Electric fingerprint glove compartment and vehicle with same

The electric operation of the incoming bin is achieved through the fingerprint recognition control locker and drive of the electric fingerprint glove box, which solves the problem of insufficient operation convenience and safety of the existing vehicle-mounted glove box and improves user experience and safety.

CN223148323UActive Publication Date: 2025-07-25NOBO AUTOMOTIVE SYST CO LTD
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Patent Information

Application Number
CN202422229384.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-11
Publication Date
2025-07-25
Estimated Expiration
2034-09-11

AI Technical Summary

Technical Problem

The existing car glove box needs to be opened and closed manually, which has poor operation convenience and low safety, and is easy to stolen valuables.

Method used

An electric fingerprint glove box is designed to control the locker and the driver to realize the electric opening and closing of the incoming bucket through the fingerprint identifier. The incoming bucket has an open and closed position. The locker is linked to the driver to achieve electric control after the fingerprint recognition is successful.

Benefits of technology

Improve user experience and security and privacy performance, prevent non-users from opening up internal strife, and protect the safety of valuables.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an electric fingerprint glove compartment and a vehicle with the same. Belongs to the technical field of vehicles, the electric fingerprint glove compartment comprises a compartment body frame, an inner hopper, a locking device, a driver, a fingerprint identifier and a controller, the inner hopper has an opening position and a closing position, when the inner hopper moves to the opening position, an opening of a storage groove is located outside the compartment body frame, and when the inner hopper moves to the closing position, the opening of the storage groove is located outside the compartment body frame. The opening of the storage groove is sealed by the box body frame, the fingerprint identifier can serve as a switch for opening and closing the inner bucket, when a user needs to open and close the inner bucket, the user can touch the fingerprint identifier, and the fingerprint identifier can achieve electric opening and electric closing of the inner bucket through linkage of the controller, the driver and the locking device after fingerprint identification succeeds. Therefore, intelligent control over the inner hopper is achieved, the use experience of a user is improved, and the safety privacy performance of the electric fingerprint glove compartment can be effectively improved through fingerprint recognition of the fingerprint recognizer.
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Description

Technical Field

[0001] The utility model relates to the technical field of vehicles, and in particular, to an electric fingerprint storage box and a vehicle having the same. Background Art

[0002] Based on the current demand situation in the automotive market, the storage box, as one of the important functional components of the vehicle interior, is becoming more intelligent and private. The operation convenience and safety of the storage box directly affect the user experience.

[0003] In the related art, the on-vehicle storage box usually needs to be manually opened and closed by the user, resulting in poor operation convenience. Moreover, any user can open the storage box, increasing the risk of theft of valuable items inside and reducing the safety factor of the storage box. Summary of the Utility Model

[0004] The utility model aims to at least partly solve one of the above technical problems in the prior art. Therefore, the utility model provides an electric fingerprint storage box, which can improve the safety and privacy performance of the electric fingerprint storage box.

[0005] The utility model also provides a vehicle having the above electric fingerprint storage box.

[0006] According to an embodiment of the utility model, the electric fingerprint storage box includes: a box body frame, an inner bucket, a lock, a driver, a fingerprint identifier and a controller. The box body frame is adapted to be fixedly connected to the vehicle body; the inner bucket has a storage groove, and the inner bucket is movably connected to the box body frame. The inner bucket has an open position and a closed position. When the inner bucket moves to the open position, the opening of the storage groove is located outside the box body frame. When the inner bucket moves to the closed position, the opening of the storage groove is closed by the box body frame; the lock is installed on the box body frame, and the lock has a locked state and an unlocked state. In the locked state, the lock is adapted to be locked and cooperate with the inner bucket in the closed position. In the unlocked state, the lock is separated from the inner bucket; the driver is installed on the box body frame, and the driver is used to drive the inner bucket to move to the open position and / or the closed position; the fingerprint identifier is installed on the outside of the box body frame or the outside of the inner bucket, and the fingerprint identifier is used to identify the fingerprint information of the user; the lock, the driver and the fingerprint identifier are all communicatively connected to the controller.

[0007] According to the electric fingerprint glove box of the embodiment of the utility model, its fingerprint identifier can be used as a switch to open and close the inner compartment. When the user needs to open and close the inner compartment, the user can touch the fingerprint identifier. After successful fingerprint recognition, the fingerprint identifier can realize electric opening and electric closing of the inner compartment through the linkage of the controller, driver and lock, thereby realizing intelligent control of the inner compartment, which is beneficial to improving the user experience. The fingerprint recognition by the fingerprint identifier can effectively improve the safety and privacy performance of the electric fingerprint glove box.

[0008] According to some embodiments of the utility model, the inner bucket has a first locking hole, and the locker includes: a first locking rod and an actuator, wherein the first locking rod is movably connected to the box frame along the axial direction of the first locking hole, and the first locking rod has a first locking pin; the actuator is fixed to the box frame, the actuator is communicatively connected to the controller, and the actuator is used to drive the first locking rod to move along the axial direction of the first locking hole, so that the first locking pin is locked with the first locking hole in the locked state, and the first locking pin is separated from the first locking hole in the unlocked state.

[0009] According to some embodiments of the utility model, the inner bucket also has a second locking hole arranged parallel to or coaxially with the first locking hole, and the locker also includes: a second locking rod and a transmission member, along the axial direction of the second locking hole, the second locking rod is movably connected to the box frame, and the second locking rod has a second locking pin; the transmission member is transmission-connected between the first locking rod and the second locking rod, and the first locking rod drives the second locking rod to move along the axial direction of the second locking hole through the transmission member, so that in the locked state, the second locking pin is locked with the second locking hole, and in the unlocked state, the second locking pin is separated from the second locking hole.

