Unmanned aerial vehicle shielding device backpack and unmanned aerial vehicle shielding device
By designing a backpack for the drone jammer, it is possible to operate the switch components and perform detection while carrying the device without removing the main unit, solving the problems of complex operation and poor maneuverability of existing drone jammers and improving the ease of operation and detection efficiency.
Patent Information
- Application Number
- CN202422486533.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-15
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2034-10-15
AI Technical Summary
Existing drone jammers are complicated to operate during operation, requiring the main unit to be removed, and have poor maneuverability, making it difficult to effectively detect other locations at close range.
A drone shield backpack is designed. A accommodating cavity is provided in the backpack body. The first opening faces the switch assembly and can be opened and closed by a first opening and closing piece. The first storage bag is used to insert the antenna. The operator can operate the switch assembly through the opening and closing piece without taking out the host, and carry the host and antenna on the backpack for detection.
It simplifies the operating process, improves the maneuverability of the drone jammer, and makes detection at other locations at close range more convenient and efficient.
Smart Images

Figure CN223322257U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of unmanned aerial vehicle (UAV) shielding devices, in particular to a UAV shielding device backpack and a UAV shielding device. Background Art
[0002] With the rapid development of drone technology, its application in various fields is becoming more and more extensive, but it also brings many safety risks. As an efficient and convenient drone defense tool, drone jammers are used to interfere with and control drones.
[0003] Existing drone jammers consist of a backpack, a main unit, and an antenna. The main unit is placed inside the backpack, and the antenna is electrically connected to the main unit, transmitting detection and jamming signals. To operate the drone jammer, the main unit must be removed from the backpack, and then a switch assembly must be operated to activate the main unit or switch the antenna's jamming frequency band. This setup complicates the operation by requiring the operator to remove the main unit. Furthermore, when detecting other locations at closer range, the main unit and antenna must be manually moved to achieve detection, making the drone jammer less maneuverable.
[0004] Therefore, there is an urgent need for a drone shielding device backpack to solve the above-mentioned technical problems. Utility Model Content
[0005] The purpose of the utility model is to provide a drone jammer backpack and a drone jammer. When the drone jammer is in operation, there is no need to take out the main unit, the operation is simple, and when detecting other positions at close range, the overall maneuverability of the drone jammer is better.
[0006] To achieve this purpose, the present invention adopts the following technical solutions:
[0007] On the one hand, a drone shield backpack is provided, comprising:
[0008] A backpack body, wherein a receiving cavity is provided in the backpack body for placing the host; the backpack body is provided with a first opening, and the first opening is configured to face the switch assembly;
[0009] a first opening and closing member having a first connecting portion and a second connecting portion; the first opening and closing member is openably and closably disposed at the first opening via the first connecting portion; the first opening and closing member is detachably connected to the backpack body via the second connecting portion, for defining an open position of the first opening and closing member relative to the first opening;
[0010] The first storage bag is arranged on the outside of the backpack body and is used for inserting the antenna.
[0011] In some possible embodiments, a second opening is provided on each side of the backpack body, and the second opening is configured as a heat dissipation hole facing the outer shell. The drone shield backpack also includes two second opening and closing parts, and the second opening and closing parts are provided with a third connecting part and a fourth connecting part. The second opening and closing part can be opened and closed at the second opening through the third connecting part; the second opening and closing part is detachably connected to the backpack body through the fourth connecting part, and is used to limit the opening position of the second opening and closing part after it is opened relative to the second opening.
[0012] In some possible embodiments, the first connecting portion and the third connecting portion are both zippers, and the backpack body is provided with engaging zippers at the first opening and the second opening respectively, and the drone shielding device backpack also includes a zipper, and the zipper is used to engage or disengage the zipper and the engaging zipper; the second connecting portion is arranged on the outside of the first opening and closing piece, and the fourth connecting portion is arranged on the outside of the second opening and closing piece, and the second connecting portion and the fourth connecting portion are both fleece-surface Velcro, and the outer surface of the backpack body is provided with hook-surface Velcro, and the fleece-surface Velcro is bonded to the hook-surface Velcro.
