Software testing data transmission line convenient to plug and unplug
By designing a data plug-in male and female head with semi-cylindrical protrusions and semi-wrapped protrusions, combined with a rotation and pressing clamping mechanism, the problems of inconvenience in plugging and unstable connections are solved, and convenient plug-in and unstable connections are achieved, while reducing manufacturing costs.
Patent Information
- Application Number
- CN202510192136.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-20
- Publication Date
- 2025-05-16
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing data cable is inconvenient to plug and unplug during software testing, and the connection is unstable, so it is easy to disconnect under external contact.
A data transmission line including a data plug-in male and female head is designed. There is a semi-cylindrical protrusion at the top of the male head and a semi-wrapped protrusion groove inside the female head. The clamping is achieved through rotation and pressing, reducing the special clamping device and reducing manufacturing costs.
It realizes the convenience of plugging and unplugging of data lines, reduces the need for force, improves the stability and safety of connections, and reduces the manufacturing cost of the device.
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Figure CN120016210A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the field of data line plug boards, in particular to a data transmission line which is easy to plug and unplug for software testing. Background Art
[0002] Data transmission cables are used to transmit data between different devices and play a key role in software testing. During the test, the data transmission cables need to be plugged in and out. In order to avoid disconnection during data transmission, the data transmission cables are inconvenient to plug in and out.
[0003] In order to solve this problem, the following two technical solutions are adopted in the prior art:
[0004] The existing patent CN213278512U discloses a magnetic data cable, which includes: a line body, including a transmission line, a fixed end and a magnetic end; the magnetic end includes a bearing seat and a first magnetic part; and an adapter, including a base, a docking part, a second magnetic part and a card cover; the two opposite sides of the base are respectively connected with limit blocks and card blocks arranged in pairs; a clearance position is formed between the two limit blocks of each pair, and the clearance position is arranged opposite to the card block; the two opposite sides of the card cover are respectively connected with a hook, and a card hole is also opened on the card cover corresponding to one side of each hook; the hook is corresponding to the avoidance position and then forms a buckle with the base, and the card hole is corresponding to the card block to form a buckle. The above-mentioned magnetic data cable has a simple structure and is easy to assemble. The base and the card cover are designed as a split structure, which can quickly disassemble the base and the card cover, which is convenient for rework and recycling, and is conducive to reducing production costs; at the same time, a double buckle structure of the card hole and the card block, and the hook and the base is added to ensure the stability of the connection after the base and the card cover are buckled with each other. This technical solution is a representative one, which makes it easier to plug and unplug the wires of the data transmission line by attracting each other through magnetic parts. However, this technical solution has an unstable connection and is easily disconnected when touched by external force.
[0005] The existing patent, CN218242425U, discloses a data cable connector that is easy to plug and unplug, including a terminal component and a plug-in shell. The plug-in shell is wrapped around the rear periphery of the terminal component, and the plug-in shell surface is provided with an arc surface, which is recessed toward the inside of the plug-in shell. The advantage is that by providing an arc surface on the plug-in shell, when the user plugs and unplugs the data cable connector, the contact area between the user's fingertips and the arc surface is large, and the friction force is increased, which is conducive to the user plugging and unplugging the data cable connector more effortlessly, and improves the user's comfort when plugging and unplugging the data cable connector. The technical solution represented by this solution optimizes the shape of the shell to increase the contact surface to achieve plugging and unplugging. This technical solution only provides a more forceful way, and does not effectively solve the problem of difficulty in plugging and unplugging the data cable. Summary of the invention
[0006] In view of the deficiencies of the prior art, the present invention provides a data transmission line that is easy to plug and unplug for software testing, which solves the problems raised in the above background technology.
