Temank 2500W Pure Sine Wave Inverter 12V & MPPT 60A Solar Charge Controller

Temank PowMr 2500W Pure Sine Wave Inverter 12V & MPPT 60A Solar Charge Controller User Manual

Model: 2500W Pure Sine Wave Inverter 12V & MPPT 60A Solar Charge Controller

Brand: Temank

1. Introduction

This manual provides essential information for the safe and efficient operation of your Temank PowMr 2500W Pure Sine Wave Inverter 12V & MPPT 60A Solar Charge Controller. Please read this manual thoroughly before installation and use, and retain it for future reference.

The 2500W Pure Sine Wave Inverter converts 12V DC to 110V AC, providing clean power for sensitive electronics. The integrated 60A MPPT Solar Charge Controller supports 12V/24V/48V auto battery systems and is compatible with lead-acid and lithium batteries. It features an LCD display for real-time data and supports parallel connections for increased system capacity.

2. Safety Information

Important Safety Instructions:

3. Product Features

4. Package Contents

The package includes the following items:

Contents of the Temank 2500W Inverter and MPPT Controller package

Figure 4.1: Package Contents. Shows the inverter, MPPT controller, remote control, battery cables, spare fuses, and user manual.

5. Specifications

FeatureSpecification
Inverter TypePure Sine Wave
Continuous Output Power2500W
Peak Power Rating5000W
DC Input Voltage12V
AC Output Voltage110V
Nominal Efficiency>85%
Charge Controller TypeMPPT
Max Charge Current60A
Battery Voltage (Auto)12V/24V/48V
Battery CompatibilityLead-Acid (SLD, GEL, FLD, AGM), Lithium
Operating Temperature-25°C to 55°C
USB Output5V/2.4A
Parallel CapabilityUp to 12 units (MPPT controllers)

6. Installation and Wiring

Proper installation is crucial for the safe and efficient operation of your solar power system. Follow these steps carefully.

6.1 Mounting the Components

Mount the inverter and MPPT solar charge controller securely on a wall or suitable surface. Ensure adequate space around the units for ventilation.

Temank 2500W Inverter and MPPT 60A Controller mounted on a wall

Figure 6.1: Mounted Inverter and MPPT Controller. Shows the inverter and controller installed on a wooden panel.

6.2 Circuit Breaker Installation

Install appropriate DC circuit breakers for safety. For this setup, two 63A DC air circuit breakers are used: one for the PV input to the controller and one for the controller's charging line to the battery. A 250A molded-case DC breaker is used for the battery-to-inverter discharge line.

6.3 Wiring Connections

Follow the wiring diagrams below for proper connection. Always ensure correct polarity (positive to positive, negative to negative) and secure all connections tightly.

6.3.1 Single Connection Diagram

This diagram illustrates a basic off-grid solar power system setup with one MPPT controller and one inverter.

Single connection diagram for solar charge controller, battery, and inverter

Figure 6.2: Single Connection Diagram. Shows solar panels connected to the MPPT controller, which is connected to a battery, and the battery is connected to the inverter. A load is connected to the inverter.

  1. Connect the solar array to the PV input terminals of the MPPT controller via the PV breaker.
  2. Connect the battery to the battery terminals of the MPPT controller via the battery-side breaker.
  3. Connect the battery to the DC input terminals of the inverter via the 250A DC breaker.
  4. Connect your AC loads to the AC output terminals of the inverter.

6.3.2 Parallel Operation Schematic

For increased capacity, multiple MPPT controllers can be connected in parallel. This schematic shows how to connect multiple controllers to a single battery bank.

Parallel operation schematic for multiple MPPT solar charge controllers

Figure 6.3: Parallel Operation Schematic. Illustrates multiple MPPT controllers connected to separate solar arrays and then combined to charge a single battery pack. Communication cables are also shown for synchronization.

  1. Connect each solar array to its dedicated MPPT controller.
  2. Connect the battery output of each MPPT controller to the common battery pack. Ensure proper sizing of cables and breakers for the combined current.
  3. Connect parallel communication cables between the controllers as shown in the diagram to ensure synchronized operation.

6.4 Powering On the System

Once all wiring is complete and checked for security and correct polarity, power on the system in the following sequence:

  1. Switch on the battery breaker connected to the controller.
  2. Switch on the PV breaker.
  3. Switch on the inverter-side breaker.
  4. Flip the inverter's rocker switch to power it on.

The load connected to the AC output will begin operating normally once the inverter starts working.

6.5 Installation Videos

For a visual guide on installation and wiring, please refer to the following official seller videos:

Video 6.1: How to Set Up Solar System with Solar Controller & Inverter. This video demonstrates the step-by-step process of setting up an off-grid solar power system using a solar charge controller and an inverter.

Video 6.2: POW-M60-ULTRA Parallel Installation and Wiring Guide. This video provides instructions for installing and wiring multiple POW-M60-ULTRA solar charge controllers in parallel.

7. Operating Instructions

The MPPT solar charge controller and inverter feature LCD displays for monitoring system status and settings.

7.1 MPPT Controller Display and Buttons

Close-up of MPPT 60A Solar Charge Controller display and buttons

Figure 7.1: MPPT Controller Interface. Shows the LCD display with solar input, battery status, and load output, along with control buttons.

7.2 Inverter Display and Remote Control

Inverter with remote control panel showing input/output voltage and power

Figure 7.2: Inverter and Remote Control. Displays the inverter's status on its own screen and on the remote control panel, including input voltage, output voltage, and power.

7.3 Real-Time LCD Display Demo

Observe the real-time data display and parameter settings in the following official seller videos:

Video 7.1: MPPT Controller Connected | Real-Time LCD Display Demo. This video demonstrates the real-time data displayed on the MPPT controller's LCD screen during operation.

Video 7.2: D01-D06 Parameter Setting Information. This video explains how to access and modify parameters (D01-D06) on the MPPT solar charge controller.

8. Maintenance

Regular maintenance ensures optimal performance and longevity of your solar power system.

9. Troubleshooting

If you encounter issues with your system, refer to the following basic troubleshooting steps. For complex problems, consult a qualified technician or the manufacturer's support.

10. Warranty and Support

For warranty information, technical support, or service inquiries, please refer to the official Temank website or contact their customer service directly. Details are typically provided in the product packaging or on the manufacturer's website.

Manufacturer's Website: Visit the Temank Store on Amazon

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