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PIC24FJ128GA310-I Datasheet, PDF (365/406 Pages) Microchip Technology – 64/80/100-Pin, General Purpose, 16-Bit Flash Microcontrollers with LCD Controller and nanoWatt XLP Technology
PIC24FJ128GA310 FAMILY
TABLE 32-8: DC CHARACTERISTICS: I/O PIN INPUT SPECIFICATIONS
DC CHARACTERISTICS
Standard Operating Conditions: 2V to 3.6V (unless otherwise stated)
Operating temperature -40°C  TA  +85°C for Industrial
Param
No.
Symbol
Characteristic
Min
Typ(1) Max Units
Conditions
VIL
DI10
Input Low Voltage(3)
I/O Pins with ST Buffer
VSS
—
0.2 VDD
V
DI11
I/O Pins with TTL Buffer
VSS
— 0.15 VDD V
DI15
MCLR
VSS
—
0.2 VDD
V
DI16
OSCI (XT mode)
VSS
—
0.2 VDD
V
DI17
DI18
OSCI (HS mode)
VSS
I/O Pins with I2C™ Buffer
VSS
—
0.2 VDD
V
—
0.3 VDD
V
DI19
I/O Pins with SMBus Buffer
VSS
—
0.8
V SMBus enabled
VIH
Input High Voltage(3)
DI20
I/O Pins with ST Buffer:
with Analog Functions,
Digital Only
0.8 VDD
0.8 VDD
—
VDD
V
—
5.5
V
DI21
I/O Pins with TTL Buffer:
with Analog Functions, 0.25 VDD + 0.8 —
VDD
V
Digital Only
0.25 VDD + 0.8 —
5.5
V
DI25
MCLR
0.8 VDD
—
VDD
V
DI26
OSCI (XT mode)
0.7 VDD
—
VDD
V
DI27
DI28
OSCI (HS mode)
I/O Pins with I2C™ Buffer:
with Analog Functions,
Digital Only
0.7 VDD
0.7 VDD
0.7 VDD
—
VDD
V
—
VDD
V
—
5.5
V
DI29
I/O Pins with SMBus Buffer:
with Analog Functions,
2.1
Digital Only
2.1
2.5V  VPIN  VDD
VDD
V
5.5
V
DI30 ICNPU CNxx Pull-up Current
150
DI30A ICNPD CNxx Pull-down Current
150
IIL
Input Leakage Current(2)
250
550
250
550
A VDD = 3.3V, VPIN = VSS
A VDD = 3.3V, VPIN = VDD
DI50
I/O Ports
—
—
+1
A VSS  VPIN  VDD,
pin at high-impedance
—
—
+1
A VSS  VPIN  5.5,
pin at high-impedance
DI51
Analog Input Pins
—
—
+1
A VSS  VPIN  VDD,
pin at high-impedance
DI55
MCLR
—
—
+1
A VSS VPIN VDD
DI56
OSCI/CLKI
—
—
+1
A VSS VPIN VDD,
EC, XT and HS modes
Note 1:
2:
3:
Data in the “Typ” column is at 3.3V, 25°C unless otherwise stated. Parameters are for design guidance only
and are not tested.
Negative current is defined as current sourced by the pin.
Refer to Table 1-4 for I/O pins buffer types.
 2010-2011 Microchip Technology Inc.
DS39996F-page 365