Electronic equipment
By using magnetic attractors and electrical connectors (such as pins and jacks) in smart devices to fix and connect the equipment host and bracket, the problem of instability in signal transmission in the prior art is solved, and higher electrical connection stability and reliability are achieved.
Patent Information
- Application Number
- CN202421886235.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-06
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-08-06
AI Technical Summary
The connection structure of the existing smart device host and bracket cannot meet the high-precision signal transmission requirements of the equipment function, and the connection between POGPIN and Bluetooth is prone to failure of signal transmission.
The first magnetic suction member and the second magnetic suction member are used to fix the equipment host on the bracket, and the electrical connection between the equipment host and the bracket is realized by separating and cooperating with each other.
It improves the stability and reliability of electrical connections, ensures the stability of signal transmission, and the magnetic phase absorption of the magnetic suction piece can automatically guide the pins and jacks to align, reducing plug-in resistance.
Smart Images

Figure CN222980905U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of intelligent devices, and particularly relates to an electronic device. Background Art
[0002] At present, the main connection methods between the host and the bracket of intelligent devices on the market are POGPIN connection or Bluetooth connection. However, this solution can no longer meet the requirements under the current increasing demands for device functions. For example, a high-precision camera on the bracket cannot effectively transmit signals through a small number of POGPINs and Bluetooth connections with the device host. Moreover, if only the POGPIN connection method is simply increased for transmission, problems such as transmission failure due to POGPIN damage are likely to occur. Summary of the Utility Model
[0003] In view of the problem of poor signal transmission in the existing connection structure between the device host and the bracket, the utility model provides an electronic device, including: a device host, a bracket, a first magnetic attraction member and a second magnetic attraction member that are magnetically attracted to each other, and a first electrical connection member and a second electrical connection member that can be separated from each other and are connected in cooperation. The first magnetic attraction member and the second magnetic attraction member are respectively arranged on the device host and the bracket and are adjustable in position. The device host is adsorbed and fixed on the bracket through the magnetic attraction force between the magnetic attraction members. The first electrical connection member and the second electrical connection member are respectively arranged on the device host and the bracket and are adjustable in position. The first electrical connection member and the second electrical connection member are connected in a plugging or abutting manner to electrically connect the device host and the bracket, improving the electrical connection stability and ensuring the stability and reliability of signal transmission.
[0004] To achieve the above object, the utility model adopts the following technical solutions:
[0005] An electronic device, including: a device host, a bracket, a first magnetic attraction member, a second magnetic attraction member, a first electrical connection member and a second electrical connection member that can be separated from each other and are connected in cooperation; the first magnetic attraction member and the second magnetic attraction member are magnetically arranged on the device host and the bracket respectively and are adjustable in position, and the device host is fixed on the bracket through the magnetic attraction of the first magnetic attraction member and the second magnetic attraction member; the first electrical connection member and the second electrical connection member are respectively arranged on the device host and the bracket and are adjustable in position, and the device host and the bracket are electrically connected through the first electrical connection member and the second electrical connection member.
[0006] In some embodiments, the first electrical connection member is a plurality of pins; the second electrical connection member is a plurality of jacks corresponding to the pins.
[0007] In some embodiments, a plurality of the pins are arranged in concentric circles on the bracket, and the distances between adjacent pins are equal; a plurality of the jacks are arranged in concentric circles on the device main body, and the distances between adjacent pins are equal.
[0008] In some embodiments, it includes: a matching protective bump and a protective groove; the protective bump is arranged on the device main body or the bracket where the pins are located, and is arranged circumferentially around the pins; the protective groove is arranged on the device main body or the bracket where the jacks are located, and is arranged circumferentially around the jacks.
[0009] In some embodiments, it further includes: a matching guiding bump and a guiding groove; the guiding bump is arranged on the bracket or the device main body where the pins are located, the pins penetrate through the guiding bump and protrude from the outer wall of the guiding bump along the axial direction of the guiding bump; a plurality of the pins are arranged in two rows, and the distances between adjacent pins are equal; the guiding groove is arranged on the bracket or the device main body where the jacks are located, a plurality of the jacks are arranged in the guiding groove, the jacks are arranged in two rows, and the distances between adjacent jacks are equal.
[0010] In some embodiments, it further includes a first elastic component, and the first elastic component is arranged at one end of the pins away from the jacks.
[0011] In some embodiments, it further includes: a first covering member, a second covering member, a first accommodating groove, a second accommodating groove and a plurality of second elastic components; the first accommodating groove and the second accommodating groove are arranged on the device main body or the bracket where the pins are located, and the first accommodating groove and the second accommodating groove are respectively arranged on both sides of the pins and their positions are adjustable; the first covering member is connected to the first accommodating groove through the second elastic components, and the first covering member can slide relative to the first accommodating groove; the second covering member is connected to the second accommodating groove through the second elastic components, and the second covering member can slide relative to the second accommodating groove; the first covering member and the second covering member enclose a accommodating space, and the pins are arranged in the accommodating space; the first covering member and the second covering member can approach or separate from each other to close or expose the pins arranged therein.