[0010] According to some embodiments of the present utility model, the inner bucket is rotatably connected to the box frame, and in the unlocked state, the inner bucket rotates to the open position under the action of gravity.

[0011] According to some embodiments of the utility model, the driver includes: a drive motor, a winding wheel and a first pull wire, the drive motor is fixed to the box frame, the drive motor is communicatively connected to the controller; the winding wheel is transmission-connected to the drive motor; one end of the first pull wire is connected to the inner bucket, and the other end of the first pull wire is wound around the winding wheel.

[0012] According to some embodiments of the present utility model, the driver further includes a second pulling wire, one end of the second pulling wire is connected to the inner bucket, and the other end of the first pulling wire is wound around the wire winding wheel; wherein, the first pulling wire and the second pulling wire are respectively connected to two ends of the outer side of the storage slot of the inner bucket.

[0013] According to some embodiments of the present utility model, the electric fingerprint storage box further includes: a first limit switch and a trigger. The first limit switch is installed on the box body frame, and the first limit switch is communicatively connected to the controller; the trigger is fixedly arranged on the first pulling wire. When the inner bucket rotates to the closed position, the trigger triggers the first limit switch.

[0014] According to some embodiments of the present utility model, the box body frame is provided with a limit sliding groove, and the inner bucket is provided with a limit pin. The limit pin is slidably arranged in the limit sliding groove. When in the open position, the limit pin abuts against the side wall on one side of the limit sliding groove, and when in the closed position, the limit pin abuts against the side wall on the other side of the limit sliding groove.

[0015] According to some embodiments of the present utility model, the electric fingerprint storage box further includes: a second limit switch and a third limit switch. The second limit switch and the third limit switch are fixed at two ends of the limit sliding groove and are communicatively connected to the controller. When in the open position, the limit pin triggers the second limit switch, and when in the closed position, the limit pin triggers the third limit switch.

[0016] A vehicle according to another embodiment of the present utility model includes the above-mentioned electric fingerprint storage box.

[0017] For a vehicle according to an embodiment of the present utility model, the fingerprint identifier of its electric fingerprint storage box can be used as a switch for opening and closing the inner bucket. When a user needs to open and close the inner bucket, the user can touch the fingerprint identifier. After successful fingerprint recognition, the fingerprint identifier can realize the electric opening and electric closing of the inner bucket through the linkage of the controller, the driver and the locking device, thereby realizing the intelligent control of the inner bucket, which is beneficial to improving the user experience. Through the fingerprint recognition of the fingerprint identifier, the safety and privacy performance of the electric fingerprint storage box can be effectively improved.

[0018] The additional aspects and advantages of the present utility model will be partly given in the following description, partly will become obvious from the following description, or will be understood through the practice of the present utility model. Description of the Drawings

[0019] Figure 1 is a perspective view of the inner bucket of the electric fingerprint storage box in the open position according to an embodiment of the present utility model;

[0020] Figure 2 Is a perspective view of the inner bucket of the electric fingerprint storage box in the closed position according to an embodiment of the present utility model;

[0021] Figure 3 Is an exploded view of the electric fingerprint storage box according to an embodiment of the present utility model;

[0022] Figure 4 Is a perspective view of the inner bucket body according to an embodiment of the present utility model;

[0023] Figure 5 Is a perspective view of the lock according to an embodiment of the present utility model;

[0024] Figure 6 Is a perspective view of the motor drive assembly according to an embodiment of the present utility model;

[0025] Figure 7 Is a perspective view of the cable drive assembly and the first limit switch according to an embodiment of the present utility model;

[0026] Figure 8 Is a schematic diagram of the internal structure of the electric fingerprint storage box according to an embodiment of the present utility model.

[0027] Reference numerals:

[0028] Box body frame 1; Frame body 11; Limit sliding groove 111; Panel 12; Upper skeleton of the panel 13; Rear shell 14; Guide wheel bracket 15;

[0029] Inner bucket 2; Inner bucket body 21; Storage groove 211; First lock hole 212; Second lock hole 213; Limit pin 214; Wiring post 215; Outer plate 22; Inner bucket rotating shaft 23;

[0030] Lock 3; First lock rod 31; First lock pin 311; Actuating member 32; Second lock rod 33; Second lock pin 331; Transmission member 34; Steering seat 341; Steering arm 342; Left lock sleeve 35; Right lock sleeve 36;

[0031] Motor drive assembly 41; Drive motor 411; Motor 4111; Gearbox 4112; Winding wheel 412; Motor bracket 413; Motor bolt 414; Screw 415; Cable drive assembly 42; First cable 421; Second cable 422; Pre-tightening bracket base 423; Z-direction guide hook 424; Y-direction guide hook 425; Guide wheel 426; Trigger 427; First trigger 4271; Second trigger 4272;

[0032] Fingerprint identifier 5; Controller 6; First limit switch 7; Second limit switch 8; Third limit switch 9; Electric fingerprint storage box 10. Detailed implementation manners

[0033] Embodiments of the present utility model will be described in detail below. Examples of the embodiments are shown in the accompanying drawings, where the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to explain the present utility model, and should not be construed as limiting the present utility model.

[0034] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "rear", "left", "right", "inner", "outer", etc. is based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as limiting the present utility model.

[0035] In addition, the terms "first" and "second" are only used for descriptive purposes and should not be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present utility model, the meaning of "a plurality" is at least two, such as two, three, etc., unless otherwise specifically defined.

