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2011-2015 Microchip Technology Inc.
DS40001609E-page 315
PIC16(L)F1508/9
D016
—
215
360
A
1.8
F
OSC
= 500 kHz,
HFINTOSC
—
275
480
A
3.0
D016
—
270
450
A
2.3
F
OSC
= 500 kHz,
HFINTOSC
—
300
500
A
3.0
—
350
620
A
5.0
D017*
—
410
660
A
1.8
F
OSC
= 8 MHz,
HFINTOSC
—
630
970
A
3.0
D017*
—
530
750
A
2.3
F
OSC
= 8 MHz,
HFINTOSC
—
660
1100
A
3.0
—
730
1200
A
5.0
D018
—
600
940
A
1.8
F
OSC
= 16 MHz,
HFINTOSC
—
970
1400
A
3.0
D018
—
780
1200
A
2.3
F
OSC
= 16 MHz,
HFINTOSC
—
1000
1550
A
3.0
—
1090
1700
A
5.0
D019A
—
1030
1500
A
3.0
F
OSC
= 20 MHz,
External Clock (ECH),
High-Power mode
D019A
—
1060
1600
A
3.0
F
OSC
= 20 MHz,
External Clock (ECH),
High-Power mode
—
1220
1800
A
5.0
TABLE 29-2:
SUPPLY CURRENT (I
DD
)
(1,2)
(CONTINUED)
PIC16LF1508/9
Standard Operating Conditions
(unless otherwise stated)
PIC16F1508/9
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 I
DD
measurements in active operation mode are: OSC1 = external square wave,
from rail-to-rail; all I/O pins tri-stated, pulled to V
SS
; MCLR = V
DD
; 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:
For RC oscillator configurations, current through R
EXT
is not included. The current through the resistor can
be extended by the formula IR = V
DD
/2R
EXT
(mA) with R
EXT
in k
.
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