MT48LC4M32B2B5-6:G Allicdata Electronics
Allicdata Part #:

MT48LC4M32B2B5-6:G-ND

Manufacturer Part#:

MT48LC4M32B2B5-6:G

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Micron Technology Inc.
Short Description: IC DRAM 128M PARALLEL 90VFBGA
More Detail: SDRAM Memory IC 128Mb (4M x 32) Parallel 167MHz 5....
DataSheet: MT48LC4M32B2B5-6:G datasheetMT48LC4M32B2B5-6:G Datasheet/PDF
Quantity: 1000
Stock 1000Can Ship Immediately
Specifications
Series: --
Packaging: Tray 
Part Status: Obsolete
Memory Type: Volatile
Memory Format: DRAM
Technology: SDRAM
Memory Size: 128Mb (4M x 32)
Clock Frequency: 167MHz
Write Cycle Time - Word, Page: 12ns
Access Time: 5.5ns
Memory Interface: Parallel
Voltage - Supply: 3 V ~ 3.6 V
Operating Temperature: 0°C ~ 70°C (TA)
Mounting Type: Surface Mount
Package / Case: 90-VFBGA
Supplier Device Package: 90-VFBGA (8x13)
Base Part Number: MT48LC4M32B2
Description

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Memory, or data retention, is an essential part of modern computing. Computers, servers, and mobile devices rely on memory to store, retain, and process data. The type of memory needed for any particular application depends heavily on the environment in which it will be used: an industrial computer may require more robust memory than a home computer, for example. Within the memory family, there are a variety of different types and technologies: RAM (Random Access Memory), ROM (Read Only Memory), and flash memory are all examples that are commonly used today. In this article, we will discuss the application field and working principle of the MT48LC4M32B2B5-6:G memory device.

The MT48LC4M32B2B5-6:G is a Double Data Rate SDRAM (DDR SDRAM) device, made by Micron Technology, Inc. It is a 4M x 32 (128Mbit) synchronous DRAM (SDRAM) device, providing an interface for high-speed data transfer between CPUs, FPGAs and other components. It is designed for applications that require high-speed and high-capacity memory. The device is capable of data rates up to 400 MHz, allowing it to support DDR2 or DDR3 applications.

The MT48LC4M32B2B5-6:G is typically used in high-end industrial and commercial computing applications, where data throughput and speed are essential. The device is suitable for use in embedded systems, network routers, and high-end gaming and media devices. Its advanced features, such as integrated clock management and power management, make it a great choice for applications that require low power consumption and low latency while also providing a robust memory solution.

The MT48LC4M32B2B5-6:G works by using dynamic RAM (DRAM) cells to store data in an array. When the device is accessed, the data is retrieved from the memory array and transferred over the data bus. To keep the data accurate, refresh cycles are used to periodicall restore the charge in the cells. This ensures that the data stored in the memory device is not corrupted or forgotten over time.

In addition, the device also uses error-correcting circuitry in order to ensure that data written to the device is not corrupted. This is especially important for high-speed applications where data accuracy and integrity are critical. Error-correcting codes (ECC) are used to detect and correct single bit errors, improving the accuracy and reliability of the data stored in the device.

In addition to its advanced features, the MT48LC4M32B2B5-6:G also has an integrated thermal sensor. This helps to monitor the temperature of the device, and alert the user if it exceeds acceptable limits. The thermal sensor also helps to minimize power consumption by shutting off the device when it reaches a certain temperature.

Overall, the MT48LC4M32B2B5-6:G is well suited for a variety of high-performance applications. It offers robust performance, low latency, and low power consumption, making it a great choice for industrial and commercial computing. In addition, its error-correcting circuitry and thermal sensor provide reliable data storage and monitoring capabilities, ensuring that the data stored in the device is not corrupted or lost.

The specific data is subject to PDF, and the above content is for reference

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