Electronic device
Patent Information
- Application Number
- CN202521997402.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-17
- Publication Date
- 2026-09-08
- Estimated Expiration
- 2035-09-17
AI Technical Summary
[0003]本实用新型提供一种电子设备,用以至少解决或者改善现有电子设备的相关功能使用效果差,不能较好地满足用户使用需求的问题
[0016]本实用新型提供的电子设备,包括主机和子机,通过对主机设置收纳部,以及基于子机的壳体设置传感组件、第一电路板和第一通信模块,可以在电子设备处于整机状态时,基于主机的收纳部和子机的壳体的相互配合,实现对子机的收纳,便于在电子设备处于整机状态时的随身携带,而在电子设备处于分体状态时,子机的传感组件采集的信息在经过第一电路板的处理后,可以通过第一通信模块传输至主机,达到利用子机完成主机所能够实现的功能,改善主机的相关功能使用效果差的问题,满足了用户的使用需求。
Smart Images

Figure CN224733755U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electronic equipment technology, and in particular to an electronic device. Background Technology
[0002] Currently, existing electronic devices such as mobile phones, tablets, and educational large screens typically integrate specific functions such as audio pickup and communication to meet diverse application needs. To achieve this functional diversity, electronic devices often stack multiple functional components, which limits the design of components related to specific functions and prevents them from fully meeting user requirements. Utility Model Content
[0003] This invention provides an electronic device to at least solve or improve the problem that existing electronic devices have poor functionality and cannot adequately meet user needs.
[0004] This utility model provides an electronic device, comprising: The main unit has a storage compartment; The submachine includes a sensing component, a first circuit board, and a first communication module disposed in the housing; the sensing component and the first circuit board are electrically connected, and the first circuit board and the first communication module are electrically connected. When the electronic device is in its complete state, the housing is disposed in the storage part; when the electronic device is in its split state, the housing is separated from the storage part, and the first communication module can communicate with the host.
[0005] According to the present invention, an electronic device is provided, wherein the sensing component includes a microphone array, and a voice recognition module and a translation module are provided on the first circuit board; The microphone array is electrically connected to the speech recognition module, the speech recognition module is electrically connected to the translation module, and the translation module is electrically connected to the first communication module.
[0006] According to the present invention, the electronic device further includes a sound-generating module, which is disposed in the housing and electrically connected to the first circuit board. And / or, the sub-device further includes a start button, which is disposed in the housing and electrically connected to the first circuit board, and the start button is used to control the microphone array to start working.
[0007] According to the present invention, an electronic device is provided, wherein the host includes a second circuit board and a second communication module, the second circuit board and the second communication module are electrically connected, the first communication module and the second communication module are communicatively connected, and are configured to be plugged in.
[0008] According to the present invention, an electronic device further includes a first power supply and a first electrical connection port, wherein the first power supply is electrically connected to the first circuit board, and the first circuit board is electrically connected to the first electrical connection port. The host also includes a second power supply and a second electrical connection port, the second power supply and the second circuit board are electrically connected, and the second circuit board and the second electrical connection port are electrically connected. When the electronic device is in its complete state, the first electrical connection port and the second electrical connection port are electrically connected.
[0009] According to the present invention, the electronic device further includes a camera module and a first electrical connection port, wherein the camera module and the first electrical connection port are electrically connected. The host also includes a second electrical connection port, which is disposed in the storage part; when the electronic device is in the complete state, the first electrical connection port and the second electrical connection port are electrically connected.
[0010] According to the present invention, an electronic device is provided in which a receiving cavity is formed inside the housing, and a receiving groove is provided on the surface of the housing, the receiving groove communicating with the receiving cavity through a wire through-hole; The sensing component and the first circuit board are respectively disposed in the receiving cavity, and the first communication module is rotatably disposed in the receiving slot. The first communication module is electrically connected to the first circuit board through a cable passing through the wire hole.
[0011] According to an electronic device provided by this utility model, the first communication module is capable of switching between a first state and a second state relative to the housing; When the first communication module is in the first state, the first communication module is hidden in the receiving slot. When the first communication module is in the second state, at least a portion of the first communication module is exposed outside the receiving slot.
