CN208570347U - Offline energy module and electronic equipment - Google Patents
Offline energy module and electronic equipment Download PDFInfo
- Publication number
- CN208570347U CN208570347U CN201820960307.XU CN201820960307U CN208570347U CN 208570347 U CN208570347 U CN 208570347U CN 201820960307 U CN201820960307 U CN 201820960307U CN 208570347 U CN208570347 U CN 208570347U
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- Prior art keywords
- bottom plate
- circuit board
- plate
- offline
- energy module
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E60/00—Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
- Y02E60/13—Energy storage using capacitors
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Abstract
The utility model discloses a kind of offline energy module and electronic equipment, the offline energy module includes bracket and the circuit board that is installed on bracket;It is provided with several pads on circuit board, is welded with super capacitor on wherein at least one pad;Conducting wire is printed on circuit board, each pad is electrically connected by conducting wire, forms supercapacitive cell so that each super capacitor to be connected in parallel;The both ends of circuit board are each provided with an inserted terminal, and inserted terminal is electrically connected with the output end of supercapacitive cell, the electric energy exported for exporting supercapacitive cell by output end.The offline energy module can need to weld super capacitor on the pad of different number according to supercapacitive cell capacity configuration, realize different supercapacitive cell capacity, when needing to change supercapacitive cell capacity, the purpose of change supercapacitive cell capacity can be realized by increasing and decreasing or replacing super capacitor in number of pads limits, so as to be suitable for the ultracapacitor configurations of different capabilities, to adapt to requirement of the distinct electronic apparatuses to energy-storage units.
Description
Technical field
The utility model relates to capacitor and its application more particularly to a kind of offline energy modules and electronic equipment.
Background technique
Energy-storage units are an indispensable parts in electronic equipment, and different electronic equipments needs the energy storage list of different capabilities
Member, and traditional energy-storage units capacity once it is determined that, to change that capacity is very inconvenient again, different capacity can not be suitable for and be matched
It sets.Meanwhile its inside of different electronic equipments is that space size that energy-storage units are reserved also is not quite similar, to the ruler of energy-storage units
Very little size has different requirements, this causes different electronic equipments to need the energy-storage units of different sizes, cannot achieve mark
Standardization, product reliability are low.Furthermore the energy-storage units of conventional electronic devices are not using modularized design, and reliability is low, and works as
Energy-storage units may need integral replacing when breaking down, inconvenient maintenance and at high cost.
Utility model content
The utility model main purpose is, a kind of offline energy module and electronic equipment is provided, to solve existing energy storage
Unit can not be suitable for the problem of different capacity configurations.
A kind of offline energy module, including bracket and the circuit board being installed on the bracket;
It is provided with several pads on the circuit board, is welded with super capacitor on wherein at least one pad;
Conducting wire is printed on the circuit board, each pad is electrically connected by the conducting wire, and each super capacitor is connected in parallel on one
Play composition supercapacitive cell;
The both ends of the circuit board are each provided with an inserted terminal, the output of the inserted terminal and the supercapacitive cell
End electrical connection, the electric energy exported for exporting the supercapacitive cell by the output end;
The circuit board is strip, and several pads are arranged in a row pad along the length direction of the circuit board;
The bracket includes bottom plate and the mounting plate that is mounted on the bottom plate, the mounting plate perpendicular to the bottom plate,
The circuit board is mounted on the mounting plate, and straight line parallel is in the bottom plate, the row pad where the row pad
In the distance of bottom base plate described in the distance between each pad and the row pad pitch be all larger than 5 millimeters.
Further, the bottom plate includes left bottom plate and right bottom plate, and the left bottom plate and the right bottom plate are located at same water
Flat height, the left end of the mounting plate are mounted on the left bottom plate, and the right end of the mounting plate is mounted on the right bottom plate;
The bracket further includes left support plate and right support plate, and the left support plate is perpendicular to the left bottom plate and the peace
Loading board, and connecting with the left end of the left bottom plate and the mounting plate, the right support plate is perpendicular to the right bottom plate and described
Mounting plate, and connect with the right end of the right bottom plate and the mounting plate.
