 230a and two speakers 232a, both of which are electrically connected to the control circuit board 230a. The control circuit board 230a is installed inside the housing 210a. One speaker 232a is sandwiched between the control circuit board 230a and the inner wall of the housing 210a near the mounting end 601, with the sound output direction facing the first sound output area 21011a. The other speaker 232a is sandwiched between the two inner walls of the housing 210a in the direction from the mounting end 601 to the housing 210a, with the sound output direction facing the second sound output area 21061a, which makes the installation of the two speakers 232a convenient.
[0093] Please refer to Figures 21 and 26. The housing 210a includes a housing body 211a and a cover 212a. The housing body 211a is provided with a mounting groove 2111a. The cover 212a is detachably connected to the housing body 211a and covers the groove of the mounting groove 2111a. The surface of the cover 212a facing away from the housing body 211a is the first surface 2101a, and the surface of the housing body 211a facing away from the cover 212a is the second surface 2106a. The control circuit board 230a is installed in the mounting groove 2111a, which makes it convenient to disassemble and assemble the circuit board 110 and the speaker 232a.
[0094] Please refer to Figures 21 and 25. The inner peripheral wall of the mounting groove 2111a is provided with a plurality of fasteners 2112a arranged at intervals along its circumference near the groove opening. The inner edge of the cover 212a is provided with a plurality of buckles 2121a arranged at intervals along its circumference. Each buckle 2121a is engaged with the corresponding fastener 2112a.
[0095] Please refer to Figures 21 and 26. The inner side of the cover 212a is provided with a first limiting ring 2122a surrounding the first sound output area 21011a, and the inner side of the cover 212a is also provided with a second limiting ring 2123a. The bottom of the mounting groove 2111a is provided with a third limiting ring 2113a surrounding the second sound output area 21061a. The large end of the first speaker 232a is limited within the first limiting ring 2122a, and the small end of the first speaker 232a abuts against the circuit board 110. The small end of the second speaker 232a is limited within the second limiting ring 2123a, and the large end of the second speaker 232a is limited within the third limiting ring 2113a. This makes it convenient to assemble and disassemble the two speakers 232a.
[0096] Please refer to Figure 26. Two lamp covers 2114a integrally formed with the shell body 211a are provided on the left and right sides of the middle of the second surface 2106a. Two alarm lights 231a are electrically connected to the control circuit board 230a. The two lamp covers 2114a are respectively placed over the two alarm lights 231a, so that the alarm can be triggered by light.
[0097] Furthermore, on the side of the control circuit board 230a facing away from the first sound output area 21011a, there is also an infrared sensor (unmarked) and an ultrasonic generator (unmarked) electrically connected thereto. Please refer to Figures 21 and 26. A through-hole 2109a is formed on the second surface 2106a opposite to the control circuit board 230a. A support platform 21091a extending circumferentially is provided on the inner peripheral wall of the through-hole 2109a. A transparent plate 2115a is fitted into the through-hole 2109a. The transparent plate 2115a abuts against the support platform 21091a. This makes it easy for the position of the second surface 2106a opposite to the infrared sensor to be transparent. The transparent plate 2115a is red transparent, which facilitates the infrared rays emitted by the infrared sensor to pass through the transparent plate 2115a.
[0098] Referring to Figures 27 and 28, the end of the ignition device is formed as a press cover 220b. The press cover 220b includes a main body 221b and a pressing part 222b. The main body 221b is annularly arranged and is used to fix it to the ignition device. The outer peripheral wall of the pressing part 222b is sealed to the inner peripheral wall of the main body 221b. The main body 221b is at least partially elastic so that the pressing part 222b can be pressed when the main body 221b is fixed. The shapes of the inner peripheral wall of the main body 221b, the outer peripheral wall of the main body 221b, and the outer peripheral wall of the pressing part 222b are all circular.
[0099] It is worth mentioning that, since the outer peripheral wall of the pressing part 222b is sealed to the inner peripheral wall of the main body 221b, the pressing part 222b is located inside the main body 221b. Correspondingly, the main body 221b has a certain length in the axial direction, which enables the main body 221b and the pressing part 222b to be highly integrated, which is beneficial to the miniaturization of the pressing cover 220b.
[0100] It should be noted that the body 221b being at least partially elastic means that the body 221b has an annular closed region extending circumferentially thereon. This annular closed region is made of an elastic material and is capable of elastic deformation when the pressing part 222b is pressed. After the pressing of the pressing part 222b is removed, the annular closed region is driven by its own rebound force to return the pressing part 222b to its initial position. By way of example, and not limitation, the annular closed region can be formed from the outer side of the body 221b, or from the inner side of the body 221b, or from the portion of the body 221b located between the outer and inner sides.