[0013] In some possible embodiments, the drone shield backpack further includes a first fastener and a first plug-in fastener, both of which are arranged on the outside of the backpack body, and the first fastener is plugged into the first plug-in fastener to press the antenna against the outer surface of the backpack body.
[0014] In some possible embodiments, the drone shield backpack further includes a second storage bag and a first cover piece, wherein the second storage bag is arranged on the outside of the backpack body for storing tools; the second storage bag is provided with a placement entrance, and the first cover piece is connected to the outside of the backpack body and can be opened and closed at the placement entrance; when the first cover piece covers the placement entrance, the first cover piece can be bonded to the second storage bag.
[0015] In some possible embodiments, the drone shield backpack further includes a second cover and a second fastener provided on the second cover, wherein the second cover can be opened and closed at the opening of the accommodating cavity, and a second fastener is provided on the outer side of the backpack body, and when the second cover covers the opening of the accommodating cavity, the second fastener can be plugged into the second fastener; and / or,
[0016] The drone shield backpack also includes a third fastener, a third plug fastener and two shoulder straps. The two shoulder straps are arranged at intervals on the outer surface of the backpack body. The third fastener is connected to one of the shoulder straps, and the third plug fastener is connected to the other shoulder strap. The third fastener is plugged into the third plug fastener to limit the relative position of the two shoulder straps.
[0017] On the one hand, a drone shield is provided, comprising a host, an antenna, and a drone shield backpack as described in any of the above schemes, wherein the accommodating cavity is used to place the host, the host comprises an outer shell, a shielding body, and a switch assembly, the shielding body is arranged in the outer shell, the switch assembly is passed through and fixed on the side wall of the outer shell, and is communicatively connected to the shielding body, with the first opening facing the switch assembly; the first storage bag is used to insert the antenna, and the antenna is communicatively connected to the shielding body.
[0018] In some possible implementations, the drone shield further includes a remote controller and a second cable, and the remote controller is connected to the switch assembly via the second cable.
[0019] In some possible implementations, the housing includes a housing body and an upper flip cover assembly, one end of the upper flip cover assembly is hinged to the housing body, and the other end of the upper flip cover assembly is detachably connected to the housing body via a butterfly buckle.
[0020] In some possible implementations, the host further includes a heat dissipation component, which is disposed in the housing and fixedly connected to the shielding body.
[0021] Beneficial effects of the utility model:
[0022] The utility model provides a backpack for a drone jammer, comprising a backpack body, a first opening and closing member, and a first storage bag. The backpack body is provided with a first opening, which is configured to face the switch assembly; the first opening and closing member is provided with a first connecting portion and a second connecting portion; the first opening and closing member is detachably arranged at the first opening via the first connecting portion. When operating the drone jammer, the operator does not need to remove the main unit; the switch assembly can be operated by simply opening the first opening and closing member. The operation is simple, and the operator can carry the main unit and antenna on the backpack body to detect other locations at close range without having to manually carry the main unit and antenna. This improves the overall maneuverability of the drone jammer and enhances operational efficiency. After opening the first opening and closing member, the first opening and closing member is connected to the backpack body via the second connecting portion to limit the opening position of the first opening and closing member and prevent the first opening and closing member from interfering with the switch assembly. The first storage bag is provided on the outside of the backpack body for inserting the antenna, making it convenient for storing the antenna. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 This is a first-person perspective structural diagram of the drone shield backpack provided by the utility model when it is in a closed state;
[0024] Figure 2 This is a second perspective structural diagram of the UAV shield backpack provided by the utility model when it is in a closed state;
[0025] Figure 3 This is a third-view structural diagram of the UAV shield backpack provided by the utility model when it is in a closed state;
[0026] Figure 4 This is a first-person perspective structural diagram of the drone shield backpack provided by the utility model when it is in an open state;
[0027] Figure 5 This is a schematic diagram of the structure of the drone shield provided by the utility model when the backpack is in an open state from a second perspective;
[0028] Figure 6 This is an exploded view of the host, remote control and second cable provided by the utility model;
[0029] Figure 7 This is a schematic diagram of the assembly structure of the heat dissipation component and the shielding body involved in the utility model;
[0030] Figure 8 It is a schematic diagram of the assembly structure of the battery, battery mounting frame and battery protective foam involved in the utility model.
