nlsx3014 ON Semiconductor, nlsx3014 Datasheet - Page 4

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nlsx3014

Manufacturer Part Number
nlsx3014
Description
4-bit 100 Mb/s Configurable Dual-supply Level Translator
Manufacturer
ON Semiconductor
Datasheet
1. Normal test conditions are V
2. V
3. V
4. Typical values are for V
5. Normal test conditions are V
6. V
7. V
DC ELECTRICAL CHARACTERISTICS
POWER CONSUMPTION
Symbol
Symbol
I
I
TS−VCC
I
V
Q−VCC
V
V
I
V
TS−VL
V
V
V
V
Q−VL
during startup and shutdown conditions, V
temperature range are guaranteed by design.
during startup and shutdown conditions, V
V
V
I
I
OHC
OLC
OHL
OLL
OZ
EN
IHC
ILC
IHL
ILL
CC
L
CC
L
IH
IL
is the supply voltage associated with the low voltage port. V
is the supply voltage associated with the low voltage port. V
is the supply voltage associated with the high voltage port, and V
is the supply voltage associated with the high voltage port, and V
I/O V
Voltage
I/O V
Voltage
I/O V
Voltage
I/O V
Voltage
Control Pin Input HIGH
Voltage
Control Pin Input LOW
Voltage
I/O V
Voltage
I/O V
Voltage
I/O V
Voltage
I/O V
Voltage
Supply Current from
V
Supply Current from
V
V
Mode Supply
Current
V
Mode Supply
Current
I/O Tristate Output
Mode Leakage
Current
Output Enable Pin
Input Current
CC
L
CC
L
Tristate Output
Parameter
Tristate Output
CC
CC
L
L
CC
CC
L
L
Input HIGH
Input LOW
Output HIGH
Output LOW
Parameter
Input HIGH
Input LOW
Output HIGH
Output LOW
CC
= +2.8 V, V
EN
EN
I/O V
I/O V
= 0 V, C
EN = V
= 0 V, C
EN = V
EN = V
I/O V
CCn
CCn
I/O V
I/O V
I/O V
I/O V
L
CCn
L
L;
L;
IOVCC
IOVCC
= V
= V
, I/O V
= +1.8 V and T
L
I/O V
I/O V
CC
L
L
L
Test Conditions
Test Conditions
Source Current = 20 mA
= V
0.2 V) and I
CC
CC
CC
can be greater than (V
can be greater than (V
Sink Current = 20 mA
Sink Current = 20 mA
T
T
= 15 pF and C
= 15 pF and C
CCn
CCn
CCn
CC
or I/O V
or I/O V
EN = 0 V
EN = 0 V
EN = 0 V
EN = 0 V
EN = 0 V
A
A
Source Current =
(Note 5)
(Note 1)
20 mA
= +25°C
= +25°C
or I/O V
= 0 V, I/O V
= 0 V, I/O V
= 0 V, I/O V
Ln
Ln
o
A
= 0
http://onsemi.com
= V
= V
Ln
= +25°C. All units are production tested at T
= (V
L
L
IOVL
IOVL
L
L
Ln
and I
Ln
and I
Ln
must be less than or equal to (V
must be less than or equal to (V
CC
= 0 V,
= 0 V,
= 0 V,
= 15 pF, unless otherwise specified.
= 15 pF, unless otherwise specified.
CC
CC
o
o
4
= 0
= 0
– 0.4) V.
– 0.4) V.
1.3 to 4.5
1.3 to 4.5
1.3 to 4.5
1.3 to 4.5
1.3 to 4.5
1.3 to 4.5
1.3 to 4.5
1.3 to 4.5
1.3 to 4.5
1.3 to 4.5
CC
CC
(Note 2)
V
CC
ranges from +1.3 V to 4.5 V under normal operating conditions.
ranges from +1.3 V to 3.6 V.
1.3 to 3.6 0.9 to (V
1.3 to 3.6 0.9 to (V
1.3 to 3.6 0.9 to (V
1.3 to 3.6 0.9 to (V
1.3 to 3.6 0.9 to (V
1.3 to 3.6 0.9 to (V
(Note 6)
V
(V)
CC
(V)
0.9 to (V
0.9 to (V
0.9 to (V
0.9 to (V
0.9 to (V
0.9 to (V
0.9 to (V
0.9 to (V
0.9 to (V
0.9 to (V
(Note 3)
< (V
V
L
V
V
(Note 7)
CC
CC
CC
CC
CC
CC
CC
CC
CC
CC
(V)
CC
CC
V
CC
L
– 0.4)
– 0.4)
– 0.4) 0.8 * V
– 0.4)
– 0.4) 0.8 * V
– 0.4)
– 0.4)
– 0.4)
– 0.4) 0.8 * V
– 0.4)
CC
CC
CC
CC
CC
CC
CC
− 0.2
– 0.2
CC
(V)
– 0.2)
– 0.4)
– 0.4)
– 0.4)
– 0.4)
– 0.4)
– 0.4)
– 0.4) V during normal operation. However,
– 0.4) V during normal operation. However,
A
0.8 *
0.8 *
V
V
Min
= +25°C. Limits over the operating
CC
CC
Min
−405C to +855C
L
L
L
−405C to +855C
(Note 4)
Typ
Typ
0.2 * V
0.2 * V
0.2 * V
0.2 *
0.2 *
Max
V
V
Max
0.15
1.0
1.0
2.0
1.0
0.2
2.0
2.0
1.0
CC
CC
L
L
L
Unit
Unit
mA
mA
mA
mA
mA
mA
V
V
V
V
V
V
V
V
V
V

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