TLE206x, TLE206xA, TLE206xB
EXCALIBUR JFET INPUT HIGHOUTPUT DRIVE
POWER OPERATIONAL AMPLIFIERS
SLOS193B FEBRUARY 1997 REVISED MAY 2004
44
POST OFFICE BOX 655303
DALLAS, TEXAS 75265
TLE2064Y electrical characteristics at VCC± = ±15 V, TA = 25°C (unless otherwise noted)
PARAMETER
TEST CONDITIONS
TLE2064Y
UNIT
PARAMETER
TEST CONDITIONS
MIN
TYP
MAX
UNIT
VIO
Input offset voltage
0.9
6
mV
∝VIO
Input offset voltage long-term drift (see Note 4)
VIC = 0,
RS = 50
0.04
V/mo
IIO
Input offset current
VIC = 0,
RS = 50
2
pA
IIB
Input bias current
4
pA
VICR
Common-mode input voltage range
11
to
13
12
to
16
V
VOM +
Maximum positive peak output voltage swing
RL = 10 k
13.2
13.7
V
VOM +
Maximum positive peak output voltage swing
RL = 600
12.5
13.2
V
VOM
Maximum negative peak output voltage swing
RL = 10 k
13.2
13.7
V
VOM
Maximum negative peak output voltage swing
RL = 600
12.5
13
V
VO = ± 10 V,
RL = 10 k
30
230
A VD
Large-signal differential voltage amplification
VO = 0 to 8 V,
RL = 600
25
100
V/mV
A VD
Large-signal differential voltage amplification
VO = 0 to 8 V,
RL = 600
3
25
V/mV
ri
Input resistance
1012
ci
Input capacitance
4
pF
zo
Open-loop output impedance
IO = 0
560
CMRR
Common-mode rejection ratio
RS = 50 ,
VIC = VICRmin,
72
90
dB
kSVR
Supply-voltage rejection ratio (
VCC± /VIO)
VCC± = ±5 V to ±15 V,
RS = 50
75
93
dB
ICC
Supply current
VO = 0,
No load
1.25
1.4
mA
VO1/VO2 Crosstalk attenuation
AVD = 1000,
f = 1 kHz
120
dB
NOTE 4: Typical values are based on the input offset voltage shift observed through 168 hours of operating life test at TA = 150°C extrapolated
to TA = 25°C using the Arrhenius equation and assuming an activation energy of 0.96 eV.
TLE2064Y operating characteristics at VCC± = ±15 V, TA = 25°C
PARAMETER
TEST CONDITIONS
TLE2064Y
UNIT
PARAMETER
TEST CONDITIONS
MIN
TYP
MAX
UNIT
SR
Slew rate at unity gain (see Figure 1)
RL = 10 k,
CL = 100 pF
2.6
3.4
V/
s
Vn
Equivalent input noise voltage (see Figure 2)
f = 10 Hz,
RS = 20
70
nV/
√Hz
Vn
Equivalent input noise voltage (see Figure 2)
f = 1 kHz ,
RS = 20
40
nV/
√Hz
VN(PP)
Peak-to-peak equivalent input noise voltage
f = 0.1 Hz to 10 Hz
1.1
V
In
Equivalent input noise current
f = 1 kHz
1.1
fA/
√Hz
THD
Total harmonic distortion
A VD = 2,
f = 10 kHz,
0.025%
THD
Total harmonic distortion
A VD = 2,
VO(PP) = 2 V,
f = 10 kHz,
RL = 10 k
0.025%
B1
Unity-gain bandwidth (see Figure 3)
RL = 10 k,
CL = 100 pF
2
MHz
B1
Unity-gain bandwidth (see Figure 3)
RL = 600 ,
CL = 100 pF
1.5
MHz
ts
Settling time
ε = 0.1%
5
s
ts
Settling time
ε = 0.01%
10
s
BOM
Maximum output-swing bandwidth
A VD = 1,
RL = 10 k
40
kHz
φm
Phase margin at unity gain (see Figure 3)
RL = 10 k,
CL = 100 pF
60
°
φm
Phase margin at unity gain (see Figure 3)
RL = 600 ,
CL = 100 pF
70
°