[0031] In the picture:
[0032] 1. Backpack body; 11. Storage cavity; 12. First opening; 13. Second opening; 14. First handle; 15. Plastic foot pad; 16. Pad;
[0033] 2. First opening and closing member; 21. First connecting portion; 22. Second connecting portion;
[0034] 3. First storage bag;
[0035] 4. Second opening and closing member; 41. Third connecting portion; 42. Fourth connecting portion;
[0036] 5. First buckle; 6. First plug buckle; 7. Second storage bag; 8. First cover; 9. Second cover; 10. Second buckle; 20. Second plug buckle; 30. Third buckle; 40. Third plug buckle; 50. Shoulder strap;
[0037] 100. Main unit; 101. Housing; 1011. Heat dissipation holes; 1012. Housing body; 1013. Upper flip cover assembly; 1014. Butterfly buckle; 1015. RF adapter; 102. Shielding body; 1021. RF module; 103. Switch assembly; 104. Heat dissipation assembly; 1041. U-shaped mounting plate; 1042. First heat dissipation block; 1043. Second heat dissipation block; 1044. Second handle; 105. Fan; 106. Control assembly; 107. Battery; 108. Battery mounting bracket; 1081. Bottom plate; 1082. U-shaped plate; 109. Battery protective foam; 200. Remote control; 201. LCD display; 202. LCD display switch; 203. Frequency control switch; 300. Second cable. DETAILED DESCRIPTION
[0038] The present invention will be further described in detail below with reference to the accompanying drawings and examples. It should be understood that the specific embodiments described herein are intended only to illustrate the present invention and are not intended to limit the present invention. It should also be noted that, for ease of description, the accompanying drawings only illustrate portions relevant to the present invention, not all of its components.
[0039] In the description of this utility model, unless otherwise expressly specified or limited, the terms "connected," "connected," and "fixed" should be understood in a broad sense. For example, they can refer to fixed connection, detachable connection, or integration; mechanical connection, communication connection; direct connection, indirect connection through an intermediate medium, and internal communication between two components or interaction between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on the specific circumstances.
[0040] In the present invention, unless otherwise expressly specified or limited, a first feature being "above" or "below" a second feature may include the first and second features being in direct contact, or may include the first and second features being in contact not directly but through another feature between them. Moreover, a first feature being "above," "above," and "above" a second feature may include the first feature being directly above or obliquely above the second feature, or may simply mean that the first feature is higher in level than the second feature. A first feature being "below," "below," and "below" a second feature may include the first feature being directly below or obliquely below the second feature, or may simply mean that the first feature is lower in level than the second feature.
[0041] In the description of this embodiment, the terms "upper," "lower," "right," and other orientations or positional relationships are based on the orientations or positional relationships shown in the accompanying drawings and are intended solely for ease of description and simplified operation. They do not indicate or imply that the devices or components referred to must have a specific orientation, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on the present invention. Furthermore, the terms "first" and "second" are used solely for descriptive purposes and have no special meaning.
