Outdoor lamp

By integrating a retractable cable module into outdoor lighting fixtures, the convenience issue of charging electronic devices outdoors is solved, enabling convenient charging without the need to carry an additional power bank and charging cable, while maintaining the simple appearance of the lighting fixtures and making them easy to carry.

CN224033727UActive Publication Date: 2026-03-24SHENZHEN MAIYUE INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-25
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

Outdoor lighting fixtures require users to carry additional power banks and charging cables when they need to charge their mobile phones or other electronic devices, which is inconvenient.

Method used

Design an outdoor lighting fixture comprising a housing assembly, a light-emitting module, a power supply module, and a retractable cable module. The cable of the retractable cable module can be stored inside the housing assembly and can be pulled out to connect to an external electronic device, which is powered by the power supply module to achieve a charging function.

Benefits of technology

No need to carry an extra power bank and charging cable, improving user convenience, and maintaining the lamp's simple appearance when not in use, making it easy to carry.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224033727U_ABST
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Abstract

The utility model relates to an outdoor lamp which comprises a shell assembly, a light-emitting module, a power source module and a telescopic line module, the light-emitting module is arranged in the shell assembly, the power source module is arranged in the shell assembly and used for supplying power to the light-emitting module, the telescopic line module is arranged in the shell assembly and comprises a cable capable of stretching out and drawing back relative to the shell assembly, and the cable can be contained in the shell assembly. And the power supply module can be pulled out of the shell assembly and is in butt joint with external electronic equipment so as to supply power to the external electronic equipment through the power supply module. When a user carries the outdoor lamp and has a charging requirement, the cable of the telescopic line module can be pulled out of the shell assembly of the outdoor lamp and is in butt joint with external electronic equipment such as a mobile phone, the charging function is achieved, and therefore a mobile power source and a charging line do not need to be carried additionally, and using convenience is improved. When a user does not need to supply power to external electronic equipment through the outdoor lamp any more, the cable of the telescopic line module can be contained in the shell assembly, and the outdoor lamp can still keep the concise appearance.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of lighting lamps and lanterns, in particular to an outdoor lamp. BACKGROUND

[0002] Outdoor lamps are generally equipped with batteries and light-emitting components and are suitable for outdoor lighting such as camping and the like. Such outdoor lamps have relatively good portability, and with the advancement of battery technology, the endurance performance of outdoor lamps is continuously improved, and they are increasingly accepted by users. However, when a user uses an outdoor lamp, if a mobile phone or other electronic device needs to be charged, a mobile power supply is generally also needed, which causes inconvenience to consumers. SUMMARY

[0003] Embodiments of the utility model provide an outdoor lamp, which improves the convenience of use for users.

[0004] An outdoor lamp comprises:

[0005] a shell assembly;

[0006] a light-emitting module arranged in the shell assembly;

[0007] a power supply module arranged in the shell assembly and used for supplying power to the light-emitting module; and

[0008] a telescopic wire module arranged in the shell assembly and comprising a wire cable capable of being telescopically extended relative to the shell assembly, the wire cable being capable of being accommodated in the shell assembly and capable of being pulled out of the shell assembly and connected to an external electronic device to supply power to the external electronic device by the power supply module.

[0009] The above outdoor lamp comprises a shell assembly, a light-emitting module, a power supply module and a telescopic wire module. The light-emitting module is arranged in the shell assembly. The power supply module is arranged in the shell assembly and used for supplying power to the light-emitting module. The telescopic wire module is arranged in the shell assembly and comprises a wire cable capable of being telescopically extended relative to the shell assembly. The wire cable is capable of being accommodated in the shell assembly and capable of being pulled out of the shell assembly and connected to an external electronic device to supply power to the external electronic device by the power supply module. When a user carries the outdoor lamp and has a charging demand, the wire cable of the telescopic wire module can be pulled out of the shell assembly of the outdoor lamp and connected to a mobile phone or other external electronic device to supply power to the external electronic device by the power supply module of the outdoor lamp and realize a charging function, so that a mobile power supply and a charging wire do not need to be additionally carried, and the convenience of use is improved. When the external electronic device does not have a charging battery, the user can also supply power to the external electronic device by the power supply module of the outdoor lamp. When the user no longer needs to supply power to the external electronic device by the outdoor lamp, the wire cable of the telescopic wire module can be accommodated in the shell assembly. The outdoor lamp can still have a relatively simple appearance, is convenient for the user to carry, and improves the convenience of use. BRIEF DESCRIPTION OF DRAWINGS

[0010] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0011] Figure 1 It is a schematic view of an embodiment of the outdoor lamp of the first embodiment of the present application.

[0012] Figure 2 It is an exploded view of the outdoor lamp shown in the figure. Figure 1

[0013] Figure 3 It is a sectional view of the outdoor lamp shown in the figure. Figure 1

[0014] Figure 4 It is a schematic view of the telescopic wire module of an embodiment.

[0015] Figure 5 It is an enlarged schematic view of A of the telescopic wire module shown in the figure. Figure 4

[0016] It is a schematic view of another embodiment of the outdoor lamp of the first embodiment of the present application. Figure 6

[0017] It is a schematic view of a matching state of the pop-up assembly and the docking head of the first embodiment. Figure 7

[0018] It is a schematic view of another matching state of the pop-up assembly and the docking head shown in the figure. Figure 8 Figure 7

[0019] Figure 9 It is an exploded view of another embodiment of the outdoor lamp of the first embodiment.

[0020] Figure 10 It is an enlarged schematic view of B of the outdoor lamp shown in the figure. Figure 9

[0021] It is a schematic view of another embodiment of the outdoor lamp of the first embodiment. Figure 11

[0022] It is a schematic view of the outdoor lamp of the second embodiment of the present application. Figure 12

[0023] It is a schematic view of another embodiment of the outdoor lamp shown in the figure. Figure 13 Figure 12 ​​​​​An exploded view of the outdoor luminaire shown;

[0024] Figure 14 A schematic view of one embodiment of the outdoor luminaire of the third embodiment of the present application;

[0025] Figure 15 A Figure 14 An exploded view of the outdoor luminaire shown;

[0026] Figure 16 A schematic view of another embodiment of the outdoor luminaire of the third embodiment of the present application;

[0027] Figure 17 A schematic view of yet another embodiment of the outdoor luminaire of the third embodiment of the present application;

[0028] Figure 18 A Figure 17 An exploded view of the outdoor luminaire shown;

[0029] Figure 19 A schematic view of the outdoor luminaire of the fourth embodiment of the present application;

[0030] Figure 20 A Figure 19 An exploded view of the outdoor luminaire shown. DETAILED DESCRIPTION

[0031] For the purpose of promoting an understanding of the application, the application will be described in greater detail below with reference to the illustrative drawings. The embodiments of the application shown in the drawings are intended to illustrate but not limit the application. The application can be realized in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the application to those skilled in the art.

[0032] It should be noted that when an element is referred to as being "on" another element, it can be directly on the other element or intervening elements can also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements can also be present. As used herein the terms "vertical", "horizontal", "left", "right", and the like are merely used for the purpose of illustration.

[0033] 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 in the description of the application herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. As used herein, the term "and / or" includes any and all combinations of one or more of the associated listed items.

[0034] First Embodiment

[0035] Reference Figure 1 , Figure 2 and Figure 3 , the first embodiment of the present application discloses an outdoor lamp 100, comprising a shell assembly 110, a light-emitting module 120, a power supply module 130 and a retractable wire module 140, the light-emitting module 120 is arranged in the shell assembly 110. The light-emitting module 120 can include LED lamp beads, which can realize illumination when powered on. The power supply module 130 is arranged in the shell assembly 110 and is used to supply power to the light-emitting module 120. The power supply module 130 generally includes a battery such as a lithium battery that can be repeatedly charged and discharged, and with the advancement of battery technology, the capacity of the battery has a rising trend, and the endurance performance of the outdoor lamp 100 is also steadily improved.

