CN211018304U - Portable power source with auxiliary lighting - Google Patents

Portable power source with auxiliary lighting Download PDF

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Publication number
CN211018304U
CN211018304U CN201921485886.8U CN201921485886U CN211018304U CN 211018304 U CN211018304 U CN 211018304U CN 201921485886 U CN201921485886 U CN 201921485886U CN 211018304 U CN211018304 U CN 211018304U
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pcb
touch module
electrically connected
touch
auxiliary lighting
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CN201921485886.8U
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Chinese (zh)
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刘鸿钧
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Shanghai Hangge Technology Development Co ltd
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Shanghai Hangge Technology Development Co ltd
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Abstract

The application discloses portable power source of area auxiliary lighting, which comprises a housin, be equipped with the battery in the casing, be used for responding to the touch and with touch module that the battery electricity is connected and with what the touch module electricity is connected participates in the subassembly and connects power isolation cabin on the casing, it rotationally connects to participate in the subassembly on the power isolation cabin, still be provided with in the casing and be located the hall effect PCB board of power isolation cabin one side and with the light that the touch module electricity is connected, hall effect PCB board with the touch module electricity is connected, it is provided with magnet on the subassembly to participate in, work as touch module senses the touch, just it rotates extremely with when the power isolation cabin is perpendicular to participate in the subassembly, magnet is kept away from hall effect PCB board, the light is bright. So set up, solved and be difficult to accurately insert portable power source's base pin to the socket and need with the help of the problem of extra illumination when charging portable power source in night or darker environment.

