A contact damping terminal for special-scenario wiring

By designing contact damping terminals, the door lock can be automatically opened and slowly closed by induction copper plates and buffer springs, solving the pulling and short circuit problems of the cable when the door hinge is damaged, and improving installation efficiency and safety.

CN114937564BActive Publication Date: 2025-06-24WUXI RUIDING POWER TECH CO LTD
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Patent Information

Application Number
CN202210370602.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-04-10
Publication Date
2025-06-24
Estimated Expiration
2042-04-10

AI Technical Summary

Technical Problem

When fixing sensing equipment on moving objects (such as doors), using cables to bend directly increases installation time, and when the door hinge is damaged, it is easy to cause cable pulling to drive the terminal equipment, which may cause short circuits.

Method used

A contact damping terminal is designed, including a wiring male and a wiring female. Through the cooperation of the induction copper plate and the buffer spring, the door lock can be automatically opened and slowly closed, avoiding cable pulling and short circuit.

Benefits of technology

It realizes automatic circuit formation when the door panel is closed to stimulate the door lock to open, ensuring the door lock, and avoiding cable pulling and short circuit through buffering, improving installation efficiency and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

A contact damping terminal for special scene wiring, comprising a male terminal and a female terminal cooperatively connected thereto. The male terminal includes a first base, a first accommodation groove is formed on the side of the first base, a first wire passing hole is opened outward from the first accommodation groove, a positioning sleeve is inserted into the first accommodation groove, a male terminal housing is connected to the outer side of the positioning sleeve, and a first inner cavity is formed inside the male terminal housing. First, the male terminal and the female terminal are correspondingly installed in appropriate positions to ensure that when the door panel is closed, the male terminal can be mated with the female terminal, so that the first induction copper sheet is combined with the second induction copper sheet. Furthermore, the first communication cable and the second communication cable form a loop, thereby activating the door lock to open and realizing the locking of the door.
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Description

Technical Field

[0001] The invention relates to the technical field of wiring heads, and in particular to a contact damping wiring head for wiring in special scenarios. Background Art

[0002] The sensor device is fixed on the moving object (door), and the system needs to collect the value of the sensor device. If the cable is directly bent for a single door or multiple doors, it will increase the installation time. In addition, when the door hinge is damaged and falls off, it is very easy to cause the cable to pull the terminal device and may also cause a short circuit.

[0003] In order to solve the above problems, the present invention proposes a contact damping terminal for wiring in special scenarios. Summary of the invention

[0004] (1) Technical issues to be solved

[0005] The purpose of the present invention is to overcome the problems in the prior art, meet practical needs, and provide a contact damping terminal for wiring in special scenarios to solve the above-mentioned technical problems.

[0006] (2) Technical solution

[0007] In order to achieve the purpose of the present invention, the technical solution adopted by the present invention is: a contact damping terminal head for wiring in special scenarios, including a male terminal and a female terminal connected thereto, the male terminal head including a first base, a first accommodating groove being provided on the side of the first base, a first wire threading hole being opened outwardly from the first accommodating groove, a positioning sleeve being inserted into the first accommodating groove, a male terminal shell being connected to the outside of the positioning sleeve, a first inner cavity being provided inside the male terminal shell, a first communication cable being provided in the first inner cavity, and a first induction copper sheet connected to the first communication cable being provided at the outer end of the male terminal shell.

[0008] Preferably, the female terminal connector includes a second base, a second accommodating groove is provided on the side of the second base, a female terminal shell is provided on the outside of the second accommodating groove, a second inner cavity adapted to the male terminal shell is provided inside the female terminal shell, the bottom of the second inner cavity is communicated with the second accommodating groove, and a second threading hole is opened outward from the second accommodating groove, a second communication cable is passed through the second threading hole, a second positioning sleeve is slidably connected to the bottom of the second inner cavity, a buffer spring is provided between the second positioning sleeve and the second accommodating groove, a second induction copper sheet is provided at the outer end of the second positioning sleeve, and the second induction copper sheet is connected to the second communication cable.