[0036] The retractable wire module 140 is arranged in the shell assembly 110 and includes a cable 141 that can be retracted relative to the shell assembly 110. The cable 141 can be stored in the shell assembly 110 and can be pulled out of the shell assembly 110 and connected to an external electronic device to supply power to the external electronic device through the power supply module 130. In some embodiments, the cable 141 can be wound and stored in the shell assembly 110 to achieve a hidden effect of the cable 141, so that the outdoor lamp 100 maintains a relatively simple appearance, avoiding the inconvenience caused by the cable 141 to the user's usual use, such as avoiding the cable 141 from being entangled with other items during the carrying process or when not in use. When the user needs to power the external electronic device such as a mobile phone, the cable 141 of the retractable wire module 140 can be pulled out from the shell assembly 110 and connected to the external electronic device, and the power supply module 130 of the outdoor lamp 100 can be used to power these external electronic devices, such as charging the mobile phone, to improve the convenience of use. In some embodiments, the retractable wire module 140 can have a digital display part, which can include a display panel such as a liquid crystal panel or an OLED panel to display current, voltage and other information during the operation of the cable 141, improving the convenience of use.

[0037] Further, the outdoor lamp 100 can include a circuit board 150 arranged in the shell assembly 110, the light-emitting module 120, the power supply module 130 and the retractable wire module 140 are respectively electrically connected to the circuit board 150, and the circuit board 150 can integrate the control circuit of the light-emitting module 120 and the power management unit. The shell assembly 110 can also be provided with a key and other structures, which are correspondingly arranged with trigger structures on the circuit board 150, and are used to control the opening and closing of the light-emitting module 120. The key is not limited to a physical key, but can also be a virtual key, such as a virtual key presented by a touch screen.

[0038] Reference Figure 1 and in combination with Figure 4In some embodiments, the cable 141 includes a wire body 1411 electrically connected to the circuit board 150 and a connector 1413 connected to one end of the wire body 1411. The shell assembly 110 has a wire outlet 110a, and the width of the connector 1413 is not greater than the width of the wire outlet 110a. The wire body 1411 can be retracted into the wire outlet 110a to be accommodated in the shell assembly 110, or can be extended out of the shell assembly 110 to be connected to an external electronic device via the connector 1413 and supply power to the external electronic device via the power module 130. In some embodiments, the wire body 1411 can be wound and accommodated in the shell assembly 110 to achieve a hidden effect of the wire body 1411, so that the outdoor lamp 100 maintains a relatively simple appearance and avoids inconvenience to users in daily use. When the user needs to supply power to a mobile phone or other external electronic device, the wire body 1411 of the telescopic wire module 140 can be pulled out of the shell assembly 110 and connected to the external electronic device via the connector 1413, and the power module 130 of the outdoor lamp 100 can supply power to the external electronic device, for example, charge the mobile phone. The connector 1413 is not limited to a Type-C interface, or a Micro-USB interface, or a Lightning interface, or a magnetic charging interface, and the like, which will not be described here.

[0039] In the embodiments of the present application, the width of the connector 1413 is not greater than the width of the wire outlet 110a, which can be understood as the cross-sectional area of the connector 1413 being not greater than the cross-sectional area of the wire outlet 110a, so that the connector 1413 can be extended out of the wire outlet 110a from the shell assembly 110 during assembly, thereby ensuring the smooth assembly of the telescopic wire module 140 and the shell assembly 110 after the telescopic wire module 140 is assembled in the shell assembly 110. It can be understood that the width of the wire outlet 110a is equal to or slightly greater than the width of the connector 1413, or the cross-sectional area of the wire outlet 110a is equal to or slightly greater than the cross-sectional area of the connector 1413, so as to prevent the wire outlet 110a from being too large and causing damage to the overall appearance of the shell assembly 110.

[0040] With reference to Figure 4 , the telescopic wire module 140 can include a cover 143 arranged in the shell assembly 110, the cover 143 is fixed relative to the position of the power module 130, and the wire body 1411 is telescopically arranged in the cover 143. The cover 143 can be fixedly connected to the circuit board 150 or the shell assembly 110, thereby realizing the relative fixation of the cover 143 and the circuit board 150. The telescopic wire module 140 including the cover 143 can be made into an independent module and assembled into the shell assembly 110, thereby improving the assembly efficiency and ensuring the reliability of the telescopic wire module 140.

[0041] The telescopic wire module 140 can include a circuit board 145, a torsion spring 146 and a rotating disc 147 arranged in the shell 143. The circuit board 145 is fixed relative to the shell 143, for example, fixedly connected to the shell 143 or the shell assembly 110, and electrically connected to the circuit board 150, for example, by wire bonding. The torsion spring 146 can be in a spiral shape, one end of which is fixed relative to the shell 143, and the other end is fixed relative to the rotating disc 147. The rotating disc 147 is rotatably connected to the shell 143, for example, one of the rotating disc 147 and the shell 143 is provided with a rotating shaft, and the other is provided with a shaft hole matched with the rotating shaft. The wire body 1411 is arranged around the outer periphery of the torsion spring 146, one of the circuit board 145 and the rotating disc 147 is provided with a contact pin (not shown), and the other is provided with a ring-shaped conductor (not shown). The contact pin is in contact with the ring-shaped conductor to realize electrical connection between the wire body 1411 and the rotating disc 147. For example, the circuit board 145 is provided with the contact pin, the rotating disc 147 is provided with the ring-shaped conductor, and the wire body 1411 is electrically connected to the ring-shaped conductor. Alternatively, the circuit board 145 is provided with the ring-shaped conductor, the rotating disc 147 is provided with the contact pin, and the wire body 1411 is electrically connected to the contact pin to realize electrical connection between the wire body 1411 and the circuit board 145. Of course, the wire body 1411 can be directly electrically connected to the circuit board 145 by wire bonding or other methods.

[0042] The wire body 1411 can be clamped to the rotating disc 147, and in the process of being pulled by the user, the rotating disc 147 is driven to rotate relative to the shell 143 in one direction, for example, clockwise, to gradually extend out of the shell 143. In this process, the contact pin and the ring-shaped conductor remain in contact to ensure electrical connection between the wire body 1411 and the circuit board 150. In this process, the torsion spring 146 accumulates elastic potential energy, so that the rotating disc 147 has a tendency to rotate counterclockwise. When the user no longer needs to power the external electronic device by the outdoor luminaire 100, the torsion spring 146 can release the elastic potential energy to gradually wind the wire body 1411 extending out of the shell 143 into the shell 143.

[0043] Meanwhile, in combination with Figure 5 In some embodiments, the telescopic wire module 140 includes a clamping block 148 rotatably connected to the shell 143, and the rotating disc 147 has a clamping position 1471 and an unlocking position 1473. In the process of being pulled out of the shell 143, when the wire body 1411 drives the rotating disc 147 to rotate to the clamping position 1471 corresponding to the clamping block 148, the clamping block 148 limits the rotation of the rotating disc 147. When the wire body 1411 continues to be pulled out of the shell 143 and drives the rotating disc 147 to rotate, the clamping block 148 rotates relative to the shell 143 and moves to the unlocking position 1473, so that the wire body 1411 can be gradually wound into the shell 143. Figure 5The rotary disc 147 is provided with corresponding limiting grooves 147a and guide grooves 147b. The groove wall of the limiting groove 147a can be used as a clamping stop position 1471, and the connecting position of the groove wall of the guide groove 147b and the groove wall of the limiting groove 147a is an unlocking position 1473.

