Chinese chips

GD32F470VGT6 LQFP-100(14x14) Arm® Cortex®-M4 32-bit mcu

GD32F470VGT6 is a Replacement parts of 

STM32F417VET6

 

GD32F470VGT6 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. :

    GD32F470VGT6
  • Manufacturer :

    GigaDevice
  • Description :

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

    TRAY
  • Package :

    LQFP-100(14x14)
  • Stock :

    in stock
  • Price :

    $2.5-$3.6

 

GD32F470VGT6

Price: $2.5-$3.6 $7.8-$10.5
Replace parts:
Replacement parts:
Alternative parts:
Pin to pin parts:
GD32F470VGT6
STM32F417VET6
STM32F417VET6TR

 


 

 

GD32F470VGT6 vs. STM32F417VGT6: Core Architecture and Processing Performance

The GD32F470VGT6 and STM32F417VGT6 both utilize the ARM Cortex-M4 processor with floating-point unit (FPU), delivering strong performance in embedded applications that require efficient computing. Both chips run at 180 MHz, but the GD32F470VGT6 integrates optimized clock-cycle management that enhances its real-time processing capabilities, offering faster execution times for interrupt handling and task switching compared to the STM32F417VGT6.

While the STM32F417VGT6 also offers solid performance for high-demand applications, the GD32F470VGT6's enhanced pipeline and clock management features enable it to provide more consistent and reliable multithreaded performance, making it particularly advantageous in multi-tasking environments or complex control applications.


GD32F470VGT6 vs. STM32F417VGT6: Memory and Storage

Both chips feature 512 KB Flash and 256 KB SRAM, but the GD32F470VGT6 takes advantage of a more optimized memory access architecture. This optimization leads to improved data throughput and better overall system efficiency, particularly in applications with high memory demands, such as data processing and real-time control systems.

Additionally, the GD32F470VGT6 supports a dual-bank Flash configuration, enabling simultaneous read and write operations. This feature not only improves boot time but also enhances system stability and data integrity in situations where continuous operation is required. While the STM32F417VGT6 also supports high memory, its lack of dual-bank flash can result in longer boot times and potentially lower data throughput in more complex systems.


GD32F470VGT6 vs. STM32F417VGT6: Peripheral Integration and Flexibility

The GD32F470VGT6 excels in its peripheral offerings, including multiple UARTs, I2C, SPI, CAN, USB OTG, and DMA channels. Its flexible pinout configuration allows for more efficient system designs, reducing the need for external components and simplifying board layout.

While the STM32F417VGT6 also provides similar peripheral options, the GD32F470VGT6 stands out due to its more customizable I/O pin allocation, which allows designers to optimize system integration for specific application needs. This feature is particularly useful in high-density designs where board space is limited, enabling easier implementation of communication protocols and sensor interfaces.


GD32F470VGT6 vs. STM32F417VGT6: Power Efficiency

When it comes to power management, the GD32F470VGT6 integrates advanced low-power modes, such as standby and sleep modes, as well as dynamic voltage scaling, ensuring efficient power consumption across different operational states. This makes it a strong choice for battery-powered applications where extended battery life is crucial, such as wearables, IoT devices, and portable sensors.

While the STM32F417VGT6 also offers low-power features, the GD32F470VGT6's more optimized power management and the ability to dynamically adjust voltage and clock speeds give it an edge in power-sensitive environments, helping to achieve longer operational periods without sacrificing performance.


GD32F470VGT6 vs. STM32F417VGT6: Digital Signal Processing (DSP) Capabilities

Both the GD32F470VGT6 and STM32F417VGT6 support digital signal processing (DSP) operations thanks to the ARM Cortex-M4 core with an integrated FPU. However, the GD32F470VGT6 is optimized for real-time signal processing, offering faster floating-point arithmetic and accelerated signal processing capabilities.

This gives the GD32F470VGT6 a performance edge in applications that require high-speed signal processing, such as audio processing, motor control, and communication systems. The STM32F417VGT6 offers strong DSP performance but does not provide the same level of hardware acceleration, which can lead to slower performance in computationally intensive tasks.


GD32F470VGT6 vs. STM32F417VGT6: Cost-Effectiveness

The GD32F470VGT6 provides a highly competitive price-to-performance ratio, offering a comprehensive feature set at a lower cost compared to the STM32F417VGT6. For customers in need of a cost-effective solution without compromising on performance, the GD32F470VGT6 offers significant advantages, particularly for mass-production applications in markets such as consumer electronics and automotive systems.

In contrast, the STM32F417VGT6, while offering excellent performance and features, comes at a higher price point, which may not be ideal for cost-sensitive applications that still require high performance. The GD32F470VGT6’s cost-efficiency provides a viable option for companies looking to reduce overall development costs while maintaining high product quality.


GD32F470VGT6 vs. STM32F417VGT6: Ecosystem and Development Support

Both GigaDevice and STMicroelectronics offer comprehensive development tools for their chips. The GD32F470VGT6 is fully compatible with STM32CubeMX, STM32CubeIDE, and other STM32-based development tools, allowing for a smooth integration into existing workflows and reducing the learning curve for developers familiar with STM32 products.

Although STM32F417VGT6 benefits from a well-established development ecosystem, the GD32F470VGT6 offers similar toolchain support, ensuring that developers can leverage their existing knowledge of STM32 tools and libraries. This seamless integration means that engineers can focus more on product development rather than tool compatibility issues, accelerating the time to market.


GD32F470VGT6 vs. STM32F417VGT6: Conclusion

In summary, the GD32F470VGT6 provides several key advantages over the STM32F417VGT6, including:

  • Optimized performance with faster execution and enhanced clock-cycle management.

  • Dual-bank Flash memory for faster boot times and better data handling in real-time applications.

  • Superior peripheral integration and customizable pinout, facilitating easier and more efficient designs.

  • Advanced power management features for better energy efficiency in battery-powered devices.

  • Competitive pricing that offers a better price-to-performance ratio.

  • Seamless compatibility with STM32 development tools, reducing integration complexity.

 

With its enhanced performance, flexible peripheral design, power efficiency, and cost-effectiveness, the GD32F470VGT6 is an ideal choice for a wide range of embedded applications, from industrial control to consumer electronics and IoT devices. The STM32F417VGT6 is a strong competitor, but the GD32F470VGT6 provides a more well-rounded and cost-efficient solution that outperforms in several critical areas.

 

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