MT41K256M16TW-093:P Allicdata Electronics
Allicdata Part #:

MT41K256M16TW-093:P-ND

Manufacturer Part#:

MT41K256M16TW-093:P

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Micron Technology Inc.
Short Description: IC DRAM 4G PARALLEL 96FBGA
More Detail: SDRAM - DDR3L Memory IC 4Gb (256M x 16) Parallel 1...
DataSheet: MT41K256M16TW-093:P datasheetMT41K256M16TW-093:P Datasheet/PDF
Quantity: 1000
Stock 1000Can Ship Immediately
Specifications
Series: --
Packaging: Tray 
Part Status: Active
Memory Type: Volatile
Memory Format: DRAM
Technology: SDRAM - DDR3L
Memory Size: 4Gb (256M x 16)
Clock Frequency: 1067MHz
Write Cycle Time - Word, Page: --
Access Time: 20ns
Memory Interface: Parallel
Voltage - Supply: 1.283 V ~ 1.45 V
Operating Temperature: 0°C ~ 95°C (TC)
Mounting Type: Surface Mount
Package / Case: 96-TFBGA
Supplier Device Package: 96-FBGA (8x14)
Description

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Memory is essential in order to store and retrieve data in computing. There are various types of memory that work together to perform these functions, with different types of memory designed to perform different tasks. The MT41K256M16TW-093:P is a memory module specifically designed to store and retrieve data from a system. In this article, we will discuss the application fields and working principle of this memory module.

Application Fields

The MT41K256M16TW-093:P is a double-data-rate synchronization dynamic random access memory (DDR3 SDRAM) module. It is mainly used in desktop computers and notebooks, where it is considered to be the most advanced form of computer storage. It can also be used in a variety of devices that require large amounts of memory, such as servers, digital devices, game consoles, and voice and data communication systems.

The MT41K256M16TW-093:P is designed to store up to 16 million of 64-bit words in its 4 gigabyte capacity. It is also equipped with an error-correcting code (ECC) to ensure accuracy and reliability in data transfer. This module can support data rates up to 1866 Mbits/s with a maximum of 1600 MHz clock speed.

Working Principle

The working principle of the MT41K256M16TW-093:P is based on receiving and sending commands from an external CPU or controller. When a command is received, the module first confirms that the command is valid and then passes it to the memory controller. The memory controller is responsible for storing and retrieving data from the memory chips in the module. When the data is retrieved, it is processed and sent back to the requesting CPU or controller.

The MT41K256M16TW-093:P uses a DDR3 SDRAM, which stands for double-data-rate synchronous dynamic random access memory. This type of memory is based on two 8-bit buses, which allow it to transfer data at either twice the maximum clock speed or four times the maximum clock speed. It is designed to provide greater bandwidth than DRAM, and consumes less power. DDR3 SDRAM is also known for its speed, since it is capable of transferring data at up to 1600 MHz.

The MT41K256M16TW-093:P also uses a differential clock signal which is sent to the memory modules along with commands. This clock signal includes both rising and falling edges, enabling the timing of data fetch and write information to be accurately tracked. When the data is written, the memory module will acknowledge this with a special signal and will complete the process by sending back the newly written data.

The MT41K256M16TW-093:P also uses an error-correcting code (ECC) to ensure accuracy and reliability in data transfer. The ECC can detect and correct up to four bits of errors in a 128-bit word. This ensures that data is accurately stored and retrieved, and any errors that may occur can be detected and corrected before they cause the system to crash.

Conclusion

The MT41K256M16TW-093:P is a memory module that is designed to store and retrieve data from a variety of devices. It is based on a DDR3 SDRAM and is capable of transferring data at 1600MHz. It is also equipped with an ECC to ensure accuracy and reliability in data transfer. This memory module is considered to be the most advanced form of computer storage, and is suitable for use in desktop computers, notebooks, servers, digital devices, game consoles, and voice and data communication systems.

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

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