ADL5391Data Sheet0.2030X ± INPUT = ±100mV p-p, @ 200MHz Y ± INPUT = 1.0V DC DIFFERENTIAL0.15250.10200.05Y = 1(V)Bm)UTdP0153 (UT OIPWO–0.05Y = 0.510–0.105–0.15–0.20024.525.526.527.528.529.530.531.532.5 014 0500100015002000 016 TIME (ns)FREQUENCY (MHz) 06059- 06059- Figure 9. Small Signal Pulse Response Figure 12. OIP3 vs. Frequency Pin 0 dBm, Y = 1 V dc, 0.5 V dc 0.050.040.03+85°C, X = +1+85°C, X = –10.02–40°C, X = –1 –40°C, X = +1)+25°C, X = –110MHz0.01200MHzDC+25°C, X = +1(V F0F DIW –0.01VV400MHzDIDI600MHzBm/Bm/–0.0210d10d–0.0330MHz–0.0420MHz 094 –0.05–0.05 –0.04 –0.03 –0.02 –0.0100.010.020.030.040.05 06059- 021 YDIFF (VDC) 06059- Figure 10. Harmonic Distortion at 10 MHz and 200 MHz; Figure 13. Z (W) Offset Over Temperature 0 dBm Input to X (Y) Channels 2845X = 0V, Y = 1V264024)X = Y = 1VDC22(V35z)SET F20HX = Y = 0VF OV/30V(nE18D SNRAG16E25AV1420121015–40–1510356085 015 200400600800100012001400160018002000 019 TEMPERATURE (°C)FREQUENCY (MHz) 06059- 06059- Figure 11. X (Y) Offset Drift vs. Temperature Figure 14. Noise vs. Frequency Rev. A | Page 8 of 15 Document Outline Features Applications Functional Block Diagram General Description Table of Contents Revision History Specifications Absolute Maximum Ratings ESD Caution Pin Configuration and Function Descriptions Typical Performance Characteristics Theory of Operation Basic Theory Calibration Basic Connections Multiplier Connections Matching the Input/Output Wideband Voltage-Controlled Amplifier/Amplitude Modulator Squaring and Frequency Doubling Use as a Detector Evaluation Board Outline Dimensions Ordering Guide