[0012] In some embodiments, it further includes: at least two positioning members and positioning holes for the positioning members to be inserted therein; the positioning members are arranged in the accommodating space and are located on both sides of the pins; the positioning holes are arranged on the device main body or the bracket where the jacks are located and are located on both sides of the jacks; the first covering member and the second covering member can approach or separate from each other to close or expose the positioning members arranged therein.
[0013] In some embodiments, the first electrical connector is a plurality of electrical connection portions, and the second electrical connector is a plurality of electrical connectors; the electronic device further includes: a first docking member and a second docking member that are adapted to each other, the electrical connection portions and the electrical connectors are respectively disposed on the first docking member and the second docking member, and their positions are adjustable; the first docking member and the second docking member are cooperatively docked so that the electrical connection portions and the electrical connectors are abutted and electrically connected.
[0014] In some embodiments, the first docking member is a first bump, the first bump is disposed on the bracket, the outer sidewall of the first bump is inclined, and a plurality of the electrical connection portions are arrayed on two opposite outer sidewalls of the first bump; the second docking member is a first groove, the first groove is disposed on the device main body, the inner sidewall of the first groove is inclined, and a plurality of the electrical connectors are arrayed on two opposite inner sidewalls of the first groove.
[0015] In some embodiments, the first docking member is a second bump, the second bump is disposed on the bracket, and a plurality of the electrical connectors are arrayed on the top surface of the second bump; the second docking member is a second groove, the second groove is disposed on the device main body, and a plurality of the electrical connection portions are arrayed on the bottom surface of the second groove.
[0016] In some embodiments, the first docking member is a third bump, at least two of the third bumps are disposed in parallel on the bracket, and a plurality of the electrical connection portions are arrayed on two opposite outer sidewalls of the third bump; the second docking member is a third groove, at least two of the third grooves are disposed in parallel on the device main body, and a plurality of the electrical connectors are arrayed on two opposite inner sidewalls of the third groove.
[0017] In some embodiments, the first docking member is disposed on the device main body, the first docking member is a fourth groove, a fifth bump is disposed in the fourth groove, the outer sidewall of the fifth bump is inclined, and a plurality of the electrical connectors are arrayed on two opposite outer sidewalls of the fifth bump; the second docking member is disposed on the bracket, the second docking member is a fourth bump, a fifth groove is disposed on the fourth bump, the inner sidewall of the fifth groove is inclined, and a plurality of the electrical connection portions are arrayed on two opposite inner sidewalls of the fifth groove.
[0018] In some embodiments, the first docking member is a sixth bump, the sixth bump is disposed on the bracket, an outer sidewall of the sixth bump is inclined, and a plurality of the electrical connection portions are arrayed on two opposite outer sidewalls of the sixth bump; the second docking member is a sixth groove, the sixth groove is disposed on the device main body, an inner sidewall of the sixth groove is inclined, and a plurality of the electrical connection members are arrayed on two opposite inner sidewalls of the sixth groove.
[0019] In some embodiments, the first docking member includes an eighth groove and a driving device, a plurality of the eighth grooves are arrayed at an end of the device main body, and a plurality of the electrical connection members are respectively disposed in each of the eighth grooves; the driving device is configured to drive the electrical connection member to extend out of or retract into the eighth groove; the second docking member is a seventh groove, a plurality of the seventh grooves are arrayed at an end of the bracket, and a plurality of the electrical connection portions are respectively disposed in each of the seventh grooves.
[0020] In some embodiments, the first docking member is a semi-circular bump, a plurality of the semi-circular bumps are arrayed at an end of the bracket, and a plurality of the electrical connection portions are respectively disposed on each of the semi-circular bumps; the second docking member is a semi-circular groove, a plurality of the semi-circular grooves are arrayed at an end of the device main body, and the electrical connection members are respectively disposed in each of the semi-circular grooves.
[0021] In some embodiments, the electrical connection member is a PAD pad, and the electrical connection member is a spring piece. In some embodiments,
[0022] Compared with the prior art, the present utility model has the following beneficial effects:
[0023] 1. The electronic device provided by the present utility model electrically connects the device main body and the bracket through the first electrical connection member and the second electrical connection member, and is further provided with a first magnetic attraction member and a second magnetic attraction member that magnetically attract each other, firmly fixing the device main body on the bracket to prevent the device main body from accidentally falling off during use;
[0024] 2. The present utility model provides pins and jacks as the electrical connection members of the device main body and the bracket respectively. Compared with the connection method using POGPIN in the prior art, the pin and jack design can be very accurately aligned, the electrical connection is more reliable, and the magnetic attraction force between the first magnetic attraction member and the second magnetic attraction member can automatically guide the pins and jacks to be aligned, overcoming the resistance during insertion;
[0025] 3. The present utility model also provides a protective bump disposed on the periphery of the pin and a protective groove disposed on the periphery of the socket. The protective bump and the protective groove are matched and docked to guide the insertion of the pin and the socket, and can effectively protect the pin and the socket. While facilitating their stable connection, it effectively prevents them from being damaged and ensures their service life.
