1200W 20A DC-DC Boost Converter Module – Adjustable Constant Voltage & Current (12-60V Input, 12-90V Output)

SKU: FA2143-10
Module Type

Non-isolated Step-Up (BOOST) Converter

Input Voltage

DC 8V – 60V (10-60V recommended)

Input Current (MAX)

20A (up to 30A at lower input voltages on some models)

Quiescent Current

~15mA (12V to 20V conversion; increases with higher output voltage)

Output Voltage

DC 12V – 90V (adjustable, 12-83V on some models)

Constant Current Range

0.5A – 20A (adjustable; minimum current drifts)

Output Current (MAX)

20A (derates with larger input-output voltage differential; >15A requires active cooling)

Effective Output Power

Input Voltage × 20A (e.g., 12V × 20A = 240W, 60V × 20A = 1200W)

Switching Frequency

150 kHz

Conversion Efficiency

92% – 97% (depends on ΔV)

Short Circuit Protection

Input 30A fuse + electronic protection

Input Reverse Polarity Protection

Yes (150A power MOS, can be reversed long-term)

Low Battery Protection

Yes, adjustable 8-50V with self-recovery

Output Anti-Reverse Protection

Yes – for battery charging, no external diode needed

Cooling

Large heatsink + temperature-controlled fan (activates ~55°C)

Operating Temperature

-40°C to +85°C

Dimensions (L×W×H)

130mm × 52mm × 84mm (with fan and copper pillars)

Weight

Approx. 242g – 490g (varies by manufacturer)

Product Overview

The 1200W DC-DC Boost Converter Module is a professional-grade, high-power step-up voltage regulator designed for the most demanding power conversion applications. This non-isolated boost converter accepts a wide DC input range of 8-60V and delivers an adjustable output of 12-90V with a maximum output current of 20A and peak power of 1200W .

What sets this module apart is its comprehensive protection system and true Constant Voltage (CV) and Constant Current (CC) control capability. Independent multi-turn potentiometers allow precise adjustment of both output voltage and current limit, making it ideal for lithium battery charging, high-power LED driving, solar system boosting, and industrial equipment power supply .

The module features an oversized heatsink (85mm × 62mm × 64mm) with black oxidation treatment for superior thermal conductivity . A built-in temperature-controlled fan automatically activates when the module exceeds approximately 55-60°C . The 27mm iron silicon aluminum magnetic ring inductor with 1.2mm pure copper dual-wire windings ensures high efficiency and stable performance under heavy loads.

Power Rating Explanation: A 1200W rating does not mean the module can output 1200W from a 12V battery. Due to the 20A input current limit, the effective output power equals input voltage × 20A. For example, 12V input × 20A = 240W effective output; 24V input × 20A = 480W; 36V input × 20A = 720W; 48V input × 20A = 960W; 60V input × 20A = 1200W . This is not a limitation of the module but a result of the laws of physics—the input current rating determines achievable output power at lower voltages.

Key Features

  • 1200W High Power Output: Delivers up to 1200W output power at 60V input. For applications requiring more than 20A, two modules can be connected in parallel (e.g., two modules at 15A each for 30A total) .

  • Adjustable CV/CC Control: Independent multi-turn potentiometers allow precise setting of output voltage (12-90V) and constant current limit (0.5-20A), essential for battery charging and LED driving .

  • Wide Input/Output Range: Accepts DC input from 8V to 60V, with output adjustable from 12V to 90V. Input voltage must be lower than output voltage for boost operation .

  • High Conversion Efficiency: Achieves 92-97% efficiency at 150kHz switching frequency (efficiency is highest when the difference between input and output voltage is small), minimizing power loss and heat generation .

  • Comprehensive Protection System:

    • Input Reverse Polarity Protection: 150A power MOS prevents damage from accidental reverse connection – can be reversed for a long time without damage

    • Overcurrent Protection: Automatically reduces output voltage when input exceeds 25-35A (model dependent)

    • Short Circuit Protection: Dual-layer protection including input 30A fuse

    • Low Battery Protection: Adjustable (8-50V) with self-recovery function – automatically shuts down when battery voltage drops too low

  • Temperature-Controlled Fan: Smart fan only activates when module temperature exceeds ~55°C and stops when cool, balancing noise and heat dissipation .

  • Dual Heatsink Design: Large aluminum base plate (5mm thick) plus finned secondary heatsink with black oxidation treatment for superior thermal conductivity .

  • Output Anti-Reverse Protection: Built-in protection prevents current backflow when used for battery charging – no external diode required .

  • Wide Operating Temperature: Rated for -40°C to +85°C, suitable for demanding industrial environments .

