• Solar Geyser Thermal Controllers PC1600F Series Solar Charge Controller System 1
  • Solar Geyser Thermal Controllers PC1600F Series Solar Charge Controller System 2
  • Solar Geyser Thermal Controllers PC1600F Series Solar Charge Controller System 3
Solar Geyser Thermal Controllers PC1600F Series Solar Charge Controller

Solar Geyser Thermal Controllers PC1600F Series Solar Charge Controller

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Loading Port:
China Main Port
Payment Terms:
TT or LC
Min Order Qty:
-
Supply Capability:
10000 unit/month

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Product Description:

 

Features:

45A/60A MPPT Solar charge controller

PV input :145V Max

12V/24V/36V/48V auto work

MPPT efficiency>99%,Peak conversion efficiency >98%

DSP processors technology ensure high speed and performance

Four-stages charging mode

Protection: PV array short circuit , PV reverse polarity , Battery reverse polarity , Over charging , Output short circuit

 

 

Model

PC1600-1

PC1600-2

Battery System Voltage

12V/24V/36V/48 VDC (adjustable)

Charge Input

PV Open Circuit Voltage

Operational max = 145VDC temperature corrected VOC

Max PV Input Power(12V)

600W

800W

Max PV Input Power(24V)

1200W

1600W

Max PV Input Power(36V)

1800W

2400W

Max PV Input Power(48V)

2400W

3200W

Battery Voltage

Nominal Voltage

12VDC/24VDC/36VDC/48VDC

Absorption Voltage

13.5VDC/27.0VDC/40.5VDC/54.0VDC

Refloat Voltage

13.7VDC/27.4 VDC/41.1VDC/54.8VDC

Float Voltage

14.3VDC/28.6 VDC/42.9VDC/57.2VDC

Low Voltage Protection Point

10.5VDC/21.0 VDC/31.5VDC/42.0VDC

DC Output

Output Voltage

11.0~14.3VDC/22.0~28.6VDC/33.0~42.9VDC/44~57.2VDC

Max Charging Current

45A amps continuous @ 40°C ambient

60 amps continuous @ 40°C ambient

Warning for low voltage

11.5VDC/23.0 VDC/34.5VDC/46.0VDC

Cutoff for low voltage

10.5VDC/21.0 VDC/31.5VDC/42.0VDC

Low voltage recovery

11.5VDC/23.0VDC/34.5VDC/46.0VDC

Display

LED indication

Systematic operation, LV indication, LV protection, over charge protection, loads protection, short circuit protection

LCD display

Charge voltage, charge current, voltage of battery, capacity of battery, output current

Alarm

PV array short circuit protection, PV reverser polarity protection

Battery reverse polarity protection, Over charging protection

Output short circuit protection

Low voltage protection for storage battery

General specification

Environmental Rating

Indoor

Charge mode

MPPT, PWM, constant current—constant voltage, function of automatic protection for storage battery

Radiating mode

Fan cooling

Working mode

Four stage: Absorption CC, Absorption CV, Float CC, Float CV.

Peak Conversion efficiency

98%

Environment

Environmental temperature

-25°C ~55°C

Ambient humidity

0--90%,No condensation

Altitude

≤3000m

Dimension

W*H* D(mm)/G.W(kg)

167.6*257.1*82.9mm/3kg

390*365*364mm(5pcs/carton)

 Solar Charge Controller  PC1600F SeriesMade

Warrenty

provides a 1~3 year limited warranty (“Warranty”) against defects in materials and workmanship for its Uninterruptible power supply, Power inverter/chargers, Solar charge controllers, Battery Products (“Product”).

The term of this Warranty begins on the Product(s) initial purchase date, or the date of receipt of the Product(s) by the end user, whichever is later. This must be indicated on the invoice, bill of sale, and/or warranty registration card submitted to MUST-Solar. This Warranty applies to the original MUST-Solar Product purchaser, and is transferable only if the Product remains installed in the original use location.

 

FAQ:

Q1. What is the voltage?
A1. Our 45/60A solar charge controller is 12/24/36/48V auto work.

 

Q2. What is the difference between MPPT&PWM?
A2. MPPT has higher efficiency, it can track the max power point and won't waste energy.

 

Q3. What is the efficiency of the MPPT controller?

A3. MPPT>99%, peak conversion efficiency>98%.

 

Q4. What is the waranty of product?
A4. 12 months.

 

Q5. What protection does your MPPT controller have?

A5. PV array short circuit, PV reverse polarity, Battery reverse polarity, Over charging, Output short circuit.