[0012] According to the present invention, an electronic device is provided in which the housing is provided with a guide port, the guide port is connected to the receiving groove, and is arranged to extend circumferentially relative to the rotation axis of the first communication module; The sub-machine also includes an operation knob, which is movably disposed at the guide port and connected to the first communication module.
[0013] According to the present invention, an electronic device is provided, wherein a wiring cavity is further formed inside the housing, the receiving groove is connected to the wiring cavity through the wire through the wire through the hole, and the wiring cavity is connected to the receiving cavity through the sealing hole; The cable is housed in the wiring cavity, and the first end of the cable extends through the through-hole into the receiving groove to connect to the first communication module. The second end of the cable extends through the sealing port into the receiving cavity to connect to the first circuit board.
[0014] According to the present invention, an electronic device includes a storage part comprising a positioning groove formed on the surface of the host, wherein at least a portion of the housing is adapted to the structure of the positioning groove for storage within the positioning groove.
[0015] According to the present invention, an electronic device further includes a magnetic attraction component; The magnetic attraction component includes a first part and a second part. The first part is disposed in the positioning groove, and the second part is disposed in the housing. The first part and the second part can magnetically attract each other.
[0016] The electronic device provided by this utility model includes a main unit and a sub-unit. By providing a storage unit to the main unit and a sensing component, a first circuit board, and a first communication module based on the casing of the sub-unit, the sub-unit can be stored in the main unit when the electronic device is in its complete state, thanks to the cooperation between the storage unit of the main unit and the casing of the sub-unit. This makes it easy to carry when the electronic device is in its complete state. When the electronic device is in its separate state, the information collected by the sensing component of the sub-unit is processed by the first circuit board and then transmitted to the main unit through the first communication module. This allows the sub-unit to perform the functions that the main unit can perform, improving the poor performance of the main unit's related functions and meeting the user's needs. Attached Figure Description
[0017] To more clearly illustrate the technical solutions in this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0018] Figure 1 This is a structural diagram of the electronic device provided by this utility model in its complete state.
[0019] Figure 2 This is a schematic diagram of the electronic device provided by this utility model in a split state.
[0020] Figure 3 This is a schematic diagram of the structure of the slave unit provided by this utility model, which is exposed outside the receiving slot of the first communication module.
[0021] Figure 4 This utility model provides Figure 3 A schematic diagram of the explosion structure.
[0022] Figure 5 This is a schematic diagram of the structure of the slave unit provided by this utility model, which is hidden in the first communication module's accommodating slot.
[0023] Figure 6 This utility model provides Figure 5 A schematic diagram of the explosion structure.
[0024] Figure 7 This is a block diagram of the control structure of the host and slave unit provided by this utility model.
[0025] Figure label: 1. Main unit; 11. Storage section; 101. Second circuit board; 102. Second communication module; 103. Second power supply; 104. Second electrical connection port; 2. Sub-unit; 201. First circuit board; 202. First communication module; 203. First power supply; 204. First electrical connection port; 205. Sensing component; 206. Sound module; 207. Start button; 208. Camera module; 21. Housing; 211. Cover plate; 212. Shell cover; 2101. Receiving cavity; 2102. Receiving slot; 2103. Guide port; 2104. Wiring cavity; 2111. Threading port; 2112. Sealing port; 22. Operation knob. Detailed Implementation
[0026] To make the objectives, technical solutions, and advantages of this utility model clearer, the technical solutions of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0027] The following is combined with Figures 1-7 The electronic device provided by the utility model embodiments will be described in detail through specific implementation examples and application scenarios.
[0028] In some embodiments, such as Figure 1 , Figure 2 and Figure 7 As shown, this embodiment of the present invention provides an electronic device, including: a host 1 and a slave 2; The main unit 1 has a storage section 11, and the sub-unit 2 includes a housing 21, a sensing component 205, a first circuit board 201, and a first communication module 202; the sensing component 205, the first circuit board 201, and the first communication module 202 are respectively disposed in the housing 21, the sensing component 205 and the first circuit board 201 are electrically connected, and the first circuit board 201 and the first communication module 202 are electrically connected. When the electronic device is in its complete state, the housing 21 is disposed in the storage part 11; when the electronic device is in its separate state, the housing 21 is separated from the storage part 11, and the first communication module 202 can communicate with the host 1.