[0007] To achieve the above objectives, the present invention is implemented through the following technical solutions: a data transmission line that is easy to plug and unplug for software testing, comprising a data plug male head and a data plug female head, the top of the data plug male head is provided with a semi-cylindrical protrusion, the inner top of the data plug female head is provided with a groove that half wraps the protrusion, the inside of the data plug female head is provided with a conductive female sheet, a side of the data plug male head close to the conductive female sheet is provided with a conductive male sheet that contacts the conductive female sheet, a data male line for connecting to the conductive male sheet is fixedly installed at the tail end of the data plug male head, a data bus is connected to the bottom of the conductive female sheet, the data bus passes through the side wall of the data plug female head, and a clamping mechanism is provided between the data plug male head and the data plug female head to achieve clamping by rotating with the protrusion as the center of the circle.
[0008] Preferably, the clamping mechanism includes a plug-in clamping ring at both ends of the side wall of the data plug female head, the inner circle of the plug-in clamping ring is provided with an extrusion block, and clamping columns are fixedly installed on both sides of the side wall of the data plug male head. The clamping columns squeeze the plug-in clamping ring to cause elastic deformation and then are sleeved inside the plug-in clamping ring.
[0009] Preferably, the clamping mechanism comprises a conductive elastic extrusion portion at the top of the conductive female sheet and a conductive clamping portion protruding from the conductive male sheet, wherein the conductive clamping portion squeezes the conductive elastic extrusion portion to cause elastic deformation and is restricted in displacement by the conductive elastic extrusion portion.
[0010] Preferably, the same conductive mother sheet is provided with a plurality of conductive elastic extrusion parts, the plurality of conductive elastic extrusion parts are adjacent to each other and do not contact, the bottom ends of the conductive elastic extrusion parts are electrically connected through the conductive mother sheet, the conductive wires of the plurality of conductive mother sheets are gathered through a wire row, and the wire row is connected to the data bus.
[0011] Preferably, the conductive male sheet is in the shape of an inverted triangle, the conductive parts of the conductive male sheet are arranged on two side surfaces, only one conductive part is arranged on the same side surface, and the conductive parts of the conductive female sheet are arranged on both sides of the conductive male sheet.
[0012] Preferably, mounting plates are provided on both sides of the data plug male connector, and the mounting plates and the top walls of the data plug female connector are both inlaid with magnetic plates that attract each other.
[0013] Preferably, a support platform is provided at the bottom end of the data plug female head, and the support platform makes the data plug female head tilted to the horizontal plane, the opening angle of the groove is one hundred and eighty degrees, and the angle between the groove opening line and the horizontal line through the center point of the protrusion when the data plug male head and the data plug female head are parallel is the rotation angle, and the rotation angle and the support platform make the tilt angle of the data plug female head complementary to each other.
[0014] Preferably, a fixing plate is provided at the bottom end of the support platform, and screws for installation are provided on both sides of the fixing plate.
[0015] Preferably, one end of the data plug male connector connected to the data male line is provided with an upward depression, and an anti-skid groove is provided at the depression for anti-skid purposes.
[0016] Preferably, a limiting sleeve is fixedly installed at the bottom end of the conductive mother sheet, the fixed end of the limiting sleeve is fixedly connected to the data plug female head, the data plug female head and the conductive mother sheet are fixedly connected via a reset spring, and the reset spring is sleeved on the outer surface of the limiting sleeve.
[0017] Compared with the prior art, the present invention has the following beneficial effects:
[0018] 1. The software tests a data transmission line that is easy to plug and unplug, and replaces the existing handheld data line plug board with a push-type plug. During the insertion process, first insert the protrusion into the groove, rotate the data plug male head to rotate, and then press the data plug male head and the data plug female head to engage, so that the data line can be inserted more conveniently. When the data line needs to be unplugged, it is only necessary to push the data plug male head from one side of the data male line to separate the data plug male head and the data plug female head, thereby changing the force used to plug and unplug the data line, and making the data line easy to plug and unplug.
[0019] 2. The software test uses a data transmission line that is easy to plug and unplug, and transforms the conductive male plate and the conductive female plate that were originally used to achieve electrical connection, so that the conductive male plate and the conductive female plate can have the function of limiting the connection, thereby reducing the setting of special connection devices and reducing the manufacturing cost of the device.
