link to page 16 link to page 17 ADA4927-1/ADA4927-2Data SheetTYPICAL PERFORMANCE CHARACTERISTICS TA = 25°C, +VS = 5 V, −VS = −5 V, VOCM = 0 V, RG = 301 Ω, RF = 301 Ω, RT = 56.2 Ω (when used), RL, dm = 1 kΩ, unless otherwise noted. Refer to Figure 43 for basic test setup. Refer to Figure 46 for signal definitions. 33VOUT, dm = 100mV p-pVOUT, dm = 2V p-p))dBdB((0IN0INGAGA–3–3-LOOP-LOOPDDEELOSLOS–6C–6CDDLIZELIZEAAG = 1, RM–9M–9F = 301ΩG = 1, RF = 301ΩG = 10, RF = 442ΩORORNG = 10, RF = 442ΩNG = 20, RF = 604ΩG = 20, RF = 604Ω–12–121101001k10k 007 1101001k10k 010 FREQUENCY (MHz)FREQUENCY (MHz) 07574- 07574- Figure 7. Small Signal Frequency Response for Various Gains Figure 10. Large Signal Frequency Response for Various Gains 33VOUT, dm = 100mV p-pVOUT, dm = 2V p-p)0)0dB (dB (ININGAGA–3–3-LOOP-LOOPDDEELOSLOSC–6C–6VVS = ±5VS = ±5VVVS = ±2.5VS = ±2.5V–9–91101001k10k 008 101001k10k 011 FREQUENCY (MHz) 07574- FREQUENCY (MHz) 07574- Figure 8. Small Signal Frequency Response for Various Supplies Figure 11. Large Signal Frequency Response for Various Supplies 33VOUT, dm = 100mV p-pVOUT, dm = 2V p-p00))dBdB((ININ–3–3GAGA-LOOP-LOOPD–6D–6EELOSLOSCCT–9TA +25°C–9A +25°CTA +105°CTA +105°CTA –40°CTA –40°C–12–121101001k10k 009 1101001k10k 012 FREQUENCY (MHz)FREQUENCY (MHz) 07574- 07574- Figure 9. Small Signal Frequency Response for Various Temperatures Figure 12. Large Signal Frequency Response for Various Temperatures Rev. B | Page 10 of 25 Document Outline FEATURES APPLICATIONS GENERAL DESCRIPTION FUNCTIONAL BLOCK DIAGRAMS REVISION HISTORY SPECIFICATIONS ±5 V OPERATION ±DIN to VOUT, dm Performance VOCM to VOUT, cm Performance General Performance +5 V OPERATION ±DIN to VOUT, dm Performance VOCM to VOUT, cm Performance General Performance ABSOLUTE MAXIMUM RATINGS THERMAL RESISTANCE MAXIMUM POWER DISSIPATION ESD CAUTION PIN CONFIGURATIONS AND FUNCTION DESCRIPTIONS TYPICAL PERFORMANCE CHARACTERISTICS TEST CIRCUITS THEORY OF OPERATION DEFINITION OF TERMS Differential Voltage Common-Mode Voltage Balance APPLICATIONS INFORMATION ANALYZING AN APPLICATION CIRCUIT SETTING THE CLOSED-LOOP GAIN ESTIMATING THE OUTPUT NOISE VOLTAGE IMPACT OF MISMATCHES IN THE FEEDBACK NETWORKS CALCULATING THE INPUT IMPEDANCE FOR AN APPLICATION CIRCUIT Terminating a Single-Ended Input INPUT COMMON-MODE VOLTAGE RANGE INPUT AND OUTPUT CAPACITIVE AC COUPLING SETTING THE OUTPUT COMMON-MODE VOLTAGE POWER-DOWN Power-Down in Cold Applications LAYOUT, GROUNDING, AND BYPASSING HIGH PERFORMANCE ADC DRIVING OUTLINE DIMENSIONS ORDERING GUIDE