SLOS382E September 2001 – May 2015 THS3122 , THS3125
PRODUCTION DATA.
MIN | MAX | UNIT | ||
---|---|---|---|---|
Supply voltage, VCC+ to VCC– | 33 | V | ||
Input voltage | –VCC | +VCC | V | |
Differential input voltage | –4 | +4 | V | |
Output current(2) | 550 | mA | ||
Total power dissipation at (or below) +25°C free-air temperature | See Dissipation Ratings Table | |||
Maximum junction temperature | 150 | °C | ||
Operating free-air temperature, TA | Commercial | 0 | 70 | °C |
Industrial | –40 | +85 | °C | |
Storage temperature, Tstg | Commercial | –65 | +125 | °C |
Industrial | –65 | +125 | °C |
PACKAGE | θJA | TA = +25°C POWER RATING |
---|---|---|
D-8 | 95°C/W(1) | 1.32 W |
DDA | 67°C/W | 1.87 W |
D-14 | 66.6°C/W(1) | 1.88 W |
PWP | 37.5°C/W | 3.3 W |
MIN | NOM | MAX | UNIT | ||
---|---|---|---|---|---|
Supply voltage, VCC+ to VCC– | Dual supply | ±5 | ±15 | V | |
Single supply | 10 | 30 | V | ||
Operating free-air temperature, TA | C-suffix | 0 | +70 | °C | |
I-suffix | –40 | +85 | °C |
PARAMETER | TEST CONDITIONS | MIN | TYP | MAX | UNIT | ||||
---|---|---|---|---|---|---|---|---|---|
BW | Small-signal bandwidth (–3 dB) | RL = 50 Ω | RF = 50 Ω, G = 1 | VCC = ±5 V | 138 | MHz | |||
VCC = ±15 V | 160 | MHz | |||||||
RL = 50 Ω | RF = 470 Ω, G = 2 | VCC = ±5 V | 126 | MHz | |||||
VCC = ±15 V | 128 | MHz | |||||||
Bandwidth (0.1 dB) | RF = 470 Ω, G = 2 | VCC = ±5 V | 20 | MHz | |||||
VCC = ±15 V | 30 | MHz | |||||||
Full power bandwidth | G = –1 | VO(PP) = 4 V | VCC = ±5 V | 47 | MHz | ||||
VO(PP) = 20 V | VCC = ±15 V | 64 | MHz | ||||||
SR | Slew rate(1), G = 8 | G = 2, RF = 680Ω | VO = 10 VPP | VCC = ±15 V | 1550 | V/µs | |||
VO = 5 VPP | VCC = ±5 V | 500 | V/µs | ||||||
VCC = ±15 V | 1000 | V/µs | |||||||
ts | Settling time to 0.1% | G = –1 | VO = 2 VPP | VCC = ±5 V | 53 | ns | |||
VO= 5 VPP | VCC = ±15 V | 64 | ns |
PARAMETER | TEST CONDITIONS | MIN | TYP | MAX | UNIT | |||
---|---|---|---|---|---|---|---|---|
THD | Total harmonic distortion | G = 2, RF = 470 Ω, VCC= ±15 V, f = 1 MHz |
VO(PP) = 2 V | –80 | dBc | |||
VO(PP) = 8 V | –75 | dBc | ||||||
G = 2, RF = 470 Ω, VCC= ±5 V, f = 1 MHz |
VO(PP)= 2 V | –77 | dBc | |||||
VO(PP)= 5 V | –76 | dBc | ||||||
Vn | Input voltage noise | VCC = ±5 V, ±15 V | f = 10 kHz | 2.2 | nV/√Hz | |||
In | Input current noise | Noninverting Input | VCC = ±5 V, ±15 V | f = 10 kHz | 2.9 | pA/√Hz | ||
Inverting Input | VCC = ±5 V, ±15 V | f = 10 kHz | 10.8 | pA/√Hz | ||||
Crosstalk | G = 2, f = 1 MHz, VO = 2 VPP | VCC = ±5 V | –67 | dBc | ||||
VCC= ±15 V | –67 | dBc | ||||||
Differential gain error | G = 2, RL = 150 Ω 40 IRE modulation, ±100 IRE Ramp NTSC and PAL |
VCC = ±5 V | 0.01% | |||||
VCC= ±15 V | 0.01% | |||||||
Differential phase error | G = 2, RL = 150 Ω 40 IRE modulation ±100 IRE Ramp NTSC and PAL |
VCC = ±5 V | 0.011 | degrees | ||||
VCC= ±15 V | 0.011 | degrees |
PARAMETER | TEST CONDITIONS | MIN | TYP | MAX | UNIT | ||
---|---|---|---|---|---|---|---|
VICR | Input common-mode voltage range | VCC = ±5 V | TA = full range | ±2.5 | ±2.7 | V | |
VCC= ±15 V | TA = full range | ±12.5 | ±12.7 | V | |||
