Chinese chips

GD32F427VGT6 LQFP-100(14x14) Arm® Cortex®-M4 32-bit mcu

GD32F427VGT6 is a Replacement parts of 

STM32F407VET6

 

GD32F427VGT6 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. :

    GD32F427VGT6
  • Manufacturer :

    GigaDevice
  • Description :

    Arm® Cortex®-M4 32-bit MCU
  • Packaging :

    TRAY
  • Package :

    LQFP-100(14x14)
  • Stock :

    in stock
  • Price :

    $2.5-$3.6

 

GD32F427VGT6

Price: $2.5-$3.6 $7.8-$10.5
Replace parts:
Replacement parts:
Alternative parts:
Pin to pin parts:
GD32F427VGT6
STM32F407VET6

 

 


GD32F427VGT6 vs. STM32F407VGT6: Core Architecture and Clock Speed

The GD32F427VGT6 and STM32F407VGT6 both feature the ARM Cortex-M4 core with a Floating Point Unit (FPU), which is ideal for high-performance embedded applications that require efficient processing of complex algorithms. However, the GD32F427VGT6 operates at a maximum clock speed of 180 MHz, which is 12 MHz faster than the STM32F407VGT6, which is capped at 168 MHz.

This increase in clock speed allows the GD32F427VGT6 to execute tasks more quickly, making it especially advantageous for real-time applications, signal processing, and high-speed data handling. The faster clock speed translates to better performance in computationally intensive tasks, providing a more responsive system and reducing the overall execution time of critical operations.


GD32F427VGT6 vs. STM32F407VGT6: Memory and Peripheral Integration

When comparing memory configurations, both the GD32F427VGT6 and STM32F407VGT6 offer 512 KB of Flash memory and 196 KB of SRAM, providing a solid foundation for most embedded applications. However, the GD32F427VGT6 differentiates itself by offering enhanced peripheral integration that supports a wider range of applications.

For instance, the GD32F427VGT6 includes multiple 12-bit ADCs capable of 2.4 MSPS, making it more suitable for applications requiring high-precision analog-to-digital conversion, such as sensor data acquisition, industrial automation, and instrumentation. Additionally, the GD32F427VGT6 offers enhanced timer functionality, communication interfaces, and more flexible I/O options compared to the STM32F407VGT6. These additional peripherals make the GD32F427VGT6 a more versatile solution for complex embedded systems.


GD32F427VGT6 vs. STM32F407VGT6: Power Efficiency

Both chips include advanced power management features, allowing for various low-power modes to extend battery life in portable applications. However, the GD32F427VGT6 benefits from a more efficient process technology, enabling lower overall power consumption when operating in idle and active modes.

The GD32F427VGT6’s power efficiency is particularly evident in low-power states, such as sleep and standby modes. In comparison, while the STM32F407VGT6 also offers power-saving features, the GD32F427VGT6 demonstrates better dynamic power optimization, which can be critical for battery-operated devices like wearables and remote sensors. Its superior power performance ensures that the device remains energy-efficient, which is crucial in applications where power consumption is a key concern.


GD32F427VGT6 vs. STM32F407VGT6: Cost-Effectiveness

One of the most significant advantages of the GD32F427VGT6 is its cost-effectiveness. While both microcontrollers deliver comparable performance and feature sets, the GD32F427VGT6 is priced more competitively than the STM32F407VGT6, which often results in a lower total cost of ownership.

For OEMs and developers working on high-volume applications, the lower price point of the GD32F427VGT6 allows for a cost-effective solution without compromising on performance or features. This is particularly beneficial in industries such as consumer electronics, industrial automation, and automotive, where cost constraints are a critical factor in the product development lifecycle. The GD32F427VGT6 allows companies to maintain competitive pricing while still delivering high-quality, high-performance embedded solutions.


GD32F427VGT6 vs. STM32F407VGT6: Ecosystem and Development Tools

The STM32F407VGT6 benefits from the extensive STM32 ecosystem, which includes development tools like STM32CubeMX, IAR Embedded Workbench, and Keil MDK, making it easier for developers to quickly get started and integrate the chip into their designs.

However, the GD32F427VGT6 is also supported by a growing ecosystem provided by GigaDevice, offering compatibility with popular development environments such as Keil MDK, IAR Embedded Workbench, and STM32CubeMX. Additionally, GigaDevice provides developers with comprehensive SDKs, firmware libraries, and example code for quick and efficient product development. While the STM32 ecosystem is well-established, the GD32F427VGT6 benefits from continued support and a range of powerful tools, allowing developers to integrate and deploy their designs efficiently.


GD32F427VGT6 vs. STM32F407VGT6: Conclusion

In summary, the GD32F427VGT6 offers several key advantages over the STM32F407VGT6:

  • Higher clock speed of 180 MHz compared to the 168 MHz of the STM32F407VGT6, enabling better performance and faster execution of tasks.

  • Enhanced peripheral set, including multiple 12-bit ADCs and more advanced timers, offering greater flexibility and adaptability for various applications.

  • Superior power efficiency, providing better power management and longer battery life, especially in low-power modes.

  • Cost-effective pricing, making the GD32F427VGT6 a more attractive choice for high-volume production and budget-conscious applications.

  • Growing development ecosystem, with comprehensive support from GigaDevice, ensuring efficient integration and product development.

 

The GD32F427VGT6 is a highly competitive microcontroller that offers improved performance, lower power consumption, and better cost efficiency, making it a strong alternative to the STM32F407VGT6 for a wide range of embedded systems, particularly in high-performance and power-sensitive applications.

 

 

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