[0042] like Figures 1 to 8 As shown, the present invention provides a drone jammer backpack. The drone jammer backpack includes a backpack body 1, a first opening and closing member 2, and a first storage bag 3. The backpack body 1 has a storage cavity 11 for accommodating a host 100. The backpack body 1 has a first opening 12, which is configured to face a switch assembly 103. The first opening and closing member 2 has a first connecting portion 21 and a second connecting portion 22. The first opening and closing member 2 is openably and closably disposed in the first opening 12 via the first connecting portion 21. When operating the drone jammer, the operator does not need to remove the host 100; they only need to open the first opening and closing member 2 to operate the switch assembly 103. This simplifies operation. The operator can carry the host 100 and antenna on the backpack body 1 to detect other locations at close range, eliminating the need to manually carry the host 100 and antenna. This improves the overall maneuverability of the drone jammer and enhances operational efficiency. The first opening and closing member 2 is detachably connected to the backpack body 1 via the second connecting portion 22, which defines the open position of the first opening and closing member 2 relative to the first opening 12. After the first opening and closing member 2 is opened, it is connected to the backpack body 1 via the second connecting portion 22 to define the open position of the first opening and closing member 2 and prevent the first opening and closing member 2 from interfering with the switch assembly 103. The first storage bag 3 is provided on the outside of the backpack body 1 for inserting and conveniently storing the antenna.
[0043] In this embodiment, before operating the drone jammer, the antenna must be removed from the first storage bag 3 and then connected to the RF adapter 1015 of the host 100. In other embodiments, the backpack body 1 is provided with a communication hole, one end of which communicates with the accommodating cavity 11 and the other end of which communicates with the inner cavity of the first storage bag 3. The drone jammer includes a first cable, one end of which is connected to the antenna and the other end of which passes through the communication hole and connects to the host 100. With this arrangement, the drone jammer can be operated simply by activating the switch assembly 103. Alternatively, both the host 100 and the antenna can be removed from the drone jammer backpack and used for vehicle-mounted or ground-based fixed-point detection, thereby expanding the application range of the drone jammer.
[0044] Optionally, in this embodiment, if Figure 4 and Figure 5As shown, the backpack body 1 is provided with a second opening 13 on either side, the second opening 13 being configured to face the heat dissipation holes 1011 of the outer shell 101. The drone shield backpack also includes two second opening and closing members 4, each having a third connecting portion 41 and a fourth connecting portion 42. The second opening and closing members 4 are detachably mounted in the second openings 13 via the third connecting portion 41. The second opening and closing members 4 are detachably connected to the backpack body 1 via the fourth connecting portion 42, which defines the open position of the second opening and closing members 4 relative to the second openings 13. When the drone shield is in operation, the second opening and closing members 4 are opened via the third connecting portion 41 to facilitate heat dissipation from the host 100 through the heat dissipation holes 1011. After opening the second opening and closing members 4, they are connected to the backpack body 1 via the fourth connecting portion 42, defining the open position of the second opening and closing members 4 to prevent heat dissipation from the heat dissipation holes 1011.
[0045] Optionally, in this embodiment, the first connecting portion 21 and the third connecting portion 41 are both zippers, and the backpack body 1 is provided with meshing zippers at the first opening 12 and the second opening 13, respectively. The drone shield backpack also includes a zipper, which is used to engage or disengage the zipper and the meshing zipper. The first opening and closing member 2 and the second opening and closing member 4 are opened and closed by the zipper and the zipper, so that the sealing effect is good and external dust is prevented from entering the accommodating chamber 11. The second connecting portion 22 is arranged on the outside of the first opening and closing member 2, and the fourth connecting portion 42 is arranged on the outside of the second opening and closing member 4. The second connecting portion 22 and the fourth connecting portion 42 are both fleece-surface Velcro, and the outer surface of the backpack body 1 is provided with hook-surface Velcro, and the fleece-surface Velcro is bonded to the hook-surface Velcro. By bonding the fleece-surface Velcro to the hook-surface Velcro, the structure is simple and easy to operate.