[0009] Preferably, the male head housing is a conical shell, and positioning protrusions are provided on the outer side surface of the male head housing. A positioning card slot is provided on the inner side surface of the second inner cavity of the female head housing. The positioning protrusions are adapted to the positioning card slots. A positioning block is provided on the outer side of the second positioning sleeve, and the positioning block is adapted to the positioning card slots.

[0010] Preferably, an annular groove is provided on the side surface of the male head housing opposite to the first base. A clamping component is correspondingly provided on the outer side surface of the first base. The clamping component is fixedly connected to the side surface of the first base, and the clamping component is adapted to the annular groove.

[0011] Preferably, two blocking blocks are symmetrically provided on the annular groove. An arc-shaped rod is slidably provided on the blocking block. A limiting block is provided at one end of the arc-shaped rod, and a pressing plate is provided at the other end of the arc-shaped rod. A compression spring is sleeved outside the arc-shaped rod. A reference card strip is provided in the middle of the outer side surface of the first base. A reference block is provided at one end of the reference card strip, and the reference block is adapted between the two pressing plates.

[0012] Preferably, a plurality of brackets are evenly provided on the outer end surface of the female head housing. A retaining ring is provided between the two brackets. A dust-proof plate is slidably provided below the retaining ring. An arc-shaped card slot is provided on the outer side of the dust-proof plate. An annular spring is wound around the outer side of the arc-shaped card slot. A cleaning member is swingably provided inside the bracket through a rotating shaft. The outer end of the cleaning member penetrates below the annular spring. Separation plates are provided on both sides of the cleaning member, and the position of the cleaning member is correspondingly set with the position of the first induction copper sheet.

[0013] Preferably, the wiring male head is installed at the upper end of the movable door panel, and the first communication cable passes through the first wire passing hole, and the outer end of the first communication cable is connected to the door lock. The wiring female head is installed at the upper end of the door frame, and the position of the wiring male head is correspondingly set with the position of the wiring female head.

[0014] (3) Beneficial effects:

[0015] A. First, install the wiring male head and the wiring female head in corresponding appropriate positions to ensure that when the door panel is closed, the wiring male head can be mated with the wiring female head, so that the first induction copper sheet is combined with the second induction copper sheet. Furthermore, the first communication cable and the second communication cable form a loop, thereby activating the door lock to open and realizing the locking of the door. During the combination of the first induction copper sheet and the second induction copper sheet, due to the buffering effect of the buffer spring behind the second induction copper sheet, the first induction copper sheet and the second induction copper sheet are prevented from being damaged by collision. Moreover, during the closing process of the door panel, it closes slowly, avoiding sudden impact and damage to the door panel and avoiding the generation of impact noise. Also, when a person's finger is at the edge of the door panel, a certain reaction time can be given to avoid pinching and causing accidents;

[0016] B. During the combination of the male connector head and the female connector head, it is necessary to ensure that the first induction copper sheet is aligned with the second induction copper sheet. Otherwise, a circuit cannot be formed. When the male connector housing is inserted into the female connector housing, first, the positioning protrusion on the outer side of the male connector housing is inserted into the positioning card slot. Furthermore, the accuracy of the combination position of the male and female connector heads is ensured, and the first induction copper sheet and the second induction copper sheet are precisely in contact with each other, avoiding the occurrence of skewing;

[0017] C. The male connector housing is combined with the first base through the positioning sleeve, but the combination stability in this state is poor and it is easy to fall off. Then, by engaging the engaging component into the annular groove, the male connector housing can be prevented from falling off, and the male connector housing can swing relative to the engaging component;

[0018] D. The pressure plates are in contact with each other in the initial state and correspond to the position of the positioning protrusion. After the male connector housing is installed on the engaging component, at the same time, the reference block is inserted between the two pressure plates. Furthermore, the position correspondence between the positioning protrusion and the positioning card slot is ensured, ensuring that the two can be combined smoothly. Moreover, when the positioning protrusion and the positioning card slot are skewed due to certain reasons, for example, when the installation positions of the first base or the second base are skewed, the relative positions of the positioning protrusion and the positioning card slot will be skewed. By providing an inlet port at the outer port of the positioning card slot, and the inlet port is in the shape of a flared mouth, the positioning protrusion can be ensured to be smoothly inserted into the positioning card slot through the inlet port. And during the combination process, the male connector housing can swing and adjust by a corresponding amplitude, ensuring the normal combination of the first induction copper sheet and the second induction copper sheet;

