HMC6981LS6 v03.1018 GaAs pHEMT MMIC 2 WATTPOWER AMPLIFIER, 15 - 20 GHzAbsolute Maximum RatingsTypical Supply Current vs. Vdd Drain Bias Voltage (Vdd) +6.5 Vdc Vdd (V) idd (mA) T Gate Bias Voltage (Vgg) -3 to 0 Vdc +5 1100 m rf input power (rfin) +18 dBm +5.5 1100 s Channel Temperature 175 °C +6 1100 Continuous pdiss (T = 85 °C) r - 11.7 w (derate 129 mw/°C above 85 °C) Adjust Vgg to achieve idd = 1100 mA e Thermal resistance w 7.7 °C/w (channel to ground paddle) o storage Temperature -65 to 150 °C eleCTrosTATiC sensiTiVe DeViCe p operating Temperature -40 to 85 °C oBserVe HAnDlinG preCAUTions esD sensitivity (HBm) Class 0, passed 150V r & 16-Terminal Ceramic Leadless Chip Carrier with Heat Sink [LCC_HS] A (EP-16-2)Outline DrawingDimensions shown in millimeters. e 3.45 lin 6.201.650.316.00 SQ0.250.35 s - 5.80PIN 10.19INDICATOR0.801.05 r 12161.00 BSC ie 1113.462.063.402.00 lif 3.553.341.94SQ p 93 m 0.56840.50 A TOP VIEWBOTTOM VIEW0.900.440.631.4441.210.57SIDE VIEW1.3171.150.511.1901.094.704.65FOR PROPER CONNECTION OF0.44 BSC0.50 MAX4.60THE EXPOSED PAD, REFER TOCOPLANARITYTHE PIN CONFIGURATION AND0.08FUNCTION DESCRIPTIONSSECTION OF THIS DATA SHEET.PKG-00490305-19-2017-C 16-Terminal Ceramic leadless Chip Carrier with Heat sink [lCC_Hs] (ep-16-2) Dimensions shown in mil imeters. Package Information part number package Body material lead finish msl rating [2] package marking [1] H6981 HmC6981ls6 AlUminA wHiTe Gold over nickel n/A XXXX [1] 4-Digit lot number XXXX [2] max peak reflow temperature of 260 °C For price, delivery, and to place orders: Analog Devices, Inc., One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106 Phone: 781-329-4700 • Order online at www.analog.com 7 Application Support: Phone: 1-800-ANALOG-D Document Outline Typical Applications Features Functional Diagram General Description Electrical Specifications Performance Characteristics Gain & Return Loss Gain vs. Temperature Input Return Loss vs. Temperature Output Return Loss vs. Temperature Noise Figure vs. Frequency P1dB vs. Temperature Psat vs. Temperature P1dB vs. Vdd Psat vs. Vdd Power Compression @ 4 GHz Power Compression @ 10 GHz Power Compression @ 20 GHz Power Dissipation Second Harmonics vs. Temperature @ Pout = 18 dBm Second Harmonics vs. Vdd @ Pout = 18 dBm Second Harmonics vs. Pout Reverse Isolation vs Temperature Absolute Maximum Ratings Typical Supply Current vs. Vdd Outline Drawing Die Packaging Information Pad Descriptions Assembly Diagram Application Circuit