Manufacturer Part Number
MTCH105-I/ML
Manufacturer
Microchip Technology
Introduction
The MTCH105-I/ML is a highly integrated capacitive touch sensor controller from Microchip Technology. It is designed to provide a robust and reliable touch sensing solution for a wide range of applications, including consumer electronics, industrial equipment, and home appliances.
Product Features and Performance
Supports up to 5 independent touch inputs
Integrated LED driver channels for up to 5 LEDs
Open drain interface for easy integration with microcontrollers
Operates on a supply voltage of 2.05V to 3.6V
Low power consumption of 80mA
Wide operating temperature range of -40°C to 85°C
Proximity detection capability for enhanced user experience
Product Advantages
Robust and reliable touch sensing performance
Scalable design to accommodate different touch input requirements
Efficient power management for extended battery life
Versatile interface options for seamless integration
Key Reasons to Choose This Product
Proven capacitive touch technology from a trusted manufacturer
Comprehensive feature set for diverse application requirements
Cost-effective solution for touch-enabled product designs
Excellent value proposition in terms of performance and power efficiency
Quality and Safety Features
Rigorously tested to ensure consistent quality and reliability
Complies with relevant industry standards and safety regulations
Compatibility
The MTCH105-I/ML is compatible with a wide range of microcontrollers and can be easily integrated into various electronic systems.
Application Areas
Consumer electronics (e.g., smartphones, tablets, home appliances)
Industrial equipment (e.g., control panels, automation systems)
Medical devices
Automotive applications
Product Lifecycle
The MTCH105-I/ML is an active product in our website's sales team's portfolio. There are no immediate plans for discontinuation. Customers are advised to check with our website's sales team or their authorized distributors for the latest product information and availability of alternative or equivalent models.