[0046] Optionally, in this embodiment, the drone shield backpack further includes a first fastener 5 and a first plug-in fastener 6. Both the first fastener 5 and the first plug-in fastener 6 are disposed on the outside of the backpack body 1. The first fastener 5 and the first plug-in fastener 6 are plugged into each other to secure the antenna to the outer surface of the backpack body 1. The first fastener 5 and the first plug-in fastener 6 are plugged into each other to secure the antenna to the outer surface of the backpack body 1. The antenna is secured by plugging the first fastener 5 and the first plug-in fastener 6 together to prevent it from falling out of the first storage bag 3. Optionally, the first fastener 5 includes an elastic band and a buckle connected to one end of the elastic band, and the first plug-in fastener 6 includes an elastic band and a buckle connected to one end of the elastic band. The provision of the elastic band prevents the first fastener 5 and the first plug-in fastener 6 from damaging the antenna and is suitable for securing antennas of different sizes.
[0047] Optionally, in this embodiment, if Figure 2As shown, the drone shield backpack also includes a second storage bag 7 and a first cover 8. The second storage bag 7 is located on the outside of the backpack body 1 and is used to store tools. The second storage bag 7 has a storage entrance. The first cover 8 is connected to the outside of the backpack body 1 and is openably and closably arranged at the storage entrance. When the first cover 8 covers the storage entrance, the first cover 8 can adhere to the second storage bag 7. This arrangement has a simple structure and facilitates the installation or maintenance of the host 100 or antenna by carrying tools. When installing or repairing the host 100 or antenna, the first cover 8 is opened and the tools are removed. After installation or maintenance, the first cover 8 is closed and adhered to the second storage bag 7 to prevent the ingress of external dust. In other embodiments, the first cover 8 can be connected to the second storage bag 7 by a zipper or button fastener, and this embodiment is not limited thereto.
[0048] Optionally, in this embodiment, the drone shield backpack further includes a second cover 9 and a second fastener 10 disposed on the second cover 9. The second cover 9 is movably disposed at the opening of the accommodating cavity 11. A second fastener 20 is disposed on the exterior of the backpack body 1. When the second cover 9 is closed over the opening of the accommodating cavity 11, the second fastener 10 engages with the second fastener 20. The movably disposed second cover 9 at the opening of the accommodating cavity 11 prevents dust from entering the accommodating cavity 11 and protects the host 100 from scratches and bumps. When the second cover 9 is closed over the opening of the accommodating cavity 11, the second fastener 10 engages with the second fastener 20, preventing the host 100 from moving within the accommodating cavity 11. Optionally, in this embodiment, the walls of the accommodating cavity 11 conform to the outer walls of the host 100, matching the dimensions of the accommodating cavity 11 with those of the host 100 and thereby limiting the position of the host 100.
[0049] Optionally, in this embodiment, if Figure 2 As shown, the drone shield backpack also includes a third fastener 30, a third plug-in fastener 40, and two shoulder straps 50. The two shoulder straps 50 are spaced apart on the outer surface of the backpack body 1. The third fastener 30 is connected to one of the shoulder straps 50, and the third plug-in fastener 40 is connected to the other shoulder strap 50. The third fastener 30 and the third plug-in fastener 40 are plugged together to restrict the relative position of the two shoulder straps 50. This arrangement prevents the two shoulder straps 50 from slipping off the operator's shoulders. Optionally, the second fastener 10 includes an elastic band and a buckle connected to one end of the elastic band, and the second plug-in fastener 20 includes an elastic band and a plug-in buckle connected to one end of the elastic band. The provision of the elastic band increases the operator's wearing comfort. Optionally, the shoulder straps 50 are adjustable. Adjustable shoulder straps are a mature technology in the relevant field and will not be described in detail in this embodiment.