[0101] With the above technical solution, when starting or stopping the ignition device, the user presses the pressing part 222b, which causes the main body 221b to undergo elastic deformation until the pressing part 222b presses the switch inside the ignition device. After starting or stopping the ignition device, the user releases the pressing part 222b, and the main body 221b, under its own rebound force, drives the pressing part 222b to reset. This achieves the goal of starting and stopping the ignition device simply by pressing the cover 220b, thus simplifying the structure of the ignition device.
[0102] Please refer to Figure 27. There are many types of the main body 221b. The main body 221b includes a fixed section 2211b and a connecting section 2212b, both arranged in a ring shape. The inner peripheral wall of the fixed section 2211b is connected to the outer peripheral wall of the connecting section 2212b, and the connecting section 2212b is located inside the end of the fixed section 2211b. The inner peripheral wall of the connecting section 2212b is sealed to the outer peripheral wall of the pressing part 222b. The connecting section 2212b is elastic. With this arrangement, when the pressing part 222b is pressed, the connecting section 2212b can also undergo elastic deformation. When the pressing part 222b is released, the pressing part 222b can be driven to reset by the rebound force of the connecting section 2212b itself.
[0103] By way of example, and not limitation, the connecting segment 2212b can be made of other elastic materials such as silicone, rubber, or plastic. In this embodiment, the fixing segment 2211b and the connecting segment 2212b are integrally molded, which enhances the connection strength between them. In other embodiments, the main body 221b can be configured as a flat ring, with the inner side of the ring made of an elastic material, which can also use its own rebound force to drive the pressing part 222b to return to its original position.
[0104] Please refer to Figure 27. In order to facilitate the elastic deformation of the connecting segment 2212b under the action of pressing pressure, the connecting segment 2212b is arranged in a trumpet shape. The end of the connecting segment 2212b with a larger diameter is connected to the inner peripheral wall of the fixed segment 2211b, and the end of the connecting segment 2212b with a smaller diameter is sealed to the outer peripheral wall of the pressing part 222b. This arrangement makes the diameter of the connecting segment 2212b gradually decrease in the direction in which the pressing part 222b is pressed. When the connecting segment 2212b is subjected to pressing pressure, it can generate component forces along the extension directions of the outer and inner peripheral walls of the connecting segment 2212b, thereby facilitating the elastic deformation of the connecting segment 2212b under the action of pressing pressure.
[0105] It is understandable that the sealing connection between the inner peripheral wall of the main body 221b and the outer peripheral wall of the pressing part 222b is the same as the sealing connection between the inner peripheral wall of the connecting section 2212b and the outer peripheral wall of the pressing part 222b. There are many ways to seal the connection between the inner peripheral wall of the connecting section 2212b and the outer peripheral wall of the pressing part 222b; please refer to Figures 27, 29, and 30. The inner peripheral wall of the connecting section 2212b is provided with a snap-fit protrusion 22121b extending circumferentially therein, and the outer peripheral wall of the pressing part 222b is provided with a snap-fit groove 22201b extending circumferentially therein. The snap-fit groove 22201b mates with the snap-fit protrusion 22121b. The snap-fit groove 22201b and the snap-fit protrusion 22121b are interference-fitted. Furthermore, the inner side of the snap-fit protrusion 22121b is provided with a snap-fit interface 22122b, and the snap-fit groove 22201b is provided with a snap-fit protrusion 22202b that mates with the snap-fit interface 22122b. In addition, the inner side of the pressing part 222b is provided with a pressing head 22203b for pressing the switch inside the ignition device.
[0106] Please refer to Figures 31 to 33. The ignition device also includes two detachably connected housings 210b, an ignition cap 230b, and a pressing cap 220b as described above. The ignition cap 230b and the pressing cap 220b are respectively clamped between the first end of the two housings 210b and the second end of the two housings. In this embodiment, each of the four corners of the inner side of one housing 210b is provided with a plug-in tube 2101b, and each of the four corners of the inner side of the other housing 210b is provided with a plug-in post 2102b. Each plug-in post 2102b is inserted into the corresponding plug-in tube 2101b to fix the two housings 210b together, thus making it convenient to assemble and disassemble the two housings 210b.
[0107] Please refer to Figures 31 and 32. The outer peripheral wall of the ignition cover 230b is provided with a first annular groove 2301b and a first mounting groove 2302b extending circumferentially therefrom. The outer peripheral wall of the press cover 220b is provided with a second annular groove 2201b and a second mounting groove 2202b extending circumferentially therefrom. A first annular protrusion 2103b that mates with the first annular groove 2301b is formed between the first ends of the two outer shells 210b. A second annular protrusion 2104b that mates with the second annular groove 2201b is formed between the second ends of the two outer shells 210b. The ignition device also includes a first sealing ring 240b and a second sealing ring 250b. The first sealing ring 240b mates with the first mounting groove 2302b and its outer peripheral wall abuts against the inner peripheral wall of the two outer shells 210b. The second sealing ring 250b mates with the second mounting groove 2202b and its outer peripheral wall abuts against the inner peripheral wall of the two outer shells 210b.
