CN214798973U - Nimble combination formula portable power source - Google Patents

Nimble combination formula portable power source Download PDF

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Publication number
CN214798973U
CN214798973U CN202120972180.5U CN202120972180U CN214798973U CN 214798973 U CN214798973 U CN 214798973U CN 202120972180 U CN202120972180 U CN 202120972180U CN 214798973 U CN214798973 U CN 214798973U
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CN
China
Prior art keywords
charger
power
charging
power supply
shell
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Expired - Fee Related
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CN202120972180.5U
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Chinese (zh)
Inventor
王树海
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Shenzhen Travel Shark Digital Technology Co ltd
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Shenzhen Travel Shark Digital Technology Co ltd
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Priority to CN202120972180.5U priority Critical patent/CN214798973U/en
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Publication of CN214798973U publication Critical patent/CN214798973U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model relates to the technical field of mobile power supplies, in particular to a flexible combined mobile power supply, which comprises a charger main body and a charger main body matched with the charger main body, wherein the charger main body comprises a charger shell, a power supply control unit arranged in the charger shell, an electricity storage unit arranged in the charger shell and electrically connected with the power supply control unit, a power supply input unit arranged on the surface of the charger shell and electrically connected with the control unit, and a power supply output unit arranged on the surface of the charger shell and electrically connected with the control unit; can carry out the charging of the separated mode with treasured main part and the charger main part that charges, also can carry out charging of integrated mode with treasured main part and the charger main part that charges, when going out to carry, can dismantle the charger main part, carry the treasured main part that charges alone, also can carry charger main part and the precious main part combination that charges together, improved portable power source's nimble use degree greatly.

