STM32F030R8T6

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STMicroelectronics STM32F030R8T6

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Part No.:
STM32F030R8T6
Manufacturer:
STMicroelectronics
Package:
64-LQFP
Datasheet:
STM32F030R8T6.pdf
Description:
IC MCU 32BIT 64KB FLASH 64LQFP
In Stock:
2998
Quantity:
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    STM32F030R8T6 this integrated circuit is available in factory sealed anti static packs. at icwhale.com. Please read product page below detail information. including STM32F030R8T6 price, data-sheet, in-stock availability, technical difficulties. Also. Quickly Enter the access of compare listing to find out replaceable electronic parts. If you want to retrieve comprehensive data for STM32F030R8T6 to optimize the supply chain (including cross references, life-cycle, parametric, counterfeit risk, obsolescence managements forecasts), please contact to our Tech-supports team.

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    STM32F030R8T6 informationSTM32F030R8T6 information

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    STM32F030R8T6 Typical application Circuitry Schematics


    Creating a circuit with the STM32F030R8T6, an ARM Cortex-M0 microcontroller from STMicroelectronics, involves consideration of various factors, including power supply, clock, reset, debugging, GPIO, communication interfaces, and any specific peripherals like ADC. 
    Below is a structured guide:  

    1. Power Supply: - VDD Pins: Connect to a stable 3.3V power source. - VSS Pins: Connect to the ground. - Decoupling Capacitors: Place a 100nF ceramic capacitor close to each VDD/VSS pair and a 10μF capacitor on the VDD line.  

    2. Clock Source: - OSC_IN and OSC_OUT: Connect an external crystal oscillator (8 MHz commonly used) with appropriate load capacitors for stabilization. - Alternatively, the internal RC oscillator can be used.  

    3. Reset Circuit: - NRST Pin: Connect a push-button for manual reset, with a pull-up resistor (10kΩ typically) and a capacitor (100nF) to ensure stable reset behavior.  

    4. Debugging/Programming Interface: - SWCLK, SWDIO, and GND: Connect these pins to the respective pins on an ST-Link debugger/programmer.  

    5. GPIO Configuration: - GPIO Pins: Ensure that they are configured and utilized based on the specific application, including interfacing LEDs, buttons, etc.  

    6. Communication Interfaces: - USART1_TX/RX: Can be used for UART communication, possibly with an external module like a USB-to-Serial converter. - SPI Pins (MOSI, MISO, SCK): For SPI communication, paying attention to the required logic levels and possible need for level-shifting. - I2C (SCL, SDA): Used for I2C communication, generally requiring pull-up resistors.  

    7. ADC Inputs: - Ensure the STM32F030R8T6 analog inputs are scaled to be within 0V to VDD of the MCU for safe and accurate analog readings.  Example Circuit: Simple LED Blinker with Button Control  a. LED Control: - Connect an LED via a suitable resistor (220Ω or thereabouts) to a GPIO pin (such as PA1). Use firmware to control its state.  b. Button Interface: - Connect a button between a GPIO pin (e.g., PA0) and ground. Use a pull-up resistor (internal or external) and detect button presses in firmware.  

    PCB Design and Testing Guidelines: - Decoupling: Ensure capacitors are placed physically close to the power pins of the MCU. - Trace Routing: Maintain short and direct traces for high-speed signals and consider impedance matching if necessary. - Ground Plane: Implement a solid ground plane to mitigate EMI and provide a stable return path for currents. - Testing: Validate the design through rigorous testing under different conditions.  

    Additional Considerations: - Datasheet & Reference Manual: Leverage these documents to deeply understand the electrical characteristics and features of the STM32F030R8T6. - Software Support: Utilize STM32CubeMX or STM32CubeIDE for initializing peripherals, configuring pins, and setting up middleware, if applicable. - Firmware Development: Incorporate robust practices for firmware development, considering tasks, event handling, and potential error scenarios.  

    Conclusion: The robustness and functionality of the final application circuit will depend on meticulous design, iterative testing, and firmware implementation. Ensure to evaluate each subsystem of the microcontroller in the context of your application to optimize performance and reliability. Always validate the design under various conditions and refine based on testing outcomes.

    STM32F030R8T6 FAQ

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    3. Are the STM32F030R8T6 price and inventory displayed accurate?

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    Warm Tips: It may take up to 24 hours for the carriers to display tracking information. Usually, express delivery takes 3-5 days, and registered mail takes 25-60 days.

    6. What is the process for return or replacement of STM32F030R8T6?

    All goods will implement Pre-Shipment Inspection (PSI), selected at random from all batches of your order to do a systematic inspection before arranging the shipment. If there is something wrong with the STM32F030R8T6 we delivered, we will accept the replacement or return of the STM32F030R8T6 only when all of the below conditions are fulfilled:

    (1)Such as a deficiency in quantity, delivery of wrong items, and apparent external defects (breakage and rust, etc.), and we acknowledge such problems.

    (2)We are informed of the defect described above within 90 days after the delivery of STM32F030R8T6.

    (3)The PartNo is unused and only in the original unpacked packaging.

    Two processes to return the products:

    (1)Inform us within 90 days

    (2)Obtain Requesting Return Authorizations

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