A vehicle emergency starting power supply detection device

By designing an anti-drop mechanism, a placement mechanism, and a cable winding mechanism in the automobile emergency starting power supply detection device, the problem of the connecting cable falling off during movement is solved, the data cable is stably connected and conveniently stored, and the service life and convenience are improved.

CN120314826BActive Publication Date: 2025-09-30DONGGUAN JUXING POWER
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Patent Information

Application Number
CN202510814529.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-06-18
Publication Date
2025-09-30
Estimated Expiration
2045-06-18

AI Technical Summary

Technical Problem

The connecting wire of the existing automobile emergency starting power supply detection device is easy to fall off during the movement, resulting in economic losses and inconvenience in use.

Method used

An anti-slip mechanism, a placement mechanism, and a cable winding mechanism are designed. The anti-slip mechanism prevents the data cable from falling off through a clamping arm and a clamping ring. The placement mechanism fixes the power clip through a clamping block and a spring rope. The cable winding mechanism stores the data cable through a fixed cylinder and a piston.

Benefits of technology

It effectively prevents the data cable from falling off during movement, improves the convenience of use and the life of the device, and avoids economic losses and inconvenience in use.

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Abstract

The present invention belongs to the technical field of automobile power supply detection, and specifically discloses an automobile emergency starting power supply detection device, including a starting power supply detector, an anti-dropping mechanism is provided on one external side of the starting power supply detector, a placement mechanism is provided on both sides of the starting power supply detector, a wire winding mechanism is provided at the bottom of the starting power supply detector, a power clamp is provided on the outer side of the placement mechanism, the placement mechanism is used to install the power clamp, a data cable is fixedly connected between the anti-dropping mechanism and the power clamp, the anti-dropping mechanism is used to prevent the data cable from dropping out, and the wire winding mechanism is used to wind the data cable. The anti-dropping mechanism is used to realize that when unplugging the connector of the data cable, the connector can be unplugged only after pressing the pressing ring, so that the data cable will not be lost during the movement of the staff, thus avoiding economic losses and not delaying the use of the device.
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Description

Technical Field

[0001] The invention belongs to the technical field of automobile power supply detection, and specifically discloses an automobile emergency starting power supply detection device. Background Art

[0002] A car jump starter is a portable power supply designed to provide emergency power to start the car engine when the car battery is dead. It typically features a high-capacity battery that can provide sufficient starting current for a short period of time. To improve the reliability and safety of jump starters, they are routinely tested using a car jump starter testing device.

[0003] When the automobile emergency starting power supply detection device in the prior art is tested, the detection connection line plug is generally inserted into the interface of the device, and the other end is placed on the positive and negative poles of the battery to complete the line connection. However, the plug is generally inserted directly into the interface. When the user is walking with the device, the connection line is likely to fall off and be lost, causing economic losses and delaying use. Summary of the Invention

[0004] In view of this, the purpose of the present invention is to propose an automobile emergency starting power supply detection device to solve the problem that the connecting wire of the existing detection device has no anti-loosening mechanism, which makes it easy for the connecting wire to fall off and be lost when the staff moves the device, causing economic losses and delaying its use.

[0005] To achieve the above objectives, the present invention provides an automobile emergency starting power supply detection device, including a starting power supply detector, an anti-slip mechanism is provided on one external side of the starting power supply detector, placement mechanisms are provided on both sides of the starting power supply detector, a wire winding mechanism is provided at the bottom of the starting power supply detector, a power clamp is provided on the outside of the placement mechanism, the placement mechanism is used to install the power clamp, a data cable is fixedly connected between the anti-slip mechanism and the power clamp, the anti-slip mechanism is used to prevent the data cable from slipping off, and the wire winding mechanism is used to wind the data cable.