[0019] E. During the combination of the male connector housing and the female connector housing, first, the first induction copper sheet at the outer end of the male connector housing abuts against the cleaning part, and the outer side of the cleaning part is made of felt material. During the continuous downward pressing of the male connector housing, the separation plate squeezes and pushes the dust-proof plates on both sides of it. Furthermore, the dust-proof plates are opened to realize the subsequent combination process of the male and female connector housings. When the male connector housing leaves the female connector housing, the dust-proof plates gradually close under the action of the annular spring, and the cleaning part also resets under the action of the annular spring. Finally, the outer port of the female connector housing is sealed by the dust-proof plates and the cleaning part to prevent dust from entering. And during the combination process of the male and female connector housings, the outer side of the first induction copper sheet can be pre-cleaned by the cleaning part to avoid poor contact with the second induction copper sheet caused by dust accumulation on the outer side of the first induction copper sheet. Brief Description of the Drawings

[0020] Figure 1 It is a three-dimensional structural schematic diagram of a contact damping connector for special-scenario wiring according to the present invention;

[0021] Figure 2Schematic diagram of the male connector of the contact damping connector for special scenario wiring according to the present invention;

[0022] Figure 3 Schematic diagram of the female connector of the contact damping connector for special scenario wiring according to the present invention;

[0023] Figure 4 Schematic diagram of the outer housing of the male connector of the contact damping connector for special scenario wiring according to the present invention;

[0024] Figure 5 Schematic diagram of the engaging component of the contact damping connector for special scenario wiring according to the present invention;

[0025] Figure 6 Schematic diagram of the outer housing of the female connector of the contact damping connector for special scenario wiring according to the present invention;

[0026] Figure 7 Schematic diagram of the cleaning part of the contact damping connector for special scenario wiring according to the present invention.

[0027] The reference signs are as follows:

[0028] 100 - male connector, 101 - first base, 102 - first accommodating groove, 103 - first wire passing hole, 104 - positioning sleeve, 105 - outer housing of male connector, 106 - first inner cavity, 107 - first communication cable, 108 - first induction copper sheet, 109 - positioning protrusion, 110 - annular groove, 111 - engaging component, 112 - stop block, 113 - arc-shaped rod, 114 - limiting block, 115 - pressing plate, 116 - compression spring, 117 - reference card strip, 118 - reference block, 200 - female connector, 201 - second base, 202 - second accommodating groove, 203 - outer housing of female connector, 204 - second inner cavity, 205 - second wire passing hole, 206 - second communication cable, 207 - second positioning sleeve, 208 - buffer spring, 209 - second induction copper sheet, 210 - positioning card slot, 211 - positioning block, 212 - bracket, 213 - retaining ring, 214 - dust-proof plate, 215 - arc-shaped card slot, 216 - annular spring, 217 - cleaning part, 218 - separating plate, 300 - door lock, 400 - door frame. Detailed implementation manners

[0029] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.

[0030] Next, the present invention will be further described in conjunction with the attached Figures 1-7 drawings and embodiments:

[0031] In this embodiment, as Figures 1-7 shown, a contact damping terminal for special-scenario wiring includes a male terminal 100 and a female terminal 200 that is cooperatively connected thereto. The male terminal 100 includes a first base 101. A first receiving groove 102 is formed in a side portion of the first base 101. A first wire-passing hole 103 is formed in communication with the first receiving groove 102 outwardly. A positioning sleeve 104 is inserted into the first receiving groove 102. A male housing 105 is connected to an outer side of the positioning sleeve 104. A first inner cavity 106 is formed inside the male housing 105. A first communication cable 107 is disposed in the first inner cavity 106. A first induction copper sheet 108 connected to the first communication cable 107 is provided at an outer end of the male housing 105. The female terminal 200 includes a second base 201. A second receiving groove 202 is formed in a side portion of the second base 201. A female housing 203 is provided outside the second receiving groove 202. A second inner cavity 204 adapted to the male housing 105 is formed inside the female housing 203. A bottom of the second inner cavity 204 communicates with the second receiving groove 202. A second wire-passing hole 205 is formed in communication with the second receiving groove 202 outwardly. A second communication cable 206 is passed through the second wire-passing hole 205. A second positioning sleeve 207 is slidably connected to a bottom of the second inner cavity 204. A buffer spring 208 is provided between the second positioning sleeve 207 and the second receiving groove 202. A second induction copper sheet 209 is provided at an outer end of the second positioning sleeve 207. The second induction copper sheet 209 is connected to the second communication cable 206. First, the male terminal 100 and the female terminal 200 are correspondingly installed in appropriate positions to ensure that when the door panel is closed, the male terminal 100 can be mated with the female terminal 200, so that the first induction copper sheet 108 is combined with the second induction copper sheet 209. Further, the first communication cable 107 and the second communication cable 206 form a loop, thereby activating the door lock to open and realizing the locking of the door. During the combination of the first induction copper sheet 108 and the second induction copper sheet 209, due to the buffering effect of the buffer spring 208 behind the second induction copper sheet 209, the first induction copper sheet 108 and the second induction copper sheet 209 are prevented from being damaged by collision. Moreover, during the closing process of the door panel, the door panel is slowly closed, avoiding sudden impact damage to the door panel and avoiding the generation of impact noise. Also, when a person's finger is at the edge of the door panel, a certain reaction time can be given to avoid pinching and causing accidents.

[0032] In this embodiment, the male housing 105 is a conical shell, and a positioning protrusion 109 is provided on the outer side surface of the male housing 105. A positioning slot 210 is provided on the inner side surface of the second inner cavity 204 of the female housing 203. The positioning protrusion 109 is adapted to the positioning slot 210. A positioning block 211 is provided on the outer side of the second positioning sleeve 207, and the positioning block 211 is adapted to the positioning slot 210. During the combination process of the wiring male head 100 and the wiring female head 200, it is necessary to ensure that the first induction copper sheet 108 and the second induction copper sheet 209 are aligned. Otherwise, a circuit cannot be formed. When the male housing 105 is inserted into the female housing 203, first, the positioning protrusion 109 on the outer side of the male housing 105 is inserted into the positioning slot 210. Furthermore, the accuracy of the combination position of the wiring male head 100 and the wiring female head 200 is ensured, and the first induction copper sheet 108 and the second induction copper sheet 209 are precisely abutted together to avoid skew.

[0033] In this embodiment, an annular groove 110 is provided on the side surface of the male housing 105 opposite to the first base 101. A clamping component 111 is correspondingly provided on the outer side surface of the first base 101. The clamping component 111 is fixedly connected to the side surface of the first base 101, and the clamping component 111 is adapted to the annular groove 110. The male housing 105 is combined with the first base 101 through the positioning sleeve 104. However, the combination stability in this state is poor and it is easy to fall off. Then, by inserting the clamping component 111 into the annular groove 110, the male housing 105 can be prevented from falling off, and the male housing 105 can swing relative to the clamping component 111.

