Information

PIC24FJ64GA104
DS80000486H-page 10 2009-2013 Microchip Technology Inc.
3. Module: Electrical Specifications
Table 28-8 (I/O Pin Input Specifications) is
amended by the addition of the following new
specifications:
DI31 (Maximum Load Current for Internal
Pull-up)
DI60 (Injection Currents)
The new specifications, and accompanying new
footnotes, 5 through 9, are shown below (additions
in bold; bold in existing text has been removed for
clarity).
TABLE 28-8: DC CHARACTERISTICS: I/O PIN INPUT SPECIFICATIONS (PARTIAL
PRESENTATION)
DC CHARACTERISTICS
Standard Operating Conditions: 3.0V to 3.6V
(unless otherwise stated)
Operating temperature -40°C TA +85°C for Industrial
-40°C T
A +125°C for Extended
Param. Symbol Characteristic Min. Typ
(1)
Max. Units Conditions
D131 I
PU Maximum Load Current
for Digital High Detection with
Internal Pull-up
——30µAVDD = 2.0V
——100µAV
DD = 3.3V
I
ICL Input Low Injection Current
DI60a 0 -5
(5,8)
mA All pins except VDD,
V
SS, AVDD, AVSS, MCLR,
V
CAP, RB11, SOSCI,
SOSCO, D+, D-, V
USB
and V
BUS
IICH Input High Injection Current
DI60b 0 +5
(6,7,8)
mA All pins except VDD,
V
SS, AVDD, AVSS, MCLR,
V
CAP, RB11, SOSCI,
SOSCO, D+, D-, V
USB,
and V
BUS and all 5V
tolerant pins
(7)
IICT Total Input Injection Current
DI60c (sum of all I/O and control
pins)
-20
(9)
—+20
(9)
mA Absolute instantaneous
sum of all ± input
injection currents from
all I/O pins
(| IICL + | IICH |) IICT
Note 1: (existing footnote)
2: (existing footnote)
3: (existing footnote)
4: (existing footnote)
5: Parameter characterized but not tested.
6: Non-5V tolerant pins V
IH source > (VDD + 0.3), 5V tolerant pins VIH source > 5.5V. Characterized but not
tested.
7: Digital 5V tolerant pins cannot tolerate any “positive” input injection current from input sources greater
than 5.5V.
8: Injection currents > | 0 | can affect the performance of all analog peripherals (e.g., A/D, comparators,
internal band gap reference, etc.)
9: Any number and/or combination of I/O pins not excluded under I
ICL or IICH conditions is permitted pro-
vided the mathematical “absolute instantaneous” sum of the input injection currents from all pins do not
exceed the specified limit. Characterized but not tested.