Description

Nimble combination formula portable power source
Technical Field
The utility model relates to a portable power source technical field specifically is a nimble combination formula portable power source.
Background
The charging plug of the charger can charge the mobile equipment directly through an alternating current power supply, and the charger is provided with a power storage device, which is equivalent to a mixture of a charger and a standby battery, compared with the standby power supply, the charger can simplify the device of the charging plug, and compared with the charger, the charger is provided with the power storage device, so that the standby power supply can be provided for the digital product when no direct power supply exists or the digital product goes out; when the electric quantity of the charger is insufficient, the charger is required to supplement the electric quantity for the charger, the time of going out is long, for example, during business trips or traveling, the charger is required to be carried to ensure that the charger has enough electric quantity in the daytime to provide a standby power supply for a carried digital product, and the charger is required to be carried to supplement the electric quantity for the charger at night, so that the charger and the charger are convenient to carry, the prior art discloses 'a charger with a novel charger with a foldable plug' as disclosed in bulletin number 206250816, the charger is combined with the charger by arranging a plug mechanism in the charger, and the plug mechanism is connected with a socket, so that the charger can be charged, and the portable function is realized;
however, by integrating the charger and the charger, for the short-time outing activities, the charger is built in the charger, which results in a large size of the charger, and the supplied power is low, so that the charger is not suitable for the short-time outing, and therefore, it is necessary to design a charger with a detachable charger structure, so that the user can operate the charger more flexibly.
SUMMERY OF THE UTILITY MODEL
The utility model discloses an it is not enough to overcome above-mentioned condition, aims at providing the technical scheme that can solve above-mentioned problem.
In order to achieve the above object, the utility model provides a following technical scheme: a flexible combined type mobile power supply comprises a charger main body and a charger main body matched with the charger main body, wherein the charger main body comprises a charger shell, a power supply control unit arranged in the charger shell, an electricity storage unit arranged in the charger shell and electrically connected with the power supply control unit, a power supply input unit arranged on the surface of the charger shell and electrically connected with the control unit, and a power supply output unit arranged on the surface of the charger shell and electrically connected with the control unit; the charger main body comprises a charger shell, a charging control unit arranged in the charger shell, a power plug arranged on the surface of the charger shell and electrically connected with the charging unit, and a charging output unit arranged on the surface of the charger shell and electrically connected with the charging unit; the charging output unit is provided with a charging data line, and the power input unit is provided with a first power input interface matched with the charging data line; a transverse slot is formed in the upper end of the charger shell, and an inserting strip matched with the slot in a sliding mode is arranged at the lower end of the charger shell; the charger is characterized in that an elastic clamping component is further arranged at the upper end of the charger shell, and a clamping groove which is clamped in the elastic clamping component is formed in the lower end of the charger shell.
Preferably, precious shell's that charges upper end is provided with spacing boss, and the slot setting is provided with the U-shaped plug-in components that match in the lateral part of spacing boss and rear side position at the front side and the rear side position of spacing boss, charger shell's lower extreme, and the cutting sets up position department around the inner wall of U-shaped plug-in components.
Preferably, the lower extreme at charger shell is provided with the U-shaped decoration that depends on the U-shaped plug-in components, and precious upper end that charges is provided with the U-shaped filling piece that depends on one side of spacing boss, and U-shaped decoration and U-shaped plug-in components all coincide with the U-shaped filling piece to U-shaped decoration and U-shaped plug-in components coincide in the anastomotic plane of U-shaped filling piece and are the camber.
Preferably, the elastic clamping component comprises a shifting clamping block and a reset spring, a sliding groove is formed in the position, corresponding to the U-shaped filling piece, of the limiting boss, a spring groove is formed in the bottom of the sliding groove, a sliding hole communicated with the sliding groove is formed in the side portion of the U-shaped filling piece, the shifting clamping block comprises a shifting portion, a sliding portion and a clamping portion, the sliding portion is integrally formed between the shifting portion and the clamping portion, the sliding portion is in up-and-down sliding fit with the sliding hole, the clamping portion is movably arranged on the sliding groove in a penetrating mode, and the shifting portion is located on the outer side of the charger baby shell; the reset spring is arranged in the spring groove and is in butt joint and matching with the shifting block.
