Tracker, charging base and tracker assembly
The contact charging method of the tracker charging terminal and the charging base charging terminal, combined with magnetic suction, solves the poor contact problem caused by plug-in and unplugged charging, and improves the charging reliability and service life of the tracker.
Patent Information
- Application Number
- CN202422404419.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-29
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-09-29
AI Technical Summary
The plug-and-release charging method of the existing tracker causes loose plug-and-release holes, poor contact, and shorten service life.
The contact charging method of the tracker charging terminal and the charging base charging terminal are adopted, combined with magnetic suction matching, simplifies the charging process and improves charging reliability.
Reduces charging difficulty, reduces the risk of poor contact, and extends the service life of the tracker.
Smart Images

Figure CN223168070U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of trackers, in particular to a tracker, a charging base and a tracker assembly having the tracker and the charging base. Background Art
[0002] In the related art, the tracker can be charged by plugging in a wire. However, the way of plugging and unplugging is rather troublesome. Moreover, after repeated plugging and unplugging, the plugging holes of the tracker will become loose, resulting in poor contact between the charging wire and the plugging holes, making it difficult for the tracker to be charged, and further shortening the service life of the tracker. Summary of the Utility Model
[0003] The utility model aims to at least solve one of the technical problems existing in the prior art. To this end, an object of the utility model is to provide a tracker, which realizes the effect of repeated use of the tracker, improves the charging reliability of the tracker, and further improves the service life of the tracker.
[0004] The utility model further provides a charging base.
[0005] The utility model further provides a tracker assembly.
[0006] The tracker according to an embodiment of the utility model includes: a tracker main body having a first circuit board; a tracker charging terminal fixedly provided on the tracker main body and connected to the first circuit board, and the tracker charging terminal is used for abutting against a charging base charging terminal of the charging base.
[0007] The tracker according to an embodiment of the utility model, by arranging the tracker charging terminal to be connected to the first circuit board and abutting against the charging base charging terminal of the charging base, can enable the charging base to charge the first circuit board, thereby realizing the effect of repeated use of the tracker. Compared with charging the tracker by the wire plugging method, charging by the contact of the tracker charging terminal and the charging base charging terminal is simple and convenient to use, which is beneficial to reducing the charging difficulty of the tracker, and can also reduce the risk of poor contact at the charging place of the tracker after being used for a period of time, improve the charging reliability of the tracker, and further improve the service life of the tracker.
[0008] In some embodiments of the utility model, the tracker charging terminal includes: a first terminal and two second terminals, the first terminal and the two second terminals are spaced apart to form a column of terminals, and the first terminal is located between the two second terminals.
[0009] In some embodiments of the utility model, the tracker further includes: a first magnetic member fixedly provided on the tracker main body, and the first magnetic member is used for magnetic cooperation with the charging base when the tracker is charged.
[0010] In some embodiments of the present utility model, the first magnetic member and the tracker charging terminal are disposed at the same end of the tracker body.
[0011] In some embodiments of the present utility model, the tracker body is formed with a mounting opening, and the first magnetic member is disposed in the mounting opening.
[0012] The charging base according to an embodiment of the present utility model includes: a housing, the housing is formed with a plurality of insertion holes for inserting the tracker; a second circuit board, the second circuit board is disposed in the housing, the second circuit board has a plurality of charging base charging terminals, the plurality of charging base charging terminals respectively correspond to the plurality of insertion holes, and the charging base charging terminals are used for abutting against the tracker charging terminals of the tracker.
[0013] In some embodiments of the present utility model, the charging base charging terminals include: a third terminal and two fourth terminals, the third terminal and the two fourth terminals are spaced apart to form a row of terminal rows, and the third terminal is located between the two fourth terminals.
[0014] In some embodiments of the present utility model, the charging base further includes: a second magnetic member, the second magnetic member is located in the housing, and when the tracker is inserted into the corresponding insertion hole for charging, the second magnetic member is used for magnetic attraction cooperation with the tracker.
[0015] In some embodiments of the present utility model, the housing has an insertion wall opposite to and spaced apart from the second circuit board, the insertion wall is formed with an insertion hole, the second magnetic member is located between the insertion wall and the second circuit board, and the second magnetic member is formed with an avoidance hole, and the avoidance hole corresponds to the insertion hole and the charging base charging terminal.
[0016] In some embodiments of the present utility model, there are a plurality of avoidance holes, and the plurality of avoidance holes, the plurality of insertion holes and the plurality of charging base charging terminals correspond one by one.