[0034] In this embodiment, two stoppers 112 are symmetrically provided on the annular groove 110. An arc-shaped rod 113 is slidably provided on the stopper 112. A limit block 114 is provided at one end of the arc-shaped rod 113, and a pressing plate 115 is provided at the other end of the arc-shaped rod 113. A compression spring 116 is sleeved outside the arc-shaped rod 113. A reference card strip 117 is provided in the middle of the outer side surface of the first base 101. A reference block 118 is provided at one end of the reference card strip 117, and the reference block 118 is adapted to be between the two pressing plates 115. The pressing plates 115 are in contact with each other in the initial state and correspond to the position of the positioning protrusion 109. After the male head housing 105 is installed on the engaging component 111, at the same time, the reference block 118 is inserted between the two pressing plates 115. Furthermore, it is ensured that the positioning protrusion 109 corresponds to the position of the positioning slot 210, ensuring that the two can be smoothly combined. Moreover, when the positioning protrusion 109 and the positioning slot 210 are deflected in position due to certain reasons, for example, when the installation positions of the first base 101 or the second base 201 are deflected, the relative positions of the positioning protrusion 109 and the positioning slot 210 will be deflected. An introduction port is provided at the outer port of the positioning slot 210, and the introduction port is in a flared shape. Through the introduction port, it can be ensured that the positioning protrusion 109 is smoothly inserted into the positioning slot 210, and during the combination process, the male head housing 105 can swing and adjust accordingly to ensure the normal combination of the first induction copper sheet 108 and the second induction copper sheet 209.

[0035] In this embodiment, a plurality of brackets 212 are evenly distributed on the outer end face of the female head housing 203. A retaining ring 213 is provided between two brackets 212. A dust-proof plate 214 is slidably provided below the retaining ring 213. An arc-shaped card slot 215 is formed on the outer side of the dust-proof plate 214. An annular spring 216 is wound around the outer side of the arc-shaped card slot 215. A cleaning member 217 is swingably provided inside the bracket 212 through a rotating shaft. The outer end of the cleaning member 217 passes through the lower side of the annular spring 216. Separation plates 218 are provided on both sides of the cleaning member 217. The position of the cleaning member 217 is correspondingly set with the position of the first induction copper sheet 108. During the process of the male head housing 105 being combined with the female head housing 203, first, the first induction copper sheet 108 at the outer end of the male head housing 105 abuts against the cleaning member 217. The outer side surface of the cleaning member 217 is made of felt material. During the continuous downward pressing of the male head housing 105, the dust-proof plates 214 on both sides thereof are squeezed and pushed through the separation plates 218. Furthermore, the dust-proof plates 214 are opened to realize the subsequent combination process of the male head housing 105 and the female head housing 203. When the male head housing 105 leaves the female head housing 203, the dust-proof plates 214 are gradually closed under the action of the annular spring 216, and the cleaning member 217 also returns to its original position under the action of the annular spring 216. Finally, the outer port of the female head housing 203 is sealed by the dust-proof plates 214 and the cleaning member 217 to prevent dust from entering. And during the combination process of the male head housing 105 and the female head housing 203, the outer side surface of the first induction copper sheet 108 can be pre-cleaned through the cleaning member 217 to prevent dust from accumulating on the outer side of the first induction copper sheet 108 and causing poor contact with the second induction copper sheet 209.

[0036] In this embodiment, the wiring male head 100 is installed at the upper end of the movable door panel, and the first communication cable 107 passes through the first wire passing hole 103, and the outer end of the first communication cable 107 is connected to the door lock 300. The wiring female head 200 is installed at the upper end of the door frame 400. The position of the wiring male head 100 is correspondingly set with the position of the wiring female head 200. Compared with the existing wiring method, this wiring accessory can be effectively used for the cooperation between moving objects, occupies a small space, is easy to install, replaces the complex cable winding, improves the structural aesthetics, and avoids the situation that when the door hinge is damaged and falls off, the cable is pulled to drive the terminal device and cause a short circuit.

[0037] Advantages of the present invention:

[0038] First, install the male connector 100 and the female connector 200 at corresponding appropriate positions to ensure that when the door panel is closed, the male connector 100 can be mated with the female connector 200, enabling the first induction copper sheet 108 to be combined with the second induction copper sheet 209. Furthermore, the first communication cable 107 and the second communication cable 206 form a circuit, thereby activating the door lock to achieve locking of the door. During the combination process of the first induction copper sheet 108 and the second induction copper sheet 209, through the buffering effect of the buffer spring 208 behind the second induction copper sheet 209, the first induction copper sheet 108 and the second induction copper sheet 209 are prevented from being damaged, and the door panel closes slowly during the closing process, avoiding sudden impact that may damage the door panel and generating impact noise. Moreover, when a person's finger is at the edge of the door panel, a certain reaction time can be given to avoid pinching accidents;

