Battery Charger


Product Overview :
The LRCD series battery charger converts AC input into adjustable DC voltage and current for battery charging. It achieves peak charging efficiency ≥96% with customizable charging power. Compatible with lithium-ion, sodium-ion, lead-acid, vanadium flow, zinc-bromine flow batteries and many other storage batteries. Adopting digital DSP control and multi-protection design, it supports remote monitoring. It delivers fast charging and strong compatibility, providing safe, stable and intelligent charging solutions for energy storage batteries.
Technical Features:
1.High Charging Efficiency & Customizable Power:
Max charging efficiency ≥96%, charging power can be customized for fast charging.
2.Wide Battery Compatibility:
Suitable for lithium, sodium-ion, lead-acid, vanadium flow, zinc-bromine flow batteries and various storage batteries.
3.Digital High-precision Control:
DSP digital processor for high-precision control. Voltage regulation accuracy ±1%FS, dynamic response ≤50ms, voltage ripple ≤3%.
4.Multi-level Safety Protection:
Overvoltage, overcurrent and over-temperature protection. It cuts off output and triggers alarms automatically for easy fault diagnosis and maintenance.
5.Wide Adjustable Output Voltage:
Output voltage 50~1000V, customizable voltage range to match different battery specifications.
6.Remote Monitoring Function:
Equipped with RS485/RS232/TCP/IP communication interfaces for remote status monitoring.
Typical applications:
Energy storage battery charging, industrial manufacturing, consumer electronics, medical equipment, scientific research, battery formation and maintenance testing.Energy storage battery charging, industrial manufacturing, consumer electronics, medical equipment, scientific research, battery formation and maintenance testing.




Electrical Schematic Diagram - Two-level Boost or Buck Topology


Electrical Schematic Diagram - Two-level Boost or Buck Topology


Electrical Schematic Diagram - Three-level Buck-Boost Topology


Electrical Schematic Diagram - Three-level Buck-Boost Topology


Typical Application Topology Diagram--- DCDC*n + PCS*1


Technical Parameters and Selection


