Chinese chips

GD32E230K8T6 ARM® Cortex®-M23 32-bit MCU

GD32E230K8T6 is a Replacement parts of 

STM32F303K8U6/STM32F401CB

/STM32G071K8U6

 

GD32E230K8T6 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. :

    GD32E230K8T6
  • Manufacturer :

    GigaDevice
  • Description :

    ARM® Cortex®-M23 32-bit MCU
  • Packaging :

    TRAY
  • Package :

    LQFP-32(7x7)
  • Stock :

    in stock
  • Price :

    $0.28-$0.45

 

GD32E230K8T6

Price: $0.28-$0.45 $2.5-$4.8
Replace parts:
Replacement parts:
Alternative parts:
Pin to pin parts:
GD32E230K8T6
STM32F303K8U6
STM32F401CB
STM32G071K8U6

 

 


GD32E230K8T6 vs. STM32F303K8U6: Processing Power and Core Architecture

The STM32F303K8U6 is based on the ARM Cortex-M4 core, offering a clock speed of 72 MHz. The Cortex-M4 core provides good processing power and supports single-precision floating-point operations, which is suitable for many embedded systems requiring moderate computational tasks.

In contrast, the GD32E230K8T6 uses the ARM Cortex-M0+ core, operating at 96 MHz. The Cortex-M0+ core in the GD32E230K8T6 delivers higher clock speed compared to the STM32F303K8U6, which translates to better performance in real-time applications and faster data processing. The Cortex-M0+ core, while lower in complexity than the Cortex-M4, is highly efficient and provides sufficient processing power for most embedded applications while offering a cost-effective solution. This higher clock speed allows the GD32E230K8T6 to handle simple signal processing, control tasks, and sensor interfacing with better efficiency.


GD32E230K8T6 vs. STM32F401CBT6: Memory and Flash Size

The STM32F401CBT6 provides 512 KB of Flash and 96 KB of SRAM, which is well-suited for applications that require relatively large memory capacities. However, the GD32E230K8T6 offers 256 KB of Flash and 32 KB of SRAM, which may seem smaller in comparison. Despite the lower SRAM and Flash size, the GD32E230K8T6 provides faster processing speed and better peripheral integration, making it a better choice for applications that require real-time responsiveness and energy efficiency rather than large memory. The GD32E230K8T6 also benefits from an optimized power consumption approach, ensuring that it delivers excellent performance for its memory configuration in applications like sensor networks and IoT devices.

While the STM32F401CBT6 may be better suited for memory-heavy applications, the GD32E230K8T6 is ideal for cost-sensitive applications where the performance-per-watt and faster clock speeds are prioritized.


GD32E230K8T6 vs. STM32G071K8U6: Peripheral Integration and Connectivity

The STM32G071K8U6 offers an extensive set of peripherals, including multiple UARTs, I2C, SPI, and ADC interfaces. It is well-suited for applications requiring strong communication and data processing capabilities.

The GD32E230K8T6 also offers robust peripheral support, including multiple UARTs, I2C, SPI, PWM, and a 12-bit ADC, alongside additional features such as DMA support for faster data handling. The DMA (Direct Memory Access) in the GD32E230K8T6 allows for efficient data transfers without relying on the CPU, resulting in improved system performance and reduced power consumption, especially in data-intensive applications.

Additionally, the GD32E230K8T6 integrates more specialized features such as low-power modes and optimized clock management to achieve better energy efficiency for battery-powered applications. These features make the GD32E230K8T6 a superior choice for low-power IoT devices, wearables, and other embedded systems.


GD32E230K8T6 vs. STM32F303K8U6: Power Consumption

Both the GD32E230K8T6 and the STM32F303K8U6 are designed for low-power applications. However, the GD32E230K8T6 offers a superior power efficiency due to its Cortex-M0+ core, which is highly optimized for lower consumption while delivering decent performance. The STM32F303K8U6, with its Cortex-M4 core, tends to consume more power due to the higher processing capacity and floating-point operations, even in low-power modes.

For applications that require extended battery life and energy conservation, the GD32E230K8T6 provides a more efficient solution. The GD32E230K8T6 operates with a lower voltage and features advanced power management, making it particularly suitable for energy-sensitive applications such as wearable devices, smart sensors, and remote monitoring systems.


GD32E230K8T6: Superior Performance for Embedded Systems

Overall, the GD32E230K8T6 offers a better performance-to-cost ratio compared to its competitors, including the STM32F303K8U6, STM32F401CBT6, and STM32G071K8U6. With faster clock speeds, optimized power consumption, and extensive peripheral integration, the GD32E230K8T6 is an ideal choice for applications that require high processing efficiency with reduced system complexity.

The GD32E230K8T6 is an excellent solution for developers looking to achieve optimal performance and energy efficiency at a competitive price point. The combination of cost-effective performance, advanced peripheral integration, and low-power operation makes the GD32E230K8T6 suitable for a wide range of applications, including IoT devices, industrial automation, and consumer electronics.


Conclusion

In conclusion, while competitors like the STM32F303K8U6, STM32F401CBT6, and STM32G071K8U6 each have their strengths, the GD32E230K8T6 excels in key areas such as processing power, power efficiency, cost-effectiveness, and peripheral integration. Its Cortex-M0+ core with higher clock speeds, along with optimized memory configuration and advanced features, makes it a more flexible and efficient choice for modern embedded applications.

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