[0029] It is understandable that the host 1 can be set to a cube shape, for example, the host 1 has the structure of a mobile phone. The structure of the storage part 11 is adapted to the structure of a part of the shell 21 of the sub-unit 2. The storage part 11 can be formed in a groove on the surface of the host 1. When the electronic device is in the whole state, the shell 21 of the sub-unit 2 can be detachably installed on the storage part 11 of the host 1. At this time, the user only needs to hold the host 1 to carry the whole electronic device.
[0030] like Figure 3 and Figure 4 As shown, the sub-machine 2 can be set to a cubic shape. However, the volume of the sub-machine 2 is smaller than that of the main machine 1. The housing 21 of the sub-machine 2 may include a shell 212 and a cover plate 211. The shell 212 has a cover opening end, and the cover plate 211 is detachably installed at the cover opening end. A receiving cavity 2101 is formed between the shell 212 and the cover plate 211. The sensing component 205, the first circuit board 201 and the first communication module 202 can be disposed in the receiving cavity 2101.
[0031] For the slave unit 2, the sensing component 205 is used to collect information, the first circuit board 201 is used to process the information collected by the sensing component 205, and the first communication module 202 is used to transmit the information processed by the first circuit board 201 to the host unit 1. The host unit 1 can display the information collected by the first communication module 202 in real time.
[0032] In practical applications, the sensing component 205 can be used to collect relevant information about the surrounding environment. The sensing component 205 corresponds to the function implemented by the sensor on the host 1, and can ensure the quality and intensity of information collection. For example, the sensing component 205 may include a microphone to collect voice information, and the sensing component 205 may also include an antenna to collect antenna signals.
[0033] Of course, the sensing component 205 can also be a sensor that is not configured on the host 1. For example, the sensing component 205 can be a temperature and humidity sensor, a pressure sensor, an acceleration sensor, a gas sensor, a dust sensor, etc., without specific limitations.
[0034] The first circuit board 201 can be a PCB board. The first circuit board 201 integrates information processing modules such as CPU. The information processing module processes the information collected by the sensing component 205 and transmits the processed information to the host 1 through the first communication module 202.
[0035] The first communication module 202 can be a wired communication module such as a USB module or an Ethernet module, or a wireless communication module such as a Bluetooth module or a WiFi module; there is no specific limitation on this.
[0036] The electronic device provided by this utility model includes a main unit 1 and a sub-unit 2. By providing a storage part 11 to the main unit 1 and providing a sensing component 205, a first circuit board 201, and a first communication module 202 on the housing 21 of the sub-unit 2, the sub-unit 2 can be stored in its entirety when the electronic device is in the complete state, thanks to the cooperation between the storage part 11 of the main unit 1 and the housing 21 of the sub-unit 2. This makes it easy to carry when the electronic device is in the complete state. When the electronic device is in a separate state, the information collected by the sensing component 205 of the sub-unit 2 is processed by the first circuit board 201 and then transmitted to the main unit 1 through the first communication module 202. This allows the sub-unit 2 to perform the functions that the main unit 1 can perform, improving the poor performance of the main unit 1's related functions and meeting the user's needs.
[0037] In some embodiments, such as Figure 5 , Figure 6 and Figure 7 As shown, the sensing component 205 includes a microphone array, and a voice recognition module and a translation module are disposed on the first circuit board 201; The microphone array and the speech recognition module are electrically connected, the speech recognition module and the translation module are electrically connected, and the translation module and the first communication module 202 are electrically connected.
[0038] It is understandable that by setting the sensing component 205 as a microphone array, the microphone array can be used to pick up voice information better, thereby overcoming the problem of poor sound pickup effect of the existing microphone on the host 1.
[0039] In practical applications, the speech recognition module can adopt a typical embedded speech recognition module known in the field, which has built-in functions such as DSP noise reduction, echo cancellation, keyword wake-up, and voiceprint recognition. This speech recognition module supports 16kHz PCM audio input and is used to convert speech information collected by the microphone array into text information.
[0040] The translation module can use an AI voice translation MCU known in the art. Through an embedded neural network translation model (NMT), it translates the voice information (mainly text information) recognized by the voice recognition module into the text information required by the user. The text information translated by the translation module can be transmitted to the host 1 through the first communication module 202, and then broadcast by the speaker of the host 1 or displayed in real time on the display screen of the host 1.
