Detection equipment and detection equipment of eavesdropping and stealing device

By assembling the signal detection device and the main control device into a whole, the problem of inconvenience in carrying and operating the existing detection equipment is solved, and convenient carrying and efficient detection operation are achieved.

CN223364140UActive Publication Date: 2025-09-19SHENZHEN AWP TECH CO LTD
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Patent Information

Application Number
CN202422346844.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2024-07-09
Filing Date
2024-09-25
Publication Date
2025-09-19
Estimated Expiration
2034-09-25

AI Technical Summary

Technical Problem

The antenna and main unit of existing detection equipment are set up independently of each other, which makes it inconvenient for operators to carry and difficult to use during actual operation.

Method used

The cover body of the signal detection device is movably connected to the machine body on which the main control device is installed to form a whole. The signal detection device and the host are assembled into a whole through the connection between the machine cover and the host, and the interactive component is set together with the signal detection device and the main control device to realize signal interaction.

Benefits of technology

It is easy to carry, simplifies the operation process, and improves detection efficiency. Operators can confirm the detection results on the spot without frequent position adjustments, reducing the difficulty of operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of electronic equipment detection, and relates to detection equipment and detection equipment of an eavesdropping and stealing device, the detection equipment comprises a host, a machine cover and an interaction assembly, the host comprises a machine body and a main control device, and the main control device is installed on the machine body; the machine cover comprises a cover body and a signal detection device, the cover body is movably connected to the machine body, and the signal detection device is installed on the cover body, electrically connected with the main control device and used for outputting a detection signal; the interaction assembly is arranged on the machine body and / or the cover body and is electrically connected with the main control device; the main control device is used for outputting the control signal to the interaction assembly according to the detection signal output by the signal detection device. The cover body provided with the signal detection device is movably connected to the machine body provided with the main control device, the machine cover is connected with the main machine, the signal detection device and the main machine are assembled into a whole, carrying is convenient, and operation is convenient.
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Description

Technical Field

[0001] The present application relates to the technical field of electronic device detection, and in particular to a detection device and a detection device for eavesdropping and spying devices. Background Art

[0002] With the rapid development of communication technology and the increasing miniaturization and intelligence of electronic products, electronic devices such as pinhole cameras, eavesdroppers, and locators are getting smaller and smaller, which not only facilitates people's daily life and work, but also makes it easier for some people to illegally spy on others' privacy more covertly. Problems such as social and personal privacy being secretly photographed, intelligence leaks, and commercial secrets being stolen occur frequently, posing serious security risks.

[0003] To prevent eavesdropping and spying, detection equipment is currently commonly used to directly locate relevant electronic devices such as cameras and bugs. For example, detection equipment that uses wireless communication to detect the presence of electronic devices typically uses an antenna to receive radio signals from the air. Based on the radio signals detected by the antenna, a host computer determines whether a camera or bug that relies on wireless communication for eavesdropping or spying is present in the room.

[0004] However, during the inventor's actual research and development and practical accumulation, it was found that the antenna and host of the existing detection equipment were set independently of each other, which made it inconvenient for operators to carry it in actual operation and inconvenient and difficult to use. Utility Model Content

[0005] The purpose of the embodiments of the present application is to solve the technical problem that existing detection equipment is inconvenient to carry and use.

[0006] To solve the above technical problems, the present invention provides a detection device that adopts the following technical solutions:

[0007] The detection equipment includes:

[0008] The host comprises a machine body and a main control device; the main control device is installed on the machine body;

[0009] The machine cover comprises a cover body and a signal detection device; the cover body is movably connected to the machine body, the signal detection device is installed on the cover body and electrically connected to the main control device; the signal detection device is used to output a detection signal;

[0010] An interactive component is provided on the machine body and / or the cover body, and is electrically connected to the main control device; the main control device is used to output a control signal to the interactive component according to the detection signal output by the signal detection device.

[0011] In some embodiments of the present application, the detection device further includes a rotation connection mechanism, and the cover body is rotationally connected to the machine body via the rotation connection mechanism.

[0012] In some embodiments of the present application, an angle between a surface of the cover body facing the top surface of the machine body and the top surface of the machine body is a rotation angle α, and 0°≤α≤180°.

[0013] In some embodiments of the present application, the cover body has a first end and a second end opposite to each other, wherein the first end is connected to the rotation connection mechanism;

[0014] The signal detection device comprises:

[0015] The antenna assembly has a main radiation direction parallel to a direction from the first end to the second end.

[0016] In some embodiments of the present application, the rotating connection mechanism is provided with a wire-passing hole along the rotating axis; and the antenna assembly includes:

[0017] a wire plate, disposed on the cover body;

[0018] The antenna is arranged on the wire board; the feeding point of the antenna is electrically connected to the main control device through a connecting wire passing through the wire hole.

[0019] In some embodiments of the present application, the detection device further includes:

[0020] The first attitude sensor is provided on the machine body or the cover body and is electrically connected to the main control device; the first attitude sensor is used to detect the heading angle of the detection device and output the heading angle data to the main control device.

[0021] Alternatively, in some embodiments of the present application, the detection device further includes:

[0022] a second posture sensor, provided on the first body and electrically connected to the main control device; the second posture sensor is used to detect the posture of the first body and output first posture data to the main control device;

[0023] a third posture sensor, provided on the second body and electrically connected to the main control device; the third posture sensor is used to detect the posture of the second body and output second posture data to the main control device;

[0024] Wherein, one of the first body and the second body is the machine body, and the other is the cover body.

[0025] In some embodiments of the present application, the detection device further includes:

[0026] A first magnetic component is provided on the machine body;

[0027] a second magnetic component, provided on the cover body;

[0028] The cover body and the machine body that overlap each other are magnetically attracted to each other through the first magnetic component and the second magnetic component.

