Manufacturer Part Number
SI7006-A20-IM1
Manufacturer
Silicon Labs
Introduction
The SI7006-A20-IM1 is a high-precision, digital humidity and temperature sensor from Silicon Labs. It offers excellent performance and accuracy, making it suitable for a wide range of applications that require reliable humidity and temperature monitoring.
Product Features and Performance
Measures humidity from 0% to 100% RH with ±5% RH accuracy
Measures temperature from -40°C to 125°C
Fast response time of 18 seconds
I2C digital interface with 12-bit output
Wide supply voltage range of 1.9V to 3.6V
Compact 6-pin WDFN package with exposed pad
Product Advantages
High-precision measurements for reliable performance
Fast response time for real-time monitoring
Wide operating temperature range for versatile applications
Low power consumption for energy-efficient operation
Small footprint for space-constrained designs
Key Reasons to Choose This Product
Exceptional accuracy and reliability for critical humidity and temperature monitoring
Versatile performance for a wide range of applications
Easy integration with I2C-based systems
Compact and low-power design for efficient implementation
Quality and Safety Features
Robust design for reliable operation
Compliance with industry standards for safety and performance
Compatibility
The SI7006-A20-IM1 is compatible with a variety of I2C-based systems and can be easily integrated into various applications.
Application Areas
HVAC systems
Appliances
Industrial automation
Building automation
Environmental monitoring
Agricultural and horticultural applications
Product Lifecycle
The SI7006-A20-IM1 is an active product, and Silicon Labs continues to offer support and development for this model. While there are no direct equivalent or alternative models available from Silicon Labs, the company may have newer or updated sensor products that could potentially serve as alternatives. Customers are advised to contact our website's sales team for more information on the latest product offerings and options that may better suit their specific requirements.