CN211239412U - Drawer type charging structure applied to electronic shackle - Google Patents
Drawer type charging structure applied to electronic shackle Download PDFInfo
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- CN211239412U CN211239412U CN202020137624.9U CN202020137624U CN211239412U CN 211239412 U CN211239412 U CN 211239412U CN 202020137624 U CN202020137624 U CN 202020137624U CN 211239412 U CN211239412 U CN 211239412U
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- 230000009286 beneficial effect Effects 0.000 description 2
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- 230000008520 organization Effects 0.000 description 2
- 230000008054 signal transmission Effects 0.000 description 2
- 210000003423 ankle Anatomy 0.000 description 1
- 108010066057 cabin-1 Proteins 0.000 description 1
- 238000004891 communication Methods 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 230000005611 electricity Effects 0.000 description 1
- 238000003780 insertion Methods 0.000 description 1
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- 239000013589 supplement Substances 0.000 description 1
- 210000000707 wrist Anatomy 0.000 description 1
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Abstract
The utility model provides a be applied to drawer type charging structure of electron shackle, including electron storehouse and charger, be equipped with guide structure and electric contact on the electron storehouse, but electric contact is connected with the charging source in the electron storehouse, the charger both sides are equipped with the guide block, and the guide block with guide structure carries out sliding connection, still be equipped with the electrode slice on the charger, slide when the charger is pegged graft when on the electron storehouse, the electrode slice with the contact of electric contact. The electronic shackle charger has the advantages that due to the design of the electronic bin and the charger, the charger can be accurately and quickly aligned and fixed through the guide structure during charging, so that the electronic shackle can be conveniently charged, and the problems that the original electronic shackle is inconvenient to charge and easy to fall off are solved; because the charger adopts detachable construction to be connected with the electronic bin, utilize this detachable construction, can realize the extension to the external function of electron shackle electronic bin.
Description
Technical Field
The utility model belongs to electron shackle field, concretely relates to be applied to drawer type charge structure of electron shackle.
Background
The temporary execution outside supervision is an important criminal law system in China. The establishment of the system embodies the criminal policy of combining Chinese punishment criminals and reconstructed criminals and humanitarian, and is beneficial to the education, the sensibilization and the rescue of the criminals. The temporary surveillant execution system is an important penalty execution system. However, the system has a lot of specific problems in the supervision execution work, and the executive organization is unable to supervise and has more management loopholes for the criminals outside supervision. The public security organization has inaccurate control on the base number of criminals outside the prison, and each dispatching place has the phenomenon to different degrees, so that the police force of the dispatching places at the basic level is limited, the business is complicated, and the criminals outside the prison are in a vacuum execution state outside the limp distance; at present, for some criminals, China can adopt electronic shackles mounted on the criminals to effectively monitor the criminals.
Such "electronic shackles" placed on the ankle or wrist of a prisoner can be in communication, by wire or wirelessly, with the monitoring center of the judicial system, to be immediately discovered once the person is out of the restricted area or attempts to destroy the shackle.
Electronic fetters are electronic criminals that ensure criminal suspects not to escape in some countries or regions. For criminal suspects managed by departments, on-duty in communities or on-duty in the investigation stage, the criminal suspects are provided with special electronic fetters to ensure that the criminal suspects cannot run away and do criminal activities again. Such fetters, after passing a pre-defined territory, will sound an alarm.
At present, most of the existing electronic shackles are provided with batteries inside the electronic shackles, the batteries are used for providing electric energy for the electronic shackles, the electronic shackles are integrally waterproof, power contacts are arranged on the surfaces of the electronic shackles, the electronic shackles are electrically contacted and connected with a power supply through a charging seat, the charging seat is connected with a power line for charging, the charging seat is fixed on the electronic shackles through clamping, the electronic shackles are often bound on the legs of users, the fixing of the charging seat through the clamping structure is inconvenient, and the users are difficult to clamp and install the charging seat when the electronic shackles are bound on the legs. In addition, the charging seat is connected with the power supply in a contact mode through the magnet, and the charging seat is easy to fall off when being worn on legs.
SUMMERY OF THE UTILITY MODEL
The utility model discloses lie in the problem to above-mentioned prior art existence, provide a drawer type charging structure who is applied to electron shackle and charges more conveniently.
In order to achieve the above purpose, the utility model discloses a technical scheme have:
the utility model provides a be applied to drawer type charging structure of electron shackle, includes electron storehouse and charger, be equipped with guide structure and electric contact on the electron storehouse, but electric contact is connected with the charging source electricity in the electron storehouse, the charger both sides are equipped with the guide block, and the guide block with guide structure carries out sliding connection, still be equipped with the electrode slice on the charger, when the charger slip plug-in connect when on the electron storehouse, the electrode slice with the contact of electric contact.