[0044] The side wall of the guide groove 147b can guide and limit the movement of the end of the clamping block 148, so that the wire body 1411 continuously moves along the guide groove 147b during the pulling-out process, and when the user stops pulling out the wire body 1411, the torsional spring 146 drives the rotary disc 147 to rotate in the reverse direction (for example, clockwise), and the end of the clamping block 148 is guided by the side wall of the guide groove 147b to enter the limiting groove 147a, thereby achieving the clamping of the wire body 1411; when the user continues to pull out the wire body 1411, the rotary disc 147 continues to rotate in the original direction (for example, counterclockwise), and the end of the clamping block 148 exits the limiting groove 147a and enters the guide groove 147b, so that the wire body 1411 can continue to be pulled out. It can be understood that the above functions can be achieved by designing the depth and width of the guide groove 147b and the limiting groove 147a, and the present application will not be described again.

[0045] When the user pulls out the wire body 1411 from the shell 143 and drives the rotary disc 147 to rotate, the end of the clamping block 148 moves to the clamping stop position 1471 along the guide groove 147b. At this time, if the user does not continue to pull out the wire body 1411, the end of the clamping block 148 is abutted against the groove wall of the limiting groove 147a under the action of the torsional spring 146, and the rotary disc 147 does not continue to rotate, thereby achieving the clamping effect of the wire body 1411; when the user continues to pull out the wire body 1411 from the shell 143 and drives the rotary disc 147 to rotate, the clamping block 148 rotates relative to the shell 143 and retreats to the guide groove 147b, and can switch to the guide groove 147b to continue to move along the guide groove 147b, that is, to reach the unlocking position 1473, and the rotary disc 147 can continue to rotate and make the wire body 1411 continuously extend out of the shell 143, or the wire body 1411 can be gradually wound into the shell 143. The cooperation of the clamping block 148 and the rotary disc 147 can achieve the clamping and automatic winding effects of the wire body 1411, and improve the convenience of use. Moreover, the rotary disc 147 can be provided with two or more clamping stop positions 1471 and unlocking positions 1473, and the clamping stop positions 1471 and the unlocking positions 1473 can be one-to-one corresponding, so as to facilitate the clamping effect when the wire body 1411 extends out by different lengths.

[0046] Of course, in other embodiments, other structures can be used to replace the clamping effect of the clamping block 148 on the wire body 1411. For example, the outdoor lamp 100 can include a limiting member (not shown) movably coupled to the shell assembly 110. The limiting member has a first state and a second state. In the first state, the wire body 1411 can be pulled out of or retracted into the shell assembly 110. In the second state, the limiting member abuts against the wire body 1411 and limits the movement of the wire body 1411 relative to the shell assembly 110.

[0047] For example, the limiting member is slidingly coupled to the shell assembly 110, and the sliding movement of the limiting member relative to the shell assembly 110 has appropriate damping to prevent the limiting member from easily returning. During the process of pulling out the wire body 1411 by the user, when it is necessary to clamp the wire body 1411, the limiting member is pushed to slide relative to the shell assembly 110 to abut against the wire body 1411, i.e., to reach the second state, so as to achieve the clamping of the wire body 1411 in the shell assembly 110. When the user needs to retract the wire body 1411 into the shell assembly 110, the limiting member is pushed in the opposite direction to the first state, and after the limiting member no longer abuts against the wire body 1411, the wire body 1411 can be retracted into the cover shell 143 under the action of the torsional spring 146 and the rotating disc 147.

[0048] For example, the limiting member is slidingly coupled to the shell assembly 110, and the sliding movement of the limiting member relative to the shell assembly 110 has appropriate damping to prevent the limiting member from easily returning. During the process of pulling out the wire body 1411 by the user, when it is necessary to clamp the wire body 1411, the limiting member is pushed to slide relative to the shell assembly 110 to abut against the wire body 1411, i.e., to reach the second state, so as to achieve the clamping of the wire body 1411 in the shell assembly 110. When the user needs to retract the wire body 1411 into the shell assembly 110, the limiting member is pushed in the opposite direction to the first state, and after the limiting member no longer abuts against the wire body 1411, the wire body 1411 can be retracted into the cover shell 143 under the action of the torsional spring 146 and the rotating disc 147.

[0049] The above two types of limiting members can achieve the clamping of the wire body 1411, and in combination with the torsional spring 146, can achieve the automatic retraction effect and improve the convenience of use. In other embodiments, the limiting member can also have other structural forms to achieve the clamping effect on the wire body 1411.

[0050] It can be understood that the cover 143 of the retractable wire module 140 is not necessary, and can be omitted to simplify the structure of the outdoor lamp 100 and improve the compactness of the outdoor lamp 100. For example, the retractable wire module 140 includes a torsion spring 146 and a rotating disc 147 rotatably connected to the shell assembly 110 or the circuit board 150, a free end of the torsion spring 146 is connected to the rotating disc 147, and the other free end of the torsion spring 146 is fixed relative to the position of the circuit board 150. The wire body 1411 is arranged on the outer periphery of the torsion spring 146 and is directly electrically connected to the circuit board 150, for example, soldering or combined with a lead wire welding, or the electrical connection between the wire body 1411 and the circuit board 150 is realized through a contact pin and a ring conductor. The wire body 1411 can be clamped to the rotating disc 147, and in the process of pulling the wire body 1411 by the user, the rotating disc 147 is driven to rotate relative to the shell assembly 110 in a direction, for example, a clockwise direction, to gradually extend out of the shell assembly 110. In this process, the torsion spring 146 accumulates elastic potential energy, so that the rotating disc 147 has a tendency to rotate in the opposite direction. When the user no longer needs to supply power to the external electronic device through the outdoor lamp 100, the torsion spring 146 releases the elastic potential energy, and the wire body 1411 extending out of the shell assembly 110 is gradually wound into the shell assembly 110.

[0051] In this embodiment, the retractable wire module 140 can also include a clamping block 148 rotatably connected to the shell assembly 110 or the circuit board 150. The clamping principle, structure and unlocking principle, structure of the wire body 1411 can refer to the foregoing content, and will not be repeated here.

[0052] Of course, in this embodiment, the outdoor lamp 100 can also include a limiting piece movably fitted to the shell assembly 110. The limiting piece has a first state and a second state. In the first state, the wire body 1411 can be pulled out or retracted into the shell assembly 110. In the second state, the limiting piece abuts against the wire body 1411 and limits the movement of the wire body 1411 relative to the shell assembly 110. The clamping principle, structure and unlocking principle, structure of the wire body 1411 can also refer to the foregoing content, and will not be repeated here.

[0053] Reference Figure 6In some embodiments, the connector 1413 has a first position and a second position relative to the housing assembly 110, in the first position the wire body 1411 is received in the housing assembly 110 and the connector 1413 is at least partially received in the outlet 110a. In the second position, the wire body 1411 and the connector 1413 extend out of the housing assembly 110 for connection to an external electronic device. In other words, in the first position, the connector 1413 can partially protrude out of the outlet 110a, preventing the connector 1413 from extending out of the housing assembly 110 too much and causing inconvenience to the user, and also allowing the user to hold the connector 1413 with a finger and pull the connector 1413 and the wire body 1411 out of the housing assembly 110. Of course, in the first position, the connector 1413 can also be fully received in the outlet 110a.

