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74ALVC163245 Fiches technique(PDF) 4 Page - Fairchild Semiconductor

No de pièce 74ALVC163245
Description  Low Voltage 16-Bit Dual Supply Translating Transceiver with 3-STATE Outputs
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Fabricant  FAIRCHILD [Fairchild Semiconductor]
Site Internet  http://www.fairchildsemi.com
Logo FAIRCHILD - Fairchild Semiconductor

74ALVC163245 Fiches technique(HTML) 4 Page - Fairchild Semiconductor

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4
Absolute Maximum Ratings(Note 4)
Recommended Operating
Conditions (Note 6)
Note 4: The “Absolute Maximum Ratings” are those values beyond which
the safety of the device cannot be guaranteed. The device should not be
operated at these limits. The parametric values defined in the Electrical
Characteristics tables are not guaranteed at the absolute maximum ratings.
The “Recommended Operating Conditions” table will define the conditions
for actual device operation.
Note 5: IO Absolute Maximum Rating must be observed.
Note 6: Unused inputs or I/O pins must be held HIGH or LOW. They may
not float.
Note 7: Operation requires: VCCB ≤ VCCA
DC Electrical Characteristics
Supply Voltage
VCCA
−0.5V to +4.6V
VCCB
−0.5V to V
CCA
DC Input Voltage (VI)
−0.5V to +4.6V
DC Output Voltage (VI/O) (Note 5)
An
−0.5V to V
CCA + 0.5V
Bn
−0.5V to V
CCB + 0.5V
DC Input Diode Current (IIK)
VI < 0V
−50 mA
DC Output Diode Current (IOK)
VO < 0V
−50 mA
DC Output Source/Sink Current
(IOH/IOL)
±50 mA
DC VCC or Ground Current
±100 mA
Supply Pin (ICC or Ground)
Storage Temperature (TSTG)
−65°C to +150°C
Power Supply (Note 7)
VCCA
2.3V to 3.6V
VCCB
1.65V to 2.7V
Input Voltage (VI) @ OE, T/R
0V to VCCB
Input/Output Voltage (VI/O)
An
0V to VCCA
Bn
0V to VCCB
Free Air Operating Temperature (TA
−40°C to +85°C
Minimum Input Edge Rate (
∆t/∆V)
VIN = 0.8V to 2.0V, VCC = 3.0V
10 ns/V
Symbol
Parameter
Conditions
VCCB
VCCA
Min
Max
Units
(V)
(V)
VIHA
HIGH Level Input Voltage An
1.65 - 1.95
2.3 - 2.7
1.7
V
1.65 - 2.7
3.0 - 3.6
2.0
VIHB
Bn, T/R, OE
1.65 - 1.95
2.3 - 3.6
0.65 x VCCB
2.3 - 2.7
3.0 - 3.6
1.6
VILA
LOW Level Input Voltage
An
1.65 - 1.95
2.3 - 2.7
0.7
V
1.65 - 2.7
3.0 - 3.6
0.8
VILB
Bn, T/R, OE
1.65 - 1.95
2.3 - 3.6
0.35 x VCCB
2.3 - 2.7
3.0 - 3.6
0.7
VOHA
HIGH Level Output Voltage
IOH = −100 µA
1.65 - 2.7
2.3 - 3.6
VCCA–0.2
V
IOH = −12 mA
1.65
2.3 - 2.7
1.7
IOH = −24 mA
1.65 - 2.3
3.0 - 3.6
2
VOHB
HIGH Level Output Voltage
IOH = −100 µA
1.65 - 2.7
2.3 - 3.6
VCCB–0.2
V
IOH = −4 mA
1.65 - 1.95
2.3 - 3.0
1.2
IOH = −12 mA
2.3 - 2.7
3.0
1.7
VOLA
Low Level Output Voltage
IOL = 100 µA
1.65 - 2.7
2.3 - 3.6
0.2
V
IOL = 12 mA
1.65
2.3 - 2.7
0.7
IOL = 24 mA
1.65 - 2.3
3.0 - 3.6
0.55
VOLB
Low Level Output Voltage
IOL = 100 µA
1.65 - 2.7
2.3 - 3.6
0.2
V
IOL = 4 mA
1.65 - 1.95
2.3 - 3.0
0.45
IOL = 12 mA
2.3 -2.7
3.0
0.7
II
Input Leakage Current @ OE, T/R
0V
≤ V
I ≤ 3.6V
1.65 - 2.7
2.3 - 3.6
±5.0
µA
IOZ
3-STATE Output Leakage
0V
≤ V
O ≤ 3.6V
1.65 - 2.7
2.3 - 3.6
±10
µA
OE
= V
CCB
VI = VIH or VIL
IOFF
Power Off Leakage Current
0
≤ (V
I, VO) ≤ 3.6V
0
0
10
µA
ICCA/ICCB
Quiescent Supply Current,
An = VCCA or GND
1.65 - 2.7
2.3 - 3.6
40
µA
per supply, VCCA / VCCB
Bn, OE, & T/R = VCCB or GND
∆I
CC
Increase in ICC per Input, Bn, T/R, OE
VI = VCCB – 0.6V
1.65 - 2.2
2.3 - 3.6
750
µA
Increase in ICC per Input, An
VI = VCCA – 0.6V
1.65 - 2.2
2.3 - 3.6
750
µA


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