www.ti.com................................................................................................................................................. SLOS217H – JULY 1998 – REVISED SEPTEMBER 2009
RECOMMENDED OPERATING CONDITIONS
MIN
NOM
MAX
UNIT
Split supply
±4.5
±16
THS3001C,
THS3001I
Single supply
9
32
V
VSS
Supply voltage, VCC+ and VCC-
Split supply
±4.5
±18.5
THS3001HVC,
THS3001HVI
Single supply
9
37
THS3001C, THS3001HVC
0
70
TA
Operating free-air temperature
°C
THS3001I, THS3001HVI
-40
85
ELECTRICAL CHARACTERISTICS
At TA = 25°C, RL = 150 , RF = 1 k (unless otherwise noted)
PARAMETER
TEST CONDITIONS (1)
MIN
TYP
MAX
UNIT
THS3001C
±4.5
±16.5
THS3001I
Split supply
THS3001HVx
±4.5
±18.5
VCC
Power supply operating range
V
THS3001C
9
33
THS3001I
Single supply
THS3001HVx
9
37
TA = 25°C
5.5
7.5
VCC = ±5 V
TA = full range
8.5
TA = 25°C
6.6
9
ICC
Quiescent current
VCC = ±15 V
mA
TA = full range
10
TA = 25°C
6.9
9.5
VCC = ±18.5 V,
THS3001HV
TA = full range
10.5
RL = 150
±2.9
±3.2
VCC = ±5 V
RL = 1 k
±3
±3.3
VO
Output voltage swing
V
RL = 150
±12.1
±12.8
VCC = ±15 V
RL = 1 k
±12.8
±13.1
VCC = ±5 V,
RL = 20
100
IO
Output current(2)
mA
VCC = ±15 V,
RL = 75
85
120
TA = 25°C
1
3
VIO
Input offset voltage
VCC = ±5 V or ±15 V
mV
TA = full range
4
Input offset voltage drift
VCC = ±5 V or ±15 V
5
μV/°C
TA = 25°C
2
10
Positive (IN+)
TA = full range
15
IIB
Input bias current
VCC = ±5 V or ±15 V
μA
TA = 25°C
1
10
Negative (IN-)
TA = full range
15
VCC = ±5 V
±3
±3.2
VICR
Common-mode input voltage range
V
VCC = ±15 V
±12.9
±13.2
VCC = ±5 V, VO = ±2.5 V, RL = 1 k
1.3
Open loop transresistance
M
VCC = ±15 V, VO = ±7.5 V, RL = 1 k
2.4
VCC = ±5 V, VCM = ±2.5 V
62
70
CMRR
Common-mode rejection ratio
dB
VCC = ±15 V, VCM = ±10 V
65
73
TA = 25°C
65
76
VCC = ±5 V
dB
TA = full range
63
PSRR
Power supply rejection ratio
TA = 25°C
69
76
VCC = ±15 V
dB
TA = full range
67
(1)
Full range = 0°C to 70°C for the THS3001C and -40°C to 85°C for the THS3001I.
(2)
Observe power dissipation ratings to keep the junction temperature below absolute maximum when the output is heavily loaded or
Copyright 1998–2009, Texas Instruments Incorporated
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