[0041] Based on the above settings, the sub-machine 2 in this embodiment can be applied to multi-person conversational meetings, speeches, and other occasions that require high-precision translation.
[0042] In some examples, the microphone array includes multiple microphones arranged sequentially at intervals along the circumference of the housing 21, or the microphones are distributed at intervals on the side of the housing 21, and each microphone can be electrically connected to the first circuit board 201 via a flexible circuit board or wires.
[0043] The spacing between two adjacent microphones is set to be more than 30mm, and the multiple microphones include at least one electret microphone and at least two silicon microphones.
[0044] like Figure 4 and Figure 6 As shown, the housing 21 is provided with a pickup hole Y, which is used to connect to the receiving cavity 2101. The microphone is disposed inside the receiving cavity 2101, and the microphone is sealed to the inner wall of the receiving cavity 2101. The microphone's pickup end and the pickup hole are arranged opposite to each other. There are multiple pickup holes Y, and multiple pickup holes Y and multiple microphones are arranged opposite to each other.
[0045] In some embodiments, such as Figure 4 , Figure 6 and Figure 7 As shown, the sub-unit 2 also includes a sound-generating module 206, which is disposed in the housing 21 and electrically connected to the first circuit board 201.
[0046] It is understood that the sound-generating module 206 can be a loudspeaker known in the art. The sound-generating module 206 is disposed in the receiving cavity 2101 of the housing 21, and the housing wall of the housing 21 is provided with a sound outlet corresponding to the sound-generating module 206.
[0047] In practical applications, the voice module 206 can be electrically connected to the translation module on the first circuit board 201. When the microphone array collects voice information, the voice recognition module recognizes the voice information used by the microphone array, and then the translation module translates the information recognized by the voice recognition module. Finally, the voice module 206 plays the translation content of the translation module in real time.
[0048] In some embodiments, such as Figure 4 , Figure 6 and Figure 7 As shown, the sub-unit 2 also includes a start button 207. The start button 207 is located in the housing 21 and is electrically connected to the first circuit board 201. The start button 207 is used to receive the user's press input to control the microphone array to start working and begin collecting voice information from the surrounding environment.
[0049] In some embodiments, such as Figure 7 As shown, the host 1 includes a second circuit board 101 and a second communication module 102. The second circuit board 101 and the second communication module 102 are electrically connected, and the first communication module 202 and the second communication module 102 are communicatively connected and configured for plug-in setup.
[0050] It is understandable that the second circuit board 101 can be a PCB board, and the second circuit board 101 integrates a processing module to be responsible for the logic control and function implementation of the entire host 1.
[0051] The first communication module 202 and the second communication module 102 are compatible plug-in modules, such as USB interfaces. In practical applications, the first communication module 202 can be a USB male connector and the second communication module 102 can be a USB female connector. By plugging the first communication module 202 and the second communication module 102 into one unit, the relevant information of the slave device 2 can be transmitted to the host device 1.
[0052] In some embodiments, such as Figure 4 , Figure 6 and Figure 7 As shown, the sub-unit 2 also includes a first power supply 203 and a first electrical connection port 204. The first power supply 203 is electrically connected to the first circuit board 201, and the first circuit board 201 is electrically connected to the first electrical connection port 204. The host 1 also includes a second power supply 103 and a second electrical connection port 104. The second power supply 103 is electrically connected to the second circuit board 101, and the second circuit board 101 is electrically connected to the second electrical connection port 104. When the electronic device is in its complete state, the first electrical connection port 204 and the second electrical connection port 104 are electrically connected.
[0053] It is understood that both the first power source 203 and the second power source 103 can be batteries, such as lithium batteries; the first electrical connection port 204 and the second electrical connection port 104 can be USB interfaces or pogo pin interfaces, without specific limitations.
[0054] In practical applications, since the slave unit 2 is also equipped with a first power supply 203, the slave unit 2 can be used independently without the host unit 1. When the electronic device is in the whole machine state, since the first electrical connection port 204 and the second electrical connection port 104 are electrically connected, the host unit 1 can be used to charge the slave unit 2, and the slave unit 2 can be used to charge the host unit 1.
