Manufacturer Part Number
LTC1258CS8-2.5#PBF
Manufacturer
analog-devices
Introduction
The LTC1258CS8-2.5#PBF is a high-precision, low-noise voltage reference from Analog Devices. It provides a highly stable and accurate 2.5V output voltage, making it suitable for a wide range of power management and analog circuit applications.
Product Features and Performance
Fixed 2.5V output voltage
Tight ±0.15% voltage tolerance
Low temperature coefficient of 40ppm/°C
Low noise performance: 8µVp-p (0.1Hz to 10Hz)
Wide input voltage range of 2.7V to 12.6V
Low supply current of 8.5µA
Operating temperature range of 0°C to 70°C
Product Advantages
High accuracy and stability
Low noise and power consumption
Wide input voltage range for flexibility
Small 8-SOIC package for compact designs
Key Reasons to Choose This Product
Precision voltage reference for critical power management and analog applications
Excellent performance-to-power ratio for efficient and reliable designs
Compact packaging suitable for space-constrained PCB layouts
Proven Analog Devices quality and reliability
Quality and Safety Features
Manufactured to high-quality standards
Robust design and construction for reliable operation
Compliance with relevant safety and environmental regulations
Compatibility
The LTC1258CS8-2.5#PBF is compatible with a wide range of electronic systems and circuits that require a stable and accurate voltage reference, such as:
Analog-to-digital converters (ADCs)
Operational amplifiers
Analog signal conditioning circuits
Power management ICs
Industrial and consumer electronics
Application Areas
Power management systems
Analog signal processing
Industrial control and instrumentation
Portable and battery-powered devices
Medical equipment
Telecommunications equipment
Product Lifecycle
The LTC1258CS8-2.5#PBF is an active product, and Analog Devices continues to manufacture and support it. There are no immediate plans for discontinuation. Customers can contact our website's sales team for information on any future product updates or alternative models.