[0036] In the present utility model, unless otherwise clearly defined and limited, the terms "mounted", "connected", "coupled", "fixed", etc. should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or integrated; it may be a mechanical connection, an electrical connection, or communication with each other; it may be directly connected, or indirectly connected through an intermediate medium, and may be the internal communication of two elements or the interaction relationship between two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.

[0037] Next, in conjunction with Figures 1-8 The electric fingerprint storage box 10 according to an embodiment of the present utility model and a vehicle having the same will be described in detail.

[0038] Referring to Figures 1-3As shown in the figure, the electric fingerprint storage box 10 according to the embodiment of the present utility model includes: a box body frame 1, an inner bucket 2, a lock 3, a driver, a fingerprint identifier 5 and a controller 6. The box body frame 1 is adapted to be fixedly connected to the vehicle body. The inner bucket 2 has a storage groove 211. The inner bucket 2 is movably connected to the box body frame 1. The inner bucket 2 has an open position and a closed position. When the inner bucket 2 moves to the open position, the notch of the storage groove 211 is located outside the box body frame 1. When the inner bucket 2 moves to the closed position, the notch of the storage groove 211 is closed by the box body frame 1. The lock 3 is installed on the box body frame 1. The lock 3 has a locked state and an unlocked state. In the locked state, the lock 3 is adapted to be locked and cooperated with the inner bucket 2 in the closed position. In the unlocked state, the lock 3 is separated from the inner bucket 2. The driver is installed on the box body frame 1. The driver is used to drive the inner bucket 2 to move to the open position and / or the closed position. The fingerprint identifier 5 is installed on the outside of the box body frame 1 or the outside of the inner bucket 2. The fingerprint identifier 5 is used to identify the fingerprint information of the user. The lock 3, the driver and the fingerprint identifier 5 are all communicatively connected to the controller 6.

[0039] It can be understood that the driver is used to drive the inner bucket 2 to move to the open position and / or the closed position. That is to say, the driver is used to drive the inner bucket 2 to move to the open position, or the driver is used to drive the inner bucket 2 to move to the closed position, or the driver is used to drive the inner bucket 2 to move to the open position and the closed position, which can realize the electric opening and / or electric closing of the inner bucket 2, and is beneficial to improving the user's convenience of use.

[0040] Specifically, when the inner bucket 2 is in the closed position and the user needs to open the inner bucket 2, the user can specify a certain finger to touch the fingerprint identifier 5. The fingerprint identifier 5 can compare according to the fingerprint information pre-entered by the user. If the comparison is successful, a comparison successful signal is sent to the controller 6. After receiving the comparison successful signal, the controller 6 can send an unlocking signal to the lock 3 to separate the lock 3 from the inner bucket 2. At the same time, the controller 6 can send a signal to drive the inner bucket 2 to open to the driver. The driver can drive the inner bucket 2 to move to the open position, thereby opening the inner bucket 2, so that the notch of the storage groove 211 is located outside the box body frame 1, facilitating the user to store and retrieve items. If the comparison fails, a comparison failure signal can be sent to the controller 6. After receiving the comparison failure signal, the controller 6 can send a locking signal to the lock 3. The lock 3 maintains the locked state, preventing the inner bucket 2 from moving to the open position and avoiding the important documents stored in the storage groove 211 from being used by non-users, which is beneficial to improving the security and privacy performance of the electric fingerprint storage box 10 and better protecting the privacy of the user.

[0041] When the inner bucket 2 is in the open position and the user needs to close the inner bucket 2, a specific finger can be designated to touch the fingerprint recognizer 5. The fingerprint recognizer 5 can compare according to the pre-entered fingerprint information. If the comparison is successful, it sends a comparison success signal to the controller 6. After receiving the comparison success signal, the controller 6 can send a signal to the driver to drive the inner bucket 2 to close. The driver can drive the inner bucket 2 to move to the closed position, thereby closing the inner bucket 2, so that the notch of the storage slot 211 is closed by the box body frame 1, preventing the items stored in the storage slot 211 from falling. At the same time, the controller 6 sends a locking signal to the lock 3 to make the lock 3 cooperate with the inner bucket 2 in a locking manner, realizing the limitation of the inner bucket 2 and preventing the inner bucket 2 from being accidentally opened. In addition, the user can also directly close the inner bucket 2 by manually driving the inner bucket 2 to move to the closed position.

[0042] Referring to Figure 3 As shown, the box body frame 1 may include a frame body 11, a panel 12, an upper panel skeleton 13 and a rear shell 14. The panel 12 is connected to the front side of the frame body 11. The upper panel skeleton 13 can be connected to both the frame body 11 and the panel 12 above the frame body 11. The rear shell 14 covers the outside of the frame body 11 and is connected to the rear side of the panel 12. The inner bucket 2 may include an inner bucket body 21 and an outer plate 22. The outer plate 22 can be connected to the front side of the inner bucket body 21 to improve the aesthetics of the inner bucket 2, thereby helping to improve the product competitiveness of the electric fingerprint storage box 10.

[0043] For the electric fingerprint storage box 10 according to the embodiment of the present invention, its fingerprint recognizer 5 can be used as a switch to open and close the inner bucket 2. When the user needs to open and close the inner bucket 2, the user can touch the fingerprint recognizer 5. After successful fingerprint recognition, the fingerprint recognizer 5 can realize the electric opening and electric closing of the inner bucket 2 through the linkage of the controller 6, the driver and the lock 3, thereby realizing the intelligent control of the inner bucket 2, which is beneficial to improving the user experience. Through the fingerprint recognition of the fingerprint recognizer 5, the safety and privacy performance of the electric fingerprint storage box 10 can be effectively improved.

