MX34E08SF1 Overview
The MX34E08SF1 is an 8 Mbit (1M x 8) serial Flash memory device designed for high-performance industrial and consumer electronics applications. Offering a reliable, low-power, and high-speed memory solution, it supports standard SPI, Dual SPI, and Quad SPI interfaces, enabling flexible and efficient data communication. This memory device is optimized for fast read and program operations while maintaining data integrity and system stability. Its compact 8-pin SOIC package facilitates easy integration into space-constrained designs. For detailed technical support and product sourcing, visit Fabricante de CI.
MX34E08SF1 Technical Specifications
Parâmetro | Especificação |
---|---|
Memory Density | 8 Mbit (1M x 8) |
Interface | Standard SPI, Dual SPI, Quad SPI |
Tensão de funcionamento | 2.7 V to 3.6 V |
Max Clock Frequency | 104 MHz (Quad SPI) |
Tipo de embalagem | 8-pin SOIC |
Sector Erase Size | 4 Kbyte |
Page Program Size | 256 bytes |
Conservação de dados | 20 years (typical) |
Endurance (Program/Erase Cycles) | 100,000 cycles |
MX34E08SF1 Key Features
- High-speed Quad SPI Interface: Enables up to 104 MHz clock frequency for fast data transfer, reducing system latency and improving performance in bandwidth-sensitive applications.
- Baixo consumo de energia: Operates efficiently within a 2.7 V to 3.6 V voltage range, minimizing power draw during read, program, and erase cycles to extend battery life in portable devices.
- Robust Reliability: Supports 100,000 program/erase cycles and 20 years typical data retention, ensuring long-term durability and data integrity for industrial-grade applications.
- Flexible Memory Organization: Offers 4 Kbyte sector erase and 256-byte page program sizes, facilitating efficient memory management and optimized write operations.
MX34E08SF1 Advantages vs Typical Alternatives
This serial Flash memory device provides superior speed and power efficiency compared to traditional parallel Flash, with a high-frequency Quad SPI interface that accelerates data throughput. Its compact 8-pin SOIC package simplifies PCB layout, while long endurance and data retention capabilities ensure enhanced reliability over typical alternatives. Integration flexibility and low voltage operation make it ideal for modern embedded systems requiring robust non-volatile storage.
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Aplicações típicas
- Embedded systems firmware storage where fast boot-up and low power consumption are critical, such as industrial controllers and IoT devices.
- Consumer electronics requiring compact and reliable non-volatile memory for program code and configuration data.
- Networking equipment memory expansion, supporting quick access to firmware and configuration files.
- Automotive electronics applications demanding high endurance and stable data retention in harsh environments.
MX34E08SF1 Brand Info
The MX34E08SF1 is manufactured by a leading semiconductor company specializing in memory solutions known for quality and innovation. This product line focuses on delivering high-performance serial Flash memory devices designed to meet the demanding requirements of industrial, automotive, and consumer applications. The MX34E08SF1 reflects the brand??s commitment to reliability, efficiency, and ease of integration, supported by extensive technical documentation and global supply chain availability.
FAQ
What interface protocols does the MX34E08SF1 support?
The device supports three primary SPI interface modes: Standard SPI, Dual SPI, and Quad SPI. These protocols provide flexibility for different speed and complexity requirements, enabling compatibility with a wide range of microcontrollers and processors.
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What are the power supply requirements for this memory device?
The recommended operating voltage range is between 2.7 V and 3.6 V. This low-voltage operation helps to reduce overall power consumption, making it suitable for battery-powered and energy-sensitive applications.
How does the MX34E08SF1 ensure data reliability over time?
It guarantees a typical data retention period of 20 years and supports up to 100,000 program/erase cycles. These specifications ensure long-term storage reliability, which is