NLSV1T34
1-Bit Dual-Supply
Non-Inverting Level
Translator
The NLSV1T34 is a 1−bit configurable dual−supply voltage level
translator. The input A
n
and output B
n
ports are designed to track two
different power supply rails, V
CCA
and V
CCB
respectively. Both
supply rails are configurable from 0.9 V to 4.5 V allowing universal
low−voltage translation from the input A
n
to the output B
n
port.
Features
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MARKING
DIAGRAMS
UDFN6
MU SUFFIX
CASE 517AA
UDFN6
MU SUFFIX
CASE 517AQ
ULLGA6
MX1 SUFFIX
CASE 613AF
5
QM
G
G
M
M
G
Q
•
•
•
•
•
•
•
Wide V
CCA
and V
CCB
Operating Range: 0.9 V to 4.5 V
High−Speed w/ Balanced Propagation Delay
Inputs and Outputs have OVT Protection to 4.5 V
Non−preferential V
CCA
and V
CCB
Sequencing
Power−Off Protection
Power−Off High Impedance Inputs and Outputs
Ultra−Small Packaging: 1.45 mm x 1.0 mm ULLGA6
2.0 mm x 2.1 mm SC−88A
1.2 mm x 1.0 mm UDFN6
1.45 mm x 1.0 mm UDFN6
•
NLV Prefix for Automotive and Other Applications Requiring
Unique Site and Control Change Requirements; AEC−Q100
Qualified and PPAP Capable
•
These are Pb−Free Devices
Typical Applications
1
AM
1
QM
1
1
SC−88A
(SOT−353/SC−70)
DF SUFFIX
CASE 419A
1
•
Mobile Phones, PDAs, Other Portable Devices
Important Information
•
ESD Protection for All Pins:
V
CCA
A
Q, A = Device Code
M
= Date Code*
G
= Pb−Free Package
(Note: Microdot may be in either location)
*Date Code orientation and/or position may vary
depending upon manufacturing location.
HBM (Human Body Model) > 3000 V
V
CCB
B
V
CCA
1
A 2
GND 3
PIN ASSIGNMENT
6 V
CCB
V
CCA
1
5 NC
4 B
A 2
GND 3
4 B
5 V
CCB
Figure 1. Logic Diagram
ULLGA6/UDFN6
(Top View)
SC−88A
(Top View)
ORDERING INFORMATION
See detailed ordering and shipping information on page 5 of
this data sheet.
©
Semiconductor Components Industries, LLC, 2015
May, 2012
−
Rev. 9
1
Publication Order Number:
NLSV1T34/D
NLSV1T34
PIN ASSIGNMENT
PIN
V
CCA
V
CCB
GND
A
B
FUNCTION
Input Port DC Power Supply
Output Port DC Power Supply
Ground
Input Port
Output Port
TRUTH TABLE
INPUTS
A
L
H
OUTPUTS
B
L
H
MAXIMUM RATINGS
Symbol
V
CCA
, V
CCB
V
I
V
O
I
IK
I
OK
I
O
I
CCA
, I
CCB
I
GND
T
STG
DC Supply Voltage
DC Input Voltage
DC Output Voltage
(Power Down)
(Active Mode)
DC Input Diode Current
DC Output Diode Current
DC Output Source/Sink Current
DC Supply Current Per Supply Pin
DC Ground Current per Ground Pin
Storage Temperature
A
B
B
Rating
Value
−0.5
to +5.5
−0.5
to +5.5
−0.5
to +5.5
−0.5
to +5.5
−20
−50
±50
±100
±100
−65
to +150
V
I
< GND
V
O
< GND
V
CCA
= V
CCB
= 0
Condition
Unit
V
V
V
V
mA
mA
mA
mA
mA
°C
Stresses exceeding those listed in the Maximum Ratings table may damage the device. If any of these limits are exceeded, device functionality
should not be assumed, damage may occur and reliability may be affected.
