S25FL256LAGNFB010 Overview
The S25FL256LAGNFB010 is a high-performance 256 Megabit serial NOR Flash memory device designed for industrial and embedded applications requiring reliable non-volatile storage. Featuring a 3.0V to 3.6V supply voltage range and supporting standard, dual, and quad SPI interfaces, it offers flexible, fast access to data. Its 4KB sector architecture enables efficient memory management and in-system programmability. With advanced security features and robust endurance, this device is ideal for code storage, firmware updates, and data logging in complex systems. For detailed specifications, visit IC Manufacturer.
S25FL256LAGNFB010 Technical Specifications
| Parameter | Specification |
|---|---|
| Memory Density | 256 Megabits (32 Megabytes) |
| Voltage Supply | 3.0V to 3.6V |
| Interface | Standard/Dual/Quad SPI |
| Sector Size | 4KB |
| Page Size | 256 bytes |
| Clock Frequency | Up to 104 MHz |
| Erase Granularity | 4KB sectors, 64KB blocks, entire chip |
| Operating Temperature Range | -40??C to +85??C |
| Package | 8×6 mm 56-pin FBGA |
| Program/Erase Endurance | 100,000 cycles per sector |
S25FL256LAGNFB010 Key Features
- High-Speed Quad SPI Interface: Enables data transfer rates up to 104 MHz, significantly reducing read and write times for faster system boot and data access.
- Flexible Erase Options: Supports 4KB sector, 64KB block, and full chip erase, allowing precise memory management and minimizing wear on unused areas.
- Robust Endurance: Guarantees 100,000 program/erase cycles per sector, ensuring long-term reliability in embedded applications.
- Low Power Consumption: Optimized for industrial operation with efficient power usage during active and standby modes, extending system battery life.
- Wide Operating Temperature Range: Functions reliably from -40??C to +85??C, suitable for harsh environmental conditions.
- Advanced Security Features: Includes hardware protection mechanisms to safeguard firmware and data integrity against unauthorized access.
- Industry-Standard 56-Pin FBGA Package: Compact footprint facilitates easy integration in space-constrained designs without compromising performance.
S25FL256LAGNFB010 Advantages vs Typical Alternatives
This device offers superior speed and endurance compared to many traditional serial NOR Flash memories. Its high-frequency quad SPI interface delivers enhanced throughput, while the flexible erase granularity reduces unnecessary memory wear. The extended temperature range and low power operation make it more reliable for industrial environments. These combined factors provide engineers with a robust, efficient, and secure memory solution that outperforms typical alternatives in demanding applications.
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Typical Applications
- Embedded Systems Firmware Storage: Ideal for storing boot code and firmware updates in microcontroller-based industrial devices, enabling fast and reliable system startup and in-field programming.
- Consumer Electronics: Suitable for non-volatile storage in smart devices where high speed and low power consumption are critical.
- Networking Equipment: Supports firmware and configuration data storage in routers, switches, and other communication hardware requiring fast access and high reliability.
- Automotive Systems: Applicable in infotainment units and control modules that demand robust performance over wide temperature ranges and extensive cycling.
S25FL256LAGNFB010 Brand Info
The S25FL256LAGNFB010 is part of a well-established portfolio of serial NOR Flash memory products known for their high reliability and performance in industrial and embedded markets. This device combines cutting-edge SPI technology with robust endurance and security features, reflecting the brand??s commitment to innovation and quality. Its widespread adoption across diverse sectors underscores its reputation as a trusted solution for advanced non-volatile memory needs.
FAQ
What types of interfaces does the memory support?
The device supports multiple SPI modes including standard, dual, and quad SPI interfaces. This flexibility allows design engineers to optimize data throughput and
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