[0039] During the combination process of the male connector 100 and the female connector 200, it is necessary to ensure that the first induction copper sheet 108 is aligned with the second induction copper sheet 209; otherwise, a circuit cannot be formed. When the male connector housing 105 is inserted into the female connector housing 203, first, the positioning protrusion 109 on the outer side of the male connector housing 105 is inserted into the positioning groove 210, thereby ensuring the accuracy of the combination position of the male connector 100 and the female connector 200, ensuring that the first induction copper sheet 108 and the second induction copper sheet 209 are precisely in contact with each other and avoiding skewing;

[0040] The male connector housing 105 is combined with the first base 101 through the positioning sleeve 104, but the combination stability in this state is poor and it is easy to fall off. Then, by engaging the engaging component 111 into the annular groove 110, the male connector housing 105 can be prevented from falling off, and the male connector housing 105 can swing relative to the engaging component 111;

[0041] The pressure plates 115 are in contact with each other in the initial state and correspond to the position of the positioning protrusion 109. After the male connector housing 105 is installed on the engaging component 111, at the same time, by inserting the reference block 118 between the two pressure plates 115, the position correspondence between the positioning protrusion 109 and the positioning groove 210 is ensured, ensuring that the two can be combined smoothly. Moreover, when the positioning protrusion 109 and the positioning groove 210 are skewed due to certain reasons, for example, when the installation positions of the first base 101 or the second base 201 are skewed, the relative positions of the positioning protrusion 109 and the positioning groove 210 will be skewed. By providing an inlet port at the outer port of the positioning groove 210, and the inlet port is in the shape of a flared mouth, the positioning protrusion 109 can be ensured to be smoothly inserted into the positioning groove 210, and during the combination process, the male connector housing 105 can swing and adjust by a corresponding amplitude to ensure the normal combination of the first induction copper sheet 108 and the second induction copper sheet 209;

[0042] During the process of the male housing 105 being combined with the female housing 203, first, the first induction copper sheet 108 at the outer end of the male housing 105 abuts against the cleaning member 217. The outer side surface of the cleaning member 217 is made of felt material. During the continuous downward pressing of the male housing 105, the separation plate 218 squeezes and pushes the dust-proof plates 214 on both sides of it. Then, the dust-proof plates 214 are opened to realize the subsequent combination process of the male housing 105 and the female housing 203. When the male housing 105 leaves the female housing 203, the dust-proof plates 214 gradually close under the action of the annular spring 216, and the cleaning member 217 also resets under the action of the annular spring 216. Finally, the outer port of the female housing 203 is sealed by the dust-proof plates 214 and the cleaning member 217 to prevent dust from entering. And during the combination process of the male housing 105 and the female housing 203, the outer side surface of the first induction copper sheet 108 can be pre-cleaned by the cleaning member 217 to prevent dust from accumulating on the outer side of the first induction copper sheet 108 and causing poor contact with the second induction copper sheet 209.

[0043] Working principle:

[0044] First, the male connector 100 and the female connector 200 are correspondingly installed in appropriate positions to ensure that when the door panel is closed, the male connector 100 can be mated with the female connector 200, so that the first induction copper sheet 108 is combined with the second induction copper sheet 209. Then, the first communication cable 107 and the second communication cable 206 form a loop, thereby activating the door lock to achieve the locking of the door. During the combination process of the first induction copper sheet 108 and the second induction copper sheet 209, due to the buffering effect of the buffer spring 208 behind the second induction copper sheet 209, the first induction copper sheet 108 and the second induction copper sheet 209 are prevented from being damaged. And during the closing process of the door panel, it closes slowly, avoiding sudden impact and damage to the door panel and the generation of impact noise. Moreover, when a person's finger is at the edge of the door panel, a certain reaction time can be given to avoid pinching and causing accidents.

[0045] The embodiments disclosed in the present invention are preferred embodiments, but not limited thereto. Those of ordinary skill in the art can easily understand the spirit of the present invention based on the above embodiments and make different extensions and changes. However, as long as they do not depart from the spirit of the present invention, they are within the protection scope of the present invention.

