Datasheet

TLV3701-Q1
TLV3702-Q1
TLV3704-Q1
SGLS154E − NOVEMBER 2000 − REVISED MAY 2010
5
www.ti.com
electrical characteristics at specified operating free-air temperature, V
CC
= 2.7 V, 5 V, 15 V (unless
otherwise noted) (continued)
power supply
PARAMETER
TEST CONDITIONS
T
A
MIN TYP MAX UNIT
I
Supply current (per channel)
Output state high
25°C 560 800
nA
I
CC
Supply current (per channel) Output state high
Full range 1200
nA
V 27Vto5V
25°C 75 100
PSRR
Power supply rejection ratio
V
I
C
= V
CC
/2 V,
V
CC
= 2.7 V to 5 V
Full range 70
dB
PSRR Power supply rejection ratio
V
IC
=
V
CC
/2
V
,
No load
V
CC
=5Vto15V
25°C 85 105
dB
V
CC
= 5 V to 15 V
Full range 80
Full range is − 40°C to 125°C for Q suffix.
switching characteristics at recommended operating conditions, V
CC
= 2.7 V, 5 V, 15 V, T
A
= 25°C
(unless otherwise noted)
PARAMETER TEST CONDITIONS MIN TYP MAX
UNIT
Pti tilthihll
Overdrive = 2 mV 240
t
(
PLH
)
Propagation response time, low-to-high-level
output (see Note 3)
f = 1 kHz,
Overdrive = 10 mV 64 150
t
(PLH)
ou
t
pu
t
(
see
N
o
t
e
3)
f
1
kHz,
V
STEP
= 100 mV,
C 10 pF
Overdrive = 50 mV 36
s
Pti tihihtlll
C
L
= 10 pF,
V
CC
=
2.7 V,
Overdrive = 2 mV 167
µs
t
(
PHL
)
Propagation response time, high-to-low-level
output (see Note 3)
V
CC
=
2
.
7
V
,
V
IC
= V
CC
/2
Overdrive = 10 mV 67 150
t
(PHL)
ou
t
pu
t
(
see
N
o
t
e
3)
V
IC
V
CC
/2
Overdrive = 50 mV 37
t
r
Rise time C
L
= 10 pF, V
CC
= 2.7 V 7 µs
t
f
Fall time C
L
= 10 pF, V
CC
= 2.7 V 9 µs
NOTE 3: The response time specified is the interval between the input step function and the instant when the output crosses 1.4 V. Propagation
responses are longer at higher supply voltages, refer to Figures 11−16 for further details.
This limit applies to the TLV3701-Q1 only.
TYPICAL CHARACTERISTICS
Table of Graphs
FIGURE
Input bias/offset current vs Free-air temperature 1
V
OL
Low-level output voltage vs Low-level output current 2, 4, 6
V
OH
High-level output voltage vs High-level output current 3, 5, 7
I
Supply current
vs Supply voltage 8
I
CC
Supply current
vs Free-air temperature
9
Output fall time/rise time vs Supply voltage 10
Low-to-high level output response for various input overdrives 11, 13, 15
High-to-low level output response for various input overdrives 12, 14, 16