[0050] Optionally, the side wall of the backpack body 1, the bottom of the backpack body 1 and the outer side of the second cover 9 are provided with a first handle 14, which can be used to carry the body and antenna by hand, thereby increasing the carrying and operation methods of the drone shield. Figure 3 As shown, the bottom of the backpack body 1 is also provided with a plurality of plastic foot pads 15 to prevent the ground from causing wear on the bottom of the backpack body 1. Figure 2 As shown, a pad 16 is provided on one side of the backpack body 1 near the two shoulder straps 50 to increase the comfort of the user's back. Optionally, the backpack body 1, the first opening and closing member 2, the first storage bag 3, the second opening and closing member 4, the second storage bag 7, the first cover 8, and the second cover 9 are all made of nylon material, which is strong and wear-resistant.
[0051] The present invention also provides a drone jammer, comprising a main unit 100, an antenna, and a drone jammer backpack. A chamber 11 is used to house the main unit 100. The main unit 100 comprises a housing 101, a shielding body 102, and a switch assembly 103. The shielding body 102 is disposed within the housing 101. The switch assembly 103 is fixed to the sidewall of the housing 101 and is communicatively connected to the shielding body 102. A first opening 12 faces the switch assembly 103. A first storage bag 3 is provided for inserting the antenna, which is communicatively connected to the shielding body 102. Operating the switch assembly 103 activates the shielding body 102, causing the antenna to emit an interference signal. The drone jammer does not require removal of the main unit 100 during operation, simplifying operation and improving overall maneuverability when detecting other locations at close range. Optionally, the antenna utilizes a fiberglass omnidirectional antenna for signal transmission, providing 360-degree signal coverage. The fiberglass material also enhances the antenna's service life and reliability.
[0052] Optionally, the drone jammer also includes a remote control 200 and a second cable 300, which is connected to the switch assembly 103 via the second cable 300. This configuration allows the user to switch the antenna's interference frequency band with a single-handed operation of the remote control 200, simplifying operation and improving work efficiency. Optionally, the remote control 200 includes an LCD display 201 for displaying the operating status of the host 100. Furthermore, the remote control 200 includes an LCD display switch 202 for turning the LCD display 201 on and off.
[0053] Optionally, the housing 101 includes a housing body 1012 and an upper flip cover assembly 1013, one end of the upper flip cover assembly 1013 being hinged to the housing body 1012, and the other end of the upper flip cover assembly 1013 being detachably connected to the housing body 1012 via a butterfly buckle 1014. This arrangement allows for quick opening of the housing 101, making it easier to maintain components within the housing 101. The butterfly buckle 1014 is a mature technology in the relevant field and will not be described in detail in this embodiment. Optionally, the upper flip cover assembly 1013 is provided with eight RF adapters 1015, through which the shielding body 102 is connected to eight antennas, respectively.
[0054] Optionally, the host 100 further includes a heat dissipation component 104, which is disposed in the housing 101 and fixedly connected to the shielding body 102, and is used to dissipate heat from the shielding body 102, thereby improving the reliability of the drone shield. In addition, the heat dissipation component 104 is integrated with the shielding body 102, thereby improving the integration level of the drone shield. Specifically, Figure 7 As shown, the heat dissipation assembly 104 includes a U-shaped mounting plate 1041, a first heat dissipation block 1042, a second heat dissipation block 1043, and a second handle 1044. The U-shaped mounting plate 1041 is detachably connected to the side wall of the housing 101. The first and second heat dissipation blocks 1042, 1043 are spaced apart and disposed opposite each other within the U-shaped mounting plate 1041. The first and second heat dissipation blocks 1042, 1043 are both detachably connected to the U-shaped mounting plate 1041. The shielding body 102 includes eight RF modules 1021, four of which are detachably connected to the first heat dissipation block 1042, and the remaining four are detachably connected to the second heat dissipation block 1043. The second handle 1044 is detachably connected to the first heat dissipation block 1042. This arrangement allows heat from the shielding body 102 to be dissipated through the first and second heat dissipation blocks 1042, 1043, and facilitates assembly and disassembly of the heat dissipation assembly 104 and the shielding body 102. In addition, by providing the second handle 1044 , it is convenient to move the heat dissipation assembly 104 and the shielding body 102 .
