0.01 GHz to 10 GHz, MMIC, GaAs, pHEMT RF Gain Block
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12 /8 — HMC788A. Data Sheet. –80. PAE. –90. GAIN (dBm). OUT (dBm). –100. Bc/ d …
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D
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PDF / 292 Kb
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HMC788A. Data Sheet. –80. PAE. –90. GAIN (dBm). OUT (dBm). –100. Bc/ d –110. ( E. , AND P. IS –120. B) d. E –130. N ( AI. HAS –140. , G. Bm). IV –150. –160
HMC788AData Sheet30–80PAE–90GAIN (dBm)%)25P)(OUT (dBm)–100HzAEBc/ d –11020( E, AND PIS –120B) dNO15E –130N ( AIHAS –140, GP10EBm)IV –150dT(UT–160O5ADDIP–1700–180024681012 015 1001k10k100k1M 017 INPUT POWER (dBm) 16204- OFFSET FREQUENCY (Hz) 16204- Figure 15. POUT, Gain, and PAE vs. Input Power at 10 GHz Figure 17. Additive Phase Noise vs. Offset Frequency; RF Frequency = 5 GHz, RF Input Power = 6 dBm (P1dB) 40Bm) d 3 ( P30IP3, AND IP1dBBm)GAINd B ( 1d20, P B) d N ( AI G104.55.05.5 016 SUPPLY VOLTAGE (V) 16204- Figure 16. Gain, P1dB, and IP3 vs. Supply Voltage at 1 GHz Rev. D | Page 8 of 12 Document Outline FEATURES APPLICATIONS FUNCTIONAL BLOCK DIAGRAM GENERAL DESCRIPTION REVISION HISTORY SPECIFICATIONS ELECTRICAL SPECIFICATIONS ABSOLUTE MAXIMUM RATINGS THERMAL RESISTANCE ESD CAUTION PIN CONFIGURATION AND FUNCTION DESCRIPTIONS INTERFACE SCHEMATICS TYPICAL PERFORMANCE CHARACTERISTICS THEORY OF OPERATION BASIC CONNECTIONS APPLICATIONS INFORMATION EVALUATION PCB OUTLINE DIMENSIONS ORDERING GUIDE