[0044] In some embodiments of the present invention, referring to Figure 4 and Figure 5As shown, the inner bucket 2 has a first locking hole 212, and the locker 3 includes: a first locking rod 31 and an actuating member 32. The first locking rod 31 is movably connected to the box frame 1 along the axial direction of the first locking hole 212. The first locking rod 31 has a first locking pin 311. The actuating member 32 is fixed to the box frame 1. The actuating member 32 is communicatively connected with the controller 6. The actuating member 32 is used to drive the first locking rod 31 to move along the axial direction of the first locking hole 212, so that the first locking pin 311 is locked and matched with the first locking hole 212 in the locked state, and the first locking pin 311 is separated from the first locking hole 212 in the unlocked state. The controller 6 can realize the electric unlocking and electric locking of the locker 3 through the actuating member 32, wherein the actuating member 32 can be a magnetic lock, and the axial direction of the first locking hole 212 can be Figure 4 Middle left and right direction.

[0045] It can be understood that when the inner bucket 2 is in the closed position, the controller 6 can send a locking signal to the actuator 32 of the locker 3, the actuator 32 can drive the first locking rod 31 to move along the axial direction of the first locking hole 212 toward the first locking hole 212, and the first locking pin 311 can be inserted into the first locking hole 212 to achieve locking cooperation, thereby realizing the electric locking of the locker 3. At this time, the locker 3 and the inner bucket 2 achieve locking cooperation through the first locking hole 212 and the first locking pin 311 to prevent the inner bucket 2 from opening accidentally.

[0046] When it is necessary to open the inner bucket 2, the controller 6 can send an unlocking signal to the actuator 32 of the lock 3, and the actuator 32 can drive the first locking rod 31 to move along the axial direction of the first lock hole 212 in the direction away from the first lock hole 212, so that the first locking pin 311 is separated from the first lock hole 212, thereby realizing electric unlocking of the lock 3. At this time, the lock 3 is separated from the inner bucket 2 to facilitate the opening of the inner bucket 2.

[0047] In some embodiments of the present invention, referring to Figure 4 and Figure 5 As shown, the inner bucket 2 also has a second locking hole 213 arranged parallel to or coaxially with the first locking hole 212, and the locker 3 also includes: a second locking rod 33 and a transmission member 34. Along the axial direction of the second locking hole 213, the second locking rod 33 is movably connected to the box frame 1, and the second locking rod 33 has a second locking pin 331. The transmission member 34 is transmission-connected between the first locking rod 31 and the second locking rod 33. The first locking rod 31 drives the second locking rod 33 to move along the axial direction of the second locking hole 213 through the transmission member 34, so that in the locked state, the second locking pin 331 is locked and matched with the second locking hole 213, and in the unlocked state, the second locking pin 331 is separated from the second locking hole 213.

[0048] It can be understood that when it is necessary to open the inner hopper 2, the controller 6 can send an unlocking signal to the actuator 32 of the lock 3. The actuator 32 can drive the first lock rod 31 to move away from the first lock hole 212 along the axial direction of the first lock hole 212 through magnetic attraction, so that the first lock pin 311 disengages from the first lock hole 212. At the same time, the first lock rod 31 can drive the second lock rod 33 to move away from the second lock hole 213 along the axial direction of the second lock hole 213 through the transmission member 34, so that the second lock pin 331 disengages from the second lock hole 213, realizing the separation of the lock 3 from the inner hopper 2 and facilitating the opening of the inner hopper 2.

[0049] When the inner hopper 2 is in the closed position, the controller 6 can send a locking signal to the actuator 32 of the lock 3. The actuator 32 can drive the first lock rod 31 to move closer to the first lock hole 212 along the axial direction of the first lock hole 212, so that the first lock pin 311 is inserted into the first lock hole 212 to achieve locking fit. At the same time, the first lock rod 31 can drive the second lock rod 33 to move closer to the second lock hole 213 along the axial direction of the second lock hole 213 through the transmission member 34, so that the second lock pin 331 is inserted into the second lock hole 213 to achieve locking fit. The lock 3 and the inner hopper 2 can form two sets of locking fits, which is beneficial to reliably keeping the inner hopper 2 in the closed position.

[0050] Among them, referring to Figure 5 As shown, the transmission member 34 can include a steering seat 341, a steering arm 342 and a rotor spring. The steering seat 341 can be fixedly connected to the box frame 1. The steering arm 342 can be rotatably installed on the steering seat 341. The rotor spring is installed inside the steering arm 342 and is used to provide a restoring force for the steering arm 342. The opposite ends of the steering arm 342 are respectively connected to the first lock rod 31 and the second lock rod 33. The lock 3 can also include a left lock sleeve 35 and a right lock sleeve 36 that are fixedly connected to the box frame 1. The left lock sleeve 35 is adapted to be sleeved on the first lock rod 31. The left lock sleeve 35 can play a role in guiding and limiting the first lock rod 31, enabling the first lock rod 31 to move along the axial direction of the first lock hole 212 and preventing the first lock rod 31 from tilting. The right lock sleeve 36 is adapted to be sleeved on the second lock rod 33. The right lock sleeve 36 can play a role in guiding and limiting the second lock rod 33, enabling the second lock rod 33 to move along the axial direction of the second lock hole 213 and preventing the second lock rod 33 from tilting.

