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MT4LC8M8P4TG-5 from MICRON

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MT4LC8M8P4TG-5

Manufacturer: MICRON

DRAM

Partnumber Manufacturer Quantity Availability
MT4LC8M8P4TG-5,MT4LC8M8P4TG5 MICRON 909 In Stock

Description and Introduction

DRAM **Introduction to the MT4LC8M8P4TG-5 Electronic Component**  

The **MT4LC8M8P4TG-5** is a high-performance **8M x 8-bit (64Mb) synchronous DRAM (SDRAM)** designed for applications requiring fast data access and efficient memory management. This component operates at a **5V supply voltage**, making it suitable for industrial, automotive, and embedded systems where reliability and speed are critical.  

Featuring a **synchronous interface**, the MT4LC8M8P4TG-5 allows for precise timing control, enabling seamless integration with high-speed processors and microcontrollers. Its **8-bit-wide data bus** supports efficient data transfer, while internal pipelining enhances throughput for demanding computing tasks.  

Key specifications include a **burst length of 1, 2, 4, 8, or full-page**, programmable CAS latency, and auto-refresh capabilities, ensuring optimal performance in various operating conditions. The device is packaged in a **54-pin TSOP-II** form factor, providing a compact yet robust solution for space-constrained designs.  

Designed for **low-power operation**, the MT4LC8M8P4TG-5 includes power-saving modes such as **standby and self-refresh**, reducing energy consumption in battery-powered or energy-sensitive applications. Its **wide operating temperature range** further enhances its suitability for harsh environments.  

Engineers and designers will find the MT4LC8M8P4TG-5 to be a reliable choice for applications requiring **high-speed, low-latency memory**, including networking equipment, industrial automation, and automotive electronics. Its balance of performance, power efficiency, and durability makes it a versatile component in modern electronic systems.  

For detailed technical specifications, refer to the official datasheet to ensure proper implementation in your design.

Application Scenarios & Design Considerations

DRAM

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