Figure 2-4. Active Supply Current vs. V (External Clock, 32 kHz) CC ACTIVE SUPPLY CURRENT vs. VCC INTERNAL OSCILLATOR, 32 KHz 0,04 125 °C -40 °C 85 °C 0,035 25 °C 0,03 0,025 0,02 (mA) I CC 0,015 0,01 0,005 0 1,5 2 2,5 3 3,5 4 4,5 5 5,5 VCC (V) 2.2Idle Supply CurrentFigure 2-5. Idle Supply Current vs. V (Internal Oscillator, 8 MHz) CC IDLE SUPPLY CURRENT vs. VCC INTERNAL RC OSCILLATOR, 8 MHz 0,7 125 °C 85 °C 25 °C -40 °C 0,6 0,5 0,4 (mA) I CC 0,3 0,2 0,1 0 1,5 2 2,5 3 3,5 4 4,5 5 5,5 VCC (V) 10ATtiny4/5/9/10 8127D–Appendix A–AVR–08/11 Document Outline Appendix A – ATtiny4/5/9/10 Specification at 125°C 1. Electrical Characteristics 1.1 Absolute Maximum Ratings* 1.2 DC Characteristics 1.3 Speed 1.4 Clock Characteristics 1.4.1 Accuracy of Calibrated Internal Oscillator 1.4.2 External Clock Drive 1.5 System and Reset Characteristics 1.5.1 Power-On Reset 1.5.2 VCC Level Monitor 1.6 Analog Comparator Characteristics 1.7 ADC Characteristics (ATtiny5/10, only) 1.8 Serial Programming Characteristics 2. Typical Characteristics 2.1 Active Supply Current 2.2 Idle Supply Current 2.3 Power-down Supply Current 2.4 Pin Pull-up 2.5 Pin Driver Strength 2.6 Pin Threshold and Hysteresis 2.7 Analog Comparator Offset 2.8 Internal Oscillator Speed 2.9 VLM Thresholds 2.10 Current Consumption of Peripheral Units 2.11 Reset Pulsewidth 3. Ordering Information 3.1 ATtiny4 3.2 ATtiny5 3.3 ATtiny9 3.4 ATtiny10 4. Revision History