[0017] In some embodiments of the present utility model, the second magnetic member includes: a magnetic member main body and a magnetic attraction portion, the magnetic member main body is formed with an avoidance hole, and the magnetic attraction portion is disposed on the surface of the magnetic member main body facing the insertion wall, and the magnetic attraction portion is used for magnetic attraction cooperation with the tracker.
[0018] In some embodiments of the present utility model, the magnetic attraction portion is strip-shaped, and the magnetic attraction portion extends along the arrangement direction of the plurality of insertion holes.
[0019] The tracker assembly according to an embodiment of the present utility model includes: a tracker, the tracker is the tracker of the above embodiment; a charging base, the charging base is the charging base of the above embodiment, and the tracker is adapted to be inserted into the insertion hole to charge the tracker.
[0020] Additional aspects and advantages of the present utility model will be given in part in the following description, become apparent in part from the following description, or be understood through the practice of the present utility model. Description of the Drawings
[0021] The above and / or additional aspects and advantages of the present utility model will become apparent and be readily understood from the following description of embodiments in conjunction with the accompanying drawings, wherein:
[0022] Figure 1 is a front view of a tracker according to an embodiment of the present utility model;
[0023] Figure 2 is a bottom view of a tracker according to an embodiment of the present utility model;
[0024] Figure 3 is an exploded view of a tracker according to an embodiment of the present utility model;
[0025] Figure 4 is a top view of a charging base according to an embodiment of the present utility model;
[0026] Figure 5 is an exploded view of a charging base according to an embodiment of the present utility model.
[0027] Reference numerals:
[0028] Tracker 100;
[0029] Tracker main body 1;
[0030] First circuit board 11; First light-emitting member 111;
[0031] Tracker charging terminal 12; First terminal 121; Second terminal 122;
[0032] Mounting opening 13; Front INLAY 14; Middle frame 15; Light-transmitting hole 151; Third magnetic attraction member 16;
[0033] Light guide column 17; Adhesive 18; Back INLAY 19;
[0034] First magnetic attraction member 2;
[0035] Charging base 200;
[0036] Outer shell 4;
[0037] Insertion hole 41; Insertion wall 42;
[0038] Upper shell 43; Charging port 431;
[0039] Lower shell 44; Anti-slip foot pad 441;
[0040] Second circuit board 5;
[0041] Charging base charging terminal 51; Third terminal 511; Fourth terminal 512;
[0042] Second light-emitting member 52; Charging hole 53;
[0043] The second magnetic member 6;
[0044] Avoidance hole 61; magnetic member main body 62; magnetic part 63;
[0045] Lamp shade 7;
[0046] Charging connector 300. Detailed implementation manners
[0047] Embodiments of the present utility model will be described in detail below. Examples of the embodiments are shown in the 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 by referring to the drawings are exemplary and are only used to explain the present utility model and should not be construed as a limitation to the present utility model.
[0048] Reference will be made below to Figures 1 - 5 describe the tracker 100 according to an embodiment of the present utility model.
[0049] As Figures 1 - 4 shown, the tracker 100 according to an embodiment of the present utility model includes: a tracker main body 1, the tracker main body 1 having a first circuit board 11; a tracker charging terminal 12, the tracker charging terminal 12 being fixed to the tracker main body 1 and connected to the first circuit board 11, the tracker charging terminal 12 being used for abutting against a charging seat charging terminal 51 of a charging seat 200.
[0050] Among them, the tracker main body 1 has a first circuit board 11. The first circuit board 11 can be configured as a PCBA (Printed Circuit Board Assembly). The first circuit board 11 is the basis of the tracker 100 and can implement the tracking function of the tracker 100. Moreover, by abutting the tracker charging terminal 12 against the charging seat charging terminal 51 of the charging seat 200, the effect of charging the battery of the tracker 100 can be achieved. The tracker main body 1 may include a middle frame 15, and the middle frame 15 and the first circuit board 11 are fixedly connected. As some embodiments of the present application, the first circuit board 11 and the middle frame 15 can be connected by bolts to fixedly connect the middle frame 15 and the first circuit board 11. As some embodiments of the present application, the first circuit board 11 and the middle frame 15 can be connected in a snap-fit manner to fixedly connect the middle frame 15 and the first circuit board 11.
[0051] The tracker charging terminal 12 is fixedly arranged on the tracker body 1. For example, the tracker charging terminal 12 can be fixedly arranged on the tracker body 1 by welding. As some embodiments of the present application, the tracker charging terminal 12 can be directly welded to the first circuit board 11 so that the tracker charging terminal 12 is directly connected to the first circuit board 11. As some embodiments of the present application, one end of a wire can be welded to the tracker charging terminal 12 and the other end of the wire can be welded to the first circuit board 11 so that the tracker charging terminal 12 and the first circuit board 11 can be indirectly connected through the wire.
