MT25QL128ABA8ESF-0AAT Allicdata Electronics
Allicdata Part #:

MT25QL128ABA8ESF-0AAT-ND

Manufacturer Part#:

MT25QL128ABA8ESF-0AAT

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Micron Technology Inc.
Short Description: IC FLASH 128M SPI 133MHZ 16SOP2
More Detail: FLASH - NOR Memory IC 128Mb (16M x 8) SPI 133MHz ...
DataSheet: MT25QL128ABA8ESF-0AAT datasheetMT25QL128ABA8ESF-0AAT Datasheet/PDF
Quantity: 1000
Stock 1000Can Ship Immediately
Specifications
Series: Automotive, AEC-Q100
Part Status: Active
Memory Type: Non-Volatile
Memory Format: FLASH
Technology: FLASH - NOR
Memory Size: 128Mb (16M x 8)
Clock Frequency: 133MHz
Write Cycle Time - Word, Page: 8ms, 2.8ms
Memory Interface: SPI
Voltage - Supply: 2.7 V ~ 3.6 V
Operating Temperature: -40°C ~ 105°C (TA)
Mounting Type: Surface Mount
Package / Case: 16-SOIC (0.295", 7.50mm Width)
Supplier Device Package: 16-SOP2
Description

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Introduction

MT25QL128ABA8ESF-0AAT is a non-volatile memory device used in computers and other electronic systems. This device is a multi-market single-level cell (MLC) chip that features advanced features like enhanced endurance, high speed writing with low power consumption. It is manufactured and marketed by Micron Technology.

Application Field of MT25QL128ABA8ESF-0AAT

Non-volatile memory devices are used in many applications including storage of data, handling and managing of files, executing code and other related applications. As such, MT25QL128ABA8ESF-0AAT finds its use in a wide array of applications ranging from embedded systems like automotive electronics, to mass storage applications like enterprise servers and industrial controllers.The device offers a wide range of features making it a suitable candidate for diverse applications. These features are summarized as follows.
  • High speed operation with up to 30MHz serial interface frequency
  • Random access time of 5μs
  • Max write/ erased endurance of 100/1000/2000 cycles
  • Error correcting code (ECC) for enhanced data reliability
  • An adaptive algorithm called Multi-Layer Cell (MLC) which increases memory capacity by twofold
  • Serial peripheral interface (SPI) to connect directly to a microcontroller
The features of MT25QL128ABA8ESF-0AAT make it suitable for a wide range of applications. Some of the applications include, but are not limited to, ensuring reliability and integrity of data stored in medical applications like pacemakers, instrumentation systems, smart meters and GPS tracking, providing cost effective solutions for wearables, instruments and medical devices, automotive control systems such as ECUs, speed limiters and fuel injection systems, and embedded systems used in various industries like consumer electronics, gaming and industrial automation.

Working Principle of MT25QL128ABA8ESF-0AAT

MT25QL128ABA8ESF-0AAT is a non-volatile memory device that uses an advanced Multi-Layer Cell (MLC) technology for the storage of data. This technology uses a single memory cell for two level storing and two separate memory die, lowering cost and increasing storage efficiency.The data is stored in and read from the chip using a serial peripheral interface. It is responsible for communication between the chip and the external host. It uses four control signals for communication: Serial Clock(SCK), Chip Select (CS), Data In (DI) and Data Out (DO).When commands are sent to the chip, the serial controller starts the read or write operations depending on the data bit received. Data is written or read using the SCK, DI and DO signals. The Write Enable (WE) and Output Enable (OE) signals are also used to control read/write operations. After the data transfers are complete, CS is used to deselect the device.

Conclusion

In conclusion, MT25QL128ABA8ESF-0AAT is a non-volatile memory device that is used in a wide range of applications where the storage, handling and management of files is important. It is a single-level cell memory device which uses an advanced Multi-Layer Cell technology for storing and accessing data. It is suitable for a wide range of applications including, but not limited to, automotive control systems, embedded systems and medical applications. The data is written and read from the chip using a serial peripheral interface which uses four control signals for communication.

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

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