[0054] Meanwhile, in combination Figure 7 and Figure 8 In this embodiment, the outdoor luminaire 100 can include a pop-up assembly 160 provided in the housing assembly 110, the pop-up assembly 160 being configured to be triggered to cause the connector 1413 in the first position to pop up out of the housing assembly 110 from the outlet 110a. Specifically, the pop-up assembly 160 can include a resilient member 161 provided in the housing assembly 110, and a slider 162 connected to the resilient member 161, in the process of switching the connector 1413 from the second position to the first position, the connector 1413 drives the slider 162 to move in the housing assembly 110 and be locked in the first position, and the resilient member 161 accumulates elastic potential energy, as shown in Figure 7 The slider 162 is configured to be triggered to be unlocked from the housing assembly 110, and the resilient member 161 can drive the slider 162 to pop up the connector 1413 out of the housing assembly 110, as shown in Figure 8 .

[0055] Specifically, in some embodiments, the pop-up assembly 160 includes a mounting seat 163 connected to the housing assembly 110, and a pull rod 164 rotatably connected to the mounting seat 163 at one end, the slider 162 is slidingly fitted to the mounting seat 163, one end of the resilient member 161 is connected to the mounting seat 163, and the other end is connected to the slider 162, the other end of the pull rod 164 is slidingly fitted to the slider 162. In the process of the connector 1413 being pressed into the outlet 110a and moving to the first position, the connector 1413 drives the slider 162 to move relative to the mounting seat 163 to cause the pull rod 164 to be engaged with the slider 162 in the first position; when the pull rod 164 is engaged with the slider 162, the connector 1413 is pushed inward along the outlet 110a, the pull rod 164 can be unlocked from the slider 162, and the resilient member 161 can push the connector 1413 out of the outlet 110a through the slider 162.

[0056] Specifically, the slider 162 may have a groove 165, which includes an entry groove 165a, an engagement groove 165b, and an exit groove 165c. The engagement groove 165b communicates with both the entry groove 165a and the exit groove 165c, and the exit groove 165c communicates with the entry groove 165a. The bottom wall of the entry groove 165a has multiple steps to increase the depth of the entry groove 165a from its entrance to the engagement groove 165b. The depth of the exit groove 165c is less than the depth of the engagement groove 165b, and the bottom wall of the exit groove 165c smoothly transitions to the bottom wall of the engagement groove 165b. The depth of the exit groove 165c is less than the depth of the entrance to the entry groove 165a, thereby preventing the free end of the pull rod 164 from being mistakenly pushed into the exit groove 165c at the entrance of the entry groove 165a. Pushing the connector 1413 inward along the outlet 110a, the free end of the pull rod 164 slides into the inlet of the inlet groove 165a and slides along the extension direction of the inlet groove 165a to slide into the engagement groove 165b. The pull rod 164 engages with the slider 162 in the engagement groove 165b, so that the slider 162 is locked to the mounting base 163, and the connector 1413 reaches the first position. When the pull rod 164 engages with the slider 162, pushing the connector 1413 inward along the outlet 110a, the pull rod 164 slides into the exit groove 165c and slides along the extension direction of the exit groove 165c towards the inlet of the inlet groove 165a. The elastic element 161 pushes the connector 1413 out of the outlet 110a through the slider 162.

[0057] In this pop-out component 160, during the process of the cable 1411 being housed in the housing component 110, the user pushes the connector 1413 into the cable outlet 110a. The stepped structure formed by the height difference between the connector 1413 and the cable 1411 can push the slider 162 to move, thereby causing the free end of the pull rod 164 to move in the slide groove 165 and engage with the engagement groove 165b. When the free end of the pull rod 164 is engaged with the engagement groove 165b, the connector 1413 reaches the first position, and the slider 162 is locked inside the housing component 110. The user can easily put the outdoor light fixture 100 into a bag or pocket, preventing the connector 1413 from hanging directly outside the housing component 110 and thus affecting the convenience of use. With this structural design, when the connector 1413 is in the first position, the housing component 110 can also protect the connector 1413, preventing it from being scratched or damaged due to accidental collisions.

[0058] When the user needs to use the docking head 1413 to supply power to an external electronic device, the docking head 1413 is pushed into the outlet 110a, and the step structure formed by the height difference between the docking head 1413 and the wire body 1411 can push the slider 162 to continue to move into the shell assembly 110, so that the free end of the pull rod 164 moves out of the clamping groove 165b and moves to the exit groove 165c; under the action of the restoring force of the elastic member 161, the slider 162 is driven by the elastic member 161 to reset, thereby pushing the docking head 1413 to move out of the outlet 110a, that is, the function of the docking head 1413 popping out of the shell assembly 110 is realized. When the slider 162 resets to the initial position, it can be considered that the docking head 1413 has moved to the second position, and the user can conveniently hold the docking head 1413 and pull the wire body 1411 out of the shell assembly 110, thereby docking the docking head 1413 to the external electronic device to supply power to the external electronic device.

[0059] Reference Figure 9 and Figure 10 In some other embodiments, the slider 162 has an integrally formed body 1621 and a stop portion 1623, the elastic member 161 is connected to the body 1621, and the ejection assembly 160 includes a mounting box 166 fixed relative to the shell assembly 110 and a clamping jaw 167 movably arranged in the mounting box 166. In the process of switching the docking head 1413 from the second position to the first position, the docking head 1413 drives the slider 162 to move in the shell assembly 110 and makes the stop portion 1623 pass the clamping jaw 167, and the clamping jaw 167 and the stop portion 1623 are locked at the first position, thereby positioning the docking head 1413 at the first position. The clamping jaw 167 can be driven to open to drive the stop portion 1623 out of the clamping jaw 167 by the elastic member 161, and drive the slider 162 to eject the docking head 1413 out of the shell assembly 110. The mounting box 166 can be provided with a spring or other structure inside, or the clamping jaw 167 can cooperate with a torsion spring 146 or other structure, so that the clamping jaw 167 has a tendency to keep closing, so as to reliably keep the stop portion 1623 of the slider 162 in the clamping jaw 167 at the first position. By means of an exposed button or a pull cord or other structure, the clamping jaw 167 is driven to open, and the elastic member 161 can reset the slider 162, thereby pushing the docking head 1413 out of the shell assembly 110 by the slider 162.

[0060] Reference Figure 11In some embodiments, the adapter 1413 can be located entirely outside the shell assembly 110 in a state where the adapter 1413 is not in use. The outdoor lamp 100 can include a decorative ring 170 that is disposed in the wire outlet 110a and is limited to the shell assembly 110. The decorative ring 170 has a through hole for the wire body 1411 to pass through, and the width of the through hole is smaller than the width of the adapter 1413. Alternatively, the cross-sectional area of the through hole is smaller than the cross-sectional area of the adapter 1413. The through hole allows the wire body 1411 to freely expand and contract, but limits the adapter 1413 from entering the shell assembly 110, and appropriately blocks the wire outlet 110a to prevent dust or liquid droplets from easily entering the excessively large wire outlet 110a, thereby achieving a certain waterproof and dustproof effect, and preventing the excessively large wire outlet 110a from damaging the overall appearance of the shell assembly 110, that is, improving the overall appearance of the shell assembly 110.

[0061] In this embodiment, the decorative ring 170 can be in the form of an open ring. The open ring-shaped decorative ring 170, which is not limited to metal (such as stainless steel), silicone, or rubber, can be conveniently sleeved on the outer periphery of the wire body 1411. During the assembly of the stretchable wire module 140 and the shell assembly 110, the adapter 1413 passes through the wire outlet 110a from the inside of the shell assembly 110 to the outside of the shell assembly 110. The decorative ring 170 sleeved on the wire body 1411 can be moved to the position of the wire outlet 110a and is riveted, adhered, or clamped and fixed on the shell assembly 110 at the wire outlet 110a, thereby ensuring the stability of the connection between the decorative ring 170 and the shell assembly 110. Of course, in other embodiments, the decorative ring 170 can be a circumferentially closed ring structure, and the material thereof can be elastic silicone or rubber. By stretching the decorative ring 170, the decorative ring 170 can be deformed to conveniently pass through the adapter 1413, and the decorative ring 170 can be sleeved on the wire body 1411 to achieve the limiting of the decorative ring 170 and the shell assembly 110 at the wire outlet 110a.

