Chinese chips

GD32F310G8U6TR QFN-28-EP(4x4) Arm® Cortex®-M4 32-bit MCU

GD32F310G8U6TR is a Replacement parts of 

STM32F301K6U6/STM32F301K8U6

/STM32F302K8U6

 

GD32F310G8U6TR 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. :

    GD32F310G8U6TR
  • Manufacturer :

    GigaDevice
  • Description :

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

    REEL
  • Package :

    QFN-28-EP(4x4)
  • Stock :

    in stock
  • Price :

    $0.5-$0.9

 

GD32F310G8U6TR

Price: $0.5-$0.9 $2.2-$3.5
Replace parts:
Replacement parts:
Alternative parts:
Pin to pin parts:
GD32F310G8U6TR
STM32F301K6U6
STM32F301K8U6
STM32F302K8U6
STM32F301K6U6TR
STM32F301K8U6TR
STM32F302K8U6TR

 

 


GD32F310G8U6TR vs. STM32F301K6U6: Superior Memory and Performance

The GD32F310G8U6TR outperforms the STM32F301K6U6 in several key areas, including memory size and overall performance. Both chips are based on the ARM Cortex-M3 core and operate at a clock speed of 72 MHz, providing strong processing power for a variety of embedded applications. However, the GD32F310G8U6TR comes with 64 KB Flash and 20 KB SRAM, compared to the STM32F301K6U6's 48 KB Flash and 12 KB SRAM. This 16 KB difference in SRAM gives the GD32F310G8U6TR a significant advantage in handling more complex applications, enabling smoother multitasking and the ability to store larger data buffers or more code.

In addition to its larger memory, the GD32F310G8U6TR supports a more extensive set of peripherals, including I2C, SPI, and USART, which provide greater flexibility for interfacing with other components in your system. The STM32F301K6U6, while also equipped with essential communication peripherals, lacks some of the more specialized options available on the GD32F310G8U6TR, which makes it less ideal for designs that demand high peripheral integration.


GD32F310G8U6TR vs. STM32F301K8U6: Enhanced Memory and Cost Efficiency

When comparing the GD32F310G8U6TR to the STM32F301K8U6, the main difference lies in the SRAM configuration. Both devices are equipped with 64 KB Flash and run at 72 MHz, but the GD32F310G8U6TR offers 20 KB SRAM, while the STM32F301K8U6 is limited to 16 KB SRAM. The additional 4 KB of SRAM in the GD32F310G8U6TR is particularly beneficial for applications requiring more dynamic memory, such as real-time data processing or complex algorithmic calculations.

Another key benefit of the GD32F310G8U6TR is its cost-effectiveness. Despite offering better memory and more advanced features, the GD32F310G8U6TR is competitively priced, providing a more affordable solution for price-sensitive projects while ensuring performance does not suffer. The STM32F301K8U6 may provide similar flash capacity but comes with fewer SRAM resources, making it less suitable for applications that require more memory for operation.

The GD32F310G8U6TR also excels in terms of peripheral support and integration, providing more robust I/O options, which is ideal for multifunctional designs.


GD32F310G8U6TR vs. STM32F302K8U6: More Flexibility and Efficiency

In comparison with the STM32F302K8U6, the GD32F310G8U6TR has a clear edge in flexibility and power efficiency. Both chips are built around the Cortex-M3 core and offer 72 MHz clock speeds, but the GD32F310G8U6TR benefits from 64 KB Flash and 20 KB SRAM, while the STM32F302K8U6 is equipped with 64 KB Flash and 16 KB SRAM. The additional 4 KB SRAM in the GD32F310G8U6TR improves its ability to handle larger datasets or more complex firmware without overloading its memory, especially when performing data-intensive tasks such as real-time processing or machine control.

Additionally, the GD32F310G8U6TR incorporates better power management features, making it more efficient in low-power operation modes. This is particularly beneficial for battery-operated or energy-conscious applications. The STM32F302K8U6, although offering competitive features in terms of performance, is not as power-efficient under similar operational loads, making the GD32F310G8U6TR a better choice for low-power designs.

In terms of peripheral integration, the GD32F310G8U6TR provides advanced communication interfaces and analog-to-digital conversion capabilities that offer greater flexibility for diverse applications, such as motor control, sensor interfacing, or industrial automation, where precise control and multiple I/O channels are essential. The STM32F302K8U6 is also well-equipped with peripherals but may fall short in terms of specific, more complex requirements that the GD32F310G8U6TR handles with ease.


GD32F310G8U6TR vs. STM32F301K6U6 / STM32F301K8U6 / STM32F302K8U6: Comprehensive Advantages

In summary, the GD32F310G8U6TR stands out as a superior solution when compared to the STM32F301K6U6, STM32F301K8U6, and STM32F302K8U6. The GD32F310G8U6TR delivers a stronger overall performance with its larger SRAM (20 KB) and better memory management capabilities, which makes it an ideal choice for more demanding applications. It also offers enhanced peripheral support, giving it the flexibility needed for a wide variety of embedded systems, from automotive to industrial control and consumer electronics.

Furthermore, the GD32F310G8U6TR delivers improved power efficiency, especially in low-power operational modes, making it an attractive option for designs that need to balance performance with energy consumption. When considering both the cost and performance, the GD32F310G8U6TR offers an outstanding value proposition, providing better memory and peripheral integration at a competitive price compared to the STM32F301K6U6, STM32F301K8U6, and STM32F302K8U6.

With these enhanced features, the GD32F310G8U6TR is positioned as a cost-effective and high-performance solution, giving it a clear advantage over these competitors in applications that require high processing power, ample memory, and energy efficiency.

 

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