Description
BUY ATTINY85-20SU https://www.utsource.net/itm/p/12608537.html
Parameter |
Symbol |
Min |
Typ |
Max |
Unit |
Description |
Supply Voltage |
VCC |
1.8 |
- |
5.5 |
V |
Operating voltage range |
DC Current per I/O Pin |
I_O |
- |
40 |
- |
mA |
Maximum current per I/O pin |
Total DC Current |
I_T |
- |
200 |
- |
mA |
Maximum total current from VCC and GND pins |
Power Consumption |
P_D |
- |
6 |
- |
μW/MHz |
Power consumption at 3V, 1 MHz |
Temperature Range |
T_OP |
-40 |
- |
85 |
°C |
Operating temperature range |
Flash Memory |
F_M |
8 |
- |
- |
KB |
Size of flash memory |
EEPROM |
E_M |
512 |
- |
- |
B |
Size of EEPROM |
SRAM |
S_M |
512 |
- |
- |
B |
Size of SRAM |
Clock Speed |
f_CLK |
- |
20 |
- |
MHz |
Maximum clock frequency |
Package Type |
PKG |
- |
- |
- |
SOT-23-6 |
Package type |
Instructions for ATTINY85-20SU
Power Supply Setup:
- Ensure the supply voltage (VCC) is within the range of 1.8V to 5.5V.
- Connect a decoupling capacitor (e.g., 0.1μF) close to the VCC and GND pins to stabilize the power supply.
Clock Configuration:
- The device can operate with an internal oscillator up to 20 MHz or use an external crystal/resonator if needed.
- Configure the fuse bits using a programmer to set the desired clock source.
Programming:
- Use an ISP (In-System Programming) programmer like USBasp or AVRISP mkII.
- Set the appropriate programming speed and interface settings in your IDE (e.g., Arduino IDE, Atmel Studio).
Pin Configuration:
- Refer to the datasheet for specific pin functions and configure them as required (input/output, analog/digital).
- Be cautious not to exceed the maximum current ratings for any pin.
Operating Environment:
- Operate within the specified temperature range (-40°C to +85°C) to ensure reliable performance.
- Avoid exposing the device to excessive humidity or corrosive environments.
Power Management:
- Utilize sleep modes to reduce power consumption when the microcontroller is idle.
- Implement watchdog timers to reset the system if it becomes unresponsive.
Debugging:
- Use debugging tools such as AVR Dragon or JTAGICE for troubleshooting code issues.
- Monitor serial output or LED indicators for basic debugging during development.
(For reference only)
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