[0108] Referring to Figures 31 to 33, the ignition device also includes an ignition circuit board 260b, a high-voltage transformer 270b, and at least one pair of discharge electrodes 280b arranged sequentially in the mounting cavity 302 from the pressing cover 220b to the ignition cover 230b. The ignition circuit board 260b is provided with a pressing switch 2601b for pressing by the pressing part 222b. The input end of the high-voltage transformer 270b is electrically connected to the ignition circuit board 260b. One end of each discharge electrode 280b is electrically connected to the output end of the high-voltage transformer 270b, and the other end of each discharge electrode 280b is disposed through the ignition cover 230b. In this embodiment, two pairs of discharge electrodes 280b are provided, which can enhance the ignition intensity. In other embodiments, the discharge electrodes 280b may also be provided as one pair, three pairs, or other numbers of pairs. Furthermore, the inner side of the ignition cover 230b is provided with four L-shaped limiting members 2303b, which together with the ignition cover 230b form an insertion space (not marked). The ignition circuit board 260b has a snap-fit notch 2602b on the side facing away from the pressing cover 220b. One end of the high-voltage pack 270b in the length direction is inserted into the insertion space, and the other end of the high-voltage pack 270b in the length direction cooperates with the snap-fit notch 2602b. Through the cooperation of the insertion space and the snap-fit notch 2602b, the high-voltage pack 270b can be clamped and fixed in the length direction.
[0109] A combing component 2801b is installed in the insertion space. The combing component 2801b has multiple combing holes 28011b. The end of each discharge electrode 280b away from the high voltage pack 270b passes through the corresponding combing hole 28011b and then passes through the ignition cover 230b. In this way, the insertion of multiple discharge electrodes 280b can be combed, making it convenient for the discharge electrodes 280b to be inserted.
[0110] Please refer to Figures 31 to 33. One outer shell 210b has an inner peripheral wall with a pressing portion 2105b, and the other outer shell 210b has an inner peripheral wall with two latching portions 2106b spaced apart along its width. The pressing portion 2105b and the two latching portions 2106b clamp and fix the high-voltage pack 270b in a direction where the two outer shells 210b are close to each other. Specifically, the pressing portion 2105b presses against the upper surface of the high-voltage pack 270b, and the two latching portions 2106b engage with the two end corners of the lower surface of the high-voltage pack 270b in the width direction. This arrangement allows the pressing portion 2105b and the two latching portions 2106b to achieve triangular clamping and positioning of the high-voltage pack 270b in the vertical direction, thereby enhancing the stability of the high-voltage pack 270b. Furthermore, the pressing portion 2105b is a hollow columnar shape.
[0111] Please refer to Figures 31 to 33. The ignition circuit board 260b has arc-shaped first latches 2603b at both ends near the pressing part 222b. The two latching parts 2106b are connected to latching limiting parts 2107b on the side near the pressing part 222b. The two first latches 2603b are respectively engaged with the outer peripheral walls of the two insertion tubes 2101b on the side of the outer shell 210b along the length direction. The two latching limiting parts 2107b are respectively latched with the two ends of the ignition circuit board 260b away from the pressing part 222b. This makes it easy to fix the ignition circuit board 260b. Furthermore, both ends of the inner length of the outer casing 210b are provided with limiting posts 2108b, the end face of the ignition cover 230b near the press cover 220b is provided with a first limiting notch 2304b that cooperates with a limiting post 2108b, and the end face of the press cover 220b near the ignition cover 230b is provided with a second limiting notch 2203b that cooperates with another limiting post 2108b. This can enhance the stability of the ignition cover 230b and the press cover 220b.
[0112] Please refer to Figures 30 to 32. The ignition device also includes a connector 290b, which is a cylindrical shape with open ends. One end of the connector 290b is connected to the lower housing 210b of the two housings 210b, and the other end of the connector 290b is used to detachably connect to the handheld host 100. This arrangement facilitates the connection of the housing 210b to the handheld host 100.
[0113] Please refer to Figure 34. The lighting device includes a housing 210c and a lamp plate 220c. The housing 210c includes a receiving section 211c, which provides a receiving space for the lamp plate 220c. The diameter of the receiving section 211c increases along its axial direction, so that the receiving section 211c is flared with one end having a larger diameter and the other end having a smaller diameter. The inner peripheral wall of the receiving section 211c is provided with a plurality of heat dissipation protrusions 2111c arranged at intervals along its circumference. The lamp plate 220c is installed in the receiving section 211c, and the outer periphery of the lamp plate 220c abuts against each of the heat dissipation protrusions 2111c. Specifically, the outer periphery of the lamp plate 220c abuts against the surface of each heat dissipation protrusion 2111c facing away from the inner peripheral wall of the receiving section 211c.
[0114] It is worth mentioning that each heat dissipation protrusion 2111c extends circumferentially along the receiving section 211c, and also extends in the inclined direction of the inner peripheral wall of the receiving section 211c, so that each heat dissipation protrusion 2111c is arranged in a fan shape. This increases the surface area of the heat dissipation protrusion 2111c exposed in the receiving section 211c, which is conducive to the heat transfer of the lamp board 220c to the heat dissipation protrusion 2111c for heat dissipation.
