MT41J128M8HX-15E:D TR Allicdata Electronics

MT41J128M8HX-15E:D TR Integrated Circuits (ICs)

Allicdata Part #:

557-1376-2-ND

Manufacturer Part#:

MT41J128M8HX-15E:D TR

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Micron Technology Inc.
Short Description: IC DRAM 1G PARALLEL 78FBGA
More Detail: SDRAM - DDR3 Memory IC 1Gb (128M x 8) Parallel 667...
DataSheet: MT41J128M8HX-15E:D TR datasheetMT41J128M8HX-15E:D TR Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Packaging: Tape & Reel (TR) 
Part Status: Obsolete
Memory Type: Volatile
Memory Format: DRAM
Technology: SDRAM - DDR3
Memory Size: 1Gb (128M x 8)
Clock Frequency: 667MHz
Write Cycle Time - Word, Page: --
Memory Interface: Parallel
Voltage - Supply: 1.425 V ~ 1.575 V
Operating Temperature: 0°C ~ 95°C (TC)
Mounting Type: Surface Mount
Package / Case: 78-FBGA
Supplier Device Package: 78-FBGA (9.5x11.5)
Base Part Number: MT41J128M8
Description

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The MT41J128M8HX-15E:D TR is a type of memory that is available to many applications. It is a 1-gigabit (8GB) DDR3L SDRAM that runs at up to 1600 Mbps, and it is optimized for high-performance and low-power applications. This type of memory is especially useful for high-speed data transfer and storage, but it can also be used in more basic applications. In this article, we will discuss the different application fields and the working principle of the MT41J128M8HX-15E:D TR.

Application Fields

The MT41J128M8HX-15E:D TR is best suited for high-speed data transfer and storage. This is because it is a memory type that is optimized for speed, performance, and low power consumption. It is ideal for applications such as embedded systems, industrial control, multimedia, healthcare, automotive applications, and more. Additionally, it can also be used in mobile devices, laptops, and other devices that require high data speeds and low-power consumption.

The MT41J128M8HX-15E:D TR can also be used in servers. It is designed to be used in servers that require high-speed operation and low-power consumption. This type of memory is ideal for cloud computing, data storage, web hosting, and other server-based applications. Additionally, it is also a great choice for applications that require large amounts of data storage, such as big data analytics.

Working Principle

The MT41J128M8HX-15E:D TR is a DRAM (dynamic random access memory) type. It is based on a standard synchronous dynamic random access memory (SDRAM) organization. It features an 8-bit interface and an internal clock speed of up to 1600 Mbps. The memory is designed to operate with a single power supply and can operate in temperatures from -40°C to +85°C.

The MT41J128M8HX-15E:D TR uses a standard access structure. It has a single write port and a single read port. The read and write operations are synchronized with the internal clock, and the data can be accessed in an 8-bit burst mode. Additionally, it also supports power-down and self-refresh modes to conserve energy. The memory can be operated in two different power modes: normal and low-power.

The MT41J128M8HX-15E:D TR is designed for use in low-power applications. It is capable of consuming less than 1.2W of power when operating at high speed. Additionally, the memory is designed for fast access times with minimal power consumption and can reach speeds of up to 1600 Mbps. The memory also has built-in ECC (error correction code) to provide reliable operation in high-speed applications.

Conclusion

The MT41J128M8HX-15E:D TR is an excellent choice for applications that require high-speed data transfer and storage. It is optimized for low-power operation, and it is suitable for a wide range of applications, including embedded systems, industrial control, multimedia, healthcare, automotive applications, servers, and mobile devices. The memory is based on a standard SDRAM organization, and it features a single read and write port, as well as a high speed of up to 1600 Mbps. Additionally, it supports power-down and self-refresh modes, and it offers reliable operation through ECC.

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

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