Manufacturer Part Number
LAN9303M-AKZE
Manufacturer
Microchip Technology
Introduction
The LAN9303M-AKZE is an Ethernet interface controller designed to provide reliable networking solutions for embedded systems.
Product Features and Performance
Ethernet Protocol support
Integrated Switch functionality
I2C Interface Compatibility
Supports 10/100 Base-T/TX PHY for fast Ethernet communication
Accommodates supply voltage of 3.3V
Operational current requirement is 190mA
Designed for operation in temperatures ranging from 0°C to 70°C
Encased in a 72-VFQFN Exposed Pad for enhanced thermal properties
Standard 72-QFN package size 10x10
Product Advantages
Comprehensively designed for smooth integration in networking tasks within embedded systems
Low power demand and optimized power management
Enhanced durability for reliable networking in robust conditions
Compact size suitable for space-sensitive applications
Key Technical Parameters
Voltage Supply: 3.3V
Current Supply: 190mA
Operating Temperature: 0°C ~ 70°C
Interface: I2C
Physical Layer Standards: 10/100 Base-T/TX PHY
Quality and Safety Features
Built following stringent industry norms for safety and operational efficiency
Integrated thermal pad in VFQFN package to manage device heating
Compatibility
I2C bus interface ensures compatibility with a wide range of microcontrollers and processors
Application Areas
Widely used in embedded systems, networking equipment, IoT devices, and smart home applications
Product Lifecycle
Currently active product status
Not nearing discontinuation with robust support and availability from Microchip Technology
Several Key Reasons to Choose This Product
Reliable performance validated by adherence to Ethernet networking standards
Compact and efficient design suitable for integrating into various devices and systems
Continued support and product availability assured by Microchip Technology
Enhanced thermal management characteristics due to innovative packaging design
I2C compatibility making it versatile for different communication needs in systems