[0062] Further, with reference to Figure 11 In some embodiments, the shell assembly 110 has a sink 110c that is in communication with the wire outlet 110a. The wire outlet 110a is opened at the bottom of the sink 110c, and the wire body 1411 can be bent to limit the adapter 1413 in the sink 110c. For example, the outdoor lamp 100 can include a magnetic member 181 that is connected to the shell assembly 110 and is disposed corresponding to the bottom of the sink 110c. The adapter 1413 has a matching member 183 that is used to magnetically match the magnetic member 181 to adsorb the adapter 1413 to the bottom of the sink 110c. Further, one of the thickness directions of the adapter 1413 can be attached to the bottom of the sink 110c. The surface has a relatively large area, and the depth of the sink 110c does not have to be too large to avoid excessive impact on the overall appearance of the shell assembly 110.

[0063] One of the magnetic attraction member 181 and the mating member 183 is a magnet, and the other is a magnet or a ferromagnetic metal member such as iron, cobalt, nickel and alloys thereof. By using the magnetic attraction and cooperation of the magnetic attraction member 181 and the mating member 183, the butt joint 1413 after the bending of the wire body 1411 can be reliably limited in the sink 110c, avoiding the butt joint 1413 from extending out of the shell assembly 110 and adversely affecting the normal use. Of course, it can be understood that it is relatively easy to achieve by providing a ferromagnetic metal member on the butt joint 1413 and a magnet on the shell assembly 110, for example, by covering the outer periphery of the butt joint 1413 with a ferromagnetic metal member.

[0064] Of course, there are more than one way to limit the butt joint 1413 in the sink 110c, for example, the sink wall of the sink 110c can have a clamping part for directly clamping and limiting the butt joint 1413 in the sink 110c. In other words, in this embodiment, the side wall of the sink 110c or the two sides of the butt joint 1413 can be provided with a clamping structure that can be extruded and deformed, and in the process of pressing the butt joint 1413 into the sink 110c, the clamping structure is deformed so that the butt joint 1413 is clamped into the sink 110c. This way can also achieve the reliable limitation of the butt joint 1413 in the sink 110c, and when needed, the butt joint 1413 can be easily taken out of the sink 110c, and the wire body 1411 can be pulled out of the shell assembly 110.

[0065] The above outdoor lamp 100, when the user carries the outdoor lamp 100 and has a charging demand, can pull out the cable 141 of the telescopic wire module 140 from the shell assembly 110 of the outdoor lamp 100 and connect to an external electronic device such as a mobile phone, and supply power to the external electronic device through the power supply module 130 of the outdoor lamp 100 to realize the charging function, so that there is no need to carry a mobile power supply and a charging cable additionally, improving the convenience of use. When the external electronic device does not have a charging battery, the user can also use the power supply module 130 of the outdoor lamp 100 to supply power to the external electronic device. When the user no longer needs to supply power to the external electronic device through the outdoor lamp 100, the cable 141 of the telescopic wire module 140 can be stored in the shell assembly 110, and the outdoor lamp 100 can still maintain a relatively simple appearance, which is convenient for the user to carry and improves the convenience of use. Since the width of the butt joint 1413 is not greater than the width of the outlet 110a, during the assembly of the telescopic wire module 140 and the shell assembly 110, the butt joint 1413 can be pulled out from the shell assembly 110, thereby ensuring the smooth assembly of the telescopic wire module 140 and the shell assembly 110.

[0066] Continuing to refer to Figure 11The shell assembly 110 can include a base 111 and a support 113 capable of lifting movement relative to the base 111, the light-emitting module 120 is arranged at one end of the support 113 away from the base 111, and the power supply module 130 and the retractable wire module 140 are arranged on the base 111. The base 111 is in a hollow cylindrical shape, and the power supply module 130, the circuit board 150, and the retractable wire module 140 can be arranged in the base 111. The base 111 has the wire outlet 110a described above, and structures such as the sink 110c and the magnetic attraction piece 181 can be arranged on the base 111. After the support 113 moves up and down relative to the base 111, the height of the light-emitting module 120 relative to the supporting surface such as the desktop or the ground can be adjusted, that is, the height of the light emitted by the light-emitting module 120 is adjusted, thereby improving the convenience of use. For example, in an outdoor environment such as camping, the user can also adjust the height of the light-emitting module 120 relative to the supporting surface such as the ground by the support 113, thereby improving the convenience of use. In some embodiments, the light-emitting module 120 can also be hinged to the support 113 to realize the pitching rotation relative to the support 113, so as to adjust the pitch angle of the light-emitting module 120, further realize the flexible adjustment of the lighting angle, and improve the convenience of use.

[0067] Second embodiment

[0068] Reference Figure 12 and Figure 13 In the second embodiment of the present application, the outdoor lamp 200 includes a shell assembly 210, a light-emitting module 220, a power supply module 230, a retractable wire module 240, and a circuit board 250, and the light-emitting module 220 is arranged in the shell assembly 210. The light-emitting module 220, the power supply module 230, and the retractable wire module 240 are respectively electrically connected with the circuit board 250, the power supply module 230 is arranged in the shell assembly 210 and is used to supply power to the light-emitting module 220. The retractable wire module 240 is arranged in the shell assembly 210 and includes a wire 241 capable of retracting relative to the shell assembly 210, the wire 241 can be accommodated in the shell assembly 210 and can be pulled out of the shell assembly 210 and connected to an external electronic device to supply power to the external electronic device by the power supply module 230. In some embodiments, the wire 241 can be wound and accommodated in the shell assembly 210 to realize the hiding effect of the wire 241, so that the outdoor lamp 200 maintains a relatively simple appearance, avoids the inconvenience caused to the user by the wire 241 during the carrying process or when not in use, for example, avoids the wire 241 from being wound with other articles. When the user needs to supply power to the external electronic device such as a mobile phone, the wire 241 of the retractable wire module 240 can be pulled out of the shell assembly 210 and connected to the external electronic device, and the power supply module 230 of the outdoor lamp 200 is used to supply power to these external electronic devices, for example, to charge the mobile phone, thereby improving the convenience of use.

[0069] Different from the first embodiment, in the second embodiment, the shell assembly 210 can include a first shell 211 and a second shell 213 connected to the first shell 211, the first shell 211 and the second shell 213 enclose the wire outlet 210a, and the width of the connector 2411 is greater than the width of the wire outlet 210a. Alternatively, the first shell 211 and the second shell 213 have a parting surface, and are assembled to form the wire outlet 210a. The width of the wire outlet 210a can be less than the width of the connector 2411, for example, the cross-sectional area of the wire outlet 210a is less than the cross-sectional area of the connector 2411, and the cross-sectional area of the wire outlet 210a can be equivalent to the cross-sectional area of the wire body 2413 so that the wire body 2413 can be extended out of the shell assembly 210. In other words, in this embodiment, the width of the wire outlet 210a is not required to be greater than or equal to the width of the connector 2411, and the wire outlet 210a can be relatively small to reduce the damage to the overall appearance of the shell assembly 210, while reducing the probability of dust and liquid droplets entering the shell assembly 210 from the wire outlet 210a. In this embodiment, the first shell 211 and the second shell 213 can be assembled by abutting, such as buckling or clamping or bonding, to enclose the wire outlet 210a. During the assembly of the retractable wire module 240 and the shell assembly 210, only the wire body 2413 needs to be arranged at the wire outlet 210a, and the first shell 211 and the second shell 213 are assembled by abutting, thereby ensuring the smooth assembly of the retractable wire module 240 and the shell assembly 210, and improving the assembly efficiency.