[0052] By fixedly arranging the tracker charging terminal 12 on the tracker body 1, the position stability of the tracker charging terminal 12 can be improved, the risk of charging failure of the tracker 100 caused by the displacement of the tracker charging terminal 12 can be reduced. Moreover, compared with charging the tracker 100 by means of line insertion, charging the tracker 100 through the tracker charging terminal 12 can reduce the charging difficulty of the tracker 100 and can also reduce the risk of poor contact at the charging place caused by multiple pluggings and unplugging of the tracker 100 after being used for a period of time, thereby improving the charging reliability of the tracker 100.
[0053] By connecting the tracker charging terminal 12 to the first circuit board 11 and making the tracker charging terminal 12 abut against the charging seat charging terminal 51 of the charging seat 200, the electric energy of the charging seat 200 can be respectively transmitted to the tracker 100 through the charging seat charging terminal 51 and the tracker charging terminal 12, achieving the effect of repeated use of charging the tracker 100.
[0054] The tracker body 1 can further include a front INLAY 14, an adhesive tape 18 and a back INLAY 19. The middle frame 15 and the first circuit board 11 are fixedly connected. Along the thickness direction of the middle frame 15, the front INLAY 14 and the back INLAY 19 are respectively arranged on both sides of the middle frame 15, and both the front INLAY 14 and the back INLAY 19 can be adhered to both sides of the middle frame 15 through the adhesive tape 18 so that the assembly of the tracker body 1 is completed.
[0055] The tracker body 1 can further include a third magnetic part 16 and a light guide column 17. The third magnetic part 16 can be assembled on the middle frame 15 and the third magnetic part 16 is used for adsorbing a debug line (debugging line). During the development process, the debug line is used for debugging the first circuit board 11. By adsorbing the debug line on the third magnetic part 16, the risk of the debug line falling onto the first circuit board 11 and causing a short circuit of the first circuit board 11 can be reduced, thereby reducing the risk of damage to the first circuit board 11. It should be noted that after the development is completed, there is no need to debug the first circuit board 11 anymore, and usually the debug line is removed, so it is not shown in the figure.
[0056] Both the front INLAY 14 and the middle frame 15 are provided with light-transmitting holes 151, and at least part of the light guide column 17 is assembled in the light-transmitting holes 151. The first circuit board 11 is provided with a first light-emitting component 111. When the tracker 100 works, the first light-emitting component 111 emits light. When the power of the tracker 100 is exhausted, the first light-emitting component 111 goes out. The light guide column 17 can conduct the light of the first light-emitting component 111 to the light-transmitting hole 151, which is beneficial for the user to determine whether the tracker 100 is working by observing whether the tracker 100 lights up, and thus is beneficial for the user to charge the tracker 100 in time.
[0057] Specifically, when the tracker 100 is in use, the first light-emitting component 111 lights up, and at this time the tracker 100 works normally. When the power of the tracker 100 is exhausted, the first light-emitting component 111 goes out. At this time, the user can abut the tracker charging terminal 12 against the charging base charging terminal 51 of the charging base 200 so that the charging base 200 charges the first circuit board 11, thereby charging the tracker 100, effectively reducing the charging difficulty of the tracker 100 and achieving the effect of reusing the tracker 100.
[0058] Thus, by setting the tracker charging terminal 12 to be connected to the first circuit board 11 and abutting against the charging base charging terminal 51 of the charging base 200, the charging base 200 can charge the first circuit board 11, thereby achieving the effect of reusing the tracker 100. Compared with charging the tracker 100 by means of a wire plug, charging through the tracker charging terminal 12 and the charging base charging terminal 51 is simple to use, which is beneficial for reducing the charging difficulty of the tracker 100, and can also reduce the risk of poor contact at the charging place of the tracker 100 after being used for a period of time, improve the charging reliability of the tracker 100, and further improve the service life of the tracker 100.
[0059] In some embodiments of the present utility model, as Figure 2 and Figure 3 shown, the tracker charging terminal 12 may include: a first terminal 121 and two second terminals 122. The first terminal 121 and the two second terminals 122 are spaced apart to form a row of terminal columns, and the first terminal 121 is located between the two second terminals 122.