[0055] Optionally, the first heat sink 1042 includes a U-shaped support plate and a plurality of heat sinks, the U-shaped support plate being detachably connected to the U-shaped mounting plate 1041, and the plurality of heat sinks being evenly spaced within the U-shaped support plate. The second heat sink 1043 has the same structure as the first heat sink 1042. Heat dissipation through the heat sinks provides a simple heat dissipation structure and a good heat dissipation effect. Optionally, the host 100 further includes two fans 105, both of which are fixed within the housing 101 and are located on opposite sides of the heat dissipation assembly 104, respectively, and correspond to the heat dissipation holes 1011 on both sides of the housing 101. Specifically, the fan 105 utilizes a double ball bearing heat dissipation fan, which has good heat dissipation performance and a long service life.
[0056] Optionally, the eight RF modules 1021 are respectively a 433 MHz module, an 800 MHz module, a 900 MHz module, a 1.2 GHz module, a 2.4 GHz module, a 5.2 GHz module, and a 5.8 GHz module, and the remote control 200 is provided with eight corresponding frequency control switches 203. By operating the eight frequency control switches 203, different frequencies can be switched to meet different usage scenarios.
[0057] Optionally, the host 100 further includes a control component 106 , which is communicatively connected to both the switch component 103 and the shielding body 102 and is used to control the operation of the switch component 103 .
[0058] Optionally, the host 100 further includes a battery 107, a battery mounting bracket 108, and a battery protective foam 109. The battery 107 is disposed in the housing 101 via the battery mounting bracket 108 and is used to supply power to the shielding body 102 and the switch assembly 103. The battery protective foam 109 is disposed between the battery mounting bracket 108 and the battery 107 to prevent the battery mounting bracket 108 from damaging the surface of the battery 107. Specifically, the battery mounting bracket 108 includes a bottom plate 1081 and two U-shaped plates 1082. The bottom plate 1081 is detachably connected to the housing 101. The two U-shaped plates 1082 are spaced apart and detachably disposed on the bottom plate 1081. The battery 107 is snapped into the mounting cavity surrounded by the bottom plate 1081 and the two U-shaped plates 1082. This arrangement has a simple structure, securely fixes the battery 107, and is convenient for assembly and disassembly.
[0059] Obviously, the above-described embodiments of the present invention are merely examples for the purpose of clearly illustrating the present invention and are not intended to limit the manner in which the present invention is to be implemented. A person skilled in the art would be able to make various obvious changes, readjustments, and substitutions without departing from the scope of protection of the present invention. It is not necessary and impossible to enumerate all embodiments here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the claims of the present invention.
Claims
1. A drone shield backpack, characterized in that: include: A backpack body (1), wherein a receiving cavity (11) is provided in the backpack body (1) for accommodating a host (100); the backpack body (1) is provided with a first opening (12), and the first opening (12) is configured to face the switch assembly (103); A first opening and closing member (2) is provided with a first connecting portion (21) and a second connecting portion (22); the first opening and closing member (2) is openably and closably arranged at the first opening (12) via the first connecting portion (21); the first opening and closing member (2) is detachably connected to the backpack body (1) via the second connecting portion (22), and is used to define an open position of the first opening and closing member (2) relative to the first opening (12); The first storage bag (3) is arranged on the outside of the backpack body (1) and is used for inserting the antenna.
2. The drone shield backpack according to claim 1, characterized in that: The backpack body (1) is provided with a second opening (13) on both sides, and the second opening (13) is configured to face the heat dissipation hole (1011) of the shell (101). The drone shield backpack also includes two second opening and closing parts (4), and the second opening and closing parts (4) are provided with a third connecting part (41) and a fourth connecting part (42). The second opening and closing part (4) is openably arranged at the second opening (13) through the third connecting part (41); the second opening and closing part (4) is detachably connected to the backpack body (1) through the fourth connecting part (42), and is used to limit the opening position of the second opening and closing part (4) after it is opened relative to the second opening (13).