Further, open up that there are two the first threaded holes on the left bottom plate and the right bottom plate respectively.
Further, the left end of the mounting plate and right end offer second threaded hole respectively, and the circuit board is logical
It crosses two and matches the screw used with two the second threaded holes on the mounting plate respectively and be mounted on the mounting plate.
Further, the bracket is integrally formed.
Further, protection circuit, the protection circuit and supercapacitive cell electricity are provided on the circuit board
Connection, for protecting the supercapacitive cell.
Further, the inserted terminal is golden finger.
A kind of electronic equipment, including power module and late-class circuit, the power module are electrically connected with the late-class circuit,
It can power for the late-class circuit, further include offline energy module as described above, wherein the one of the offline energy module
A inserted terminal is electrically connected with the power module and the late-class circuit, and the power module can be by the inserted terminal to described
Supercapacitive cell charging in offline energy module, which can be by the inserted terminal to the late-class circuit
Power supply.
Compared with prior art, offline energy module provided by the utility model, is provided with several pads on circuit boards,
So as to weld super capacitor on the pad of different number according to supercapacitive cell capacity configuration needs, different surpass is realized
Grade capacitor cell capacity, when needing to change supercapacitive cell capacity, by increasing and decreasing or replacing super in number of pads limits
The purpose for changing supercapacitive cell capacity can be realized in capacitor, so as to be suitable for the ultracapacitor configurations of different capabilities,
To adapt to requirement of the distinct electronic apparatuses to energy-storage units.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of circuit board in offline energy module provided by the embodiment of the utility model;
Fig. 2 is the structural schematic diagram of bracket in offline energy module provided by the embodiment of the utility model;
The equivalent circuit structure schematic diagram of circuit board when Fig. 3 is unwelded super capacitor;
Fig. 4 is the equivalent circuit structure schematic diagram that each pad solder has circuit board after super capacitor;
Fig. 5 is the electrical block diagram of electronic equipment provided by the embodiment of the utility model;
The structural schematic diagram of circuit board when Fig. 6 is unwelded super capacitor.
Specific embodiment
For the purpose of this utility model, technical solution and advantage is more clearly understood, below with reference to embodiment and attached drawing,
The utility model is described in further detail.
In conjunction with shown in Fig. 1 to Fig. 6, an embodiment of the present invention provides a kind of offline energy module, the offline energy
Module includes bracket 1 and the circuit board 2 that is installed on bracket 1.
It is provided with several pads 21 on circuit board 2, is welded with super capacitor 22 on wherein at least one pad 21.Super electricity
Hold alias electrochemical capacitor.Conducting wire is printed on circuit board 2, each pad 21 is electrically connected by conducting wire, simultaneously by each super capacitor 22
It is linked togather composition supercapacitive cell.Supercapacitive cell capacity can be changed by changing 22 quantity of super capacitor of welding,
Output voltage without changing supercapacitive cell.
The both ends of circuit board 2 are each provided with an inserted terminal 23,24 electricity of output end of inserted terminal 23 and supercapacitive cell
Connection passes through the electric energy that output end 24 exports for exporting supercapacitive cell.When needing to connect supercapacitive cell, it is only necessary to
Any one inserted terminal 23 is connected, to reduce the difficulty when assembling includes the electronic equipment of the offline energy module
Degree.Inserted terminal 23 can be golden finger or the connecting pin of other forms.
