Allicdata Part #: | MX25V4035FM1I-ND |
Manufacturer Part#: |
MX25V4035FM1I |
Price: | $ 0.27 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Macronix |
Short Description: | IC FLASH 4MBIT |
More Detail: | Memory IC |
DataSheet: | MX25V4035FM1I Datasheet/PDF |
Quantity: | 1000 |
29792 +: | $ 0.24452 |
Series: | * |
Part Status: | Active |
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Memory is a crucial part of modern computing, and the MX25V4035FM1I is a memory chip with unique features that make it suitable for certain applications. This article will go into detail about the MX25V4035FM1I\'s application field, its working principle, and how it stands apart from other memory chips on the market.
Application Field
The MX25V4035FM1I is a multi-level-cell non-volatile memory chip, meant to reduce power consumption while being easily integrated into a variety of applications. It is most commonly found in consumer electronics, where its power savings are prized. It is particularly well-suited for use in medical imaging applications. It is also used in certain industrial and automotive applications, such as in unmanned aerial vehicles (UAVs) for navigation.
Working Principle
At its core, the MX25V4035FM1I is a non-volatile memory chip that relies on floating gate transistors to read and write data. These transistors are capable of storing up to 8 bits of data per transistor, allowing the chip to store more data in the same amount of space as regular SRAM. This makes it particularly well-suited for use in smaller, embedded devices, where space is a premium.
The MX25V4035FM1I also stands out from other memory chips because of its superior power efficiency. It has been designed to be far more power efficient than traditional SRAM chips, with a standby current of just 3 μA/MHz. This means that it can remain in stand-by mode for a much longer period of time than traditional SRAMs, leading to longer battery life when used in portable devices.
The MX25V4035FM1I has also been designed for high performance and speed. Its read latency is just 7ns, much faster than traditional SRAM chips. Its write latency is also impressive, coming in at 10ms, meaning that it can write data quickly and reliably. This makes it particularly well-suited for applications which require frequent reads and writes.
Finally, the MX25V4035FM1I boasts excellent durability, thanks to its use of advanced wear leveling algorithms. These algorithms help to even out wear and tear across the chip, minimizing the risk of data loss over time. This makes it ideal for applications where the chip needs to be used for an extended period of time.
Conclusion
The MX25V4035FM1I is a powerful, efficient memory chip that is designed for use in a variety of applications. Its low power consumption, high performance, and excellent durability make it well-suited for embedded applications, particularly in medical imaging, industrial, and automotive use cases. Its use of floating gate transistors and advanced wear leveling algorithms give it the unique ability to store more data in the same amount of space as traditional SRAM chips, and its fast read and write latencies make it suitable for applications which require high performance.
The specific data is subject to PDF, and the above content is for reference
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