[0006] In the above technical solution, preferably, the anti-slip mechanism includes two bottom rings, and the sides of the two bottom rings away from the data line are fixedly connected to the outer side of the starting power supply detector, the side of the bottom ring away from the starting power supply detector is fixedly connected with a tension spring, the side of the tension spring away from the starting power supply detector is fixedly connected with a mounting ring, a plurality of engaging arms are rotatably connected to the inner wall of the mounting ring, the side of the engaging arm close to the starting power supply detector is fixedly connected with a rotating pin, the side of the bottom ring away from the starting power supply detector is fixedly connected with a bottom cover, a spring is provided inside the bottom cover, and the inside of the bottom cover is slidably connected A limiting ring is provided, wherein a push ring plate is fixedly connected to the side of the limiting ring away from the starting power supply detector, a plurality of sliding boxes are fixedly connected to the side of the pushing ring plate away from the bottom ring, a data head is provided inside the bottom ring, a snap ring is fixedly connected to the outside of the data head, the snap ring is snapped with the snap arm, one end of the spring is fixedly connected to the side of the inside of the bottom cover close to the starting power supply detector, the other end of the spring is fixedly connected to the side of the limiting ring close to the starting power supply detector, a pressing ring is fixedly connected between the outsides of the plurality of sliding boxes, and the rotating pin is provided inside the sliding box.

[0007] In the above technical solution, preferably, the placing mechanism includes a clamping column, which is fixedly connected to the outside of the starting power supply detector, and two annular grooves are provided inside the clamping column. The inside of the clamping column is slidably connected to a limiting circular plate, the inside of the limiting circular plate is fixedly connected to spring 2, the top of the spring 2 is fixedly connected to the limiting disk, the side of the limiting disk away from spring 2 is fixedly connected to a locking head, the side of the limiting circular plate away from the starting power supply detector is fixedly connected to a connecting rod, the side of the connecting rod away from the starting power supply detector is fixedly connected to a blocking plate, both sides of the starting power supply detector are fixedly connected to sliders, the outside of the slider is slidably connected to a clamping block, and the bottom of the clamping block is fixedly connected to a spring rope.

[0008] In the above technical solution, preferably, the wire winding mechanism includes two fixed cylinders, the tops of the two fixed cylinders are fixedly connected to the bottom of the starting power supply detector, the interior of the fixed cylinder is slidably connected to a piston, the bottom of the piston is fixedly connected to an inner rod, the bottom of the inner rod is fixedly connected to a wire clamping plate, the outside of the fixed cylinder is fixedly connected to a fixed hollow column, the side of the fixed hollow column away from the fixed cylinder is fixedly connected to a limiting ring, the outside of the limiting ring is slidably connected to a movable cylinder, a return spring is provided inside the movable cylinder, the side of the movable cylinder close to the fixed cylinder is fixedly connected to a fixed column, the outside of the fixed column is fixedly connected to a sealing plug ring, the sealing plug ring is provided inside the limiting ring, and the inner rod passes through the bottom of the fixed cylinder.

[0009] In the above technical solution, preferably, a pressing ring is fixedly connected between the exteriors of the plurality of sliding boxes, and the rotating pin is arranged inside the sliding box.

[0010] In the above technical solution, preferably, the side of the spring rope away from the clamping block is fixedly connected to the bottom of the starting power supply detector, and the limiting plate is slidably connected to the inside of the limiting circular plate.

[0011] In the above technical solution, preferably, one end of the return spring is fixedly connected to the inside of the movable cylinder away from the inside of the fixed cylinder, and the other end of the return spring is fixedly connected to the side of the limiting ring away from the fixed cylinder.

[0012] In the above technical solution, preferably, a fixed connecting column is fixedly connected to the middle of the side of the movable cylinder away from the fixed cylinder, and a round handle is fixedly connected to the side of the fixed connecting column away from the fixed cylinder.

[0013] In the above technical solution, preferably, both ends of the top of the clamping plate are fixedly connected to telescopic rods, and the top of the telescopic rods is fixedly connected to the bottom of the starting power supply detector.

[0014] In the above technical solution, preferably, the inner rod passes through the bottom of the fixed cylinder, and the side of the movable cylinder close to the fixed cylinder is slidably connected to the outside of the fixed hollow column.

[0015] Compared with the prior art, the present invention has the following beneficial effects:

[0016] 1. The present invention realizes that when unplugging the connector of the data line, it is necessary to press the pressing ring to unplug the connector, so that the data line will not be lost during the movement of the staff, thereby avoiding economic losses and not delaying the use of the device.