[0020] 3. The software tests a data transmission line that is easy to plug and unplug. The opening angle of the groove is 180 degrees. The angle between the groove opening line and the horizontal line through the center point of the protrusion when the data plug male head and the data plug female head are parallel is the rotation angle. The rotation angle is the angle that the data plug male head needs to be rotated when inserted into the data plug female head. Through such a setting, when the data plug male head and the data plug female head are combined, the groove can limit the vertical movement of the protrusion to prevent the data plug male head from falling off.
[0021] 4. The software test uses a data transmission line that is easy to plug and unplug. The shape of the conductive male sheet is an inverted triangle. The conductive parts of the conductive male sheet are arranged on two side surfaces. Only one conductive part is arranged on the same side. The conductive parts of the conductive female sheet are arranged on both sides of the conductive male sheet. Through such an arrangement, the conductive part of the conductive male sheet can be restricted to the side, avoiding the conductive part being easily contacted with metal parts to form a short circuit when it is arranged at the bottom. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 It is a schematic diagram of the structure of the present invention;
[0023] Figure 2 This is a schematic diagram of a data plug male connector of the present invention;
[0024] Figure 3 A half-section schematic diagram of a data plug female connector of the present invention;
[0025] Figure 4 It is a half-section schematic diagram of the present invention;
[0026] Figure 5 This is a schematic diagram of the connection of the support platform of the present invention;
[0027] Figure 6 This is a schematic diagram of the connection of the conductive elastic extrusion part of the present invention;
[0028] Figure 7 This is a schematic diagram of the line connection of the present invention.
[0029] In the figure: 1. data plug male connector; 2. data plug female connector; 3. protrusion; 4. groove; 5. conductive female plate; 6. conductive male plate; 7. data male line; 8. data bus; 9. clamping mechanism; 901. plug-in clamp ring; 902. extrusion block; 903. conductive elastic extrusion part; 904. conductive clamping part; 905. wire row; 906. clamping column; 10. mounting plate; 11. magnetic plate; 12. support platform; 13. fixing plate; 14. screw; 15. depression; 16. anti-slip groove; 17. limit sleeve; 18. reset spring. DETAILED DESCRIPTION
[0030] The following will be combined with the drawings in the embodiments of the present application to clearly and completely describe the technical solutions in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this application.
[0031] Embodiment 1
[0032] like Figure 1-4As shown, a data transmission line for software testing that is easy to plug and unplug includes a data plug male connector 1 and a data plug female connector 2. A semi-cylindrical protrusion 3 is provided at the top of the data plug male connector 1, and a groove 4 that half wraps the protrusion 3 is provided at the inner top of the data plug female connector 2. A conductive female sheet 5 is provided inside the data plug female connector 2. A conductive male sheet 6 that contacts the conductive female sheet 5 is provided on the side of the data plug male connector 1 close to the conductive female sheet 5. A data male line 7 for connecting to the conductive male sheet 6 is fixedly installed at the tail end of the data plug male connector 1. A data bus 8 is connected to the bottom of the conductive female sheet 5. The data male line 7 The data bus 8 is directly connected to the electronic device respectively, or connected with the standard data connector and then connected with the electronic device again. A plurality of data plug male heads 1 are set to be connected with the tested electronic devices respectively, and the data transmission is controlled by only disconnecting the connection between the data plug male head 1 and the data plug female head 2. The data bus 8 passes through the side wall of the data plug female head 2. The passing position of the data bus 8 should not coincide with the data public line 7 to avoid occupying the position of the data public line 7. A card connection mechanism 9 is provided between the data plug male head 1 and the data plug female head 2 for realizing card connection by rotating with the protrusion 3 as the center of the circle.
[0033] The clamping mechanism 9 includes a plug-in clamping ring 901 at both ends of the side wall of the data plug female connector 2, and an extrusion block 902 is provided on the inner ring of the plug-in clamping ring 901. The two sides of the side wall of the data plug male connector 1 are fixedly installed with a clamping column 906. The clamping column 906 squeezes the plug-in clamping ring 901 to cause elastic deformation and then sleeves inside the plug-in clamping ring 901. A limiting sleeve 17 is fixedly installed at the bottom end of the conductive female plate 5, and the fixed end of the limiting sleeve 17 is fixedly connected to the data plug female connector 2. The data plug female connector 2 and the conductive female plate 5 are fixedly connected by a reset spring 18, and the reset spring 18 is sleeved on the outer surface of the limiting sleeve 17.