[0055] In some embodiments, such as Figure 4 , Figure 6 and Figure 7 As shown, the sub-unit 2 also includes a camera module 208 and a first electrical connection port 204, which are electrically connected. The host 1 also includes a second electrical connection port 104, which is disposed in the storage part 11; when the electronic device is in the complete state, the first electrical connection port 204 and the second electrical connection port 104 are electrically connected.
[0056] It is understandable that the camera module 208 can be housed within the receiving cavity 2101 of the sub-unit 2. A light-transmitting port is provided on the housing 21 of the sub-unit 2, and this port is positioned opposite the lens of the camera module 208 to ensure the normal image capture function of the camera module 208. By installing the camera module 208 in the sub-unit 2, the problem of limited space on the main unit 1 making it difficult to install a camera module can be solved. The camera module 208 is used for image acquisition.
[0057] In practical applications, when the electronic device is in its complete state, the camera module 208 can conveniently transmit the captured images to the host 1 through the electrical connection between the first electrical connection port 204 and the second electrical connection port 104, thereby reducing the transmission delay of video information.
[0058] In some embodiments, such as Figure 7 As shown, the sub-unit 2 also includes a first power supply 203, a camera module 208 and a first electrical connection port 204. The first power supply 203 is electrically connected to the first circuit board 201, and the camera module 208 is electrically connected to the first circuit board 201 and the first electrical connection port 204. The main unit 1 also includes a second power supply 103 and a second electrical connection port 104. The second electrical connection port 104 is disposed in the storage part 11. The second power supply 103 is electrically connected to the second circuit board 101, and the second circuit board 101 is electrically connected to the second electrical connection port 104. When the electronic device is in its complete state, the first electrical connection port 204 and the second electrical connection port 104 are electrically connected. The first electrical connection port 204 and the second electrical connection port 104 can be pogo pin interfaces, allowing both video signals and charging signals to be transmitted between them.
[0059] In some embodiments, such as Figure 3 , Figure 4 and Figure 5 As shown, a receiving cavity 2101 is formed inside the housing 21, and a receiving groove 2102 is provided on the surface of the housing 21. The receiving groove 2102 is connected to the receiving cavity 2101 through a wire through hole 2111; wherein, the receiving groove 2102 can be provided on the side of the housing 21. The sensing component 205 and the first circuit board 201 are respectively disposed in the receiving cavity 2101. The first communication module 202 can be a USB interface. The first communication module 202 is rotatably disposed in the receiving groove 2102. The first communication module 202 is electrically connected to the first circuit board 201 through the cable K passing through the wire through the wire through the wire through the opening 2111.
[0060] The sensing component 205 may be a microphone array consisting of multiple microphones, with each microphone positioned opposite to a pickup hole Y located on the back of the housing 21.
[0061] In some embodiments, such as Figure 3 , Figure 4 and Figure 5 As shown, the first communication module 202 is rotatably disposed in the receiving groove 2102 via a rotating shaft, so that the first communication module 202 can switch between a first state and a second state relative to the housing 21.
[0062] like Figure 5 As shown, when the first communication module 202 is in the first state, the first communication module 202 is hidden in the receiving slot 2102; as Figure 3 As shown, by rotating the first communication module 202 by 90°, the first communication module 202 can be switched from the first state to the second state. When the first communication module 202 is in the second state, at least part of the first communication module 202 is exposed outside the receiving slot 2102. At this time, the user can plug the first communication module 202 into the second communication module 102 set on the host 1 to realize the communication connection between the host 1 and the slave 2.
[0063] In some embodiments, a first limiting protrusion and a second limiting protrusion may also be provided in the receiving groove 2102. When the first communication module 202 is in a first state, the first limiting protrusion abuts against the first communication module 202 to ensure that the first communication module 202 is maintained in the first state; when the first communication module 202 is in a second state, the second limiting protrusion abuts against the first communication module 202 to ensure that the first communication module 202 is maintained in the second state.
[0064] The central angle between the first limiting protrusion and the second limiting protrusion and the rotation axis of the first communication module 202 can be configured to be 90°.
