AD539TYPICAL PERFORMANCE CHARACTERISTICS VY = VY1 − VY2, VX = VX1 – VX2, unless otherwise noted. 31V50ns210090B) d (1AD539J, SRSSPECSRRO0 AD539KE SSPECSS O L N/ –1AI G10–20%2V–3 007 4 79- 0.010.1110 -009 96 VX = +3V 0 CONTROL VOLTAGE (V 67 X) 09 Figure 4. Maximum AC Gain Error Boundaries Figure 7. Multiplier Pulse Response Using LH0032 Op Amp, VX = 3 V 0.20f = 10kHz1V50ns) %100N ( 0.1590IO RT O T SC DI 0.10NI OVY = 1.5V rmsHARM 0.05AL T O10TVY = 0.5V rms0%100mV0 008 79- 012 05 0 3 9- 96 VX = +0.1V 0 CONTROL VOLTAGE (V) 967 0 Figure 5. Total Harmonic Distortion vs. Control Voltage Figure 8. Multiplier Pulse Response Using LH0032 Op Amp, VX = 0.1 V 200VX = 3.162VV10X = 3.162V)) –10BB(dVX = 1.00V0VX = 1.00VSESE (d –20NVNX = 0.316VO–10VX = 0.316VESPOESP –30VX = 0.1VY R –20Y RCCVNNX = 0.1VEV–40EUX = 0.032V–30UEQEQVRVRX = 0.032V–50FX = 0.01V–40FHHIGIGVHHX = 0.01V–50–60FEEDTHROUGHVX = –0.01V–60–70 9 100k1M10M100M 006 100k1M10M100M 00 FREQUENCY (Hz) 679- FREQUENCY (Hz) 679- 09 09 Figure 6. Multiplier High Frequency Response Using LH0032 Op Amps Figure 9. High Frequency Response in Minimal Configuration Rev. B | Page 7 of 20 Document Outline FEATURES APPLICATIONS FUNCTIONAL BLOCK DIAGRAM GENERAL DESCRIPTION TABLE OF CONTENTS REVISION HISTORY SPECIFICATIONS PIN CONFIGURATIONS AND FUNCTION DESCRIPTIONS TYPICAL PERFORMANCE CHARACTERISTICS THEORY OF OPERATION CIRCUIT DESCRIPTION GENERAL RECOMMENDATIONS TRANSFER FUNCTION DUAL SIGNAL CHANNELS COMMON CONTROL CHANNEL FLEXIBLE SCALING APPLICATIONS INFORMATION BASIC MULTIPLIER CONNECTIONS Signal Channel AC and Transient Response Minimal Wideband Configurations Differential Configurations A 50 MHZ VOLTAGE-CONTROLLED AMPLIFIER BASIC DIVIDER CONNECTIONS Standard Scaling OUTLINE DIMENSIONS ORDERING GUIDE