[0070] Reference Figure 13 In some embodiments, the first shell 211 has a first notch 2111, and the second shell 213 has a second notch 2131, and the first notch 2111 and the second notch 2131 abut to enclose the wire outlet 210a. In this embodiment, the first notch 2111 and the second notch 2131 can be mirror-symmetrically arranged with respect to the parting surface to obtain a more coordinated appearance of the shell assembly 210. In other embodiments, the length of the first notch 2111 or the distance of the end thereof from the parting surface can be greater than the length of the second notch 2131, or the second notch 2131 can be omitted, that is, the second shell 213 can be connected to the first shell 211 by the straight edge at the parting surface to form the wire outlet 210a and realize the smooth assembly of the retractable wire module 240 in the shell assembly 210.

[0071] When the user carries the outdoor lamp 200 and has a charging demand, the wire body 2413 of the telescopic wire module 240 can be pulled out of the shell assembly 210 of the outdoor lamp 200, and the connector 2411 can be connected to an external electronic device such as a mobile phone, so that the external electronic device is powered by the power supply module 230 of the outdoor lamp 200 to realize the charging function, thereby eliminating the need to additionally carry a power bank and a charging wire, and improving the convenience of use. When the external electronic device does not have a charging battery, the user can also use the power supply module 230 of the outdoor lamp 200 to power the external electronic device. When the user no longer needs to power the external electronic device by the outdoor lamp 200, the wire body 2413 of the telescopic wire module 240 can be stored in the shell assembly 210, and the outdoor lamp 200 can still maintain a relatively simple appearance, which is convenient for the user to carry and improves the convenience of use. Since the width of the connector 2411 is greater than the width of the wire outlet 210a, the first shell 211 and the second shell 213 surround to form the wire outlet 210a. During assembly of the telescopic wire module 240 and the shell assembly 210, the wire body 2413 is arranged at the wire outlet 210a between the first shell 211 and the second shell 213, and then the first shell 211 and the second shell 213 are assembled and fixed, so as to ensure smooth assembly of the telescopic wire module 240 and the shell assembly 210.

[0072] Of course, in the second embodiment, the first shell 211 and the second shell 213 can also surround to form a sink groove 210c in communication with the wire outlet 210a, and the wire outlet 210a is arranged at the groove bottom of the sink groove 210c, and the wire body 2413 can be bent to limit the connector 2411 to the groove bottom of the sink groove 210c. For example, the outdoor lamp 200 can include a magnetic member 261 connected to the shell assembly 210 and arranged corresponding to the groove bottom of the sink groove 210c, and the connector 2411 has a matching member 263 for magnetic matching with the magnetic member 261 to attract the connector 2411 to the groove bottom of the sink groove 210c. Further, one of the thickness directions of the connector 2411 can be attached to the groove bottom of the sink groove 210c, and the surface has a relatively large area, and the depth of the sink groove 210c does not have to be too large, so as to avoid too much impact on the overall appearance of the shell assembly 210.

[0073] One of the magnetic member 261 and the matching member 263 is a magnet, and the other is a magnet or a ferromagnetic metal member such as iron, cobalt, nickel and their alloys. By using the magnetic matching of the magnetic member 261 and the matching member 263, the connector 2411 after being bent can be reliably limited to the sink groove 210c, so as to avoid the connector 2411 hanging outside the shell assembly 210 and adversely affecting the normal use. Of course, it can be understood that it is relatively easy to realize that the ferromagnetic metal member is arranged on the connector 2411 and the magnet is arranged on the shell assembly 210, for example, the ferromagnetic metal member can be wrapped around the outer periphery of the connector 2411.

[0074] Of course, there are more than one way to limit the adapter 2411 in the sink 210c, for example, the sink wall of the sink 210c can have a clamping part for directly clamping the adapter 2411 in the sink 210c. In other words, in this embodiment, the side wall of the sink 210c or the two sides of the adapter 2411 can be provided with a clamping structure that can be extruded and deformed, and in the process of pressing the adapter 2411 into the sink 210c, the clamping structure is deformed so that the adapter 2411 is clamped into the sink 210c. This way can also achieve that the adapter 2411 is reliably limited in the sink 210c, and when needed, the adapter 2411 can be easily taken out of the sink 210c, and the wire body 2413 can be pulled out of the shell assembly 210, the structure and function of the sink 210c can refer to the first embodiment, which will not be repeated here.

[0075] The other structures of the outdoor lamp 200 can refer to the first embodiment of the present application, which will not be repeated here.

[0076] Third Embodiment

[0077] Reference Figure 14 and Figure 15 In the third embodiment of the present application, the outdoor lamp 300 includes a shell assembly 310, a light emitting module 320, a power supply module 330, a retractable wire module 340 and a circuit board 350, and the light emitting module 320 is arranged in the shell assembly 310. The light emitting module 320, the power supply module 330 and the retractable wire module 340 can be electrically connected to the circuit board 350 respectively, and the power supply module 330 is arranged in the shell assembly 310 and is used to supply power to the light emitting module 320. The retractable wire module 340 is arranged in the shell assembly 310 and includes a cable 341 that can be retracted relative to the shell assembly 310, the cable 341 can be stored in the shell assembly 310 and can be pulled out of the shell assembly 310 and connected to an external electronic device to supply power to the external electronic device through the power supply module 330. In some embodiments, the cable 341 can be wound and stored in the shell assembly 310 to achieve the hiding effect of the cable 341, so that the outdoor lamp 300 maintains a relatively simple appearance, avoiding the inconvenience caused by the cable 341 to the user during normal use, such as avoiding the cable 341 from being entangled with other items during transportation or when not in use. When the user needs to supply power to the mobile phone and other external electronic devices, the cable 341 of the retractable wire module 340 can be pulled out of the shell assembly 310 and connected to the external electronic device, and the power supply module 330 of the outdoor lamp 300 is used to supply power to these external electronic devices, such as charging the mobile phone, to improve the convenience of use.

[0078] The shell assembly 310 has a wire outlet 310a, and the width of the docking head 3411 is not greater than the width of the wire outlet 310a. The wire body 3413 of the retractable wire module 340 can be retracted into the wire outlet 310a to be accommodated in the shell assembly 310, or can be extended out of the shell assembly 310 to dock the docking head 3411 to an external electronic device and supply power to the external electronic device through the power supply module 330. In some embodiments, the wire body 3413 can be wound and accommodated in the shell assembly 310 to achieve a hidden effect of the wire body 3413, so that the outdoor lamp 300 maintains a relatively simple appearance and avoids inconvenience to users in daily use. When the user needs to supply power to a mobile phone or other external electronic device, the wire body 3413 of the retractable wire module 340 can be pulled out of the shell assembly 310 and docked to the external electronic device through the docking head 3411, and the external electronic device is supplied with power through the power supply module 330 of the outdoor lamp 300, for example, the mobile phone is charged. The docking head 3411 is not limited to a Type-C interface, or a Micro-USB interface, or a Lightning interface, or a magnetic charging interface, and the like, which will not be described here.

