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LT1014D-EP Datasheet, PDF (4/21 Pages) Texas Instruments – QUAD PRECISION OPERATIONAL AMPLIFIER
LT1014D-EP
SLOS609 – DECEMBER 2008 ........................................................................................................................................................................................... www.ti.com
OPERATING CHARACTERISTICS
over operating free-air temperature range, VCC± = 15 V, VIC = 0, TA = 25°C (unless otherwise noted)
PARAMETER
TEST CONDITIONS
MIN
TYP
SR
Slew rate
0.2
0.4
f = 10 Hz
24
Vn
Equivalent input noise voltage
f = 1kHz
22
VN(PP)
In
Peak-to-peak equivalent input noise voltage f = 0.1 Hz to 10 Hz
Equivalent input noise current
f = 10 Hz
0.55
0.07
MAX
UNIT
V/µs
nV/√Hz
µV
pA/√Hz
TYPICAL CHARACTERISTICS
VIO
VIO
ΔVIO
IIO
IIB
VIC
AVD
CMRR
kSVR
ICC
IOS
Vn
In
VN(PP)
Table of Graphs
Input offset voltage vs balanced source resistance
Input offset voltage vs free-air temperature
Warm-up change in input offset voltage vs elapsed time
Input offset current vs Input offset current vs free-air temperature
Input bias current vs free-air temperature
Common-mode input voltage vs input bias current
Differential voltage amplification
vs load resistance
vs frequency
Channel separation vs frequency
Output saturation voltage vs free-air temperature
Common-mode rejection ratio vs frequency
Supply-voltage rejection ratio vs frequency
Supply current vs free-air temperature
Short-circuit output current vs elapsed time
Equivalent input noise voltage vs frequency
Equivalent input noise current vs frequency
Peak-to-peak input noise voltage vs time
Pulse response (small signal) vs time
Pulse response (large signal) vs time
Phase shift vs frequency
FIGURE
Figure 2
Figure 3
Figure 4
Figure 5
Figure 6
Figure 7
Figure 8 Figure 9
Figure 10 Figure 11
Figure 12
Figure 13
Figure 14
Figure 15
Figure 16
Figure 17
Figure 18
Figure 18
Figure 19
Figure 20 Figure 22
Figure 21 Figure 23 Figure 24
Figure 10
4
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