Trunk based on Tof object detection distance measuring sensor
By introducing a clamping and wire-winding mechanism in the trunk of the TOF object detection and ranging sensor, the problems of inconvenient sensor disassembly and assembly and messy wiring are solved, and quick disassembly and assembly and neat storage of wires are achieved, which improves the convenience and safety of use.
Patent Information
- Application Number
- CN202422475587.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-12
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-10-12
Smart Images

Figure CN223370753U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of distance measurement and detection, in particular to a car trunk based on a TOF object detection distance measurement sensor. Background Art
[0002] In today's cars, the trunk undoubtedly plays a vital role in storage. In order to greatly improve the convenience and safety of the trunk, TOF detection and ranging sensors came into being. This advanced sensor can accurately sense various conditions outside the trunk by precisely emitting light pulses and accurately measuring their flight time. In some high-end models, this sensor has even demonstrated powerful functions. It can assist in the automatic opening and closing of the trunk. For example, when the sensor keenly detects that the owner is approaching the vehicle, it will quickly and automatically trigger the trunk to open, providing the owner with a convenient user experience; and in the process of closing the trunk, if the sensor detects an object blocking it, it will immediately pause the closing action, effectively preventing people from being pinched or objects from being damaged. In addition, the TOF detection and ranging sensor also has the ability to perceive the outside through the trunk under certain conditions, such as being able to detect whether there is an obstacle behind the vehicle that affects the opening of the trunk. This function further enhances the intelligence level and safety of the car.
[0003] However, existing TOF object detection and ranging sensors are usually installed inside the trunk of a car. During their use, bolts are often used for auxiliary installation, and they are hidden inside the trunk. In this way, when the sensor is damaged, it is obviously impossible to quickly disassemble and repair it. Usually, the disassembly and replacement process requires professional personnel to operate, which undoubtedly leads to high subsequent maintenance and replacement costs during overall use, and the disassembly and assembly process is extremely cumbersome and inconvenient. Moreover, during their use, the sensor's redundant wire structure lacks a winding wiring device, and its redundant wires are often bonded and wrapped around the inside of the trunk with tape, which makes the overall wiring appear rather messy. At the same time, the glue used for tape wiring has a limited service life. When the glue is nearing its expiration date, it is very easy for the wire to fall off, causing great trouble and inconvenience to users. Therefore, it is urgent to improve the existing TOF object detection and ranging sensors. Utility Model Content
[0004] The purpose of the utility model is to provide a trunk based on a TOF object detection and ranging sensor to solve the problem in the above background technology that the overall disassembly and wiring of the existing sensor during use is complicated and inconvenient.
[0005] To achieve the above-mentioned purpose, the utility model provides a car trunk based on a TOF object detection and ranging sensor, comprising a car body, a trunk fixedly mounted on the rear side of the car body, a box cover hinged on the top of the trunk, a reserved hole opened at the upper end of the rear side of the box cover, a clamping mechanism fixedly mounted on the inner upper end of the box cover, a sensor housing mounted inside the trunk through the clamping mechanism, a wire-reeling mechanism fixedly mounted on the outer end of the sensor housing, a circuit board fixedly connected to the inner side of the sensor housing, a TOF object detection and ranging sensor and a projection sensor respectively provided on one side of the circuit board, wires fixedly connected to the upper end of the circuit board at equal intervals, the wires reeled inside the wire-reeling mechanism, and an electromagnetic lock fixedly connected to the middle of the lower end of the box cover close to the trunk;
[0006] The clamping mechanism includes a mounting rail and a clamping frame. The mounting rail is fixedly installed on the upper end of the rear side of the box cover. Both ends of the interior of the mounting rail are fixedly installed with clamping components. The clamping frame is fixedly installed on both sides of the sensor housing. The ends of the clamping components are inserted into the interior of the clamping frame. The detection probes of the tof object ranging sensor and the projection sensor in the sensor housing are both arranged on the inner side of the reserved hole. The sensor housing is installed on the upper end of the mounting rail in the box cover through the clamping component. The bottom of the mounting rail is installed with an adjustment component.
