A connector with an automatic locking structure

By using actuators made of plastic and fixed shrapnel structure, the problem of metal fatigue damage of FPC connectors in the vibration environment of the automobile is solved, and a locking mechanism design with high vibration resistance and long life is achieved.

CN119209113BActive Publication Date: 2025-09-02JUSTCONN ELECTRONIC TECHNOLOGY (DONG GUAN) CO LTD
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Patent Information

Application Number
CN202411359664.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-09-27
Publication Date
2025-09-02
Estimated Expiration
2044-09-27

AI Technical Summary

Technical Problem

Since the actuator is made of metal, the locking mechanism in the existing FPC connector is prone to metal fatigue damage in the high-strength vibration environment of the automobile, and the limit hook is difficult to get out of the wire ear.

Method used

The actuator and fixed shrapnel structure made of plastic, including a connecting plate, a first support arm, an elastic arm, a pressing plate and a positioning arm, control the engagement of the hook and the cable plug through a plastic actuator, and combine the limiting assembly to improve vibration resistance and reliability.

Benefits of technology

It improves the vibration resistance and service life of the connector, ensures the reliability of the locking mechanism, avoids deformation problems of the metal actuator, and achieves convenient unlocking and locking functions.

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Abstract

The present invention relates to the technical field of connectors, and proposes a connector with an automatic locking structure, including a fixed spring piece and an actuator, the fixed spring piece is composed of a connecting plate, a first support arm and an elastic arm, the first support arm is arranged on one side of the connecting plate, the elastic arm is arranged at the end of the first support arm away from the connecting plate, the elastic arm has an elastic part, a bend part and a contact part from the end close to the first support arm to the end away from the first support arm, the positioning arm is arranged at the end of the pressing plate close to the connecting plate, the end of the positioning arm away from the pressing plate is provided with a hook that can be engaged with the cable plug, the surface of the contact part is pressed tightly against the inner wall of the pressing plate, the surface of the actuator is provided with a pressing part and a positioning part, the positioning part can be matched with the connector housing, and the actuator is made of plastic. Through the above technical solution, the technical problem that the metal structure in the prior art is prone to metal fatigue and damage is solved.
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Description

Technical Field

[0001] The present invention relates to the field of connectors, in particular to a connector with an automatic locking structure. Background Art

[0002] An FPC connector (Flexible Printed Circuit Connector), also known as a flexible printed circuit board connector, is an electronic component specifically designed to connect two or more flexible printed circuit boards (FPCs) or to connect a flexible printed circuit board to a rigid circuit board. FPC connectors are widely used in modern electronic devices. The structure of an FPC connector typically includes a socket, pins, fasteners, and possibly a locking mechanism. The socket is designed with contacts corresponding to the FPC, and the pins are fixed to the FPC. When the FPC is inserted into the socket, the pins make close contact with the contacts, thus achieving an electrical connection. The fasteners and locking mechanism are used to ensure that the FPC remains stable after insertion to prevent it from accidentally falling off.

[0003] The locking mechanism in the FPC connector usually includes a fixed spring and an actuator. Both the fixed spring and the actuator are installed in the connector housing. The fixed spring is provided with a limiting hook for engaging the cable ear. Pressing the actuator can squeeze the fixed spring to deform it, so that the limiting hook is separated from the cable ear.

[0004] In the existing locking mechanism for connectors, since the actuator is made of metal, when used in automobiles, the working environment is relatively harsh. When the car is running, the connector will be in a high-intensity vibration environment, which is prone to metal fatigue and damage, and has a short lifespan. In addition, the limit hook that engages with the ear of the cable is usually set on the fixed spring piece. After the actuator presses the fixed spring piece multiple times, the part that squeezes the fixed spring piece is prone to deformation, making it difficult for the limit hook to be separated from the cable. Summary of the Invention

[0005] The present invention provides a connector with an automatic locking structure, which solves the technical problem in the prior art that a connector made of metal is prone to damage due to metal fatigue.

[0006] The technical solutions of the present invention are as follows:

[0007] The first support arm is provided with a first support arm, and the elastic arm is provided with an elastic portion, a bending portion and a contact portion on the elastic arm from one end close to the first support arm to the other end away from the first support arm, and the elastic portion is bent toward the connecting plate, and the bending portion is bent in a direction away from the connecting plate. The actuator is composed of a pressing plate and a positioning arm, the positioning arm is provided at one end of the pressing plate close to the connecting plate, and the end of the positioning arm away from the pressing plate is provided with a hook that can engage with the cable plug, the surface of the contact portion is pressed against the inner wall of the pressing plate, the surface of the pressing plate is provided with a pressing portion and a positioning portion, the positioning portion can be connected with the connector housing, the actuator is made of plastic, and the actuator can squeeze the contact portion to cause the elastic portion to produce elastic deformation.

