Energy Storage System PCS Machine Charging Aging Cabinet Customization
Burn-in cabinet structure and Burn-in quantity planning | Trolley size (mm) | L2050*W700*H2050mm (size of a single Burn-in cabinet) |
Number of trolley layers | 4 layers, product area depth 400mm, (12 Burn-in positions per layer) | |
Trolley height | 350mm | |
Trolley structure material/appearance color | 2.0mm thick cold rolled sheet, computer white | |
Load area cooling method | Top turbine exhaust fan top row type (easy to control the ambient temperature) | |
Layer insulation and anti-static method | Epoxy insulation board with heat dissipation holes on the surface | |
Overall burn-in room structure | Adopt mobile Burn-in split cabinet; beautiful appearance and easy to move and combine | |
Introduction to energy recovery module configuration, power of the tested power supply and Burn-in quantity | Energy recovery module control mode | RS485 communication mode, upper computer uses RS232 communication mode |
Install the power module model | CP8102/CP8104 | |
Number of energy-consuming load modules installed | Each layer has 6 4CH modules, and 24 modules need to be installed in the whole burn-in cabinet
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Install the energy recovery module model | CP8401+CP5312(See specification for details) | |
Energy recovery module isolation mode | Electronic load module channel adopts photoelectric isolation (communication and power supply isolation)
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Number of energy recovery modules installed | Three 4CH energy recovery modules are installed on each floor, 12 modules need to be installed in the entire burn-in cabinet, and 6 single-phase 5KW inverter modules need to be installed
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Energy recovery module design architecture | No relay, long-life design scheme (independent intellectual property rights)
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Number of burn-in products in the whole cabinet cabinet | 24 energy storage power supplies with eight DC outputs (50W/100V/5A) and AC outputs (220V/500W) are aged in one cabinet
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