Description

Portable power source with auxiliary lighting
Technical Field
The application relates to the technical field of mobile power supplies, in particular to a mobile power supply with auxiliary lighting.
Background
Along with the rapid development and popularization of mobile intelligent terminals, the utilization rate of electronic devices such as mobile phones, tablet computers and electronic readers is higher and higher, so that people can carry a mobile power supply when going out. And when night or in darker environment, when needing to charge for portable power source, the user is difficult for seeing the socket clearly in the dark surrounds to difficult participating in with portable power source aligns with the socket, need with the help of extra illumination, just can insert portable power source and charge on the socket.
Therefore, how to solve the problem that it is not easy to accurately plug the pins of the mobile power supply into the socket and extra lighting is needed when the mobile power supply is charged at night or in a dark environment becomes an important problem to be solved by those skilled in the art.
SUMMERY OF THE UTILITY MODEL
To overcome the problems in the related art at least to some extent, an object of the present application is to provide a portable power source with auxiliary lighting, which can solve the problem that it is not easy to accurately plug the pins of the portable power source into the socket and additional lighting is needed when the portable power source is charged at night or in a dark environment.
The utility model provides a portable power source of area auxiliary lighting, which comprises a housin, be provided with the battery in the casing, be used for responding to the touch and with touch module that the battery electricity is connected and with the subassembly of participating in that the touch module electricity is connected with connecting power isolation cabin on the casing, it rotationally connects to participate in the subassembly on the power isolation cabin, still be provided with in the casing and be located the hall effect PCB board of power isolation cabin one side and with the light that the touch module electricity is connected, hall effect PCB board with the touch module electricity is connected, participate in and be provided with magnet on the subassembly, work as touch module senses the touch, just participate in the subassembly rotate to with when the power isolation cabin is perpendicular, magnet is kept away from hall effect PCB board, the light is bright.
Preferably, the touch module includes an inductive component for sensing touch and a main PCB electrically connected to the battery, the inductive component is welded to the main PCB and electrically connected to the main PCB, and the main PCB is electrically connected to the hall effect PCB, the pin assembly, and the illumination lamp.
Preferably, a switch type hall sensor for sensing the magnet is arranged on the hall effect PCB, and the switch type hall sensor is electrically connected with the main PCB.
Preferably, an auxiliary PCB is further disposed in the housing, the illumination lamp is disposed on the auxiliary PCB, and the auxiliary PCB is electrically connected to the main PCB.
Preferably, the casing including the epitheca with the inferior valve of epitheca looks lock, the epitheca with the laminating of inferior valve is through ultrasonic instrument butt fusion.
Preferably, the magnet is disposed proximate the trailing end of the prong assembly.
Preferably, an electric quantity indicating lamp is further arranged in the shell and electrically connected with the touch module.
Preferably, the power isolation compartment is mounted on the lower case by screws.
Preferably, the shell is provided with an electric quantity indicating lamp cover and an illuminating lamp cover, and the electric quantity indicating lamp cover and the illuminating lamp cover correspond to the electric quantity indicating lamp and the illuminating lamp respectively.
Preferably, the bottom of the lower shell is provided with a groove for accommodating the pin assembly.
The technical scheme provided by the embodiment of the application can have the following beneficial effects:
the application provides a portable power source of area auxiliary lighting, the user when needs are thrown light, will participate in the subassembly and rotate to perpendicular with the power isolation cabin, make magnet keep away from hall effect PCB board to the position that the staff touch is used for responding to the touch, after touch module received the response variable signal of touch signal and hall effect PCB board transmission simultaneously, the control light was bright, in order to provide the illumination. Satisfy the touch simultaneously promptly and will participate in the subassembly rotate to with the perpendicular two conditions of power isolation cabin when, touch module control light is bright, so set up, the user can control the light as required and go out, has solved and has been difficult to insert portable power source's the accuracy of participating in when charging portable power source in night or dark environment on the socket and need be with the help of the problem of extra illumination.
It is to be understood that both the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the application.
Drawings
The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present application and together with the description, serve to explain the principles of the application.
Fig. 1 is an exploded view of a mobile power supply with auxiliary lighting, shown in accordance with an exemplary embodiment;
FIG. 2 is a partial enlarged view of the mobile power supply with auxiliary lighting shown in accordance with an exemplary embodiment (a schematic view of the installation location of a Hall Effect PCB board);
FIG. 3 is a close-up view of the mobile power supply with supplemental lighting shown in accordance with an exemplary embodiment (a schematic view of the pin assembly being perpendicular to the bottom of the housing);
fig. 4 is a close-up view of the mobile power supply with supplemental lighting shown in accordance with an exemplary embodiment (a schematic view of the pin assembly parallel to the bottom of the housing).
In the figure:
1-lower case, 2-upper case, 3-battery, 4-main PCB, 5-auxiliary PCB, 6-power isolation cabin, 7-Hall effect PCB, 8-pin component, 9-lighting lampshade, 10-electric quantity indicating lampshade, 11-magnet.
Detailed Description
Reference will now be made in detail to the exemplary embodiments, examples of which are illustrated in the accompanying drawings. When the following description refers to the accompanying drawings, like numbers in different drawings represent the same or similar elements unless otherwise indicated. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the present application. Rather, they are merely examples of apparatus consistent with certain aspects of the present application, as detailed in the appended claims.
Referring to fig. 1-4, the present embodiment provides a portable power source with auxiliary lighting, which includes a housing, a battery 3, a touch module, a pin assembly 8, a power isolation compartment 6, a lighting lamp, and a hall effect PCB 7 are disposed in the housing, the pin assembly 8 is rotatably connected to the power isolation compartment 6 and electrically connected to the touch module, so that the pin assembly 8 and the battery 3 are combined and disposed in the same portable power source, thereby directly charging the portable power source and taking the functions of a charger and a power adapter into consideration;