Technical Specifications

Parameter Operating Value
Module Type Non-isolated Step-Up (BOOST) Converter
Input Voltage DC 8V – 60V (10-60V recommended)
Input Current (MAX) 20A (up to 30A at lower input voltages on some models)
Quiescent Current ~15mA (12V to 20V conversion; increases with higher output voltage)
Output Voltage DC 12V – 90V (adjustable, 12-83V on some models)
Constant Current Range 0.5A – 20A (adjustable; minimum current drifts)
Output Current (MAX) 20A (derates with larger input-output voltage differential; >15A requires active cooling)
Effective Output Power Input Voltage × 20A (e.g., 12V × 20A = 240W, 60V × 20A = 1200W) 
Switching Frequency 150 kHz
Conversion Efficiency 92% – 97% (depends on ΔV)
Short Circuit Protection Input 30A fuse + electronic protection
Overcurrent Protection Yes (reduces Vout when input exceeds 25-35A)
Input Reverse Polarity Protection Yes (150A power MOS, can be reversed long-term)
Low Battery Protection Yes, adjustable 8-50V with self-recovery
Output Anti-Reverse Protection Yes – for battery charging, no external diode needed
Cooling Large heatsink + temperature-controlled fan (activates ~55°C)
Operating Temperature -40°C to +85°C
Dimensions (L×W×H) 130mm × 52mm × 84mm (with fan and copper pillars)
Weight Approx. 242g – 490g (varies by manufacturer)

Pinout & Connection Guide

The module features clearly labeled screw terminals for input and output connections .

Input Terminals (Power Source)

Terminal Label Function
IN+ VIN+ / Input + Connect to positive terminal of DC power source (8V-60V). Has reverse polarity protection.
IN- VIN- / Input – Connect to negative terminal (ground) of power source.

Output Terminals (Load Connection)

Terminal Label Function
OUT+ VOUT+ / Output + Connect to positive terminal of your device (12V-90V). Has output anti-reverse protection for charging applications.
OUT- VOUT- / Output – Connect to negative terminal (ground) of your device.

Adjustment Controls 

Component Label Function Adjustment Direction
CV Potentiometer CV / V-ADJ Sets output voltage limit Clockwise increases voltage; counter-clockwise decreases
CC Potentiometer CC / I-ADJ / A-ADJ Sets output current limit Clockwise increases current; counter-clockwise decreases

Additional Features

Feature Description
Power Indicator LED Illuminates when input power is applied
Temperature-Controlled Fan 12V fan activates automatically at ~55°C; reduces noise and extends fan life
Input Voltage Range Selection Supports 8-60V directly; some models have jumper for 8-16V or 12-60V range

⚠️ Critical Safety Notes:

  • This module has input reverse polarity protection – connecting input backward will not damage the module

  • However, it remains best practice to double-check wiring before applying power

  • The module cannot regulate output voltage below input voltage (boost only)

  • For loads exceeding 15A, active cooling (the built-in fan or additional external fan) is mandatory

Usage Guide

Important First-Time Setup

⚠️ Use a Multimeter: The factory default output is often set to a random voltage (typically 19V) Always measure the output with a multimeter before connecting your load and adjust the CV potentiometer to the exact voltage required.

Power On Sequence

Critical: Do the input power supply switching power supply, the case load of the first connected input source and regulate voltage. Then pick up the load. (Must ensure that the switching power supply has been working), or regulate the first no-load voltage, then switch the power supply open the case. When the voltage is lower than 8V, the chip has not been working. It is easy to MOS tube breakdown .

Wiring Instructions

  1. Set Initial Outputs: Before powering on, turn both potentiometers counter-clockwise about 20 turns to set minimum.

  2. Connect Input: Connect your DC power source (8V-60V) to the IN+ and IN- terminals. The module has reverse polarity protection, so accidental reversal won’t damage it, but correct wiring is still best practice.

  3. Set Output Voltage (CV Mode): Place a multimeter on output terminals. Apply input power. Slowly turn CV potentiometer clockwise while watching the multimeter until reaching desired voltage.

  4. Set Current Limit (CC Mode) :

    • For LED loads: Set CC potentiometer to minimum, connect LED, then slowly increase CC pot while monitoring ammeter

    • For battery charging: Use a discharged battery when setting the current limit – a charged battery will draw less current, making adjustment difficult

    • Important: Do not short the output to set current – the boost converter circuit cannot regulate current in a short-circuit condition 

  5. Connect Permanent Load: Turn off input power, connect your permanent load, and re-apply power.

Thermal Management & Power Derating

The maximum safe output power depends on input voltage and cooling :

Input Voltage Max Output (Natural Cooling) Max Output (With Active Cooling)
12V 120W 240W
24V 240W 480W
36V 360W 720W
48V 480W 960W
60V 600W 1200W

Important: If the module temperature exceeds 65°C, a cooling fan is mandatory . The module includes a temperature-controlled fan that automatically activates at approximately 55-60°C.