[0079] In the present embodiment, the width of the docking head 3411 is not greater than the width of the wire outlet 310a, which can be understood as the cross-sectional area of the docking head 3411 being not greater than the cross-sectional area of the wire outlet 310a, so that the docking head 3411 can be extended out of the wire outlet 310a from the shell assembly 310 during assembly, thereby realizing the extension of the docking head 3411 out of the shell assembly 310 after the retractable wire module 340 is assembled in the shell assembly 310, and ensuring the smoothness of the assembly of the retractable module and the shell assembly 310. It can be understood that the width of the wire outlet 310a is equal to or slightly greater than the width of the docking head 3411, or the cross-sectional area of the wire outlet 310a is equal to or slightly greater than the cross-sectional area of the docking head 3411, thereby preventing the opening of a too large wire outlet 310a in the shell assembly 310 from causing great damage to the overall appearance of the shell assembly 310.

[0080] Reference Figure 16 In the third embodiment of the present application, the outdoor lamp 300 can include a decorative ring 370, which is arranged in the wire outlet 310a and limited in the shell assembly 310. The decorative ring 370 has a through hole for passing the wire body 3413, and the width of the through hole is smaller than the width of the docking head 3411. Or, the cross-sectional area of the through hole is smaller than the cross-sectional area of the docking head 3411, and the through hole can allow the wire body 3413 to freely retract and extend, but restricts the docking head 3411 from being accommodated in the shell assembly 310, and appropriately seals the wire outlet 310a to prevent too large wire outlet 310a from easily entering dust or liquid droplets, thereby achieving a certain waterproof and dustproof effect, and preventing the too large wire outlet 310a from damaging the overall appearance of the shell assembly 310, i.e., improving the overall appearance of the shell assembly 310.

[0081] Reference is made to Figure 17 and Figure 18 In the third embodiment of the present application, the outdoor lamp 300 can comprise a pop-up assembly 380 disposed on the shell assembly 310. The connector 3411 can be partially or wholly received into the shell assembly 310. The pop-up assembly 380 is configured to be triggered to enable the connector 1413 to pop up from the outlet 310a of the shell assembly 310. Specifically, the detailed structure and working principle of the pop-up assembly 380 can refer to the first embodiment of the present application, which will not be described herein again.

[0082] The difference from the first embodiment is that the outdoor lamp 300 comprises a hanging piece 360 connected to the shell assembly 310, and the hanging piece 360 and the shell assembly 310 form a hanging space for hanging to an external support. In some embodiments, the hanging piece 360 is in the shape of a half-ring belt and can swing relative to the shell assembly 310 to hang the entire outdoor lamp 300 to the hook of the external support, such as a tent or a wall, through the hanging space, improving the convenience of use. Of course, the hanging space can also be used to pass the user's fingers to facilitate lifting or putting down the outdoor lamp 300, improving the convenience of use.

[0083] The other structures of the outdoor lamp 300 can refer to the first embodiment of the present application, which will not be described herein again.

[0084] Fourth Embodiment

[0085] Reference is made to Figure 19 and Figure 20In the fourth embodiment of the present application, the outdoor lamp 400 includes a shell assembly 410, a light-emitting module 420, a power supply module 430, a retractable wire module 440, and a circuit board 450. The light-emitting module 420 is arranged in the shell assembly 410. The light-emitting module 420, the power supply module 430, and the retractable wire module 440 can be electrically connected to the circuit board 450, respectively. The power supply module 430 is arranged in the shell assembly 410 and is used to supply power to the light-emitting module 420. The retractable wire module 440 is arranged in the shell assembly 410 and includes a wire cable 441 that can be retracted relative to the shell assembly 410. The wire cable 441 can be accommodated in the shell assembly 410 and can be pulled out of the shell assembly 410 and connected to an external electronic device to supply power to the external electronic device by the power supply module 430. In some embodiments, the wire cable 441 can be wound and accommodated in the shell assembly 410 to achieve a hiding effect of the wire cable 441, so that the outdoor lamp 400 maintains a relatively simple appearance and avoids inconvenience to users in daily use, for example, avoiding the wire cable 441 from being entangled with other objects during the moving process or when not in use. When the user needs to supply power to a mobile phone or other external electronic devices, the wire cable 441 of the retractable wire module 440 can be pulled out of the shell assembly 410 and connected to the external electronic device to supply power to the external electronic device by the power supply module 430 of the outdoor lamp 400, for example, to charge the mobile phone, thereby improving the convenience of use.

[0086] The shell assembly 410 has a wire outlet 410a, and the width of the connector 3411 is not greater than the width of the wire outlet 410a. The wire body 4413 of the retractable wire module 440 can be retracted into the wire outlet 410a to be accommodated in the shell assembly 410 or extended out of the shell assembly 410 to connect the connector 4411 to an external electronic device and supply power to the external electronic device by the power supply module 430. In some embodiments, the wire body 4413 can be wound and accommodated in the shell assembly 410 to achieve a hiding effect of the wire body 4413, so that the outdoor lamp 400 maintains a relatively simple appearance and avoids inconvenience to users in daily use. When the user needs to supply power to a mobile phone or other external electronic devices, the wire body 4413 of the retractable wire module 440 can be pulled out of the shell assembly 410 and connected to the external electronic device by the connector 4411 to supply power to the external electronic device by the power supply module 430 of the outdoor lamp 400, for example, to charge the mobile phone. The connector 4411 is not limited to a Type-C interface, or a Micro-USB interface, or a Lightning interface, or a magnetic charging interface, and the like, which will not be described here.

[0087] In the present embodiment, the outdoor lamp 400 also comprises a hanging member 460 connected to the shell assembly 410, the hanging member 460 and the shell assembly 410 form a hanging space for hanging to an external support. In some embodiments, the hanging member 460 is in a semi-loop shape, and can swing relative to the shell assembly 410 to hang the entire outdoor lamp 400 to the hook of an external support such as a tent or a wall through the hanging space, improving the convenience of use. Of course, the hanging space can also be used to pass the user's fingers to facilitate lifting or lowering the outdoor lamp 400, improving the convenience of use.

[0088] Different from the third embodiment, in the fourth embodiment, the shell assembly 410 can comprise a first shell 411 and a second shell 413 connected to the first shell 411, the first shell 411 and the second shell 413 enclose the wire outlet 410a, and the width of the adapter 4411 is greater than the width of the wire outlet 410a. In other words, the first shell 411 and the second shell 413 have a parting surface, and are assembled to form the wire outlet 410a. The width of the wire outlet 410a can be smaller than the width of the adapter 4411, for example, the cross-sectional area of the wire outlet 410a is smaller than the cross-sectional area of the adapter 4411, and the cross-sectional area of the wire outlet 410a can be comparable to the cross-sectional area of the wire body 4413 so that the wire body 4413 can be extended out of the shell assembly 410. In other words, in this embodiment, it is not required that the width of the wire outlet 410a is greater than or equal to the width of the adapter 4411, and the wire outlet 410a can be relatively small to reduce the damage to the overall appearance of the shell assembly 410, while reducing the probability of dust and liquid droplets entering the shell assembly 410 from the wire outlet 410a. In this embodiment, the first shell 411 and the second shell 413 can be abutted and assembled, for example, buckled or clamped or bonded and fixed, to enclose the wire outlet 410a. During the assembly of the retractable wire module 440 and the shell assembly 410, only the wire body 4413 needs to be passed through the wire outlet 410a, and the first shell 411 and the second shell 413 are abutted and assembled, so as to ensure the smooth assembly of the retractable wire module 440 and the shell assembly 410, improving the efficiency of assembly. The specific structure of the first shell 411 and the second shell 413 enclosing the wire outlet 410a can refer to the second embodiment of the present application, which will not be described here.

