The MAX6133BASA from Maxim Integrated is a high-precision, low-dropout voltage reference that offers a stable and accurate output voltage for precision data converters and voltage regulators. This component is designed to operate with a minimal dropout voltage and low supply current, making it ideal for battery-powered devices and portable applications.
Key Features
- Output Voltage: The device provides a fixed output voltage option that ensures a stable reference for your application needs.
- High Accuracy: With an initial accuracy of ±0.2%, the MAX6133BASA is suitable for applications requiring high precision and stability.
- Low Temperature Coefficient: The low temperature coefficient of 3ppm/°C max ensures minimal drift over a wide temperature range, enhancing the reliability of the end application.
- Low Dropout Voltage: The device is capable of maintaining its output accuracy with minimal headroom above the output voltage, making it highly efficient for low-voltage operations.
- Low Supply Current: It operates with a low supply current, which is critical for power-sensitive applications.
- Wide Operating Temperature Range: The MAX6133BASA is designed to operate over an industrial temperature range, making it suitable for a variety of challenging environments.
Applications
The MAX6133BASA voltage reference is ideal for a wide range of applications, including:
- Precision data acquisition systems
- High-resolution analog-to-digital converters (ADCs)
- Battery-powered and portable equipment
- Industrial and automotive electronics
- Medical and scientific instrumentation
Product Specifications
The MAX6133BASA comes in a compact 8-pin SOIC package and is characterized for operation from -40°C to +125°C, accommodating a broad spectrum of temperature requirements. Its compact form factor and high level of integration make it an excellent choice for space-constrained applications.
With Maxim Integrated's reputation for quality and reliability, the MAX6133BASA voltage reference is a solid choice for designers looking to ensure the accuracy and stability of their electronic systems.