Chinese chips

GD25Q16ETIGR Dual and Quad Serial Flash

GD25Q16ETIGR is a Replacement parts of 

AT25PE16/AT25SF161

/M25P16-VMC6G/AT25SF161B

 

GD25Q16ETIGR 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. :

    GD25Q16ETIGR
  • Manufacturer :

    GigaDevice
  • Description :

    Dual and Quad Serial Flash
  • Packaging :

    reel
  • Package :

    SOP-8
  • Stock :

    in stock
  • Price :

    $0.15-$0.25

 

GD25Q16ETIGR

Price: $0.15-$0.25 $1.1-$1.5
Replace parts:
Replacement parts:
Alternative parts:
Pin to pin parts:
GD25Q16ETIGR
AT25PE16
AT25SF161
M25P16-VMC6G
AT25SF161B

 

 

Professional Comparison of GD25Q16ETIGR vs AT25PE16, AT25SF161, M25P16-VMC6G, and AT25SF161B

The GD25Q16ETIGR from GigaDevice is a 16Mb NOR Flash memory chip that combines high performance with low power consumption, making it ideal for embedded systems, IoT devices, and consumer electronics. Below is a detailed comparison of the GD25Q16ETIGR with competitor products: AT25PE16, AT25SF161, M25P16-VMC6G, and AT25SF161B, highlighting the key advantages of the GD25Q16ETIGR.


GD25Q16ETIGR vs AT25PE16: Performance and Speed

The GD25Q16ETIGR offers a Quad SPI interface, supporting a maximum clock speed of 104 MHz. This provides high-speed data transfer and quick read/write access, making it ideal for high-performance applications.

In comparison, the AT25PE16 from Microchip supports a Dual SPI interface with a maximum clock speed of 66 MHz, resulting in lower performance in terms of data throughput. The GD25Q16ETIGR's superior speed, particularly with its Quad SPI interface, enables faster data processing compared to the AT25PE16, making it more suitable for data-intensive applications.


GD25Q16ETIGR vs AT25SF161: Power Efficiency

The GD25Q16ETIGR is designed for low power consumption, offering a standby current of 5 µA and active read current of 12 mA. This makes it a power-efficient choice for applications where energy conservation is critical, such as battery-powered devices and IoT solutions.

On the other hand, the AT25SF161 also offers low power consumption but with a standby current of 6 µA and an active read current of 15 mA. While the power consumption of the AT25SF161 is relatively low, the GD25Q16ETIGR provides a slightly lower standby current and better overall energy efficiency, making it the better option for power-sensitive applications.


GD25Q16ETIGR vs M25P16-VMC6G: Reliability and Temperature Range

The GD25Q16ETIGR is engineered to withstand harsh environments with an extended operating temperature range of -40°C to +105°C, ensuring reliable operation in automotive, industrial, and outdoor applications.

In contrast, the M25P16-VMC6G from STMicroelectronics operates within a narrower temperature range of -40°C to +85°C, which limits its use in applications where higher temperature tolerance is required. The GD25Q16ETIGR's broader operating temperature range ensures better durability and reliability under more challenging conditions, making it a more versatile choice for high-reliability applications.


GD25Q16ETIGR vs AT25SF161B: Data Retention and Endurance

The GD25Q16ETIGR offers an impressive data retention period of 20 years with 100,000 program/erase cycles, making it suitable for long-term data storage in applications requiring high endurance.

The AT25SF161B, while offering a similar data retention period of 20 years, has a lower endurance of 50,000 program/erase cycles, which may limit its lifespan in high-write environments. For applications that require higher endurance and more frequent program/erase operations, the GD25Q16ETIGR's higher cycle endurance provides a significant advantage.


GD25Q16ETIGR vs AT25PE16: Security Features

The GD25Q16ETIGR incorporates hardware-based write protection and sector protection features, ensuring enhanced security and data integrity. These features help prevent accidental writes and unauthorized access, making the device ideal for secure data storage.

In comparison, the AT25PE16 offers software-based protection but lacks the hardware-level security provided by the GD25Q16ETIGR. The additional hardware security features of the GD25Q16ETIGR provide superior protection, especially in sensitive applications where data security is paramount.


GD25Q16ETIGR vs M25P16-VMC6G: Cost-Effectiveness

The GD25Q16ETIGR delivers a strong cost-to-performance ratio, offering high-speed performance, low power consumption, and extended temperature tolerance at a competitive price point. This makes it an ideal solution for high-volume applications and cost-sensitive designs.

While the M25P16-VMC6G offers comparable features, its pricing tends to be slightly higher due to its more limited features (e.g., narrower temperature range). For customers seeking a high-performance, cost-effective solution, the GD25Q16ETIGR provides a superior value proposition without compromising on essential features.


GD25Q16ETIGR vs AT25SF161B: Availability and Support

The GD25Q16ETIGR is backed by GigaDevice’s extensive technical support and availability, ensuring that customers can access resources and assistance as needed during development and production.

On the other hand, AT25SF161B is supported by Microchip, a well-established company in the industry, but its availability and support may be limited based on regional distribution and customer needs. The GD25Q16ETIGR's reliable supply chain and technical resources give it a competitive edge in terms of customer support and long-term availability.


Summary of Key Advantages of GD25Q16ETIGR

The GD25Q16ETIGR provides the following key advantages over its competitors:

  • Faster Performance: The GD25Q16ETIGR supports a Quad SPI interface with a 104 MHz clock speed, providing higher data throughput compared to the AT25PE16 (66 MHz) and M25P16-VMC6G (66 MHz).

  • Lower Power Consumption: The GD25Q16ETIGR offers a standby current of 5 µA, outperforming competitors like the AT25SF161 (6 µA) and AT25SF161B (6 µA) in terms of power efficiency.

  • Extended Temperature Range: The GD25Q16ETIGR has a temperature range of -40°C to +105°C, offering superior thermal resilience compared to the M25P16-VMC6G (-40°C to +85°C).

  • Higher Endurance: The GD25Q16ETIGR features 100,000 program/erase cycles, double the endurance of the AT25SF161B (50,000 cycles), making it ideal for high-write environments.

  • Enhanced Security: The GD25Q16ETIGR offers hardware-based write protection and sector protection, providing better data security than the AT25PE16 and AT25SF161.

  • Cost-Effective Solution: The GD25Q16ETIGR provides excellent value with high-speed performance, low power consumption, and superior features at a competitive price.


 

In conclusion, the GD25Q16ETIGR outperforms its competitors, including the AT25PE16, AT25SF161, M25P16-VMC6G, and AT25SF161B, in terms of speed, energy efficiency, reliability, endurance, security, and cost-effectiveness. With its advanced feature set, extended operating temperature range, and superior data retention, the GD25Q16ETIGR is the ideal choice for high-performance embedded systems, IoT devices, automotive applications, and industrial solutions.

 

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