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MT3608 DC-DC Converter: Datasheet, Circuit, Schematic [Video&FAQ]

  • Contents

Executive Summary: MT3608 Quick Facts (2026)

The MT3608 is a widely used 2A DC-DC step-up (boost) converter module capable of stepping up input voltages as low as 2V to an adjustable output of up to 28V. It features 97% efficiency, a 1.2MHz switching frequency, and integrated soft-start technology. As of 2026, it remains the gold standard for powering Arduino, ESP32, and IoT projects via Li-Ion batteries due to its low cost and SOT-23 form factor.

What is the MT3608 Step-Up Converter?

The MT3608 is a compact, constant frequency (1.2MHz) 6-pin SOT23 current mode step-up converter designed to efficiently boost voltage for low-power electronics.

 

This module allows the use of tiny, low-cost capacitors and inductors (2mm or less in height), making it ideal for space-constrained IoT and wearable devices. Its internal soft-start mechanism significantly reduces inrush current, which is critical for extending battery life in modern lithium-polymer applications.

 

In 2026 applications, the MT3608 is valued for its automatic Pulse Frequency Modulation (PFM) mode shift at light loads. It includes essential safety features such as under-voltage lockout, current limiting, and thermal overload protection to prevent damage during output overloads.

This comprehensive guide covers the MT3608's features, pinout configuration, detailed specifications, and modern applications, providing the latest datasheet insights for engineers and hobbyists.

 

Video Guide: How to Use the MT3608?

 

Video: Comprehensive test review of the 2A DC-DC Step-up boost converter MT3608 

 

MT3608 Video Summary: This visual guide reviews the Booster converter's capability to convert standard 3.7V Li-Ion or 5V USB inputs into adjustable outputs ranging from 4V to 27V at up to 2A.

 

Key Features and Specifications

The MT3608 stands out due to its high switching frequency and integrated power MOSFET, offering a balance of efficiency and size.

  • Integrated Power MOSFET: Low 80mΩ resistance for reduced power loss.
  • Wide Input Range: 2V to 24V (Ideal for single-cell Li-Ion batteries).
  • High Frequency: 1.2MHz Fixed Switching Frequency minimizes external component size.
  • Safety Limits: Internal 4A Switch Current Limit.
  • Versatile Output: Adjustable Output Voltage up to 28V.
  • Stability: Internal Compensation network.
  • Efficiency Mode: Automatic Pulse Frequency Modulation (PFM) at light loads.
  • High Efficiency: Up to 97% conversion efficiency.
  • Form Factor: Available in a compact 6-Pin SOT23-6 Package.

 

MT3608 Pin Configuration Diagram

Understanding the pinout is crucial for correct circuit integration; the MT3608 utilizes a standard SOT-23-6 layout.

 

MT3608 Pinout Diagram High Resolution 2026

Figure 1: MT3608 Pinout Diagram

 

Detailed Pin Functions

PIN #

 

NAME

 

FUNCTION DESCRIPTION

1

SW

Power Switch Output: This is the drain of the internal MOSFET switch. Connect the power inductor and output rectifier (Schottky Diode) here. SW node voltage can swing between GND and 28V.

2

GND

Ground: Common ground pin. Ensure a solid PCB ground plane connection.

3

FB

Feedback Input: Reference voltage is 0.6V. Connect a resistor divider network here to set the desired output voltage.

 

4

 

EN

Enable Control: Regulator On/Off Control Input. High = On, Low = Off. For "always-on" operation, tie this pin directly to the IN pin.

5

IN

Input Supply: Power supply pin (2V-24V). Must be locally bypassed with a ceramic capacitor to minimize noise.

6

NC

No Connect: Leave floating or connect to GND for thermal dissipation.

 

Common Use Cases in 2026

The MT3608 is ubiquitous in modern electronics, particularly for stepping up lower voltage battery sources to standard logic levels.

  • IoT & Wearables: Powering 5V sensors from 3.7V Li-Ion/Li-Po batteries.
  • Smart Home Devices: Set-Top Boxes and Wi-Fi modules.
  • Display Drivers: LCD Bias Supply generation.
  • Networking: DSL/Cable Modems and Routers.
  • Peripherals: Networking cards powered from PCI or PCI Express slots.
  • Maker Projects: Powering Arduino/ESP32 boards from AA batteries.

 

Alternatives and Equivalent ICs

If the MT3608 is unavailable, several pin-compatible or functionally similar step-up converters exist.

Popular Equivalents: XY-016 2A DC-DC Step Up Converter, SX1308 DC-DC Step-up Converter, POLOLU 2563.