[0034] like Figure 3-4 As shown, as a preferred solution of this embodiment, a limiting sleeve 17 is fixedly installed at the bottom end of the conductive mother plate 5, and the fixed end of the limiting sleeve 17 is fixedly connected to the data plug female head 2. The data plug female head 2 and the conductive mother plate 5 are fixedly connected by a reset spring 18, and the reset spring 18 is sleeved on the outer surface of the limiting sleeve 17. Through such an arrangement, the conductive mother plate 5 and the conductive male plate 6 can be tightly fitted.
[0035] When in use, the existing handheld data cable plug-in board is replaced with a push-type plug-in. During the insertion process, the protrusion 3 is first inserted into the groove 4, and the data plug male head 1 is rotated by rotation, and then the data plug male head 1 and the data plug female head 2 are connected by pressing, so that the data cable can be inserted more conveniently. When the data cable needs to be unplugged, it is only necessary to push the data plug male head 1 from one side of the data male line 7 to separate the data plug male head 1 and the data plug female head 2, thereby changing the force used for plugging and unplugging the data cable, and thus making it easy to plug and unplug the data cable.
[0036] Embodiment 2
[0037] like Figure 5-7 As shown, a data transmission line for software testing that is easy to plug and unplug includes a data plug male head 1 and a data plug female head 2. A semi-cylindrical protrusion 3 is provided at the top of the data plug male head 1, and a groove 4 that half wraps the protrusion 3 is provided at the inner top of the data plug female head 2. A conductive female sheet 5 is provided inside the data plug female head 2. A conductive male sheet 6 that contacts the conductive female sheet 5 is provided on the side of the data plug male head 1 close to the conductive female sheet 5. A data male line 7 for connecting to the conductive male sheet 6 is fixedly installed at the tail end of the data plug male head 1. A data bus 8 is connected to the bottom of the conductive female sheet 5. The data bus 8 passes through the side wall of the data plug female head 2. A clamping mechanism 9 that realizes clamping by rotating with the protrusion 3 as the center is provided between the data plug male head 1 and the data plug female head 2. The clamping mechanism 9 includes a conductive elastic extrusion portion 903 at the top of the conductive female sheet 5 and a conductive clamping portion 904 protruding from the conductive male sheet 6 . The conductive clamping portion 904 squeezes the conductive elastic extrusion portion 903 to cause elastic deformation and is restricted in displacement by the conductive elastic extrusion portion 903 .
[0038] like Figure 6 As shown, as a preferred solution of this embodiment, the same conductive mother sheet 5 is provided with multiple conductive elastic extrusion parts 903, the multiple conductive elastic extrusion parts 903 are adjacent and not in contact, the bottom ends of the conductive elastic extrusion parts 903 are electrically connected through the conductive mother sheet 5, the wires of the multiple conductive mother sheets 5 are aggregated through the line row 905, and the line row 905 is connected to the data bus 8. Through such a configuration, when one or more of the conductive elastic extrusion parts 903 fail, the other conductive elastic extrusion parts 903 can always maintain electrical connection, thereby ensuring the stability of data transmission.
[0039] When in use, in this embodiment, the conductive male plate 6 and the conductive female plate 5 originally used to achieve electrical connection are modified so that the conductive male plate 6 and the conductive female plate 5 can have a limited snap-in function, thereby reducing the setting of special snap-in devices and reducing the manufacturing cost of the device.
