MX84B016PF1 Overview
The MX84B016PF1 is a high-performance 16Mbit NOR Flash memory device designed for reliable code and data storage in embedded systems. Offering fast read speeds and low power consumption, this non-volatile memory supports advanced system designs requiring stable operation and efficient data retention. Featuring a parallel interface and enhanced endurance, it is suitable for applications demanding consistent performance over extended periods. The device is optimized for industrial-grade environments, ensuring robustness and reliability. For detailed technical data and sourcing, visit IC Manufacturer.
MX84B016PF1 Technical Specifications
| Parameter | Specification |
|---|---|
| Memory Size | 16 Mbit (2M x 8) |
| Memory Type | NOR Flash |
| Interface | 8-bit parallel |
| Operating Voltage | 2.7V ?C 3.6V |
| Access Time | 90 ns |
| Endurance | 100,000 Program/Erase cycles |
| Data Retention | 20 years (typical) |
| Package Type | 44-pin TSOP II |
| Operating Temperature | -40??C to 85??C |
| Typical Read Current | 20 mA |
MX84B016PF1 Key Features
- High-Speed Read Access: 90 ns access time enables rapid code execution and data retrieval, minimizing system latency.
- Industrial Temperature Range: Reliable operation from -40??C to 85??C ensures stable performance in harsh environments.
- Enhanced Endurance: Supports up to 100,000 program/erase cycles, extending device lifespan in frequent update applications.
- Low Power Consumption: Optimized for minimal read and standby current, improving system energy efficiency.
- Standard Parallel Interface: Compatible with common 8-bit microcontrollers and microprocessors for easy integration.
- Long Data Retention: Maintains integrity of stored data for up to 20 years under normal operating conditions.
MX84B016PF1 Advantages vs Typical Alternatives
This NOR Flash device offers superior endurance and extended data retention compared to typical alternatives, making it ideal for embedded applications requiring long-term reliability. Its fast 90 ns access time improves system responsiveness while operating within a broad industrial temperature range. The low power consumption and standard parallel interface simplify integration and reduce overall system costs, delivering a balanced solution for high-reliability memory needs.
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Typical Applications
- Embedded system firmware storage: Provides non-volatile memory for code execution in industrial controllers, automotive modules, and consumer electronics, where fast read access and reliability are critical.
- Boot code storage: Utilized in microprocessor-based systems to store boot loaders and initialization routines.
- Data logging: Suitable for applications requiring occasional data storage with long retention and endurance.
- Industrial automation equipment: Supports firmware and configuration memory in harsh environmental conditions demanding robust temperature tolerance.
MX84B016PF1 Brand Info
Produced by a leading semiconductor manufacturer, the MX84B016PF1 is part of a portfolio focused on embedded memory solutions optimized for industrial and commercial applications. The device benefits from rigorous quality control and manufacturing processes, delivering dependable non-volatile storage that meets stringent industry standards. Designed to support evolving embedded system requirements, this NOR Flash memory integrates seamlessly into a wide range of electronic devices where reliability and performance are paramount.
FAQ
What is the primary memory type of the MX84B016PF1?
The device is a NOR Flash memory, which provides non-volatile storage with fast random access times ideal for code execution and data storage in embedded systems.
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What voltage range does this memory support?
The MX84B016PF1 operates across a voltage range of 2.7V to 3.6V, making it compatible with standard 3.3V power supplies common in industrial and commercial electronics.
How many program and erase cycles can the device endure?
This memory supports up to 100,000 program/erase cycles, ensuring durability and longevity in applications where frequent data updates are required.




