N25Q128A13ESEC0G Allicdata Electronics
Allicdata Part #:

N25Q128A13ESEC0G-ND

Manufacturer Part#:

N25Q128A13ESEC0G

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Micron Technology Inc.
Short Description: IC FLASH 128M SPI 108MHZ 8SOP2
More Detail: FLASH - NOR Memory IC 128Mb (32M x 4) SPI 108MHz ...
DataSheet: N25Q128A13ESEC0G datasheetN25Q128A13ESEC0G Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Packaging: Tube 
Part Status: Obsolete
Memory Type: Non-Volatile
Memory Format: FLASH
Technology: FLASH - NOR
Memory Size: 128Mb (32M x 4)
Clock Frequency: 108MHz
Write Cycle Time - Word, Page: 8ms, 5ms
Memory Interface: SPI
Voltage - Supply: 2.7 V ~ 3.6 V
Operating Temperature: -40°C ~ 85°C (TA)
Mounting Type: Surface Mount
Package / Case: 8-SOIC (0.209", 5.30mm Width)
Supplier Device Package: 8-SOP2
Base Part Number: N25Q128A13
Description

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Memory: N25Q128A13ESEC0G Application Field and Working Principle

The N25Q128A13ESEC0G is a non-volatile dual-operation (read or write) memory device, which is ideal for a wide range of applications and specifically designed to store large amounts of data in a secure, reliable and cost-effective manner. It is also referred to as a ‘flash’ memory device due to its ability to maintain data without the need for an external power source. The device consists of eight independent blocks of memory, each of which can manage up to 8GB of data.

The device is available in a range of densities from 4GB to 128GB, allowing storage of anything from a few megabytes of data up to multiple terabytes if needed. It is suitable for a variety of different applications such as industrial automation, distribution, networking, automotive control and medical data management, as it is designed to deliver superior performance and reliability compared to traditional storage methods. The device is also compatible with a range of operating systems and communication protocols, making it a suitable choice for a range of embedded systems and applications.

Working Principle of the N25Q128A13ESEC0G Memory Device

The N25Q128A13ESEC0G memory device operates on the principle of flash memory, with data being stored in multiple pages of individual four-byte blocks. Each page can be written or read separately and the device’s onboard controller will manage the desired operation. Additionally, pages can also be combined to create larger blocks or ‘sectors’ of up to 64KB. This combination allows faster writin and reading of larger quantities of data.

Although the device’s memory blocks can store up to 4 bytes of data, the actual size of the data is much greater than 4 bytes. This is due to the additional parity bits and addressing information needed for more reliable data transfer. The addition of this extra data requires more time to write and read, with the time taken to complete a full read or write process dependent on both the speed of the memory and the size of the data being accessed.

The process of writing data to the N25Q128A13ESEC0G device begins with a single page write operation. This involves sending an address and four bytes of data, followed by a programmed-in command. The data is then written to the memory device, a process which takes 90 nanoseconds for one page, 10 microseconds for two pages, and 20 microseconds for eight pages. For larger data writing operations, an erase operation must be completed first. This will erase an entire sector of the N25Q128A13ESEC0G device and takes between 5 and 10 milliseconds depending on the size of the sector.

Data can also be read from the N25Q128A13ESEC0G device using either a single page read or sequential access read (SAR) function. For single page read operations, the device requires an address and four bytes of data as well as a programmed-in command. The time taken to complete the read process will again depend on the speed of the device and the size of the data being accessed. For sequential access reads, the N25Q128A13ESEC0G requires an address and a programmed-in command, with the device then continuing to read the desired data until stopped, with a maximum read time of 30 microseconds for eight pages.

Applications of the N25Q128A13ESEC0G Memory Device

The N25Q128A13ESEC0G memory device can be used in a wide range of applications, such as those in industrial automation, distribution, networking, automotive control and medical data management. It is ideal for use in environments requiring reliable and high-speed data storage and transfer, as it has been designed for superior performance and reliability compared to traditional storage methods.

In industrial automation, the device can be used to store data relating to machine parameters, such as status and system configuration information. This can help to reduce downtime due to unnecessary manual changes, leading to cost savings and increased production efficiency.

In the distribution sector, the device can be used to store and transfer data relating to orders and inventory. Products can be shipped faster and with greater accuracy, as the data used to manage the stock and order processes is easily readable without loss of any sensitive or confidential information.

In automotive control, the device can be used to store data related to engine control or other vehicle systems. This information can be quickly accessed and used to adjust systems as needed, leading to improved performance and reliability.

Finally, in medical data management, the device can be used to store and transfer electronic medical records and other patient data. As the data is easily readable and reliable, it can help reduce the amount of time needed to track a patient’s progress and ensure accurate and timely delivery of treatments.

Conclusion

The N25Q128A13ESEC0G is an ideal choice for a wide range of applications due to its high-speed, reliable operation and its ability to securely store large amounts of data. It has been specifically designed for industries such as industrial automation, distribution, networking, automotive control and medical data management, as it offers superior performance and reliability compared to traditional storage methods. As the device is also compatible with a range of operating systems and communication protocols, it makes a suitable choice for a range of embedded systems and applications.

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

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