[0051] In some embodiments of the present invention, the inner hopper 2 is rotatably connected to the box frame 1, and in the unlocked state, the inner hopper 2 rotates to the open position under the action of gravity, so that the inner hopper 2 can be automatically opened without the user manually driving the inner hopper 2 to rotate to open it, which is beneficial to improving the user experience and enhancing the product competitiveness of the electric fingerprint sundry box 10.

[0052] Referring to Figure 3As shown, a hopper rotating shaft 23 may be connected to the bottom of the inner hopper body 21. The hopper rotating shaft 23 is adapted to be rotatably connected to the box frame 1, so that the inner hopper 2 can be rotatably connected to the box frame 1. The inner hopper 2 is inclined in the height direction of the vehicle. When the inner hopper 2 is in the closed position, the lock 3 is in the locked state and is locked and cooperated with the inner hopper 2. The lock 3 can pull the inner hopper 2 to overcome the gravity of the inner hopper 2 itself, so that the notch of the storage slot 211 is closed by the box frame 1, preventing the items stored in the storage slot 211 from falling. When the lock 3 changes from the locked state to the unlocked state, the lock 3 is separated from the inner hopper 2, and the inner hopper 2 rotates downward under the action of its own gravity and rotates to the open position, so that the notch of the storage slot 211 is located outside the box frame 1, facilitating the user to store and retrieve items in the storage slot 211.

[0053] In an embodiment not shown in other figures of the present invention, the inner hopper 2 is slidably connected to the box frame 1. The driver may be a pneumatic telescopic rod. The controller 6 can control the pneumatic telescopic rod to extend to push the inner hopper 2 to move away from the box frame 1, thereby opening the inner hopper 2. The controller 6 can control the pneumatic telescopic rod to retract to pull the inner hopper 2 to move closer to the box frame 1, thereby closing the inner hopper 2.

[0054] In some embodiments of the present invention, referring to Figure 6 and Figure 7 As shown, the driver includes: a driving motor 411, a winding wheel 412 and a first pulling wire 421. The driving motor 411 is fixed to the box frame 1. The driving motor 411 is communicatively connected to the controller 6. The winding wheel 412 is drivingly connected to the driving motor 411. One end of the first pulling wire 421 is connected to the inner hopper 2, and the other end of the first pulling wire 421 is wound around the winding wheel 412. The rotation of the winding wheel 412 can release and tighten the first pulling wire 421, realizing the opening and closing of the inner hopper 2.

[0055] It can be understood that when the inner hopper 2 needs to be opened and the lock 3 is unlocked, the pulling force of the first pulling wire 421 on the inner hopper 2 provides damping for the rotation of the inner hopper 2 to the open position, forming a damping effect, avoiding the inner hopper 2 rotating rapidly to the open position only under its own gravity. The driving motor 411 can drive the winding wheel 412 to rotate slowly to release the first pulling wire 421, and the inner hopper 2 can rotate slowly to the open position, avoiding a large impact force caused by the relatively fast rotation speed of the inner hopper 2, thus being beneficial to reducing the risk of abnormal vibration and abnormal noise.

[0056] When the inner bucket 2 is in the open position and the user needs to close the inner bucket 2, a specific finger can be designated to touch the fingerprint recognition device 5. The fingerprint recognition device 5 can compare according to the pre-recorded fingerprint information of the user. If the comparison is successful, a comparison successful signal is sent to the controller 6. After receiving the comparison successful signal, the controller 6 can send a signal to drive the driving motor 411 of the driver to close the inner bucket 2. After receiving the signal, the driving motor 411 can drive the winding wheel 412 to rotate and tighten the first pulling wire 421, and the first pulling wire 421 can pull the inner bucket 2 to move to the closed position. Among them, when the driving motor 411 drives the winding wheel 412 to rotate forward, the first pulling wire 421 can be released, and when the driving motor 411 drives the winding wheel 412 to rotate reversely, the first pulling wire 421 can be tightened.

[0057] Referring to Figure 6 As shown, the driving motor 411 includes a connected motor 4111 and a gearbox 4112. With the controller 6 as the core for input and output signal transmission, the driver further includes two motor brackets 413. The driving motor 411 can be installed on the two motor brackets 413 through motor bolts 414. The two motor brackets 413 can be fixed to the box frame 1 through screws 415, and the mating surface of the box frame 1 and the driving motor 411 is contoured to ensure the gap between the two, which is beneficial to ensuring that the position of the driving motor 411 is more stable. After the controller 6 sends a current signal to the driving motor 411, the driving motor 411 and the gearbox 4112 rotate, providing power support for the electric opening and closing of the inner bucket 2.

[0058] In some embodiments of the present invention, referring to Figure 7 As shown, the driver further includes a second pulling wire 422. One end of the second pulling wire 422 is connected to the inner bucket 2, and the other end of the first pulling wire 421 is wound around the winding wheel 412. Among them, the first pulling wire 421 and the second pulling wire 422 are respectively connected to both ends of the outer side of the storage groove 211 of the inner bucket 2, which can prevent the first pulling wire 421 and the second pulling wire 422 from occupying storage space in the storage groove 211.

[0059] It can be understood that during the opening and closing process of the inner bucket 2, the first pulling wire 421 and the second pulling wire 422 can simultaneously provide pulling force for the inner bucket 2 at both ends of the inner bucket 2, which can prevent uneven stress at both ends of the inner bucket 2 from causing tilting, reduce the risk of jamming during the rotation of the inner bucket 2, and is beneficial to improving the stability and reliability of the inner bucket 2 during opening and closing.

