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PIC18F6585 Datasheet, PDF (420/496 Pages) Microchip Technology – 64/68/80-Pin High-Performance, 64-Kbyte Enhanced Flash Microcontrollers with ECAN Module
PIC18F6585/8585/6680/8680
27.2 DC Characteristics: Power-down and Supply Current
PIC18FXX8X (Industrial, Extended)
PIC18LFXX8X (Industrial) (Continued)
PIC18LFXX8X
(Industrial)
Standard Operating Conditions (unless otherwise stated)
Operating temperature -40°C ≤ TA ≤ +85°C for industrial
PIC18FXX8X
(Industrial, Extended)
Standard Operating Conditions (unless otherwise stated)
Operating temperature -40°C ≤ TA ≤ +85°C for industrial
-40°C ≤ TA ≤ +125°C for extended
Param.
No.
Device
Typ Max Units
Conditions
D010
Supply Current (IDD)(2,3)
PIC18LFXX8X 500 500 µA
300 500 µA
850 1000 µA
PIC18LFXX8X 500 900 µA
500 900 µA
1 1.5 mA
-40°C
+25°C
+85°C
-40°C
+25°C
+85°C
VDD = 2.0V
VDD = 3.0V
FOSC = 1 MHZ,
EC oscillator
All devices 1
2 mA
-40°C
1
2 mA
+25°C
VDD = 5.0V
1.3 3 mA
+85°C
PIC18LFXX8X 1
2 mA
-40°C
1
2 mA
+25°C
VDD = 2.0V
1.5 2.5 mA
+85°C
PIC18LFXX8X 1.5 2 mA
1.5 2 mA
2 2.5 mA
-40°C
+25°C
+85°C
VDD = 3.0V
FOSC = 4 MHz,
EC oscillator
All devices 3
5 mA
-40°C
3
5 mA
+25°C
VDD = 5.0V
4
6 mA
+85°C
Legend:
Note 1:
2:
3:
Shading of rows is to assist in readability of the table.
The power-down current in Sleep mode does not depend on the oscillator type. Power-down current is
measured with the part in Sleep mode, with all I/O pins in high-impedance state and tied to VDD or VSS and
all features that add delta current disabled (such as WDT, Timer1 Oscillator, BOR, etc.).
The supply current is mainly a function of operating voltage, frequency and mode. Other factors, such as
I/O pin loading and switching rate, oscillator type and circuit, internal code execution pattern and
temperature, also have an impact on the current consumption.
The test conditions for all IDD measurements in active operation mode are:
OSC1 = external square wave, from rail-to-rail; all I/O pins tri-stated, pulled to VDD;
MCLR = VDD; WDT enabled/disabled as specified.
For RC oscillator configurations, current through REXT is not included. The current through the resistor can
be estimated by the formula Ir = VDD/2REXT (mA) with REXT in kΩ.
DS30491C-page 418
 2004 Microchip Technology Inc.