 

Warning: Always verify maximum current ratings and pin configurations in the respective datasheets before swapping components in a live circuit.

 

Circuit Diagram and Schematic

The standard application circuit requires minimal external components: an inductor, a diode, and input/output capacitors.

 

MT3608 Basic Application Circuit Schematic

Figure 2: MT3608 Basic Application Circuit

 

How does the MT3608 Boost Converter Work?

The MT3608 operates as a switch-mode power supply (SMPS) that steps up lower input voltage to a higher output voltage using inductive energy storage.

 

Operation Of the Mt3608 Step-Up Module Architecture

Figure 3: Operational Block Diagram of the MT3608

 

Operational Cycle:

  1. Energy Storage: When the internal MOSFET switches ON, current flows through the inductor (L1), building a magnetic field.
  2. Energy Transfer: When the switch turns OFF, the magnetic field collapses, generating a high-voltage spike.
  3. Rectification: This voltage spike passes through the Schottky diode (D1) and charges the output capacitor (C2).
  4. Regulation: The high 1.2MHz switching frequency allows this cycle to happen rapidly, providing a smooth, continuous DC output voltage higher than the input.

 

Internal Block Diagram

The internal architecture reveals the control logic, error amplifier, and thermal protection circuits.

 

MT3608 Internal Block Diagram

Figure 4: MT3608 Internal Logic Block Diagram

 

Package Dimensions (SOT23-6)

The MT3608 comes in a standard 6-pin SOT-23 package, ideal for automated surface mount assembly.

 

MT3608 Package Dimensions

Figure 5: MT3608 Physical Package Dimensions

 

Mechanical Notes:

  • 1) All dimensions in millimeters.
  • 2) Dimensions exclude mold flash or gate burrs.
  • 3) Conforms to JEDEC MO-193 standards.
  • 4) Pin 1 is identified by the top mark orientation (Lower Left).

 

MT3608 Technical Specifications

Below are the critical electrical characteristics measured at 25°C.

Parameter

Test Conditions

MIN

TYP

MAX

Unit

Operating Input Voltage

 

2

 

24

V

Under Voltage Lockout (UVLO)

 

 

 

1.98

V

Shutdown Current

VEN= 0V

 

0.1

1

µA

Quiescent Current (PFM)

VFB=0.7V,No switch

 

100

200

µA

Switching Frequency

 

 

1.2

 

MHz

Feedback Voltage

 

0.588

0.6

0.612

V

SW On Resistance

 

 

80

150

Switch Current Limit

VIN= 5V, Duty cycle=50%

 

4

 

A

Thermal Shutdown

 

 

155

 

 

MT3608 Datasheet Download

For complete engineering data including graphs and layout guidelines, download the official PDF:

MT3608 Datasheet (PDF)

 

Safety Warnings

Important: The MT3608 is a step-up converter. The output voltage must always be higher than the input voltage. If Input > Output, the voltage will pass directly through the inductor and diode to the output, unregulated.

 

Frequently Asked Questions (2026 Edition)

Why is my MT3608 output voltage not changing?

This is the most common issue. The potentiometers on these modules often come set to the highest resistance. You must turn the brass screw counter-clockwise roughly 15-20 full turns before you see the voltage begin to drop.

Can the MT3608 really handle 2A of current?

While the switch limit is 4A, the practical continuous limit for the module without a heat sink is closer to 1A. At 2A, the chip will overheat and thermal shutdown will trigger rapidly.

How do I adjust the voltage on the MT3608?

Connect a multimeter to the output pads. Turn the small brass potentiometer screw (usually blue) counter-clockwise to decrease voltage and clockwise to increase voltage.

Can I use MT3608 to charge a phone?

Yes, if you step up a 3.7V Li-Ion battery to 5V. However, ensure the output current does not exceed 1A continuously, which means it will charge slower than modern fast chargers.

Does the MT3608 have reverse polarity protection?

No. Connecting the input voltage backward (positive to negative) will instantly destroy the IC. Always verify polarity before powering on.

Additional Technical FAQ

What type of converter is the MT3608?

It is a 6-pin SOT23 current mode step-up (boost) converter.

 

What feature prevents current spikes at startup?

The Internal Soft-Start circuitry minimizes inrush current, extending battery life.

 

How does MT3608 save power at light loads?

It automatically switches to Pulse Frequency Modulation (PFM) mode to maintain high efficiency when demand is low.

 

What is the typical efficiency?

Efficiency is typically > 90% for load currents between 1mA and 8mA, peaking at 97% under optimal conditions.

PCB Symbol, Footprint & 3D Model

 

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