[0026] 4. The present utility model also provides an electrical connection part and an electrical connection member as the electrical connection members of the device main body and the bracket respectively. The electrical connection part and the electrical connection member are in contact with each other to achieve the electrical connection between the device main body and the bracket. This physical contact connection method provides a stable electrical connection, reduces signal loss or interruption caused by poor contact, and can also quickly establish or disconnect the connection, which is suitable for applications that require frequent plugging and unplugging. At the same time, the magnetic attraction between the first magnetic member and the second magnetic member can improve the connection tightness of the electrical connection part and the electrical connection member. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] The present utility model will be further described below in conjunction with the drawings and embodiments.
[0028] Figure 1 It is an overall schematic diagram of the electronic device provided by the present utility model;
[0029] Figure 2 It is a schematic structural diagram of the bracket provided by the present utility model;
[0030] Figure 3 It is a schematic structural diagram of the support plate provided in Embodiment 2 of the present utility model;
[0031] Figure 4 It is a schematic structural diagram of the device main body provided in Embodiment 2 of the present utility model;
[0032] Figure 5 It is a cross-sectional view of the electronic device provided in Embodiment 2 of the present utility model;
[0033] Figure 6 It is a schematic structural diagram of the guiding groove provided in Embodiment 3 of the present utility model;
[0034] Figure 7 It is a schematic structural diagram of the guiding bump provided in Embodiment 3 of the present utility model;
[0035] Figure 8 It is a cross-sectional view of the electronic device provided in Embodiment 3 of the present utility model;
[0036] Figure 9 It is a cross-sectional view of the electronic device provided in Embodiment 4 of the present utility model;
[0037] Figure 10 It is a schematic structural diagram of the support plate provided in Embodiment 5 of the present utility model;
[0038] Figure 11 Another structural schematic diagram of the support plate provided in Embodiment 5 of the present utility model;
[0039] Figure 12 Structural schematic diagram of the equipment host provided in Embodiment 5 of the present utility model;
[0040] Figure 13 Cross-sectional view of the electronic device provided in Embodiment 5 of the present utility model;
[0041] Figure 14 Structural schematic diagram of the support plate provided in Embodiment 6 of the present utility model;
[0042] Figure 15 Structural schematic diagram of the equipment host provided in Embodiment 6 of the present utility model;
[0043] Figure 16 Cross-sectional view of the electronic device provided in Embodiment 6 of the present utility model;
[0044] Figure 17 Structural schematic diagram of the support plate provided in Embodiment 7 of the present utility model;
[0045] Figure 18 Structural schematic diagram of the equipment host provided in Embodiment 7 of the present utility model;
[0046] Figure 19 Cross-sectional view of the electronic device provided in Embodiment 7 of the present utility model;
[0047] Figure 20 Structural schematic diagram of the support plate provided in Embodiment 8 of the present utility model;
[0048] Figure 21 Structural schematic diagram of the equipment host provided in Embodiment 8 of the present utility model;
[0049] Figure 22 Cross-section of the electronic device provided in Embodiment 8 of the present utility model;
[0050] Figure 23 Structural schematic diagram of the support plate provided in Embodiment 9 of the present utility model;
[0051] Figure 24 Structural schematic diagram of the equipment host provided in Embodiment 9 of the present utility model;
[0052] Figure 25 Cross-sectional view of the electronic device provided in Embodiment 9 of the present utility model;
[0053] Figure 26Schematic diagram of the support plate provided in Embodiment 10 of the present utility model;
[0054] Figure 27 Schematic diagram of the equipment host provided in Embodiment 10 of the present utility model;
[0055] Figure 28 Cross-sectional view of the electronic device provided in Embodiment 10 of the present utility model;
[0056] Figure 29 Schematic diagram of the equipment host provided in Embodiment 11 of the present utility model;
[0057] Figure 30 Schematic diagram of the driving device provided in Embodiment 11 of the present utility model;
[0058] Figure 31 Schematic diagram of the support plate provided in Embodiment 11 of the present utility model;
[0059] Figure 32 Schematic diagram of the support plate provided in Embodiment 12 of the present utility model;
[0060] Figure 33 Schematic diagram of the equipment host provided in Embodiment 12 of the present utility model;
[0061] Figure 34 Cross-sectional view of the electronic device provided in Embodiment 12 of the present utility model.
[0062] The meanings of the reference symbols in the drawings are as follows:
[0063] 1 - Equipment host; 2 - Bracket; 201 - Base; 202 - Support plate; 3 - Pin; 4 - Socket; 5 - Spring; 6 - Protective bump; 7 - Protective groove; 8 - Guide bump; 9 - Guide groove; 10 - Fixed plate; 11 - First elastic component; 12 - Electrical connection part; 13 - Electrical connection piece; 14 - First bump; 15 - First groove; 16 - Second bump; 17 - Second groove; 18 - Third bump; 19 - Third groove; 20 - Fourth bump; 21 - Fourth groove; 22 - Fifth bump; 23 - Fifth groove; 24 - Sixth bump; 25 - Sixth groove; 26 - Seventh groove; 17 - Seventh bump; 28 - Driving device; 29 - Eighth groove; 30 - Semi-circular bump; 31 - Semi-circular groove; 32 - First covering piece; 33 - Second covering piece; 34 - Second elastic component; 35 - Accommodating groove; 36 - Positioning piece; 36 - Positioning hole. Detailed implementation manners
[0064] The present invention will be further explained in detail below in conjunction with the accompanying drawings and the description of specific embodiments. However, the following description including the embodiments is only used to enable those of ordinary skill in the technical field to which the present invention belongs to more clearly understand the principles and essence of the present invention, and does not mean any form of limitation to the present invention.
