Analog Devices C1599c07 manuals
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Analog Devices C1599c07 Specifications
16 pages 571.35 Kb
aLow Cost, Low Power Instrumentation Amplifier AD620Figure 2. Total Voltage Noise vs. Source Resistance Figure 1. Three Op Amp IA Designs vs. AD620 2 AD620SPECIFICATIONS6 = (Typical @ +258C, V 15 V, and R = 2 kV, unless otherwise noted) 4 WARNING!5 Typical Characteristics(@ +258C, VS = 615 V, RL = 2 kV, unless otherwise noted)Figure 3. Typical Distribution of Input Offset Voltage Figure 4. Typical Distribution of Input Bias Current Figure 5. Typical Distribution of Input Offset Current Figure 6. Input Bias Current vs. Temperature Figure 7. Change in Input Offset Voltage vs. Warm-Up Time Figure 8. Voltage Noise Spectral Density vs. Frequency, (G = 11000) 6 AD620Typical CharacteristicsFigure 9. Current Noise Spectral Density vs. Frequency Figure 13. CMR vs. Frequency, RTI, Zero to 1 k Figure 10b. 0.1 Hz to 10 Hz RTI Voltage Noise (G = 1000) Figure 10a. 0.1 Hz to 10 Hz RTI Voltage Noise (G = 1) Figure 11. 0.1 Hz to 10 Hz Current Noise, 5 pA/Div Figure 12. Total Drift vs. Source Resistance Source ImbalanceFREQUENCY Hz 160 20 100k10k1k10010 1M 80 40 1 60 0.1 140 100 120 G = 1000 G = 100 G = 10 G = 1 180 7 Figure 14. Positive PSR vs. Frequency, RTI (G = 11000)Figure 15. Negative PSR vs. Frequency, RTI (G = 11000) Figure 16. Gain vs. Frequency Figure 17. Large Signal Frequency Response Figure 18. Input Voltage Range vs. Supply Voltage, G = 1 Figure 19. Output Voltage Swing vs. Supply Voltage, G = 10 10 G=49.4 k R+1 R =49.4 k G1 13 R=49.4 k G1
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