ATTINY13A-PU

ATTINY13A-PU


Specifications
Details

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Parameter Specifications
Package Type PDIP (Plastic Dual Inline Package)
Pin Count 8
Operating Voltage 1.8V to 5.5V
Operating Temperature -40°C to +85°C
Flash Memory Size 1KB
SRAM Size 64 Bytes
EEPROM Size None
Clock Speed Up to 9.6 MHz (with CLKOUT)
Program Memory Type Flash
Data Retention Time 20 years @ 85°C
Endurance Cycles 100,000 write/erase cycles
I/O Pins 6
Analog Comparator Yes
Brown-out Detection Yes (BOD)
Power Consumption 6 μA @ 3V, 1 MHz
Sleep Mode Current 0.1 μA

Instructions for ATTINY13A-PU

  1. Power Supply Connection:

    • Connect VCC to pin 8 and GND to pin 4.
    • Ensure the supply voltage is within the operating range of 1.8V to 5.5V.
  2. Clock Configuration:

    • The device can operate with an internal oscillator up to 9.6 MHz or external clock sources.
    • For precise timing applications, connect an external crystal or ceramic resonator to XTAL1 and XTAL2 pins.
  3. Programming:

    • Use ISP (In-System Programming) via SPI interface on pins PB5 (MOSI), PB3 (MISO), and PB4 (SCK).
    • Set fuse bits according to your application needs using a programmer like AVRISP mkII.
  4. Reset Pin:

    • Pin 1 serves as RESET. It can also be used as I/O if programmed appropriately.
    • Pull it high to enable normal operation; pulling low triggers reset.
  5. Brown-out Detection (BOD):

    • Enable BOD in software to prevent erratic behavior at low voltages.
    • Choose appropriate BOD level based on system requirements.
  6. Analog Comparator:

    • Utilize the analog comparator for comparing two voltages applied to its positive and negative inputs.
    • Configure through software to control outputs based on comparison results.
  7. Power Management:

    • Implement sleep modes to reduce power consumption when processing is not required.
    • Wake-up sources include pin change interrupts, watchdog timer, and brown-out detection.
  8. Handling and Storage:

    • Store in anti-static packaging to avoid damage.
    • Handle with care to prevent static discharge and physical damage.
(For reference only)

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