[0007] Furthermore, the overall cross-sectional shape of the box cover is L-shaped, and the outer corners of the box cover are all arc-shaped.
[0008] Furthermore, the clamping assembly includes a limit spring, which is fixedly installed at both ends of the mounting rail frame, and a movable frame is fixedly installed at the outer end of the limit spring, and the movable frame is slidably connected to the two ends of the mounting rail frame, and a limit frame is fixedly installed at the outer end of the movable frame, and a limit block is fixedly installed at the outer end of the limit frame, and the end of the limit block is inserted into the inner side of the clamping frame.
[0009] Furthermore, the adjustment component includes a linkage guide plate and a linkage guide block. The linkage guide plate is fixedly installed on the bottom of the movable frame. The linkage guide block is rotatably connected to the middle of the bottom of the mounting rail frame. The outer side of the linkage guide block and the inner end of the linkage guide plate are fit-connected.
[0010] Furthermore, the overall shape of the inner end of the linkage guide plate is arc-shaped, and the overall shape of the linkage guide block when viewed from above is elliptical.
[0011] Furthermore, an adjustable armrest is fixedly installed on the bottom of the linkage guide block, and an anti-slip rubber sleeve is fixedly connected to the outer surface of the adjustable armrest.
[0012] Furthermore, the wire-winding mechanism includes a side plate, which is fixedly mounted on the upper end of the sensor housing close to the vehicle body, and a mounting shell is fixedly mounted on both sides of the bottom of the side plate, and a torsion spring is fixedly connected to the interior of the mounting shell, and a turntable is fixedly mounted on the inner side of the torsion spring, and the turntable and the mounting shell are rotatably connected, and a winding shaft is fixedly mounted on the inner side of the turntable, and a wire threading groove is opened in the middle of the winding shaft, and the wire passes through the wire threading groove and is wound on the outer surface of the winding shaft.
[0013] Furthermore, a guide block is fixedly connected to the side of the card frame away from the vehicle body, and the overall cross-sectional shape of the guide block is a right-angled trapezoid, and the side shape of the movable frame and the inner side shape of the mounting rail are both cross-shaped.
[0014] Furthermore, the side shape of the movable frame and the inner side shape of the mounting rail frame are both set to be cross-shaped, and the linkage guide plate is set to be L-shaped.
[0015] Compared with the prior art, the beneficial effects of the present invention are:
[0016] Firstly, in the present invention, a card-mounting mechanism is provided. When the device is in use, the TOF object detection and ranging sensor and the projection sensor in the sensor housing can assist in detecting the rear end of the vehicle, and cooperate with the vehicle body system to realize the automatic opening and closing function of the trunk. During maintenance, the hand-operated adjustment armrest drives the linkage guide block to rotate, and after changing from vertical to horizontal, the inner end of the linkage guide plate is squeezed and stretched, and the movable frame is pushed to slide, so that the limit block is separated from the card frame, and the sensor housing can be removed. The plug and the probe are pulled out to complete the disassembly. When reinstalling, the sensor housing is taken out and the plugged wire is pushed into the limit block. The guide block inclined surface stretches the limit block. After contacting the card frame, the limit spring resets to insert the limit block into the card frame to complete the installation, which is convenient for quick disassembly and maintenance, improves the convenience of use and reduces the cost.