[0060] Among them, the polarities of the two second terminals 122 are the same, and the polarities of the first terminal 121 and the second terminals 122 are opposite. As some embodiments of the present application, the first terminal 121 may be configured as the positive electrode, and the two second terminals 122 are both configured as the negative electrode. As some embodiments of the present application, the first terminal 121 may be configured as the negative electrode, and the two second terminals 122 are both configured as the positive electrode. The first terminal 121 and the two second terminals 122 are spaced apart to form a row of terminal columns, and the first terminal 121 is located between the two second terminals 122. Further, the spacing distances between the first terminal 121 and the two second terminals 122 are the same, so that the first terminal 121 is located in the middle of the two second terminals 122. That is to say, the tracker charging terminals 12 are symmetrically arranged. Such an arrangement can make the arrangement of the tracker charging terminals 12 reasonable. When the tracker 100 needs to be charged, whether the tracker 100 is charged normally or reversely, it will not cause the positive and negative electrodes to be reversely connected. Moreover, there is no need for the user to check whether the positive and negative electrodes of the tracker 100 are reversely connected, effectively reducing the charging difficulty of the tracker 100, thereby reducing the risk of reverse connection of the positive and negative electrodes caused by the negligence of the user, and further reducing the damage risk of the tracker 100, which is beneficial to improving the service life of the tracker 100.
[0061] In some embodiments of the present invention, as Figure 3 shown, the tracker 100 may further include: a first magnetic attraction member 2, and the first magnetic attraction member 2 is fixedly arranged on the tracker body 1. When the tracker 100 is charged, the first magnetic attraction member 2 is used for magnetic attraction cooperation with the charging base 200.
[0062] Among them, the first magnetic attraction member 2 may be configured as a magnet. As some embodiments of the present application, the first magnetic attraction member 2 and the middle frame 15 may be connected by snap connection, so that the first magnetic attraction member 2 is fixedly arranged on the tracker body 1. As some embodiments of the present application, the first magnetic attraction member 2 and the middle frame 15 may be adhesively connected, so that the first magnetic attraction member 2 is fixedly arranged on the tracker body 1. When the tracker 100 needs to be charged, the first magnetic attraction member 2 is used for magnetic attraction cooperation with the charging base 200, so that the tracker 100 is magnetically attracted to the charging base 200, which is beneficial to reducing the separation risk between the tracker 100 and the charging base 200, and can also reduce the poor contact risk between the tracker 100 and the charging base 200, thereby improving the charging reliability of the tracker 100.
[0063] In some embodiments of the present invention, as Figure 3 shown, the first magnetic attraction member 2 and the tracker charging terminal 12 are arranged at the same end of the tracker body 1.
[0064] Among them, the first magnetic member 2 and the tracker charging terminal 12 are provided at the same end of the tracker body 1. Such an arrangement can make the arrangement positions of the first magnetic member 2 and the tracker charging terminal 12 reasonable. When the first magnetic member 2 is magnetically engaged with the charging base 200, the tracker charging terminal 12 can also be in abutting engagement with the charging base charging terminal 51, which is beneficial to the reliable alignment and engagement between the tracker charging terminal 12 and the charging base charging terminal 51, and further reduces the risk of separation between the tracker 100 and the charging base 200.
[0065] In some embodiments of the present utility model, such as Figure 3 As shown, the tracker body 1 is formed with an installation opening 13, and the first magnetic member 2 is disposed in the installation opening 13.
[0066] Among them, the tracker body 1 is formed with an installation opening 13. Further, the middle frame 15 of the tracker body 1 is formed with an installation opening 13. The installation opening 13 can provide an assembly position for the first magnetic member 2. By disposing the first magnetic member 2 in the installation opening 13, the effect of disposing the first magnetic member 2 on the tracker body 1 is achieved. Further, the size and shape of the installation opening 13 can be adapted to the size and shape of the first magnetic member 2, reducing the risk of the first magnetic member 2 shaking in the installation opening 13. When the first magnetic member 2 is magnetically engaged with the charging base 200, the risk of the tracker 100 shaking can be reduced, improving the position stability of the tracker 100 during charging, and thus further improving the charging reliability of the tracker 100.
[0067] Such as Figures 4 - 5 As shown, the charging base 200 according to an embodiment of the present utility model includes: a housing 4, the housing 4 is formed with a plurality of insertion holes 41 for inserting the tracker 100; a second circuit board 5, the second circuit board 5 is disposed in the housing 4, the second circuit board 5 has a plurality of charging base charging terminals 51, and the plurality of charging base charging terminals 51 respectively correspond to the plurality of insertion holes 41, and the charging base charging terminals 51 are used for abutting engagement with the tracker charging terminals 12 of the tracker 100.