[0065] Embodiment 1
[0066] This embodiment provides a connecting device between an intelligent device and a bracket. As Figure 1 shown, it includes: a device host 1, a bracket 2, a first magnetic member, a second magnetic member, a first electrical connection mechanism and a second electrical connection mechanism that can be separated from each other and cooperate to connect. Specifically:
[0067] The first magnetic member and the second magnetic member are respectively arranged on the device host 1 and the bracket 2 and their positions are adjustable. The device host 1 is fixed on the bracket 2 by the magnetic attraction of the first magnetic member and the second magnetic member.
[0068] Furthermore, as Figure 2 shown, the bracket 2 includes a base 21 and a support plate 202. The support plate 202 is erected on the base 21. The support plate 202 is used to connect and support the device host 1. Both the device host 1 and the support plate 202 can be integrally provided with magnetic members. The device host 1 can be an intelligent device such as a tablet computer. The first magnetic member is arranged on the entire back surface of the tablet computer, and the second magnetic member is arranged on the entire contact surface between the support plate 202 and the device host 1, or the support plate 202 is entirely made of a magnetic material, and the tablet computer is fixed on the support plate 202 by magnetic attraction.
[0069] The first electrical connection member and the second electrical connection member are respectively arranged on the device host 1 and the bracket 2 and their positions are adjustable. The device host 1 and the bracket 2 are electrically connected through the first electrical connection member and the second electrical connection member to realize signal transmission.
[0070] Furthermore, the above-mentioned first electrical connection member or second electrical connection member is arranged on the support plate 202, the corresponding first electrical connection member or second electrical connection member is arranged on the back surface of the device host 1, and electronic devices such as cameras, microphones or earphones arranged on the bracket 2 are electrically connected to the device host 1 through the support plate 202, the first electrical connection member and the second electrical connection member to transmit data and control information.
[0071] The following will illustrate the specific implementation manners of the first electrical connection member and the second electrical connection member provided by the present invention in conjunction with the embodiments and the drawings:
[0072] Embodiment 2
[0073] Based on Embodiment 1, this embodiment provides a direct plug-in connection structure applied to a first electrical connector and a second electrical connector. The first electrical connector is a plurality of pins 3, and the second electrical connector is a plurality of jacks 4 corresponding to the pins 3.
[0074] In this embodiment, as Figure 2-4 shown, a plurality of pins 3 are arranged in concentric circles on the support plate 202, and the distance between adjacent pins 3 is equal.
[0075] A plurality of jacks 4 are arranged in concentric circles on the device host 1, and the distance between adjacent jacks 4 is equal. Electronic components (such as a PCB board circuit board, etc.) corresponding to the jacks 4 are provided on the device host 1, and the pins 3 pass through the jacks 4 and are electrically connected to the above-mentioned electronic components.
[0076] At the same time, the magnetic attraction between the first magnetic member and the second magnetic member can resist the resistance of the pins 3 inserted into the jacks 4, making the plug-in fit more firm and making the fixation of the device host 1 and the bracket 2 more stable.
[0077] Furthermore, the electronic device further includes: a matching protective bump 6 and a protective groove 7.
[0078] The protective bump 6 is provided on the device host 1 or the bracket 2 where the pins 3 are located, and is arranged around the circumference of the pins 3. The protective bump 6 can be arranged at intervals or continuously.
[0079] The protective groove 7 is provided on the device host 1 or the bracket 2 where the jacks 4 are located, and is arranged around the circumference of the jacks 4. The protective groove 7 can also be arranged at intervals or continuously, and just needs to be arranged corresponding to the protective bump 6.
[0080] After the protective bump 6 and the protective groove 7 are fitted and docked, the pins 3 can be inserted into the corresponding jacks 4, and the bracket 2 and the device host 1 are electrically connected. The protective bump 6 and the protective groove 7 can not only protect the pins 3 and the jacks 4, but also play a certain guiding role to facilitate the smooth docking of the pins 3 and the jacks 4.
[0081] Figure 2-5 Shown is the case where the protective bump 6 is provided on the bracket 2 where the pins 3 are located, and the protective groove 7 is provided on the device host 1 where the jacks 4 are located. The positions of the pins 3 and the jacks 4 are adjustable, and the positions of the protective bump 6 and the protective groove 7 change with the positions of the pins 3 and the jacks 4, which will not be elaborated here.
[0082] Embodiment 3
[0083] Based on Embodiment 2, the electronic device further includes: a matching guiding bump 8 and a guiding groove 9. The guiding bump 8 is provided on the bracket 2 where the pin 3 is located or on the device host 1, and the guiding groove 9 is provided on the bracket 2 where the socket 4 is located or on the device host 1.