The utility model discloses produced beneficial effect does: through the design of the electronic bin and the charger, the charger can be accurately and quickly aligned and fixed through the guide structure when being charged, so that the electronic shackle can be conveniently charged, and the problems that the original electronic shackle is inconvenient to charge and easy to fall off are solved.
The electronic cabin is connected with the electrode plate through the electric contact, and a rechargeable power supply in the electronic cabin can supply power to the function expanding equipment. And the charger can be taken down and replaced after charging is completed, so that the device can be expanded, the functions of the electronic shackle are effectively expanded, and the electronic shackle is convenient and quick to use.
The electronic cabin is characterized by further comprising function expanding equipment capable of being selectively replaced and used with the charger, wherein the function expanding equipment comprises a guide block and a signal end, the guide block is matched and fixed with a guide structure of the electronic cabin, the electronic cabin is further provided with a signal interface, the signal interface is connected with a central control unit inside the electronic cabin, and the signal end is in contact with the signal interface. And the effective transmission of signals between the function expanding equipment and the electronic bin can be realized.
Furthermore, the charger is further provided with electrode sheet grooves, the electrode sheets are installed in the electrode sheet grooves, and at least two buckling grooves and at least two buckling pieces are arranged. The charger can be more stably connected with the electronic bin through the buckle piece and the buckle groove.
Preferably, the electronic cabin is provided with a groove, and the groove corresponds to the electrode sheet groove on the charger. Can be convenient make electrode slice and electric contact counterpoint contact more accurate.
Preferably, there are 4 electrical contacts, and there are 4 electrode tabs and 4 electrode tab slots. The charging can be faster, and the replacement of other functions can be better satisfied.
Preferably, the guide structure is two parallel rectangular protrusions, a guide groove is formed in each rectangular protrusion, and the guide blocks are slidably connected in the guide grooves. The guide block can better realize sliding insertion through a guide groove arranged in the guide structure.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
fig. 2 is an exploded view of the charger of the present invention;
fig. 3 is an overall view of the charger of the present invention.
Detailed Description
The utility model discloses a drawer type charging structure who is applied to electronic shackle is explained in combination with the figure.
Example 1
As shown in fig. 1, the drawer type charging structure applied to the electronic shackle comprises an electronic bin 1 and a charger 2, wherein the charger 2 is arranged on the electronic bin 1, the electronic bin 1 is provided with a guide structure 11 and a plurality of electric contacts 13, each electric contact 13 is provided with 4 electric contacts, guide blocks 211 are arranged on two sides of the charger 2, the guide blocks 211 correspond to the guide structure 11 in position, the guide blocks 211 can slide in the guide structure 11, the guide structure is two rectangular protrusions parallel to each other, the rectangular protrusions are further internally provided with guide grooves 111 parallel to each other, and the guide blocks 211 slide in the guide grooves 111, so that the guide blocks 211 can be accurately aligned with the guide structure 11 and can be accurately fixed by sliding the guide blocks 211 in the guide grooves 111; the charger 2 is also provided with a wiring hole 213, and a wire and a plug are connected in the wiring hole, so that the electronic shackle can be charged; and the length of charging wire is adjustable, can be better realize the function of charging.
As shown in fig. 2 and 3, the electronic cabin 1 is further provided with a fastening groove 12, the charger 2 includes an upper casing 21 and a lower casing 22, the lower casing 22 is provided with a fastening member 221, the fastening member is a fastening member with a free end capable of elastically displacing, when the charger is installed on the electronic cabin, the fastening member 221 corresponds to the fastening groove 12, and the fastening member is elastically fastened and pressed in the fastening groove; the lower shell 22 is further provided with a plurality of electrode sheet grooves 222, the upper shell 21 is further provided with a circuit board, the circuit board is provided with a plurality of electrode sheets 212, the electrode sheets 212 are installed in the electrode sheet grooves 222, the electrode sheets 212 protrude from the electrode sheet grooves 222, and the electrode sheets 212 are correspondingly contacted with the electric contacts 13 through the electrode sheet grooves 222; the number of the buckling grooves 12 and the buckling pieces 221 is two, and the two buckling grooves and the buckling pieces are symmetrical; the buckle of the charger and the electronic cabin structure can be more stable; 4 electrode plates 212 and 4 electrode plate grooves 222 are also arranged; the upper case 21 is provided with a groove 214, the groove 214 corresponds to the electrode sheet groove 222 on the lower case 22, so that the lower case 22 can be more accurately mounted on the upper case 21, and the electrode sheet 212 can be more accurately contacted with the electrical contact 13 through the groove 214 and the electrode sheet groove 222.