[0017] First, in the present invention, a wire-winding mechanism is provided. When in use, the turntable and the winding shaft are twisted to compress the torsion spring. The wire is passed through the wire groove of the winding shaft and the connector is plugged in. After loosening, the torsion spring resets to drive the winding shaft to rotate and wind up the wire. When the wire is pulled out and extended, the winding shaft and the turntable rotate in opposite directions to drive the torsion spring to contract. The torsion spring always provides elastic force to wind up the excess wire, so that the wire is in a tight state, avoiding messy layout, improving the stability and neatness of the line, and facilitating the use of the device. The entire wire-winding mechanism ensures that the wires are in order, brings convenience to the use of the device, and improves the overall practicality and aesthetics. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 This is a schematic diagram of the vehicle body structure of the present utility model;
[0019] Figure 2 This is a schematic diagram of the structure of the middle box cover of the utility model;
[0020] Figure 3 This is a schematic diagram of the structure of the sensor as a whole, the winding mechanism and the clamping mechanism in the present invention;
[0021] Figure 4 This is a schematic diagram of the top view of the sensor housing and the clamping mechanism in the separated state in the present invention;
[0022] Figure 5 This is a bottom view of the structure of the sensor housing and the clamping mechanism in the present invention in a separated state;
[0023] Figure 6 This is a schematic diagram of the structure of the winding mechanism in the present invention in a disassembled state;
[0024] Figure 7 This is a schematic diagram of the structure of the clamping mechanism in the utility model.
[0025] In the figure: 1. Vehicle body; 2. Trunk; 3. Trunk cover; 4. Reserved hole; 5. Sensor housing; 6. Clamping mechanism; 61. Mounting rail; 62. Clamping frame; 63. Clamping assembly; 631. Limiting spring; 632. Movable frame; 633. Limiting frame; 634. Limiting block; 64. Adjusting assembly; 641. Linkage guide plate; 642. Linkage guide block; 643. Adjusting armrest; 65. Guide block; 7. Wire-reeling mechanism; 71. Side panel; 72. Mounting shell; 73. Torsion spring; 74. Turntable; 75. Reeling shaft; 76. Wire threading groove; 8. Circuit board; 9. Wire; 10. Electromagnetic lock. DETAILED DESCRIPTION
[0026] Example
[0027] See also Figure 1-Figure 7 In an embodiment of the utility model, a trunk based on a TOF object detection and ranging sensor comprises a vehicle body 1, a trunk 2 is fixedly mounted on the rear side of the vehicle body 1, a trunk cover 3 is hinged on the top of the trunk 2, a reserved hole 4 is opened on the upper end of the rear side of the trunk cover 3, a clamping mechanism 6 is fixedly mounted on the inner upper end of the trunk cover 3, a sensor housing 5 is mounted inside the trunk 2 through the clamping mechanism 6, a take-up mechanism 7 is fixedly mounted on the outer end of the sensor housing 5, a circuit board 8 is fixedly connected to the inner side of the sensor housing 5, a TOF object detection and ranging sensor and a projection sensor are respectively provided on one side of the circuit board 8, a wire 9 is fixedly connected to the upper end of the circuit board 8 at equal intervals, the wire 9 is wound inside the take-up mechanism 7, and an electromagnetic lock 10 is fixedly connected to the middle of the lower end of the side of the trunk cover 3 close to the trunk 2;
[0028] The card-mounting mechanism 6 includes a mounting rail 61 and a card frame 62. The mounting rail 61 is fixedly mounted on the upper rear end of the box cover 3. Both ends of the inner side of the mounting rail 61 are fixedly mounted with card-mounting components 63. The card frame 62 is fixedly mounted on both sides of the sensor housing 5. The ends of the card-mounting components 63 are inserted into the interior of the card frame 62. The detection probes of the tof detection distance sensor and the projection sensor in the sensor housing 5 are both arranged on the inner side of the reserved hole 4. The sensor housing 5 is mounted on the upper end of the mounting rail 61 in the box cover 3 through the card-mounting component 63. The bottom of the mounting rail 61 is installed with an adjustment component 64. By arranging the card-mounting mechanism 6 at the upper inner end of the box cover 3, the installation and removal of the sensor housing 5 are extremely convenient. When maintenance is required, The card assembly 63 can be operated by adjusting the component 64 to separate the card assembly 63 from the card frame 62, and the sensor housing 5 can be easily removed from the box cover 3, which greatly improves the convenience of subsequent use and reduces the cost of use. Secondly, the TOF object detection and ranging sensor and projection sensor in the sensor housing 5, in conjunction with the internal system of the vehicle body 1, can realize the function of automatically opening and closing the trunk 2 of the car, bringing great convenience to the user. Furthermore, the setting of the wire-winding mechanism 7 ensures the orderly winding of the wire 9, avoids the messy layout of the wire 9, and improves the stability and neatness of the line. Finally, the setting of the electromagnetic lock 10 further enhances the safety of the trunk 2. On the whole, the trunk of the car is reasonably designed, powerful and practical.
