STMicroelectronics M24C04-RMN6TP 4KB EEPROM, SO8N Package with I2C Interface

4KB EEPROM with I2C interface delivers ample non-volatile storage, securing mid-scale data like device logs and configs.

1MHz max clock frequency enables fast transfers, reducing latency for frequent data updates in industrial systems.

SO8N package saves PCB space, ideal for compact IoT gateways and consumer devices where size is critical.

M24C04-RMN6TP runs on 1.8V-5.5V, cutting power use to extend battery life in portable medical monitors.

Boosts smart meters by storing usage data, ensuring accurate tracking even during temporary power loss.

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STMicroelectronics M24C04-RMN6TP EEPROM Overview

The STMicroelectronics M24C04-RMN6TP is a high-reliability 4KB electrically erasable programmable read-only memory (EEPROM) engineered for non-volatile data retention in mid-scale electronic systems. It integrates an industry-standard I2C (2-wire serial) interface, enabling seamless communication with microcontrollers, microprocessors, and digital components-making it a trusted solution for B2B engineers prioritizing storage capacity, design flexibility, and long-term data integrity.

As a product from STMicroelectronics, a global leader in semiconductor innovation with decades of expertise in memory technologies, the device meets strict quality benchmarks for industrial, consumer, and IoT applications. For more trusted industrial ICs and memory components, visit IC 제조업체.

Technical Parameters of M24C04-RMN6TP

매개변수사양
메모리 용량4KB (4096 x 8 bits)
Communication InterfaceI2C (2-wire serial)
최대 클럭 주파수1MHz
작동 전압 범위1.8V ~ 5.5V
패키지 유형SO8N (8-pin Small Outline, Narrow Body)
작동 온도 범위-40??C ~ +85??C
Minimum Write Cycles1,000,000 cycles
Minimum Data Retention40 years
Page Write Size16 bytes

Key Technical Features of M24C04-RMN6TP

  • Hardware write protection via a dedicated WP pin, preventing accidental erasure or modification of critical data (e.g., sensor calibration logs, user preferences) in high-reliability systems.
  • Self-timed write cycles (up to 5ms), eliminating the need for external timing circuits and simplifying software integration for engineers.
  • 16-byte page write capability, enabling efficient block data transfers to reduce system latency and lower power consumption during bulk updates.
  • Low standby current (typical 1??A at 3V) and low active current (typical 1mA at 3V, 1MHz), optimizing power efficiency for battery-powered devices like portable medical monitors or IoT gateways.
  • Unlimited read cycles, ensuring reliable data access without performance degradation over the device??s operational lifetime.

Advantages of M24C04-RMN6TP Over Alternative Solutions

Compared to smaller EEPROMs (1KB/2KB), legacy parallel memory chips, or narrow-voltage-range devices, the M24C04-RMN6TP delivers three critical benefits for B2B designs:

First, its 4KB capacity balances storage needs and space efficiency. Smaller EEPROMs force engineers to compromise on data logging or config storage, while larger options (8KB+) waste PCB space and increase cost. The M24C04-RMN6TP is ideal for applications like smart meters or industrial sensors that require mid-scale storage for usage data or multi-setting configurations.

Second, its I2C interface reduces design complexity. Parallel memory chips require 8+ data and address pins, but this device uses just two wires (SDA for data, SCL for clock). This cuts PCB trace count by 75%, saving space in compact systems like IoT gateways or wearable medical devices. It also supports multi-device communication-multiple EEPROMs or sensors can share the same bus, further simplifying layouts.

Third, its durability and flexibility outperform budget alternatives. Low-cost EEPROMs often offer only 100,000 write cycles, 10?C20 years of data retention, or narrow voltage ranges (e.g., 3.3V only). The M24C04-RMN6TP delivers 1 million write cycles, 40 years of retention, and a 1.8V?C5.5V range-making it compatible with both legacy 5V industrial systems and modern 1.8V IoT designs, while ensuring long-term reliability for end products.

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Typical Applications of M24C04-RMN6TP

The M24C04-RMN6TP is engineered to solve mid-scale non-volatile storage challenges across industries. Its key use cases include:

  • 산업 자동화: Storing process logs (e.g., temperature trends, motor runtime) and multi-setting configurations in PLCs or sensor nodes, ensuring data is retained during power outages for post-fault analysis.
  • 사물 인터넷(IoT): Retaining sensor data logs (e.g., environmental readings over hours/days) and network credentials in IoT gateways, enabling continuous monitoring even if power is temporarily lost.
  • 의료 기기: Preserving patient data (e.g., blood pressure trends, glucose levels) and device calibration settings in portable monitors, complying with healthcare standards for data integrity and patient safety.
  • Smart Meters (Energy and Power): Storing daily/weekly usage data and billing information, ensuring accurate tracking even during power disruptions and simplifying utility billing processes.
  • 소비자 가전: Saving multi-profile settings (e.g., user-specific audio equalizers, display presets) in high-end headphones or smart TVs, delivering personalized experiences without reconfiguration after power cycles.

자주 묻는 질문(FAQ)

Why is the 4KB capacity of the M24C04-RMN6TP a good fit for smart meters?

Smart meters need to store mid-scale data-such as daily energy usage logs, billing periods, and device settings-without wasting space. 1KB/2KB EEPROMs are too small for weekly logs, while 8KB+ options are unnecessary. The 4KB capacity perfectly matches these needs, ensuring efficient storage and cost-effectiveness.

How does the I2C interface simplify design for IoT gateways?

IoT gateways often connect multiple sensors and require compact layouts. The I2C interface uses just two wires, so the M24C04-RMN6TP can share the bus with other I2C devices (e.g., temperature sensors, accelerometers). This reduces the number of PCB traces, saves space, and lowers the risk of signal interference-critical for dense gateway designs.

Can the M24C04-RMN6TP operate in both legacy industrial systems and modern IoT devices?

Yes. Its 1.8V?C5.5V operating range makes it compatible with legacy 5V industrial controllers and modern 1.8V/3.3V IoT microcontrollers. This flexibility eliminates the need to source different EEPROMs for different system generations, simplifying inventory management and reducing design time for engineers.

When should I use the write protection feature of this EEPROM?

Enable write protection (by tying the WP pin to VCC) when storing data that must not be accidentally modified. For example, in medical devices, protect patient data logs to prevent errors from software glitches; in industrial systems, protect calibration settings to avoid process disruptions from unintended changes.

How long will the M24C04-RMN6TP retain data, and how many times can I update it?

It guarantees 40 years of data retention, so stored data (like calibration settings or usage logs) will remain intact even if the device is powered off for decades. It also supports 1 million write cycles-enough for applications that require daily updates (over 2700 years of use) or hourly updates (over 114 years), ensuring long-term reliability for end products.

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