Data SheetADL53304030OIP3 (–40°C)3020201010OIP3 (+85°C)0OIP3 (–40°C)OP1dB (–40°C)0 OIP3 (+25°C)–10OIP3 (+85°C)–10OP1dB (+85°C)–20 OIP3 (+25°C)–20OP1dB (+85°C)OIP3, OP1dB (dBm)OIP3, OP1dB (dBm) –30–30–40–40OP1dB (+25°C)OP1dB (–40°C)OP1dB (+25°C)–50–5000.20.40.60.81.01.21.400.20.40.60.81.01.21.4VVGAIN (V) 05134-015 GAIN (V) 05134-018 Figure 15. OP1dB and OIP3 vs. Gain over Temperature at 100 MHz Figure 18. OP1dB and OIP3 vs. Gain over Temperature at 2200 MH z 4020OIP3 (+85°C)301020010OIP3 (+85°C)OIP3 (–40°C)–100OIP3 (+25°C)OIP3 (+25°C)OP1dB (+25°C)–20–10OP1dB (+25°C)OIP3 (–40°C)OP1dB (–40°C)OIP3, OP1dB (dBm)OIP3, OP1dB (dBm) –30–20OP1dB (+85°C)–30–40OP1dB (–40°C)OP1dB (+85°C)–40–5000.20.40.60.81.01.21.400.20.40.60.81.01.21.4VGAIN (V) 05134-016 VGAIN (V) 05134-019 Figure 16. OP1dB and OIP3 vs. Gain over Temperature at 450 MHz Figure 19. OP1dB and OIP3 vs. Gain over Temperature at 2700 MHz 40250OP1dB (+25°C) OIP3 (–40°C)30OIP3 (+85°C)2002010TEMP = +85°COIP3 (+25°C)150 TEMP = +25°C0(mA)TEMP = –40°C–10100OP1dB (+85°C)I SUPPLYOIP3, OP1dB (dBm) –2050–30OP1dB (–40°C)–40000.20.40.60.81.01.21.400.20.40.60.81.01.21.4VGAIN (V) 05134-017 VGAIN (V) 05134-020 Figure 17. OP1dB and OIP3 vs. Gain over Temperature at 900 MHz Figure 20. Supply Current vs. VGAIN and Temperature Rev. B | Page 9 of 24 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 APPLICATIONS INFORMATION BASIC CONNECTIONS RF INPUT/OUTPUT INTERFACE GAIN CONTROL INPUT AUTOMATIC GAIN CONTROL INTERFACING TO AN IQ MODULATOR WCDMA TRANSMIT APPLICATION CDMA2000 TRANSMIT APPLICATION SOLDERING INFORMATION EVALUATION BOARD OUTLINE DIMENSIONS ORDERING GUIDE