Manufacturer Part Number
MX25L6435EZ2I-10G
Manufacturer
Macronix
Introduction
The MX25L6435EZ2I-10G is a high-performance, low-power 64Mbit Serial Flash memory chip manufactured by Macronix. It offers reliable non-volatile storage with fast read and write speeds, making it suitable for a wide range of embedded applications.
Product Features and Performance
64Mbit (8M x 8) memory capacity
SPI interface with a maximum clock frequency of 104MHz
Fast read and write speeds: 300μs for word program, 5ms for page program
Wide operating voltage range of 2.7V to 3.6V
Wide operating temperature range of -40°C to 85°C
Supports sector and block erase for efficient memory management
Product Advantages
High-density non-volatile storage with fast data access
Low-power operation suitable for battery-powered devices
Robust and reliable performance in industrial environments
Flexible memory organization and erase options
Key Reasons to Choose This Product
Industry-leading performance and capacity for embedded applications
Trusted Macronix brand and quality assurance
Widespread compatibility and easy integration into diverse systems
Cost-effective solution for high-volume applications
Quality and Safety Features
Designed and manufactured to the highest quality standards
Robust protection against data loss, power interruptions, and environmental stresses
Comprehensive safety and reliability testing during production
Compatibility
Compatible with a wide range of microcontrollers and embedded systems supporting the SPI interface
Easily integrated into various application designs
Application Areas
Suitable for a variety of embedded applications, such as industrial automation, consumer electronics, automotive systems, and IoT devices.
Product Lifecycle
The MX25L6435EZ2I-10G is an active product and is not nearing discontinuation. There are equivalent or alternative models available from Macronix, such as the MX25L6445E and MX25L6436E, which offer similar features and performance. For more information, please contact our website's sales team.