[0068] Among them, the housing 4 may include an upper housing 43 and a lower housing 44, and the upper housing 43 and the lower housing 44 jointly define an installation space. The second circuit board 5 can be configured as a PCBA (Printed Circuit Board Assembly), and the second circuit board 5 is disposed in the installation space so that the second circuit board 5 can work stably in the housing 4, reducing the interference of the external environment on the second circuit board 5. The second circuit board 5 has a plurality of charging base charging terminals 51. For example: the charging base charging terminals 51 can be, but are not limited to, 2, 6, 10, etc. The housing 4 is also formed with a plurality of insertion holes 41. For example: the insertion holes 41 can be, but are not limited to, 2, 6, 10, etc. It should be noted that the number of the insertion holes 41 is the same as the number of the charging base charging terminals 51.
[0069] The charging terminals 51 of multiple charging bases respectively correspond to multiple jacks 41. That is to say, one charging terminal 51 of a charging base corresponds to one jack 41. The jack 41 is used for inserting the tracker 100. By making the charging terminals 51 of multiple charging bases respectively correspond to multiple jacks 41, when the tracker 100 is inserted into any one of the jacks 41, there will be a corresponding charging terminal 51 of the charging base in contact with the tracker charging terminal 12 of the tracker 100. By inserting the tracker 100 into the jack 41 to charge the tracker 100, the charging steps of the tracker 100 are simplified. Moreover, multiple trackers 100 can be inserted into the charging base 200 at the same time, and the multiple trackers 100 are respectively inserted into different jacks 41, so as to achieve the effect of charging multiple trackers 100 simultaneously.
[0070] The second circuit board 5 may have a charging hole 53 and a second light-emitting member 52. The upper shell 43 may have a charging port 431. When the charging connector 300 passes through the charging port 431 and is inserted and cooperated with the charging hole 53, the second circuit board 5 can be powered, so that the charging base 200 charges the tracker 100. When the charging connector 300 supplies power to the second circuit board 5, the second light-emitting member 52 lights up. When the charging connector 300 is unplugged from the second circuit board 5, the second light-emitting member 52 goes out. The charging base 200 may further include a lamp shade 7. At least part of the lamp shade 7 is assembled on the upper shell 43. The lamp shade 7 can conduct the light of the second light-emitting member 52 to the upper shell 43, which is beneficial for the user to determine whether the charging base 200 is working by observing whether the second light-emitting member 52 is lit through the lamp shade 7, and thus is beneficial for the user to charge the charging base 200 in time.
[0071] The lower shell 44 may have anti-slip foot pads 441. The anti-slip foot pads 441 can be but are not limited to being made of rubber or resin materials. By arranging the anti-slip foot pads 441 on the lower shell 44, the risk of the charging base 200 moving can be reduced, thereby further improving the charging stability of the tracker 100.
[0072] Specifically, when the power of the tracker 100 is exhausted, the first light-emitting member 111 goes out. At this time, the user can insert the tracker 100 into any one of the jacks 41 so that the tracker charging terminal 12 is in contact with the charging terminal 51 of the charging base 200 of the charging base. The charging connector 300 is passed through the charging port 431 and inserted and cooperated with the charging hole 53 to supply power to the second circuit board 5, so that the charging base 200 charges the tracker 100, effectively reducing the charging difficulty of the tracker 100 and achieving the effect of reusing the tracker 100. Moreover, multiple trackers 100 can be respectively inserted into different jacks 41 at the same time, which is beneficial for the charging base 200 to charge multiple trackers 100 simultaneously.
[0073] Thus, by providing a plurality of insertion holes 41 and a plurality of charging base charging terminals 51, and one insertion hole 41 corresponding to one charging base charging terminal 51, the charging base 200 can charge a plurality of trackers 100 simultaneously, which is beneficial to improving the charging efficiency of the tracker 100. When the power of the tracker 100 is exhausted, there is no need to use an additional charging connector 300 to charge the tracker 100. Only by inserting the tracker 100 into the insertion hole 41 so that the tracker charging terminal 12 abuts against the charging base charging terminal 51 of the charging base 200 can the effect of charging the tracker 100 be achieved.
[0074] In some embodiments of the present invention, as Figure 4 and Figure 5 shown, the charging base charging terminal 51 includes: a third terminal 511 and two fourth terminals 512. The third terminal 511 and the two fourth terminals 512 are spaced apart to form a row of terminal rows, and the third terminal 511 is located between the two fourth terminals 512.
[0075] Among them, the polarities of the two fourth terminals 512 are the same, and the polarities of the third terminal 511 and the fourth terminal 512 are opposite. As some embodiments of the present application, the third terminal 511 can be configured as the positive electrode, and the two fourth terminals 512 are both configured as the negative electrode. As some embodiments of the present application, the third terminal 511 can be configured as the negative electrode, and the two fourth terminals 512 are both configured as the positive electrode. It should be noted that the arrangement of the third terminal 511 and the fourth terminal 512 should be adapted to the arrangement of the first terminal 121 and the second terminal 122 so that the charging base 200 can charge the tracker 100 smoothly.