[0029] In some embodiments of the present application, the first magnetic assembly includes at least one first magnetic member, and the second magnetic assembly includes at least one second magnetic member;

[0030] When the cover body and the machine body are covered, each of the first magnetic members is attracted to at least one of the second magnetic members.

[0031] In some embodiments of the present application, the signal detection device includes an antenna assembly, and the first magnetic assembly is not located in a main radiation direction of the antenna assembly.

[0032] In some embodiments of the present application, the interactive component further includes a display component, and the display component is electrically connected to the main control device;

[0033] The display assembly is provided on a first end surface of the machine body, and the first end surface of the machine body is an end surface of the machine body facing the cover body when the machine body and the cover body are covered;

[0034] Alternatively, the display assembly is provided on the second end surface of the cover body, and the second end surface of the cover body is the end surface of the cover body facing the machine body when the machine body and the cover body are covered.

[0035] In some embodiments of the present application, a first installation cavity is formed in the machine body, and the main control device is accommodated in the first installation cavity;

[0036] An air inlet and an air outlet communicating with the first installation cavity are respectively provided on opposite sides of the main body; the main unit further comprises:

[0037] The radiator is provided with an air inlet channel and an air outlet channel communicating with each other; the air inlet channel faces the main control device, and the air outlet channel faces the air outlet.

[0038] In some embodiments of the present application, the radiator is located between the air inlet and the air outlet, and is arranged opposite to the air inlet and the air outlet;

[0039] And / or, the host further includes:

[0040] A heat sink is installed on the main control device and is located between the radiator and the air inlet.

[0041] Alternatively, in some other embodiments of the present application, a storage cavity is provided in the host, and the cover is slidably connected to the host;

[0042] When the cover is in the storage state, the cover is located in the storage cavity;

[0043] When the cover is in the working state, at least a portion of the cover slides out and is exposed outside the receiving cavity, and can rotate relative to the host at a fixed point, or the cover and the host are both in a horizontal state.

[0044] In some embodiments of the present application, the detection device further includes:

[0045] The handle is detachably connected to the machine body, and a gripping space is formed between the machine body and the handle.

[0046] To solve the above technical problems, the present application also provides a device for detecting eavesdropping and spying devices, which adopts the following technical solution:

[0047] The detection equipment of the eavesdropping and spying device includes:

[0048] The host comprises a machine body and a main control device; the main control device is installed on the machine body;

[0049] A machine cover, the machine cover comprising a cover body and an antenna assembly; the cover body having a connecting end and a flip end oppositely disposed, the connecting end of the cover body being connected to the machine body with damped rotation; the antenna assembly being mounted on the cover body, electrically connected to the main control device, and having a main radiation direction toward the flip end of the cover body;

[0050] The interactive component is provided on the machine body and / or the cover body and is electrically connected to the main control device; the main control device is used to control the operation of the interactive component according to the radio signal received by the antenna component.

[0051] Compared with the prior art, the detection device and the detection device for eavesdropping and spying devices provided in the embodiments of the present application have the following advantages:

[0052] The detection device movably connects a cover body equipped with a signal detection device such as an antenna assembly to a machine body equipped with a main control device, so as to assemble the signal detection device and the main control device into a whole through the connection between the cover and the main control device. In this way, on the one hand, it can be easily carried, avoiding the inconvenience of carrying caused by the separation of the signal detection device and the main control device. On the other hand, by assembling the signal detection device and the main control device that receives the detection signal of the signal detection device together, and also arranging the interactive component together with the signal detection device and / or the main control device, through the signal interaction between the main control device, the signal detection device and the interactive component, the operator can directly view the relevant information displayed by the interactive component and the detection signal output by the main control device according to the signal detection device on the spot, without having to move the signal detection device back and forth to adjust and confirm because the signal detection device and the main control device are not together, which is conducive to simplifying the detection operation and improving the detection efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0053] In order to more clearly illustrate the solutions in this application, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are some embodiments of this application or corresponding prior art. Those skilled in the art can also derive other drawings based on these drawings without inventive effort. Among them:

[0054] Figure 1 1 is a schematic diagram of the three-dimensional structure of a detection device in an example of the present application; wherein, in this figure, the cover is in an open state relative to the host;

[0055] Figure 2 is a three-dimensional exploded schematic diagram of a cover of a detection device in an example of the present application;

[0056] Figure 3 This is a three-dimensional exploded schematic diagram of a main body of a detection device in an example of the present application; wherein, in this figure, the display component is covered by the bottom shell of the main body;

[0057] Figure 4 This is a three-dimensional exploded schematic diagram of a detection device in an example of the present application after removing components such as the main control device and the display assembly;

[0058] Figure 5 This is a schematic diagram of the three-dimensional structure of the host of the detection device in an example of the present application, after removing the main control device and other components from one perspective;

[0059] Figure 6 This is a schematic diagram of the three-dimensional structure of the main unit of the detection device in an example of the present application, after removing the main control device and other components, from another perspective;

[0060] Figure 7 This is a schematic diagram of the three-dimensional structure of the radiator of the host of the detection device in an example of the present application.

[0061] The reference numerals in the accompanying drawings are as follows:

[0062] 100. Detection equipment;

[0063] 1. Host; 11. Main body; 111. First installation cavity; 112. Air inlet; 113. Air outlet; 114. Handle; 12. Main control unit; 13. Radiator; 131. Air inlet duct; 132. Air outlet duct; 14. Heat sink;

[0064] 2. Cover; 21. Cover body; 211. First end; 212. Second end; 213. Top cover; 214. Bottom cover; 22. Signal detection device; 221. Antenna assembly; 2211. Wire board; 2212. Antenna;

[0065] 3. Interactive component; 31. Display component; 311. Display screen; 312. Mounting frame;

[0066] 4. Rotating connecting mechanism; 41. Wire hole;

[0067] 5. First magnetic assembly; 51. First magnetic member;

[0068] 6. Second magnetic assembly; 61. Second magnetic member. DETAILED DESCRIPTION

[0069] Unless otherwise defined, all technical and scientific terms used herein have the same meanings as commonly understood by those skilled in the art to which this application belongs. The terms used in this specification are for the purpose of describing specific embodiments only and are not intended to limit this application. For example, the directions or positions indicated by the terms "length", "width", "up", "down", "left", "right", "front", "back", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc. are based on the directions or positions shown in the accompanying drawings and are for ease of description only and should not be understood as limiting this technical solution.