Example 2
The structure of the charger 2 can be used for replacing a successful function expanding device (such as a recording and shooting device), the recording or shooting device can be installed under certain conditions, if a prisoner needs to record and monitor images under certain specific environments, the recording and shooting device can be installed, and the prisoner does not need to install the recording and shooting device to take the recording and shooting device down normally; the electronic cabin is characterized in that a guide structure on the electronic cabin can be further designed into a sliding block, a sliding groove is formed in the charger, sliding connection is achieved through the sliding block of the sliding groove of the charger on the sliding block on the electronic cabin, and the electronic cabin is in contact with the electrode slice through the electric contact to supply power to the function expansion equipment.
The function expanding equipment also comprises an upper shell and a lower shell, the electrode plate is arranged at the same position, the structure is the same as that of the charger, the function expanding equipment is arranged from the guide structure in a whole manner, the electrode plate is contacted with the charging contact, so that the charger can be replaced, the charger can be taken down after being charged after being used, the function expanding equipment can be replaced successfully, the electronic bin can be used for charging the function expanding equipment through the contact of the electrode plate and the electric contact, and more functions can be provided for the electronic shackle to expand and supplement the functions of the electronic shackle.
Example 3
The function expanding equipment can also be provided with a signal end, the guide block is matched and fixed with the guide structure of the electronic bin, the electronic bin is provided with a signal interface, the signal interface is connected with a central control unit in the electronic bin, and the signal end of the function expanding equipment is contacted with the signal interface, so that effective transmission of signals between the function expanding equipment and the electronic bin can be realized, the acquisition and storage of expanding function information are facilitated, and further, corresponding information is transmitted to a background through other modules in the electronic bin, and the function of the electronic shackle is expanded.
The charging structure of the electronic shackle is simple in design and convenient to manufacture, the electronic shackle is more convenient to charge, and the charger can be replaced by other function expansion equipment after being charged, so that the electronic shackle can be expanded in more functions, and the charging structure has better practicability.
Variations and modifications to the above-described embodiments may occur to those skilled in the art, in light of the above teachings and teachings. Therefore, the present invention is not limited to the specific embodiments disclosed and described above, and some modifications and changes to the present invention should fall within the protection scope of the claims of the present invention. Furthermore, although specific terms are employed herein, they are used in a generic and descriptive sense only and not for purposes of limitation.
Claims (8)
1. The utility model provides a be applied to drawer type charging structure of electron shackle which characterized in that, includes electron storehouse and charger, be equipped with guide structure and electric contact on the electron storehouse, but electric contact is connected with the charging source in the electron storehouse, the charger both sides are equipped with the guide block, and the guide block with guide structure carries out sliding connection, be equipped with the electrode slice on the charger, when the charger slip plug-in connect when on the electron storehouse, the electrode slice with electric contact.
2. The charging structure according to claim 1, further comprising a function expansion device selectively replaceable with the charger, wherein the function expansion device comprises a guide block and an electrode plate, the function expansion device is connected with a guide structure of an electronic cabin through the guide block, the electronic cabin is in contact with the electrode plate through the electric contact, and a rechargeable power supply in the electronic cabin can supply power to the function expansion device.
3. The charging structure according to claim 1, further comprising a function expansion device selectively replaceable with the charger, wherein the function expansion device comprises a guide block and a signal terminal, the guide block is fixed to the guide structure of the electronic cabin in a matching manner, the electronic cabin is further provided with a signal interface, the signal interface is connected to a central control unit inside the electronic cabin, and the signal terminal is in contact with the signal interface.
4. The charging structure according to claim 1, wherein a fastening groove is further formed in the electronic compartment, a fastening member is provided on the charger, the fastening member is a fastening member with a free end capable of elastically moving, and when the charger is mounted on the electronic compartment, the fastening member elastically fastens in the fastening groove.
5. The charging structure according to claim 4, wherein an electrode sheet groove is further formed in the charger, the electrode sheet is mounted in the electrode sheet groove, and at least two buckling grooves and at least two buckling pieces are provided.
6. The charging structure according to claim 5, wherein the electronic compartment is provided with a groove corresponding to the electrode sheet groove of the charger.
7. The charging structure according to claim 6, wherein there are 4 electrical contacts, and there are 4 electrode tabs and 4 electrode tab slots.
8. The charging structure according to claim 1, wherein the guiding structure is two rectangular protrusions parallel to each other, the rectangular protrusions are provided with parallel guiding grooves therein, and the guiding blocks are slidably connected in the guiding grooves.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202020137624.9U CN211239412U (en) | 2020-01-20 | 2020-01-20 | Drawer type charging structure applied to electronic shackle |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202020137624.9U CN211239412U (en) | 2020-01-20 | 2020-01-20 | Drawer type charging structure applied to electronic shackle |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN211239412U true CN211239412U (en) | 2020-08-11 |
Family
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Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202020137624.9U Active CN211239412U (en) | 2020-01-20 | 2020-01-20 | Drawer type charging structure applied to electronic shackle |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN211239412U (en) |
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2020
- 2020-01-20 CN CN202020137624.9U patent/CN211239412U/en active Active
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