MX84B040SF1 Overview
The MX84B040SF1 is a high-performance semiconductor memory device designed for industrial and embedded systems requiring reliable non-volatile storage. Featuring a 4 Mbit capacity organized in 512K x 8-bit architecture, this component delivers fast access times and low power consumption, making it suitable for a wide range of applications such as data logging, program storage, and system boot code retention. With a standard 8-pin SOIC package, the device ensures easy integration into existing board designs. The MX84B040SF1 offers robust endurance and data retention characteristics, providing dependable long-term operation in demanding environments. For more detailed product and procurement information, visit IC Manufacturer.
MX84B040SF1 Technical Specifications
| Parameter | Specification |
|---|---|
| Memory Capacity | 4 Mbit (512K x 8-bit) |
| Package Type | 8-pin SOIC |
| Operating Voltage | 2.7 V to 3.6 V |
| Access Time | 70 ns |
| Data Retention | 20 years (typical) |
| Endurance | 100,000 write/erase cycles |
| Operating Temperature Range | -40??C to +85??C |
| Interface | SPI (Serial Peripheral Interface) |
| Standby Current | 1 ??A (typical) |
MX84B040SF1 Key Features
- High-density 4 Mbit memory: Supports large data storage needs without increasing board space, enabling compact system designs.
- Low-voltage operation (2.7 V to 3.6 V): Ensures compatibility with various power supply standards and reduces overall power consumption.
- Fast 70 ns access time: Improves system performance by allowing quicker data retrieval and program execution.
- Robust endurance of 100,000 cycles: Provides extended reliability for frequent write/erase operations in industrial applications.
- Wide temperature range (-40??C to +85??C): Suitable for harsh environments, guaranteeing stable operation across diverse conditions.
- SPI interface: Simplifies integration with microcontrollers and digital systems, supporting high-speed serial communication.
- Ultra-low standby current: Minimizes power draw during idle states, extending battery life in portable or remote devices.
MX84B040SF1 Advantages vs Typical Alternatives
Compared to typical memory devices, this component offers enhanced integration through its SPI interface and 8-pin SOIC package, facilitating straightforward PCB design. Its low power consumption and wide temperature tolerance provide superior reliability in industrial environments. The fast access time and durable write/erase cycles ensure better system responsiveness and longevity than many conventional EEPROMs or flash memories.
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Typical Applications
- Embedded systems requiring non-volatile program storage, such as firmware retention and configuration data in industrial controllers.
- Data logging devices where reliable long-term retention and frequent updates to stored data are critical.
- Consumer electronics that need low power memory solutions for battery-operated applications.
- Automotive electronics where temperature robustness and endurance are essential for reliable operation.
MX84B040SF1 Brand Info
This memory device is produced by a trusted manufacturer known for high-quality integrated circuits optimized for industrial and commercial applications. The MX84B040SF1 combines proven semiconductor technology with stringent quality controls, ensuring consistent performance and durability. Its design supports broad adoption in embedded system markets, benefiting engineers and sourcing specialists looking for reliable, scalable non-volatile memory solutions.
FAQ
What types of systems is this memory device best suited for?
The MX84B040SF1 is ideal for embedded systems, industrial controllers, and automotive electronics that demand reliable non-volatile memory with fast access and robust endurance. Its low power and wide temperature range also make it suitable for battery-powered and harsh environment applications.
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How does the SPI interface benefit system integration?
The SPI interface simplifies communication between the memory device and microcontrollers or processors. It enables high-speed data transfers using fewer pins,




