Manufacturer Part Number
LM385Z-1.2/NOPB
Manufacturer
Texas Instruments
Introduction
The LM385Z-1.2/NOPB is a high-precision, low-noise voltage reference IC from Texas Instruments. It provides a fixed 1.235V reference voltage with excellent temperature stability and low noise characteristics, making it suitable for a wide range of applications requiring a stable, accurate reference voltage.
Product Features and Performance
Fixed 1.235V reference voltage
Tight tolerance of -2.43% to +2.02%
Low temperature coefficient of 150ppm/°C
Low noise: 60µVrms (10Hz to 10kHz)
Stable performance over 0°C to 70°C temperature range
Low supply current of 15µA
Through-hole and surface-mount package options available
Product Advantages
Highly accurate and stable reference voltage
Low noise for sensitive analog circuits
Wide operating temperature range
Small package size and low power consumption
Key Reasons to Choose This Product
Reliable and consistent performance
Cost-effective solution for voltage reference needs
Easily integrated into a wide range of electronic designs
Backed by Texas Instruments' reputation for quality and innovation
Quality and Safety Features
Robust construction and high-quality components
Compliant with industry standards and regulations
Designed and manufactured to ensure long-term reliability
Compatibility
The LM385Z-1.2/NOPB is a versatile voltage reference that can be used in various electronic applications, including:
Analog-to-digital converters
Operational amplifier circuits
Voltage regulators
Instrumentation and measurement systems
Application Areas
Industrial automation and control
Medical devices
Test and measurement equipment
Consumer electronics
Product Lifecycle
The LM385Z-1.2/NOPB is an active product and is currently in production. Our website's sales team offers several equivalent and alternative models, such as the LM385-1.2 and LM285-1.2, which provide similar performance and functionality. Customers are advised to contact our website's sales team for the latest product information and availability.