12V 24V 48V USB LCD Intelligent 10A 20A 30A 40A 60A 80A 100A Panel Battery Power PWM MPPT Solar Charge Controller

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Product Description

Basic Information
Model NO.
LCD24
Condition
New
Certification
ISO, CB, CE
Application
Collector Controller, Solar System Controller
Rated Voltage
12V / 24V / 48V
Max Input Voltage
55V/55V/100V
Charging Current
10A
Control Way
PWM
Protection Degree
IP32
Working Temp
-20ºC...+55ºC
Product Description

This Solar Charge-Discharge Controller is designed specifically for off-grid solar systems. It efficiently manages the charging and discharging of the battery, ensuring optimal performance and longevity.

⭐ Intelligent Charging The controller utilizes an optimized process to extend battery life and enhance overall system efficiency.
🛡️ Battery Protection Protects the battery from overcharging and excessive discharging, preventing damage and maximizing lifespan.
⚡ Multiple Amp Options Available in 10A, 20A, and 30A variants to suit specific power requirements.
Technical Parameters
Model LCD2410 LCD2420 LCD2430
System Voltage 12V/24V/48V 12V/24V/48V 12V/24V/48V
Max Charging Current 10A 20A 30A
Low Voltage Cut Off 11V (ADJ: 9...12V)
Floating Charge 13.8V (ADJ: 13V...15V)
Charging Control PWM PWM PWM
Protection Degree IP32 IP32 IP32
Product Display
Certifications & Shipping
Frequently Asked Questions
What is the advantage of a Pure Sine Wave output?
Pure sine wave inverters provide high-quality power identical to the public grid. They have a low repair rate, long lifespan, no harmonic pollution, and protect your sensitive appliances.
Which appliances can this system support?
The system is compatible with household, office, and agricultural appliances, including inductive loads like refrigerators, air conditioners, and water pumps.
What is the difference between Low Frequency and High Frequency?
Low frequency inverters offer superior protection and adaptability to different environments with reliable voltage regulation. High frequency inverters are generally more portable.
Why do I need a power inverter in my solar setup?
An inverter is essential to convert stored battery power (DC) into AC power (220V/230V) which is required by most standard household appliances.
How do I choose the correct system voltage (12V, 24V, or 48V)?
The voltage depends on your battery bank. Higher voltages (like 48V) allow for smaller wiring and more efficient power transmission between the solar panels and the batteries.
Do you provide technical support?
Yes, we offer 24/7 technical after-service consultancy to ensure any operational or technical issues are resolved promptly.

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