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THS3092_14 Datasheet, PDF (7/45 Pages) Texas Instruments – HIGH-VOLTAGE, LOW-DISTORTION, CURRENT-FEEDBACK OPERATIONAL AMPLIFIERS
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THS3092
THS3096
SLOS428B – DECEMBER 2003 – REVISED FEBRUARY 2006
ELECTRICAL CHARACTERISTICS (continued)
VS = ±5 V, RF = 909 Ω, RL = 100 Ω, and G = 2 (unless otherwise noted)
PARAMETER
TEST CONDITIONS
TYP
25°C
25°C
OUTPUT CHARACTERISTICS
Output voltage swing
Output current (sourcing)
Output current (sinking)
Output impedance
RL = 1 kΩ
RL = 100 Ω
RL = 10 Ω
RL = 10 Ω
f = 1 MHz, Closed loop
POWER SUPPLY
Specified operating voltage
Maximum quiescent current
Minimum quiescent current
Per channel
Power supply rejection (+PSRR)
VS+ = 5.5 V to 4.5 V, VS- = -5 V
Power supply rejection (-PSRR)
VS+ = 5 V, VS- = -4.5 V to 5.5 V
POWER-DOWN CHARACTERISTICS (THS3096 ONLY)
REF voltage range(1)
Power-down voltage level(1)
Power-down quiescent current
VPD quiescent current
Turnon time delay
Turnoff time delay
Enable
Disable
PD = 0V
VPD = 0 V, REF = 0 V,
VPD = 3.3 V, REF = 0 V
90% of final value
10% of final value
±3.4
±3.1
200
180
0.09
±3.1
±2.7
160
150
±5
±4.5
8.2
9
8.2
7
73
68
71
65
VS+ – 4
VS–
PD ≥ REF + 2
PD ≤ REF + 0.8
300
500
11
15
11
15
60
150
OVER TEMPERATURE
0°C to -40°C to
70°C 85°C
UNIT
±2.8
±2.8
V
±2.5
±2.5
140
140
mA
125
125
mA
Ω
±4.5
±4.5
V
9.5
9.5
mA
6.5
6.5
mA
63
63
dB
60
60
dB
V
600
600
µA
20
20
µA
20
20
µs
MIN/TYP/
MAX
MIN
MIN
MIN
TYP
MAX
MAX
MIN
MIN
MIN
MAX
MIN
MIN
MAX
MAX
MAX
TYP
(1) For detailed information on th behavior of the powerdown circuit, see the Powerdown and Powerdown Reference sections in the
Application Information of this data sheet.
TABLE OF GRAPHS
±15-V graphs
Noninverting frequency response
Inverting frequency response
0.1 dB flatness
Noninverting frequency response
Inverting frequency response
Frequency response capacitive load
Recommended RISO
2nd Harmonic distortion
3rd Harmonic distortion
Slew rate
Noise
Settling time
Quiescent current
Output voltage
Input bias and offset current
Input offset voltage
TYPICAL CHARACTERISTICS
vs Capacitive load
vs Frequency
vs Frequency
vs Output voltage step
vs Frequency
vs Supply voltage
vs Load resistance
vs Case temperature
vs Case temperature
FIGURE
1, 2
3
4
5
6
7
8
9, 11
10, 12
13, 14, 15
16
17, 18
19
20
21
22
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