EN6347QI DC-DC Converters: Features, Applications and Datasheet

2025-06-03 10:09:32 850

EN6347QI Description

Intel EN6347QI is a compact, high-efficiency DC-DC converter designed for point-of-load (PoL) applications. It integrates a controller, power MOSFETs, compensation circuitry, and an inductor into a single 38-pin QFN package, delivering up to 4A continuous current with output voltages ranging from 0.6V to 6.24V .

 

EN6347QI Features

Integrated PowerSoC Design: Combines controller, MOSFETs, compensation, and inductor in a single package .

High Efficiency: Achieves up to 95% efficiency, reducing thermal footprint .

Wide Input Voltage Range: Operates from 2.5V to 6.6V, suitable for various power sources .

Programmable Features: Includes adjustable output voltage, soft-start, and light-load mode for optimized performance .

Protection Mechanisms: Offers over-current, thermal shutdown, short-circuit, and under-voltage lockout protections .

 

EN6347QI Applications

Data Centers: Provides efficient power regulation for servers and storage systems .

Industrial Automation: Powers control systems and sensors in automated environments .

Embedded Computing: Supplies power to embedded processors and peripherals .

Wireless Communications: Supports base stations and networking equipment with reliable power .

 

EN6347QI CAD Model

Symbol

Footprint

 

EN6347QI Alternatives

LTC3646: A synchronous step-down DC-DC converter with similar features and performance .

TPS62175: Offers comparable functionality with enhanced efficiency and thermal performance .

LMZ30604: A 4A PowerSoC suitable as a replacement, though with different light-load efficiency characteristics .

 

EN6347QI Manufacturer

Intel Corporation is a global technology leader renowned for its innovation in semiconductor manufacturing and computing technologies. Founded in 1968 by Robert Noyce and Gordon Moore, Intel is headquartered in Santa Clara, California, and is best known for developing the world’s first commercially available microprocessor in 1971.

Intel has played a central role in shaping the modern computing era, powering everything from personal computers and data centers to AI platforms and cloud infrastructure. Its processor brands, such as Intel® Core™, Xeon®, and Atom™, have become industry standards across a wide range of devices and applications.

In recent years, Intel has expanded beyond traditional CPUs, investing heavily in fields like artificial intelligence, autonomous driving (through Mobileye), 5G infrastructure, graphics processing, and advanced semiconductor fabrication technologies. With a commitment to innovation, sustainability, and digital transformation, Intel continues to drive progress across global industries through cutting-edge technology and strategic partnerships.

EN6347QI FAQs

What is the maximum output current of the EN6347QI?

The EN6347QI can deliver up to 4A of continuous output current .

 

What is the operating temperature range?

It operates within a temperature range of -40°C to +85°C, suitable for industrial applications .

 

Can the EN6347QI synchronize with an external clock?

Yes, it supports frequency synchronization to an external clock for noise-sensitive applications .

 

What protection features are integrated?

The device includes over-current protection, thermal shutdown, short-circuit protection, and under-voltage lockout .

 

Is the EN6347QI suitable for automotive applications?

While it offers a wide input voltage range and integrated features, suitability for automotive applications depends on specific requirements and compliance standards 

Tags:

Share

Related News more>

Application of GaN Devices in Compact Adapters: Solutions to High-Frequency Switching and EMI Challenges
The dual demands for charging efficiency and device portability have driven technological innovation in compact adapters. Gallium nitride (GaN) devices, with their high-frequency switching characteristics and low-loss advantages, have emerged as the core technology to overcome the performance limitations of traditional silicon-based adapters. However, electromagnetic interference (EMI) issues arising from high-frequency switching, coupled with thermal management and reliability challenges within compact des....
ams OSRAM Launches New Laser Diode for Next-Generation Automotive Lidar Applications
Shanghai, China, 14 November 2025 – ams OSRAM, a global leader in lighting and sensing innovation, today announced the launch of a new five-junction edge-emitting laser diode, driving lidar system performance to new heights. The realisation of autonomous driving relies on sensor technology capable of delivering precise, reliable, and long-range detection at all times. Lidar systems operate independently of lighting conditions, continuously capturing three-dimensional environmental data to enable real-....
EP2C5T144C8N FPGAs: Features, Applications and Datasheet
EP2C5T144C8N Description The EP2C5T144C8N is a member of the Altera Cyclone II FPGA family, designed to deliver high performance at low cost. Built using a 90 nm CMOS process, this FPGA offers a balance of logic density, low power consumption, and rich I/O options. It is housed in a 144-pin TQFP package, making it ideal for cost-sensitive and space-constrained applications such as embedded systems, communications, and consumer electronics. EP2C5T144C8N Features Logic Elements (LEs): 4,608 Embedded Memory:....
How to Measure Circuit Current Using Shunt Resistors: Principles, Steps and Practical Guide
In electronic circuit testing and troubleshooting, current measurement is a fundamental and critical operation. Whilst multimeters can directly measure current, shunt resistors prove a more reliable choice when dealing with high currents (e.g. exceeding 10A) or demanding high-precision measurements, owing to their low cost and high stability. This article systematically explains shunt resistor selection, connection methods, practical measurement steps, error control, and safety precautions, starting from th....