Datasheet
Table Of Contents
- Features
- Pin Configuration
- Description
- Architectural Overview
- General-purpose Register File
- ALU – Arithmetic Logic Unit
- Flash Program Memory
- Program and Data Addressing Modes
- Subroutine and Interrupt Hardware Stack
- EEPROM Data Memory
- Memory Access and Instruction Execution Timing
- I/O Memory
- Reset and Interrupt Handling
- ATtiny12 Internal Voltage Reference
- Interrupt Handling
- Sleep Modes for the ATtiny11
- Sleep Modes for the ATtiny12
- ATtiny12 Calibrated Internal RC Oscillator
- Timer/Counter0
- Watchdog Timer
- ATtiny12 EEPROM Read/Write Access
- Analog Comparator
- I/O Port B
- Memory Programming
- Program (and Data) Memory Lock Bits
- Fuse Bits in ATtiny11
- Fuse Bits in ATtiny12
- Signature Bytes
- Calibration Byte in ATtiny12
- Programming the Flash and EEPROM
- High-voltage Serial Programming
- High-voltage Serial Programming Algorithm
- High-voltage Serial Programming Characteristics
- Low-voltage Serial Downloading (ATtiny12 only)
- Low-voltage Serial Programming Characteristics
- Electrical Characteristics
- Register Summary ATtiny11
- Register Summary ATtiny12
- Instruction Set Summary
- Ordering Information
- Packaging Information
- Data Sheet Change Log for ATtiny11/12
- Table of Contents

63
ATtiny11/12
1006D–AVR–07/03
Figure 39. Idle Supply Current vs. V
CC
Figure 40. Idle Supply Current vs. V
CC
, Device Clocked by Internal Oscillator
0
1
1
2
2
3
2 2.5 3 3.5 4 4.5 5 5.5 6
T = 25˚C
A
T = 85˚C
A
IDLE SUPPLY CURRENT vs. V
cc
V
CC
(V)
FREQUENCY = 4 MHz
I (mA)
CC
0
0.05
0.1
0.15
0.2
0.25
0.3
0.35
2.5 3 3.5 4 4.5 5 5.5 6
IDLE SUPPLY CURRENT vs. V
cc
DEVICE CLOCKED BY 1.0MHz INTERNAL RC OSCILLATOR
I
cc
(mA)
V
cc
(V)
T = 85˚C
A
T = 25
˚
C
A