[0076] The third terminal 511 and the two fourth terminals 512 are spaced apart to form a row of terminal rows, and the third terminal 511 is located between the two fourth terminals 512. Further, the spacing distances between the third terminal 511 and the two fourth terminals 512 are the same, so that the third terminal 511 is located in the middle of the two fourth terminals 512. That is to say, the charging base charging terminal 51 is symmetrically arranged. Such an arrangement can make the arrangement of the charging base charging terminal 51 reasonable, and the arrangement of the charging base charging terminal 51 is adapted to the arrangement of the tracker charging terminal 12. When the tracker 100 needs to be charged, whether the tracker 100 is placed upright or upside down in the insertion hole 41, it will not cause the positive and negative poles of the charging base charging terminal 51 and the tracker charging terminal 12 to be reversely connected. Moreover, there is no need for the user to check whether the positive and negative poles of the tracker 100 are reversely connected, effectively reducing the charging difficulty of the tracker 100, thereby reducing the risk of reverse connection of the positive and negative poles caused by the negligence of the user, and further reducing the damage risk of the tracker 100, which is beneficial to improving the service life of the tracker 100.
[0077] In some embodiments of the present invention, as Figure 5As shown, the charging base 200 may further include: a second magnetic member 6, which is located inside the housing 4. When the tracker 100 is inserted into the corresponding insertion hole 41 for charging, the second magnetic member 6 is used for magnetic attraction cooperation with the tracker 100.
[0078] Among them, the second magnetic member 6 can be configured as a magnet, an iron sheet, etc. As some embodiments of the present application, the second magnetic member 6 can be connected to the upper housing 43 by snap connection so that the second magnetic member 6 is located inside the housing 4. As some embodiments of the present application, the second magnetic member 6 can be connected to the upper housing 43 by bolts so that the second magnetic member 6 is located inside the housing 4. When the power of the tracker 100 is exhausted and charging is required, the tracker 100 is inserted into the corresponding insertion hole 41, and the second magnetic member 6 can be magnetically attracted to the tracker 100, so that the tracker 100 and the charging base 200 can be automatically aligned and matched, and the charging terminal 12 of the tracker is in contact with the charging terminal �1 of the charging base, thereby realizing the effect of automatic alignment and charging of the tracker 100 and the charging base 200. It can also reduce the risk of separation between the tracker 100 and the charging base 200, and further improve the charging reliability of the tracker 100.
[0079] In some embodiments of the present utility model, as Figure 5 shown, the housing 4 has an insertion wall 42 opposite to and spaced apart from the second circuit board 5. The insertion wall 42 is formed with an insertion hole 41. The second magnetic member 6 is located between the insertion wall 42 and the second circuit board 5. The second magnetic member 6 is formed with an avoidance hole 61, and the avoidance hole 61 is correspondingly arranged with the insertion hole 41 and the charging terminal 51 of the charging base.
[0080] Among them, the housing 4 has an insertion wall 42. Further, the upper housing 43 has an insertion wall 42. The insertion wall 42 is arranged opposite to the second circuit board 5 and is spaced apart from the second circuit board 5. The insertion wall 42 is formed with an insertion hole 41. Such a setting can make the position of the insertion wall 42 reasonable. When the tracker 100 is inserted into the insertion hole 41, it still needs to move a certain distance before the charging terminal 12 of the tracker can be in contact with the charging terminal 51 of the charging base, which is beneficial to the side wall of the insertion hole 41 to limit the tracker 100 and reduce the risk of the tracker 100 tipping over during charging, and further improves the charging stability of the tracker 100.
[0081] The second magnetic member 6 is located between the insertion wall 42 and the second circuit board 5. Along the arrangement direction of the insertion wall 42 and the second circuit board 5, the second magnetic member 6 is disposed close to the second circuit board 5. The second magnetic member 6 is formed with an avoidance hole 61, and the avoidance hole 61 can avoid the charging terminal 51 of the charging base. Further, at least a part of the charging terminal 51 of the charging base penetrates through the avoidance hole 61, and the avoidance hole 61 is correspondingly arranged with the insertion hole 41 and the charging terminal 51 of the charging base. That is to say, one avoidance hole 61 corresponds to one insertion hole 41 and one charging terminal 51 of the charging base. Such an arrangement can make the setting of the second magnetic member 6 reasonable. When the battery of the tracker 100 is exhausted and needs to be charged, the tracker 100 is inserted into the corresponding insertion hole 41, and the corresponding avoidance hole 61 avoids the corresponding charging terminal 51 of the charging base. Moreover, since at least a part of the charging terminal 51 of the charging base penetrates through the avoidance hole 61, when the second magnetic member 6 is magnetically coupled with the tracker 100, the charging terminal 12 of the tracker can be reliably abutted against the charging terminal 51 of the charging base, reducing the risk of poor contact between the charging terminal 12 of the tracker and the charging terminal 51 of the charging base, thereby improving the charging reliability of the tracker 100.