[0060] Referring to Figure 1 、 Figure 3 and Figure 7As shown, both ends of the outer side of the storage slot 211 of the inner bucket 2 are provided with terminal posts 215. The two terminal posts 215 are respectively connected to the ends of the first pull wire 421 and the second pull wire 422 that are far away from the wire winding wheel 412. The driver may further include a pre-tightening bracket base 423, two Z-direction guiding hooks 424, two Y-direction guiding hooks 425 and four guiding wheels 426. Among them, the two guiding wheels 426 located below can be fixedly connected to the box body frame 1 through the pre-tightening bracket base 423, and the other two guiding wheels 426 can be snap-connected to the guiding wheel bracket 15 on the box body frame 1. The two Z-direction guiding hooks 424 and the two Y-direction guiding hooks 425 are both fixedly connected to the box body frame 1. The Z-direction can be Figure 1 and Figure 7 the up and down direction in Figure 1 and Figure 7 the front and back direction in

[0061] In some embodiments of the present invention, referring to Figure 7 as shown, the electric fingerprint storage box 10 further includes: a first limit switch 7 and a trigger 427. The first limit switch 7 is installed on the box body frame 1, and the first limit switch 7 is communicatively connected to the controller 6. The trigger 427 is fixedly arranged on the first pull wire 421. When the inner bucket 2 rotates to the closed position, the trigger 427 triggers the first limit switch 7. The first limit switch 7 can send a signal that the inner bucket 2 is successfully closed to the controller 6. After receiving the signal, the controller 6 can send a signal to the drive motor 411 of the driver to stop driving the wire winding wheel 412 to rotate, so as to avoid the wire winding wheel 412 continuing to rotate and tightening the first pull wire 421 and the second pull wire 422, prevent the first pull wire 421 and the second pull wire 422 from being overstressed, and reduce the risk of the first pull wire 421 and the second pull wire 422 being broken.

[0062] Referring to Figure 7 as shown, two triggers 427 are arranged at intervals on the first pull wire 421. The two triggers 427 are respectively the first trigger 4271 and the second trigger 4272. When the inner bucket 2 rotates to the closed position, the first trigger 4271 triggers the first limit switch 7. The first limit switch 7 can send a signal that the inner bucket 2 is successfully closed to the controller 6. After receiving the signal, the controller 6 can send a signal to the drive motor 411 of the driver to stop driving the wire winding wheel 412 to rotate, avoid the wire winding wheel 412 continuing to rotate and tightening the first pull wire 421 and the second pull wire 422, prevent the first pull wire 421 and the second pull wire 422 from being overstressed, and reduce the risk of the first pull wire 421 and the second pull wire 422 being broken.

[0063] When the inner hopper 2 rotates to the open position, the second trigger 4272 triggers the first limit switch 7. The first limit switch 7 can send a signal indicating the successful opening of the inner hopper 2 to the controller 6. After receiving the signal, the controller 6 can send a signal to the drive motor 411 of the driver to stop driving the wire winding wheel 412 from rotating, avoiding excessive release of the first pull wire 421 and the second pull wire 422, and preventing the need for a long time to tighten the first pull wire 421 and the second pull wire 422 when closing the inner hopper 2.

[0064] In some embodiments of the present utility model, referring to Figure 8 as shown, the box frame 1 is provided with a limit sliding groove 111, and the inner hopper 2 is provided with a limit pin 214. The limit pin 214 is slidably disposed through the limit sliding groove 111. When in the open position, the limit pin 214 abuts against the side wall of one side of the limit sliding groove 111. When in the closed position, the limit pin 214 abuts against the side wall of the other side of the limit sliding groove 111. By the side wall of the limit sliding groove 111 abutting against the limit pin 214, the inner hopper 2 can be limited when it is in the open position and the closed position, avoiding further rotation of the inner hopper 2.

[0065] It can be understood that, referring to Figure 8 as shown, the limit sliding groove 111 can be an arc-shaped groove. When the inner hopper 2 rotates from the closed position to the open position, the limit pin 214 abuts against the front side wall of the limit sliding groove 111 to prevent the inner hopper 2 from further flipping downwards, avoiding the opening of the storage groove 211 facing downwards and preventing the items stored in the storage groove 211 from falling. When the inner hopper 2 rotates from the open position to the closed position, the limit pin 214 abuts against the rear side wall of the limit sliding groove 111 to prevent the inner hopper 2 from further rotating, which is beneficial to reducing the risk of the inner hopper 2 hitting the box frame 1.

[0066] In some embodiments of the present utility model, referring to Figure 8 as shown, the electric fingerprint sundries box 10 further includes: a second limit switch 8 and a third limit switch 9. The second limit switch 8 and the third limit switch 9 are fixed at both ends of the limit sliding groove 111 and are communicatively connected to the controller 6. When in the open position, the limit pin 214 triggers the second limit switch 8. When in the closed position, the limit pin 214 triggers the third limit switch 9.

[0067] Referring to Figure 8As shown, the second limit switch 8 can be fixed to the front end of the limit chute 111. When the inner hopper 2 rotates to the open position, the limit pin 214 can abut against the front side wall of the limit chute 111 and trigger the second limit switch 8. The second limit switch 8 can send a signal indicating the successful closing of the inner hopper 2 to the controller 6. After receiving the signal, the controller 6 can send a signal to the drive motor 411 of the driver to stop driving the winding wheel 412 from rotating, avoiding the continuous rotation of the winding wheel 412 to tighten the second pull wire 422 and the second pull wire 422, preventing the second pull wire 422 and the second pull wire 422 from being overstressed, and reducing the risk of the second pull wire 422 and the second pull wire 422 being broken.

