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AT89C51ID2-RDTIM Datasheet(PDF) 141 Page - ATMEL Corporation |
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AT89C51ID2-RDTIM Datasheet(HTML) 141 Page - ATMEL Corporation |
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141 / 159 page ![]() 141 AT89C51ID2 4289A–8051–09/03 Notes: 1. Operating I CC is measured with all output pins disconnected; XTAL1 driven with TCLCH, TCHCL = 5 ns (see Figure 60), VIL = V SS + 0.5V, VIH = VCC - 0.5V; XTAL2 N.C.; EA = RST = Port 0 = VCC. ICC would be slightly higher if a crystal oscillator used (see Figure 57). 2. Idle I CC is measured with all output pins disconnected; XTAL1 driven with TCLCH, TCHCL = 5 ns, VIL = VSS + 0.5V, VIH = VCC - 0.5V; XTAL2 N.C; Port 0 = V CC; EA = RST = VSS (see Figure 58). 3. Power-down I CC is measured with all output pins disconnected; EA = VCC, PORT 0 = VCC; XTAL2 NC.; RST = VSS (see Fig- ure 59). 4. Capacitance loading on Ports 0 and 2 may cause spurious noise pulses to be superimposed on the V OLS of ALE and Ports 1 and 3. The noise is due to external bus capacitance discharging into the Port 0 and Port 2 pins when these pins make 1 to 0 transitions during bus operation. In the worst cases (capacitive loading 100 pF), the noise pulse on the ALE line may exceed 0.45V with maxi V OL peak 0.6V. A Schmitt Trigger use is not necessary. 5. Typical values are based on a limited number of samples and are not guaranteed. The values listed are at room temperature and 5V. 6. Under steady state (non-transient) conditions, IOL must be externally limited as follows: Maximum I OL per port pin: 10 mA Maximum I OL per 8-bit port: Port 0: 26 mA Ports 1, 2 and 3: 15 mA Maximum total I OL for all output pins: 71 mA If IOL exceeds the test condition, VOL may exceed the related specification. Pins are not guaranteed to sink current greater than the listed test conditions. Figure 57. ICC Test Condition, Active Mode R RST RST Pull-down Resistor 50 200 (5) 250 k Ω I IL Logical 0 Input Current ports 1, 2, 3, 4 and 5 -50 µAV IN = 0.45V I LI Input Leakage Current ±10 µA 0.45V < V IN < VCC I TL Logical 1 to 0 Transition Current, ports 1, 2, 3, 4 -650 µAV IN = 2.0V CIO Capacitance of I/O Buffer 10 pF F C = 3 MHz T A = 25°C I PD Power-down Current 75 150 µA2.7 < V CC < 5.5V (3) I CCOP Power Supply Current on normal mode 0.4 x Frequency (MHz) + 5 mA V CC = 5.5V (1) I CCIDLE Power Supply Current on idle mode 0.3 x Frequency (MHz) + 5 mA V CC = 5.5V (2) I CCWRITE Power Supply Current on flash or EEdata write 0.8 x Frequency (MHz) + 15 mA V CC = 5.5V t WRITE Flash or EEdata programming time 7 10 ms 2.7 < V CC < 5.5V T A = -40°C to +85°C; VSS = 0V; VCC =2.7V to 5.5V; F = 0 to 60 MHz (Continued) Symbol Parameter Min Typ Max Unit Test Conditions EA V CC V CC ICC (NC) CLOCK SIGNAL VCC All other pins are disconnected. RST XTAL2 XTAL1 V SS V CC P0 |
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