HMC994APM5E v04.0218 GaAs pHEMT MMICPOWER AMPLIFIER, DC - 28 GHzGain & Return LossLow Frequency Gain & Return Loss 20 20 15 15 10 10 T B) 5 B) 5 (d (d m SE 0 SE 0 N N s -5 -5 ESPO ESPO R -10 R -10 -15 -15 r - -20 -20 e -25 -25 w 0 5 10 15 20 25 30 0.0001 0.001 0.01 0.1 1 FREQUENCY (GHz) FREQUENCY (GHz) o p S21 S11 S22 S21 S11 S22 r & A Gain vs. TemperatureGain vs. Vdd e 18 18 16 16 lin 14 ) 14 B ) d B ( d 12 ( s - IN 12 IN GA GA r 10 10 ie 8 8 6 6 lif 0 5 10 15 20 25 30 0 5 10 15 20 25 30 p FREQUENCY (GHz) FREQUENCY (GHz) +8V +10V m +25 C +85 C -40 C +9V +11V A Gain vs. IddInput Return Loss vs. Temperature 18 0 16 -5 ) B 14 (d ) S B -10 d S ( O 12 L IN N GA -15 UR 10 T RE -20 8 6 -25 0 5 10 15 20 25 30 0 5 10 15 20 25 30 FREQUENCY (GHz) FREQUENCY (GHz) 175mA 225mA 200mA 250mA +25 C +85 C -40 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 Application Support: Phone: 1-800-ANALOG-D 2 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 Output IP3 vs. Temperature @ Pout = 18 dBm Tone Power Compression @ 10 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