Chinese chips

GD32F310K8T6 LQFP-32(7x7) Arm® Cortex®-M4 32-bit MCU

GD32F310K8T6 is a Replacement parts of 

STM32F301K6U6/STM32F301K8U6

STM32F334K4T6

 

GD32F310K8T6 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. :

    GD32F310K8T6
  • Manufacturer :

    GigaDevice
  • Description :

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

    TRAY
  • Package :

    LQFP-32(7x7)
  • Stock :

    in stock
  • Price :

    $0.5-$0.9

 

GD32F310K8T6

Price: $0.5-$0.9 $2.2-$3.5
Replace parts:
Replacement parts:
Alternative parts:
Pin to pin parts:
GD32F310K8T6
STM32F301K6U6
STM32F301K8U6
STM32F334K4T6
STM32F301K6U6TR
STM32F301K8U6TR
STM32F334K4T6TR

 

 


GD32F310K8T6 vs. STM32F301K6U6: Enhanced Memory and Peripheral Support

The GD32F310K8T6 and STM32F301K6U6 both utilize the ARM Cortex-M3 core, providing a similar clock speed of 72 MHz. However, the GD32F310K8T6 stands out with its memory configuration and peripheral support. While the STM32F301K6U6 offers 48 KB Flash and 12 KB SRAM, the GD32F310K8T6 comes with 64 KB Flash and 20 KB SRAM. This gives the GD32F310K8T6 a substantial memory advantage, providing more room for code execution and better support for data-intensive applications, such as sensor data processing and advanced algorithms.

The GD32F310K8T6 also offers a more flexible range of communication interfaces, including I2C, SPI, USART, and CAN, whereas the STM32F301K6U6 is more limited in terms of communication options. This makes the GD32F310K8T6 better suited for designs requiring versatile connectivity, such as automotive or industrial control applications.

In terms of power management, the GD32F310K8T6 also offers advanced low-power modes, which are critical for battery-operated devices. The STM32F301K6U6 does offer low-power features, but the GD32F310K8T6 provides a more optimized power performance, making it ideal for portable or remote applications where battery life is essential.


GD32F310K8T6 vs. STM32F301K8U6: Superior Memory and Cost Efficiency

The GD32F310K8T6 and the STM32F301K8U6 share a similar flash memory size of 64 KB, but the GD32F310K8T6 benefits from 20 KB SRAM, which is a 4 KB advantage over the STM32F301K8U6, which features 16 KB SRAM. This extra memory allows the GD32F310K8T6 to handle more demanding applications that require larger data buffers or more complex software routines, providing a more flexible platform for multi-tasking and data-intensive operations.

Additionally, the GD32F310K8T6 offers a more competitive price-to-performance ratio when compared to the STM32F301K8U6. Despite providing better memory and more peripheral options, the GD32F310K8T6 maintains a cost-effective price point, which makes it an attractive option for developers looking to reduce overall system costs while ensuring high performance and flexibility.

Moreover, the GD32F310K8T6 features CAN support, which the STM32F301K8U6 lacks. This is particularly important for automotive and industrial applications where Controller Area Network (CAN) is a standard for communication. Therefore, the GD32F310K8T6 offers a distinct advantage in scenarios requiring networking between devices.


GD32F310K8T6 vs. STM32F334K4T6: More Advanced Peripherals and Power Efficiency

When comparing the GD32F310K8T6 to the STM32F334K4T6, both chips offer similar flash memory (64 KB), but the GD32F310K8T6 has the edge in SRAM capacity with 20 KB SRAM, compared to the 16 KB SRAM in the STM32F334K4T6. This additional memory allows the GD32F310K8T6 to perform better in applications that require more data handling and buffer capabilities, such as sensor networks or complex control algorithms.

Another significant advantage of the GD32F310K8T6 is its peripheral integration. The chip supports a wider array of peripherals, such as multiple analog-to-digital converters (ADC) and digital-to-analog converters (DAC), making it more suitable for industrial control, motor control, and sensor interfacing. The STM32F334K4T6, while offering multiple peripherals, lacks the broad range provided by the GD32F310K8T6, especially in terms of analog functionality and advanced communication interfaces like CAN.

In terms of power management, the GD32F310K8T6 has been optimized for low-power operation, providing extended battery life in remote or portable devices. While the STM32F334K4T6 also offers low-power modes, the GD32F310K8T6 offers more advanced energy-efficient features, making it the better choice for designs where battery life is critical.


GD32F310K8T6 vs. STM32F301K6U6 / STM32F301K8U6 / STM32F334K4T6: Comprehensive Advantages

To summarize, the GD32F310K8T6 outperforms its competitors, the STM32F301K6U6, STM32F301K8U6, and STM32F334K4T6, in several key areas:

  1. Memory Advantage: With 64 KB Flash and 20 KB SRAM, the GD32F310K8T6 provides more SRAM capacity than both the STM32F301K6U6 and STM32F301K8U6, enabling better performance in data-heavy applications.

  2. Peripheral Flexibility: The GD32F310K8T6 supports a wide range of peripherals, including CAN and multiple ADC/DAC interfaces, which makes it ideal for industrial control, automotive, and sensor applications—areas where the competitors have fewer or less versatile options.

  3. Cost-Effectiveness: The GD32F310K8T6 provides a better price-to-performance ratio, offering superior memory and more advanced peripherals at a competitive price, making it more attractive for cost-sensitive projects that still require high performance.

  4. Power Efficiency: The GD32F310K8T6 is designed with advanced low-power features, making it a more suitable choice for battery-powered and energy-sensitive applications than the other products in the comparison.

In conclusion, the GD32F310K8T6 offers superior memory capacity, better peripheral integration, and more optimized power management compared to the STM32F301K6U6, STM32F301K8U6, and STM32F334K4T6. Its flexibility, cost-effectiveness, and advanced features make it the preferred choice for developers seeking a high-performance, versatile, and energy-efficient solution.

 

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