Preferably, the precious shell that charges is last to be provided with around the holding tank that charges of precious shell lateral part and bottom, and first power input interface sets up in the one end of holding tank that charges, and the other end of holding tank that charges extends to and docks with charger shell, and the data line that charges is around arranging in the holding tank that charges along the other end of holding tank that charges to just dock with first power input interface.
Preferably, the power control unit includes a power control circuit disposed in the power pack housing, an electric quantity display module disposed at the front side of the power pack housing and electrically connected to the power control circuit, and a button disposed at the front side of the power pack housing and electrically connected to the power control circuit.
Preferably, the power input unit is further provided with a second power input interface, and the second power input interface is arranged at the upper end of the charger baby shell.
Preferably, power output unit is provided with the power supply data line, power output interface and the wireless module of charging, still is provided with the power supply holding tank around the precious shell lateral part and the bottom of charging on the precious shell that charges, and the power supply data line sets up in the power supply holding tank, and power output interface sets up in the upper end of the precious shell that charges, and the wireless module of charging sets up the rear side at the precious shell that charges.
Preferably, the charging output unit is further provided with a first charging output interface and a second charging output interface, and the first charging output interface and the second charging output interface are both arranged on the same surface of the charger housing.
Compared with the prior art, the beneficial effects of the utility model are as follows:
the charger is characterized in that the charger housing is provided with a transverse slot which is in sliding fit with a plug strip at the lower end of the charger housing, so that the charger main body and the charger main body can be in sliding connection; an elastic clamping part is arranged on the charger baby shell and is positioned and clamped with a clamping groove at the lower end of the charger shell, so that the detachable positioning combination connection relation between the charger baby main body and the charger main body is completed; the charger main body is provided with a charging data line which is matched with a first power input interface of the charger main body, so that the transmission of electric quantity is completed;
the user can carry out the charging of the detached mode with treasured main part and the charger main part that charges according to different situation, also can carry out the charging of integrated mode with treasured main part and the charger main part that charges, when going out to carry, can dismantle the charger main part, carries the treasured main part that charges alone, also can carry the charger main part and the precious main part combination that charges together, has improved portable power source's nimble use degree greatly.
Drawings
Fig. 1 is a schematic structural diagram of the present invention;
FIG. 2 is a structural exploded view of the present invention;
fig. 3 is an exploded view of the main body of the charger of the present invention;
fig. 4 is an exploded view of the charger body according to the present invention;
FIG. 5 is a schematic structural view of the elastic clip component of the present invention;
fig. 6 is a schematic diagram of the circuit module connection of the present invention;
fig. 7 is a schematic connection diagram of a circuit module of the main body of the charger of the present invention;
fig. 8 is a schematic diagram of the connection of the circuit modules of the charger main body according to the present invention.
The reference numerals and names in the figures are as follows:
the charger comprises a charger main body 10, a charger main body 20, a charger housing 11, a power control unit 12, a power storage unit 13, a power input unit 14, a power output unit 15, an elastic clamping part 16, a charger housing 21, a charging control unit 22, a power plug 23, a charging output unit 24, a clamping slot 25, a slot 111, a limit boss 112, a U-shaped filling part 113, a sliding chute 114, a sliding hole 115, a charging accommodating groove 116, a power supply accommodating groove 117, a power control circuit 121, an electricity quantity display module 122, a key 123, a first power input interface 141, a second power input interface 142, a power supply data line 151, a power output interface 152, a wireless charging module 153, a toggle clamping block 161, a reset spring 162, a plugging strip 211, a U-shaped plugging part 212, a U-shaped decorating part 213, a charging data line 241, a first charging output interface 242, a second charging output interface 161243, a toggle part 1, A sliding part 1612 and a clamping part 1613.