as shown in fig. 2, hall effect PCB board 7 is located one side of power isolation cabin 6, be provided with magnet 11 on the round pin subassembly 8, hall effect PCB board 7 is connected with the touch module electricity, when round pin subassembly 8 is perpendicular with power isolation cabin 6, hall effect PCB board 7 is kept away from to magnet 11, hall effect PCB board 7 can not sense the magnetic field of magnet 11, the response variable signal transmission who will produce is for touch module, and when touch module senses the touch of staff, touch module control light is bright, for the user provides the illumination.
Note that, as shown in fig. 2, the power isolation compartment 6 is parallel to the bottom of the housing.
In this embodiment, the hall effect PCB board 7 is provided with the switch type hall sensor to be used for sensing the magnet 11, and the switch type hall sensor is electrically connected with the touch module through the hall effect PCB board 7, so, be convenient for sense the magnet 11, easily realize the control to the illuminating lamp.
So set up, satisfy the touch simultaneously and will participate in subassembly 8 and rotate to with 6 perpendicular two conditions in power isolation cabin, touch module control light is bright, and the user can control the light as required and go out, has solved and is difficult to insert portable power source's the accuracy of participating in when charging portable power source in night or dark environment on the socket and need be with the help of the problem of extra illumination.
In this embodiment, the touch module includes the main PCB 4 that the response components and parts and be connected with battery 3 electricity, and battery 3 can give main PCB 4 power supply to make main PCB 4 can normally work, and wherein, the welding of response components and parts is on main PCB 4 to be connected with main PCB 4 electricity, in order to be used for responding to touch signal, and give main PCB 4 with touch signal transmission.
It should be noted that the sensing component can be a capacitive touch switch, and has a single chip, few peripheral parts, very simple circuit, no need of an oscillating circuit, simple production process, and satisfactory effect can be obtained only by arranging a board according to a schematic diagram.
In this embodiment, the housing is provided with an area for being touched by a human hand, and the sensing component is located at the area so as to sense the touch signal.
The main PCB 4 is electrically connected with the Hall effect PCB 7, the pin assembly 8 and the illuminating lamp, and the illuminating lamp can be controlled according to the received signals transmitted by the Hall effect PCB 7.
It should be noted that an IC chip (integrated circuit) is welded on the main PCB 4, and here, the switch type hall sensor and the sensing component are both electrically connected to the IC chip, and both can convert the sensed signal into an electrical signal and transmit the electrical signal to the IC chip, and the IC chip implements control according to the received signal.
Wherein, be provided with time value and time-recorder in the main PCB board 4, be provided with time and time-recorder in advance promptly in the IC chip, when participating in subassembly 8 and casing bottom when perpendicular with the response components and parts sense these two conditions of touch signal and satisfy simultaneously, the light is bright, and the time-recorder begins the timing, when the time-recorder timing reaches time value of predetermineeing, main PCB board 4 control light goes out, and like this, can enough control the light bright, be convenient for provide the illumination, can make the light go out after participating in subassembly 8 pegs graft on the socket again, in order to reduce the energy consumption.
Here, the preset time value may be 10 seconds.
Further, as shown in fig. 1, a main PCB 4 is disposed at one side of the battery 3, and a sub PCB 5 electrically connected to the main PCB 4 is further welded at one side of the main PCB 4 away from the battery 3, and the illumination lamp is disposed on the sub PCB 5.
In this embodiment, still weld on main PCB board 4 has the electric quantity pilot lamp, and the electric quantity pilot lamp is connected with the IC chip electricity, senses the touch signal back as response components and parts, gives the IC chip with signal transmission, and IC chip control electric quantity pilot lamp is bright, and the person of facilitating the use knows this portable power source's electric quantity directly perceivedly.
When a human hand touches the touch area and the pin assembly 8 is horizontal to the bottom of the shell, the magnet 11 on the pin assembly 8 is close to the Hall effect PCB 7, the switch type Hall sensor senses the magnetic field of the magnet 11 and feeds back a signal to the IC chip on the main PCB 4, the IC chip controls the electric quantity indicator lamp to be on, and meanwhile, the lighting lamp on the auxiliary PCB 5 is powered off and controlled, so that the lighting lamp cannot work; when the staff was when the touch region touch, and when participating in subassembly 8 and casing bottom perpendicular, participating in magnet 11 on the subassembly 8 and keeping away from hall effect PCB board 7, the unable magnetic field that senses magnet 11 of on-off type hall sensor feeds back the variable signal to the IC chip on main PCB board 4, and IC chip control electric quantity pilot lamp is bright, and the light circular telegram on vice PCB board 5 makes the light be in operating condition simultaneously, even the light is bright.
In some embodiments, as shown in fig. 1, the casing includes an upper casing 2 and a lower casing 1, a groove is provided in the lower casing 1 for placing all components in the mobile power supply with auxiliary lighting, and the upper casing 2 and the lower casing 1 can be fastened to enclose all components in the casing; this epitheca 2 and inferior valve 1 can be in the same place the face of laminating welding through the ultrasonic instrument to increase the holistic intensity of equipment, improved the steadiness that epitheca 2 and inferior valve 1 are connected.
Wherein the power isolation compartment 6 is mounted on the lower case 1 by screws so as to fix the pin assembly 8.
Preferably, to facilitate the induction of the magnetic field of the magnet 11 by the hall effect PCB board 7, the magnet 11 is disposed at the rear end of the prong assembly 8, i.e., the end near the power pod 6, as shown in fig. 3 and 4.
And, the lower casing 1 bottom is provided with the recess that is used for holding participate in subassembly 8, like this, can make participate in when subassembly 8 is in the horizontality with lower casing 1 bottom parallel and level, is convenient for accomodate, avoids the fish tail user when not using to participate in subassembly 8.
In this embodiment, as shown in fig. 1, the housing is further provided with an electric quantity indicating lamp cover 10 and an illuminating lamp cover 9, and the electric quantity indicating lamp cover 10 and the illuminating lamp cover 9 are respectively arranged corresponding to the electric quantity indicating lamp and the illuminating lamp, so as to display the brightness of the electric quantity indicating lamp and the illuminating lamp.
Here, a lighting lamp housing 9 is located on the bottom of the lower case 1 and is disposed adjacent to the pin assembly 8 so as to provide lighting when charging the portable power source at night.
The illuminating lamp and the electric quantity indicating lamp are both luminous patch L ED lamps.
It is understood that the same or similar parts in the above embodiments may be mutually referred to, and the same or similar parts in other embodiments may be referred to for the content which is not described in detail in some embodiments.
Although embodiments of the present application have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting the present application, and that variations, modifications, substitutions and alterations may be made to the above embodiments by those of ordinary skill in the art within the scope of the present application.

