MT41J256M8DA-093:K TR Allicdata Electronics
Allicdata Part #:

MT41J256M8DA-093:KTR-ND

Manufacturer Part#:

MT41J256M8DA-093:K TR

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Micron Technology Inc.
Short Description: IC DRAM 2G PARALLEL 78FBGA
More Detail: SDRAM - DDR3 Memory IC 2Gb (256M x 8) Parallel 106...
DataSheet: MT41J256M8DA-093:K TR datasheetMT41J256M8DA-093:K TR Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Write Cycle Time - Word, Page: --
Base Part Number: MT41J256M8
Supplier Device Package: 78-FBGA (8x10.5)
Package / Case: 78-TFBGA
Mounting Type: Surface Mount
Operating Temperature: 0°C ~ 95°C (TC)
Voltage - Supply: 1.425 V ~ 1.575 V
Memory Interface: Parallel
Access Time: 20ns
Series: --
Clock Frequency: 1066MHz
Memory Size: 2Gb (256M x 8)
Technology: SDRAM - DDR3
Memory Format: DRAM
Memory Type: Volatile
Part Status: Obsolete
Packaging: Tape & Reel (TR) 
Description

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MT41J256M8DA-093:K TR Application Field and Working Principle

Memory plays an important role in data storage in digital systems. MT41J256M8DA-093:K TR is one kind of memory commonly used in embedded systems. This article provides a comprehensive understanding of the application fields and working principles of this memory type.

Application Fields of MT41J256M8DA-093:K TR

The combination of high density and low power consumption makes the MT41J256M8DA-093:K TR memory an attractive choice for embedded systems. This memory provides fast burst mode and asynchronous write operations that allows for low power operation. This makes it ideal for applications such as automotive, medical, industrial, and consumer.In automotive applications, the MT41J256M8DA-093:K TR memory can be used to store data generated by the engine, navigation system and other systems. Data collected by sensors, such as wheel speed and engine rotation speed, can be stored in the memory. This allows for faster and more accurate diagnosis.In medical applications, the MT41J256M8DA-093:K TR memory can be used to store patient data generated by various medical devices, such as CT scanners and MRI machines. This data can be accessed quickly and accurately, allowing doctors to diagnose and treat patients more effectively.In industrial applications, the MT41J256M8DA-093:K TR memory can be used to store production data collected by various factory machines, such as lathes and machining centers. This data can be compared with the stored values to evaluate the performance of the machinery and ensure that the production process runs smoothly and efficiently.For consumer applications, the MT41J256M8DA-093:K TR memory can be used to store data and applications for mobile devices, such as smartphones and tablets. This memory can provide high data throughput, allowing for faster loading times and smoother user experience on these devices.

Working Principle of MT41J256M8DA-093:K TR

MT41J256M8DA-093:K TR memory is a type of DRAM (Dynamic Random Access Memory). It is composed of multiple memory cells, each of which consists of a transistor and a capacitor. When power is applied to the memory cell, the charge stored in the capacitor is retained even though the power is removed.Data is stored in theMT41J256M8DA-093:K TR memory in the form of 0s and 1s. A 0 is represented when the charge in the capacitor is low, and a 1 is represented when the charge in the capacitor is high. Furthermore, this memory operates in a synchronous burst mode that allows for faster data access and lower power consumption.When a CPU needs to read a value from the memory, it sends an address signal to the memory. The memory then identifies the address signal and reads the value from the corresponding memory cell. Similarly, when a CPU needs to write a value to the memory, it sends a write signal to the memory along with the data to be written. The memory then stores the data in the corresponding memory cell.

Conclusion

MT41J256M8DA-093:K TR is a type of DRAM widely used in embedded systems. Its combination of high density and low power consumption makes it suitable for applications requiring data storage such as automotive, medical, industrial, and consumer. Its working principle is based on 0s and 1s stored in each memory cell. When a CPU needs to read or write data, it sends an address or write signal to the memory. Ultimately, these features make the MT41J256M8DA-093:K TR memory an attractive choice for embedded system applications.

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