AD8007/AD8008–40–40G = +1G = +2VVS = 5VHD2, RS = 5VL = 150Ω–50V–50VO = 1V p-pO = 1V p-pHD3, RL = 150ΩHD2, R–60–60L = 1kΩc)c)BHD2, RBdL = 1kΩd((–70–70HD2, RL = 150ΩONION THD3, RL = 1kΩTIRR –80O –80TTOSSDIDI–90–90HD3, RL = 150Ω–100–100HD3, RL = 1kΩ–110–110 1 8 110100110100 01 -02 6- FREQUENCY (MHz)FREQUENCY (MHz) 866 86 02 02 Figure 18. AD8007 Second and Third Harmonic Distortion vs. Frequency and R Figure 21. AD8007 Second and Third Harmonic Distortion vs. Frequency and R L L –40–40G = +1G = +2VVS = ±5VS = ±5V–50V–50VO = 2V p-pO = 2V p-p–60–60c)c) BHD2, RL = 1kΩd(dB –70HD2, R(L = 150Ω–70ONHD2, RTIONTIL = 150ΩRR–80HD2, R–80L = 1kΩTOHD3, RL = 150ΩTOSSDIDI–90–90HD3, RL = 150Ω–100HD3, RL = 1kΩ–100HD3, RL = 1kΩ–110–110 22 110100 190 110100 0 6- 6- FREQUENCY (MHz)FREQUENCY (MHz) 86 286 0 02 Figure 19. AD8007 Second and Third Harmonic Distortion vs. Frequency and R Figure 22. AD8007 Second and Third Harmonic Distortion vs. Frequency and R L L –30–30VG = +2S = ±5VVVS = ±5V–40O = 2V p-p–40RRL = 150ΩL = 150ΩHD3, V–50HD2, G = +10–50O = 4V p-pc)c)BB –60HD2, VO = 4V p-pd –60d(HD3, G = +10(NNO –70–70TITIORRHD2, VO = 2V p-pTOTOS –80S –80DIDIHD3, G = +1–90–90HD2, G = +1–100–100HD3, VO = 2V p-p–110–110 0 110100110100 -02 -023 66 FREQUENCY (MHz) 66 FREQUENCY (MHz) 28 28 0 0 Figure 20. AD8007 Second and Third Harmonic Distortion vs. Frequency and Gain Figure 23. AD8007 Second and Third Harmonic Distortion vs. Frequency and VO Rev. E | Page 9 of 20 Document Outline FEATURES APPLICATIONS GENERAL DESCRIPTION CONNECTION DIAGRAMS TABLE OF CONTENTS REVISION HISTORY SPECIFICATIONS VS = ±5 V VS = 5 V ABSOLUTE MAXIMUM RATINGS MAXIMUM POWER DISSIPATION OUTPUT SHORT CIRCUIT ESD CAUTION TYPICAL PERFORMANCE CHARACTERISTICS THEORY OF OPERATION USING THE AD8007/AD8008 Supply Decoupling for Low Distortion LAYOUT CONSIDERATIONS LAYOUT AND GROUNDING CONSIDERATIONS GROUNDING INPUT CAPACITANCE OUTPUT CAPACITANCE INPUT-TO-OUTPUT COUPLING EXTERNAL COMPONENTS AND STABILITY OUTLINE DIMENSIONS ORDERING GUIDE