[0115] Specifically, referring to Figures 34 and 35, the corner of the outer peripheral wall of the lamp plate 220c abuts against the surface of the inner peripheral wall of the heat dissipation protrusion 2111c facing away from the receiving section 211c. This minimizes the contact area between the lamp plate 220c and the heat dissipation protrusion 2111c, increases the surface area of the lamp plate 220c exposed in the internal space of the receiving section 211c, and thus enhances the heat dissipation effect of the lamp plate 220c.
[0116] In this embodiment, four heat dissipation protrusions 2111c are provided, and the four heat dissipation protrusions 2111c are evenly spaced along the circumference of the receiving section 211c. This arrangement allows the heat from the lamp panel 220c to be evenly transferred to the four heat dissipation protrusions 2111c along its circumference, which is beneficial for uniform heat dissipation from all parts of the lamp panel 220c. In other embodiments, the heat dissipation protrusions 2111c may also be three, five, or other values.
[0117] Furthermore, in this embodiment, the inclination angle of the inner peripheral wall of the accommodating section 211c is the same as the inclination angle of the outer peripheral wall of the accommodating section 211c, both being 142.48 degrees. This enhances the diffusion effect of the light emitted by the lamp panel 220c.
[0118] In this embodiment, referring to Figures 34 and 35, the lamp plate 220c is provided with an LED 221c at the end facing the receiving section 211c with a larger diameter, so that the light emitted by the LED 221c can be diffused through the receiving section 211c. In other embodiments, the LED 221c may be provided at the end facing the receiving section 211c with a smaller diameter, so that the light emitted by the LED 221c can be focused through the receiving section 211c.
[0119] Further, referring to Figures 34 and 36, the inner peripheral wall of the receiving section 211c is provided with three inserts 2112c evenly spaced along its circumference, and the lamp plate 220c is provided with three through holes 222c. Each through hole 222c is fixed to the corresponding insert 2112c by bolts. This allows the fixing force on the lamp plate 220c to be arranged in a triangular pattern, thereby enhancing the stability of the lamp plate 220c. Furthermore, the three inserts are connected to the three heat dissipation protrusions 2111c.
[0120] Through the above technical solution, the lamp board 220c is configured to abut against all heat dissipation protrusions 2111c on its outer periphery. This ensures that only a portion of the lamp board 220c's outer periphery abuts against the heat dissipation protrusions 2111c, while the remaining portion of the lamp board 220c is exposed within the internal space of the accommodating section 211c. This reduces the contact area between the lamp board 220c and other parts within the accommodating section 211c, thereby enhancing the heat dissipation performance of the lamp board 220c. This effectively prevents the lamp board 220c from being damaged or burned due to excessive temperature, and extends the service life of the lamp board 220c. During use, a portion of the heat from the lamp panel 220c is first transferred to the housing section 211c via the heat dissipation protrusion 2111c, and then transferred to the external environment via the housing section 211c. Another portion of the heat from the lamp panel 220c is directly transferred to the internal space of the housing section 211c, and then transferred to the external environment via the housing section 211c. This enhances the heat dissipation performance of the lamp panel 220c.
[0121] Please refer to Figures 34 and 37. Each heat dissipation protrusion 2111c has a first position and a second position spaced apart along the extension direction of the receiving section 211c. The thickness of the first position is less than the thickness of the second position. The outer periphery of the lamp plate 220c abuts against each of the first positions, thus enabling the outer periphery of the lamp plate 220c to abut against the position with the smaller thickness on the heat dissipation protrusion 2111c. Specifically, the thickness of the heat dissipation protrusion 2111c increases and then decreases from the end with the smaller diameter of the receiving section 211c to the end with the larger diameter of the receiving section 211c, and the increase is much greater than the decrease. This facilitates the abutment between the heat dissipation protrusion 2111c and the end face of the light-transmitting cover 230c, which will be described below. In other embodiments, the thickness of the heat dissipation protrusion 2111c may increase only from the end with the smaller diameter of the accommodating section 211c to the end with the larger diameter of the accommodating section 211c, or the thickness of the heat dissipation protrusion 2111c may decrease only from the end with the smaller diameter of the accommodating section 211c to the end with the larger diameter of the accommodating section 211c.
[0122] Furthermore, the surface of the heat dissipation protrusion 2111c facing away from the inner peripheral wall of the receiving section 211c is formed as a raised curved surface, which increases the surface area of the heat dissipation protrusion 2111c and thus enhances the heat dissipation effect of the heat dissipation protrusion 2111c. In other embodiments, the surface of the heat dissipation protrusion 2111c facing away from the inner peripheral wall of the receiving section 211c may also be formed as a plane.
