Chinese chips

GD25Q16CEIGR Dual and Quad Serial Flash

GD25Q16CEIGR is a Replacement parts of 

M25P16-VMW6TG/SST26VF016B

/M25P16-VMN3PB

 

GD25Q16CEIGR 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. :

    GD25Q16CEIGR
  • Manufacturer :

    GigaDevice
  • Description :

    Dual and Quad Serial Flash
  • Packaging :

    reel
  • Package :

    USON-8(2x3)
  • Stock :

    in stock
  • Price :

    $0.38-$0.68

 

GD25Q16CEIGR

Price: $0.38-$0.68 $3.2-$4.5
Replace parts:
Replacement parts:
Alternative parts:
Pin to pin parts:
GD25Q16CEIGR
M25P16-VMW6TG
SST26VF016B
M25P16-VMN3PB

 

 

Professional Comparison of GD25Q16CEIGR vs M25P16-VMW6TG, SST26VF016B, and M25P16-VMN3PB

The GD25Q16CEIGR from GigaDevice is a high-performance 16Mb NOR Flash memory chip designed for embedded applications requiring fast, reliable data storage with low power consumption. Below is a professional comparison of the GD25Q16CEIGR with its competitors: M25P16-VMW6TG, SST26VF016B, and M25P16-VMN3PB, highlighting the key advantages of the GD25Q16CEIGR.


GD25Q16CEIGR vs M25P16-VMW6TG: Performance and Speed

The GD25Q16CEIGR supports Quad SPI interface with a maximum clock frequency of 104 MHz, enabling faster data transfer and improved read/write speed compared to its competitors. The high-speed operation ensures minimal latency for data access, which is especially beneficial for applications requiring quick data retrieval like boot sequences or real-time processing.

In contrast, the M25P16-VMW6TG from STMicroelectronics operates at a lower clock frequency of 66 MHz with SPI interface, which results in slower data transfer speeds. The GD25Q16CEIGR offers a significant performance advantage with a higher clock speed, ensuring faster data handling and more responsive system performance.


GD25Q16CEIGR vs SST26VF016B: Power Efficiency

The GD25Q16CEIGR is designed with low power consumption in mind, with a standby current of just 5 µA, making it an excellent choice for battery-powered devices and energy-efficient applications. This ensures longer operational life in mobile devices, IoT, and other low-power systems.

The SST26VF016B from Microchip, although efficient, has a standby current of around 7 µA, which is slightly higher than the GD25Q16CEIGR. The GD25Q16CEIGR therefore provides superior power efficiency, ensuring extended battery life and lower energy consumption for low-power applications.


GD25Q16CEIGR vs M25P16-VMN3PB: Security and Reliability

The GD25Q16CEIGR features advanced security functions, such as hardware-based write protection and sector protection, ensuring that data is safeguarded against accidental overwrites or unauthorized access. The chip also offers One-Time Programmable (OTP) regions for additional data integrity and security.

The M25P16-VMN3PB from STMicroelectronics also provides sector-level protection but does not include the OTP regions for enhanced data security. The GD25Q16CEIGR stands out with its OTP feature, making it an ideal choice for applications requiring secure boot or tamper-resistant storage, such as secure embedded systems.


GD25Q16CEIGR vs M25P16-VMW6TG and M25P16-VMN3PB: Temperature Range and Reliability

The GD25Q16CEIGR operates over a wide temperature range of -40°C to +105°C, making it suitable for harsh environments and industrial applications that require reliable performance across varying temperature conditions. This wide operational range ensures that the chip can handle temperature fluctuations commonly found in automotive and outdoor environments.

Both the M25P16-VMW6TG and M25P16-VMN3PB from STMicroelectronics operate within a narrower temperature range of -40°C to +85°C, limiting their application in more extreme environments. The GD25Q16CEIGR offers a clear advantage in terms of temperature resilience and can meet the needs of industries requiring high-reliability performance in challenging conditions.


GD25Q16CEIGR vs SST26VF016B: Data Retention and Endurance

The GD25Q16CEIGR offers excellent data retention of up to 20 years and a robust endurance of 100,000 program/erase cycles, which ensures that the chip is ideal for high-write environments and long-term data storage applications. This makes it an excellent choice for industrial and automotive systems that require reliable long-term data storage.

In comparison, the SST26VF016B offers a slightly lower endurance of 100,000 program/erase cycles and a data retention of up to 10 years, which may not be sufficient for some high-endurance applications. The GD25Q16CEIGR offers better long-term stability and data integrity for mission-critical systems.


Summary of Key Advantages of GD25Q16CEIGR

The GD25Q16CEIGR provides the following key advantages over its competitors:

  • Faster Performance: With a maximum clock frequency of 104 MHz, the GD25Q16CEIGR offers faster data transfer speeds than competitors like the M25P16-VMW6TG (66 MHz), making it ideal for applications requiring high-speed access.

  • Superior Power Efficiency: The GD25Q16CEIGR has a standby current of 5 µA, which is lower than the SST26VF016B's 7 µA, offering better battery life and lower power consumption for energy-efficient applications.

  • Enhanced Security Features: The GD25Q16CEIGR includes OTP regions and sector protection for advanced data security, while competitors like the M25P16-VMN3PB lack OTP features.

  • Wider Temperature Range: The GD25Q16CEIGR operates over a temperature range of -40°C to +105°C, offering better reliability in extreme environments compared to the M25P16-VMW6TG and M25P16-VMN3PB (both have a range of -40°C to +85°C).

  • Longer Data Retention and Endurance: The GD25Q16CEIGR ensures 20 years of data retention and 100,000 program/erase cycles, which makes it more reliable for long-term data storage compared to competitors like the SST26VF016B.


 

In conclusion, the GD25Q16CEIGR offers superior performance, low power consumption, security features, and reliability compared to its competitors. With its high-speed operation, advanced security, extended temperature range, and long-term endurance, the GD25Q16CEIGR is the optimal choice for high-performance, low-power, and secure embedded systems.

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