HMC8415LP6GEData SheetTYPICAL PERFORMANCE CHARACTERISTICS4040–40°C +25°C +85°C3035B)20d)30BN (SMALL SIGNAL GAINAI10OUTPUT RETURN LOSSGSE (dINPUT RETURN LOSSLNA250IGNESPOS LRL20–10SMA15–20–3010 1 1 8.59.09.510.010.511.0 008 8.59.09.510.010.511.0 0 FREQUENCY (GHz) 16688- FREQUENCY (GHz) 16688- Figure 8. Small Signal Gain and Return Loss (Response) vs. Frequency Figure 11. Small Signal Gain vs. Frequency at Various Temperatures 00–40°C +25°C +85°C–5–5B)B)dd((SS –10SSOO–10–15URN LURN LTTRE –15RE–20UTUTPINPUT O –20–25–40°C +25°C +85°C–30–258.59.09.510.010.511.0 009 8.59.09.510.010.511.0 012 FREQUENCY (GHz) 16688- FREQUENCY (GHz) 16688- Figure 9. Input Return Loss vs. Frequency at Various Temperatures Figure 12. Output Return Loss vs. Frequency at Various Temperatures 404024V1000mA28V500mA32V200mA3535B)B)dd30N (30N (AIAIGGLLA25A25IGNIGNSSLLL20L20SMASMA151510108.59.09.510.010.511.0 010 8.59.09.510.010.511.0 013 FREQUENCY (GHz) 16688- FREQUENCY (GHz) 16688- Figure 10. Small Signal Gain vs. Frequency at Various Supply Voltages at Figure 13. Small Signal Gain vs. Frequency at Various Quiescent Currents at IDQ = 1000 mA VDDxA/VDDxB = 28 V Rev. A | Page 8 of 23 Document Outline FEATURES APPLICATIONS FUNCTIONAL BLOCK DIAGRAM GENERAL DESCRIPTION REVISION HISTORY SPECIFICATIONS ELECTRICAL SPECIFICATIONS TOTAL TARGET QUIESCENT CURRENT BY VDDxA/VDDxB ABSOLUTE MAXIMUM RATINGS THERMAL RESISTANCE ESD CAUTION PIN CONFIGURATION AND FUNCTION DESCRIPTIONS INTERFACE SCHEMATICS TYPICAL PERFORMANCE CHARACTERISTICS THEORY OF OPERATION APPLICATIONS INFORMATION TYPICAL APPLICATION CIRCUIT AND PULSOR CIRCUIT USING THE EV1HMC8415LP6G WITH THE DRAIN BIAS PULS0R BOARD RECOMMENDED BIAS SEQUENCE Power-Up Bias Concept for the EV1HMC8415LP6G with the Pulsor Power-Down Bias Concept for the EV1HMC8415LP6G with the Pulsor MAKING AVERAGE TO PULSED APPROXIMATIONS EVALUATION PCB BILL OF MATERIALS OUTLINE DIMENSIONS ORDERING GUIDE