[0017] 2. The present invention places the power clip through a placement mechanism and can store the data cable through a cable winding mechanism, so it does not need to be deliberately placed in a box, which is convenient for storage and improves the convenience of the device. At the same time, it can also prevent the data cable from being damaged due to continuous bending, thereby increasing the service life of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 A perspective view of the present invention;

[0019] Figure 2 It is a structural schematic diagram of the clamping block of the present invention;

[0020] Figure 3 Schematic diagram of the structure of the data head of the present invention;

[0021] Figure 4 It is a structural schematic diagram of the clamping ring of the present invention;

[0022] Figure 5 It is a structural schematic diagram of the tension spring of the present invention;

[0023] Figure 6 This is a schematic structural diagram of the mounting ring of the present invention;

[0024] Figure 7 It is a structural schematic diagram of the pull ring of the present invention;

[0025] Figure 8 This is a schematic diagram of the structure of the push circular plate of the present invention;

[0026] Figure 9 It is a structural schematic diagram of the clamping column of the present invention;

[0027] Figure 10 It is a structural schematic diagram of the ring groove of the present invention;

[0028] Figure 11 Schematic diagram of the structure of the limiting circular plate of the present invention;

[0029] Figure 12 It is a structural schematic diagram of the fixed cylinder of the present invention;

[0030] Figure 13 Schematic diagram of the structure of the limiting ring of the present invention;

[0031] Figure 14 It is a structural schematic diagram of the sealing plug ring of the present invention.

[0032] Figure: 1. Start power tester; 2. Anti-slip mechanism; 201. Bottom ring; 202. Tension spring; 203. Mounting ring; 204. Clamping arm; 205. Rotating pin; 206. Bottom cover; 207. Spring 1; 208. Limiting ring; 209. Pushing plate; 210. Sliding box; 211. Pressing ring; 212. Data head; 213. Clamping ring; 3. Data cable; 4. Placement mechanism; 401. Clamping column; 402. Ring groove; 403. Limiting circular plate; 404. Spring 2; 405. Limiting plate; 406, locking head; 407, connecting rod; 408, blocking plate; 409, slider; 410, clamping block; 411, spring rope; 5, winding mechanism; 501, fixed cylinder; 502, piston; 503, inner rod; 504, clamping plate; 505, telescopic rod; 506, movable cylinder; 507, return spring; 508, limiting ring; 509, fixed hollow column; 510, fixed column; 511, sealing plug ring; 512, fixed connecting column; 513, round handle; 6, power clamp. DETAILED DESCRIPTION

[0033] In order to more clearly understand the above-mentioned objects, features and advantages of the present invention, the present invention is further described in detail below with reference to the accompanying drawings and specific embodiments.

[0034] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the present invention is not limited to the specific embodiments disclosed below.

[0035] like Figures 1-14 The shown device is a vehicle emergency starting power supply detection device, comprising a starting power supply detector 1, an anti-slip mechanism 2 being provided on one side of the outside of the starting power supply detector 1, a placement mechanism 4 being provided on both sides of the starting power supply detector 1, a wire winding mechanism 5 being provided at the bottom of the starting power supply detector 1, a power clamp 6 being provided on the outside of the placement mechanism 4, the placement mechanism 4 being used to install the power clamp 6, a data cable 3 being fixedly connected between the anti-slip mechanism 2 and the power clamp 6, the anti-slip mechanism 2 being used to prevent the data cable 3 from slipping off, and the wire winding mechanism 5 being used to wind the data cable 3.

