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PIC16F526-I/P Datenblatt(PDF) 86 Page - Microchip Technology

Teilenummer PIC16F526-I/P
Bauteilbeschribung  14-Pin, 8-Bit Flash Microcontroller
PDF  122 Pages
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Hersteller  MICROCHIP [Microchip Technology]
Direct Link  http://www.microchip.com
Logo MICROCHIP - Microchip Technology

PIC16F526-I/P Datenblatt(HTML) 86 Page - Microchip Technology

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PIC16F526
DS41326D-page 86
 2010 Microchip Technology Inc.
14.2
DC Characteristics: PIC16F526 (Extended)
DC Characteristics
Standard Operating Conditions (unless otherwise specified)
Operating Temperature -40
C  TA  +125C (extended)
Param
No.
Sym.
Characteristic
Min. Typ.(1) Max.
Units
Conditions
D001
VDD
Supply Voltage
2.0
5.5
V
See Figure 14-1
D002
VDR
RAM Data Retention Voltage(2)
1.5*
V
Device in Sleep mode
D003
VPOR
VDD Start Voltage to ensure
Power-on Reset
—Vss
V
See Section 8.4 “Power-on
Reset (POR)” for details
D004
SVDD
VDD Rise Rate to ensure
Power-on Reset
0.05*
V/ms See Section 8.4 “Power-on
Reset (POR)” for details
D005
IDDP
Supply Current During Prog/
Erase
250*
A
D010
IDD
Supply Current(3,4,6)
175
400
250
700
A
A
FOSC = 4 MHz, VDD = 2.0V
FOSC = 4 MHz, VDD = 5.0V
250
0.75
400
1.2
A
mA
FOSC = 8 MHz, VDD = 2.0V
FOSC = 8 MHz, VDD = 5.0V
—1.4
2.2
mA
FOSC = 20 MHz, VDD = 5.0V
11
38
26
110
A
A
FOSC = 32 kHz, VDD = 2.0V
FOSC = 32 kHz, VDD = 5.0V
D020
IPD
Power-down Current(5)
0.1
0.35
9.0
15.0
A
A
VDD = 2.0V
VDD = 5.0V
D022
IWDT
WDT Current(5)
1.0
7.0
18
22
A
A
VDD = 2.0V
VDD = 5.0V
D023
ICMP
Comparator Current(5)
15
60
26
76
A
A
VDD = 2.0V (per comparator)
VDD = 5.0V (per comparator)
D022
IcVREF CvREF Current(5)
30
75
75
135
A
A
VDD = 2.0V (high range)
VDD = 5.0V (high range)
D023
IFVR
Internal 0.6V Fixed Voltage
Reference Current(5)
100
175
130
220
A
A
VDD = 2.0V (reference and 1
comparator enabled)
VDD = 5.0V (reference and 1
comparator enabled)
D024
IAD*
A/D Conversion Current
120
150
A2.0V
200
250
A5.0V
*
These parameters are characterized but not tested.
Note 1: Data in the Typical (“Typ”) column is based on characterization results at 25
C. This data is for design
guidance only and is not tested.
2: This is the limit to which VDD can be lowered in Sleep mode without losing RAM data.
3: The supply current is mainly a function of the operating voltage and frequency. Other factors such as bus
loading, oscillator type, bus rate, internal code execution pattern and temperature also have an impact on
the current consumption.
4: 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 VSS, T0CKI = VDD, MCLR =
VDD; WDT enabled/disabled as specified.
5: For standby current measurements, the conditions are the same as IDD, except that the device is in Sleep
mode. If a module current is listed, the current is for that specific module enabled and the device in Sleep.
6: For EXTRC mode, does not include current through REXT. The current through the resistor can be estimated
by the formula:
I = VDD/2REXT (mA) with REXT in k
.



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