Cooling Fan Operation

The module features a smart temperature-controlled fan:

  • Fan off: During light loads or when temperature is below ~55°C

  • Fan on: Automatically activates when temperature reaches ~55-60°C

  • Benefit: Reduces noise and extends fan lifespan 

Typical Applications

Application Input Source Output Setting Notes
Lithium Battery Charger 24V-48V Supply 29.4V (7S) / 50.4V (12S) / 58.8V (14S) Use discharged battery for CC adjustment; has output anti-reverse protection
High-Power LED Driver 12V-48V Battery 30V-80V / Constant Current Use CC mode only; test LED compatibility first
Solar System Booster 12V-24V Solar Panel 48V-60V For battery charging applications; ensure consistent panel output
DIY Bench Power Supply 24V-48V Adapter 12V-90V Variable power source for testing
Electric Vehicle Auxiliary 48V-60V Battery 72V-90V Boost for motor controllers
Parallel Operation Two modules Share load Adjust each module’s current limit to share equally (e.g., 10A each for 20A total) 
Q: How much real power can this module actually deliver at different input voltages?

The module’s maximum output power is determined by the formula: Input Voltage × 20A . For example:

  • 12V input × 20A = 240W effective output

  • 24V input × 20A = 480W effective output

  • 36V input × 20A = 720W effective output

  • 48V input × 20A = 960W effective output

  • 60V input × 20A = 1200W maximum output

This is not a limitation of the module but a result of the laws of physics—the same input current at lower voltage yields proportionally less power. The module draws up to 20A input current peak, but sustained operation above 15A requires active cooling.

Q: Can I use this module to charge a battery?

Yes, this module is well-suited for battery charging applications. It features:

  • Constant Current (CC) mode for the bulk charge phase

  • Constant Voltage (CV) mode for the topping charge phase

  • Output anti-reverse protection (no external diode needed for charging) 

Important: When setting the current limit for battery charging, use a discharged battery – a charged battery will draw less current, making it difficult to set the limit accurately. Set the output voltage to the battery’s float voltage (e.g., 4.2V × number of cells in series for Li-ion) .

Q: Does this module have reverse polarity protection? What happens if I connect the input backward?

Yes, this module has comprehensive reverse polarity protection using a 150A power MOS that prevents damage from accidental reverse connection. It can be reversed for a long time without damage . However, it remains best practice to double-check your wiring before applying power.

Q: Do I need a cooling fan for this module?

For loads under 200W, passive cooling (the built-in heatsink) may suffice. For loads above 200W or with input below 24V, a cooling fan is highly recommended. The module includes a smart temperature-controlled fan that automatically activates when the module exceeds approximately 55°C and stops when temperatures drop .

Q: Why does my 12V system struggle to deliver high power?

This module draws up to 20A input current. At 12V input, this limits output to approximately 240W (12V × 20A = 240W). For 48V-90V output applications, start with a 24V-48V input for better performance. The module’s overcurrent protection may activate at lower input voltages under heavy load .

Q: What is the proper power-on sequence?

Follow this sequence: First connect the load, then apply input power, then adjust voltage. When using a switching power supply, ensure the power supply is already working before connecting the load. If adjusting voltage, do it with no load first, then connect the load. When input voltage is lower than 8V, the chip may not work properly, which can cause MOSFET breakdown .

Q: Can I connect two modules in parallel for more power?

Yes. Two or more modules can be connected in parallel to increase total output current. For example, if you need 30A output, use two modules in parallel with each adjusted to 15A. Ensure the input power supply can handle the combined current draw .

Q: Can this module regulate current down to 0A for trickle charging?

No. This module cannot regulate current down to zero – it has a minimum current that drifts. This is important for applications requiring very low currents, such as final-stage trickle charging. For full CC/CV battery charging, this module works well for the bulk charge phase but may not completely shut off at the end of the cycle .

Q: Is this module suitable for high-power LED lighting?

Yes, using constant current (CC) mode. However, note that some LED types may not work well with pulsed DC output. Test with your specific LEDs before permanent installation. For LED applications, set CC mode to the LED’s rated current and the CV pot to the maximum forward voltage of the LED array .

Q: What is the default output voltage from the factory?

The factory default output is often set to a random voltage, typically around 19V. Always measure the output with a multimeter before connecting your load and adjust the CV potentiometer to the exact voltage required by your device .