[0123] In this embodiment, the thicker second position is located between the thinner first position and the larger diameter end of the receiving section 211c, thus facilitating the contact between the heat dissipation protrusion 2111c and the end face of the light-transmitting cover 230c, which will be described below. In other embodiments, the thinner first position may be located between the thicker second position and the larger diameter end of the receiving section 211c.
[0124] Please refer to Figures 34 and 38. The outer peripheral wall of the accommodating section 211c is provided with a plurality of heat dissipation recesses 2113c arranged at intervals along its circumference. Each heat dissipation recess 2113c is positioned opposite to a corresponding heat dissipation protrusion 2111c. In this way, by means of the heat dissipation recesses 2113c, on the one hand, the wall thickness at the position on the accommodating section 211c that connects with each heat dissipation protrusion 2111c can be reduced, that is, the path of heat on the heat dissipation protrusion 2111c to the external environment through the accommodating section 211c can be reduced, thereby accelerating the speed at which heat on the heat dissipation protrusion 2111c is transferred to the external environment. On the other hand, the surface area at the position on the outer peripheral wall of the accommodating section 211c that is opposite to each heat dissipation protrusion 2111c can be increased, thereby also accelerating the speed at which heat on the heat dissipation protrusion 2111c is transferred to the external environment.
[0125] Specifically, the shape of the bottom wall of the heat dissipation recess 2113c is the same as the shape of the surface of the inner peripheral wall of the heat dissipation protrusion 2111c facing away from the receiving section 211c. This increases the surface area of the bottom wall of the heat dissipation recess 2113c, thereby enhancing the heat dissipation effect of the heat dissipation recess 2113c.
[0126] Please refer to Figures 34 and 35. The lighting device also includes a light-transmitting cover 230c, which covers the larger end of the receiving section 211c. The end face of the light-transmitting cover 230c abuts against each of the heat dissipation protrusions 2111c. This allows some of the heat from the light-transmitting cover 230c to be transferred to the heat dissipation protrusions 2111c, thereby achieving heat dissipation and effectively preventing the light-transmitting cover 230c from overheating after prolonged irradiation.
[0127] Specifically, please refer to Figures 35 and 37. The side of each heat dissipation protrusion 2111c away from the smaller diameter end of the receiving section 211c is formed as an abutment plane 2111c'. The end face of the light-transmitting cover 230c abuts against each abutment plane 2111c', which facilitates the transfer of heat from the light-transmitting cover 230c to the heat dissipation protrusion 2111c.
[0128] To further enhance the heat dissipation effect of the light-transmitting cover 230c, please refer to Figures 35 and 37. The heat dissipation protrusion 2111c is provided with a heat-conducting element 21111c, which abuts against the light-transmitting cover 230c. This allows the heat from the light-transmitting cover 230c to be transferred to the heat dissipation protrusion 2111c through the heat-conducting element 21111c, thereby further enhancing the heat dissipation effect of the light-transmitting cover 230c.
[0129] Specifically, the heat-conducting element 21111c is disposed on the surface of the heat dissipation protrusion 2111c facing away from the inner peripheral wall of the receiving section 211c, and the heat-conducting element 21111c abuts against the inner peripheral wall of the light-transmitting cover 230c. This facilitates the transfer of heat from the light-transmitting cover 230c to the heat dissipation protrusion 2111c via the heat-conducting element 21111c. Furthermore, the heat-conducting element 21111c is arranged in a sheet-like form, which enhances its heat transfer effect. In other embodiments, the heat-conducting element 21111c may also be disposed at the end of the heat dissipation protrusion 2111c in the circumferential direction of the receiving section 211c, and the heat-conducting element 21111c may abut against the end face of the light-transmitting cover 230c.
[0130] Further, please refer to Figures 35 and 37. The heat-conducting component 21111c is provided with an abutment notch 21111c', which abuts against the end corner of the inner peripheral wall of the light-transmitting cover 230c. This arrangement allows the heat from the light-transmitting cover 230c to be transferred to the heat-conducting component 21111c through the abutment notch 21111c', and also allows the light-transmitting cover 230c to be supported by the abutment notch 21111c', thereby enhancing the stability of the light-transmitting cover 230c.
[0131] In this embodiment, the surface of the heat dissipation protrusion 2111c facing away from the inner peripheral wall of the receiving section 211c is provided with two spaced-apart heat-conducting elements 21111c on one side of the circumferential direction of the receiving section 211c, and the surface of the heat dissipation protrusion 2111c facing away from the inner peripheral wall of the receiving section 211c is also provided with two spaced-apart heat-conducting elements 21111c on the other side of the circumferential direction of the receiving section 211c. This can accelerate the speed at which the heat of the light-transmitting cover 230c is transferred to the heat dissipation protrusion 2111c.