RECOMMENDED OPERATING CONDITIONS
Symbol
V
CCA
, V
CCB
V
I
V
IO
T
A
Dt
/
DV
Positive DC Supply Voltage
Bus Input Voltage
Bus Output Voltage
(Power Down Mode)
(Active Mode)
Operating Temperature Range
Input Transition Rise or Rate
V
I
, from 30% to 70% of V
CC
; V
CC
= 3.3 V
±0.3
V
B
B
Parameter
Min
0.9
GND
GND
GND
−40
0
Max
4.5
4.5
4.5
V
CCB
+85
10
Unit
V
V
V
V
°C
nS
Functional operation above the stresses listed in the Recommended Operating Ranges is not implied. Extended exposure to stresses beyond
the Recommended Operating Ranges limits may affect device reliability.
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2
NLSV1T34
DC ELECTRICAL CHARACTERISTICS
−405C
to +855C
Symbol
V
IH
Parameter
Input HIGH Voltage
Test Conditions
V
CCA
(V)
3.6 – 4.5
2.7 – 3.6
2.3 – 2.7
1.4
−
2.3
0.9 – 1.4
V
IL
Input LOW Voltage
3.6 – 4.5
2.7 – 3.6
2.3 – 2.7
1.4
−
2.3
0.9 – 1.4
V
OH
Output HIGH Voltage
I
OH
=
−100
mA;
V
I
= V
IH
I
OH
=
−0.5
mA; V
I
= V
IH
I
OH
=
−2
mA; V
I
= V
IH
I
OH
=
−6
mA; V
I
= V
IH
I
OH
=
−12
mA; V
I
= V
IH
I
OH
=
−18
mA; V
I
= V
IH
I
OH
=
−24
mA; V
I
= V
IH
V
OL
Output LOW Voltage
I
OL
= 100
mA;
V
I
= V
IL
I
OL
= 0.5 mA; V
I
= V
IH
I
OL
= 2 mA; V
I
= V
IH
I
OL
= 6 mA; V
I
= V
IL
I
OL
= 12 mA; V
I
= V
IL
I
OL
= 18 mA; V
I
= V
IL
I
OL
= 24 mA; V
I
= V
IL
I
I
I
CCA
I
CCB
Input Leakage Current
Quiescent Supply Current
Quiescent Supply Current
V
I
= V
CCA
or GND
V
I
= V
CCA
or GND;
I
O
= 0, V
CCA
= V
CCB
V
I
= V
CCA
or GND;
I
O
= 0, V
CCA
= V
CCB
V
I
= V
CCA
or GND;
I
O
= 0, V
CCA
= V
CCB
V
I
= 4.5 V
0.9 – 4.5
0.9
1.4
1.65
2.3
2.3
2.7
2.3
3.0
3.0
0.9 – 4.5
1.1
1.4
1.65
2.3
2.7
2.3
3.0
3.0
0.9 – 4.5
0.9 – 4.5
0.9 – 4.5
0.9 – 4.5
0
0.9 – 4.5
0.9
1.4
1.65
2.3
2.3
2.7
2.3
3.0
3.0
0.9 – 4.5
1.1
1.4
1.65
2.3
2.7
2.3
3.0
3.0
0.9 – 4.5
0.9
−
4.5
0.9
−
4.5
0.9 – 4.5
0
0.9 – 4.5
V
CCB
(V)
0.9 – 4.5
Min
2.2
2.0
1.6
0.65 * V
CCA
0.9 * V
CCA
−
−
−
−
−
V
CCB
– 0.2
0.75 * V
CCB
1.05
1.25
2.0
1.8
2.2
1.7
2.4
2.2
−
−
−
−
−
−
−
−
−
−1.0
−
−
−
−
Max
−
−
−
−
−
0.8
0.8
0.7
0.35 * V
CCA
0.1 * V
CCA
−
−
−
−
−
−
−
−
−
−
0.2
0.3
0.35
0.3
0.4
0.4
0.6
0.4
0.55
1.0
2.0
2.0
4.0
5.0
mA
mA
mA
mA
mA
V
V
V
Unit
V
I
CCA
+ I
CCB
Quiescent Supply Current
I
OFF
Power OFF Leakage Current
Product parametric performance is indicated in the Electrical Characteristics for the listed test conditions, unless otherwise noted. Product
performance may not be indicated by the Electrical Characteristics if operated under different conditions.