[0070] The terms "including," "having," and any variations thereof in the specification, claims, and drawings of this application are intended to cover non-exclusive inclusions. The terms "first," "second," and the like in the specification, claims, and drawings of this application are used to distinguish between different items, not to describe a particular order. "Multiple" means two or more, unless otherwise expressly specified.

[0071] In the specification and claims of this application and the above-mentioned description of the drawings, when an element is referred to as being “fixed to,” “mounted on,” “disposed on,” or “connected to” another element, it may be directly or indirectly located on the other element. For example, when an element is referred to as being “connected to” another element, it may be directly or indirectly connected to the other element.

[0072] Furthermore, references to "embodiments" herein mean that a particular feature, structure, or characteristic described in connection with the embodiments may be included in at least one embodiment of the present application. The appearance of such phrases in various locations in the specification does not necessarily refer to the same embodiment, nor do they constitute independent or alternative embodiments that are mutually exclusive of other embodiments. It is understood, both explicitly and implicitly, by those skilled in the art that the embodiments described herein may be combined with other embodiments.

[0073] The present embodiment provides a detection device 100 that can be used to detect whether there are electronic devices capable of transmitting radio signals in the current environment. It should be noted that the electronic devices described herein include, but are not limited to, locators, eavesdroppers, and cameras, and may also be other eavesdropping and surveillance devices, and may also be used for other purposes.

[0074] like Figures 1 to 3 As shown, the detection device 100 includes a host 1, a cover 2, and an interactive component 3. The host 1 includes a main body 11 and a main control device 12. The cover 2 includes a cover body 21 and a signal detection device 22. The main control device 12 is mounted on the main body 11, the cover body 21 is movably connected to the main body 11, and the signal detection device 22 is mounted on the cover body 21. The signal detection device 22 is electrically connected to the main control device 12 and can be used to output a detection signal. It can be understood that by connecting the cover body 21 to the main body 11, the signal detection device 22 and the host 1 can be assembled into a whole, which is convenient to carry and avoids the situation where the operator is easily searching for the signal detection device 22 or the host 1 due to the separation of the signal detection device 22 and the host 1.

[0075] In the embodiment of the present application, the interactive component 3 is provided in the machine body 11 and / or the cover body 21, and is electrically connected to the main control device 12. The main control device 12 can be used to output corresponding control signals to the interactive component 3 according to the detection signals output by the signal detection device 22.

[0076] It is understandable that the signal detection device 22 can be used to receive wireless signals within the target area and output the received wireless signals as detection signals. Correspondingly, the main control device 12 can generate its own control signal based on the detection signal and output the control signal to the interactive component 3 to control the operation of the interactive component 3. For example, when the interactive component 3 is a touch screen, the interactive component 3 can respond to the control signal generated by the main control device 12 to display the type, strength, and other information of the corresponding detection signal. The operator can directly determine whether there is an electronic device that relies on wireless communication in the target area through the information of the corresponding detection signal displayed on the interactive component 3.

[0077] It is also understood that the signal detection device 22 is assembled with the main control unit 12 on the main body 11 through the cover body 21. While ensuring the detection function of the detection device 100, it can also help reduce the difficulty of operation. For example, when a suspicious device is detected, the main control unit 12 can determine the presence of the suspicious device based on the detection signal output by the signal detection device 22, and output a corresponding control signal to cause the interactive component 3 to display relevant information, allowing the operator to directly confirm whether the suspicious device is actually present through the information displayed by the interactive component 3. In addition, if the presence of a suspicious device is confirmed, the operator can also directly determine the approximate location of the suspicious device through the detection signal information displayed on the interactive component 3, such as the strength of the detection signal in different directions, thereby narrowing the search range for the suspicious device. This not only facilitates the rapid retrieval of the detected suspicious device, but also eliminates the need to move back and forth to adjust and confirm the position of the signal detection device 22 and the main body 1 due to one of the signal detection device 22 and the main body 1 being closer to the operator and the other being farther away. The detection operation is simple and quick.

[0078] For example, in an embodiment of the present application, the interactive component 3 may include a display component 31, which is electrically connected to the main control device 12. The main control device 12 may output a control signal to the display component 31 based on the detection signal output by the signal detection device 22, so as to control the display screen 311 in the display component 31 to display corresponding content, so that the operator can judge whether there is an eavesdropping device in the current environment based on the displayed signal strength and other content.

[0079] It should be noted that, in a specific embodiment, Figure 1 As shown, the display assembly 31 is provided on the first end surface (not shown) of the machine body 11, wherein the first end surface of the machine body 11 is the end surface of the machine body 11 facing the cover body 21 when the machine body 11 and the cover body 21 are covered.

[0080] Alternatively, in another embodiment (not shown), the display assembly is disposed on the second end face of the cover body, wherein the second end face of the cover body is the end face of the cover body that faces the main body when the main body and the cover body are covered. In other words, the display assembly is disposed on the cover.

[0081] It should also be noted that, in actual applications, the interactive component 3 may also include a prompter (not shown), which may be a speaker, buzzer, etc., and this embodiment of the present application is not limited to this. The display component 31 and the prompter may both be disposed on the device body 11 or the lid body 21, or one of the display component 31 and the prompter may be disposed on the device body 11 and the other on the lid body 21. Alternatively, in other optional embodiments, the interactive component 3 may include only the display component 31 or the prompter.

