67F050

67F050


Specifications
SKU
12608095
Details

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Parameter Description Value Unit
Part Number Unique identifier for the component 67F050 -
Type Type of component IC -
Function Primary function of the component Microcontroller -
Package Encapsulation type DIP-40 -
Operating Voltage Range of supply voltage 2.0 to 5.5 V
Operating Current Typical current consumption 10 mA
Flash Memory Size of non-volatile memory 512 KB
SRAM Size of volatile memory 64 KB
Clock Speed Maximum operating frequency 72 MHz
I/O Pins Number of input/output pins 32 -
Temperature Range Operating temperature range -40 to 85 掳C
Storage Temperature Temperature range for storage -65 to 150 掳C
ESD Protection Electrostatic discharge protection level HBM: 2000V V
Operating Humidity Relative humidity range for operation 5% to 95% % RH
Power-down Mode Low power consumption mode Yes -
Wake-up Time Time to wake up from power-down mode 2 渭s
Communication Interfaces Supported communication protocols UART, SPI, I2C -
Analog Inputs Number of analog-to-digital converter (ADC) inputs 12 -
Digital Outputs Number of digital-to-analog converter (DAC) outputs 2 -
Watchdog Timer Built-in watchdog timer Yes -
Timer/Counters Number of timers/counters 5 -
PWM Channels Number of pulse-width modulation (PWM) channels 8 -

Instructions for Use:

  1. Power Supply:

    • Ensure the supply voltage is within the specified range (2.0 to 5.5V).
    • Connect the VCC pin to the positive supply and GND pin to the ground.
  2. Clock Configuration:

    • Configure the internal or external clock source as per the application requirements.
    • For external clock, connect the clock signal to the appropriate pin.
  3. Programming:

    • Use a compatible programmer to upload the firmware to the flash memory.
    • Follow the programming guidelines provided in the datasheet.
  4. I/O Configuration:

    • Configure the I/O pins as inputs or outputs based on the application.
    • Use internal pull-up/pull-down resistors if necessary.
  5. Communication Interfaces:

    • Initialize the communication interfaces (UART, SPI, I2C) according to the protocol specifications.
    • Set the baud rate, data format, and other parameters as required.
  6. Analog Inputs:

    • Connect the analog signals to the ADC inputs.
    • Configure the ADC settings in the microcontroller to read the analog values.
  7. Digital Outputs:

    • Use the DAC outputs to generate analog signals.
    • Configure the DAC settings in the microcontroller to set the output voltage.
  8. Timers and Counters:

    • Initialize the timers/counters with the desired prescaler and mode.
    • Use them for timing, counting, or generating periodic interrupts.
  9. Watchdog Timer:

    • Enable the watchdog timer to reset the microcontroller if it becomes unresponsive.
    • Periodically service the watchdog timer to prevent unintended resets.
  10. Power Management:

    • Use the power-down mode to reduce power consumption when the microcontroller is idle.
    • Wake up the microcontroller using an interrupt or a timer event.
  11. ESD Protection:

    • Handle the microcontroller with care to avoid electrostatic discharge.
    • Use proper grounding and handling procedures during assembly and testing.
  12. Storage and Handling:

    • Store the microcontroller in a dry environment within the specified temperature range.
    • Avoid exposing the component to extreme temperatures or humidity.

For detailed information, refer to the datasheet and application notes provided by the manufacturer.

(For reference only)

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