3. The UAV shield backpack according to claim 2, characterized in that: The first connecting portion (21) and the third connecting portion (41) are both zippers, and the backpack body (1) is provided with engaging zippers at the first opening (12) and the second opening (13) respectively. The drone shield backpack also includes a zipper, and the zipper is used to engage or disengage the zipper and the engaging zipper; the second connecting portion (22) is arranged on the outside of the first opening and closing member (2), and the fourth connecting portion (42) is arranged on the outside of the second opening and closing member (4), and the second connecting portion (22) and the fourth connecting portion (42) are both fleece-surface Velcro, and the outer surface of the backpack body (1) is provided with hook-surface Velcro, and the fleece-surface Velcro is bonded to the hook-surface Velcro.
4. The drone shield backpack according to claim 1, characterized in that: The drone shield backpack further comprises a first fastener (5) and a first plug-in fastener (6), wherein the first fastener (5) and the first plug-in fastener (6) are both arranged on the outside of the backpack body (1), and the first fastener (5) and the first plug-in fastener (6) are plugged into each other to press the antenna against the outer surface of the backpack body (1).
5. The drone shield backpack according to claim 1, characterized in that: The drone shield backpack further comprises a second storage bag (7) and a first cover (8), wherein the second storage bag (7) is arranged on the outside of the backpack body (1) for storing tools; the second storage bag (7) is provided with a placement entrance, and the first cover (8) is connected to the outside of the backpack body (1) and can be opened and closed at the placement entrance; when the first cover (8) is closed on the placement entrance, the first cover (8) can be bonded to the second storage bag (7).
6. The drone shield backpack according to claim 1, characterized in that: The drone shield backpack further comprises a second cover sheet (9) and a second fastener (10) arranged on the second cover sheet (9), the second cover sheet (9) being closably arranged at the opening of the accommodating cavity (11), a second plug fastener (20) being provided on the outer side of the backpack body (1), and when the second cover sheet (9) covers the opening of the accommodating cavity (11), the second fastener (10) can be plugged into the second plug fastener (20); and / or, The drone shield backpack also includes a third fastener (30), a third plug fastener (40) and two shoulder straps (50), the two shoulder straps (50) are arranged at intervals on the outer surface of the backpack body (1), the third fastener (30) is connected to one of the shoulder straps (50), the third plug fastener (40) is connected to the other shoulder strap (50), and the third fastener (30) is plugged into the third plug fastener (40) to limit the relative position of the two shoulder straps (50).
7. A UAV shield, characterized in that: The invention comprises a host (100), an antenna and a backpack for a drone shield as described in any one of claims 1 to 6, wherein the accommodating cavity (11) is used to place the host (100), the host (100) comprises a shell (101), a shielding body (102) and a switch assembly (103), the shielding body (102) is arranged in the shell (101), the switch assembly (103) is fixed on the side wall of the shell (101) and is communicatively connected to the shielding body (102), and the first opening (12) is opposite to the switch assembly (103); the first storage bag (3) is used to insert the antenna, and the antenna is communicatively connected to the shielding body (102).
8. The UAV shield according to claim 7, characterized in that: The drone shield further comprises a remote controller (200) and a second cable (300), and the remote controller (200) is connected to the switch assembly (103) via the second cable (300).
9. The UAV shield according to claim 7, characterized in that: The housing (101) comprises a housing body (1012) and an upper flip cover assembly (1013), one end of the upper flip cover assembly (1013) is hinged to the housing body (1012), and the other end of the upper flip cover assembly (1013) is detachably connected to the housing body (1012) via a butterfly buckle (1014).
10. The UAV shield according to claim 9, characterized in that: The host (100) further includes a heat dissipation component (104), which is disposed in the housing (101) and fixedly connected to the shielding body (102).