Chinese chips

GD32F470VET6 LQFP-100(14x14) Arm® Cortex®-M4 32-bit mcu

GD32F470VET6 is a Replacement parts of 

STM32F417VET6

 

GD32F470VET6 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. :

    GD32F470VET6
  • Manufacturer :

    GigaDevice
  • Description :

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

    TRAY
  • Package :

    LQFP-100(14x14)
  • Stock :

    in stock
  • Price :

    $3.5-$5.0

 

GD32F470VET6

Price: $3.5-$5.0 $7.8-$10.5
Replace parts:
Replacement parts:
Alternative parts:
Pin to pin parts:
GD32F470VET6
STM32F417VET6
STM32F417VET6TR

 


 

 

GD32F470VET6 vs. STM32F417VET6: Core Architecture and Processing Power

Both the GD32F470VET6 and the STM32F417VET6 utilize the ARM Cortex-M4 core with an integrated Floating Point Unit (FPU), delivering strong performance for embedded systems requiring computational tasks. Operating at 180 MHz, the processing power of both chips is impressive, but the GD32F470VET6 offers optimized clock cycling and enhanced real-time processing capabilities that improve the efficiency of task execution. This makes the GD32F470VET6 especially suitable for complex applications, such as motor control, sensor fusion, and signal processing.

While both chips are built around a high-performance core, the GD32F470VET6 delivers more consistent performance due to its hardware optimizations for multithreading and parallel processing, giving it an edge in handling multitasking environments more effectively than the STM32F417VET6.


GD32F470VET6 vs. STM32F417VET6: Memory and Storage

In terms of flash memory, both chips provide 512 KB of Flash memory. However, the GD32F470VET6 integrates an advanced dual-bank Flash architecture, which allows for simultaneous read and write operations, resulting in faster boot times and better real-time system responsiveness. This feature significantly boosts performance in applications where boot-up time and system readiness are critical.

Both chips are equipped with 256 KB of SRAM, but the GD32F470VET6 benefits from superior memory access management. This feature helps in optimizing memory usage, providing better efficiency and reliability in systems that are heavily dependent on SRAM, such as data logging or high-speed processing tasks. The STM32F417VET6 lacks these optimizations, which can lead to slower memory access times and increased risk of memory fragmentation in complex systems.


GD32F470VET6 vs. STM32F417VET6: Peripheral Features and Integration

The GD32F470VET6 offers a rich set of peripherals, including multiple UARTs, I2C, SPI, CAN, and USB OTG, supporting flexible system configurations. It is particularly well-suited for communication-heavy applications such as industrial control, automated systems, and consumer electronics.

Although the STM32F417VET6 also supports a comprehensive set of peripherals, the GD32F470VET6 provides better peripheral integration. Its more flexible pinout configuration and improved peripheral mapping allow for more efficient and simplified system designs, reducing the need for external components. The STM32F417VET6 offers comparable peripherals but lacks the same level of flexibility, which can result in more complex board designs and higher overall system costs.


GD32F470VET6 vs. STM32F417VET6: Power Consumption and Efficiency

The GD32F470VET6 features advanced power management capabilities, including low-power modes and dynamic voltage scaling. These features allow the chip to operate efficiently across various power states, making it ideal for battery-powered applications, such as wearable devices and IoT systems, where energy consumption is a key factor.

While the STM32F417VET6 includes low-power features, the GD32F470VET6 offers better power-saving capabilities and a more optimized low-power design, which results in longer battery life and lower overall power consumption. This efficiency can be crucial in applications requiring extended field operation, where minimizing energy usage is paramount.


GD32F470VET6 vs. STM32F417VET6: Digital Signal Processing (DSP) and FPU Performance

Both the GD32F470VET6 and the STM32F417VET6 integrate the ARM Cortex-M4 core with an FPU, enabling efficient digital signal processing (DSP). However, the GD32F470VET6 is specifically optimized for high-speed DSP tasks with hardware acceleration for certain signal processing operations, improving audio processing, motor control, and filtering performance.

The STM32F417VET6 also delivers strong DSP capabilities, but the GD32F470VET6 provides faster computational throughput and enhanced floating-point performance, which translates to superior performance in real-time signal processing applications. This makes the GD32F470VET6 particularly beneficial in systems requiring high precision and low latency, such as industrial automation and robotics.


GD32F470VET6 vs. STM32F417VET6: Cost-Effectiveness

While the STM32F417VET6 is a well-regarded product, the GD32F470VET6 offers a more competitive price point, delivering high-performance features at a lower cost. This makes the GD32F470VET6 a cost-effective solution for applications where budget constraints exist, such as mass-produced consumer products and cost-sensitive embedded systems.

In high-volume production scenarios, the GD32F470VET6 provides a better price-to-performance ratio, making it an attractive alternative to the STM32F417VET6, especially for customers who need to balance high functionality with cost considerations.


GD32F470VET6 vs. STM32F417VET6: Development Ecosystem and Support

Both GigaDevice and STMicroelectronics offer robust development environments for their respective chips. The GD32F470VET6 is fully compatible with STM32CubeMX and other STM32-based tools, enabling a smooth transition for engineers familiar with the STM32 ecosystem. This compatibility allows developers to leverage their existing knowledge and development tools, reducing the learning curve.

The STM32F417VET6 benefits from a large developer community and extensive development toolchains, but the GD32F470VET6’s tool compatibility with STM32-based environments ensures faster integration, making it an easier choice for teams looking to quickly ramp up development with minimal overhead.


GD32F470VET6 vs. STM32F417VET6: Conclusion

In conclusion, the GD32F470VET6 offers several advantages over the STM32F417VET6, including:

  • Optimized processing performance for faster execution and better multitasking capabilities.

  • Dual-bank Flash architecture for faster boot-up and real-time system responsiveness.

  • Superior peripheral integration with flexible pinout configurations, enabling easier system designs.

  • Advanced power management features that deliver lower power consumption and extended battery life.

  • Better cost-effectiveness, providing more competitive pricing while maintaining high performance.

  • Seamless compatibility with STM32 development tools, facilitating a smooth transition for existing STM32 developers.

 

The GD32F470VET6 offers a high-performance, flexible, and cost-effective solution for a wide range of embedded applications, particularly in industrial control, consumer electronics, and IoT systems. Its enhanced features, power management capabilities, and competitive pricing make it an excellent choice over the STM32F417VET6 in many use cases.

 

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