[0036] The anti-slip mechanism 2 includes two bottom rings 201, and the bottom rings 201 can provide an installation position. The sides of the two bottom rings 201 away from the data line 3 are fixedly connected to the outer side of the starting power supply detector 1. The side of the bottom ring 201 away from the starting power supply detector 1 is fixedly connected with a tension spring 202, and the tension spring 202 can provide a flexible contact condition. The side of the tension spring 202 away from the starting power supply detector 1 is fixedly connected with a mounting ring 203, and the mounting ring 203 provides an installation position. A plurality of engaging arms 204 are rotatably connected to the inner wall of the mounting ring 203, and the side of the engaging arm 204 close to the starting power supply detector 1 is fixedly connected with a rotating pin 205. The side of the bottom ring 201 away from the starting power supply detector 1 is fixedly connected with a bottom cover 206, and the bottom cover 206 can Provide an installation position, a spring 207 is provided inside the bottom cover 206, and the internal sliding connection of the bottom cover 206 is connected to a limit ring 208, which can provide a limiting function, and the limit ring 208 is fixedly connected to a push ring plate 209 on the side away from the starting power supply detector 1, and the spring 207 can provide a reaction force to reset the limit ring 208 and the push ring plate 209, and the push ring plate 209 is fixedly connected to a plurality of sliding boxes 210 on the side away from the bottom ring 201, and the rotating pin 205 can slide inside the sliding box 210, so as to avoid motion interference, and a data head 212 is provided inside the bottom ring 201, and a snap ring 213 is fixedly connected to the outside of the data head 212, and the snap ring 213 is connected to the snap arm 204 The locking can prevent the data head 212 from falling, the locking ring 213 is locked with the locking arm 204, one end of the spring 1 207 is fixedly connected to the side of the bottom cover 206 close to the starting power supply detector 1, and the other end of the spring 1 207 is fixedly connected to the side of the limit ring 208 close to the starting power supply detector 1. A pressing ring 211 is fixedly connected between the outsides of the multiple sliding boxes 210, and the rotating pin 205 is set inside the sliding box 210. When connecting the data line 3, first align the data head 212 with the middle of the bottom ring 201 and insert it. The data head 212 can drive the locking ring 213 to move toward the direction of the bottom ring 201. When the locking ring 213 moves to the locking arm 204, the locking arm 204 is away from the starting power supply detector. One side of the tester 1 is a curved surface, so when the locking ring 213 moves toward the inner side of the locking arm 204, the side of the locking arm 204 away from the starting power supply tester 1 will be opened from the middle to the outside. At this time, the side of the locking arm 204 close to the starting power supply tester 1 will rotate in the direction of the starting power supply tester 1, thereby pushing the sliding box 210 toward the side close to the starting power supply tester 1, and then driving the pushing ring plate 209 to move toward the side of the starting power supply tester 1. At this time, the limiting ring 208 is used to compress the spring 1 207, and since the mounting ring 203 is connected to the tension spring 202 in the direction close to the starting power supply tester 1, there is no rigid connection when the locking ring 213 squeezes the locking arm 204.The locking arm 204 will not make hard contact with the locking ring 213, thus protecting the locking ring 213. When the locking ring 213 moves to the inner side of the locking arm 204 away from the starting power supply detector 1, the spring 1 207 pushes the limit ring 208 and the push ring plate 209 to move to the side away from the starting power supply detector 1, thereby driving the sliding box 210 to move to the side away from the starting power supply detector 1, thereby pushing the rotating pin 205 to rotate to the side away from the starting power supply detector 1, thereby achieving The side of the locking arm 204 away from the starting power supply tester 1 is gathered toward the center, thereby enabling the locking arm 204 to engage with the locking ring 213. When removing the data head 212, the pressing ring 211 is moved toward the side closer to the starting power supply tester 1, thereby driving the sliding box 210 toward the side of the starting power supply tester 1, driving the locking arm 204 away from the starting power supply tester 1 to open outward. At this time, the locking arm 204 and the locking ring 213 are disengaged, and the data head 212 can now be removed.

