Manufacturer Part Number
LM385BZ-1.2/NOPB
Manufacturer
Texas Instruments
Introduction
The LM385BZ-1.2/NOPB is a precision voltage reference from Texas Instruments. It provides a highly accurate and stable 1.235V reference voltage that can be used in a variety of electronic circuits and applications.
Product Features and Performance
Precise 1.235V reference voltage
Low temperature coefficient of 150ppm/°C
Output current capability of 20mA
Low noise performance of 60µVrms (10Hz to 10kHz)
Wide operating temperature range of 0°C to 70°C
Through-hole and surface-mount package options available
Product Advantages
Excellent voltage stability and accuracy
Compact and space-saving design
Robust performance in diverse operating conditions
Ease of integration into various electronic systems
Key Reasons to Choose This Product
Reliable and consistent voltage reference for critical circuit applications
Cost-effective solution for precision voltage regulation
Proven performance and quality from a trusted semiconductor manufacturer
Versatile package options to suit different design requirements
Quality and Safety Features
Fully RoHS-compliant and lead-free construction
Rigorous testing and quality control measures
Robust design for reliable long-term operation
Compatibility
The LM385BZ-1.2/NOPB is compatible with a wide range of electronic circuits and systems that require a stable, precision voltage reference, including:
Analog-to-digital converters (ADCs)
Voltage regulators
Amplifier circuits
Sensor conditioning circuits
Instrumentation and measurement equipment
Application Areas
Industrial and automation equipment
Medical devices and instrumentation
Test and measurement systems
Consumer electronics
Telecommunications and networking equipment
Product Lifecycle
The LM385BZ-1.2/NOPB is an active and currently available product. There are no known plans for discontinuation at this time. However, customers are advised to consult with our website's sales team for the latest product availability and information on any potential alternative or equivalent models.