[0065] In some embodiments, such as Figure 5 As shown, the housing 21 is provided with a guide port 2103, which communicates with the receiving groove 2102 and extends circumferentially relative to the rotation axis of the first communication module 202. The sub-machine 2 also includes an operation knob 22, which is movably disposed in the guide port 2103 and connected to the first communication module 202.
[0066] It is understandable that by setting the operation knob 22, it is convenient for the user to control the rotation of the first communication module 202 relative to the housing 21.
[0067] The guide port 2103 can be configured to extend along an arc, and the operation knob 22 can slide along the extension direction of the guide port 2103 when turned by the user, so that the operation knob 22 can drive the first communication module 202 to rotate and switch between the first state and the second state.
[0068] In practical applications, to facilitate manual operation by the user, the operating knob 22 can be provided with a head and a connecting rod. The head is located outside the housing 21 and is connected to the first end of the connecting rod. The connecting rod is movably inserted through the guide port 2103, and the second end of the connecting rod extends into the receiving groove 2102 and is connected to the first communication module 202.
[0069] In some embodiments, such as Figure 4 As shown, a wiring cavity 2104 is also formed inside the housing 21. The receiving groove 2102 is connected to the wiring cavity 2104 through the wire through port 2111, and the wiring cavity 2104 is connected to the receiving cavity 2101 through the sealing port 2112. The cable is housed in the wiring cavity 2104. The first end of the cable extends through the through-hole 2111 into the receiving groove 2102 to connect to the first communication module 202. The second end of the cable extends through the sealing port 2112 into the receiving cavity 2101 to connect to the first circuit board 201.
[0070] It is understood that the cable pass-through port 2111 is located between the partition wall between the receiving groove 2102 and the wiring cavity 2104. The cable pass-through port 2111 is configured to extend circumferentially relative to the rotation axis of the first communication module 202 so that the cable passing through the cable pass-through port 2111 can rotate with the first communication module 202.
[0071] Meanwhile, the wiring cavity 2104 provides redundant space for the cable corresponding to the first communication module 202. A portion of the cable is stored in the wiring cavity 2104 to meet the normal rotation requirements of the first communication module 202. Considering that the second end of the cable extends into the receiving cavity 2101 through the sealing port 2112, this design isolates the wiring cavity 2104 from the receiving cavity 2101, preventing external dust and / or moisture from entering the receiving cavity 2101, thus providing good dustproof and waterproof functions.
[0072] In practical applications, a sealing plug can be installed at the sealing port 2112. The sealing plug has a wire hole, through which the cable passes and is configured to have an interference fit with the sealing plug.
[0073] In some embodiments, such as Figure 1 and Figure 2 As shown, the storage part 11 includes a positioning groove formed on the surface of the main unit 1, and at least part of the housing 21 is adapted to the structure of the positioning groove so as to be stored in the positioning groove.
[0074] It is understandable that when the housing 21 of the sub-machine 2 is housed in the positioning groove, the positioning fit between the positioning groove and the housing 21 of the sub-machine 2 can prevent the main machine 1 and the sub-machine 2 from separating.
[0075] In some examples, the positioning groove is roughly rectangular, with at least one limiting rib on each of the four sides. When the housing 21 of the sub-machine 2 is assembled in the positioning groove, the gap between the limiting rib and the housing 21 is less than 0.05mm, so as to ensure that the sub-machine 2 will not wobble left and right in the positioning groove of the main machine 1.
[0076] In some embodiments, such as Figure 4 and Figure 6 As shown, the electronic device also includes a magnetic attraction component, which includes a first part and a second part. The first part is disposed in a positioning groove, and the second part is disposed in the housing 21. The first part and the second part can magnetically attract each other.
[0077] It is understandable that, based on the magnetic attraction between the first part and the second part, the sub-unit 2 can be stably housed in the positioning slot of the main unit 1. One of the first part and the second part can be a first magnet, and the other of the first part and the second part can be a second magnet or a ferromagnetic component.
[0078] like Figure 4As shown, the first part includes four first magnets, which are labeled C1, C2, C3 and C4 in sequence. These four first magnets are disposed in the corresponding receiving cavity 2101 of the housing 21 of the sub-machine 2 and are located at the four corners of the housing 21. Correspondingly, four second magnets can be disposed in the positioning groove of the main machine 1. The four first magnets and the four second magnets are arranged opposite each other.