[0068] The third limit switch 9 can be fixed to the rear end of the limit chute 111. When the inner hopper 2 rotates to the closed position, the limit pin 214 can abut against the rear side wall of the limit chute 111 and trigger the third limit switch 9. The third limit switch 9 can send a signal indicating the successful opening of the inner hopper 2 to the controller 6. After receiving the signal, the controller 6 can send a signal to the drive motor 411 of the driver to stop driving the winding wheel 412 from rotating, avoiding excessive release of the third pull wire and the second pull wire 422, and preventing the need for a long time to tighten the third pull wire and the second pull wire 422 when closing the inner hopper 2.

[0069] It can be understood that when the inner hopper 2 rotates to the open position, the second limit switch 8 and the first limit switch 7 can be triggered simultaneously. The second limit switch 8 and the first limit switch 7 can send signals indicating the successful opening of the inner hopper 2 to the controller 6 simultaneously, which is beneficial for the controller 6 to reliably control the drive motor 411 to stop operating. When the inner hopper 2 rotates to the closed position, the third limit switch 9 and the first limit switch 7 can be triggered simultaneously. The third limit switch 9 and the first limit switch 7 can send signals indicating the successful closing of the inner hopper 2 to the controller 6 simultaneously, which is beneficial for the controller 6 to reliably control the drive motor 411 to stop operating.

[0070] In some embodiments of the present invention, referring to Figure 6 and Figure 7 As shown, the first pull wire 421, the second pull wire 422, the pre-tightening bracket base 423, two Z-direction guiding hooks 424, two Y-direction guiding hooks 425, four guiding wheels 426 and the trigger 427 can jointly form a pull wire drive assembly 42. The pull wire drive assembly 42 is the core drive device of the electric fingerprint sundry box 10. The drive motor 411, the winding wheel 412, two motor brackets 413, motor bolts 414 and screws 415 can form a motor drive assembly 41. The pull wire drive assembly 42 and the motor drive assembly 41 can jointly form a driver.

[0071] In some embodiments of the present utility model, when the user opens the inner bucket 2, the user can specify a certain finger to touch the unlocking area of the fingerprint identifier 5. The fingerprint identifier 5 can send the fingerprint information to the controller 6. When the controller 6 receives the correct fingerprint information, on the one hand, it transmits a signal to the actuator 32 of the locking device 3. The actuator 32 rotates synchronously with the driving motor 411. The actuator 32 drives the first locking rod 31 to move rightward by magnetic attraction. The first locking rod 31 drives the second locking rod 33 to move leftward through the transmission member 34. At this time, the first locking rod 31 disengages from the first locking hole 212 of the inner bucket 2, and the second locking rod 33 disengages from the second locking hole 213 of the inner bucket 2. On the other hand, it transmits a signal to the driving motor 411 of the driver. The driving motor 411 drives the winding wheel 412 to rotate to release the first pull wire 421 and the second pull wire 422. The first pull wire 421 is fixed with a first trigger 4271. When the inner bucket 2 is opened to the maximum position, the first trigger 4271 touches the first limit switch 7 installed on the box body frame 1. The signal of the first limit switch 7 changes from 0 to 1. At the same time, the limit pin 214 of the inner bucket 2 triggers the second limit switch 8, and the limit switch signal changes from 0 to 1. After the driving motor 411 receives all the locking signals, it stops operating, completing the opening action of the inner bucket 2.

[0072] When the user closes the inner bucket 2, the user can specify a certain finger to touch the unlocking area of the fingerprint identifier 5. The fingerprint identifier 5 can send the fingerprint information to the controller 6. When the controller 6 receives the correct fingerprint information, it transmits a signal to the driving motor 411 of the driver. The driving motor 411 drives the winding wheel 412 to rotate to tighten the first pull wire 421 and the second pull wire 422. At this time, the second limit switch 8 receives a signal that changes from 1 to 0. The first pull wire 421 and the second pull wire 422 pull the inner bucket 2 to rotate, and the opening angle of the inner bucket 2 gradually decreases. When the angle is -3 degrees, at this time, the inner bucket 2 and the box body frame 1 are in an interference fit. The second trigger 4272 touches the first limit switch 7 installed on the box body frame 1. The signal of the first limit switch 7 changes from 0 to 1. At the same time, the limit pin 214 of the inner bucket 2 triggers the third limit switch 9, and the signal of the third limit switch 9 changes from 0 to 1. After the driving motor 411 receives all the locking signals, it stops operating, completing the closing action of the inner bucket 2.

[0073] The electric fingerprint sundry box 10 according to the embodiment of the present utility model can realize the electric flipping opening and closing of the inner bucket 2, enhancing the technological sense of the vehicle. Driven by the driver with a pull wire structure, it can improve the synchronization performance while greatly reducing the cost. One end of the locking device 3 is provided with a magnetic locking device, which is beneficial to improving the sensitivity during the movement process. The opening and closing methods of the inner bucket 2 are relatively novel, which can provide a more comfortable operation experience for users and can reliably protect the privacy of users.

[0074] A vehicle according to another embodiment of the present utility model includes the above-mentioned electric fingerprint sundry box 10.

[0075] For a vehicle according to an embodiment of the present utility model, the fingerprint identifier 5 of the electric fingerprint storage box 10 can serve as a switch for opening and closing the inner bin 2. When a user needs to open and close the inner bin 2, the user can touch the fingerprint identifier 5. After successful fingerprint recognition, the fingerprint identifier 5 can achieve the electric opening and electric closing of the inner bin 2 through the linkage of the controller 6, the driver, and the lock 3, thereby realizing the intelligent control of the inner bin 2, which is beneficial to improving the user experience. Through the fingerprint recognition of the fingerprint identifier 5, the safety and privacy performance of the electric fingerprint storage box 10 can be effectively improved.

