Chinese chips

GD25Q128ESIG Dual and Quad Serial Flash

GD25Q128ESIG is a Replacement parts of 

S25FL128LAGMFV010/AT25QF128A

/S25FL128LAGBFI020/AT25SF128A

/MT25QL128ABA1ESE-0SI

T/S25FL128LAGMFI010

/S25FL128LAGMFI013

 

GD25Q128ESIG has good quality and a cheaper price, which can effectively help you reduce costs and make your products more competitive. In addition, we have sufficient supply and stable price of this parts, which can greatly help you to avoid problems such as price increases and parts shortages of similar products from other brands.
  • Mfr.Part No. :

    GD25Q128ESIG
  • Manufacturer :

    GigaDevice
  • Description :

    Dual and Quad Serial Flash
  • Packaging :

    Tube
  • Package :

    SOP-8-208mil
  • Stock :

    in stock
  • Price :

    $0.38-$0.58

 

GD25Q128ESIG

Price: $0.38-$0.58 $3.2-$4.5
Replace parts:
Replacement parts:
Alternative parts:
Pin to pin parts:
GD25Q128ESIG
S25FL128LAGMFV010
AT25QF128A
S25FL128LAGBFI020
AT25SF128A
MT25QL128ABA1ESE-0SIT
S25FL128LAGMFI010
S25FL128LAGMFI013

 

 

Professional Comparison of GD25Q128ESIG vs S25FL128LAGMFV010, AT25QF128A, S25FL128LAGBFI020, AT25SF128A, MT25QL128ABA1ESE-0SIT, S25FL128LAGMFI010, and S25FL128LAGMFI013

The GD25Q128ESIG from GigaDevice is a high-performance 128Mb NOR Flash memory solution designed to meet the demands of modern consumer electronics, automotive, and industrial applications. Offering robust speed, endurance, and flexibility, this chip provides an excellent balance of features for a wide range of use cases. In this document, we compare the GD25Q128ESIG against key competitors: S25FL128LAGMFV010, AT25QF128A, S25FL128LAGBFI020, AT25SF128A, MT25QL128ABA1ESE-0SIT, S25FL128LAGMFI010, and S25FL128LAGMFI013. Each competitor’s characteristics are discussed, highlighting the advantages of the GD25Q128ESIG.


GD25Q128ESIG vs S25FL128LAGMFV010: Speed and Performance

The GD25Q128ESIG offers superior Quad SPI support with a maximum frequency of 104 MHz, enabling fast data transfer rates and high-performance system integration. This makes the GD25Q128ESIG well-suited for high-speed data access in applications such as boot code storage, high-frequency communication, and data logging.

In contrast, the S25FL128LAGMFV010 from Cypress Semiconductor supports a maximum frequency of 85 MHz in Quad SPI mode. While the S25FL128LAGMFV010 provides decent speed, it is slower compared to the GD25Q128ESIG, which provides faster data access and higher throughput for performance-critical applications.


GD25Q128ESIG vs AT25QF128A: Endurance and Data Retention

The GD25Q128ESIG offers 100,000 program/erase cycles and 20 years of data retention at 85°C, ensuring long-lasting reliability in mission-critical environments. Its data retention makes it suitable for industries like automotive, medical, and industrial applications, where memory stability is crucial.

The AT25QF128A from Microchip offers similar endurance with 100,000 program/erase cycles, but its data retention is specified at 10 years at 85°C, which is half of the GD25Q128ESIG's retention capability. This difference in data retention makes the GD25Q128ESIG a better choice for applications requiring long-term memory stability.


GD25Q128ESIG vs S25FL128LAGBFI020: Power Efficiency

The GD25Q128ESIG boasts low power consumption, with a standby current of 5 µA, ensuring it is energy-efficient for battery-powered systems. This power efficiency is crucial for IoT devices, wearables, and other energy-sensitive applications where extended battery life is a key design requirement.

On the other hand, the S25FL128LAGBFI020 from Cypress Semiconductor consumes standby current of 6 µA, which is slightly higher than the GD25Q128ESIG. While both chips are energy-efficient, the GD25Q128ESIG offers better power management, which is particularly advantageous for applications that require minimal power consumption over long periods.


GD25Q128ESIG vs AT25SF128A: Security Features

The GD25Q128ESIG features hardware-based write protection and sector-level protection, ensuring robust data security for critical system applications. The GD25Q128ESIG also supports Secure OTP (One-Time Programmable) regions, providing additional protection against unauthorized access or tampering of sensitive data.

In comparison, the AT25SF128A from Microchip also offers sector-level protection and write protection, but lacks the enhanced Secure OTP feature found in the GD25Q128ESIG. For security-sensitive applications, especially in industries like automotive and defense, the GD25Q128ESIG's advanced security features provide an added layer of protection.


GD25Q128ESIG vs MT25QL128ABA1ESE-0SIT: Temperature Range and Environmental Suitability

The GD25Q128ESIG operates over a wide temperature range of -40°C to +105°C, making it suitable for high-temperature environments. This wide operating range is ideal for automotive, industrial, and outdoor applications where memory chips must perform reliably under harsh environmental conditions.

The MT25QL128ABA1ESE-0SIT from Micron offers a more limited temperature range of -40°C to +85°C, which is acceptable for many consumer and industrial applications, but may not be sufficient for certain automotive or high-temperature industrial systems. The GD25Q128ESIG's broader temperature range ensures more reliable performance in demanding environments.


GD25Q128ESIG vs S25FL128LAGMFI010 and S25FL128LAGMFI013: Flexibility and Package Options

The GD25Q128ESIG offers multiple package options, including WSON, SOP, and UDFN, allowing for flexibility in design. This makes it adaptable to a wide range of system requirements, especially in space-constrained applications where a compact form factor is critical.

The S25FL128LAGMFI010 and S25FL128LAGMFI013 from Cypress Semiconductor also provide multiple package options but are generally limited to larger form factors. The GD25Q128ESIG's availability in smaller and more versatile packages provides better design flexibility, especially for portable devices and space-sensitive applications.


Summary of Key Advantages of GD25Q128ESIG

The GD25Q128ESIG excels in several critical areas when compared to its competitors:

  • Higher Speed: With a maximum clock speed of 104 MHz, it outperforms competitors like S25FL128LAGMFV010 (85 MHz), ensuring better data transfer rates and overall performance.

  • Better Data Retention: Offers 20 years of data retention at 85°C, which is significantly better than AT25QF128A (10 years), making it ideal for long-term data storage.

  • Superior Power Efficiency: Standby current of 5 µA, slightly outperforming the S25FL128LAGMFV010 (6 µA), providing extended battery life for energy-sensitive applications.

  • Enhanced Security: Features such as hardware write protection, sector-level protection, and Secure OTP provide stronger data security compared to the AT25SF128A.

  • Wider Temperature Range: With a temperature range of -40°C to +105°C, it is more reliable in harsh environmental conditions compared to the MT25QL128ABA1ESE-0SIT (limited to -40°C to +85°C).

  • Design Flexibility: The GD25Q128ESIG is available in a wide range of compact package options, offering greater design flexibility than products like the S25FL128LAGMFI010 and S25FL128LAGMFI013.

 

In conclusion, the GD25Q128ESIG offers a superior combination of performance, endurance, security, and design flexibility, making it an excellent choice for a wide range of applications, from consumer electronics to industrial systems. Compared to its competitors, it provides higher speed, better power efficiency, enhanced data retention, and advanced security features, making it the preferred option for high-performance, energy-efficient, and secure memory storage needs.

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