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PIC16F1847_13 Datasheet, PDF (354/440 Pages) Microchip Technology – 18/20/28-Pin Flash Microcontrollers with XLP Technology
PIC16(L)F1847
30.3 DC Characteristics: Power-Down Currents (IPD) (Continued)
PIC16LF1847
PIC16F1847
Standard Operating Conditions (unless otherwise stated)
Operating temperature -40°C  TA  +85°C for industrial
-40°C  TA  +125°C for 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 Characteristics
Min.
Typ†
Max.
+85°C
Max.
+125°C
Units
VDD
Conditions
Note
D026A*
—
250
—
—
250
—
—
A
1.8 ADC Current (Note 1, 3),
—
A
3.0 conversion in progress
D026A*
D027
D027
—
280
—
—
280
—
—
280
—
—
2.0
6.0
—
5.0
9.0
—
21
41
—
23
47
—
29
55
—
A
—
A
—
A
8.0
A
12.0 A
45
A
55
A
68
A
1.8 ADC Current (Note 1, 3),
3.0 conversion in progress
5.0
1.8 Cap Sense, Low Power,
3.0 CPSRM = 0, CPSRNG = 01
(Note 1)
1.8 Cap Sense, Low Power,
3.0 CPSRM = 0, CPSRNG = 01
(Note 1)
5.0
D027A
D027A
D027B
—
6.0
9.0
10
A
1.8 Cap Sense, Medium Power,
—
8.0
13
14
A
3.0 CPSRM = 0, CPSRNG = 10
(Note 1)
—
21
44
—
24
53
—
27
57
47
A
1.8 Cap Sense, Medium Power
60
A
3.0 CPSRM = 0, CPSRNG = 10
(Note 1)
71
A
5.0
—
13
22
—
35
65
24
A
1.8 Cap Sense, High Power,
70
A
3.0 CPSRM = 0, CPSRNG = 11
(Note 1)
D027B
D028
D028
D028B
—
21
44
—
40
68
—
50
78
—
8.0
16
—
9.0
18
—
28
45
—
30
56
—
32
60
—
28
46
—
29
48
50
A
1.8 Cap Sense, High Power,
80
A
3.0 CPSRM = 0, CPSRNG = 11
(Note 1)
90
A
5.0
17
A
1.8 Comparator,
19
A
3.0 Low Power, CxSP = 0
(Note 1)
50
A
1.8 Comparator,
61
A
3.0 Low Power, CxSP = 0
(Note 1)
80
A
5.0
48
A
1.8 Comparator,
50
A
3.0 Normal Power, CxSP = 1
(Note 1)
D028B
*
†
Note 1:
2:
3:
—
60
80
85
A
1.8 Comparator,
—
62
85
90
A
3.0 Low Power, CxSP = 1
(Note 1)
—
64
90
105
A
5.0
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.
The peripheral current is the sum of the base IDD or IPD and the additional current consumed when this peripheral is
enabled. The peripheral  current can be determined by subtracting the base IDD or IPD current from this limit. Max
values should be used when calculating total current consumption.
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.
ADC oscillator source is FRC.
DS40001453D-page 354
Preliminary
 2011-2013 Microchip Technology Inc.