[0029] See also Figures 1-6 The overall cross-section of the box cover 3 is L-shaped, and the external corners of the box cover 3 are all set to arc shapes. The clamping assembly 63 includes a limit spring 631, which is fixedly installed at both ends of the mounting rail 61. The outer end of the limit spring 631 is fixedly installed with a movable frame 632, and the movable frame 632 is slidably connected to the two ends of the mounting rail 61. The outer end of the movable frame 632 is fixedly installed with a limit frame 633, and the outer end of the limit frame 633 is fixedly installed with a limit block 634. The end of the limit block 634 is inserted into the inner side of the card frame 62. The overall cross-section of the box cover 3 is L-shaped, and the external corners are set to arc shapes. It not only gives people a smooth beauty in appearance, but also the arc-shaped design can effectively avoid possible injuries to people during use. The limit spring 631 provides a stable elastic support for the entire card structure. When the limit block 634 is inserted into the inner side of the card frame 62, the limit spring 631 can ensure the firmness of the connection and prevent the sensor housing 5 from loosening or falling off due to vibration and other reasons during the driving of the vehicle. The sliding connection mode of the movable frame 632 in the mounting rail frame 61 makes the movement of the limit block 634 smoother, which facilitates the installation and disassembly of the sensor housing 5. At the same time, the cooperation between the limit frame 633 and the limit block 634 can accurately dock with the card frame 62, ensuring the accuracy of the installation position of the sensor housing 5 and improving the stability and reliability of the entire device.
[0030] See also Figure 3-Figure 7 , the adjustment component 64 includes a linkage guide plate 641 and a linkage guide block 642. The linkage guide plate 641 is fixedly installed at the bottom of the movable frame 632. The linkage guide block 642 is rotatably connected to the middle of the bottom of the mounting rail 61. The outer side of the linkage guide block 642 is fitted with the inner end of the linkage guide plate 641. The overall shape of the inner end of the linkage guide plate 641 is arc-shaped. The overall upward shape of the linkage guide block 642 is elliptical. An adjustment armrest 643 is fixedly installed at the bottom of the linkage guide block 642. The outer surface of the adjustment armrest 643 is fixedly connected with a non-slip rubber sleeve. The linkage guide plate 641 is fixedly connected to the bottom of the movable frame 632. When the sensor housing 5 needs to be installed or removed, it can stably transmit force. The linkage guide block 642 is rotatably connected to the middle of the bottom of the mounting rail 61, and its outer side is fitted and connected to the inner end of the linkage guide plate 641. This design makes the operation more precise and effective. The inner end of the linkage guide plate 641 is arc-shaped and cooperates with the elliptical linkage guide block 642. When the linkage guide block 642 rotates, it can smoothly push the linkage guide plate 641 to move, thereby driving the movable frame 632 to slide, thereby realizing control of the limit block 634. The adjustment armrest 643 at the bottom of the linkage guide block 642 is convenient for the user to operate, and the anti-slip rubber sleeve on the outer surface of the adjustment armrest 643 increases the friction, ensuring that the hand will not slip during operation, improving the safety and stability of the operation, and making the entire adjustment process more convenient and efficient.