[0084] Taking the guiding bump 8 being provided on the support plate 202 where the pin 3 is located and the guiding groove 9 being provided on the back surface of the device host 1 where the socket 4 is located as an example, as Figure 6-8 shown: The pin 3 penetrates through the guiding bump 8, and one end of the pin 3 protrudes axially from the outer wall of the guiding bump 8. The guiding bump 8 can also play a role in protecting the pin 3. A plurality of pins 3 are arranged in two rows, and the distance between adjacent pins 3 is equal. The socket 4 is arranged in the guiding groove 9, and a plurality of sockets 4 are arranged in two rows, and the distance between adjacent sockets 4 is equal. After the guiding bump 8 and the guiding groove 9 are docked, the pin 3 can be inserted into the corresponding socket 4 to realize the electrical connection between the bracket 2 and the device host 1.
[0085] In some embodiments, when the socket 4 is provided on the back surface of the device host 1, the electronic device further includes a fixing plate 10. The fixing plate 10 is provided between the socket 4 and the device host 1 and is electrically connected to the device host 1. When the pin 3 is inserted into the socket 4, it contacts the fixing plate 10 for electrical connection, thereby realizing the electrical connection with the device host 1.
[0086] The main function of the fixing plate 10 is to prevent the end of the pin 3 inserted into the socket 4 from moving towards the direction of the display screen of the device host 1, so as to avoid damaging the screen. At the same time, this fixing plate 10 also makes the back surface of the device host 1 a complete plane, avoiding the risk of white spots or local cracking of the display screen on the front surface of the device host 1 during the process of the whole machine falling or being locally impacted.
[0087] Embodiment 4
[0088] Based on Embodiments 1 - 3, as Figure 9 shown, the electronic device further includes a first elastic component 8, and the first elastic component 8 is arranged at one end of the pin 3 away from the socket 4.
[0089] The first elastic component 8 is mainly used for anti-collision. When the pin 3 is subjected to an external driving force, the first elastic component 8 is compressed, causing the pin 3 to retract.
[0090] Embodiment 5
[0091] Based on Embodiments 1 and 2, this embodiment provides a protective insertion connection structure. The electronic device further includes: a first covering member 32, a second covering member 33, at least two second elastic components 34, and at least two receiving grooves 35.
[0092] The accommodation grooves 35 are provided on the device main body 1 where the pins 3 are located or on the support plate 202 of the bracket 2, and are located on both sides of the pins 3. Taking the accommodation grooves being provided on the support plate 202 where the pins 3 are located as an example, as Figure 10-13 shown:
[0093] The first covering member 32 and the second covering member 33 are respectively elastically connected to the respective accommodation grooves 35 through the second elastic components 34. By compressing the second elastic components 34, the first covering member 32 and the second covering member 33 can be received in the accommodation grooves 35.
[0094] The first covering member 32 and the second covering member 33 can approach each other and enclose to form an accommodation space.
[0095] When the first covering member 32 and the second covering member 33 are covered, the first covering member 32 and the second covering member 33 extend out of the accommodation grooves 35 under the elastic force of the second elastic components 34, and the ends of the first covering member 32 and the ends of the second covering member 33 approach each other to cover the pins 3. When the ends of the first covering member 32 and the ends of the second covering member 33 are in contact, the pins 3 are completely covered.
[0096] When the first covering member 32 and the second covering member 33 are opened, an external force is used to push the first covering member 32 and the second covering member 33 to compress the second elastic components 34, so that the first covering member 32 and the second covering member 33 retract into the accommodation grooves, and at the same time, the first covering member 32 and the second covering member 33 move away from each other to expose the pins 3.
[0097] Furthermore, the electronic device further includes: at least two positioning members 36 and positioning holes 37 for the positioning members 36 to be inserted therein.
[0098] The positioning members 36 are provided in the accommodation space and are located on both sides of the pins 3, while the positioning holes 37 are provided on the device main body 1 where the jacks 4 are located or on the support plate 202, and are located on both sides of the jacks 4. Taking the positioning members 36 being provided on the support plate 202 where the pins 3 are located and the positioning holes 37 being provided on the device main body 1 where the jacks 4 are located as an example, as Figure 10-13 shown:
[0099] When the first covering member 32 and the second covering member 33 are covered, the ends of the first covering member 32 and the second covering member 33 approach each other to enclose the positioning members 36.
[0100] When the first covering member 32 and the second covering member 33 are opened, the first covering member 32 and the second covering member 33 move away from each other to expose the positioning members 36. After the positioning members 36 are inserted into the positioning holes 37, they provide a guiding function for the insertion of the pins 3 and the jacks 4.
[0101] Embodiment 6
[0102] Based on Embodiment 1, this embodiment provides a contact connection structure applied to a first electrical connector and a second electrical connector. The first electrical connector is a plurality of electrical connection parts 12, and the second electrical connector is a plurality of electrical connectors 13.
[0103] The electronic device further includes: a first docking member and a second docking member that are adapted to each other. The electrical connection parts 12 and the electrical connectors 13 are respectively arranged on the first docking member and the second docking member, and their positions are adjustable.
[0104] The first docking member and the second docking member are cooperatively docked so that the electrical connection part 1 and the electrical connector 13 are in contact and electrically connected.
[0105] Preferably, the above-mentioned electrical connection part 12 is a pad (PAD), and the electrical connector 13 is a spring piece. The pad is mainly the metal piece area on the PCB board for soldering the pins of components, and the spring piece can be in contact with the pad to achieve electrical connection.
