NLSX3014MUTAG

NLSX3014
http://onsemi.com
7
OPEN
PULSE
GENERATOR
R
T
DUT
V
CC
R
L
R
1
C
L
2xV
CC
Test Switch
t
PZH
, t
PHZ
Open
t
PZL
, t
PLZ
2 x V
CC
C
L
= 15 pF or equivalent (Includes jig and probe capacitance)
R
L
= R
1
= 50 kW or equivalent
R
T
= Z
OUT
of pulse generator (typically 50 W)
Figure 5. Test Circuit for Enable/Disable Time Measurement
V
CC
GND
t
F
t
R
10%
50%
90%
10%
50%
90%
t
R
t
PLH
t
PHL
t
F
50%
50%
90%
10%
t
PZL
t
PLZ
t
PZH
t
PHZ
GND
HIGH
IMPEDANCE
V
OL
V
OH
HIGH
IMPEDANCE
Figure 6. Timing Definitions for Propagation Delays and Enable/Disable Measurement
EN
Input
50%
V
L
Output
Output
Output
NLSX3014
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8
TEST CONDITIONS
1. T
A
= +25°C,
2. Input Applied to 1 channel, the other 3 inputs are grounded,
3. C
Load
= 15 pF
0
1
2
3
4
5
0 1 5 10 25 50
0
1
2
3
4
5
6
7
0 1 5 10 25 50
0
100
200
300
400
500
600
700
0 1 5 10255
0
FREQUENCY (MHz)
V
CC
= 3.3 V, V
L
= 2.5 V
V
CC
= 2.8 V, V
L
= 1.8 V
I
CC
(mA)
Figure 7. I
CC
vs. Frequency
(Input = I/O V
CC
, Output = I/O V
L
)
V
CC
= 3.3 V, V
L
= 2.5 V
V
CC
= 2.8 V, V
L
= 1.8 V
FREQUENCY (MHz)
I
CC
(mA)
Figure 8. I
L
vs. Frequency
(Input = I/O V
CC
, Output = I/O V
L
)
FREQUENCY (MHz)
I
CC
(mA)
Figure 9. I
CC
vs. Frequency
(Input = I/O V
L
, Output =I/O V
CC
)
V
CC
= 2.8 V, V
L
= 1.8 V
V
CC
= 3.3 V, V
L
= 2.5 V
FREQUENCY (MHz)
I
L
(mA)
Figure 10. I
L
vs. Frequency
(Input = I/O V
L
, Output = I/O V
CC
)
V
CC
= 3.3 V, V
L
= 2.5 V
V
CC
= 2.8 V, V
L
= 1.8 V
0
1
1.5
2
2.5
01510255
0
NLSX3014
http://onsemi.com
9
IMPORTANT APPLICATIONS INFORMATION
Level Translator Architecture
The NLSX3014 auto sense translator provides
bidirectional voltage level shifting to transfer data in
multiple supply voltage systems. This device has two
supply voltages, V
L
and V
CC
, which set the logic levels on
the input and output sides of the translator. When used to
transfer data from the V
L
to the V
CC
ports, input signals
referenced to the V
L
supply are translated to output signals
with a logic level matched to V
CC
. In a similar manner, the
V
CC
to V
L
translation shifts input signals with a logic level
compatible to V
CC
to an output signal matched to V
L
.
The NLSX3014 consists of four bidirectional channels
that independently determine the direction of the data flow
without requiring a directional pin. The oneshot circuits
are used to detect the rising or falling input signals. In
addition, the one shots decrease the rise and fall time of the
output signal for hightolow and lowtohigh transitions.
Input Driver Requirements
For proper operation, the input driver to the auto sense
translator should be capable of driving 2.0 mA of peak
output current.
Output Load Requirements
The NLSX3014 is designed to drive CMOS inputs.
Resistive pullup or pulldown loads of less than 50 kW
should not be used with this device. The NLSX3373 or
NLSX3378 opendrain auto sense translators are alternate
translator options for an application such as the I
2
C bus that
requires pullup resistors.
Enable Input (EN)
The NLSX3014 has an Enable pin (EN) that provides
tristate operation at the I/O pins. Driving the Enable pin
to a low logic level minimizes the power consumption of
the device and drives the I/O V
CC
and I/O V
L
pins to a high
impedance state. Normal translation operation occurs
when the EN pin is equal to a logic high signal. The EN pin
is referenced to the V
L
supply and has OverVoltage
Tolerant (OVT) protection.
UniDirectional versus BiDirectional Translation
The NLSX3014 can function as a noninverting
unidirectional translator. One advantage of using the
translator as a unidirectional device is that each I/O pin
can be configured as either an input or output. The
configurable input or output feature is especially useful in
applications such as SPI that use multiple unidirectional
I/O lines to send data to and from a device. The flexible I/O
port of the auto sense translator simplifies the trace
connections on the PCB.
Power Supply Guidelines
It is recommended that the V
L
supply should be less than
or equal to the value of the V
CC
minus 0.4 V. The
sequencing of the power supplies will not damage the
device during the power up operation; however, the current
consumption of the device will increase if V
L
exceeds V
CC
minus 0.4 V. The Enable (EN) pin can be used to provide
power savings. Both I/O ports are tristated and in low
power consumption state if the EN input equals 0 V.
The enable pin should be used to enter the low current
tristate mode, rather than setting either the V
L
or V
CC
supplies to 0 V. The NLSX3014 will not be damaged if
either V
L
or V
CC
is equal to 0 V while the other supply
voltage is at a nominal operating value; however, the
operation of the translator cannot be guaranteed during
single supply operation.
For optimal performance, 0.01 to 0.1 mF decoupling
capacitors should be used on the V
L
and V
CC
power supply
pins. Ceramic capacitors are a good design choice to filter
and bypass any noise signals on the power supply voltage
lines to the ground plane of the PCB. The noise immunity
will be maximized by placing the capacitors as close as
possible to the supply and ground pins, along with
minimizing the PCB connection traces.
ORDERING INFORMATION
Device Package Shipping
NLSX3014MUTAG UQFN12
(PbFree)
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.

NLSX3014MUTAG

Mfr. #:
Manufacturer:
ON Semiconductor
Description:
Translation - Voltage Levels 4B100Mbps CONFIG DUAL SUP LEV TRNSLTR
Lifecycle:
New from this manufacturer.
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