CMRR | Common-mode rejection ratio | VCC = ±5 V, VI = –2.5 V to +2.5 V | TA = +25°C | 58 | 62 | dB | |
TA = full range | 56 | dB | |||||
VCC = ±15 V, VI = –12.5 V to +12.5 V | TA = +25°C | 63 | 67 | dB | |||
TA = full range | 60 | dB | |||||
RI | Input resistance | IN+ | 1.5 | MΩ | |||
IN– | 15 | Ω | |||||
CI | Input capacitance | 2 | pF |
PARAMETER | TEST CONDITIONS | MIN | TYP | MAX | UNIT | ||||
---|---|---|---|---|---|---|---|---|---|
VO | Output voltage swing | G = 4, | VI = 1.06 V, VCC = ±5 V, | RL = 1 kΩ | TA = +25°C | 4.1 | V | ||
G = 4, | VI = 1.025 V, VCC= ±5 V, | RL = 50Ω | TA = +25°C | 3.8 | 4 | V | |||
TA = full range | 3.7 | V | |||||||
G = 4, | VI = 3.6 V, VCC= ±15 V, | RL = 1 kΩ | TA = +25°C | 14.2 | V | ||||
G = 4, | VI = 3.325 V, VCC= ±15 V, | RL = 50Ω | TA = +25°C | 12 | 13.3 | V | |||
TA = full range | 11.5 | V | |||||||
IO | Output current drive | G = 4, | VI = 1.025 V, VCC= ±5 V, | RL = 10 Ω | TA = +25°C | 200 | 280 | mA | |
G = 4, | VI = 3.325 V, VCC = ±15 V, | RL = 25 Ω | TA = +25°C | 360 | 440 | mA | |||
ro | Output resistance | Open loop | TA = +25°C | 14 | Ω |
PARAMETER | TEST CONDITIONS | MIN | TYP | MAX | UNIT | ||
---|---|---|---|---|---|---|---|
ICC(SHDN) | Shutdown quiescent current (per channel) | REF = 0 V, VCC= ±5 V to ±15 V | VSHDN = 3.3 V | 370 | 500 | µA | |
tDIS | Disable time (1) | REF = 0 V, VCC= ±5 V to ±15 V | 500 | µs | |||
tEN | Enable time(1) | REF = 0 V, VCC= ±5 V to ±15 V | 200 | µs | |||
IIL(SHDN) | Shutdown pin low level leakage current | REF = 0 V, VCC= ±5 V to ±15 V | VSHDN = 0 V | 18 | 25 | µA | |
IIH(SHDN) | Shutdown pin high level leakage current | REF = 0 V, VCC= ±5 V to ±15 V | VSHDN = 3.3 V | 110 | 130 | µA | |
VREF | REF pin voltage level | VCC– | VCC+ – 4 | V | |||
VSHDN | SHUTDOWN pin voltage level | Enable | REF + 0.8 | V | |||
Disable | REF + 2 | V |
TITLE | FIGURE | ||
---|---|---|---|
Small-signal closed-loop gain | vs Frequency | Figure 1 to Figure 10 | |
Small- and large-signal output | vs Frequency | Figure 11, Figure 12 | |
Harmonic distortion | vs Frequency | Figure 13 to Figure 15 | |
vs Peak-to-peak output voltage | Figure 16, Figure 17 | ||
Vn, In | Voltage noise and current noise | vs Frequency | Figure 18 |
CMRR | Common-mode rejection ratio | vs Frequency | Figure 19 |
Crosstalk | vs Frequency | Figure 20 | |
Zo | Output impedance | vs Frequency | Figure 21 |
SR | Slew rate | vs Output voltage step | Figure 22 |
VIO | Input offset voltage | vs Free-air temperature | Figure 24 |
vs Common-mode input voltage | Figure 24 | ||
IB | Input bias current | vs Free-air temperature | Figure 25 |
VO | Output voltage | vs Load current | Figure 26 |
Quiescent current | vs Free-air temperature | Figure 27 | |
vs Supply voltage | Figure 28 | ||
ICC | Shutdown supply current | vs Free-air temperature | Figure 29 |
Differential gain and phase error | vs 75-Ω serially terminated loads | Figure 30, Figure 31 | |
Shutdown response | Figure 32 | ||
Small-signal pulse response | Figure 33, Figure 34 | ||
Large-signal pulse response | Figure 35, Figure 36 |