MT47H128M8SH-187E:M Allicdata Electronics
Allicdata Part #:

MT47H128M8SH-187E:M-ND

Manufacturer Part#:

MT47H128M8SH-187E:M

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Micron Technology Inc.
Short Description: IC DRAM 1G PARALLEL 60FBGA
More Detail: SDRAM - DDR2 Memory IC 1Gb (128M x 8) Parallel 533...
DataSheet: MT47H128M8SH-187E:M datasheetMT47H128M8SH-187E:M Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Write Cycle Time - Word, Page: 15ns
Base Part Number: MT47H128M8
Supplier Device Package: 60-FBGA (8x10)
Package / Case: 60-TFBGA
Mounting Type: Surface Mount
Operating Temperature: 0°C ~ 85°C (TC)
Voltage - Supply: 1.7 V ~ 1.9 V
Memory Interface: Parallel
Access Time: 350ps
Series: --
Clock Frequency: 533MHz
Memory Size: 1Gb (128M x 8)
Technology: SDRAM - DDR2
Memory Format: DRAM
Memory Type: Volatile
Part Status: Obsolete
Packaging: Bulk 
Description

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Memory is essential for computer operation. It stores data for processing, which allows the computer to "remember" information over time. It also provides quick access to important data that is used repeatedly during processing. The memory device used in computers is often referred to as Random Access Memory (RAM).

MT47H128M8SH-187E:M is a type of RAM used in many computer systems today. It is a type of double data rate (DDR) synchronous dynamic random access memory chip, which is known as a Double Data Rate 3 synchronous dynamic random access memory (DDR3) chip. The chip was specifically designed by Micron Technology, Inc. to provide the highest performance possible while still being reliable, fast, and power-efficient.

The MT47H128M8SH-187E:M is a 128Mbit chip that is made up of two 64Mb memory dies. This chip is organized as both an 8-bit and a 16-bit device, which gives it the ability to access data in 8 or 16-bit transactions. The MT47H128M8SH-187E:M is fabricated using a 55nm process technology and has a voltage range of 1.35V to 1.5V.

The MT47H128M8SH-187E:M chip has several features that make it well-suited for many applications, including computing, gaming, server, industrial automation, and automotive. It offers low power consumption, high performance, and improved reliability, making it a popular memory device in these areas. The chip also provides a variety of safety features, such as on-die ECC and thermal overclocking.

MT47H128M8SH-187E:M chips are designed to operate at a frequency of up to 1866Mbps, with a data rate of up to 14288Bytes/sec. It is also designed to support four banks of memory, allowing up to 16 concurrent read/write operations. The memory controller on the chip is also designed to support up to 64 chip select signals.

The MT47H128M8SH-187E:M chip uses a direct path access to the main memory device, which allows for faster data access. This direct path access is enabled by the implementation of a memory access engine, which allows the chip to provide data faster and more efficiently. The chip is also designed to support the latest technologies, such as low power and On-Die Termination (ODT), which allows for improved control of power consumption.

The working principle of the MT47H128M8SH-187E:M chip is based on the ability of the chip to access data stored in the main memory device directly. The chip is able to access data using the dual-channel, two-way interleaved architecture with double data rate access. This technology allows the chip to perform read and write operations simultaneously, with independent and simultaneous operations on each channel.

The MT47H128M8SH-187E:M chip is highly efficient and reliable, making it popular for many types of applications. It is a reliable solution for computing, gaming, server, industrial automation, and automotive applications, and offers a variety of features and benefits that make it one of the top memory chips in use today. The chip offers an impressive blend of power efficiency and performance, making it a top choice for those looking to maximize their system\'s performance.

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

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