[0079] In practical applications, when the electronic device is in its complete state and the host 1 and the slave 2 are connected via a pogopin interface, the magnetic attraction between the first part and the second part can be set to be greater than the elastic resistance caused by the pogopin connection between the host 1 and the slave 2, so as to ensure the stability of the slave 2 and the host 1 during assembly, as well as the damping feel when disassembling and assembling the slave 2.
[0080] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and not to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model.
Claims
1. An electronic device, comprising: include: The main unit has a storage compartment; The submachine includes a housing and a sensing component, a first circuit board, and a first communication module disposed on the housing; The sensing component is electrically connected to the first circuit board, and the first circuit board is electrically connected to the first communication module; When the electronic device is in its complete state, the housing is disposed in the storage section; When the electronic device is in a split state, the housing is separated from the storage part, and the first communication module can communicate with the host.
2. The electronic device of claim 1, wherein, The sensing component includes a microphone array, and a voice recognition module and a translation module are provided on the first circuit board; The microphone array is electrically connected to the speech recognition module, the speech recognition module is electrically connected to the translation module, and the translation module is electrically connected to the first communication module.
3. The electronic device of claim 2, wherein, The sub-machine also includes: a sound-generating module, which is disposed in the housing and electrically connected to the first circuit board; And / or, the sub-device further includes a start button, which is disposed in the housing and electrically connected to the first circuit board, and the start button is used to control the microphone array to start working.
4. The electronic device of claim 1, wherein, The host includes a second circuit board and a second communication module, the second circuit board and the second communication module are electrically connected, the first communication module and the second communication module are communicatively connected, and are configured for plug-in configuration.
5. The electronic device of claim 4, wherein, The sub-machine also includes a first power supply and a first electrical connection port, wherein the first power supply is electrically connected to the first circuit board, and the first circuit board is electrically connected to the first electrical connection port; The host also includes a second power supply and a second electrical connection port, the second power supply and the second circuit board are electrically connected, and the second circuit board and the second electrical connection port are electrically connected. When the electronic device is in its complete state, the first electrical connection port and the second electrical connection port are electrically connected.
6. The electronic device of claim 4, wherein, The sub-machine also includes a camera module and a first electrical connection port, wherein the camera module and the first electrical connection port are electrically connected; The host also includes a second electrical connection port, which is disposed in the storage part; when the electronic device is in the complete state, the first electrical connection port and the second electrical connection port are electrically connected.
7. The electronic device according to any one of claims 1 to 6, characterized in that, The housing has a receiving cavity, and the surface of the housing is provided with a receiving groove, which communicates with the receiving cavity through a wire through-hole; The sensing component and the first circuit board are respectively disposed in the receiving cavity, and the first communication module is rotatably disposed in the receiving slot. The first communication module is electrically connected to the first circuit board through a cable passing through the wire hole.
8. The electronic device of claim 7, wherein, The first communication module is capable of switching between a first state and a second state relative to the housing; When the first communication module is in the first state, the first communication module is hidden in the receiving slot. When the first communication module is in the second state, at least a portion of the first communication module is exposed outside the receiving slot.
9. The electronic device of claim 8, wherein, The housing is provided with a guide port, which communicates with the receiving groove and extends circumferentially relative to the rotation axis of the first communication module; The sub-machine also includes an operation knob, which is movably disposed at the guide port and connected to the first communication module.
10. The electronic device of claim 8, wherein, The housing also has a wiring cavity, the receiving groove is connected to the wiring cavity through the wire through the wire through the hole, and the wiring cavity is connected to the receiving cavity through the sealing port; The cable is housed in the wiring cavity, and the first end of the cable extends through the through-hole into the receiving groove to connect to the first communication module. The second end of the cable extends through the sealing port into the receiving cavity to connect to the first circuit board.
11. The electronic device of any one of claims 1 to 6, wherein, The storage section includes a positioning groove formed on the surface of the main unit, and at least a portion of the housing is structurally adapted to the positioning groove for storage within it.
12. The electronic device of claim 11, wherein, The electronic device also includes a magnetic attraction component; The magnetic attraction component includes a first part and a second part. The first part is disposed in the positioning groove, and the second part is disposed in the housing. The first part and the second part can magnetically attract each other.