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3
NLSV1T34
TOTAL STATIC POWER CONSUMPTION (I
CCA
+ I
CCB
)
−405C
to +855C
V
CCB
(V)
4.5
V
CCA
(V)
4.5
3.3
2.8
1.8
0.9
NOTE:
Min
Max
2
2
<2
<1
< 0.5
Min
3.3
Max
2
2
<1
<1
< 0.5
Min
2.8
Max
2
2
<1
< 0.5
< 0.5
Min
1.8
Max
2
2
< 0.5
< 0.5
< 0.5
Min
0.9
Max
< 1.5
< 1.5
< 0.5
< 0.5
< 0.5
Unit
μA
μA
μA
μA
μA
Connect ground before applying supply voltage V
CCA
or V
CCB
. This device is designed with the feature that the power−up
sequence of V
CCA
and V
CCB
will not damage the IC.
AC ELECTRICAL CHARACTERISTICS
−405C
to +855C
V
CCB
(V)
4.5
Symbol
t
PLH
,
t
PHL
(Note 1)
3.3
Max
1.6
1.7
1.9
2.1
2.4
Min
Max
1.8
1.9
2.1
2.4
2.7
Min
2.8
Max
2.0
2.1
2.3
2.5
2.8
Min
1.8
Max
2.1
2.3
2.5
2.7
3.0
Min
1.2
Max
2.3
2.6
2.8
3.0
3.3
Unit
nS
Parameter
Propagation
Delay,
A to B
V
CCA
(V)
4.5
3.3
2.8
1.8
1.2
Min
1. Propagation delays defined per Figure 2.
CAPACITANCE
Symbol
C
I/O
C
PD
Parameter
I/O Pin Input Capacitance
Power Dissipation Capacitance
Test Conditions
V
CCA
= V
CCB
= 3.3 V, V
I
= 0 V or V
CCA/B
V
CCA
= V
CCB
= 3.3 V, V
I
= 0 V or V
CCA
, f = 10 MHz
Typ
(Note 2)
5.0
5.0
Unit
pF
pF
2. Typical values are at T
A
= +25°C.
3. C
PD
is defined as the value of the IC’s equivalent capacitance from which the operating current can be calculated from:
I
CC(operating)
^
C
PD
x V
CC
x f
IN
where I
CC
= I
CCA
+ I
CCB
.
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4
NLSV1T34
V
CC
Pulse
Generator
DUT
C
L
R
L
Figure 2. AC (Propagation Delay) Test Circuit
Test
C
L
= 15 pF or equivalent (includes probe and jig capacitance)
R
L
= 2 kW or equivalent
Z
OUT
of pulse generator = 50
W
V
IH
Vm
t
PLH
Output (B
n
)
Vm
Vm
t
PHL
Vm
V
OL
Waveform 1
−
Propagation Delays
t
R
= t
F
= 2.0 ns, 10% to 90%; f = 1 MHz; t
W
= 500 ns
0V
V
OH
Switch
Input (A
n
)
Figure 3. AC (Propagation Delay) Test Circuit Waveforms
V
CC
Symbol
V
mA
V
mB
0.9 V – 4.5 V
V
CCA
/2
V
CCB
/2
ORDERING INFORMATION
Device
NLSV1T34MUTBG
NLSV1T34AMUTCG
NLSV1T34AMX1TCG
NLSV1T34DFT2G
NLVSV1T34DFT2G*
Package
UDFN6, 1.2 x 1.0, 0.4P
(Pb−Free)
UDFN6, 1.45 x 1.0, 0.5P
(Pb−Free)
ULLGA6
(Pb−Free)
SC−88A
(Pb−Free)
Shipping
†
3000 / Tape & Reel
3000 / Tape & Reel
3000 / Tape & Reel
3000 / Tape & Reel
†For information on tape and reel specifications, including part orientation and tape sizes, please refer to our Tape and Reel Packaging
Specifications Brochure, BRD8011/D.
*NLV Prefix for Automotive and Other Applications Requiring Unique Site and Control Change Requirements; AEC−Q100 Qualified and PPAP
Capable
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5