Philips Semiconductors Product specification
74L V541Octal buffer/line driver (3-State)
2
1998 Jun 10 853–1937 19545
FEA TURES
•Optimized for Low Voltage applications: 1.0 to 3.6V
•Accepts TTL input levels between V
CC
= 2.7V and VCC = 3.6V
•Typical V
OLP
(output ground bounce) 0.8V @ VCC = 3.3V ,
T
amb
= 25°C
•Typical V
OHV
(output VOH undershoot) 2V @ VCC = 3.3V ,
T
amb
= 25°C
•Non-inverting outputs
•Output capability: bus driver
•I
CC
category: MSI
DESCRIPTION
The 74LV541 is a low–voltage CMOS device and is pin and function
compatible with 74HC/HCT541.
The 74LV541 is an octal non-inverting buf fer/line driver with 3-State
outputs. The 3-State outputs are controlled by the output enable
inputs OE
1
and OE2.
A HIGH on OEn causes the outputs to assume a high impedance
OFF–state.
QUICK REFERENCE DA TA
GND = 0V; T
amb
= 25°C; tr = tf 2.5 ns
SYMBOL
PARAMETER CONDITIONS TYPICAL UNIT
t
PHL/tPLH
Propagation delay
An to Y
n
CL = 15pF
VCC = 3.3V
10 ns
C
I
Input capacitance 3.5 pF
C
PD
Power dissipation capacitance per buffer VI = GND to VCC
1
37 pF
NOTES:
1. C
PD
is used to determine the dynamic power dissipation (PD in µW)
P
D
= CPD V
CC
2
fi (CL V
CC
2
fo) where:
f
i
= input frequency in MHz; CL = output load capacity in pF;
f
o
= output frequency in MHz; VCC = supply voltage in V;
(C
L
V
CC
2
fo) = sum of the outputs.
ORDERING INFORMATION
PACKAGES TEMPERATURE RANGE OUTSIDE NORTH AMERICA NORTH AMERICA PKG. DWG. #
20-Pin Plastic DIL –40°C to +125°C 74LV541 N 74LV541 N SOT146-1
20-Pin Plastic SO –40°C to +125°C 74LV541 D 74L541 D SOT163-1
20-Pin Plastic SSOP Type II –40°C to +125°C 74LV541 DB 74LV541 DB SOT339-1
20-Pin Plastic TSSOP Type I –40°C to +125°C 74LV541 PW 74LV541PW DH SOT360-1
PIN DESCRIPTION
PIN
NUMBER
SYMBOL FUNCTION
1, 19 OE1, OE2Output enable input (active-LOW)
2, 3, 4, 5,
6, 7, 8, 9
A0 to A7Data inputs
10 GND Ground (0V)
18, 17, 16, 15,
14, 13, 12, 11
Y0 to Y7Bus outputs
20 V
CC
Positive supply voltage
FUNCTION TABLE
INPUTS OUTPUT
OE
1
OE
2
nA nY
L L L L
L L H H
X H X Z
H X X Z
H = HIGH voltage level
L = LOW voltage level
X = Don’t care
Z = High impedance OFF-state