[0106] The attractive magnetic force between the first magnetic member and the second magnetic member can not only firmly adsorb the device main body 1 on the bracket 2, but also help the contact between the electrical connection part 12 and the electrical connector 13 to be closer, ensuring the transmission efficiency.
[0107] In some embodiments, as Figure 14-16 shown, this embodiment provides an inclined surface contact connection structure. The first docking member is a first convex block 14, and the first convex block 14 is arranged on the support plate 202 of the bracket 2. The outer side wall of the first convex block 14 is inclined, and a plurality of electrical connection parts 12 are arranged in an array on the two opposite outer side walls of the first convex block 14.
[0108] The second docking member is a first groove 15, and the first groove 15 is arranged on the device main body 1. The inner side wall of the first groove 15 is inclined, and a plurality of electrical connectors 13 are arranged in an array on the two opposite inner side walls of the first groove 15.
[0109] After the first convex block 14 and the first groove 15 are cooperatively docked, the electrical connection part 12 on the outer side wall of the first convex block 14 contacts the electrical connector 13 on the inner side wall of the first groove 15 to achieve electrical connection.
[0110] It should be noted that the first convex block 14 can also be arranged on the device main body 1, and the first groove 15 is arranged on the support plate 202. The arrangement positions of the electrical connection part 12 and the electrical connector 13 change with the first convex block 14 and the first groove 15, which will not be elaborated here.
[0111] Embodiment 7
[0112] Based on Embodiment 6, as Figure 17-19As shown, this embodiment provides a front-contact connection structure. The first docking component is the second bump 16, and the second bump 16 is arranged on the support plate 202 of the bracket 2. A plurality of electrical connection components 13 are arranged in an array on the top surface of the second bump 16.
[0113] The second docking component is the second groove 17, and the second groove 17 is arranged on the device host 1. A plurality of electrical connection parts 12 are arranged in an array on the bottom surface of the second groove 17.
[0114] After the second bump 16 and the second groove 17 are cooperatively docked, the electrical connection components 13 on the top surface of the second bump 16 are directly in contact with the electrical connection parts 12 on the bottom surface of the second groove 17 to achieve electrical connection.
[0115] It should be noted that the second bump 16 can also be arranged on the device host 1, while the second groove 17 is arranged on the support plate 202. The arrangement positions of the electrical connection parts 12 and the electrical connection components 13 change with the second bump 16 and the second groove 17, which will not be elaborated here.
[0116] Embodiment 8
[0117] On the basis of Embodiment 6, as Figure 20-22 shown, this embodiment provides a board-to-board (BTB) contact connection structure. The first docking component is the third bump 18. At least two third bumps 18 are arranged in parallel on the support plate 202 of the bracket 2. A plurality of electrical connection parts 12 are arranged in an array on two opposite outer sidewalls of the third bump 18.
[0118] The second docking component is the third groove 19. At least two third grooves 19 are arranged in parallel on the device host 1. A plurality of electrical connection components 13 are arranged in an array on two opposite inner sidewalls of the third groove 19.
[0119] After the third bump 18 and the third groove 19 are cooperatively docked, the electrical connection parts 12 on the outer sidewall of the third bump 18 are in contact with the electrical connection components 13 on the inner sidewall of the third groove 19 for electrical connection.
[0120] It should be noted that the positions of the third bump 18 and the third groove 19 can be swapped. Similarly, the positions of the electrical connection parts 12 and the electrical connection components 13 can also be swapped, which will not be elaborated here.
[0121] Embodiment 9
[0122] On the basis of Embodiment 6, as Figure 23-25As shown in the figure, this embodiment provides another inclined surface contact connection structure. The first docking component is arranged on the device host 1. The first docking component is a fourth groove 21. A fifth bump 22 is arranged in the fourth groove 21. The outer sidewall of the fifth bump 22 is inclined. A plurality of electrical connection components 13 are arranged in an array on two opposite outer sidewalls of the fifth bump 22.
[0123] The second docking component is arranged on the support plate 202 of the bracket 2. The second docking component is a fourth bump 20. A fifth groove 23 is arranged on the top surface of the fourth bump 20. The inner sidewall of the fifth groove 23 is inclined. A plurality of electrical connection parts 12 are arranged in an array on two opposite inner sidewalls of the fifth groove 23.
[0124] When the fifth bump 22 is in mating connection with the fifth groove 23, the electrical connection components 13 on the outer sidewall of the fifth bump 22 are in contact with the electrical connection parts 12 on the inner sidewall of the fifth groove 23, so as to realize electrical connection between the device host 1 and the bracket 2.
[0125] It should be noted that the positions of the fourth groove 21 and the fourth bump 20 are adjustable. This embodiment does not limit the positions of the fourth groove 21 and the fourth bump 20. The setting positions of the fifth bump 22 and the fifth groove 23 can both be adjusted according to actual usage requirements.
[0126] Embodiment 10
[0127] On the basis of Embodiments 6 and 9, as Figure 26-28 shown in the figure, this embodiment provides yet another inclined surface contact connection structure. The first docking component is a sixth bump 24. The sixth bump 24 is arranged on the support plate 202 of the bracket 2. The outer sidewall of the sixth bump 24 is inclined. A plurality of electrical connection parts 12 are arranged in an array on two opposite outer sidewalls of the sixth bump 24.
