GD25Q64CWIGR is a Replacement parts of
S25FL064LABMFI010
Mfr.Part No. :
GD25Q64CWIGRManufacturer :
GigaDeviceDescription :
Dual and Quad Serial Nor FlashPackaging :
ReelPackage :
WSON-8-EP(5x6)Stock :
in stockPrice :
$0.5-$0.7
GD25Q64CWIGR
Price: | $0.5-$0.7 | $1.5-$2.1 |
Replace parts:
Replacement parts:
Alternative parts:
Pin to pin parts:
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GD25Q64CWIGR |
S25FL064LABMFI010
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The GD25Q64CWIGR and the S25FL064LABMFI010 are both 64Mb SPI NOR flash memory chips, but the GD25Q64CWIGR offers several advantages that make it a superior choice for modern embedded applications. The GD25Q64CWIGR is engineered for faster read and write speeds, offering a more responsive system performance. This speed enhancement is particularly beneficial for high-performance applications such as automotive systems, industrial automation, and consumer electronics, where rapid data access is crucial.
Additionally, the GD25Q64CWIGR supports higher data throughput with its Quad SPI (QSPI) mode, allowing faster communication speeds compared to the S25FL064LABMFI010, which operates primarily with dual SPI or standard SPI modes. The GD25Q64CWIGR’s QSPI functionality provides a significant performance boost, resulting in reduced latency and faster boot times, which is vital in real-time applications.
One of the standout advantages of the GD25Q64CWIGR is its superior power efficiency. The GD25Q64CWIGR is optimized for lower power consumption, especially in idle and standby modes. This makes it an excellent choice for battery-powered applications, including portable devices, wearables, and Internet of Things (IoT) systems. In contrast, the S25FL064LABMFI010 tends to consume higher power in idle states, potentially limiting its application in energy-sensitive environments. The low-power design of the GD25Q64CWIGR ensures extended battery life, making it a more efficient solution for energy-critical use cases.
Another area where the GD25Q64CWIGR excels is in its program/erase cycle endurance. The GD25Q64CWIGR supports a higher number of program/erase cycles, which is particularly important in applications where frequent write operations are required, such as firmware updates, data logging, and automotive control units. The S25FL064LABMFI010, while reliable, offers fewer program/erase cycles in comparison, which could lead to premature wear in applications with heavy write activity. The longer endurance of the GD25Q64CWIGR ensures a more durable solution over the product's lifetime.
The GD25Q64CWIGR is designed to operate across a wide temperature range, making it suitable for use in harsh environments such as automotive, industrial, and outdoor applications. Its robust design ensures reliable performance even in extreme temperatures, which is essential for critical systems that operate in challenging conditions. On the other hand, the S25FL064LABMFI010 has a narrower operating temperature range, limiting its suitability for certain industrial and automotive applications that require more extreme temperature tolerances.
The GD25Q64CWIGR offers a variety of package options, including compact and space-saving solutions, making it easier to integrate into space-constrained designs. Whether used in consumer electronics or automotive applications, the flexibility in packaging ensures that the GD25Q64CWIGR can fit a wide range of design needs. While the S25FL064LABMFI010 offers reliable packaging, it may not provide the same degree of flexibility in terms of form factors and integration into different applications.
In conclusion, the GD25Q64CWIGR offers multiple advantages over the S25FL064LABMFI010. It excels in data transfer speeds, offering Quad SPI support for faster read/write speeds compared to the dual or standard SPI modes of the S25FL064LABMFI010. Its superior power efficiency ensures longer battery life in portable and energy-sensitive applications, while its increased program/erase cycle endurance enhances longevity in systems with frequent write operations.
Furthermore, the GD25Q64CWIGR's wide temperature range and robust reliability make it ideal for demanding applications in automotive, industrial, and outdoor environments. The flexible package options provide greater design versatility, giving it an edge in applications requiring compact, high-performance memory solutions.
Overall, the GD25Q64CWIGR provides a comprehensive, high-performance solution with better speed, efficiency, durability, and reliability when compared to the S25FL064LABMFI010, making it the preferred choice for modern embedded systems.
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