[0082] In summary, compared with the existing technology, the detection device 100 has at least the following beneficial effects: the detection device 100 movably connects the cover body 21 equipped with a signal detection device 22 (such as an antenna assembly, etc.) to the machine body 11 equipped with a main control device 12, so as to connect the machine cover 2 with the host 1, and assemble the signal detection device 22 and the host 1 into a whole. In this way, on the one hand, it can be conveniently carried, avoiding the inconvenience of carrying caused by the separation of the signal detection device 22 and the host 1. On the other hand, by assembling the signal detection device 22 with the main control device 12 that receives the detection signal of the signal detection device 22, and also arranging the interactive component 3 together with the signal detection device 22 and / or the main control device 12, through the signal interaction between the main control device 12, the signal detection device 22 and the interactive component 3, the operator can directly confirm whether there is a suspicious device in the environment through the relevant information displayed by the interactive component 3 and the detection signal output by the main control device 12 according to the signal detection device 22, and when it is confirmed that there is a suspicious device, at least the approximate location of the suspicious device can be determined. There is no need to move the signal detection device 22 and the host 1 back and forth to adjust and confirm because they are not together, which is conducive to simplifying the detection operation and improving the detection efficiency.

[0083] In order to make the technical personnel in this field better understand the present application scheme, the following Figures 1 to 7 , the technical solutions in the embodiments of the present application are further described in detail.

[0084] In some embodiments of the present application, Figure 1As shown, to enable the cover body 21 to be movably connected to the main body 11, the detection device 100 further includes a rotation connection mechanism 4. The cover body 21 is rotationally connected to the main body 11 via the rotation connection mechanism 4. For example, two rotation connection mechanisms 4 are provided side by side between the cover body 21 and the main body 11. The cover 2 is connected by the two rotation connection mechanisms 4, allowing it to be flipped relative to the main body 1. Of course, in other optional embodiments, the number of rotation connection mechanisms 4 may be one or more, and this embodiment of the present application is not limited thereto.

[0085] Optionally, for ease of operation, the rotation of the cover 2 relative to the main unit 1 is damped rotation. Of course, the cover 2 can also be fixedly connected to the main unit 1 at a fixed point after the cover 2 is rotated to a suitable position. The rotation connection mechanism 4 can adopt an existing structure, such as a pivot structure, or a newly created structure. The specific structure is not particularly limited here. Generally, it is sufficient to ensure that the cover 2 can rotate relative to the main unit 1 and that the cover 2 is fixed at a fixed point.

[0086] It should be noted that, in some embodiments of the present application, Figure 1 and Figure 3 As shown, in order to facilitate carrying the detection device 100, the host 1 also includes a handle 114. The handle 114 is detachably provided on one side of the main body 11 of the host 1. Specifically, the two ends of the handle 114 can be detachably connected to the main body 11 through a snap-fit ​​structure. When the handle 114 is installed on the main body 11, a gripping space can be formed between the handle 11 and the main body 11. The gripping space can be used for the user's hand to pass through to grip the host 1. The handle 114 can effectively fix the user's hand when gripping, thereby reducing the probability of the user's hand slipping and causing the detection device 100 to fall out of the hand and be damaged. Of course, in other embodiments, the handle 114 can also be provided on the cover body 21 of the cover 2, or on the main body 11 of the host 1 and the cover body 21 of the cover 2.

[0087] In some embodiments of the present application, in order to improve the detection efficiency of the detection device 100 and facilitate the operation of the operator, the rotation angle α of the cover 2 relative to the host 1 can meet the following conditions: 0°≤α≤180°. Figure 1 As shown, the rotation angle α is the angle between the surface of the cover body 21 facing the top surface of the machine body 11 and the top surface of the machine body 11 .

[0088] For example, when α=0°, the cover body 21 is in a folded state, that is, the cover 2 and the host 1 are covered, which is convenient for storage, transportation, etc.

[0089] When α=180°, the cover 2 and the host 1 are completely opened relative to each other. If the detection device 100 is placed horizontally, then the cover 2 and the host 1 are both in a flat position. For ease of explanation, when α=180°, this state of the detection device 100 is referred to as the standard detection state.

[0090] In some embodiments of the present application, Figure 1 As shown, the cover body 21 has a first end 211 and a second end 212 opposite to each other. The first end 211 of the cover body 21 is connected to the rotational connection mechanism 4 to achieve a rotational connection between the cover 2 and the host 1 via the rotational connection mechanism 4. The second end 212 of the cover body 21 is a flip end. When the cover 2 and the host 1 are closed, the cover 2 can be opened by operating the second end 212.

[0091] In addition, if Figure 2 As shown, the signal detection device 22 includes an antenna assembly 221, wherein the main radiation direction S1 of the antenna assembly 221 (see Figure 1 and Figure 2 ) is parallel to the direction from the first end 211 to the second end 212. It can be understood that the main radiation direction S1 is, for example, the radiation direction of the main lobe. If the host 1 and the cover 2 are in a fully open state, and the operator is holding the host 1, then the main radiation direction S1 of the antenna assembly 221 is directly in front of the operator. In this embodiment, the main radiation direction S1 of the antenna assembly 221 is the same as the direction in which the cover 2 points to the front. In this way, if the operator wants to detect a certain target area, he can directly align the cover 2 with the target area to make the main radiation direction S1 of the antenna assembly 221 point to the target area, that is, the operator can directly determine the main radiation direction S1 by pointing the cover 2, thereby improving the efficiency and accuracy of the detection.

[0092] For example, Figure 2 As shown, the antenna assembly 221 includes a wire plate 2211 and an antenna 2212. The wire plate 2211 is disposed on the cover body 21, and the antenna 2212 is disposed on the wire plate 2211. According to the arrangement of the antennas 2212 in the antenna assembly 221, the primary radiation direction S1 of the antenna assembly 221 is directly in front of the wire plate 2211. In other words, the wire plate 2211 receives the radio signals directly in front of it best. Obviously, when the cover 2 is adjusted to face the wireless signal source, it helps ensure the accuracy of wireless signal detection.