[0040] Embodiment 3, based on embodiment 2,
[0041] like Figure 1-7 As shown, a data transmission line that is easy to plug and unplug for software testing, the clamping mechanism 9 includes a plug-in clamping ring 901 at both ends of the side wall of the data plug female head 2, and the inner ring of the plug-in clamping ring 901 is provided with an extrusion block 902. The two sides of the side wall of the data plug male head 1 are fixedly installed with a clamping column 906, and the clamping column 906 squeezes the plug-in clamping ring 901 to cause elastic deformation and then sleeves inside the plug-in clamping ring 901. The bottom end of the conductive mother sheet 5 is fixedly installed with a limiting sleeve 17, and the fixed end of the limiting sleeve 17 is fixedly connected to the data plug female head 2. The data plug female head 2 and the conductive mother sheet 5 are fixedly connected by a reset spring 18, and the reset spring 18 is sleeved on the outer surface of the limiting sleeve 17.
[0042] When in use, in this embodiment, by providing a conductive female plate 5 and a conductive male plate 6 with a snap-fit function, a special snap-fit limiting mechanism is also provided, thereby ensuring the connection stability between the data plug male connector 1 and the data plug female connector 2.
[0043] like Figure 7 As shown, as a preferred solution of this embodiment, the conductive male sheet 6 is in the shape of an inverted triangle, the conductive parts of the conductive male sheet 6 are arranged on two side surfaces, and only one conductive part is arranged on the same side surface, and the conductive parts of the conductive female sheet 5 are arranged on both sides of the conductive male sheet 6. Through such an arrangement, the conductive parts of the conductive male sheet 6 can be restricted to the side surfaces, so as to avoid the conductive parts being easily contacted with metal parts to form a short circuit when they are arranged at the bottom.
[0044] like Figure 2 , 5 -6, as a preferred solution of this embodiment, mounting plates 10 are provided on both sides of the data plug male connector 1, and the mounting plates 10 and the top walls of the data plug female connector 2 are both inlaid with magnetic plates 11 that attract each other. Such a setting can facilitate the connection between the data plug male connector 1 and the data plug female connector 2 and maintain the stability of the connection.
[0045] like Figure 4 As shown, as a preferred solution of this embodiment, a support platform 12 is provided at the bottom end of the data plug female connector 2, and the support platform 12 allows the data plug female connector 2 to be tilted to the horizontal plane. By tilting the data plug female connector 2, one side of the data male line 7 of the connected data plug male connector 1 can be lifted up, thereby increasing the space and facilitating the removal of the data plug male connector 1.
[0046] The opening angle of the groove 4 is one hundred and eighty degrees. The angle between the opening line of the groove 4 and the horizontal line through the center point of the protrusion 3 when the data plug male head 1 and the data plug female head 2 are parallel is the rotation angle. The rotation angle is the angle that the data plug male head 1 needs to be rotated when inserted into the data plug female head 2. Through such a setting, when the data plug male head 1 and the data plug female head 2 are combined, the groove 4 can limit the vertical movement of the protrusion 3 to prevent the data plug male head 1 from falling off. The rotation angle and the support platform 12 make the inclination angle of the data plug female head 2 complementary. Through such a setting, the data plug male head 1 can be inserted vertically downward into the data plug female head 2.
[0047] like Figure 1 , 5 -6, as a preferred solution of this embodiment, a fixing plate 13 is provided at the bottom end of the support platform 12, and screws 14 for installation are provided on both sides of the fixing plate 13. Through such a setting, the data plug female head 2 can be fixed, so that the pressing and pulling actions can be realized with one hand.
[0048] like Figure 2 and 4 As shown, as a preferred solution of this embodiment, an end of the data plug male connector 1 connected to the data public line 7 is provided with an upward recess 15, and an anti-skid groove 16 is provided at the recess 15 for anti-skid. Such a setting can facilitate the removal of the data plug male connector 1.
[0049] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A pluggable data transmission cable for software testing, comprising a data plug male connector (1) and a data plug female connector (2), characterized in that: The top of the data plug male head (1) is provided with a semi-columnar protrusion (3), the inner top of the data plug female head (2) is provided with a groove (4) which half wraps the protrusion (3), the inner part of the data plug female head (2) is provided with a conductive female sheet (5), a conductive male sheet (6) which contacts the conductive female sheet (5) is provided on the side of the data plug male head (1) close to the conductive female sheet (5), a data male line (7) for connecting with the conductive male sheet (6) is fixedly installed at the rear end of the data plug male head (1), a data bus bar (8) is connected to the bottom of the conductive female sheet (5), and the data bus bar (8) passes through the side wall of the data plug female head (2), and a clamping mechanism (9) is provided between the data plug male head (1) and the data plug female head (2) for achieving clamping by rotating with the protrusion (3) as the center of the circle.