Q:What is the maximum load power a solar controller can handle?
The maximum load power that a solar controller can handle depends on the specific model and specifications of the controller. It can range from a few hundred watts to several kilowatts, depending on the controller's design and capabilities.
Q:How to adjust the solar controller
Solar controller mode: 1, pure light control mode: when there is no sunlight, the light intensity dropped to the starting point, the controller delay 10 minutes to confirm the start signal, according to set the parameters to open the load, the load began to work; when there is sunlight , The light rises to the start point, the controller delay 10 minutes to confirm the closure of the signal after the closure of the output, the load stops working.
Q:Can a solar controller be used with solar-powered indoor security systems?
Yes, a solar controller can be used with solar-powered indoor security systems. A solar controller is responsible for managing and regulating the power coming from the solar panels to the connected devices or batteries. In the case of solar-powered indoor security systems, a solar controller can be used to ensure that the solar panels generate enough power to keep the security system running efficiently. The solar controller will monitor the power output from the panels and adjust the voltage and current to match the requirements of the security system. This ensures that the system receives a steady and reliable power supply, even during periods of low sunlight or fluctuating weather conditions. So, by using a solar controller, solar-powered indoor security systems can operate effectively and provide continuous surveillance without the need for external power sources.
Q:Can a solar controller be used in harsh weather conditions?
Yes, a solar controller can be used in harsh weather conditions. Solar controllers are designed to withstand various weather conditions including extreme temperatures, high humidity, rain, and snow. They are built with durable materials and protective features to ensure their functionality and longevity even in harsh environments.
Q:Can a solar controller be used with solar panel ground screws?
Yes, a solar controller can be used with solar panel ground screws. A solar controller is responsible for regulating the amount of electricity flowing from the solar panels to the batteries. The use of ground screws to secure the solar panels does not affect the compatibility or functionality of the solar controller.
Q:Can a solar controller be used with solar-powered fans?
Yes, a solar controller can be used with solar-powered fans. A solar controller helps regulate and control the flow of electricity from the solar panels to the fans, ensuring optimal performance and preventing any damage to the fans due to overcharging or voltage fluctuations.
Q:Can a solar controller be used with solar-powered telecommunications systems?
Yes, a solar controller can be used with solar-powered telecommunications systems. A solar controller regulates the charging and discharging of batteries in a solar power system, ensuring optimal performance and protection. This is crucial for solar-powered telecommunications systems as they rely on stored energy to operate during periods of low or no sunlight. By managing the flow of energy, a solar controller helps to maintain the efficiency and longevity of the system's batteries, making it an essential component for reliable and sustainable operation.
Q:Can a solar controller be used with solar-powered outdoor recreational equipment?
Yes, a solar controller can be used with solar-powered outdoor recreational equipment. The solar controller helps regulate the charging and discharging of the batteries in the equipment, ensuring optimal performance and preventing overcharging or damage to the batteries.
Q:How do I maintain a solar controller?
To maintain a solar controller, there are a few key steps that you should follow: 1. Regularly inspect the controller: Check for any signs of damage or wear on the controller itself. Look for loose connections, frayed wires, or any other visible issues. If you notice any problems, address them promptly to prevent further damage. 2. Clean the solar controller: Dust, dirt, and debris can accumulate on the solar controller over time, reducing its efficiency. Use a soft cloth or a brush to gently clean the surface of the controller. Avoid using harsh chemicals or abrasive materials as they may damage the controller. 3. Check the connections: Ensure that all the connections between the solar panels, battery, and load are secure and properly tightened. Loose connections can lead to power loss and inefficiency. If you find any loose or corroded connections, tighten them or replace them if necessary. 4. Inspect the battery: If your solar controller is connected to a battery, regularly check its condition. Monitor the battery voltage and ensure it is within the recommended range. If the battery voltage drops significantly, it may indicate a problem with the controller or the battery itself. 5. Update firmware (if applicable): Some solar controllers have firmware that can be updated to improve performance or address any bugs or issues. Check the manufacturer's instructions or website for any available firmware updates and follow the instructions to update the controller if needed. 6. Protect from extreme temperatures: Solar controllers are designed to operate within a specific temperature range. Extreme heat or cold can affect their performance or even damage them. If possible, install the solar controller in a location that offers protection from extreme temperatures. 7. Follow manufacturer's guidelines: Finally, always refer to the manufacturer's guidelines and instructions for specific maintenance recommendations for your solar controller model. Different controllers may have unique maintenance requirements, so it's essential to follow the manufacturer's guidelines to ensure proper care and longevity of your solar controller.
Q:What is the maximum temperature range for a solar controller?
The maximum temperature range for a solar controller typically varies depending on the specific model and manufacturer. However, most solar controllers have a maximum temperature range of around -30°C to 60°C (-22°F to 140°F).

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