[0093] Also illustratively, Figure 1 and Figure 2As shown, the cover body 21 includes a top cover 213 and a bottom cover 214 that overlap each other. A receiving cavity (not shown) is formed between the top cover 213 and the bottom cover 214. The antenna assembly 221 is received within the receiving cavity, meaning that the antenna assembly 221 is built into the cover body 21. Of course, in other embodiments, the antenna assembly 221 can also be directly disposed on the outside of the cover body 21, etc., which is not particularly limited here.

[0094] In some embodiments of the present application, in order to simplify the overall structure of the detection device 100 and ensure the safety of its circuits, Figure 1 and Figure 3 As shown, the rotating connection mechanism 4 is provided with a wire hole 41 along the rotating axis. The feeding point of the antenna 2212 of the antenna assembly 221 is electrically connected to the main control device 12 via a connecting wire (not shown) passing through the wire hole 41.

[0095] For example, one end of the connecting wire is electrically connected to the feed point of the antenna 2212, and the other end of the connecting wire passes through the wire hole 41 and is electrically connected to the main control device 12 in the host 1. After the antenna 2212 converts the detected detection signal into an electrical signal, it can be transmitted to the main control device 12 via the connecting wire, so that the main control device 12 can analyze the received signal and obtain relevant radio information in the current environment, such as the name of each WiFi, the signal strength of each WiFi, the name of each Bluetooth, the signal strength of each Bluetooth, etc.

[0096] In some embodiments of the present application, to facilitate and expedite the location of the detected electronic device, in one specific embodiment, the detection device 100 further includes a first attitude sensor (not shown), which is disposed on the device body 11 or the cover body 21 and is electrically connected to the main control device 12. Of course, in other embodiments, the first attitude sensor can also be directly disposed on the main control device 12, thereby saving signal lines between the first attitude sensor and the main control device 12, thereby reducing the number of signal lines in the main control device 12.

[0097] In this specific embodiment, the first attitude sensor can be used to detect the heading angle of the detection device 100 and output the heading angle data to the main control device 12. It can be understood that the main control device 12 can control the interaction content of the interaction component 3 based on the heading angle data of the first attitude sensor and the strength of the detection signal of the signal detection device 22, so as to assist in finding the direction of the target electronic device.

[0098] For example, when an operator holds the detection device 100 in the above-mentioned standard detection state (the standard detection state can specifically be that the rotation angle α of the cover 2 relative to the main body 1 is 180 degrees) and rotates in place for detection, if the signal detection device 22 receives a radio signal, it can output the radio signal as a detection signal to the main control device 12. At the same time, the first attitude sensor can continuously detect the heading angle of the detection device 100 and output the corresponding heading angle data of the detection device 100 to the main control device 12, so that the main control device 12 can determine the radio signal strength in various directions of the detection device 100 based on the received heading angle data and the strength of the detection signal. In addition, the main control device 12 can control the display component 31 to display the received heading angle data and the strength of the detection signal in a corresponding manner on the display screen 311, so that the operator can intuitively see from the display screen 311 which direction has the strongest radio signal strength, thereby facilitating further investigation of the specific direction of the target electronic device.

[0099] It should be noted that if the detection device 100 is required to perform detection in the standard detection state, when the detection device 100 is not in the standard detection state, the operator can adjust the rotation angle α between the cover 2 and the host 1 to 180° according to the corresponding prompt information displayed by the display component 31 controlled by the main control device 12, thereby adjusting the detection device 100 to the standard detection state and then performing relevant detection of the target electronic device. Of course, it can be understood that the standard detection state is only a recommended device state and does not mean that wireless signal detection cannot be achieved in other device states. For example, if the cover 2 and the host 1 are not fully opened relative to each other, α = 150°, and only the host 1 is set horizontally, wireless signal detection can also be achieved.

[0100] Alternatively, to expedite the location of a detected electronic device, some embodiments of the present application further provide another specific implementation, wherein the detection device 100 in this other specific implementation differs from the previous specific implementation at least in that, whereas the previous specific implementation primarily utilizes a single attitude sensor to assist in determining information such as the specific location of the target electronic device, this other specific implementation primarily utilizes two attitude sensors to assist in determining status information of the detection device 100. The details are as follows.

[0101] In this other embodiment, the detection device 100 further includes a second posture sensor (not shown) and a third posture sensor (not shown), wherein the second posture sensor is disposed on the first body (specifically, the machine body 11 or the cover body 21) and is electrically connected to the main control device 12. The second posture sensor can be used to detect the posture of the first body and output first posture data to the main control device 12. Correspondingly, the third posture sensor is disposed on the second body (specifically, the cover body 21 or the machine body 11) and is electrically connected to the main control device 12. The third posture sensor can be used to detect the posture of the second body and output second posture data to the main control device 12.

[0102] It is understandable that in this specific embodiment, the main control device 12 can determine the opening and closing state between the first body and the second body by combining the first posture data of the first body (such as the machine body 11) transmitted by the second posture sensor and the second posture data of the second body (such as the cover body 21) transmitted by the third posture sensor, thereby determining whether the detection device 100 is currently in the standard detection state. If the judgment result is that it is not in the standard detection state, the main control device 12 can display it through the display component 31 of the interactive component 3 to facilitate the operator to adjust the posture of the first body and the second body, or directly prompt the operator on how to operate through the voice prompt of the interactive component 3, etc. In this way, the problem of reduced detection effect caused by the rotation angle α of the cover 2 of the detection device relative to the host 1 is effectively avoided.

[0103] One of the first and second bodies is the main body 11, and the other is the cover body 21. For example, if the second posture sensor is provided on the main body 11, then the third posture sensor is provided on the cover body 21. Conversely, if the second posture sensor is provided on the cover body 21, then the third posture sensor is provided on the main body 11. Of course, in other specific embodiments, the second posture sensor or the third posture sensor can also be provided on the main control device 12, thereby eliminating signal lines between the second and third posture sensors and the main control device 12, thereby reducing the number of signal lines in the main control device 12.