Circuit board 2 is strip, and several pads 21 are arranged in a row pad 21 along the length direction of circuit board 2.Bracket 1 wraps
The mounting plate 13 for including bottom plate and being mounted on bottom plate, mounting plate 13 are mounted on mounting plate 13 perpendicular to bottom plate, circuit board 2, should
Arrange 21 place straight line parallel of pad in bottom plate, row's pad 21 the distance between each pad 21 and row's pad 21 apart from bottom plate
The distance of bottom is all larger than preset value.In general, the amount of capacity of capacitor and its radius are positively correlated, the radius of capacitor is got over
Greatly, capacity is bigger, and the radius of capacitor is smaller, and capacity is smaller, therefore, the size of the preset value is rationally arranged, and can make each
The super capacitor 22 of a variety of capacity can be welded on pad 21, to realize the supercapacitive cell of different capabilities.The preset value
5 millimeters can be set as, thus the super capacitor of expansible larger capacity.
Bottom plate includes left bottom plate 11 and right bottom plate 12, and left bottom plate 11 and right bottom plate 12 are located at same level height, mounting plate
13 left end is mounted on left bottom plate 11, and the right end of mounting plate 13 is mounted on right bottom plate 12.Bracket 1 further includes left support plate 14
With right support plate 15, left support plate 14 is perpendicular to left bottom plate 11 and mounting plate 13, and the left end with left bottom plate 11 and mounting plate 13
Connection, right support plate 15 are connect perpendicular to right bottom plate 12 and mounting plate 13, and with the right end of right bottom plate 12 and mounting plate 13.It is added
After left support plate 14 and right support plate 15, bracket 1 is whole to have better stability.For the more preferable stability of realization, bracket 1 can be
It is integrally formed.
First threaded hole 16 there are two opening up respectively on left bottom plate 11 and right bottom plate 12, passes through left bottom plate 11 and right bottom plate 12
On the first threaded hole of a total of four 16, the chamber which can be reserved in the electronic device for energy-storage units
In body.According to electronic equipment to the needs and cavity size of energy-storage units capacity, can be installed in cavity it is one or more should be from
Line energy module, to realize energy-storage units capacity regulating in larger scope.
On the mounting means of circuit board 2, second threaded hole can be opened up respectively in the left end of mounting plate 13 and right end
17, circuit board 2 is matched into the screw used with two the second threaded holes 17 on mounting plate 13 respectively by two and is mounted on
In loading board 13.Mounting hole 25 there are two being opened up on circuit board 2, the second spiral shell of one of mounting hole 25 and the left end of mounting plate 13
Pit 17 is corresponding, another mounting hole is corresponding with the second threaded hole 17 of the right end of mounting plate 13.Circuit board 2 is pressed in mounting plate
On 13, and be respectively aligned to two mounting holes 25 and two the second threaded holes 17 on mounting plate 13 on circuit board 2, then from
Two mounting holes 25 are inserted into screw respectively, and screw is screwed in corresponding second threaded hole 17 and is screwed, so that circuit board 2 be pacified
On mounting plate 13.
To protect supercapacitive cell, it can be provided with protection circuit on the circuit board 2, by protection circuit and super capacitor list
Member electrical connection, for protecting supercapacitive cell.
Another embodiment of the utility model provides a kind of electronic equipment, which includes power module 3 and rear class
Circuit 4, power module 3 are electrically connected with late-class circuit 4, can be powered for late-class circuit 4.Meanwhile the electronic equipment further include as
On any one offline energy module, one of inserted terminal 23 of offline energy module and power module 3 and late-class circuit 4
Electrical connection, power module 3 can charge to the supercapacitive cell in offline energy module by the inserted terminal 23, the super electricity
Holding unit can power to late-class circuit 4 by the inserted terminal 23.
On the one hand the electronic equipment can connect external power supply by power module 3 as the power supply of late-class circuit 4, realize electronics
On the other hand the operation of equipment can also be the power supply of late-class circuit 4 by the supercapacitive cell in offline energy module, realize
The operation of electronic equipment, and be supercapacitive cell charging by power module 3.Touch-control display surface can be used in the electronic equipment
Plate can be applicable in smart home, is connected in same local area network by touch-control display panel control with the electronic equipment
Various smart home devices, such as intelligent air condition, intelligent refrigerator, smart television.
