Allicdata Part #: | MT35XU256ABA1G12-0AAT-ND |
Manufacturer Part#: |
MT35XU256ABA1G12-0AAT |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Micron Technology Inc. |
Short Description: | SPI FLASH NOR SLC 32MX8 TBGA |
More Detail: | Memory IC |
DataSheet: | MT35XU256ABA1G12-0AAT Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | * |
Part Status: | Active |
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MT35XU256ABA1G12-0AAT is a type of memory, known as 3D XPoint non-volatile memory, which provides both big capacity and faster speed. It is widely used in cloud computing, big data computing, IoT and AI applications. This article will discuss the application field and working principle of MT35XU256ABA1G12-0AAT memory.
What is 3D XPoint Non-Volatile Memory?
3D XPoint non-volatile memory, called 3D XPM for short, is a type of solid-state storage, which is much faster than traditional NAND flash memory. It combines the functionality of RAM and Flash, having both high performance and high capacity. Compared with DRAM and NAND flash, 3D XPM has 3-10X read/write speed, as well as 2-3X latency. In addition, 3D XPM provides a much greater endurance of 10-12X compared to NAND memory, suitable for long-term storage of data.
Application Field of MT35XU256ABA1G12-0AAT 3D XPoint Memory
MT35XU256ABA1G12-0AAT 3D XPoint memory is suitable for a variety of applications. It is widely used in cloud computing, big data computing, and the internet of things (IoT). For cloud computing applications, where large amounts of data need to be quickly exchanged, 3D XPoint memory offers improved performance, which eventually improves the speed and efficiency of computing applications. For big data computing, 3D XPM can take all the data and apply advanced algorithms for deep analysis, which will help to improve the accuracy of predictive models.
In addition, 3D XPM is also widely used in the IoT related application fields. It can enable more efficient and automatic monitoring and data collection, allowing all kinds of equipment or devices to be connected and managed in an interconnected network. The IoT technology helps to collect and analyze data to improve the efficiency of energy management. Moreover, the combination of IoT and AI technology can provide great business opportunities in many areas, such as healthcare, manufacturing, retail, transportation, and many other areas.
Working Principle of MT35XU256ABA1G12-0AAT 3D XPoint Memory
MT35XU256ABA1G12-0AAT 3D XPoint memory utilizes a unique charge trap flash technology. This technology is based on the principle of storing charges in a tiny volume in the memory cells. It allows for storing one byte of data per memory cell, and each byte of data can be read, written and rewritten. What\'s more, it offers direct writes from the host processor, which is much faster than writing a block of data to a NAND array.
The working principle of MT35XU256ABA1G12-0AAT 3D XPoint memory is also very simple. When a voltage is applied to a memory cell, a charge is stored in the cell, which represents one bit of data. When the voltage is removed, that charge is maintained until it is used to store new data or is reset. This simple process enables random read and write operations, enabling faster and more efficient memory operations.
Conclusion
MT35XU256ABA1G12-0AAT 3D XPoint memory is a type of non-volatile memory that provides both large capacity and faster speed. It is widely used in cloud computing, big data computing, IoT and AI applications. It utilizes charge trap flash technology, where a charge is stored in the memory cells when a voltage is applied and that charge is maintained until it is used to store new data or reset. This enables random read and write operations, improving the speed and efficiency of memory operations.
The specific data is subject to PDF, and the above content is for reference
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MT35XL02GCBA2G12-0SIT TR | Micron Techn... | 0.0 $ | 1000 | SERIAL NOR SLC 256MX8 TBG... |
MT35XL02GCBA3G12-0SIT TR | Micron Techn... | 0.0 $ | 1000 | SERIAL NOR SLC 256MX8 TBG... |
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MT35XU01GBBA2G12-0SIT TR | Micron Techn... | 0.0 $ | 1000 | SERIAL NOR SLC 128MX8 TBG... |
MT35XU01GBBA3G12-0SIT TR | Micron Techn... | 0.0 $ | 1000 | SERIAL NOR SLC 128MX8 TBG... |
MT35XU01GBBA4G12-0SIT TR | Micron Techn... | 0.0 $ | 1000 | SERIAL NOR SLC 128MX8 TBG... |
MT35XU02GCBA1G12-0SIT TR | Micron Techn... | 0.0 $ | 1000 | SERIAL NOR SLC 256MX8 TBG... |
MT35XU02GCBA2G12-0SIT TR | Micron Techn... | 0.0 $ | 1000 | SERIAL NOR SLC 256MX8 TBG... |
MT35XU02GCBA3G12-0SIT TR | Micron Techn... | 0.0 $ | 1000 | SERIAL NOR SLC 256MX8 TBG... |
MT35XU02GCBA4G12-0SIT TR | Micron Techn... | 0.0 $ | 1000 | SERIAL NOR SLC 256MX8 TBG... |
MT35XL01GBBA1G12-0AAT | Micron Techn... | 0.0 $ | 1000 | SERIAL NOR SLC 128MX8 TBG... |
MT35XL01GBBA2G12-0AAT | Micron Techn... | 0.0 $ | 1000 | SERIAL NOR SLC 128MX8 TBG... |
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MT35XU01GBBA1G12-0AAT | Micron Techn... | 0.0 $ | 1000 | SERIAL NOR SLC 128MX8 TBG... |
MT35XU01GBBA2G12-0AAT | Micron Techn... | 0.0 $ | 1000 | SERIAL NOR SLC 128MX8 TBG... |
MT35XU256ABA1G12-0AAT | Micron Techn... | 0.0 $ | 1000 | SPI FLASH NOR SLC 32MX8 T... |
MT35XU256ABA2G12-0AAT | Micron Techn... | 0.0 $ | 1000 | SPI FLASH NOR SLC 32MX8 T... |
MT35XU512ABA1G12-0AAT | Micron Techn... | -- | 1000 | SERIAL NOR SLC 64MX8 TBGA... |
MT35XU512ABA2G12-0AAT | Micron Techn... | 0.0 $ | 1000 | SERIAL NOR SLC 64MX8 TBGA... |
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