[0082] In some embodiments of the present utility model, as Figure 5 shown, there are multiple avoidance holes 61, and the multiple avoidance holes 61, the multiple insertion holes 41, and the multiple charging terminals 51 of the charging base correspond to each other one by one.
[0083] Among them, there are multiple avoidance holes 61. For example: the avoidance holes 61 can be but are not limited to being provided with 2, 6, 10, etc. It should be noted that the number of the avoidance holes 61 is the same as the number of the charging terminals 51 of the charging base, so that the multiple avoidance holes 61, the multiple insertion holes 41, and the multiple charging terminals 51 of the charging base correspond to each other one by one. That is to say, one avoidance hole 61 corresponds to one insertion hole 41 and one charging terminal 51 of the charging base. When the battery of the tracker 100 is exhausted and needs to be charged, the corresponding avoidance hole 61 avoids the corresponding charging terminal 51 of the charging base, so that when the tracker 100 is inserted into any one of the insertion holes 41, there is a corresponding charging terminal 51 of the charging base abutted against the charging terminal 12 of the tracker, improving the charging reliability of the tracker 100.
[0084] In some embodiments of the present utility model, as Figure 5 shown, the second magnetic member 6 may include: a magnetic member main body 62 and a magnetic portion 63. The magnetic member main body 62 is formed with an avoidance hole 61, and the magnetic portion 63 is disposed on the surface of the magnetic member main body 62 facing the insertion wall 42, and the magnetic portion 63 is used for magnetic coupling with the tracker 100.
[0085] Among them, the main body 62 of the magnetic attraction member is formed with an avoidance hole 61, which reduces the risk of the structural strength of the magnetic attraction part 63 being reduced due to the avoidance hole 61 extending to the magnetic attraction part 63, thereby improving the structural stability of the magnetic attraction part 63. Along the height direction of the charging base 200, the main body 62 of the magnetic attraction member has two opposite surfaces, and the magnetic attraction part 63 is arranged on the surface of the main body 62 of the magnetic attraction member facing the insertion wall 42. That is to say, the magnetic attraction part 63 and the insertion wall 42 are arranged on the same side of the main body 62 of the magnetic attraction member. Since the tracker 100 is inserted into the insertion hole 41 of the insertion wall 42, the magnetic attraction part 63 being arranged on the surface of the main body 62 of the magnetic attraction member facing the insertion wall 42 is conducive to the magnetic attraction cooperation between the magnetic attraction part 63 and the tracker 100, which can improve the magnetic attraction reliability between the magnetic attraction part 63 and the tracker 100, is conducive to reducing the risk of the tracker 100 separating from the magnetic attraction part 63, thereby reducing the risk of poor contact between the tracker 100 and the charging base 200, and further improving the charging reliability of the tracker 100.
[0086] In some embodiments of the present invention, such as Figure 5 shown, the magnetic attraction part 63 is strip-shaped, and the magnetic attraction part 63 extends along the arrangement direction of the plurality of insertion holes 41.
[0087] Among them, the magnetic attraction part 63 can be set to multiple. For example, the magnetic attraction part 63 can be set to two. The magnetic attraction part 63 can be configured as strip-shaped, and along the arrangement direction of the third terminal 511 and the fourth terminal 512, the two magnetic attraction parts 63 can be arranged near both sides of the insertion hole 41. When the battery of the tracker 100 is exhausted and needs to be charged, such an arrangement can make the two sides of the tracker 100 receive the same or approximately the same magnetic attraction force, which is conducive to improving the stability of the tracker 100. The magnetic attraction part 63 extends along the arrangement direction of the plurality of insertion holes 41, so that at least part of the magnetic attraction part 63 is exposed in any one of the insertion holes 41. When the tracker 100 is inserted into the insertion hole 41 for charging, it is conducive to the reliable magnetic attraction between the magnetic attraction part 63 and the tracker 100, and is conducive to improving the charging stability of the tracker 100.