[0031] See also Figure 3-Figure 7The cam 72 is fixed to the upper end of the sensor housing 5 near the vehicle body 1, and the mounting shell 72 is fixedly installed on both sides of the bottom of the side plate 71. The interior of the mounting shell 72 is fixedly connected to a torsion spring 73, and a turntable 74 is fixedly installed on the inner side of the torsion spring 73. A take-up shaft 75 is fixedly installed on the inner side of the turntable 74 and the mounting shell 72 is rotatably connected. A wire threading groove 76 is provided in the middle of the take-up shaft 75, and the wire 9 passes through the wire threading groove 76 and is wound on the outer surface of the take-up shaft 75. The locking cam 75 of locking cam 73 is locked, and locking cam 731 is locked, thereby guaranteeing that locking cam 731 is locked.
[0032] The working principle of the present invention is as follows: through the provided card-mounting mechanism 6, the present device can bring into play a great advantage during actual use. The TOF object detection and ranging sensor and the projection sensor inside the sensor housing 5 cooperate with each other to assist in all-round and accurate detection of the rear of the vehicle. Moreover, they work in coordination with the system inside the vehicle body 1 to efficiently realize the function of automatically opening and closing the trunk 2 of the vehicle, bringing great convenience to the user. When the sensor needs to be repaired, the operation is extremely convenient. The user can manually adjust the armrest 643 to drive the linkage guide block 642 to rotate. During the rotation of the linkage guide block 642, its state will change from vertical rotation to horizontal. The linkage guide block 642 is a long and narrow ellipse. When it is in the horizontal state, it can forcefully squeeze and stretch the inner end of the linkage guide plate 641. As the linkage guide plate 641 is stretched, it will further push the movable frame 632 to slide smoothly on the inner side of the mounting rail frame 61. The linkage guide plate 641 drives the movable rail frame to move, thereby pushing the limit block on the limit frame 633. 634 is separated from the card frame 62. At this time, the sensor housing 5 can be easily removed from the box cover 3. Then, the plug on the guide is pulled out from the socket of the wire 9 on the vehicle body 1, and the probe of the sensor housing 5 is pulled out from the inside of the reserved hole 4. This completes the entire disassembly process. If the sensor needs to be reinstalled, the sensor housing 5 can be taken out first, and the wire 9 is connected through the connector and the connector. Then, the sensor housing 5 is pushed between the limit blocks 634. In this process, the guide block 6 5, the guide limit block 634 can be squeezed on the inclined surface to open the limit block 634 and move it outward. When the limit block 634 contacts the card frame 62, the limit spring 631 is reset, and the movable frame 632 is pulled to drive the limit frame 633 to move inward, prompting the limit block 634 to be inserted into the inner side of the card frame 62. At this time, the installation of the entire sensor is successfully completed. It can be seen that the sensor in this device is easy to disassemble and repair, which can further improve the convenience of subsequent use of the entire device and greatly reduce its cost of use.
[0033] The wire-reeling mechanism 7 is provided so that the device exhibits excellent performance during use. During use, the turntable 74 can be twisted to drive the reel 75 to rotate. At this time, the torsion spring 73 is in a compressed state. Then, the wire 9 is passed through the inner side of the threading groove 76 of the reel 75. Then, the connector of the wire 9 and the connector on the vehicle body 1 are plugged into each other. At this time, the reel 75 and the turntable 74 are released, and the torsion spring 73 is reset. The reset of the torsion spring 73 can drive the reel 75 to rotate. The reel 75 rotates to rewind the wire 9. When the wire 9 needs to be extended and rolled up onto the outer surface of the reel 75, it is only necessary to gently pull the wire 9, which will cause the reel 75 and the turntable 74 to rotate in the opposite direction, thereby driving the torsion spring 73 to contract again. Since the torsion spring 73 provides elastic force at all times, it can always rewind the excess wire 9, causing the wire 9 to be in a tight state. In this way, the excess wire 9 will not be laid out in a messy manner, which can greatly improve the stability and neatness of the line as a whole, bring great convenience to users, and make the use of this device more convenient and efficient.
