16 V Rail-to-Rail, Zero-Drift, Precision Instrumentation Amplifier
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16 /8 — AD8230. 6.8. 6.6. 6.4. (kHz Y. ±8V. 6.2. d (. 6.0. CK F O. ±5V. 5.8. 5.6. …
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AD8230. 6.8. 6.6. 6.4. (kHz Y. ±8V. 6.2. d (. 6.0. CK F O. ±5V. 5.8. 5.6. 5.4. –10. –50. –30. 110. 130. 100. 10k. 100k. TEMPERATURE (°C). FREQUENCY (Hz). 1.0. +85°C. 0.8
AD82306.890806.670)6.460(kHz Y±8V50NC)6.2BUEd (Q40INRE6.0GA30CK F O±5V5.820CL105.6 16 19 0 0 0 3- 3- 06 06 5.4 05 –10 05 –50–30–101030507090110130101001k10k100kTEMPERATURE (°C)FREQUENCY (Hz) Figure 16. Clock Frequency vs. Temperature Figure 19. Gain vs. Frequency, G = 2 1.090+85°C0.8)80A+125°Cµ (0.670T N0.4–40°C60URRE C0.2)50BASd0(40BIINT U –0.2GA30NP I E –0.4200°CRAG E –0.610AV –0.8+25°C 17 20 0 0 0 3- 3- 06 06 –1.0 05 –10 05 –6–4–20246101001k10k100kCOMMON-MODE VOLTAGE (V)FREQUENCY (Hz) Figure 17. Average Input Bias Current vs. Common-Mode Voltage, Figure 20. Gain vs. Frequency, G = 10 −40°C, +25°C, +85°C, +125°C 3.540G = +203.430±8V3.320A)3.2)mm(p p10NT3.1(EY T3.0ARI0CURR±5VYINEL2.9–10PNLUP2.8NOS–202.7–302.6 18 21 0 0 3- 3- 06 06 2.5 05 –40 05 –50050100150–5–4–3–2–1012345TEMPERATURE (°C)VOUT (V) Figure 18. Supply Current vs. Temperature Figure 21. Gain Nonlinearity, G = 20 Rev. B | Page 8 of 16 Document Outline FEATURES APPLICATIONS GENERAL DESCRIPTION CONNECTION DIAGRAM TABLE OF CONTENTS REVISION HISTORY SPECIFICATIONS ABSOLUTE MAXIMUM RATINGS THERMAL CHARACTERISTICS ESD CAUTION TYPICAL PERFORMANCE CHARACTERISTICS THEORY OF OPERATION SETTING THE GAIN LEVEL-SHIFTING THE OUTPUT SOURCE IMPEDANCE AND INPUT SETTLING TIME INPUT VOLTAGE RANGE INPUT PROTECTION POWER SUPPLY BYPASSING POWER SUPPLY BYPASSING FOR MULTIPLE CHANNEL SYSTEMS LAYOUT APPLICATIONS OUTLINE DIMENSIONS ORDERING GUIDE