Datasheet

2011 Microchip Technology Inc. DS41391D-page 345
PIC16(L)F1826/27
Supply Current (IDD)
(1, 2)
D014 260
475
A1.8FOSC = 4 MHz
EC Oscillator mode,
Medium-power mode
—550
800
A3.0
D014 375
655
A 1.8 FOSC = 4 MHz
EC Oscillator mode
Medium-power mode
600
800
A 3.0
650
930
A 5.0
D015 3.6
10
A1.8F
OSC = 31 kHz
LFINTOSC mode
—7.0
15
A3.0
D015 21
42
A 1.8 FOSC = 31 kHz
LFINTOSC mode
27
55
A 3.0
28
60
A 5.0
D016 110
210
A1.8F
OSC = 500 kHz
MFINTOSC mode
150
250
A3.0
D016 150
250
A 1.8 FOSC = 500 kHz
MFINTOSC mode
210
345
A 3.0
270
425
A 5.0
D017* 0.8
1.5
mA 1.8 F
OSC = 8 MHz
HFINTOSC mode
—1.3
2.4
mA 3.0
D017* 1.0
2.0
mA 1.8 FOSC = 8 MHz
HFINTOSC mode
1.5
2.6
mA 3.0
1.7
2.8
mA 5.0
D018 1.2
2.5
mA 1.8 F
OSC = 16 MHz
HFINTOSC mode
—2.5
3.75
mA 3.0
D018 1.7
2.23
mA 1.8 FOSC = 16 MHz
HFINTOSC mode
2.7
4.3
mA 3.0
3.0
4.6
mA 5.0
30.2 DC Characteristics: PIC16(L)F1826/27-I/E (Industrial, Extended) (Continued)
PIC16LF1826/27
Standard Operating Conditions (unless otherwise stated)
Operating temperature -40°C TA +85°C for industrial
-40°C T
A +125°C for extended
PIC16F1826/27
Standard Operating Conditions (unless otherwise stated)
Operating temperature -40°C T
A +85°C for industrial
-40°C T
A +125°C for extended
Param
No.
Device
Characteristics
Min. Typ† Max. Units
Conditions
V
DD Note
* These parameters are characterized but not tested.
Data in “Typ” column is at 3.0V, 25°C unless otherwise stated. These parameters are for design guidance only and are not
tested.
Note 1: The test conditions for all IDD measurements in active operation mode are: OSC1 = external square wave, from
rail-to-rail; all I/O pins as inputs, pulled to V
DD; MCLR = VDD; WDT disabled.
2: The supply current is mainly a function of the operating voltage and frequency. Other factors, such as I/O pin loading
and switching rate, oscillator type, internal code execution pattern and temperature, also have an impact on the current
consumption.
3: 8 MHz internal RC oscillator with 4x PLL enabled.
4: 8 MHz crystal oscillator with 4x PLL enabled.
5: For RC oscillator configurations, current through R
EXT is not included. The current through the resistor can be extended
by the formula I
R = VDD/2REXT (mA) with REXT in k.