[0132] To facilitate the fixing of the light-transmitting cover 230c, please refer to Figures 34 and 35. The outer shell 210c also includes a light-emitting section 212c. The light-emitting section 212c is connected to the larger diameter end of the receiving section 211c. The inner peripheral wall of the light-emitting section 212c abuts against the outer peripheral wall of the light-transmitting cover 230c. The heat-conducting component 21111c abuts against the inner peripheral wall of the light-transmitting cover 230c to clamp and fix the light-transmitting cover 230c. With this arrangement, the light-transmitting cover 230c can be clamped and fixed together by the heat-conducting component 21111c and the light-emitting section 212c, making it convenient to fix the light-transmitting cover 230c.
[0133] Specifically, the light-emitting section 212c and the receiving section 211c are integrally formed, which can enhance the connection strength between the light-emitting section 212c and the receiving section 211c.
[0134] Further, referring to Figures 34 to 36, the outer peripheral wall of the light-transmitting cover 230c is provided with a plurality of fasteners 2301c arranged at intervals along its circumference, and the inner peripheral wall of the light-emitting section 212c is provided with a plurality of snap fasteners 2121c arranged at intervals along its circumference. Each snap fastener 2121c engages with its corresponding fastener 2301c, thereby enhancing the stability of the light-transmitting cover 230c. Furthermore, the outer peripheral wall of the light-transmitting cover 230c is also provided with a first sealing groove 2302c extending along its circumference. A first sealing ring 2303c, which mates with the first sealing groove 2302c, is provided within the first sealing groove 2302c. The outer peripheral wall of the first sealing ring 2303c elastically abuts against the inner peripheral wall of the light-emitting section 212c, thereby enhancing the sealing between the outer peripheral wall of the light-transmitting cover 230c and the inner peripheral wall of the light-emitting section 212c. Furthermore, four anti-collision protrusions 2122c are integrally formed on the side of the light-emitting section 212c away from the receiving section 211c. This arrangement ensures that the light-transmitting cover 230c is located inside the four anti-collision protrusions 2122c. When the lighting device is accidentally dropped, the anti-collision protrusions 2122c will collide, thus protecting the light-transmitting cover 230c.
[0135] In other embodiments, the outer shell 210c may also consist only of the receiving section 211c, with the light-transmitting cover 230c directly covering the end of the receiving section 211c with the larger diameter.
[0136] Considering that the lighting device is equipped with a switch 240c that controls the opening and closing of the lamp panel 220c, for the convenience of disassembling and assembling the switch 240c, please refer to Figures 35, 36 and 39. The lamp panel 220c is provided with two insertion ports 223c. The outer casing 210c also includes a connecting support section 213c, which is connected to the smaller end of the receiving section 211c. The lighting device also includes a switch 240c, which is located inside the connecting support section 213c and is provided with two plugs 241c. Each plug 241c extends along the axial direction of the connecting support section 213c, and each plug 241c has a bent insertion head 2411c at the end away from the switch 240c. Each insertion head 2411c is elastic and is inserted into the corresponding insertion port 223c.
[0137] With the above technical solution, when installing switch 240c, firstly, press the two insert heads 2411c towards each other; then, insert the two insert heads 2411c into the two insert holes 223c respectively; then, release the two insert heads 2411c, and the two insert heads 2411c will abut against the two insert holes 223c under their own elastic force, thus completing the installation of switch 240c; when disassembling switch 240c, firstly, press the two insert heads 2411c away from each other; then, insert the two insert heads 2411c out of the two insert holes 223c respectively, thus completing the disassembly of switch 240c.
[0138] Furthermore, referring to Figure 39, the lamp panel 220c is also provided with two conductive ports 224c, and the switch 240c is provided with two conductive elements 242c. Each conductive element 242c extends along the axial direction of the connecting support section 213c. The end of each conductive element 242c away from the switch 240c is inserted into the corresponding conductive port 224c, which makes the electrical connection between the lamp panel 220c and the switch 240c convenient.
[0139] Please refer to Figures 33 to 35 and Figure 39. The lighting device also includes a housing 250c and a button 203. The housing 250c is fitted over the connecting support section 213c and has a clearance opening 2501c. The button 203 is sandwiched between the inner peripheral wall of the housing 250c and the outer peripheral wall of the connecting support section 213c and is exposed through the clearance opening 2501c. The button 203 is positioned opposite to the switch 240c. The connecting support section 213c forms a through opening 2131c and a pressing member 2132c at the position between the button 203 and the switch 240c. The pressing member 2132c is elastic and located within the through opening 2131c. Please refer to Figures 36 and 40. The side of the button 203 facing the switch 240c has a pressing head for pressing the pressing member 2132c, which makes it convenient to press the pressing head of the button 203.
[0140] Through the above technical solution, the housing 250c and the connecting support 213c together clamp and fix the button 203, thus completing the installation of the button 203. Moving the housing 250c away from the receiving section 211c until the housing 250c disengages from the connecting support 213c, releasing the constraint on the button 203, allows the button 203 to be disassembled. During use, when a pressing force is applied to the button 203, the pressing force is transmitted to the switch 240c through the pressing member 2132c, pressing the switch 240c and causing the pressing member to undergo elastic deformation; when the pressing force applied to the button 203 is removed, the pressing member 2132c, under its own rebound force, drives the button 203 to return to its initial state.
