Manufacturer Part Number
TPS51640ARSLR
Manufacturer
Texas Instruments
Introduction
TPS51640ARSLR is a Power Management Integrated Circuit (PMIC), used for special purpose regulation in electronic systems.
Product Features and Performance
High-efficiency, multi-phase controller
Adaptive on-time D-CAP+™ control architecture
Supports IMVP-7 VR12/VR12.5 specifications
Dual output voltage regulation
Selectable switching frequency
Precision reference voltage
Overvoltage and undervoltage protection
Thermal shutdown feature
Product Advantages
Efficient power control for processor-based systems
Minimized external components due to integrated features
Advanced control for fast transient response
Built-in protections enhance system reliability
Key Technical Parameters
Voltage - Input: 3V ~ 28V
Number of Outputs: 2
Voltage - Output: 0.25V ~ 1.52V
Operating Temperature: -10°C ~ 105°C
Mounting Type: Surface Mount
Package / Case: 48-VFQFN Exposed Pad
Supplier Device Package: 48-VQFN (6x6)
Quality and Safety Features
Built-in thermal shutdown
Overvoltage and undervoltage protection
Precision voltage regulation
Compatibility
Compatible with Intel IMVP-7 processors and similar applications
Designed to fit a 48-VQFN (6x6) surface mount footprint
Application Areas
Power regulation for CPU and GPU in Notebooks
Desktop and Workstation Motherboards
Embedded Systems and Industrial Applications
Product Lifecycle
Status: Active (check with Texas Instruments for latest lifecycle updates)
Replacements or upgrades may be available (consult Texas Instruments for more information)
Several Key Reasons to Choose This Product
Advanced D-CAP+™ architecture for superior transient response
Robust power solution for IMVP-7 applications
Integrated power-saving features for energy-efficient systems
Texas Instruments' reputation for quality and reliability
Broad input voltage range accommodating diverse power sources
Dual outputs provide efficient power conversion for multi-rail systems
Ensures safe operation with multiple protection features
Compatible with mainstream processor platforms for broad application use