[0008] Furthermore, a second support arm is provided on the connecting plate, the second support arm is aligned with the first support arm, and a limiting portion for limiting the position of the actuator is provided at one end of the second support arm away from the first support arm, and the limiting portion is bent toward the side of the second support arm close to the connecting plate.

[0009] Furthermore, an insert plate that cooperates with the connector housing is provided at one end of the second support arm away from the first support arm, and the insert plate is bent toward a side of the second support arm close to the first support arm.

[0010] Furthermore, a fixing slot is provided on the inner wall of the pressing plate, and an end of the contact portion away from the bent portion can be inserted into the fixing slot.

[0011] Furthermore, a welding portion is provided on the connecting plate, and a groove is provided on the welding portion.

[0012] Furthermore, a positioning plate is also provided on the connecting plate.

[0013] Furthermore, an air-avoiding opening is provided on the edge of the pressing plate, and the elastic part is provided in the air-avoiding opening.

[0014] The working principle and beneficial effects of the present invention are:

[0015] 1. In the present invention, the actuator is made of plastic and realizes the automatic locking function by fixing the spring. Compared with the traditional metal actuator, it has higher vibration resistance and longer service life.

[0016] 2. In the present invention, a hook is provided on the actuator, and the hook engaged with the cable plug is connected to the pressing plate through a positioning arm. The cable is unlocked and locked directly by the actuator, which is more convenient to use and has a more reliable structure, and avoids the situation where it is difficult to press the fixed spring piece to unlock after the actuator is deformed. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0018] Figure 1 It is a three-dimensional schematic diagram of the present invention;

[0019] Figure 2 It is a three-dimensional schematic diagram of the fixed spring piece in the present invention;

[0020] Figure 3 is a three-dimensional schematic diagram of the actuator of the present invention;

[0021] Figure 4 is a cross-sectional view of the present invention;

[0022] Figure 5 For the present invention Figure 4 A partial enlarged view of point A in the middle;

[0023] Figure 6 Schematic diagram of the fixed spring piece and the actuator installed on the connector housing in the present invention;

[0024] Figure 7 This is a schematic cross-sectional view of the structure of the limiting assembly of the second embodiment of the present invention installed inside the connector housing;

[0025] Figure 8 Schematic diagram of the cross-sectional structure of the limiting assembly of Example 2 of the present invention;

[0026] Figure 9 Schematic diagram of the cross-sectional structure of the non-return portion of the second embodiment of the present invention.

[0027] 1. The camshaft of the second support arm is provided with a plurality of springs, each of which is provided with a plurality of springs, and each of which is provided with a plurality of springs. The camshaft of the second support arm is provided with a plurality of springs, each of which is provided with a plurality of springs. DETAILED DESCRIPTION

[0028] The following will be combined with the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative efforts are within the scope of protection of the present invention.

[0029] like Figures 1 to 9 As shown, a connector with an automatic locking structure includes a fixed spring piece 1 and an actuator 2. The fixed spring piece 1 is composed of a connecting plate 11, a first support arm 12 and an elastic arm 13. The connecting plate 11 can be installed in the connector housing. The first support arm 12 is arranged on one side of the connecting plate 11. The elastic arm 13 is arranged at the end of the first support arm 12 away from the connecting plate 11. The elastic arm 13 is provided with an elastic portion 131, a bend portion 132 and a contact portion 133 from the end close to the first support arm 12 to the end away from the first support arm 12. The elastic portion 131 is bent toward the connecting plate 11, and the bend portion 132 is bent in the direction away from the connecting plate 11. The actuator 2 is composed of a pressing plate 21 and a fixed spring piece. The positioning arm 22 is arranged at one end of the pressing plate 21 close to the connecting plate 11, and the end of the positioning arm 22 away from the pressing plate 21 is provided with a hook 221 that can engage with the cable plug. The surface of the contact portion 133 is pressed tightly against the inner wall of the pressing plate 21. The connecting plate 11 is also provided with a welding portion 14, and the welding portion 14 is provided with a groove 141. The surface of the pressing plate 21 is provided with a pressing portion 211 and a positioning portion 212. The positioning portion 212 can be matched with the connector housing. The inner wall of the pressing plate 21 is provided with a fixing slot 213. The end of the contact portion 133 away from the bend portion 132 can be inserted into the fixing slot 213 to prevent the contact portion 133 from being separated from the pressing plate 21.

