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PDF NLSX3013 Data sheet ( Hoja de datos )

Número de pieza NLSX3013
Descripción 8-Bit 100 Mb/s Configurable Dual-Supply Level Translator
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NLSX3013
8-Bit 100 Mb/s Configurable
Dual-Supply Level
Translator
The NLSX3013 is a 8−bit configurable dual−supply bidirectional
level translator without a direction control pin. The I/O VCC− and I/O
VL−ports are designed to track two different power supply rails, VCC
and VL respectively. The VCC supply rail is configurable from 1.3 V
to 4.5 V while the VL supply rail is configurable from 0.9 V to (VCC
− 0.4) V. This allows lower voltage logic signals on the VL side to be
translated into higher voltage logic signals on the VCC side, and
vice−versa. Both I/O ports are auto−sensing; thus, no direction pin is
required.
The Output Enable (EN) input, when Low, disables both I/O ports
by putting them in 3−state. This significantly reduces the supply
currents from both VCC and VL. The EN signal is designed to track
VL.
Features
Wide High−Side VCC Operating Range: 1.3 V to 4.5 V
Wide Low−Side VL Operating Range: 0.9 V to (VCC − 0.4) V
High−Speed with 100 Mb/s Guaranteed Date Rate for VL > 1.8 V
Low Bit−to−Bit Skew
Overvoltage Tolerant Enable and I/O Pins
Non−preferential Powerup Sequencing
Small packaging: 2.03 mm x 2.54 mm 20 Pin Flip−Chip
These Devices are Pb−Free, Halogen Free/BFR Free and are RoHS
Compliant
Typical Applications
Mobile Phones, PDAs, Other Portable Devices
PC and Laptops
ESD Protection for All Pins: Human Body Model (HBM) > 6000 V
www.onsemi.com
MARKING DIAGRAM
for NLSX3013FCT1G
3013F
AYWW
G
A1
20 PIN FLIP−CHIP
CASE 766AK
for NLSX3013BFCT1G
3013B
AYWW
G
A = Assembly Location
Y = Year
WW = Work Week
G = Pb−Free Package
LOGIC DIAGRAM
VL VCC GND
EN
I/O VL1
I/O VL2
I/O VL3
I/O VCC1
I/O VCC2
I/O VCC3
I/O VL4
I/O VCC4
I/O VL5
I/O VCC5
I/O VL6
I/O VCC6
I/O VL7
I/O VCC7
I/O VL8
I/O VCC8
© Semiconductor Components Industries, LLC, 2015
January, 2015 − Rev. 3
ORDERING INFORMATION
See detailed ordering and shipping information in the package
dimensions section on page 9 of this data sheet.
1 Publication Order Number:
NLSX3013/D

1 page




NLSX3013 pdf
NLSX3013
DC ELECTRICAL CHARACTERISTICS
−405C to +855C
Symbol
Parameter
VIHC I/O VCC Input HIGH
Voltage
VILC I/O VCC Input LOW
Voltage
VIHL I/O VL Input HIGH
Voltage
Test Conditions
(Note 1)
VCC (V)
(Note 2)
VL (V)
(Note 3)
1.3 to 4.5 0.9 to (VCC – 0.4)
1.3 to 4.5 0.9 to (VCC – 0.4)
Min
0.8 *
VCC
Typ
(Note 4)
1.3 to 4.5 0.9 to (VCC – 0.4) 0.8 * VL
Max
0.2 *
VCC
Unit
V
V
V
VILL I/O VL Input LOW
Voltage
1.3 to 4.5 0.9 to (VCC – 0.4)
− 0.2 * VL V
VIH Control Pin Input HIGH
Voltage
TA = +25°C
1.3 to 4.5 0.9 to (VCC – 0.4) 0.8 * VL
−V
VIL Control Pin Input LOW
Voltage
TA = +25°C
1.3 to 4.5 0.9 to (VCC – 0.4)
− 0.2 * VL V
VOHC
VOLC
VOHL
I/O VCC Output HIGH
Voltage
I/O VCC Output LOW
Voltage
I/O VL Output HIGH
Voltage
I/O VCC Source Current =
20 mA
I/O VCC Sink Current = 20 mA
1.3 to 4.5 0.9 to (VCC – 0.4)
1.3 to 4.5 0.9 to (VCC – 0.4)
0.8 *
VCC
I/O VL Source Current = 20 mA 1.3 to 4.5 0.9 to (VCC – 0.4) 0.8 * VL
−V
0.2 *
VCC
V
V
VOLL I/O VL Output LOW
Voltage
I/O VL Sink Current = 20 mA 1.3 to 4.5 0.9 to (VCC – 0.4)
− 0.2 * VL V
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.
1. Normal test conditions are VEN = 0 V, CIOVCC = 15 pF and CIOVL = 15 pF, unless otherwise specified.
2. VCC is the supply voltage associated with the high voltage port, and VCC ranges from +1.3 V to 4.5 V under normal operating conditions.
3. VL is the supply voltage associated with the low voltage port. VL must be less than or equal to (VCC – 0.4) V during normal operation. However,
during startup and shutdown conditions, VL can be greater than (VCC – 0.4) V.
4. Typical values are for VCC = +2.8 V, VL = +1.8 V and TA = +25°C. All units are production tested at TA = +25°C. Limits over the operating
temperature range are guaranteed by design.
POWER CONSUMPTION
Symbol
Parameter
Test Conditions
(Note 5)
VCC (V)
(Note 6)
VL (V)
(Note 7)
IQ−VCC Supply Current from EN = VL; I/O VCCn = 0 V, I/O VLn = 0 V, 1.3 to 3.6 0.9 to (VCC – 0.4)
VCC I/O VCCn = VCC or I/O VLn = VL and Io = 0
IQ−VL Supply Current from EN = VL; I/O VCCn = 0 V, I/O VLn = 0 V, 1.3 to 3.6 0.9 to (VCC – 0.4)
VL I/O VCCn = VCC or I/O VLn = VL and Io = 0
EN = VL, I/O VCCn = 0 V, I/O VLn = 0 V,
I/O VCCn = VCC or I/O VLn = (VCC
0.2 V) and Io = 0
< (VCC – 0.2)
ITS−VCC VCC Tristate Output
Mode Supply
Current
EN = 0 V
1.3 to 3.6 0.9 to (VCC – 0.4)
−405C to +855C
Min Typ Max
− − 1.0
− − 1.0
− − 2.0
− − 1.0
Unit
mA
mA
mA
ITS−VL
IOZ
IEN
VL Tristate Output
Mode Supply
Current
I/O Tristate Output
Mode Leakage
Current
Output Enable Pin
Input Current
EN = 0 V
EN = 0 V
EN = 0 V
EN = 0 V
1.3 to 3.6 0.9 to (VCC – 0.4)
VCC − 0.2
1.3 to 3.6 0.9 to (VCC – 0.4)
VCC – 0.2
1.3 to 3.6 0.9 to (VCC – 0.4)
− 0.2 mA
− 2.0
− 0.15 mA
− 2.0
− 1.0 mA
5. Normal test conditions are VEN = 0 V, CIOVCC = 15 pF and CIOVL = 15 pF, unless otherwise specified.
6. VCC is the supply voltage associated with the high voltage port, and VCC ranges from +1.3 V to 4.5 V under normal operating conditions.
7. VL is the supply voltage associated with the low voltage port. VL must be less than or equal to (VCC – 0.4) V during normal operation. However,
during startup and shutdown conditions, VL can be greater than (VCC – 0.4) V.
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