[0037] The placement mechanism 4 includes a clamping column 401, which can provide a clamping position for the power clamp 6. The clamping column 401 is fixedly connected to the outside of the starting power supply detector 1. Two annular grooves 402 are provided inside the clamping column 401. The internal sliding connection of the clamping column 401 is connected to a limiting circular plate 403. The limiting circular plate 403 can play a limiting role. The interior of the limiting circular plate 403 is fixedly connected to a spring 2 404. The top of the spring 2 404 is fixedly connected to a limiting disk 405. The limiting disk 405 has a limiting role. The side of the limiting disk 405 away from the spring 2 404 is fixedly connected to a snap-fit ​​head 406. The snap-fit ​​head 406 is arranged inside the annular groove 402, which can prevent the limiting circular plate 403 from sliding inside the annular groove 402. The limiting circular plate 403 is far away A connecting rod 407 is fixedly connected to one side of the starting power supply detector 1, and a blocking plate 408 is fixedly connected to the side of the connecting rod 407 away from the starting power supply detector 1. The blocking plate 408 can be easily pressed and can play a blocking role to prevent the power clamp 6 from sliding out of the clamping column 401. Sliders 409 are fixedly connected to both sides of the starting power supply detector 1. The outside of the slider 409 is slidably connected to a clamping block 410. After the clamping block 410 is slidably connected to the outside of the slider 409, the clamping block 410 can be disassembled. A spring rope 411 is fixedly connected to the bottom of the clamping block 410 to prevent the clamping block 410 from being lost. The side of the spring rope 411 away from the clamping block 410 is fixedly connected to the bottom of the starting power supply detector 1, limiting The disk 405 is slidably connected to the inside of the limiting circular plate 403. When the power clip 6 is stored, the blocking plate 408 is pulled to the side away from the starting power supply detector 1, driving the connecting rod 407 and the limiting circular plate 403 to move to the side away from the starting power supply detector 1. At this time, the locking head 406 will contact the inner wall of the annular groove 402. Under the action of the pulling force, the locking head 406 can be squeezed toward the inside of the limiting circular plate 403. At this time, the limiting disk 405 can be used to compress the spring 2 404. When the limiting circular plate 403 moves to the inside of the annular groove 402 on the side away from the starting power supply detector 1, the spring 2 404 can push the limiting disk 405 and the locking head 406 to move toward the outside of the limiting circular plate 403. , and then the locking head 406 can be locked with the annular groove 402 on the side away from the starting power supply tester 1. At this time, the head of the power clamp 6 is tilted toward the starting power supply tester 1 and clamped on the outside of the clamping column 401. Since the power clamp 6 is long, the part of the head of the power clamp 6 close to the data line will be at the position of the connecting rod 407. Therefore, after the connecting rod 407 is pulled out of the inside of the clamping column 401, the blocking plate 408 will not produce movement interference, and the tail of the power clamp 6 is rotated toward the starting power supply tester 1, and then the tail of the power clamp 6 is clamped inside the clamping block 410. At this time, the blocking plate 408 can be pressed toward the side of the starting power supply tester 1, driving the limiting circular plate 403 to move to the annular groove 402 close to the starting power supply tester 1.The blocking plate 408 can be used to block the clamping portion of the power clip 6, and the blocking of the engaging head 406 prevents the blocking plate 408 from moving easily, so that the power clip 6 will not slide out of the clamping column 401.