Claims

1. A contact damping terminal for special scenario wiring, comprising a male terminal (100) and a female terminal (200) cooperatively connected thereto, characterized in that, The male connector head (100) includes a first base (101). A first accommodation groove (102) is formed on the side of the first base (101). A first wire passing hole (103) is opened outward from the first accommodation groove (102). A positioning sleeve (104) is inserted into the first accommodation groove (102). A male connector housing (105) is connected to the outside of the positioning sleeve (104). A first inner cavity (106) is formed inside the male connector housing (105). A first communication cable (107) is arranged in the first inner cavity (106). A first induction copper sheet (108) connected to the first communication cable (107) is arranged at the outer end of the male connector housing (105); The female connector head (200) includes a second base (201). A second accommodation groove (202) is formed on the side of the second base (201). A female connector housing (203) is arranged outside the second accommodation groove (202). A second inner cavity (204) adapted to the male connector housing (105) is formed inside the female connector housing (203). The bottom of the second inner cavity (204) communicates with the second accommodation groove (202). A second wire passing hole (205) is opened outward from the second accommodation groove (202). A second communication cable (206) is passed through the second wire passing hole (205). A second positioning sleeve (207) is slidably connected to the bottom of the second inner cavity (204). A buffer spring (208) is arranged between the second positioning sleeve (207) and the second accommodation groove (202). A second induction copper sheet (209) is arranged at the outer end of the second positioning sleeve (207), and the second induction copper sheet (209) is connected to the second communication cable (206); The male connector housing (105) is a conical shell, and a positioning protrusion (109) is formed on the outer side surface of the male connector housing (105). A positioning card slot (210) is formed on the inner side surface of the second inner cavity (204) of the female connector housing (203). The positioning protrusion (109) is adapted to the positioning card slot (210). A positioning block (211) is arranged outside the second positioning sleeve (207). The positioning block (211) is adapted to the positioning card slot (210); An annular groove (110) is formed on the side surface of the male connector housing (105) opposite to the first base (101). A clamping component (111) is correspondingly arranged on the outer side surface of the first base (101). The clamping component (111) is fixedly connected to the side surface of the first base (101). The clamping component (111) is adapted to the annular groove (110); Two stoppers (112) are symmetrically arranged in the annular groove (110). An arc-shaped rod (113) is slidably arranged on the stopper (112). A limit block (114) is arranged at one end of the arc-shaped rod (113). A pressing plate (115) is arranged at the other end of the arc-shaped rod (113). A compression spring (116) is sleeved outside the arc-shaped rod (113). A reference card strip (117) is arranged in the middle of the outer side surface of the first base (101). A reference block (118) is arranged at one end of the reference card strip (117). The reference block (118) is adapted to be between the two pressing plates (115).

2. The contact damping terminal for special-scenario wiring according to claim 1, wherein: A plurality of brackets (212) are evenly distributed on the outer end surface of the female head housing (203). A retaining ring (213) is provided between two brackets (212). A dust-proof plate (214) is slidably provided below the retaining ring (213). An arc-shaped card slot (215) is formed on the outer side of the dust-proof plate (214). An annular spring (216) is wound around the outer side of the arc-shaped card slot (215). A cleaning member (217) is swingably provided inside the bracket (212) through a rotating shaft. The outer end of the cleaning member (217) passes through the lower side of the annular spring (216). Separation plates (218) are provided on both sides of the cleaning member (217). The position of the cleaning member (217) is correspondingly set with the position of the first induction copper sheet (108).

3. The contact damping terminal for special scenario wiring according to claim 2, wherein: The male connector (100) is installed at the upper end of the movable door panel, and the first communication cable (107) passes out through the first wire passing hole (103), and the outer end of the first communication cable (107) is connected to the door lock (300). The female connector (200) is installed at the upper end of the door frame (400). The position of the male connector (100) is correspondingly set with the position of the female connector (200).

Citation Information

Patent Citations

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