ZHCS968B June 2012 – November 2017 INA827
PRODUCTION DATA.
| PARAMETER | TEST CONDITIONS | MIN | TYP | MAX | UNIT | |||
|---|---|---|---|---|---|---|---|---|
| INPUT | ||||||||
| VOSI | Offset voltage(1) | Input stage | RTI, VOS = VOSI + (VOSO / G) | 40 | 150 | µV | ||
| TA = –40°C to +125°C | 0.5 | 2.5 | µV/°C | |||||
| VOSO | Output stage | RTI, VOS = VOSI + (VOSO / G) | 500 | 2000 | µV | |||
| TA = –40°C to +125°C | 5 | 30 | µV/°C | |||||
| PSRR | Power-supply rejection ratio | G = 5, VS = ±1.5 V to ±18 V | 100 | 120 | dB | |||
| G = 10, VS = ±1.5 V to ±18 V | 106 | 126 | ||||||
| G > 100, VS = ±1.5 V to ±18 V | 120 | 140 | ||||||
| ZIN | Impedance | Differential | 2 || 1 | GΩ || pF | ||||
| Common-mode | 10 || 5 | |||||||
| RFI filter, –3-dB frequency | 25 | MHz | ||||||
| VCM | Operating input range(2) | VS = ±1.5 V to ±18 V, VO = 0 V | (V–) – 0.2 | (V+) – 0.9 | V | |||
| VS = ±1.5 V to ±18 V, VO = 0 V, TA = +125°C | (V–) – 0.05 | (V+) – 0.8 | ||||||
| VS = ±1.5 V to ±18 V, VO = 0 V, TA = –40°C | (V–) – 0.3 | (V+) – 0.95 | ||||||
| Input overvoltage range | TA = –40°C to +125°C | (V+) – 40 | (V–) + 40 | V | ||||
| CMRR | Common-mode rejection ratio | DC to 60 Hz | G = 5, VCM = V– to (V+) – 1 V | 88 | 100 | dB | ||
| G = 10, VCM = V– to (V+) – 1 V | 94 | 106 | ||||||
| G > 100, VCM = V– to (V+) – 1 V | 110 | 126 | ||||||
| At 5 kHz | G = 5, VCM = V– to (V+) – 1 V | 88 | ||||||
| G = 10, VCM = V– to (V+) – 1 V | 94 | |||||||
| G > 100, VCM = V– to (V+) – 1 V | 104 | |||||||
| BIAS CURRENT | ||||||||
| IB | Input bias current | 35 | 50 | nA | ||||
| TA = –40°C to +125°C | 95 | |||||||
| IOS | Input offset current | –5 | 0.7 | 5 | nA | |||
| TA = –40°C to +125°C | 10 | |||||||
| NOISE VOLTAGE(4) | ||||||||
| eNI | Voltage noise | Input | f = 1 kHz, G = 1000, RS = 0 Ω | 17 | 18 | nV/√Hz | ||
| eNO | Output | f = 1 kHz, G = 5, RS = 0 Ω | 250 | 285 | ||||
| RTI | Referred-to-input | G = 5, fB = 0.1 Hz to 10 Hz, RS = 0 Ω | 1.4 | µVPP | ||||
| G = 1000, fB = 0.1 Hz to 10 Hz, RS = 0 Ω | 0.5 | |||||||
| iN | Noise current | f = 1 kHz | 120 | fA/√Hz | ||||
| fB = 0.1 Hz to 10 Hz | 5 | pAPP | ||||||
| GAIN | ||||||||
| G | Gain equation | ![]() |
V/V | |||||
| G | Range of gain | 5 | 1000 | V/V | ||||
| GE | Gain error | G = 5, VO = ±10 V | ±0.005% | ±0.035% | ||||
| G = 10 to 1000, VO = ±10 V | ±0.1% | ±0.4% | ||||||
| Gain versus temperature(3) | G = 5, TA = –40°C to +125°C | ±0.1 | ±1 | ppm/°C | ||||
| G > 5, TA = –40°C to +125°C | 8 | 25 | ||||||
| Gain nonlinearity | G = 5 to 100, VO = –10 V to +10 V, RL = 10 kΩ | 2 | 5 | ppm | ||||
| G = 1000, VO = –10 V to +10 V, RL = 10 kΩ | 20 | 50 | ||||||
| OUTPUT | ||||||||
| Voltage swing | RL = 10 kΩ | (V–) + 0.1 | (V+) – 0.15 | V | ||||
| Load capacitance stability | 1000 | pF | ||||||
| Short-circuit current | Continuous to common | ±16 | mA | |||||
| FREQUENCY RESPONSE | ||||||||
| BW | Bandwidth, –3 dB | G = 5 | 600 | kHz | ||||
| G = 10 | 530 | |||||||
| G = 100 | 150 | |||||||
| G = 1000 | 15 | |||||||
| SR | Slew rate | G = 5, VO = ±14.5 V | 1.5 | V/µs | ||||
| G = 100, VO = ±14.5 V | 1.5 | |||||||
| tS | Settling time | To 0.01% | G = 5, VSTEP = 10 V | 10 | µs | |||
| G = 100, VSTEP = 10 V | 12 | |||||||
| G = 1000, VSTEP = 10 V | 95 | |||||||
| To 0.001% | G = 1, VSTEP = 10 V | 11 | ||||||
| G = 100, VSTEP = 10 V | 18 | |||||||
| G = 1000, VSTEP = 10 V | 118 | |||||||
| REFERENCE INPUT | ||||||||
| RIN | Input impedance | 60 | kΩ | |||||
| Voltage range | V– | V+ | V | |||||
| Gain to output | 1 | V/V | ||||||
| Reference gain error | 0.01 | % | ||||||
| POWER SUPPLY | ||||||||
| VS | Power-supply voltage | Single | 3.0 | 36 | V | |||
| Dual | ±1.5 | ±18 | ||||||
| IQ | Quiescent current | VIN = 0 V | 200 | 250 | µA | |||
| TA = –40°C to +125°C | 250 | 320 | ||||||
| TEMPERATURE RANGE | ||||||||
| Specified | –40 | 125 | °C | |||||
| Operating | –50 | 150 | °C | |||||
| θJA | Thermal resistance | 215 | °C/W | |||||
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