Above-described embodiment is only preferred embodiment, the protection scope being not intended to limit the utility model, practical new at this
Made any modifications, equivalent replacements, and improvements etc., should be included in the protection of the utility model within the spirit and principle of type
Within the scope of.
Claims (8)
1. a kind of offline energy module, which is characterized in that including bracket and the circuit board being installed on the bracket;
It is provided with several pads on the circuit board, is welded with super capacitor on wherein at least one pad;
Conducting wire is printed on the circuit board, each pad is electrically connected by the conducting wire, and each super capacitor is connected in parallel group
At supercapacitive cell;
The both ends of the circuit board are each provided with an inserted terminal, the output end electricity of the inserted terminal and the supercapacitive cell
Connection, the electric energy exported for exporting the supercapacitive cell by the output end;
The circuit board is strip, and several pads are arranged in a row pad along the length direction of the circuit board;
The bracket includes bottom plate and the mounting plate that is mounted on the bottom plate, and the mounting plate is described perpendicular to the bottom plate
Circuit board is mounted on the mounting plate, and straight line parallel is each in the bottom plate, the row pad where the row pad
The distance of bottom base plate described in the distance between pad and the row pad pitch is all larger than 5 millimeters.
2. offline energy module as described in claim 1, which is characterized in that the bottom plate includes left bottom plate and right bottom plate, institute
It states left bottom plate and the right bottom plate is located at same level height, the left end of the mounting plate is mounted on the left bottom plate, described
The right end of mounting plate is mounted on the right bottom plate;
The bracket further includes left support plate and right support plate, and the left support plate is perpendicular to the left bottom plate and the installation
Plate, and connect with the left end of the left bottom plate and the mounting plate, the right support plate is perpendicular to the right bottom plate and the peace
Loading board, and connect with the right end of the right bottom plate and the mounting plate.
3. offline energy module as claimed in claim 2, which is characterized in that opened respectively on the left bottom plate and the right bottom plate
If there are two the first threaded holes.
4. offline energy module as claimed in claim 3, which is characterized in that the left end of the mounting plate and right end open up respectively
There is second threaded hole, the circuit board matches use with two the second threaded holes on the mounting plate respectively by two
Screw be mounted on the mounting plate.
5. offline energy module as described in claim 1, which is characterized in that the bracket is integrally formed.
6. offline energy module as described in claim 1, which is characterized in that be provided with protection circuit, institute on the circuit board
It states protection circuit to be electrically connected with the supercapacitive cell, for protecting the supercapacitive cell.
7. offline energy module as described in claim 1, which is characterized in that the inserted terminal is golden finger.
8. a kind of electronic equipment, including power module and late-class circuit, the power module are electrically connected with the late-class circuit, energy
It enough powers for the late-class circuit, which is characterized in that further include the offline energy as described in any claim in claim 1-7
One of inserted terminal of source module, the offline energy module is electrically connected with the power module and the late-class circuit, institute
Stating power module can charge to the supercapacitive cell in the offline energy module by the inserted terminal, the super capacitor list
Member can power to the late-class circuit by the inserted terminal.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201820960307.XU CN208570347U (en) | 2018-06-21 | 2018-06-21 | Offline energy module and electronic equipment |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201820960307.XU CN208570347U (en) | 2018-06-21 | 2018-06-21 | Offline energy module and electronic equipment |
Publications (1)
Publication Number | Publication Date |
---|---|
CN208570347U true CN208570347U (en) | 2019-03-01 |
Family
ID=65487444
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201820960307.XU Active CN208570347U (en) | 2018-06-21 | 2018-06-21 | Offline energy module and electronic equipment |
Country Status (1)
Country | Link |
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CN (1) | CN208570347U (en) |
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2018
- 2018-06-21 CN CN201820960307.XU patent/CN208570347U/en active Active
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