Manufacturer Part Number
LTC3633AEFE#PBF
Manufacturer
Analog Devices
Introduction
The LTC3633AEFE#PBF is a high-efficiency, high-power density, 3A, 2-phase synchronous step-down DC/DC converter from Analog Devices. It offers a wide input voltage range, adjustable output voltage, and integrated power MOSFETs, making it a versatile choice for a variety of power supply applications.
Product Features and Performance
Wide input voltage range: 3.6V to 20V
Adjustable output voltage from 0.6V to 6V
Integrated high-side and low-side power MOSFETs
2-phase operation for reduced input and output ripple
Switching frequency range from 500kHz to 4MHz
Automatic Burst Mode operation for high efficiency at light loads
Thermal overload and short-circuit protection
Available in a 28-lead TSSOP package with an exposed pad
Product Advantages
High power density and efficiency
Flexible design with wide input and output voltage ranges
Robust protection features for reliable operation
Compact surface-mount package
Key Reasons to Choose This Product
Versatile power solution for a wide range of applications
Excellent power conversion efficiency for improved system performance
Comprehensive protection features for long-term reliability
Small footprint and high power density for space-constrained designs
Quality and Safety Features
Thermal overload and short-circuit protection
Meets safety and regulatory standards for industrial and consumer applications
Compatibility
The LTC3633AEFE#PBF is compatible with a variety of systems and applications that require a high-efficiency, flexible power supply solution.
Application Areas
Industrial and consumer electronics
Telecommunications equipment
Automotive and transportation systems
Portable devices and battery-powered applications
Product Lifecycle
The LTC3633AEFE#PBF is an active and available product from Analog Devices. There are no direct equivalent or alternative models currently available. For the latest product information or to inquire about availability, please contact our website's sales team.