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Micro-source battery pack, and a mini-sized photovoltaic inerter device having safety control function

A technology of micro power supply and battery pack, applied in the direction of battery circuit devices, circuit devices, collectors, etc., can solve problems such as interrupted use, difficult circuits, system damage, etc., and achieve the effects of long service life, non-destructive and low cost

Active Publication Date: 2016-05-18
徐州博创建设发展集团有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] The energy storage battery in the micro photovoltaic inverter device is prone to overheating and damage, which will further cause system damage
[0003] Instant self-test during circuit operation is of great significance to prevent circuit safety problems. There is no instant test method for diodes whose negative pole is connected to the high voltage pole of the power supply in the prior art, that is to say, when the positive pole of a diode is connected to the high voltage pole of the power supply In the case of a sudden open circuit of the diode (due to breakdown, burning, etc.), it is difficult for the circuit to be detected immediately by the self-test circuit or program, which is a huge trouble for the instant detection circuit failure; Adding a fuse to the battery can prevent the battery from being damaged due to excessive current. However, after the fuse breaks, the battery cannot continue to charge and discharge, which damages the vertical capacity of the battery pack. Replacement is carried out during the overall maintenance of the battery pack, which requires interruption of the battery pack as a whole, which is not good for systems that require continuous operation of cached power

Method used

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  • Micro-source battery pack, and a mini-sized photovoltaic inerter device having safety control function

Examples

Experimental program
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Effect test

Embodiment 1

[0047] Implementation example 1, such as figure 1 As shown, the micro-power battery pack is characterized in that it includes a plurality of power storage modules, a control module, an isolation diode D99, a second power point VCC2, a power input point VCC1, a power output point OUT, and a public place;

[0048] In the power storage module: including the input node IN1, the output node IN2, the fuse LF, the second resistor R2, the first resistor R1, the first capacitor C1, the first inductor L1, the first diode D1, the second capacitor C2, the second Second diode D2, third diode D3, zero sampling resistor R20, one sampling resistor R21, switch K1, rechargeable battery BAT, power source GND1, microcontroller PIC12F510, bootstrap node P, sampling node S, light Coupling OC1;

[0049] In the power storage module: the anode of the first diode D1 is connected to the input node IN1, and the cathode of the first diode D1 is connected to the anode of the rechargeable battery BAT via a...

Embodiment 2

[0081] Implementation example 2, a micro-photovoltaic inverter device with safety control, having the battery pack described in implementation example 1.

[0082] The 'user' mentioned in this application can be a human being or an automated device such as a computer, a mechanical system, a self-controlled computer system, an artificial intelligence system, etc.

[0083] What is not described in this description is prior art or common knowledge, so it will not be described in detail.

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PUM

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Abstract

The invention discloses a micro-source battery pack, which comprises a plurality of power storage modules, a control module, an isolation diode, a second power source point, a power source input point, a power source output point, and a public place. Each of the power storage modules comprises an input node, an output node, a fuse, a second resistor, a first resistor, a first capacitor, a first inductor, a first diode, a second capacitor, a second diode, a third diode, a number zero sampling resistor, a number one sampling resistor, a switch, a rechargeable battery, a power source place, a single-chip microcomputer, a bootstrap node, a sampling node, and an optical coupler. The mini-sized photovoltaic inverter device having the safety control function is provided with the above mentioned micro-source battery pack. According to the invention, the costs are low, the application is flexible, the service lifetime is long, the breaking is not easy to occur, and the use is stable and reliable; whether the open circuit of the diode, the anode of which is connected with the high voltage pole of the DC power source, exists can be detected by adopting the electric energy test in the running state of the DC power source, and the open circuit of the fuse can be detected by the bypass in a real-time and reliable manner.

Description

technical field [0001] The invention belongs to the field of applied electronics, and in particular relates to a micro-power battery pack and a micro-photovoltaic inverter device with safety control. Background technique [0002] The energy storage battery in the micro photovoltaic inverter device is prone to overheating and damage, which will further cause system damage. [0003] Instant self-test during circuit operation is of great significance to prevent circuit safety problems. There is no instant test method for diodes whose negative pole is connected to the high voltage pole of the power supply in the prior art, that is to say, when the positive pole of a diode is connected to the high voltage pole of the power supply In the case of a sudden open circuit of the diode (due to breakdown, burning, etc.), it is difficult for the circuit to be detected immediately by the self-test circuit or program, which is a huge trouble for the instant detection circuit failure; Addin...

Claims

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Application Information

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IPC IPC(8): H02J7/00G01R31/02
CPCG01R31/58H02J7/0036
Inventor 聂新明赵新生薛家祥文元美田亚平魏明生聂黎生刘伟
Owner 徐州博创建设发展集团有限公司
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