[0076] In the description of this specification, the description with reference to terms such as "one embodiment", "some embodiments", "example", "specific example", or "some examples" means that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present utility model. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. In addition, those skilled in the art can combine and combine the different embodiments or examples described in this specification.

[0077] Although the embodiments of the present utility model have been shown and described above, it can be understood that the above embodiments are exemplary and should not be construed as limiting the present utility model. Those of ordinary skill in the art can make changes, modifications, substitutions, and variations to the above embodiments within the scope of the present utility model.

Claims

1. An electric fingerprint storage box, characterized in that, Comprising: A box body frame (1), which is adapted to be fixedly connected to a vehicle body; An inner hopper (2), which has a storage slot (211), the inner hopper (2) is movably connected to the box body frame (1), the inner hopper (2) has an open position and a closed position, when the inner hopper (2) moves to the open position, the notch of the storage slot (211) is located outside the box body frame (1), and when the inner hopper (2) moves to the closed position, the notch of the storage slot (211) is closed by the box body frame (1); A lock (3), which is installed on the box body frame (1), the lock (3) has a locked state and an unlocked state, in the locked state, the lock (3) is adapted to be locked and cooperated with the inner hopper (2) in the closed position, and in the unlocked state, the lock (3) is separated from the inner hopper (2); A driver, which is installed on the box body frame (1), and the driver is used to drive the inner hopper (2) to move to the open position and / or the closed position; A fingerprint identifier (5), which is installed on the outer side of the box body frame (1) or the outer side of the inner hopper (2), and the fingerprint identifier (5) is used to identify the fingerprint information of a user; A controller (6), and the lock (3), the driver and the fingerprint identifier (5) are all communicatively connected to the controller (6).

2. The electric fingerprint storage box according to claim 1, characterized in that, The inner hopper (2) has a first lock hole (212), and the lock (3) includes: A first lock rod (31), along the axial direction of the first lock hole (212), the first lock rod (31) is movably connected to the box body frame (1), and the first lock rod (31) has a first lock pin (311); An actuator (32), which is fixed to the box body frame (1), the actuator (32) is communicatively connected to the controller (6), and the actuator (32) is used to drive the first lock rod (31) to move along the axial direction of the first lock hole (212), so that in the locked state, the first lock pin (311) is locked and cooperated with the first lock hole (212), and in the unlocked state, the first lock pin (311) is separated from the first lock hole (212).

3. The electric fingerprint storage box according to claim 2, characterized in that, The inner hopper (2) further has a second lock hole (213) arranged parallel or coaxially with the first lock hole (212), and the lock (3) further includes: A second lock rod (33), along the axial direction of the second lock hole (213), the second lock rod (33) is movably connected to the box body frame (1), and the second lock rod (33) has a second lock pin (331); A transmission member (34) is drivingly connected between the first locking rod (31) and the second locking rod (33). The first locking rod (31) drives the second locking rod (33) to move along the axial direction of the second locking hole (213) through the transmission member (34), so that when in the locked state, the second locking pin (331) is in locking cooperation with the second locking hole (213), and when in the unlocked state, the second locking pin (331) is separated from the second locking hole (213).

4. The electric fingerprint storage box according to any one of claims 1-3, characterized in that, The inner hopper (2) is rotatably connected to the box body frame (1), and when in the unlocked state, the inner hopper (2) rotates to the open position under the action of gravity.

5. The electric fingerprint storage box according to claim 4, wherein, The driver includes: A driving motor (411) fixed to the box body frame (1) and communicatively connected to the controller (6); A wire winding wheel (412) drivingly connected to the driving motor (411); A first wire rope (421) with one end connected to the inner hopper (2) and the other end wound around the wire winding wheel (412).

6. The electric fingerprint storage box according to claim 5, characterized in that, The driver further includes a second wire rope (422) with one end connected to the inner hopper (2) and the other end wound around the wire winding wheel (412); wherein the first wire rope (421) and the second wire rope (422) are respectively connected to two ends outside the storage groove (211) of the inner hopper (2).

7. The electric fingerprint storage box according to claim 5, characterized in that, The electric fingerprint storage box further includes: A first limit switch (7) installed on the box body frame (1) and communicatively connected to the controller (6); A trigger (427) fixed to the first wire rope (421), and when the inner hopper (2) rotates to the closed position, the trigger (427) triggers the first limit switch (7).

8. The electric fingerprint storage box according to claim 4, wherein The box body frame (1) is provided with a limit sliding groove (111), and the inner hopper (2) is provided with a limit pin (214) slidably passing through the limit sliding groove (111). When in the open position, the limit pin (214) abuts against the side wall on one side of the limit sliding groove (111), and when in the closed position, the limit pin (214) abuts against the side wall on the other side of the limit sliding groove (111).

9. The electric fingerprint storage box according to claim 8, characterized in that, The electric fingerprint storage box further includes a second limit switch (8) and a third limit switch (9) fixed at both ends of the limit sliding groove (111) and communicatively connected to the controller (6). When in the open position, the limit pin (214) triggers the second limit switch (8), and when in the closed position, the limit pin (214) triggers the third limit switch (9).

10. A vehicle, characterized in that, Including the electric fingerprint storage box according to any one of claims 1-9.