Manufacturer Part Number
LT1763CS8-2.5#TRPBF
Manufacturer
analog-devices
Introduction
This product is a highly efficient, Power Management Integrated Circuit (PMIC) specifically designed for use as a Linear, Low Drop Out (LDO) Regulator.
Product Features and Performance
Fixed 2.5V Output Voltage
Maximum Input Voltage of 20V
Low Dropout Voltage of 0.45V @ 500mA load
Output Current Capacity of 500mA
High PSRR of 65dB @ 120Hz
Enable Control Feature for power saving
Offers Protection against Over Current, Over Temperature, and Reverse Polarity
Product Advantages
High Efficiency for power-sensitive applications
Stable Output with low noise characteristics
Robust Protection Features enhance product reliability and longevity
Compact package suitable for space-constrained applications
Key Technical Parameters
Voltage Input (Max): 20V
Voltage Output (Min/Fixed): 2.5V
Voltage Dropout (Max): 0.45V @ 500mA
Current Output: 500mA
PSRR: 65dB at 120Hz
Quality and Safety Features
Built-in Over Current and Over Temperature Protection
Reverse Polarity Protection for enhanced safety
Ensures stable operation across the operating temperature range of -40°C to 125°C
Compatibility
Surface mount technology for easy integration into various circuit designs
Ideal for supply in battery-powered systems, portable devices, and instrumentation
Application Areas
Battery-powered Electronics
Portable Devices
Instrumentation and Control Systems
Product Lifecycle
Status: Active
Not nearing discontinuation, ensuring long-term availability and support
Replacement and upgrade options available for future scalability
Several Key Reasons to Choose This Product
High Efficiency and Low Dropout Voltage are ideal for extending battery life
Built-in protective features ensure reliability under various conditions
Versatile compatibility with both existing and future designs through surface mount technology
Active product lifecycle status guarantees long-term availability and support
Compact size facilitates use in space-constrained applications, providing greater design flexibility