20 /9 — Data Sheet. AD795. 2.0. RL = 10kΩ. ) A. (m T 1.5. p- 20. R R. U C. TA 15. …
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Data Sheet. AD795. 2.0. RL = 10kΩ. ) A. (m T 1.5. p- 20. R R. U C. TA 15. 1.0. T U. SC 0.5. IE U Q. 10k. 100k. FREQUENCY (Hz). SUPPLY VOLTAGE (±V). 1000
Data SheetAD795302.0RL = 10kΩ25) Ap)(m T 1.5p- 20EN(VR RGEU CTA 15YLLO1.0VPPT USU10TTPENOUSC 0.55IE U Q0 2 1k10k100k1M 02 0 25 5- 05101520 05- FREQUENCY (Hz) 84 00 SUPPLY VOLTAGE (±V) 84 00 Figure 22. Large Signal Frequency Response Figure 25. Quiescent Supply Current vs. Supply Voltage 100050)SAMPLE SIZE = 1419(Ω10040DANCE ESPTIMUNI F 30UT P10O EUT OAGPNTO20O LRCED-1EEPS O10CL0.11k10k100k1M10M 023 0 6 5- 02 84 –500 –400 –300 –200 –1000100200300400500FREQUENCY (Hz) 4- 00 INPUT OFFSET VOLTAGE (µV) 82 00 Figure 23. Closed-Loop Output Impedance vs. Frequency Figure 26. Typical Distribution of Input Offset Voltage –60VIN = 3V rms RL = 10kΩ–70–80B)10kΩ(d–90+VSHD T0.1µF–10010kΩ7V2IN6VOUT–110AD7953RCLL410kΩ100pF0.1µF–120 4 7 1001k10k100k 025- 02 5- FREQUENCY (Hz) 84 84 00 –VS 00 Figure 24. Total Harmonic Distortion vs. Frequency Figure 27. Unity Gain Inverter Rev. D | Page 9 of 20 Document Outline FEATURES APPLICATIONS CONNECTION DIAGRAM GENERAL DESCRIPTION REVISION HISTORY SPECIFICATIONS ABSOLUTE MAXIMUM RATINGS THERMAL RESISTANCE ESD CAUTION TYPICAL PERFORMANCE CHARACTERISTICS MINIMIZING INPUT CURRENT CIRCUIT BOARD NOTES OFFSET NULLING AC RESPONSE WITH HIGH VALUE SOURCE AND FEEDBACK RESISTANCE OVERLOAD ISSUES INPUT PROTECTION PREAMPLIFIER APPLICATIONS MINIMIZING NOISE CONTRIBUTIONS USING A T NETWORK A pH PROBE BUFFER AMPLIFIER OUTLINE DIMENSIONS ORDERING GUIDE