STM8 STM8S103F3P6 Entwickler- Development- Board

STM8 STM8S103F3P6 Entwickler- Development- Board inkl. Pinleiste Arduino ARM

STM8S103F3P6 Development Board incl. Pin Header © androegg

STM8S103F3P6 Development Board   © androegg

STM8S103F3P6 Development Board integrated AMS1117 © androegg

 

 

 

 

 

Das STM8 Minimum Entwicklerboard basiert auf dem STM8S103F3 von ST Microelectronics.

Im Lieferumfang ist

  • 1 Stück STM8 Minimum Entwicklerboard
  • 2 Stück Pinleiste 2,54 mm Pitch 10 polig
  • 1 Stück Pinleiste 2,54 mm Pitch 4 polig
  • enthalten.

    Der STM8S103F3 basiert auf dem 16 MHz advanced STM8 core mit Harvard Architektur und unterstützt

  • UART
  • SPI
  • I2C
  • GPIO
  • ADC
  • PWM
  •  

     

     

    Das STM8 Minimum Entwicklerboard verfügt ferner über einen AMS1117 Spannungskonverter und erlaubt eine Spannungsversorgung direkt über USB Micro Anschluss.

    The STM8 Minimum Development Board is based on STM8S103F3 from ST Microelectronics.

    The STM8 Development Board incl.

  •  1 pcs. STM8 Minimum Development Board
  • 2 pcs. 10-pin Pinheader 2.54 mm Pitch
  • 1 pcs. 4-pin Pinheader 2.54 mm Pitch
  •  

    The STM8S103F3 is based on a 16 MHz advanced STM8 core with Harvard
    architecture and supports

  • UART
  • SPI
  • I2C
  • GPIO
  • ADC
  • PWM
  •  

     

    The STM8 Development Board has an integrated AMS1117 Voltage Converter conectable thru USB Micro Connector.

    Ihre Vorteile

    • wir berechnen Nur 1 mal Versandkosten (ganz gleich wie viele Artikel)
    • Versand erfolgt 6 Tage die Woche (Mo. - Sa.)
    • Bestellungen bis 12:00 Uhr Versand noch am gleichen Tag
    • Fragen oder Problemen? kurze Nachricht genügt

     

    your benefit

    • we only charge shipping costs once
    • we ship 6 days a week (Mo. - Sa.)
    • Orders before 12:00 same day shipped
    • Questions or Problems? Just send a message

    STM8 Minimum Develoment Board Features:

    • integrated AMS1117 Voltage Converter
    • incl. Pin Header
    • Power Supply –
      5V via micro USB,
      or 4.4 – 15V input via -/+ through holes
    • 4-pin debug header (SWIM)
    • Reset button
    • Indicator LED
      Power and user (test) LED

    STM8S103F3 Features:

    • Core
      • 16 MHz advanced STM8 core with Harvard
      architecture and 3-stage pipeline
      • Extended instruction set
    • Memories
      • Program memory: 8 Kbyte Flash; data
      retention 20 years at 55 °C after 10 kcycle
      • Data memory: 640 byte true data EEPROM;
      endurance 300 kcycle
      • RAM: 1 Kbyte
    • Clock, reset and supply management
      • 2.95 to 5.5 V operating voltage
      • Flexible clock control, 4 master clock sources
      – Low power crystal resonator oscillator
      – External clock input
      – Internal, user-trimmable 16 MHz RC
      – Internal low-power 128 kHz RC
      • Clock security system with clock monitor
      • Power management:
      – Low-power modes (wait, active-halt, halt)
      – Switch-off peripheral clocks individually
      • Permanently active, low-consumption poweron
      and power-down reset
    • Interrupt management
      • Nested interrupt controller with 32 interrupts
      • Up to 27 external interrupts on 6 vectors
      Timers
      • Advanced control timer: 16-bit, 4 CAPCOM
      channels, 3 complementary outputs, dead-time
      insertion and flexible synchronization16-bit general purpose timer, with 3 CAPCOM
      channels (IC, OC or PWM)
      • 8-bit basic timer with 8-bit prescaler
      • Auto wake-up timer
      • Window watchdog and independent watchdog
      timers
    • Communication interfaces
      • UART with clock output for synchronous
      operation, SmartCard, IrDA, LIN master mode
      • SPI interface up to 8 Mbit/s
      • I2C interface up to 400 kbit/s
    • Analog to digital converter (ADC)
      • 10-bit, ±1 LSB ADC with up to 5 multiplexed
      channels, scan mode and analog watchdog
    • I/Os
      • Up to 28 I/Os on a 32-pin package including
      21 high sink outputs
      • Highly robust I/O design, immune against
      current injection