[0038] The winding mechanism 5 includes two fixed cylinders 501, which can provide sliding space. The tops of the two fixed cylinders 501 are fixedly connected to the bottom of the starting power supply detector 1. The interior of the fixed cylinder 501 is slidably connected to a piston 502, and the bottom of the piston 502 is fixedly connected to an inner rod 503. The inner rod 503 plays a connecting role. The bottom of the inner rod 503 is fixedly connected to a clamping plate 504. The clamping plate 504 can block the data line 3 and prevent the data line 3 from escaping from the clamping plate 504 and the telescopic rod 505. The outside of the fixed cylinder 501 is fixedly connected to a fixed hollow column 509. The fixed hollow column 509 provides an installation position and ventilation conditions. The side of the fixed hollow column 509 away from the fixed cylinder 501 is fixedly connected to a limit ring 5 08, the limiting ring 508 can play a limiting role, the hole inside the fixed hollow column 509 is larger than the hole inside the limiting ring 508, the outside of the limiting ring 508 is slidably connected to the movable cylinder 506, and the inside of the movable cylinder 506 is provided with a return spring 507, the inside of the movable cylinder 506 is fixedly connected to the side close to the fixed cylinder 501, and the outside of the fixed cylinder 510 is fixedly connected to a sealing plug ring 511, which can plug the hole inside the limiting ring 508, and the sealing plug ring 511 is provided inside the limiting ring 508, the inner rod 503 passes through the bottom of the fixed cylinder 501, and one end of the return spring 507 is fixedly connected to the inside of the movable cylinder 506 away from the inside of the fixed cylinder 501, and the return spring The other end of 507 is fixedly connected to the side of the limit ring 508 away from the fixed cylinder 501, and the middle part of the side of the movable cylinder 506 away from the fixed cylinder 501 is fixedly connected to a fixed connecting column 512, and the side of the fixed connecting column 512 away from the fixed cylinder 501 is fixedly connected to a round handle 513. The combination of the round handle 513 and the fixed connecting column 512 can prevent fingers from blocking the holes on the movable cylinder 506. The top ends of the clamping plate 504 are fixedly connected to the telescopic rod 505, and the top of the telescopic rod 505 is fixedly connected to the bottom of the starting power supply detector 1. The side of the movable cylinder 506 close to the fixed cylinder 501 is slidably connected to the outside of the fixed hollow column 509. When the data cable 3 is wound and stored, the data cable 3 is wound around the two telescopic rods 5 05, at this time, the clamping plate 504 is pressed in the direction of starting the power supply detector 1, thereby driving the inner rod 503 and the piston 502 to move toward the inside of the fixed cylinder 501. At this time, the piston 502 can be used to squeeze out the air inside the fixed cylinder 501 through the fixed hollow column 509. At this time, the air will push the sealing plug ring 511 away from the fixed cylinder 501 and push the sealing plug ring 511 out of the interior of the limiting ring 508. At this time, the air can be discharged into the return spring 507 through the interior of the fixed hollow column 509 and the limiting ring 508. Since there is a hole on the side of the movable cylinder 506 away from the fixed cylinder 501, the air can be discharged through the hole. When the piston 502 stops moving,Under the action of the suction force inside the fixed cylinder 501 and the pulling force of the return spring 507, the movable cylinder 506 will be driven toward the fixed cylinder 501, so that the movable cylinder 506 can drive the fixed column 510 to move toward the fixed cylinder 501, and then the sealing plug ring 511 can re-enter the interior of the limiting ring 508, and then the middle of the limiting ring 508 can be blocked to prevent gas from entering the interior of the fixed cylinder 501. At this time, due to the pressure difference generated inside the fixed cylinder 501, the piston 502 will no longer move toward the side away from the starting power supply detector 1, and then the data cable 3 can be clamped between the clamping plate 504 and the starting power supply detector 1, preventing the data When the data cable 3 is loose and needs to be taken out, the round handle 513 is pressed toward the inside of the fixed cylinder 501. The round handle 513 and the fixed connecting column 512 can then be used to push the movable cylinder 506 toward the fixed cylinder 501, which in turn drives the fixed column 510 to move toward the fixed cylinder 501, and drives the sealing plug ring 511 to move toward the fixed cylinder 501 and out of the interior of the limiting ring 508. At this time, air will pass through the interior of the limiting ring 508 into the interior of the fixed hollow column 509 and then into the interior of the fixed cylinder 501. At this time, the wire clamping plate 504 can be moved to the side away from the starting power supply tester 1, so that the data cable 3 can be taken out.

[0039] Working principle: When connecting the data line 3, first align the data head 212 with the middle of the bottom ring 201 and insert it. The data head 212 can drive the snap ring 213 to move toward the bottom ring 201. When the snap ring 213 moves to the snap arm 204, since the side of the snap arm 204 away from the starting power supply tester 1 is a curved surface, when the snap ring 213 moves toward the inside of the snap arm 204, the side of the snap arm 204 away from the starting power supply tester 1 will open from the middle to the outside. At this time, the snap arm 204 04 is rotated in the direction of the starting power supply detector 1, so that the sliding box 210 can be pushed toward the side close to the starting power supply detector 1, and then the push ring plate 209 can be driven to move toward the side of the starting power supply detector 1. At this time, the limit ring 208 is used to compress the spring 1 207, and because the mounting ring 203 is connected to the tension spring 202 in the direction close to the starting power supply detector 1, when the snap ring 213 squeezes the snap arm 204, it will not be a rigid connection, and will not cause The locking arm 204 is in hard contact with the locking ring 213, protecting the locking ring 213. When the locking ring 213 moves to the inner side of the locking arm 204 away from the starting power supply detector 1, the spring 1 207 pushes the limit ring 208 and the push ring plate 209 to move to the side away from the starting power supply detector 1, and then can drive the sliding box 210 to move to the side away from the starting power supply detector 1, and then can push the rotating pin 205 to rotate to the side away from the starting power supply detector 1, so that the locking can be achieved. The side of the locking arm 204 away from the starting power supply tester 1 is gathered toward the middle, thereby enabling the locking arm 204 to be locked with the locking ring 213. When the data head 212 is pulled out, the pressing ring 211 is moved toward the side close to the starting power supply tester 1, thereby driving the sliding box 210 to move toward the side of the starting power supply tester 1, driving the locking arm 204 away from the starting power supply tester 1 to open outward. At this time, the locking arm 204 and the locking ring 213 are released, and the data head 212 can be pulled out.