[0128] The second docking component is a sixth groove 25. The sixth groove 25 is arranged on the device host 1. The inner sidewall of the sixth groove 25 is inclined. A plurality of electrical connection components 13 are arranged in an array on two opposite inner sidewalls of the sixth groove 25.
[0129] The device host 1 and the support plate 202 realize electrical connection through the contact between the electrical connection parts 12 on the outer sidewall of the sixth bump 24 and the electrical connection components 13 on the inner sidewall of the sixth groove 25.
[0130] As described in the above embodiments, the positions of the sixth bump 24 and the sixth groove 25 are adjustable.
[0131] Embodiment 11
[0132] On the basis of Embodiment 6, as Figure 29-31As shown in the figure, this embodiment provides a head - plug contact connection structure. The first docking member includes a seventh groove 26, a seventh protrusion 27, and a driving device 28. A plurality of seventh grooves 26 are arranged in an array at the end of the device host 1. The seventh protrusion 27 can extend or retract into the seventh groove 26, and a plurality of electrical connectors 13 are respectively arranged on each seventh protrusion 27.
[0133] The driving device 27 is used to drive the seventh protrusion 27 to extend or retract into the seventh groove 26.
[0134] The second docking member is an eighth groove 29. A plurality of eighth grooves 29 are arranged in an array at the end of the support plate 202, and a plurality of electrical connection parts 12 are respectively arranged in each eighth groove 29.
[0135] When the bracket 2 is docked with the device host 1, the driving device 27 drives the seventh protrusion 27 to extend out of the seventh groove 26 and insert into the corresponding eighth groove 29. The electrical connector 13 on the seventh protrusion 27 contacts the electrical connection part 12 in the eighth groove 29 to achieve electrical connection.
[0136] When it is necessary to remove the device host 1 from the bracket 2, the driving device 27 drives the seventh protrusion 27 to retract into the seventh groove 26, and the electrical connector 13 is separated from the electrical connection part 12 in the eighth groove 29 to disconnect the connection.
[0137] As described in the above - mentioned embodiment, the positions of the seventh groove 26 and the eighth groove 29 are adjustable.
[0138] Embodiment 12
[0139] Based on Embodiments 6 and 11, as Figure 32-34 shown in the figure, this embodiment provides another head - plug contact connection structure. The first docking member is a semi - circular protrusion 30. A plurality of semi - circular protrusions 30 are arranged in an array at the end of the support plate 202, and a plurality of electrical connection parts 12 are respectively arranged on each semi - circular protrusion 30.
[0140] The second docking member is a semi - circular groove 31. A plurality of semi - circular grooves 31 are arranged in an array at the end of the device host 1, and electrical connectors 13 are respectively arranged in each semi - circular groove 31.
[0141] The semi - circular protrusion 30 at the end of the support plate 202 is inserted into the corresponding semi - circular groove 31 at the end of the device host 1. The electrical connector 13 contacts the electrical connection part 12 to electrically connect the bracket 2 and the device host 1 to achieve signal transmission.
[0142] The technical scope of this utility model is not limited to the content in the specification, and its technical scope must be determined according to the scope of the claims.
Claims
1. An electronic device, characterized in that: include: A device host, a bracket, a first magnetic attraction member, a second magnetic attraction member, a first electrical connection member and a second electrical connection member that can be separated from each other and connected in coordination; The first magnetic attraction member and the second magnetic attraction member are magnetically disposed on the device host and the bracket respectively and their positions are adjustable, and the device host is fixed to the bracket by the magnetic attraction between the first magnetic attraction member and the second magnetic attraction member; The first electrical connector and the second electrical connector are respectively arranged on the device host and the bracket and their positions are adjustable. The device host and the bracket are electrically connected through the first electrical connector and the second electrical connector.
2. The electronic device according to claim 1, characterized in that: The first electrical connection member is a plurality of pins; The second electrical connection member is a plurality of sockets corresponding to the plug pins.
3. The electronic device according to claim 2, characterized in that: A plurality of the pins are arranged on the bracket in concentric circles, and the spacing between adjacent pins is equal; A plurality of the sockets are arranged in concentric circles on the device host, and the spacing between adjacent sockets is equal.
4. The electronic device according to claim 3, characterized in that: include: Matching protective bumps and protective grooves; The protective protrusion is arranged on the device host or the bracket where the pin is located, and is arranged circumferentially around the pin; The protective groove is arranged on the device host or the bracket where the socket is located, and is arranged around the circumference of the socket.
5. The electronic device according to claim 2, characterized in that: Also included: matching guide protrusions and guide grooves; The guide protrusion is arranged on the bracket or the device host where the plug pin is located, and the plug pin passes through the guide protrusion and protrudes from the outer wall of the guide protrusion along the axial direction of the guide protrusion; The plurality of pins are arranged in two rows, and the spacing between adjacent pins is equal; The guide groove is arranged on the bracket or the device host where the socket is located, and a plurality of the sockets are arranged in the guide groove. The sockets are arranged in two rows, and the spacing between adjacent sockets is equal.