[0104] Optionally, the second and third posture sensors may be nine-axis sensors. Of course, other suitable sensors may also be used, and are not particularly limited here. Furthermore, the first and second posture data include, but are not limited to, pitch angle data and roll angle data. As long as the angle between the cover 2 and the host 1 can be calculated based on the combination of the first and second posture data, the cover 2 and the host 1 can be adjusted to a standard detection state.

[0105] The specific method for calculating the angle between the cover 2 and the host 1 based on the first posture data and the second posture data may be based on the existing technology and is not limited in this embodiment.

[0106] In other embodiments, the first attitude sensor can be either the second attitude sensor or the third attitude sensor. For example, if the first attitude sensor and the second attitude sensor are the same sensor, the sensor can have two functions: first, it can detect the heading angle of the detection device 100 to facilitate identification of the location of the target electronic device. Second, the first attitude sensor can work together with the third attitude sensor to determine the angle between the computer cover 2 and the host 1.

[0107] In some embodiments of the present application, Figure 4 As shown, the detection device 100 further includes a first magnetic component 5 and a second magnetic component 6. The first magnetic component 5 is provided on the machine body 11, and correspondingly, the second magnetic component 6 is provided on the cover body 21. The cover body 21 and the machine body 11 that overlap each other can be magnetically attracted to each other through the first magnetic component 5 and the second magnetic component 6. It is understandable that when the cover 2 is covered on the host 1, the first magnetic component 5 and the second magnetic component 6 are magnetically attracted together. This ensures that the rotation angle α of the cover 2 relative to the host 1 completely reaches 0°. It also prevents the cover 2 and the host 1 from opening and closing randomly when the detection device 100 is in a folded state, thereby ensuring that the detection device 100 remains in the folded state.

[0108] It should be noted that the first magnetic component 5 can be arranged inside the machine body 11 or on the surface of the machine body 11. Similarly, the second magnetic component 6 can be arranged inside the cover body 21 or on the surface of the cover body 21. It is only necessary to ensure that when the machine cover 2 is closed on the host 1, the first magnetic component 5 and the second magnetic component 6 can be magnetically attracted to each other.

[0109] Further optionally, as Figure 4 As shown, the first magnetic component 5 includes at least one first magnetic part 51, and the second magnetic component 6 includes at least one second magnetic part 61, wherein, when the cover body 21 and the machine body 11 are covered, each first magnetic part 51 is attracted to at least one second magnetic part 61. It can be understood that the cover body 21 and the machine body 11 are connected together by the magnetic attraction between the two magnetic parts. On the one hand, it can help to improve the adsorption durability between the cover body 21 and the machine body 11, and compared with the magnetic adsorption (i.e., the magnetic part and the metal part are attracted to each other) solution, it can avoid the problem of decreased adsorption force due to rust of iron products. On the other hand, it is conducive to improving the safety and reliability of the detection equipment 100, and can avoid the occurrence of adverse phenomena such as fallen rust contacting the main control device 12 to cause a short circuit, contacting the antenna 2212 and the wire plate 2211 to affect the detection effect. In addition, compared with pure iron products, the structure of the two magnetic parts adsorbing each other is simpler and has lower cost.

[0110] It is also understandable that the first magnetic member 51 may have one second magnetic member 61 correspondingly attracted thereto, or may have two or more second magnetic members 61 correspondingly attracted thereto, depending on actual needs.

[0111] For example, in a specific embodiment of the present application, Figure 4 As shown, two first magnetic members 51 are provided, and correspondingly, two second magnetic members 61 are provided. The two first magnetic members 51 can be respectively provided on opposite sides of the host 1, and the two second magnetic members 61 can be respectively provided on opposite sides of the second end 212 of the cover 2, and the two first magnetic members 51 can be respectively provided corresponding to the two second magnetic members 61. When the cover 2 is closed on the host 1, the two first magnetic members 51 can be magnetically attracted to the two second magnetic members 61 on a one-to-one basis, so that the opposite sides of the second end 212 of the cover 2 can be firmly magnetically adsorbed to the corresponding positions of the host 1, thereby ensuring that the cover 2 is always in a folded state with a rotation angle α = 0° relative to the host 1 in the absence of external force.

[0112] In addition, in a specific implementation of this embodiment, the signal detection device 22 includes an antenna assembly 221, wherein the first magnetic assembly 5 is not located in the main radiation direction S1 of the antenna assembly 221. The magnetic components of the first magnetic assembly 5 and the second magnetic assembly 6 can be located in directions other than the main radiation direction S1 of the antenna assembly 221, for example, they can be located in the left and right directions of the main radiation direction S1, so as to improve the detection effect of the antenna assembly 221 and reduce the signal interference caused by the first magnetic assembly 5 and the second magnetic assembly 6 to the wireless signal received by the antenna 2212 in the main radiation direction of the antenna assembly 221.

[0113] In some embodiments of the present application, Figure 3 As shown, in order to simplify the structure of the detection device 100 and reduce its occupied space, a first installation cavity 111 is formed in the body 11 of the host 1, wherein the main control device 12 is accommodated in the first installation cavity 111. Specifically in this embodiment, for example, Figure 1 and Figure 3 As shown, the display component 31 of the interactive component 3 covers the body 11 of the host 1 to form a first installation cavity 111 for installing the main control device 12.

[0114] Specifically, if Figure 3 As shown, the display assembly 31 includes a display screen 311 and a mounting frame 312, wherein the display screen 311 is mounted in the middle portion of the mounting frame 312 to form the display assembly 31. In addition, in order to further simplify the structure of the detection device 100, as shown in FIG. Figure 3As shown, the rotating connection mechanism 4 can also be set on the installation frame 312 of the display component 31. For example, the rotating connection mechanism 4 is a pivot structure, and the wire hole 41 can be directly opened on the pivot of the rotating connection mechanism 4.