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1 to 8, in an embodiment of the present invention, a flexibly combined mobile power supply includes a charger main body 10 and a charger main body 20 matched with the charger main body 10, where the charger main body 10 includes a charger housing 11, a power control unit 12 disposed in the charger housing 11, an electricity storage unit 13 disposed in the charger housing 11 and electrically connected to the power control unit 12, a power input unit 14 disposed on a surface of the charger housing 11 and electrically connected to the control unit, and a power output unit 15 disposed on a surface of the charger housing 11 and electrically connected to the control unit; the charger main body 20 includes a charger housing 21, a charging control unit 22 provided in the charger housing 21, a power plug 23 provided on a surface of the charger housing 21 and electrically connected to the charging unit, and a charging output unit 24 provided on a surface of the charger housing 21 and electrically connected to the charging unit; the charging output unit 24 is provided with a charging data line 241, and the power input unit 14 is provided with a first power input interface 141 matched with the charging data line 241; a transverse slot 111 is arranged at the upper end of the charger housing 11, and an inserting strip 211 matched with the slot 111 in a sliding manner is arranged at the lower end of the charger housing 21; the upper end of the charger housing 11 is also provided with an elastic clamping component 16, and the lower end of the charger housing 21 is provided with a clamping slot 25 clamped in the elastic clamping component 16.
In the above technical solution, the charger baby housing 11 is provided with the horizontal slot 111, which is in sliding fit with the insertion strip 211 at the lower end of the charger housing 21, so that the charger baby main body 10 and the charger main body 20 can realize a sliding connection relationship; an elastic clamping part 16 is arranged on the charger housing 11 and is positioned and clamped with a clamping groove position 25 at the lower end of the charger housing 21, so that the detachable positioning combination connection relationship between the charger main body 10 and the charger main body 20 is completed; the charger main body 20 is provided with a charging data line 241 which is matched with the first power input interface 141 of the charger main body 10, so that the transmission of electric quantity is completed; in the middle of practical application, the user can carry out the charging of separate mode with treasured main part 10 and the charger main part 20 that charges according to different situation, also can carry out charging of integrated mode with treasured main part 10 and the charger main part 20 that charges, when going out to carry, can dismantle charger main part 20, carries treasured main part 10 that charges alone, also can carry charger main part 20 and treasured main part 10 that charges in the same place, has improved portable power source's nimble use degree greatly.
As further shown in fig. 2 and 4, the upper end of the charger case 11 is provided with a limiting boss 112, the insertion slot 111 is arranged at the front side and the rear side of the limiting boss 112, the lower end of the charger case 21 is provided with a U-shaped plug-in 212 matched with the side of the limiting boss 112, and the insertion strip 211 is arranged at the front and rear positions of the inner wall of the U-shaped plug-in 212; in this technical scheme, through adopting the structure of spacing boss 112 and U-shaped plug-in components 212, can make slot 111 and cutting 211 after sliding connection, precious shell 11 and charger shell 21 are difficult for being pulled out charging, have improved precious shell 11 and charger shell 21's firm in connection degree that charges.
As further shown in fig. 1, 2 and 4, a U-shaped decoration 213 attached to the U-shaped insert 212 is disposed at the lower end of the charger housing 21, a U-shaped filling piece 113 attached to the side of the limiting boss 112 is disposed at the upper end of the charger, the U-shaped decoration 213 and the U-shaped insert 212 are both matched with the U-shaped filling piece 113, and a matching surface of the U-shaped decoration 213 and the U-shaped insert 212 matched with the U-shaped filling piece 113 is in an arc shape; in this technical scheme section, fill up piece 113 through setting up U-shaped decoration 213 and U-shaped, can make the position between precious shell 11 and the charger shell 21 that charges play smooth linking effect, improved holistic pleasing to the eye effect, and U-shaped fills up piece 113 and has still played the positioning action, guarantee charger main part 20 and the precious main part 10 that charges and slide to insert the back that closes, the butt joint that elastic clamping part 16 and joint trench 25 can be accurate can play the effect of rapid Assembly and dismantlement.
