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PIC16F688T-I/ST View Datasheet(PDF) - Microchip Technology

Part Name
Description
Manufacturer
PIC16F688T-I/ST Datasheet PDF : 202 Pages
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PIC16F688
14.2 DC Characteristics: PIC16F688 -I (Industrial)
PIC16F688 -E (Extended)
DC CHARACTERISTICS
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 Units
VDD
Conditions
Note
D010 Supply Current (IDD)(1, 2)
16
23
μA
2.0 FOSC = 32 kHz
27
38
μA
3.0 LP Oscillator mode
47
75
μA
5.0
D011*
— 180 250 μA
— 290 400 μA
2.0 FOSC = 1 MHz
3.0 XT Oscillator mode
— 490 650 μA
5.0
D012
— 280 380 μA
— 480 670 μA
2.0 FOSC = 4 MHz
3.0 XT Oscillator mode
— 0.9 1.4 mA 5.0
D013*
— 130 220 μA
— 215 360 μA
2.0 FOSC = 1 MHz
3.0 EC Oscillator mode
— 360 520 μA
5.0
D014
— 220 340 μA
— 375 550 μA
2.0 FOSC = 4 MHz
3.0 EC Oscillator mode
— 0.65 1.0 mA 5.0
D015
8
20
μA
2.0 FOSC = 31 kHz
16
40
μA
3.0 LFINTOSC mode
31
65
μA
5.0
D016*
— 320 400 μA
— 490 640 μA
2.0 FOSC = 4 MHz
3.0 HFINTOSC mode
— 0.87 1.2 mA 5.0
D017
0.5
0.7
mA
2.0 FOSC = 8 MHz
— 0.78 1
mA
3.0 HFINTOSC mode
— 1.43 1.8 mA 5.0
D018
— 340 580 μA
— 550 950 μA
2.0 FOSC = 4 MHz
3.0 EXTRC mode(3)
— 0.92 1.6 mA 5.0
D019
2.9
3.7
mA
4.5 FOSC = 20 MHz
3.1
3.8
mA
5.0 HS Oscillator mode
*
Note 1:
2:
These parameters are characterized but not tested.
Data in “Typ” column is at 5.0V, 25°C unless otherwise stated. These parameters are for design guidance
only and are not tested.
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 disabled.
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 REXT is not included. The current through the resistor can
be extended by the formula IR = VDD/2REXT (mA) with REXT in kΩ.
DS41203D-page 146
© 2007 Microchip Technology Inc.

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