[0030] A second support arm 15 is also provided on the connecting plate 11, and the second support arm 15 is aligned with the first support arm 12. A limiting portion 151 for limiting the position of the actuator 2 is provided at the end of the second support arm 15 away from the first support arm 12. The limiting portion 151 is bent toward the side of the second support arm 15 close to the connecting plate 11. The limiting portion 151 can press the side wall of the actuator 2 to prevent the actuator 2 from escaping from the connector housing. An insert plate 152 that cooperates with the connector housing is provided at the end of the second support arm 15 away from the first support arm 12. The insert plate 152 is bent toward the side of the second support arm 15 close to the first support arm 12. The insert plate 152 can be inserted into the fixing slot in the connector housing to prevent the fixed spring piece 1 from escaping from the connector housing.

[0031] A positioning plate 16 is also provided on the connecting plate 11, and a spring fixing groove is provided in the connector housing. The connecting plate 11, the first support arm 12, the second support arm 15 and the positioning plate 16 can all be set in the spring fixing groove, so that the fixing spring 1 is fixedly installed on the connector housing.

[0032] An air-avoidance opening 214 is provided at the edge of the pressing plate 21. The pressing plate 21 presses the contact portion 133 to deform the elastic portion 131. At the same time, the pressing plate 21 moves downward to disengage the hook 221 from the cable or facilitate the insertion of the cable into the connector housing. When the pressing plate 21 approaches the connector housing, the elastic portion 131 passes through the air-avoidance opening 214 to prevent the elastic portion 131 from pressing against the pressing plate 21 and failing to press.

[0033] The present embodiment is a connector with an automatic locking structure, in which the actuator 2 is made of plastic and the automatic locking function is achieved by fixing the spring 1. Compared with the traditional metal actuator 2, the connector has higher vibration resistance and longer service life. The hook 221 is arranged on the actuator 2, and the hook 221 that engages with the cable plug is connected to the pressing plate 21 through the positioning arm 22. The cable is directly unlocked and locked by the actuator 2, and the fixed spring 1 is used to reset and position the actuator 2. The connector is more convenient to use and has a more reliable structure, which avoids the situation where the actuator 2 cannot be unlocked by pressing the fixed spring 1 after deformation.

[0034] Example 2, based on Example 1, is further provided with a limit assembly with an anti-vibration function in order to prevent the influence of vibration on the connection condition. Two limit assemblies 3 are symmetrically installed on both sides of the inside of the connector housing for automatic locking in conjunction with the hook.

[0035] The limiting assembly includes a shell 301, a connecting rod 302, a coil spring 303, a limiting part and a non-return part. The shell 301 is fixedly installed on both sides of the rubber core. The connecting rod 302 is rotatably installed inside the two shells 301. The coil spring 303 is fixedly installed inside the two shells 301. The coil spring 303 is fixedly connected to the connecting rod 302. The limiting part is installed on the connecting rod 302 for cooperating with the rotation of the connecting rod 302. The non-return part is installed on the limiting part for fixing the cable.

[0036] Specifically, when the position of the cable is fixed in the rubber core, as the cable is inserted into the rubber core, the cable contacts the limiting portion, and the limiting portion swings at a certain angle through the connecting rod 302. At this time, the connecting rod 302 rotates in the shell 301. Through the setting of the coil spring 303, the connecting rod 302 ensures that the limiting portion is always in contact with the cable until the cable moves to a fixed position. Through the setting of the check portion, the cable can be restricted from being pulled out, and the cable can be further fixed. When unlocking is required, it is only necessary to press down the actuator 2 to disengage the limiting portion from the contact position with the cable, and then unlocking can be achieved.

[0037] As mentioned above, the limiting part includes a swing plate 304, a contact block 305, a transmission shaft 306 and a roller 307. The protruding ends of the two connecting rods 302 are fixedly installed with the swing plates 304, the ends of the two swing plates 304 are fixedly installed with the contact blocks 305, the other ends of the two swing plates 304 are fixedly installed with the transmission shaft 306, and the rollers 307 are rotatably installed on the two transmission shafts 306, and the interior of the rollers 307 is a hollow structure.