2. The pluggable data transmission line for software testing according to claim 1, characterized in that: The clamping mechanism (9) comprises a plug-in clamping ring (901) at both ends of the side wall of the data plug-in female connector (2); an inner ring of the plug-in clamping ring (901) is provided with an extrusion block (902); and clamping columns (906) are fixedly installed on both sides of the side wall of the data plug-in male connector (1); the clamping columns (906) squeeze the plug-in clamping ring (901) to cause elastic deformation and then are sleeved inside the plug-in clamping ring (901).
3. A pluggable data transmission line for software testing according to claim 1 or 2, characterized in that: The clamping mechanism (9) comprises a conductive elastic extrusion portion (903) at the top of the conductive mother sheet (5) and a conductive clamping portion (904) protruding from the conductive male sheet (6); the conductive clamping portion (904) squeezes the conductive elastic extrusion portion (903) to cause elastic deformation and is restricted in displacement by the conductive elastic extrusion portion (903).
4. The pluggable data transmission line for software testing according to claim 3, characterized in that: The same conductive mother sheet (5) is provided with a plurality of conductive elastic extrusion parts (903), the plurality of conductive elastic extrusion parts (903) are adjacent to each other and do not contact each other, the bottom ends of the conductive elastic extrusion parts (903) are electrically connected through the conductive mother sheet (5), the conductive wires of the plurality of conductive mother sheets (5) are gathered through a wire row (905), and the wire row (905) is connected to the data bus (8).
5. A pluggable data transmission line for software testing according to claim 1 or 4, characterized in that: The conductive male sheet (6) is in the shape of an inverted triangle, the conductive parts of the conductive male sheet (6) are arranged on two side surfaces, only one conductive part is arranged on the same side surface, and the conductive parts of the conductive female sheet (5) are arranged on both sides of the conductive male sheet (6).
6. The pluggable data transmission line for software testing according to claim 5, characterized in that: Mounting plates (10) are arranged on both sides of the data plug male connector (1), and the mounting plates (10) and the top walls of the data plug female connector (2) are both inlaid with magnetic plates (11) that attract each other.
7. The pluggable data transmission line for software testing according to claim 6, characterized in that: A support platform (12) is provided at the bottom end of the data plug female head (2), and the support platform (12) makes the data plug female head (2) tilted to the horizontal plane, the opening angle of the groove (4) is 180 degrees, and the angle between the opening line of the groove (4) and the horizontal line through the center point of the protrusion (3) when the data plug male head (1) and the data plug female head (2) are parallel is the rotation angle, and the rotation angle and the tilt angle of the data plug female head (2) made by the support platform (12) are complementary.
8. The pluggable data transmission line for software testing according to claim 7, characterized in that: A fixing plate (13) is arranged at the bottom end of the support platform (12), and screws (14) for installation are arranged on both sides of the fixing plate (13).
9. The pluggable data transmission line for software testing according to claim 8, characterized in that: One end of the data plug male connector (1) connected to the data public line (7) is provided with an upward depression (15), and an anti-skid groove (16) is provided at the depression (15) for preventing skidding.
10. The pluggable data transmission line for software testing according to claim 1, characterized in that: A limiting sleeve (17) is fixedly mounted on the bottom end of the conductive mother sheet (5); a fixed end of the limiting sleeve (17) is fixedly connected to the data plug female connector (2); the data plug female connector (2) and the conductive mother sheet (5) are fixedly connected via a reset spring (18); and the reset spring (18) is sleeved on the outer surface of the limiting sleeve (17).
Citation Information
Patent Citations
Magnetic data line
CN213278512U