GROADA-DC1000V-200KW-R直流充电负载组
GROADA-DC1000V-200KW-R DC Charging Load_Shenzhen Guang Lu Da Electronics Co., Ltd. is a high-tech en...
| 额定功率 | 0-6KW | 0-30KW | 0-60KW | 0-100KW | 0-200KW | 0-400KW | 0-500KW | 0-1000KW |
| 尺寸(宽*深*高mm) | 480*600*277 | 500*750*1000 | 600*850*1000 | 600*850*1400 | 700*1000*1650 | 1100*1400*1700 | 1100*1400*1800 | 1500*1800*2000 |
| 重量 | 25公斤 | 80公斤 | 130公斤 | 180公斤 | 250公斤 | 550公斤 | 650公斤 | 1100公斤 |
| 输入电流 | 0-30A | 0-45A | 0-90A | 0-150A | 0-3:00 | 0-600A | 0-750A | 0-1500A |
| 力量 | PF=1.0 | |||||||
| 整体精度 | 3%(其他精度要求可根据要求定制) | |||||||
| 控制模式 | 本地手动/远程主机(本地手动控制模式:断路器/按钮/触摸屏三路可选,其他方法可根据需要定制) | |||||||
| 远程接口 | RS232/RS485/USB/RJ45/CAN/GPIB(其他接口模式可根据要求定制) | |||||||
| 保护功能 | 紧急停机保护、超温保护、风机负载联锁保护、接地保护(选择过压保护、过流保护、短路保护、风机超负荷、风量不足) | |||||||
| 显示精度 | 0.5级(其他显式精度可根据要求定制 | |||||||
| 显示参数 | 电压、电流、功率、频率、功率因数等。(其他显式方法可根据要求定制) | |||||||
| 冷肯定的方式 | 向前和向外 | 侧进风口和上出风口(其他出风口方式可根据要求定制) | ||||||
| 保护级别 | IP20(其他防护等级可根据要求定制) | |||||||
| 外观颜色 | RAL7035(其他颜色可根据要求定制) | |||||||
| 工作温度 | -10 ℃ ~ 55 ℃ | |||||||
| 相对湿度 | ≤95%相对湿度 | |||||||
| 高度 | ≤2500米 | |||||||
随着全球电动汽车(EV)的加速普及,对可靠高效的电动汽车充电基础设施的需求也在加剧。确保充电站的性能和安全至关重要。GROADA-AC220V-60KW-R充电桩负载组成为这一努力的关键工具,为模拟现实负载条件和验证电动汽车充电设备的运行完整性提供了一个强大的解决方案。
额定功率:60千瓦
输入电压:交流220V,50Hz
负载类型:抵抗
负荷调整:手动和远程控制选项
保护特性:过载、超温和短路保护
显示: High-precision LCD meters for voltage, current, power, and power factor
Construction: Durable steel enclosure with IP67 protection rating
冷却系统: Efficient heat dissipation design
The load bank's ability to emulate various load conditions allows for comprehensive testing of EV charging stations. By adjusting the load in increments, it replicates the dynamic charging profiles encountered during actual EV charging sessions. This simulation aids in assessing the performance and reliability of charging equipment under different operational scenarios.
Adherence to international standards is crucial for the safety and interoperability of EV charging infrastructure. The GROADA-AC220V-60KW-R Load Bank supports compliance with key standards such as:
IEC 61851: Electric vehicle conductive charging system
SAE J1772: Standard for electrical connectors for electric vehicles
UL 2231-1: Safety standard for protection against electric shock and ground faults in EV charging systems
These standards ensure that charging stations are safe, efficient, and compatible with a wide range of EV models.
The load bank's built-in protection mechanisms safeguard both the testing equipment and the charging station under test. Features like overload, over-temperature, and short-circuit protection prevent potential damage during testing, ensuring the longevity and reliability of both the load bank and the charging infrastructure.
For manufacturers and developers, the load bank serves as an invaluable tool in the R&D phase. It allows for the evaluation of new charging technologies, the optimization of charging algorithms, and the identification of potential issues before deployment. This proactive approach accelerates innovation and enhances the quality of EV charging solutions.
The integration of load banks like the GROADA-AC220V-60KW-R into the testing protocols of EV charging stations aligns with the industry's shift towards stringent safety and performance standards. Governments and regulatory bodies are increasingly mandating regular testing and certification of charging infrastructure to ensure public safety and grid stability. By adopting such testing solutions, stakeholders can demonstrate compliance, mitigate risks, and contribute to the development of a robust EV charging ecosystem.
The GROADA-AC220V-60KW-R Charging Pile Load Bank stands as a testament to the industry's commitment to quality, safety, and innovation in EV charging infrastructure. Its advanced features, coupled with adherence to international standards, make it an indispensable tool for manufacturers, developers, and operators aiming to deliver reliable and efficient EV charging solutions. By investing in such testing equipment, stakeholders not only ensure the optimal performance of their charging stations but also contribute to the broader goal of sustainable and safe electric mobility.