[0040] When the power clip 6 is stored, the blocking plate 408 is pulled toward the side away from the starting power supply detector 1, driving the connecting rod 407 and the limiting circular plate 403 to move toward the side away from the starting power supply detector 1. At this time, the engaging head 406 will contact the inner wall of the annular groove 402. Under the action of the pulling force, the engaging head 406 can be squeezed toward the inside of the limiting circular plate 403. At this time, the limiting disk 405 can be used to compress the spring 2 404. When the limiting circular plate 403 moves to the inside of the annular groove 402 on the side away from the starting power supply detector 1, the spring 204 is compressed. Under the action of the second 404, the limiting plate 405 and the locking head 406 can be pushed to move to the outside of the limiting circular plate 403, and then the locking head 406 can be locked with the annular groove 402 on the side away from the starting power supply tester 1. At this time, it is convenient to clamp the power clamp 6 on the outside of the clamping column 401, and then the tail of the power clamp 6 is clamped inside the clamping block 410. At this time, the blocking plate 408 can be pressed to one side of the starting power supply tester 1, and the blocking plate 408 can be used to block the clamping part of the power clamp 6, so that the power clamp 6 will not slide out of the outside of the clamping column 401;

[0041] When winding and storing the data cable 3, the data cable 3 is wound between the outer sides of the two telescopic rods 505. At this time, the wire clamping plate 504 is pressed in the direction of starting the power supply detector 1, thereby driving the inner rod 503 and the piston 502 to move into the interior of the fixed cylinder 501. At this time, the piston 502 can squeeze out the air inside the fixed cylinder 501 through the fixed hollow column 509. At this time, the air will push the sealing plug ring 511 away from the fixed cylinder 501 and push the sealing plug ring 511 out of the interior of the limiting ring 508. At this time, the air can be discharged into the return spring 507 through the fixed hollow column 509 and the limiting ring 508. Since there is a hole on the side of the movable cylinder 506 away from the fixed cylinder 501, the air can be discharged through the hole. When the piston 502 stops moving, the movable cylinder 506 will be driven toward the fixed cylinder 501 under the action of the suction force inside the fixed cylinder 501 and the pulling force of the return spring 507, so that the movable cylinder 506 can be used to drive the fixed column 510 to move toward the fixed cylinder 501, thereby making the seal The plug ring 511 re-enters the interior of the limiting ring 508, and then can block the middle of the limiting ring 508 to prevent gas from entering the interior of the fixed cylinder 501. At this time, due to the pressure difference inside the fixed cylinder 501, the piston 502 will no longer move to the side away from the starting power supply detector 1, and then can clamp the data line 3 between the clamping plate 504 and the starting power supply detector 1 to prevent the data line 3 from being scattered. When the data line 3 needs to be taken out, the round handle 513 is pressed towards the interior of the fixed cylinder 501, and the round handle 513 can be used to remove the data line 3. 3 and the fixed connecting column 512 push the movable cylinder 506 toward the fixed cylinder 501, which in turn drives the fixed column 510 to move toward the fixed cylinder 501, and drives the sealing plug ring 511 to move toward the fixed cylinder 501, and at the same time moves out of the interior of the limiting ring 508. At this time, air will enter the interior of the fixed hollow column 509 through the interior of the limiting ring 508, and enter the interior of the fixed cylinder 501. At this time, the wire clamping plate 504 can move to the side away from the starting power supply tester 1, so that the data cable 3 can be taken out.

[0042] The above shows and describes the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions merely illustrate the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and modifications are intended to fall within the scope of the present invention. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.

Claims

1. A vehicle emergency starting power supply detection device, including a starting power supply detector, characterized in that: An anti-drop mechanism is provided on one side of the outside of the starting power supply tester, a placement mechanism is provided on both sides of the starting power supply tester, a cable winding mechanism is provided at the bottom of the starting power supply tester, a power clamp is provided on the outside of the placement mechanism, the placement mechanism is used to install the power clamp, a data cable is fixedly connected between the anti-drop mechanism and the power clamp, the anti-drop mechanism is used to prevent the data cable from dropping off, and the cable winding mechanism is used to wind the data cable; The wire winding mechanism includes two fixed cylinders, the tops of the two fixed cylinders are fixedly connected to the bottom of the starting power supply detector, the interior of the fixed cylinder is slidably connected to a piston, the bottom of the piston is fixedly connected to an inner rod, the bottom of the inner rod is fixedly connected to a wire clamping plate, the outside of the fixed cylinder is fixedly connected to a fixed hollow column, the side of the fixed hollow column away from the fixed cylinder is fixedly connected to a limiting ring, the outside of the limiting ring is slidably connected to a movable cylinder, a reset spring is provided inside the movable cylinder, the side of the movable cylinder close to the fixed cylinder is fixedly connected to a fixed column, the outside of the fixed column is fixedly connected to a sealing plug ring, the sealing plug ring is provided inside the limiting ring, and the inner rod passes through the bottom of the fixed cylinder.