[0141] Please refer to Figures 34, 35, and 40. The outer peripheral wall of the connecting support section 213c is provided with a mounting groove 2133c. The mounting groove 2133c is provided through the side away from the receiving section 211c. The through opening 2131c is provided at the bottom of the mounting groove 2133c. The button 203 includes a pressing section 2031 and a mounting section 2032 connected to the pressing section 2031. The width of the mounting section 2032 is greater than the width of the pressing section 2031. The pressing section 2031 cooperates with the clearance opening 2501c, and the mounting section 2032 cooperates with the mounting groove 2133c. This arrangement allows the pressing section 2031 of the button 203 to be fixed to the housing 250c, and the mounting section 2032 of the button 203 to pass through the through position of the mounting groove 2133c along the axial direction of the connecting support section 213c. Thus, the button 203 and the housing 250c can be disassembled and assembled from the connecting support section 213c together.
[0142] Please refer to Figures 35, 40, and 41. The inner peripheral wall of the housing 250c is provided with a first annular protrusion 2502c surrounding the clearance opening 2501c. The outer peripheral wall of the connecting support section 213c is provided with a second annular protrusion 2134c extending circumferentially near the receiving section 211c. The first annular protrusion 2502c is sandwiched between the second annular protrusion 2134c and the plug 400, which enhances the fixing strength of the housing 250c. The outer peripheral wall of the second annular protrusion 2134c is provided with a second sealing groove 21341c. The second sealing groove 21341c is provided with a second sealing ring 2135c that mates with it. The outer peripheral wall of the second sealing ring 2135c elastically abuts against the inner peripheral wall of the housing 250c, which enhances the sealing performance between the housing 250c and the connecting support section 213c.
[0143] Obviously, the embodiments described above are only some embodiments of this application, not all embodiments. The accompanying drawings show preferred embodiments of this application, but do not limit the patent scope of this application. This application can be implemented in many different forms; rather, the purpose of providing these embodiments is to provide a more thorough and comprehensive understanding of the disclosure of this application. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing specific embodiments, or make equivalent substitutions for some of the technical features. Any equivalent structures made using the content of this application's specification and drawings, directly or indirectly applied to other related technical fields, are similarly within the scope of patent protection of this application.
Claims
1. An outdoor device, characterized by, The outdoor equipment comprises a handheld host and functional pieces, the handheld host is internally provided with a circuit board and a power supply coupled with the circuit board, the handheld host is further provided with a mounting portion for detachable assembly of the functional pieces, the functional pieces are provided in a plurality and are different in function, the functional pieces are coupled with the circuit board through the mounting portion, so that the circuit board supplies power and controls the functional pieces; An identification module is coupled on the circuit board, when the circuit board and the functional pieces are coupled through the mounting portion, the identification module is used for identifying the functional pieces and generating identity information and sending the identity information to the circuit board, the circuit board identifies the identity information to call corresponding output power to supply power to the functional pieces; A control piece is coupled on the circuit board, the control piece is used for the user to adjust the output power of the circuit board to the functional pieces step by step, the output power of each step is different under different identity information, or the output power corresponding to at least one level is different under different identity information.
2. The outdoor device according to claim 1, characterized by The control piece is a plurality of keys coupled with the circuit board, wherein two keys are gear adjustment keys and power switch keys.
3. The outdoor device according to claim 1, wherein The functional piece is a first functional piece, a button is arranged on the first functional piece, the button is used for the user to press to switch different use modes, the identity information generated by the identification module is different under different use modes, when the circuit board identifies different identity information, different output power will be called to supply power to the first functional piece.
4. The outdoor device according to claim 1, wherein The functional piece is a second functional piece, a plurality of buttons are arranged on the second functional piece, the buttons are used for the user to press to control the power switch of the second functional piece or switch the use mode of the second functional piece, the identity information generated by the identification module is the same under different use modes.
5. The outdoor device according to claim 1, wherein The outdoor equipment further comprises a socket, a plug and a locking assembly, the mounting portion is the socket, the plug is arranged on the functional piece, the socket is provided with a slot matched with the plug, and the outer peripheral wall of the plug is provided with a locking slot; the locking assembly comprises a locking piece and an elastic reset piece, the locking piece is movably mounted on the socket, and the elastic reset piece is mounted on the socket and acts on the locking piece, the locking piece has an unlocking position driven by external force to release the constraint of the locking slot and a locking position matched with the locking slot driven by the elastic reset piece after the external force is removed.
6. The outdoor device according to claim 5, wherein The locking piece has a stress end and a reaction end arranged oppositely, the stress end is arranged exposed from the socket, and the reaction end is located in the socket, the position of the locking piece between the stress end and the reaction end is rotationally connected with the socket, and the position of the elastic reset piece acting on the locking piece is arranged separately from the position of the locking piece rotationally connected with the socket; the reaction end releases the constraint of the locking slot when the locking piece is in the unlocking position, and the reaction end is matched with the locking slot when the locking piece is in the locking position.
