Data SheetADA4841-1/ADA4841-2TYPICAL PERFORMANCE CHARACTERISTICS RL = 1 kΩ, unless otherwise noted. 33VVOUT = 2V ppS = 5VG = +1VV–40°C+25°CS = 5VIN = 20mV p-pG = +100G = +10–3+125°CG = +2–3–6GAIN (dB)–6–9NORMALIZED CLOSED-LOOP GAIN (dB)–12 05614-021 –9 05614-028 0.11100.1110100FREQUENCY (MHz)FREQUENCY (MHz) Figure 6. Large Signal Frequency Response vs. Gain Figure 9. Small Signal Frequency Response vs. Temperature 62VIN = 20mV p-p20pF20pFVIN = 20mV p-pVG = +1S = +5VWITHG = +1VS = +3VVS = ± 5VVS = 5V100 W SNUBBER13B)0d N ( AI0–1G P0pF–2-LOO10pFD–3GAIN (dB)E–3LOS C–4–6 026 –5–9 05614- 05614-029 0.1110100–60.1110100FREQUENCY (MHz)FREQUENCY (MHz) Figure 7. Small Signal Frequency Response vs. Capacitive Load Figure 10. Small Signal Frequency Response vs. Supply Voltage 33VIN = 20mV p-pG = –1VS = ± 5VVG = +1S = 5VG = +110mV p-p0G = +100–3–32V p-p400mV p-p–6GAIN (dB)20mV p-p–6–9100mV p-pNORMALIZED CLOSED-LOOP GAIN (dB)–12 05614-027 –9 05614-014 0.11101000.1110100FREQUENCY (MHz)FREQUENCY (MHz) Figure 8. Small Signal Frequency Response vs. Gain Figure 11. Frequency Response for Various VOUT Rev. G | Page 7 of 20 Document Outline FEATURES APPLICATIONS CONNECTION DIAGRAMS GENERAL DESCRIPTION REVISION HISTORY SPECIFICATIONS ABSOLUTE MAXIMUM RATINGS THERMAL RESISTANCE MAXIMUM POWER DISSIPATION ESD CAUTION TYPICAL PERFORMANCE CHARACTERISTICS THEORY OF OPERATION AMPLIFIER DESCRIPTION DC ERRORS NOISE CONSIDERATIONS HEADROOM CONSIDERATIONS CAPACITANCE DRIVE INPUT PROTECTION POWER-DOWN OPERATION APPLICATIONS INFORMATION TYPICAL PERFORMANCE VALUES 16-BIT ADC DRIVER RECONSTRUCTION FILTER LAYOUT CONSIDERATIONS GROUND PLANE POWER SUPPLY BYPASSING OUTLINE DIMENSIONS ORDERING GUIDE