The MT53E384M32D2DS-053 AAT:E TR is a high-performance, automotive-grade DRAM memory IC chip manufactured by Micron Technology Inc. This device is designed to meet the stringent requirements of the automotive industry, ensuring robustness and reliability in demanding environments. With a memory organization of 384M x 32 and a total memory size of 12Gbit, this IC offers significant storage capacity. It operates at a clock frequency of 1.866 GHz, providing fast data access speeds essential for high-performance computing applications. The memory type is volatile, meaning it requires a continuous power supply to retain data, which is typical for DRAM devices. The supply voltage is 1.1V, ensuring low power consumption and compatibility with modern, energy-efficient systems.
The MT53E384M32D2DS-053 AAT:E TR is ideal for a range of applications, particularly those in the automotive sector. Its automotive-grade certification makes it suitable for in-vehicle infotainment systems, advanced driver-assistance systems (ADAS), and other automotive electronics that require high reliability and performance. The high clock frequency and large memory size make it suitable for applications that require fast data processing and storage, such as real-time data analytics and high-definition video processing. Additionally, its low power consumption and compact form factor make it ideal for embedded systems where energy efficiency and space are critical considerations.
The MT53E384M32D2DS-053 AAT:E TR is a versatile and high-performance DRAM IC chip that offers significant advantages for automotive and other demanding applications. Its combination of high clock frequency, automotive-grade reliability, low power consumption, and compliance with industry standards make it a standout choice for engineers and designers looking to integrate robust memory solutions into their systems. Whether used in automotive electronics, embedded systems, or other high-performance applications, the MT53E384M32D2DS-053 AAT:E TR provides the reliability, performance, and efficiency needed to meet the challenges of modern electronics.
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