[0115] Optionally, to achieve heat dissipation of the detection device 100, as Figure 1 、 Figure 3 、 Figure 5 and Figure 6 As shown, an air inlet 112 and an air outlet 113 are respectively provided on two opposite sides (specifically the front and rear sides) of the machine body 11 , wherein the air inlet 112 and the air outlet 113 are both communicated with the first installation cavity 111 .

[0116] In addition, the host 1 also includes a radiator 13, which is provided with an air inlet channel 131 and an air outlet channel 132. The air inlet channel 131 faces the main control device 12, and the air outlet channel 132 faces the air outlet 113. It can be understood that the radiator 13 is located in the first installation cavity 111 and is primarily used to dissipate heat from the main control device 12 and other components in the first installation cavity 111.

[0117] For example, the radiator 13 may be a cooling fan. Figure 5 and Figure 6 As shown, there are two air outlets 113 and two air inlets 112. In the first installation cavity 111, the machine body 11 is equipped with two radiators 13 near the air outlet 113. The two radiators 13 are located at the main control device 12 ( Figure 5 and Figure 6 The bottom of the detection device 100 is not shown), wherein the air inlet channels 131 of the two radiators 13 face the main control device 12, and the air outlet channels 132 face the two air outlets 113 respectively, so that the hot air flow around the main control device 12 can be quickly discharged out of the detection device 100 through the air inlet channel 131, the air outlet channel 132 and the air outlet 113 in sequence, so as to achieve the effect of heat dissipation and cooling of the main control device 12.

[0118] Further optionally, to further improve the heat dissipation effect of the detection device 100, the radiator 13 is located between the air inlet 112 and the air outlet 113, and is arranged opposite the air inlet 112 and the air outlet 113. Exemplarily, each radiator 13 is arranged directly opposite the corresponding air inlet 112 and air outlet 113. In other words, the air outlet channel 132 of each radiator 13 is located on the same straight line as the corresponding air inlet 112 and air outlet 113, thereby shortening the heat dissipation path, thereby facilitating rapid cooling of the rapid main control device 12.

[0119] and / or, such as Figure 5 and Figure 6As shown, in order to further improve the heat dissipation effect of the detection device 100 , the host 1 also includes a heat sink 14 , wherein the heat sink 14 is installed on the main control device 12 in the first installation cavity 111 and is located between the radiator 13 and the air inlet 112 .

[0120] For example, specifically in this embodiment, the air outlet channel 132, the air inlet 112 and the air outlet 113 of the radiator 13 are located on the same straight line, and the heat sink 14 is installed on the back of the main control device 12, so as to greatly improve the heat dissipation efficiency of the main control device 12.

[0121] Alternatively, in other embodiments of the present application (not shown), to achieve the movable connection between the cover body and the main body, a storage cavity (not shown) is provided within the main body, and the cover is slidably connected to the main body. When the cover is in the storage state, the cover is located in the storage cavity. When the cover is in the operating state, at least a portion of the cover slides out, exposed from the storage cavity, and can rotate relative to the main body at a fixed point, or be horizontal with the main body.

[0122] Exemplarily, the cover may include a sliding connection portion (not shown) and a rotating portion (not shown), wherein the cover may be slidably connected to the host via the sliding connection portion, and the signal detection device may be mounted on the rotating portion, and when the cover is in the storage state, the sliding connection portion and the rotating portion on which the signal detection device is mounted are both located within the storage cavity. In a specific embodiment, the rotating portion is rotatably connected to the sliding connection portion, wherein, when the cover is in the working state, the sliding connection portion may still be at least partially located within the storage cavity, and the rotating portion is entirely located outside the storage cavity and can rotate relative to the sliding connection portion, thereby achieving fixed-point rotation relative to the host, and then detecting target electronic devices in the environment by adjusting at a suitable angle, and also flipping to the top of the host to align the cover with the host.

[0123] Alternatively, in another embodiment, the rotating portion is fixedly connected to the sliding connection portion (removable or non-removable), wherein when the cover is in an operating state, the sliding connection portion is at least partially located within the storage cavity, and the rotating portion is at least partially located outside the storage cavity. The rotating portion and the sliding connection portion of the cover are both arranged horizontally with the host. In this way, when detection is required, detection can be carried out by simply pulling the cover out of the host, which is convenient and quick. It should be noted that in this case, the cover does not have the function of covering the host.

[0124] The embodiment of the present application also provides a detection device 100 for eavesdropping and spying devices, which can be used to detect eavesdropping and spying devices. Figures 1 to 7As shown, the detection device 100 of the eavesdropping and spying device includes a host 1, a cover 2, and an interactive component 3. The host 1 includes a body 11 and a main control device 12, and the main control device 12 is mounted on the body 11. The cover 2 includes a cover body 21 and an antenna assembly 221. The cover body 21 has a connecting end and a flip end that are oppositely arranged. The connecting end of the cover body 21 is connected to the body 11 with damped rotation, so that the rotation angle α of the cover 2 relative to the host 1 satisfies the following: 0°≤α≤180°.

[0125] In addition, the antenna assembly 221 is installed on the cover body 21 and electrically connected to the main control device 12, and the main radiation direction S1 of the antenna assembly 221 is toward the flip end of the cover body 21, so that the antenna assembly 221 can receive radio signals from the front of the cover 2.

[0126] In the embodiment of the present application, the interactive component 3 is provided in the body 11 and / or the cover body 21 and is electrically connected to the main control device 12. The main control device 12 can be used to control the interactive component 3 according to the radio signal received by the antenna component 221.