As further shown in fig. 2-5, the elastic clamping component 16 includes a toggle clamping block 161 and a return spring 162, a sliding groove 114 is disposed on the position of the limiting boss 112 corresponding to the U-shaped filling member 113, a spring groove (not shown) is disposed at the bottom of the sliding groove 114, a sliding hole 115 communicated with the sliding groove 114 is disposed on a side portion of the U-shaped filling member 113, the toggle clamping block 161 includes a toggle portion 1611, a sliding portion 1612 and a clamping portion 1613, the sliding portion 1612 is integrally formed between the toggle portion 1611 and the clamping portion 1613, the sliding portion 1612 is in up-and-down sliding fit with the sliding hole 115, the clamping portion 1613 is movably disposed on the sliding groove 114, and the toggle portion 1611 is located on the outer side of the charger housing 11; the return spring 162 is arranged in the spring groove, and the return spring 162 is in abutting fit with the shifting block; in the technical scheme, by arranging the toggle fixture block 161 and the reset spring 162, the toggle fixture block 161 is arranged to be a structure of a toggle part 1611, a sliding part 1612 and a clamping part 1613, the toggle part 1611 is exposed to the outside and used for manually pressing to push the toggle fixture block 161 to slide, the sliding part 1612 is in sliding fit with the sliding hole 115 to control the up-and-down moving position of the clamping part 1613, when a hand is loosened, the toggle fixture block 161 is upwards lifted by resilience of the reset spring 162 to clamp the clamping slot 25 to realize positioning fit of the charger main body 10 and the charger main body 20, and when the charger main body 20 needs to be disassembled, the toggle part 1611 is pressed downwards to separate the clamping slot 25 from the clamping slot 1613, so that the charger main body 20 can be pushed out along the sliding groove 114; thereby realizing a convenient and fast disassembling and assembling mode; the use flexibility of the mobile power supply is improved.
As further shown in fig. 3, a charging receptacle 116 surrounding the side and bottom of the charger housing 11 is disposed on the charger housing 11, the first power input interface 141 is disposed at one end of the charging receptacle 116, the other end of the charging receptacle 116 extends to be in butt joint with the charger housing 21, and the charging data line 241 is wound in the charging receptacle 116 along the other end of the charging receptacle 116 and is just in butt joint with the first power input interface 141; the regular placement of the charging data line 241 is realized, and the attractive effect and the compact structure degree of the mobile power supply are improved.
As further shown in fig. 1, 2, 3 and 7, the power control unit 12 includes a power control circuit 121 disposed inside the power pack case 11, a power display module 122 disposed on the front side of the power pack case 11 and electrically connected to the power control circuit 121, and a button 123 disposed on the front side of the power pack case 11 and electrically connected to the power control circuit 121.
As further shown in fig. 2 and 7, the power input unit 14 is further provided with a second power input interface 142, and the second power input interface 142 is arranged at the upper end of the charger baby housing 11; by providing the second power input interface 142 and disposing the second power input interface 142 on the upper end of the charger main body case 11, the charger main body 10 can be charged by another charger even after being separated from the charger main body 20.
As further shown in fig. 2, 3 and 7, the power output unit 15 is provided with a power supply data line 151, a power output interface 152 and a wireless charging module 153, the casing 11 of the power bank is further provided with a power supply accommodating groove 117 surrounding the side and the bottom of the casing 11 of the power bank, the power supply data line 151 is arranged in the power supply accommodating groove 117, the power output interface 152 is arranged at the upper end of the casing 11 of the power bank, and the wireless charging module 153 is arranged at the rear side of the casing 11 of the power bank; in the above technical solution, the power supply data line 151 is used by a user who does not carry a data line, and the power output interface 152 is used by a user who carries a data line or a user who needs to use a longer data line; the wireless charging module 153 is used for charging the electric equipment with the wireless charging function, and by the above technical means, an effect of flexibly using a plurality of charging modes can be achieved.
As further shown in fig. 1 and 8, the charging output unit 24 is further provided with a first charging output interface 242 and a second charging output interface 243, and the first charging output interface 242 and the second charging output interface 243 are both disposed on the same surface of the charger housing 21; the charger main body 20 can be connected with other data lines for charging, so that the utilization rate of the charger main body 20 is improved; in the above technical solution, specification and model numbers of the first power input interface 141, the second power input interface 142, the charging data line 241, the power supply data line 151, the power output interface 152, the first charging output interface 242, and the second charging output interface 243 are determined according to actual situations; to further describe the specification and model of the device, the present application will be further illustrated by the following examples;
preferably, the first power input interface 141 and the second power input interface 142 adopt Type-c input interfaces, the charging data line 241 and the power supply data line 151 both adopt a combination with a Type-c connector and an apple connector, the power output interface 152 and the first charging output interface 242 both adopt USB-a output interfaces, and the second charging output interface 243 adopts a Type-c output interface.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (9)