[0088] The tracker 100 assembly according to an embodiment of the present invention includes: a tracker 100, the tracker 100 being the tracker 100 in the above embodiment; a charging base 200, the charging base 200 being the charging base 200 in the above embodiment, and the tracker 100 is adapted to be inserted into the insertion hole 41 to charge the tracker 100.
[0089] Among them, by setting the tracker charging terminal 12 to be connected to the first circuit board 11 and abutting against the charging base charging terminal 51 of the charging base 200, the charging base 200 can charge the first circuit board 11, thereby achieving the effect of reusing the tracker 100. Compared with charging the tracker 100 by means of wire insertion, charging through the contact of the tracker charging terminal 12 and the charging base charging terminal 51 is simple to use, which is beneficial to reducing the charging difficulty of the tracker 100, and can also reduce the risk of poor contact at the charging part of the tracker 100 after being used for a period of time, improve the charging reliability of the tracker 100, and further improve the service life of the tracker 100. By providing a plurality of insertion holes 41 and a plurality of charging base charging terminals 51, and one insertion hole 41 corresponding to one charging base charging terminal 51, the charging base 200 can charge a plurality of trackers 100 simultaneously, which is beneficial to improving the charging efficiency of the trackers 100. When the power of the tracker 100 is exhausted, there is no need to use an additional plug wire to charge the tracker 100. Only by inserting the tracker 100 into the insertion hole 41 to make the tracker charging terminal 12 abut against the charging base charging terminal 51 of the charging base 200 can the effect of charging the tracker 100 be achieved.
[0090] In the description of this specification, the descriptions referring to the terms "one embodiment", "some embodiments", "illustrative embodiments", "examples", "specific examples", or "some examples", etc. mean 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 invention. 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.
[0091] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the claims and their equivalents.
Claims
1. A tracker, characterized in that, Comprising: A tracker body having a first circuit board; A tracker charging terminal fixedly provided on the tracker body and connected to the first circuit board, the tracker charging terminal being adapted to abut against a charging base charging terminal of a charging base.
2. The tracker according to claim 1, characterized in that, The tracker charging terminal includes: a first terminal and two second terminals, the first terminal and the two second terminals being spaced apart to form a row of terminals, the first terminal being located between the two second terminals.
3. The tracker according to claim 1 or 2, characterized in that, Further comprising: A first magnetic member fixedly provided on the tracker body, the first magnetic member being adapted to magnetically cooperate with the charging base when the tracker is charged.
4. The tracker according to claim 3, characterized in that, The first magnetic member and the tracker charging terminal are provided at the same end of the tracker body.
5. The tracker according to claim 3, characterized in that, The tracker body is formed with a mounting opening, and the first magnetic member is provided in the mounting opening.
6. A charging stand, characterized in that, Comprising: A housing formed with a plurality of insertion holes for inserting a tracker; A second circuit board provided in the housing, the second circuit board having a plurality of charging base charging terminals, the plurality of charging base charging terminals corresponding to the plurality of insertion holes respectively, the charging base charging terminals being adapted to abut against the tracker charging terminals of the tracker.
7. The charging stand according to claim 6, characterized in that, The charging base charging terminal includes: a third terminal and two fourth terminals, the third terminal and the two fourth terminals being spaced apart to form a row of terminals, the third terminal being located between the two fourth terminals.
8. The charging stand according to claim 6 or 7, characterized in that, Further comprising: A second magnetic member located in the housing, the second magnetic member being adapted to magnetically cooperate with the tracker when the tracker is inserted into the corresponding insertion hole for charging.
9. The charging base according to claim 8, wherein The housing has an insertion wall opposite to and spaced apart from the second circuit board, the insertion wall being formed with the insertion holes, the second magnetic member being located between the insertion wall and the second circuit board, the second magnetic member being formed with an avoidance hole, the avoidance hole being correspondingly arranged with the insertion holes and the charging base charging terminals.
10. The charging stand according to claim 9, wherein There are a plurality of the avoidance holes, and the plurality of avoidance holes, the plurality of insertion holes and the plurality of charging base charging terminals correspond to each other one by one.
11. The charging stand according to claim 9, wherein, The second magnetic member includes: a magnetic member body formed with the avoidance hole, and a magnetic portion provided on a surface of the magnetic member body facing the insertion wall, the magnetic portion being adapted to magnetically cooperate with the tracker.
12. The charging stand according to claim 11, wherein, The magnetic portion is strip-shaped and extends along the arrangement direction of the plurality of insertion holes.
13. A tracker component, characterized in that, Comprising: A tracker, the tracker being the tracker according to any one of claims 1-5; A charging base, the charging base being the charging base according to any one of claims 6-12, the tracker being adapted to be inserted into the insertion hole to charge the tracker.