Claims (10)

1. A portable power source with auxiliary lighting comprises a shell, wherein a battery (3), a touch module used for sensing touch and electrically connected with the battery (3), a pin assembly (8) electrically connected with the touch module and a power isolation cabin (6) connected with the shell are arranged in the shell, the pin assembly (8) is rotatably connected with the power isolation cabin (6), the portable power source is characterized in that a Hall effect PCB (7) positioned on one side of the power isolation cabin (6) and a lighting lamp electrically connected with the touch module are also arranged in the shell, the Hall effect PCB (7) is electrically connected with the touch module, a magnet (11) is arranged on the pin assembly (8), when the touch module senses touch and the pin assembly (8) rotates to be perpendicular to the power isolation cabin (6), the magnet (11) is far away from the Hall effect PCB (7), and the illuminating lamp is on.
2. The portable power source with auxiliary lighting according to claim 1, wherein the touch module comprises a sensing component for sensing touch and a main PCB (4) electrically connected to the battery (3), the sensing component is soldered on the main PCB (4) and electrically connected to the main PCB (4), and the main PCB (4) is electrically connected to the hall effect PCB (7), the pin assembly (8) and the lighting lamp.
3. The mobile power supply with auxiliary lighting of claim 2, wherein a switch type hall sensor for sensing the magnet (11) is arranged on the hall effect PCB (7), and the switch type hall sensor is electrically connected with the main PCB (4).
4. The mobile power supply with auxiliary lighting according to claim 2, wherein a secondary PCB (5) is further disposed in the housing, the lighting lamp is disposed on the secondary PCB (5), and the secondary PCB (5) is electrically connected with the main PCB (4).
5. The portable power source with auxiliary lighting according to claim 1, wherein the housing comprises an upper housing (2) and a lower housing (1) fastened to the upper housing (2), and the upper housing (2) and the lower housing (1) are attached to each other by ultrasonic welding.
6. The portable power supply with auxiliary lighting according to claim 5, wherein the magnet (11) is disposed near the tail end of the pin assembly (8).
7. The mobile power supply with auxiliary lighting according to claim 1, wherein a power indicator is further disposed in the housing, and the power indicator is electrically connected to the touch module.
8. The portable power supply with auxiliary lighting device according to claim 5, wherein the power isolation compartment (6) is mounted on the lower case (1) by screws.
9. The mobile power supply with auxiliary lighting according to claim 7, wherein a power indicator lamp cover (10) and a lighting lamp cover (9) are disposed on the housing, and the power indicator lamp cover (10) and the lighting lamp cover (9) correspond to the power indicator lamp and the lighting lamp, respectively.
10. The portable power supply with auxiliary lighting device according to claim 5, wherein the bottom of the lower case (1) is provided with a groove for accommodating the pin assembly (8).
CN201921485886.8U 2019-09-05 2019-09-05 Portable power source with auxiliary lighting Active CN211018304U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921485886.8U CN211018304U (en) 2019-09-05 2019-09-05 Portable power source with auxiliary lighting

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921485886.8U CN211018304U (en) 2019-09-05 2019-09-05 Portable power source with auxiliary lighting

Publications (1)

Publication Number Publication Date
CN211018304U true CN211018304U (en) 2020-07-14

Family

ID=71476591

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921485886.8U Active CN211018304U (en) 2019-09-05 2019-09-05 Portable power source with auxiliary lighting

Country Status (1)

Country Link
CN (1) CN211018304U (en)

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