Claims
1. A car trunk based on TOF object detection and ranging sensor, characterized in that: The utility model comprises a vehicle body, a trunk is fixedly installed on the rear side of the vehicle body, a box cover is hinged on the top of the trunk, a reserved hole is opened on the upper end of the rear side of the box cover, a clamping mechanism is fixedly installed on the inner upper end of the box cover, a sensor housing is installed inside the trunk through the clamping mechanism, a take-up mechanism is fixedly installed on the outer end of the sensor housing, a circuit board is fixedly connected to the inner side of the sensor housing, a tof detection distance measuring sensor and a projection sensor are respectively provided on one side of the circuit board, wires are fixedly connected to the upper end of the circuit board at equal intervals, the wires are wound inside the take-up mechanism, and an electromagnetic lock is fixedly connected to the middle of the lower end of the box cover close to the trunk; The clamping mechanism includes a mounting rail and a clamping frame. The mounting rail is fixedly installed on the upper end of the rear side of the box cover. Both ends of the interior of the mounting rail are fixedly installed with clamping components. The clamping frame is fixedly installed on both sides of the sensor housing. The ends of the clamping components are inserted into the interior of the clamping frame. The detection probes of the tof object ranging sensor and the projection sensor in the sensor housing are both arranged on the inner side of the reserved hole. The sensor housing is installed on the upper end of the mounting rail in the box cover through the clamping component. The bottom of the mounting rail is installed with an adjustment component.
2. The trunk based on the TOF object detection and ranging sensor according to claim 1, characterized in that: The overall cross-section of the box cover is L-shaped, and the outer corners of the box cover are all arc-shaped.
3. The trunk based on the TOF object detection and ranging sensor according to claim 1, characterized in that: The clamping assembly includes a limit spring, which is fixedly installed at both ends of the mounting rail frame. The outer end of the limit spring is fixedly installed with a movable frame, and the movable frame is slidably connected to the two ends of the mounting rail frame. The outer end of the movable frame is fixedly installed with a limit frame, and the outer end of the limit frame is fixedly installed with a limit block, and the end of the limit block is inserted into the inner side of the card frame.
4. The trunk based on the TOF object detection and ranging sensor according to claim 3 is characterized in that: The adjustment assembly includes a linkage guide plate and a linkage guide block. The linkage guide plate is fixedly installed on the bottom of the movable frame. The linkage guide block is rotatably connected to the middle of the bottom of the mounting rail frame. The outer side of the linkage guide block is fitly connected to the inner end of the linkage guide plate.
5. The trunk based on the TOF object detection and ranging sensor according to claim 4 is characterized in that: The inner end of the linkage guide plate is in an arc shape as a whole, and the linkage guide block is in an elliptical shape as a whole when viewed from above.
6. The trunk based on the TOF object detection and ranging sensor according to claim 5, characterized in that: An adjusting armrest is fixedly mounted on the bottom of the linkage guide block, and an anti-slip rubber sleeve is fixedly connected to the outer surface of the adjusting armrest.
7. The trunk based on the TOF object detection and ranging sensor according to claim 6, characterized in that: The wire-winding mechanism includes a side plate, which is fixedly mounted on the upper end of the sensor housing close to the vehicle body. Mounting shells are fixedly mounted on both sides of the bottom of the side plate. A torsion spring is fixedly connected to the interior of the mounting shell. A turntable is fixedly mounted on the inner side of the torsion spring. The turntable and the mounting shell are rotatably connected. A winding shaft is fixedly mounted on the inner side of the turntable. A wire threading groove is opened in the middle of the winding shaft. The wire passes through the wire threading groove and is wound on the outer surface of the winding shaft.
8. The trunk based on the TOF object detection and ranging sensor according to claim 6, characterized in that: A guide block is fixedly connected to a side of the clamping frame away from the vehicle body, and the overall cross-sectional shape of the guide block is a right-angled trapezoid.
9. The car trunk based on the TOF object detection and ranging sensor according to claim 8, characterized in that: The side shape of the movable frame and the inner side shape of the mounting rail frame are both set to be cross-shaped, and the linkage guide plate is set to be L-shaped.