7. The outdoor device according to claim 6, characterized by The reaction end is provided with a guide surface, the guide surface is inclined outward in the direction from the slot bottom to the slot opening of the slot.
8. The outdoor device according to claim 5, wherein The socket is embedded with a plurality of first magnets, and the plug is embedded with a plurality of second magnets. When the plug is matched with the socket, at least one of the plurality of first magnets is connected with the S pole of the corresponding second magnet by N pole magnetic attraction, and the rest of the plurality of first magnets are connected with the N pole of the corresponding second magnet by S pole magnetic attraction.
9. The outdoor device according to claim 1, wherein The outdoor equipment further comprises an adapter, the adapter has a mounting end and a docking end perpendicular to the mounting end, the mounting end is connected with the shell of the functional component, and the docking end is used to detachably dock with the mounting part.
10. The outdoor device according to claim 9, wherein One side of the adapter away from the docking end is formed as a control surface, the control surface is connected with the first surface of the shell of the functional component at an obtuse angle when the mounting end is connected with the functional component, and the control surface is embedded with a button.
11. The outdoor device according to claim 10, wherein The adapter comprises a first segment and a second segment connected at an obtuse angle, one end of the first segment away from the second segment is formed as the mounting end, one end of the second segment away from the first segment is formed as the docking end, and one side of the first segment away from the docking end is formed as the control surface.
12. The outdoor device according to claim 10, wherein The functional component is an alarm, the functional component further has a second surface opposite to the first surface, the first surface and the second surface are correspondingly provided with a first sound outlet area and a second sound outlet area, and the mounting end is located between the first sound outlet area and the docking end.
13. The outdoor device according to claim 1, wherein The functional component is an ignition device, an end of the ignition device is formed as a pressing cover, the pressing cover comprises a main body and a pressing part, the main body is annularly arranged, an outer peripheral wall of the pressing part is sealingly connected with an inner peripheral wall of the main body, and the main body is at least partially elastic so that the pressing part can be pressed when the main body is fixed.
14. The outdoor device according to claim 13, wherein The main body comprises a fixing segment and a connecting segment which are both annularly arranged, an inner peripheral wall of the fixing segment is connected with an outer peripheral wall of the connecting segment, the connecting segment is located in an end of the fixing segment, an inner peripheral wall of the connecting segment is sealingly connected with an outer peripheral wall of the pressing part, and the connecting segment is elastic.
15. The outdoor device according to claim 14, characterized by The connecting segment is horn-shaped, one end of the connecting segment with a larger caliber is connected with the inner peripheral wall of the fixing segment, and the other end of the connecting segment with a smaller caliber is sealingly connected with the outer peripheral wall of the pressing part.
16. The outdoor device of claim 14, wherein, The inner peripheral wall of the connecting segment is provided with a clamping protrusion extending along the circumferential direction thereof, and the outer peripheral wall of the pressing part is provided with a clamping groove extending along the circumferential direction thereof, the clamping groove is matched with the clamping protrusion.
17. The outdoor device according to claim 16, wherein An inner side of the clamping protrusion is provided with a clamping opening, and the clamping groove is provided with a clamping protrusion matched with the clamping opening.
18. The outdoor device according to claim 1, wherein The functional component is a lighting device, the lighting device comprises a shell and a lamp panel, the shell comprises a containing segment, a caliber of the containing segment is arranged in an increasing manner along the axial direction thereof, an inner peripheral wall of the containing segment is provided with a plurality of heat dissipation protrusions arranged at intervals along the circumferential direction thereof, the lamp panel is installed in the containing segment, and an outer periphery of the lamp panel abuts against each heat dissipation protrusion.
19. The outdoor device of claim 18, wherein, Each of the heat dissipation protrusions has a first position and a second position arranged at intervals along the extension direction of the accommodating section, the thickness of the first position is smaller than the thickness of the second position, and the outer periphery of the lamp panel abuts against each of the first positions.
20. The outdoor device of claim 18, wherein, The outer peripheral wall of the accommodating section is provided with a plurality of heat dissipation recesses arranged at intervals in the circumferential direction, and each of the heat dissipation recesses is arranged opposite to the corresponding heat dissipation protrusion.
21. The outdoor device of claim 18, wherein, The lighting device further comprises a light-transmitting cover, the light-transmitting cover covers one end of the accommodating section with a larger aperture, and the end face of the light-transmitting cover abuts against each of the heat dissipation protrusions.
22. The outdoor device of claim 18, wherein, The lighting device further comprises a light-transmitting cover, the light-transmitting cover covers one end of the accommodating section with a larger aperture, and the heat dissipation protrusion is provided with a heat-conducting member, and the heat-conducting member abuts against the light-transmitting cover.
Citation Information
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