1. A flexible combined mobile power supply comprises a charger main body and a charger main body matched with the charger main body, and is characterized in that,
the power pack main body comprises a power pack shell, a power control unit arranged in the power pack shell, an electricity storage unit arranged in the power pack shell and electrically connected to the power control unit, a power input unit arranged on the surface of the power pack shell and electrically connected to the control unit, and a power output unit arranged on the surface of the power pack shell and electrically connected to the control unit;
the charger main body comprises a charger shell, a charging control unit arranged in the charger shell, a power plug arranged on the surface of the charger shell and electrically connected with the charging unit, and a charging output unit arranged on the surface of the charger shell and electrically connected with the charging unit;
the charging output unit is provided with a charging data line, and the power input unit is provided with a first power input interface matched with the charging data line;
a transverse slot is formed in the upper end of the charger shell, and an inserting strip matched with the slot in a sliding mode is arranged at the lower end of the charger shell; the charger is characterized in that an elastic clamping component is further arranged at the upper end of the charger shell, and a clamping groove which is clamped in the elastic clamping component is formed in the lower end of the charger shell.
2. The flexibly combined mobile power supply of claim 1, wherein the upper end of the charger case is provided with a limit boss, the slots are arranged at the front side and the rear side of the limit boss, the lower end of the charger case is provided with a U-shaped plug-in component matched with the side of the limit boss, and the plug strip is arranged at the front and rear positions of the inner wall of the U-shaped plug-in component.
3. The flexibly combined mobile power supply according to claim 2, wherein a U-shaped decoration attached to the U-shaped plug-in unit is disposed at a lower end of the charger housing, a U-shaped filling unit attached to a side of the limit boss is disposed at an upper end of the charger, the U-shaped decoration and the U-shaped plug-in unit are both fitted to the U-shaped filling unit, and a fitting surface of the U-shaped decoration and the U-shaped plug-in unit fitted to the U-shaped filling unit is arc-shaped.
4. The flexible combined mobile power supply according to claim 3, wherein the elastic clamping component comprises a shifting clamping block and a return spring, a sliding groove is formed in the position, corresponding to the U-shaped filling piece, of the limiting boss, a spring groove is formed in the bottom of the sliding groove, a sliding hole communicated with the sliding groove is formed in the side portion of the U-shaped filling piece, the shifting clamping block comprises a shifting portion, a sliding portion and a clamping portion, the sliding portion is integrally formed between the shifting portion and the clamping portion, the sliding portion is in up-and-down sliding fit with the sliding hole, the clamping portion is movably arranged on the sliding groove in a penetrating mode, and the shifting portion is located on the outer side of the charger baby shell; the reset spring is arranged in the spring groove and is in butt joint and matching with the shifting block.
5. The portable power supply of claim 1, wherein the charger baby housing is provided with a charging receptacle groove surrounding the side portion and the bottom portion of the charger baby housing, the first power input interface is disposed at one end of the charging receptacle groove, the other end of the charging receptacle groove extends to be in butt joint with the charger housing, and the charging data line is wound in the charging receptacle groove along the other end of the charging receptacle groove and is just in butt joint with the first power input interface.
6. The portable power supply of claim 1, wherein the power control unit comprises a power control circuit disposed in the power pack housing, a power display module disposed at a front side of the power pack housing and electrically connected to the power control circuit, and a button disposed at the front side of the power pack housing and electrically connected to the power control circuit.
7. The flexibly combined mobile power supply of claim 1, wherein the power input unit is further provided with a second power input interface, and the second power input interface is disposed at an upper end of the charger baby housing.
8. The mobile power supply of claim 1, wherein the power output unit is provided with a power supply data line, a power output interface, and a wireless charging module, the power supply housing groove surrounding the side portion and the bottom portion of the casing of the portable charger is further provided on the casing of the portable charger, the power supply data line is disposed in the power supply housing groove, the power output interface is disposed at the upper end of the casing of the portable charger, and the wireless charging module is disposed at the rear side of the casing of the portable charger.
9. The flexibly combined mobile power supply of claim 1, wherein the charging output unit further comprises a first charging output interface and a second charging output interface, and the first charging output interface and the second charging output interface are both disposed on a same surface of the charger housing.
CN202120972180.5U 2021-05-08 2021-05-08 Nimble combination formula portable power source Expired - Fee Related CN214798973U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120972180.5U CN214798973U (en) 2021-05-08 2021-05-08 Nimble combination formula portable power source

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120972180.5U CN214798973U (en) 2021-05-08 2021-05-08 Nimble combination formula portable power source

Publications (1)

Publication Number Publication Date
CN214798973U true CN214798973U (en) 2021-11-19

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Application Number Title Priority Date Filing Date
CN202120972180.5U Expired - Fee Related CN214798973U (en) 2021-05-08 2021-05-08 Nimble combination formula portable power source

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117175744A (en) * 2023-10-11 2023-12-05 广东力德诺电子科技有限公司 High-power treasured that charges is used in travel

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117175744A (en) * 2023-10-11 2023-12-05 广东力德诺电子科技有限公司 High-power treasured that charges is used in travel
CN117175744B (en) * 2023-10-11 2024-03-29 广东力德诺电子科技有限公司 High-power treasured that charges is used in travel

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Granted publication date: 20211119