Datasheet LTC1992 (Analog Devices) - 3

制造商Analog Devices
描述Low Power, Fully Differential Input/Output Amplifier/Driver Family
页数 / 页42 / 3 — ELECTRICAL CHARACTERISTICS. The. denotes the specifications which apply …
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ELECTRICAL CHARACTERISTICS. The. denotes the specifications which apply over the full operating

ELECTRICAL CHARACTERISTICS The denotes the specifications which apply over the full operating

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LTC1992 Family
ELECTRICAL CHARACTERISTICS The
l
denotes the specifications which apply over the full operating temperature range, otherwise specifications are at TA = 25°C. +VS = 5V, –VS = 0V, VINCM = VOUTCM = VOCM = 2.5V, unless otherwise noted. VOCM is the voltage on the VOCM pin. VOUTCM is defined as (+VOUT + –VOUT)/2. VINCM is defined as (+VIN + –VIN)/2. VINDIFF is defined as (+VIN – –VIN). VOUTDIFF is defined as (+VOUT – –VOUT). Specifications applicable to all parts in the LTC1992 family. ALL C AND I GRADE ALL H GRADE SYMBOL PARAMETER CONDITIONS MIN TYP MAX MIN TYP MAX UNITS
VS Supply Voltage Range l 2.7 11 2.7 11 V IS Supply Current VS = 2.7V to 5V l 0.65 1.0 0.65 1.0 mA 0.75 1.2 0.8 1.5 mA VS = ±5V 0.7 1.2 0.7 1.2 mA l 0.8 1.5 0.9 1.8 mA VOSDIFF Differential Offset Voltage VS = 2.7V l ±0.25 ±2.5 ±0.25 ±4 mV (Input Referred) (Note 7) VS = 5V l ±0.25 ±2.5 ±0.25 ±4 mV VS = ±5V l ±0.25 ±2.5 ±0.25 ±4 mV ΔVOSDIFF/ΔT Differential Offset Voltage Drift VS = 2.7V l 10 10 μV/°C (Input Referred) (Note 7) VS = 5V l 10 10 μV/°C VS = ±5V l 10 10 μV/°C PSRR Power Supply Rejection Ratio VS = 2.7V to ±5V l 75 80 72 80 dB (Input Referred) (Note 7) GCM Common Mode Gain(VOUTCM/VOCM) l 1 1 Common Mode Gain Error l ±0.1 ±0.3 ±0.1 ±0.35 % Output Balance (ΔVOUTCM/(ΔVOUTDIFF) VOUTDIFF = –2V to +2V l –85 –60 –85 –60 dB VOSCM Common Mode Offset Voltage VS = 2.7V l ±0.5 ±12 ±0.5 ±15 mV (VOUTCM – VOCM) VS = 5V l ±1 ±15 ±1 ±17 mV VS = ±5V l ±2 ±18 ±2 ±20 mV ΔVOSCM/ΔT Common Mode Offset Voltage Drift VS = 2.7V l 10 10 μV/°C VS = 5V l 10 10 μV/°C VS = ±5V l 10 10 μV/°C VOUTCMR Output Signal Common Mode Range l (–VS) + 0.5V (+VS) – 1.3V (–VS) + 0.5V (+VS) – 1.3V V (Voltage Range for the VOCM Pin) RINVOCM Input Resistance, VOCM Pin l 500 500 MΩ IBVOCM Input Bias Current, VOCM Pin VS = 2.7V to ±5V l ±2 ±2 pA VMID Voltage at the VMID Pin l 2.44 2.50 2.56 2.43 2.50 2.57 V VOUT Output Voltage, High VS = 2.7V, Load = 10k l 2.60 2.69 2.60 2.69 V (Note 2) VS = 2.7V, Load = 5mA l 2.50 2.61 2.50 2.61 V VS = 2.7V, Load = 10mA l 2.29 2.52 2.29 2.52 V Output Voltage, Low VS = 2.7V, Load = 10k l 0.02 0.10 0.02 0.10 V (Note 2) VS = 2.7V, Load = 5mA l 0.10 0.25 0.10 0.25 V VS = 2.7V, Load = 10mA l 0.20 0.35 0.20 0.41 V Output Voltage, High VS = 5V, Load = 10k l 4.90 4.99 4.90 4.99 V (Note 2) VS = 5V, Load = 5mA l 4.85 4.90 4.80 4.90 V VS = 5V, Load = 10mA l 4.75 4.81 4.70 4.81 V Output Voltage, Low VS = 5V, Load = 10k l 0.02 0.10 0.02 0.10 V (Note 2) VS = 5V, Load = 5mA l 0.10 0.25 0.10 0.30 V VS = 5V, Load = 10mA l 0.20 0.35 0.20 0.42 V Output Voltage, High VS = ±5V, Load = 10k l 4.90 4.99 4.85 4.99 V (Note 2) VS = ±5V, Load = 5mA l 4.85 4.89 4.80 4.89 V VS = ±5V, Load = 10mA l 4.65 4.80 4.60 4.80 V Output Voltage, Low VS = ±5V, Load = 10k l –4.99 –4.90 –4.98 –4.85 V (Note 2) VS = ±5V, Load = 5mA l –4.90 –4.75 –4.90 –4.75 V VS = ±5V, Load = 10mA l –4.80 –4.65 –4.80 –4.55 V 1992fb 3