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GD32F450VIT6
+Lista de MateriaisARM Microcontrollers - MCU ARM CORTEX M4 MCU, LQFP100, Tr
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FabricanteGigaDevice
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Peça do Fabricante #GD32F450VIT6
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Especificações
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Visão Geral
Description
Key features include a maximum clock speed of 200 MHz, 1024 KB (1 MB) of flash memory, and 192 KB of SRAM, providing ample space for code and data storage. The microcontroller supports a wide range of peripherals, such as USB, CAN, I2C, SPI, and UART, making it versatile for various connectivity needs. Additionally, it includes multiple ADC and DAC channels for analog input and output.
The GD32F450VIT6 is designed for use in applications requiring high performance and efficiency, including industrial control, motor drives, consumer electronics, and audio processing. Its compatibility with the ARM ecosystem ensures access to a wide array of development tools and resources, facilitating easier development and deployment of embedded systems.
Equivalent
1. STM32F407VGT6 from STMicroelectronics
2. NXP's MK64FN1M0VLL12
3. Texas Instruments' TM4C1294NCPDT
These alternatives offer similar processing capabilities, peripherals, and memory configurations, making them suitable substitutes in applications where the GD32F450VIT6 is used.
Features
Pinout
Functions and features typically include:
1. CPU: ARM Cortex-M4 core with FPU (floating point unit).
2. Clock Speed: Up to 200 MHz.
3. Memory:
- Flash: Typically around 512 KB to 1 MB.
- SRAM: Usually up to 128 KB.
4. Peripherals:
- Various GPIOs (General Purpose Input/Output).
- Communication interfaces like USART, SPI, I2C, CAN.
- USB support.
- Timers and PWMs.
- ADCs and DACs for analog functions.
5. Advanced Features:
- DMA controllers.
- Advanced Timer and PWM generation.
- Various power-saving modes.
The GD32F450VIT6 is designed for high-performance applications requiring efficient control and processing capabilities. The specific pin functions depend on how they're configured in software, typically through a combination of hardware initialization and firmware.
Manufacturer
Application
1. Industrial Automation: Its robust performance and connectivity options make it ideal for controlling industrial processes.
2. Consumer Electronics: Suitable for use in smart home devices and personal gadgets due to its processing power and energy efficiency.
3. Automotive Systems: Can be utilized in vehicle control systems and infotainment.
4. Medical Devices: Its precision and reliability make it useful for diagnostic and monitoring equipment.
5. IoT Devices: Offers connectivity features necessary for Internet of Things applications.
6. Embedded Systems: A good fit for general-purpose embedded applications requiring real-time processing.
These applications take advantage of its ARM Cortex-M4 core, high-speed performance, and diverse peripheral integration.