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Power supply for data acquiring module based on super capacitor module

A technology of data acquisition module and supercapacitor module, applied in battery circuit devices, current collectors, electric vehicles, etc., can solve problems such as regular maintenance or replacement, unfavorable long-term use, low-voltage wire interference, etc., to meet the power consumption usage , fast charging and long cycle life

Inactive Publication Date: 2017-12-08
NINGBO JIANGBEI GOFRONT HERONG ELECTRIC
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] According to the needs of use, the terminal of each supercapacitor module is generally equipped with a data acquisition module for collecting the surface temperature of the supercapacitor module. The data acquisition module needs a power supply to supply power to it during work. In the prior art In general, battery power supply or external power supply is used, but (1) if battery power is used, due to the limited power of the battery, regular maintenance or replacement is required, which is not conducive to long-term use; (2) if external power supply is used, it needs to be A large number of power lines are arranged in a large space, and the routing of low-voltage wires between capacitors will be interfered by high-frequency noise generated by capacitors

Method used

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  • Power supply for data acquiring module based on super capacitor module
  • Power supply for data acquiring module based on super capacitor module
  • Power supply for data acquiring module based on super capacitor module

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0023] see figure 1 As shown, it is a schematic structural diagram of the power supply for the data acquisition module based on the supercapacitor module of the present invention.

[0024] Such as figure 1 As shown, a power supply for a data acquisition module based on a supercapacitor module includes a plurality of power generation modules 1, a plurality of energy storage modules 2, a plurality of supercapacitor cells 3 and a module fixing bracket 4, the power generation module 1 Connect with the energy storage module 2 with wires, the module fixing bracket 4 is sleeved outside the supercapacitor monomer 3, the power generation module 1 is arranged between the module fixing bracket 4 and the supercapacitor monomer 3, and In a moving environment, the supercapacitor cell 3 moves freely in the module fixing bracket 4, the power generation module 1 generates a certain amount of electric energy when squeezed, and the energy storage module 2 converts the electric energy It is sto...

Embodiment 2

[0029] The power supply for a data acquisition module based on a supercapacitor module as described above is different from this embodiment in that each of the energy storage modules 2 is composed of several miniature supercapacitors, and the miniature supercapacitors are used as storage Energy medium, its charge and discharge cycle life is more than 100,000 times, the charge retention ability is strong, the leakage is small, and the charge is fast.

Embodiment 3

[0031] The power supply for a data acquisition module based on a supercapacitor module as described above, the present embodiment is different from it in that the calculation formula of the power consumption of the data acquisition module 5 per hour is:

[0032] Q 1 =I×t×n 3

[0033] Among them, Q 1 For the power consumption per hour of the data acquisition module 5, I is the current value for continuous work after the data acquisition module 5 starts, and t is the time for the continuous work, n 3 It is the number of starts per hour of the data acquisition module 5;

[0034] Therefore, the energy storage capacity of each energy storage module 2 per hour satisfies the following calculation formula:

[0035]

[0036] Wherein, C is the energy storage capacity of each energy storage module 2 per hour, Q 1 is the power consumption of the data acquisition module 2 per hour, U 1 is the full voltage value of the energy storage module 2, U 2 is the discharge cut-off voltage ...

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PUM

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Abstract

The invention provides a power supply for a data acquiring module based on super capacitor module. The power supply includes a plurality of power generation modules, a plurality of energy storage modules, a plurality of super capacitor monomers and a module fixing support. The plurality of power generation modules and the plurality of energy storage modules are connected with wires. The module fixing support sleeves outside the super capacitor monomers. The plurality of power generation modules are disposed between the module fixing support and the super capacitor monomers. The super capacitor monomers make free movement inside the module fixing support in a moving environment. The power generation modules generate an amount of electricity upon being pressed. The energy storage modules convert the electricity and saves the electricity for the data acquiring module which is disposed near the power supply of the data acquiring module. According to the invention, the power supply generates electricity by using super capacitor monomers to freely move in the moving environment and pressing the power generation modules, and addresses the problem of power supply of data acquiring modules of super capacitor module terminals.

Description

technical field [0001] The invention relates to the technical field of power supplies, in particular to a power supply for a data acquisition module based on a supercapacitor module. Background technique [0002] According to the needs of use, the terminal of each supercapacitor module is generally equipped with a data acquisition module for collecting the surface temperature of the supercapacitor module. The data acquisition module needs a power supply to supply power to it during work. In the prior art In general, battery power supply or external power supply is used, but (1) if battery power is used, due to the limited power of the battery, regular maintenance or replacement is required, which is not conducive to long-term use; (2) if external power supply is used, it needs to be A large number of power lines are arranged in a large space, and the routing of low-voltage wires between capacitors will be interfered by high-frequency noise generated by capacitors. [0003] ...

Claims

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Application Information

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IPC IPC(8): H02J7/32
CPCH02J7/32H02J7/345
Inventor 洪光毛元奇
Owner NINGBO JIANGBEI GOFRONT HERONG ELECTRIC
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