[0089] In the fourth embodiment, the first shell 411 and the second shell 413 can also enclose a sink 410c in communication with the outlet 410a, and through the magnetic attraction of the magnetic attraction member and the matching member, the butt joint 4411 of the wire body 4413 after bending can be reliably limited in the sink 410c, avoiding the butt joint 4411 to be drooping outside the shell assembly 410 and causing adverse effects on normal use. Of course, the sink 410c can have a clamping part on the wall of the sink, which can be used to directly clamp and limit the butt joint 4411 in the sink 410c. The specific structure and working principle can refer to the first embodiment, and will not be described here.

[0090] The technical features of the above-mentioned embodiments can be combined arbitrarily. In order to make the description simple, all possible combinations of the technical features in the above-mentioned embodiments are not described, but as long as the combination of the technical features does not exist contradictory, it should be considered as the scope of the description.

[0091] The above-mentioned embodiments only express several implementation manners of the present application, and the description is more specific and detailed, but it should not be understood as a limitation on the scope of the patent. It should be pointed out that for ordinary skilled in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which belong to the protection scope of the present application. Therefore, the protection scope of the patent of the present application should be subject to the appended claims.

Claims

1. An outdoor lighting fixture, characterized in that, include: Shell assembly; The light-emitting module is disposed on the shell assembly; A power supply module is disposed within the housing assembly and is used to supply power to the light-emitting module; as well as A telescopic cable module is disposed on the housing assembly and includes a cable that can be telescopic relative to the housing assembly. The cable can be stored in the housing assembly and can be pulled out of the housing assembly and connected to an external electronic device to supply power to the external electronic device through the power module.

2. The outdoor lighting fixture according to claim 1, characterized in that, The cable includes a wire body and a connector connected to one end of the wire body. The housing assembly has a cable outlet, and the width of the connector is not greater than the width of the cable outlet. The wire body can be retracted into the cable outlet to be housed inside the housing assembly, or extend outside the housing assembly to connect the connector to an external electronic device.

3. The outdoor lighting fixture according to claim 2, characterized in that, The connector has a first position and a second position relative to the housing assembly. In the first position, the cable is housed within the housing assembly, and the connector is at least partially housed within the outlet. In the second position, the cable and the connector extend out of the housing assembly for docking with the external electronic device.

4. The outdoor lighting fixture according to claim 3, characterized in that, The outdoor lighting fixture includes a pop-out component disposed on the housing assembly, the pop-out component being triggered to cause the connector in a first position to pop out of the housing assembly from the outlet.

5. The outdoor lighting fixture according to claim 4, characterized in that, The pop-out component includes an elastic element disposed within the shell assembly and a slider connected to the elastic element. During the process of the connector switching from the second position to the first position, the connector drives the slider to move within the shell assembly and lock it in the first position, and the elastic element accumulates elastic potential energy. The slider is used to be triggered to unlock from the shell assembly, and the elastic element drives the slider to cause the connector to pop out of the shell assembly.

6. The outdoor lighting fixture according to claim 5, characterized in that, The pop-out component includes a mounting base connected to the shell component, and a pull rod rotatably connected to the mounting base at one end. The slider is slidably engaged with the mounting base. One end of the elastic element is connected to the mounting base, and the other end of the elastic element is connected to the slider. The other end of the pull rod is slidably engaged with the slider. During the process of the connector being pressed into the outlet and moving to the first position, the connector drives the slider to move relative to the mounting base so that the pull rod engages with the slider at the first position; when the pull rod engages with the slider, the connector is pushed inward along the outlet, the pull rod can unlock from the slider, and the elastic element pushes the connector out of the outlet through the slider.

7. The outdoor lighting fixture according to claim 5, characterized in that, The slider has an integrally formed body and a stop portion. The elastic element is connected to the body. The pop-out assembly includes a mounting box that is fixed relative to the position of the shell assembly, and a pawl movably disposed in the mounting box. During the process of the connector switching from the second position to the first position, the connector drives the slider to move within the shell assembly and causes the stop portion to pass over the pawl. At the first position, the pawl locks with the stop portion. The pawl can be driven to open so that the elastic element drives the stop portion to disengage from the pawl, and drives the slider to pop the connector out of the shell assembly.

8. The outdoor lighting fixture according to claim 2, characterized in that, The outdoor lighting fixture includes a decorative ring that passes through the outlet and is confined within the housing assembly. The decorative ring has a through hole for passing through the wire, and the width of the through hole is smaller than the width of the connector.

9. The outdoor lighting fixture according to claim 8, characterized in that, The decorative ring is in the shape of an open loop.

10. The outdoor lighting fixture according to claim 2, characterized in that, The housing assembly has a recessed groove communicating with the outlet, the outlet being located at the bottom of the recessed groove, and the cable being bendable so that the connector is confined within the recessed groove.

11. The outdoor lighting fixture according to claim 10, characterized in that, The outdoor light fixture includes a magnetic component, which is connected to the housing assembly and is disposed corresponding to the bottom of the sink. The connector has a mating part, which is used to magnetically engage with the magnetic component to attach the connector to the bottom of the sink.

12. The outdoor lighting fixture according to claim 10, characterized in that, The wall of the settling tank has a retaining part for locking and limiting the mating joint within the settling tank.

13. The outdoor lighting fixture according to claim 1, characterized in that, The cable includes a wire body and a connector connected to one end of the wire body. The housing assembly includes a first housing and a second housing connected to the first housing. The first housing and the second housing together form an outlet. The width of the connector is greater than the width of the outlet. The wire body can be retracted into the outlet to be housed inside the housing assembly, or extend outside the housing assembly to connect the connector to an external electronic device.

14. The outdoor lighting fixture according to claim 13, characterized in that, The first housing has a first notch, and the second housing has a second notch. The first notch and the second notch are joined together to form the outlet.

15. The outdoor lighting fixture according to claim 14, characterized in that, The first housing and the second housing together form a sinkhole that communicates with the outlet. The outlet is located at the bottom of the sinkhole. The cable can be bent so that the connector is confined within the sinkhole.

16. The outdoor lighting fixture according to claim 15, characterized in that, The outdoor lighting fixture includes a magnetic component, which is connected to at least one of the first housing and the second housing and is disposed corresponding to the bottom of the sink. The connector has a mating part, which is used to magnetically engage with the magnetic component to attach the connector to the bottom of the sink.

17. The outdoor lighting fixture according to claim 15, characterized in that, The wall of the settling tank has a retaining part for locking and limiting the mating joint within the settling tank.

18. The outdoor lighting fixture according to any one of claims 1-17, characterized in that, The outdoor lighting fixture includes a circuit board disposed within the housing assembly, the telescopic cable module includes a cover disposed within the housing assembly, the light-emitting module, the power supply module and the cable are electrically connected to the circuit board respectively, the cover and the circuit board are fixed in relative position, and the cable is telescopically disposed within the cover.

19. The outdoor lighting fixture according to claim 18, characterized in that, The outdoor lighting fixture includes a limiting member that is movably fitted to one of the housing assembly and the cover. The limiting member has an unlock position and a stop position. In the unlock position, the cable can be pulled out or retracted into the cover. In the unlock position, the limiting member restricts the movement of the cable relative to the housing assembly.

20. The outdoor lighting fixture according to any one of claims 1-17, characterized in that, The shell assembly includes a base and a support member that can move up and down relative to the base. The light-emitting module is located at the end of the support member away from the base, and the power module and the telescopic cable module are located on the base.

21. The outdoor lighting fixture according to any one of claims 1-17, characterized in that, The outdoor lighting fixture includes a suspension member connected to the housing assembly, the suspension member and the housing assembly forming a suspension space for suspending to an external support.