[0038] Specifically, as the cable moves, the roller 307 is pressed onto the cable by the arrangement of the coil spring 303 in cooperation with the swing plate 304 and the connecting rod 302 , thereby fixing the cable.

[0039] As mentioned above, the non-return part includes a ratchet 308, an elastic pawl 309 and a rubber ring 310. The ratchet 308 is fixedly installed on the two transmission shafts 306. The ratchet 308 is located inside the roller 307. The elastic pawl 309 is fixedly installed inside the two ratchets 308. The elastic pawl 309 is engaged with the ratchet 308. The rubber ring 310 is fixedly installed on the periphery of the two rollers 307.

[0040] Specifically, as the cable moves, the roller 307 contacts the cable and rotates, and the roller 307 drives the elastic pawl 309 to rotate. Since the position of the transmission shaft 306 is fixed, the elastic pawl 309 continuously surpasses the ratchet 308, thereby realizing the rolling of the roller 307. When the cable is pulled out, the elastic pawl 309 presses against the ratchet 308, thereby fixing the relative position between the roller 307 and the swing plate 304. By setting the rubber ring 310, the friction force can be increased, and part of the vibration can be eliminated during the vibration process, thereby improving the strength of the connection.

[0041] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A connector with an automatic locking structure, comprising a fixed spring (1) and an actuator (2), wherein both the fixed spring (1) and the actuator (2) can be detachably mounted in a connector housing, characterized in that: include: The fixed elastic piece (1) is composed of a connecting plate (11), a first supporting arm (12) and an elastic arm (13); The connecting plate (11) is detachably mounted in the connector housing, the first supporting arm (12) is arranged on one side of the connecting plate (11), and the elastic arm (13) is arranged on an end of the first supporting arm (12) away from the connecting plate (11); The elastic arm (13) comprises an elastic portion (131), a bent portion (132) and a contact portion (133) in sequence from an end close to the first support arm (12) to an end away from the first support arm (12); The elastic portion (131) is bent toward the connecting plate (11); The return bend (132) bends in a direction away from the connecting plate (11); The actuator (2) is composed of a pressing plate (21) and a positioning arm (22), wherein the positioning arm (22) is arranged at one end of the pressing plate (21) close to the connecting plate (11), and an end of the positioning arm (22) away from the pressing plate (21) is provided with a hook (221) capable of engaging with a cable plug; The surface of the contact portion (133) is pressed against the inner wall of the pressing plate (21); the surface of the actuator (2) is provided with a pressing portion (211) and a positioning portion (212); the positioning portion (212) can be matched and connected with the connector housing; and the actuator (2) is made of plastic.

2. The connector with an automatic locking structure according to claim 1, characterized in that: The actuator (2) can press the contact portion (133) to cause the elastic portion (131) to undergo elastic deformation.

3. The connector with an automatic locking structure according to claim 2, characterized in that: A second support arm (15) is also provided on the connecting plate (11), and the second support arm (15) is aligned with the first support arm (12); A limiting portion (151) for limiting the position of the actuator (2) is provided at one end of the second supporting arm (15) away from the first supporting arm (12), and the limiting portion (151) is bent toward a side of the second supporting arm (15) close to the connecting plate (11).

4. The connector with an automatic locking structure according to claim 3, characterized in that: An insert plate (152) that cooperates with the connector housing is provided at one end of the second support arm (15) away from the first support arm (12), and the insert plate (152) is bent toward a side of the second support arm (15) close to the first support arm (12).

5. The connector with an automatic locking structure according to claim 4, characterized in that: The inner wall of the pressing plate (21) is provided with a fixing slot (213), and the end of the contact portion (133) away from the bend portion (132) can be inserted into the fixing slot (213).

6. The connector with an automatic locking structure according to claim 5, characterized in that: The connecting plate (11) is further provided with a welding portion (14), and the welding portion (14) is provided with a groove (141).

7. The connector with an automatic locking structure according to claim 6, characterized in that: A positioning plate (16) is also provided on the connecting plate (11).

8. The connector with an automatic locking structure according to claim 7, characterized in that: An air-avoiding opening (214) is provided at the edge of the pressing plate (21), and the elastic portion (131) is arranged in the air-avoiding opening (214).

Citation Information

Patent Citations

  • Self-locking FPC connector

    CN107404023A