[0127] Understandably, the detection device 100 of the eavesdropping and spying device connects the cover body 21, on which the antenna assembly 221 is mounted, to the machine body 11, on which the main control device 12 is mounted, by means of a damped rotation connection, so as to rotatably connect the cover body 21 to the host 1 via the machine cover 2, thereby assembling the antenna assembly 221 and the host 1 together. This, on the one hand, facilitates portability, avoiding the inconvenience of carrying caused by the separation of the antenna assembly 221 and the host 1. On the other hand, by assembling the antenna assembly 221 together with the main control device 12 that receives the detection signal from the antenna assembly 221, it can also help reduce the difficulty of operation, ensuring that the operator can directly confirm whether the target device exists in the environment in which they are located, without having to move the antenna assembly 221 back and forth because it is not together with the host 1.

[0128] The foregoing is merely a preferred embodiment of the present application and is not intended to limit the present application. Various modifications and variations are possible for those skilled in the art. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present application should be included within the scope of the claims of the present application.

Claims

1. A detection device, characterized in that: The detection equipment includes: The host comprises a machine body and a main control device; the main control device is installed on the machine body; The machine cover comprises a cover body and a signal detection device; the cover body is movably connected to the machine body, the signal detection device is installed on the cover body and electrically connected to the main control device; the signal detection device is used to output a detection signal; An interactive component is provided on the machine body and / or the cover body, and is electrically connected to the main control device; the main control device is used to output a control signal to the interactive component according to the detection signal output by the signal detection device.

2. The detection device according to claim 1, characterized in that The detection device further includes a rotation connection mechanism, and the cover body is rotationally connected to the machine body through the rotation connection mechanism.

3. The detection device according to claim 2, characterized in that The angle between the top surface of the machine body and the surface of the cover body facing the top surface of the machine body is a rotation angle α, and 0°≤α≤180°.

4. The detection device according to claim 2, characterized in that The cover body has a first end and a second end opposite to each other, wherein the first end is connected to the rotation connection mechanism; The signal detection device comprises: The antenna assembly has a main radiation direction parallel to a direction from the first end to the second end.

5. The detection device according to claim 4, characterized in that The rotating connection mechanism is provided with a wire-passing hole along the rotating axis; the antenna assembly comprises: a wire plate, disposed on the cover body; The antenna is arranged on the wire board; the feeding point of the antenna is electrically connected to the main control device through a connecting wire passing through the wire hole.

6. The detection device according to claim 1, characterized in that The detection device also includes: The first attitude sensor is provided on the machine body or the cover body and is electrically connected to the main control device; the first attitude sensor is used to detect the heading angle of the detection device and output the heading angle data to the main control device.

7. The detection device according to claim 1, characterized in that The detection device also includes: a second posture sensor, provided on the first body and electrically connected to the main control device; the second posture sensor is used to detect the posture of the first body and output first posture data to the main control device; a third posture sensor, provided on the second body and electrically connected to the main control device; the third posture sensor is used to detect the posture of the second body and output second posture data to the main control device; Wherein, one of the first body and the second body is the machine body, and the other is the cover body.

8. The detection device according to claim 1, characterized in that The detection device also includes: A first magnetic component is provided on the machine body; a second magnetic component, provided on the cover body; The cover body and the machine body that overlap each other are magnetically attracted to each other through the first magnetic component and the second magnetic component.

9. The detection device according to claim 8, characterized in that The first magnetic assembly includes at least one first magnetic member, and the second magnetic assembly includes at least one second magnetic member; When the cover body and the machine body are covered, each of the first magnetic members is attracted to at least one of the second magnetic members.

10. The detection device according to claim 9, characterized in that The signal detection device includes an antenna assembly, and the first magnetic assembly is not located in the main radiation direction of the antenna assembly.

11. The detection device according to any one of claims 1 to 10, characterized in that: The interactive component further includes a display component, and the display component is electrically connected to the main control device; The display assembly is provided on a first end surface of the machine body, and the first end surface of the machine body is an end surface of the machine body facing the cover body when the machine body and the cover body are covered; Alternatively, the display assembly is provided on the second end surface of the cover body, and the second end surface of the cover body is the end surface of the cover body facing the machine body when the machine body and the cover body are covered.

12. The detection device according to any one of claims 1 to 10, characterized in that: A first installation cavity is formed in the machine body, and the main control device is accommodated in the first installation cavity; An air inlet and an air outlet communicating with the first installation cavity are respectively provided on opposite sides of the main body; the main unit further comprises: The radiator is provided with an air inlet channel and an air outlet channel communicating with each other; the air inlet channel faces the main control device, and the air outlet channel faces the air outlet.

13. The detection device according to claim 12, characterized in that The radiator is located between the air inlet and the air outlet, and is arranged opposite to the air inlet and the air outlet; And / or, the host further includes: A heat sink is installed on the main control device and is located between the radiator and the air inlet.

14. The detection device according to claim 1, characterized in that The host is provided with a storage cavity, and the cover is slidably connected to the host; When the cover is in the storage state, the cover is located in the storage cavity; When the cover is in the working state, at least a portion of the cover slides out and is exposed outside the receiving cavity, and can rotate relative to the host at a fixed point, or the cover and the host are both in a horizontal state.

15. The detection device according to claim 1, characterized in that The detection device also includes: A handle is detachably connected to the machine body, and a gripping space is formed between the machine body and the handle.

16. A device for detecting eavesdropping or spying devices, characterized in that: The detection equipment of the eavesdropping and spying device includes: The host comprises a machine body and a main control device; the main control device is installed on the machine body; A machine cover, the machine cover comprising a cover body and an antenna assembly; the cover body having a connecting end and a flip end oppositely disposed, the connecting end of the cover body being connected to the machine body with damped rotation; the antenna assembly being mounted on the cover body, electrically connected to the main control device, and having a main radiation direction toward the flip end of the cover body; The interactive component is provided on the machine body and / or the cover body and is electrically connected to the main control device; the main control device is used to control the operation of the interactive component according to the radio signal received by the antenna component.