2. The automobile emergency starting power supply detection device according to claim 1, characterized in that: The anti-slip mechanism includes two bottom rings, and the sides of the two bottom rings away from the data line are fixedly connected to the outer side of the starting power supply detector. The side of the bottom ring away from the starting power supply detector is fixedly connected with a tension spring, and the side of the tension spring away from the starting power supply detector is fixedly connected with a mounting ring. A plurality of engaging arms are rotatably connected to the inner wall of the mounting ring, and a rotating pin is fixedly connected to the side of the engaging arm close to the starting power supply detector. The side of the bottom ring away from the starting power supply detector is fixedly connected with a bottom cover, a spring is provided inside the bottom cover, and a limiting ring is slidably connected to the inside of the bottom cover. The side of the limiting ring away from the starting power supply detector is fixedly connected to a push ring plate, the side of the pushing ring plate away from the bottom ring is fixedly connected to a plurality of sliding boxes, a data head is provided inside the bottom ring, the outside of the data head is fixedly connected to a snap ring, the snap ring is snapped with the snap arm, one end of the spring is fixedly connected to the side of the inside of the bottom cover close to the starting power supply detector, the other end of the spring is fixedly connected to the side of the limiting ring close to the starting power supply detector, a pressing ring is fixedly connected between the outsides of the plurality of sliding boxes, and the rotating pin is provided inside the sliding box.

3. The automobile emergency starting power supply detection device according to claim 1, characterized in that: The placing mechanism includes a clamping column, which is fixedly connected to the outside of the starting power supply detector. Two annular grooves are provided inside the clamping column. The inside of the clamping column is slidably connected to a limiting circular plate. The inside of the limiting circular plate is fixedly connected to spring 2. The top of the spring 2 is fixedly connected to the limiting disk. The side of the limiting disk away from spring 2 is fixedly connected to a locking head. The side of the limiting circular plate away from the starting power supply detector is fixedly connected to a connecting rod. The side of the connecting rod away from the starting power supply detector is fixedly connected to a blocking plate. Both sides of the starting power supply detector are fixedly connected to sliders. The outside of the slider is slidably connected to a clamping block. The bottom of the clamping block is fixedly connected to a spring rope.

4. The automobile emergency starting power supply detection device according to claim 2, characterized in that: A pressing ring is fixedly connected between the outsides of the plurality of sliding boxes, and the rotating pin is arranged inside the sliding box.

5. The automobile emergency starting power supply detection device according to claim 3, characterized in that: The side of the spring rope away from the clamping block is fixedly connected to the bottom of the starting power supply detector, and the limiting plate is slidably connected to the inside of the limiting circular plate.

6. The automobile emergency starting power supply detection device according to claim 1, characterized in that: One end of the return spring is fixedly connected to the interior of the movable cylinder away from the interior of the fixed cylinder, and the other end of the return spring is fixedly connected to a side of the limiting ring away from the fixed cylinder.

7. The automobile emergency starting power supply detection device according to claim 1, characterized in that: A fixed connection column is fixedly connected to the middle of a side of the movable cylinder away from the fixed cylinder, and a round handle is fixedly connected to the side of the fixed connection column away from the fixed cylinder.

8. The automobile emergency starting power supply detection device according to claim 1, characterized in that: Both ends of the top of the clamping plate are fixedly connected with telescopic rods, and the top of the telescopic rod is fixedly connected to the bottom of the starting power supply detector.

9. The automobile emergency starting power supply detection device according to claim 1, characterized in that: The inner rod passes through the bottom of the fixed cylinder, and the movable cylinder is slidably connected to the outside of the fixed hollow column at one side close to the fixed cylinder.