User's Manual

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PR533_SDS All information provided in this document is subject to legal disclaimers. © NXP Semiconductors N.V. 2014. All rights reserved.
Product short data sheet
COMPANY PUBLIC
Rev. 3.6 — 27 October 2014
206436 22 of 36
NXP Semiconductors
PR533
USB NFC integrated reader solution
10.17 Input/output pin characteristics for P34
[1] To minimize power consumption when in soft power-down mode, the limit is V
DD(SVDD)
0.4 V.
[2] To minimize power consumption when in soft power-down mode, the limit is 0.4 V.
[3] I
OH
and I
OL
specify the output drive capability from which the rise and fall times may be calculated as a function of the load capacitance.
10.18 Output pin characteristics for LOADMOD
Table 28. Input/output pin characteristics for P34
Symbol Parameter Conditions Min Typ Max Unit
V
IH
HIGH-level input voltage
[1]
0.7 V
DD(SVDD)
-V
DD(SVDD)
V
V
IL
LOW-level input voltage
[2]
0-0.3 V
DD(SVDD)
V
V
OH
HIGH-level output volt-
age
push-pull;
V
DDD
0.1 < V
DD(SVDD)
<V
DDD
I
OH
= 4mA
V
DD(SVDD)
0.4 - V
DD(SVDD)
V
V
OL
LOW-level output volt-
age
push-pull;
V
DDD
0.1 < V
DD(SVDD)
<V
DDD
I
OH
=+4mA
0-0.4V
I
IH
HIGH-level input current input mode; V
I
=V
DD(SVDD)
1-+1A
I
IL
LOW-level input current input mode; V
I
=0V 1-+1A
V
OH
HIGH-level output volt-
age
V
DDD
0.1 < V
DD(SVDD)
<V
DDD
I
OH
= 4mA
0.4 - - V
V
OL
LOW-level output volt-
age
V
DDD
0.1 < V
DD(SVDD)
<V
DDD
I
OL
=+4mA
4--V
I
LI
input leakage current RSTPD_N = 0.4 V 1-+1A
C
i
input capacitance - 2.5 pF
C
L
load capacitance - 30 pF
t
r
rise time V
DDD
= 0.1 < V
DDD
V
OH
=0.8 V
DD(SVDD)
;
C
out
=30pF
[3]
- 13.5 - ns
t
f
fall time V
DDD
= 0.1 < V
DDD
V
OL
=0.2 V
DD(SVDD)
;
C
out
=30pF
[3]
- 13.5 - ns
Table 29. Output pin characteristics for LOADMOD
Symbol Parameter Conditions Min Typ Max Unit
V
OH
HIGH-level output voltage V
DDD
=3 V;
I
OH
= 4mA
V
DDD
0.4 - V
DDD
V
V
OL
LOW-level output voltage V
DDD
=3 V;
I
OL
=4mA
0-0.4V
C
L
load capacitance - - 10 pF
t
r
rise time V
DDD
=3 V;
V
OH
=0.8 V
DDD
;
C
out
=10pF
--4.5ns
t
f
fall time V
DDD
=3 V;
V
OL
=0.2 V
DDD
;
C
out
=10pF
--4.5ns