6. The electronic device according to any one of claims 2 to 5, characterized in that: It also includes a first elastic component, which is arranged on an end of the pin away from the socket.
7. The electronic device according to claim 2, characterized in that: Also includes: A first covering member, a second covering member, a first receiving groove, a second receiving groove and a plurality of second elastic components; The first receiving groove and the second receiving groove are arranged on the device host or the bracket where the plug pin is located, and the first receiving groove and the second receiving groove are arranged on both sides of the plug pin and their positions are adjustable; The first covering member is connected to the first containing groove via the second elastic component, and the first covering member can slide relative to the first containing groove; The second covering member is connected to the second receiving groove via the second elastic component, and the second covering member can slide relative to the second receiving groove; The first cover member and the second cover member enclose a receiving space, and the insertion pin is arranged in the receiving space; The first covering member and the second covering member can be moved closer to or farther from each other to close or expose the insertion pin.
8. The electronic device according to claim 7, characterized in that: Also included are: at least two positioning members and positioning holes into which the positioning members are inserted; The positioning member is arranged in the accommodating space and is located on both sides of the insertion pin; The positioning holes are arranged on the device host or the bracket where the socket is located, and are located on both sides of the socket; The first covering member and the second covering member can be moved closer to or farther from each other to close or expose the positioning member.
9. The electronic device according to claim 1, characterized in that: The first electrical connection member is a plurality of electrical connection parts. The second electrical connection member is a plurality of electrical connection members; The electronic device further comprises: a first docking member and a second docking member adapted to each other, the electrical connection portion and the electrical connection member are respectively arranged on the first docking member and the second docking member, and the positions are adjustable; The first docking member and the second docking member are mated with each other so that the electrical connection portion and the electrical connection member abut against each other and are electrically connected.
10. The electronic device according to claim 9, characterized in that: The first docking member is a first convex block, the first convex block is arranged on the bracket, the outer side wall of the first convex block is arranged obliquely, and the plurality of electrical connection portion arrays are arranged on two opposite outer side walls of the first convex block; The second docking member is a first groove, the first groove is arranged on the device host, the inner side wall of the first groove is inclined, and a plurality of electrical connection member arrays are arranged on two opposite inner side walls of the first groove.
11. The electronic device according to claim 9, characterized in that: The first docking member is a second convex block, the second convex block is arranged on the bracket, and a plurality of the electrical connection member arrays are arranged on the top surface of the second convex block; The second docking member is a second groove, the second groove is arranged on the device host, and a plurality of electrical connection portion arrays are arranged on the bottom surface of the second groove.
12. The electronic device according to claim 9, characterized in that: The first docking member is a third protrusion, at least two of the third protrusions are arranged in parallel on the bracket, and a plurality of arrays of the electrical connection portions are arranged on two opposite outer side walls of the third protrusion; The second docking member is a third groove, at least two of the third grooves are arranged in parallel on the device host, and a plurality of electrical connection member arrays are arranged on two opposite inner side walls of the third groove.
13. The electronic device according to claim 9, characterized in that: The first docking member is arranged on the device host, the first docking member is a fourth groove, a fifth protrusion is arranged in the fourth groove, the outer side wall of the fifth protrusion is arranged obliquely, and the plurality of electrical connection member arrays are arranged on two opposite outer side walls of the fifth protrusion; The second docking member is arranged on the bracket, the second docking member is a fourth protrusion, the fourth protrusion is provided with a fifth groove, the inner side wall of the fifth groove is inclined, and the plurality of electrical connection portion arrays are arranged on two opposite inner side walls of the fifth groove.
14. The electronic device according to claim 9, characterized in that: The first docking member is a sixth protrusion, the sixth protrusion is arranged on the bracket, the outer side wall of the sixth protrusion is arranged obliquely, and the plurality of electrical connection portion arrays are arranged on two opposite outer side walls of the sixth protrusion; The second docking member is a sixth groove, the sixth groove is arranged on the device host, the inner side wall of the sixth groove is inclined, and a plurality of electrical connection member arrays are arranged on two opposite inner side walls of the sixth groove.
15. The electronic device according to claim 9, characterized in that: The first docking member includes an eighth groove and a driving device, a plurality of the eighth grooves are arranged in an array at the end of the device host, and a plurality of the electrical connectors are arranged in each of the eighth grooves in a one-to-one correspondence; The driving device is used to drive the electrical connection member to extend out of or retract into the eighth groove; The second docking member is a seventh groove, a plurality of the seventh grooves are arranged in an array at the end of the bracket, and a plurality of the electrical connection parts are arranged in each of the seventh grooves in a one-to-one correspondence.
16. The electronic device according to claim 9, characterized in that: The first docking member is a semicircular convex block, a plurality of the semicircular convex blocks are arranged in an array at the end of the bracket, and a plurality of the electrical connection parts are arranged on each of the semicircular convex blocks in a one-to-one correspondence; The second docking member is a semicircular groove, and a plurality of the semicircular groove arrays are arranged at the end of the device host, and the electrical connectors are arranged in each of the semicircular grooves in a one-to-one correspondence.
17. The electronic device according to any one of claims 9 to 16, characterized in that: The electrical connection member is a PAD pad, and the electrical connection member is a spring.