Datasheet HMC263LP4E (Analog Devices) - 3

FabricanteAnalog Devices
DescripciónGaAs MMIC LOW NOISE AMPLIFIER, 24 - 36 GHz
Páginas / Página7 / 3 — HMC263LP4E. GaAs MMIC LOW NOISE. AMPLIFIER, 24 - 36 GHz. Noise Figure. …
Formato / tamaño de archivoPDF / 1.1 Mb
Idioma del documentoInglés

HMC263LP4E. GaAs MMIC LOW NOISE. AMPLIFIER, 24 - 36 GHz. Noise Figure. vs. Temperature @ Vdd = +3V. vs. Temperature @ Vdd = +5V

HMC263LP4E GaAs MMIC LOW NOISE AMPLIFIER, 24 - 36 GHz Noise Figure vs Temperature @ Vdd = +3V vs Temperature @ Vdd = +5V

Línea de modelo para esta hoja de datos

Versión de texto del documento

HMC263LP4E
v02.1017
GaAs MMIC LOW NOISE AMPLIFIER, 24 - 36 GHz Noise Figure Noise Figure vs. Temperature @ Vdd = +3V vs. Temperature @ Vdd = +5V
8 8 T +25 C +25 C m 6 +85 C 6 +85 C - 40 C - 40 C s ) B B (d 4 (d 4 e - F F N N is 2 2 o 0 0 w N 18 22 26 30 34 38 18 22 26 30 34 38 FREQUENCY (GHz) FREQUENCY (GHz) lo s -
Isolation @ Vdd = +3V Isolation @ Vdd = +5V
r 0 0 ie +25 C +25 C lif -20 +85 C -20 ) +85 C - 40 C ) B - 40 C B p d d ( N N m IO -40 IO T -40 T A A A L L O O IS IS -60 -60 -80 -80 18 22 26 30 34 38 18 22 26 30 34 38 FREQUENCY (GHz) FREQUENCY (GHz)
Output P1dB @ Vdd = +3V Output P1dB @ Vdd = +5V
16 16 12 12 ) m m (dB 8 (dB 8 1dB 1dB P P +25 C +25 C 4 +85 C 4 +85 C - 40 C - 40 C 0 0 18 22 26 30 34 38 18 22 26 30 34 38 FREQUENCY (GHz) FREQUENCY (GHz) 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
3
Application Support: Phone: 1-800-ANALOG-D Document Outline Typical Applications Features Functional Diagram General Description Electrical Specifications Output IP3 @ Vdd = +5V Output IP3 @ Vdd = +3V Psat @ Vdd = +5V Psat @ Vdd = +3V Output P1dB @ Vdd = +5V Isolation @ Vdd = +5V Isolation @ Vdd = +3V Noise Figure vs. Temperature @ Vdd = +5V Noise Figure vs. Temperature @ Vdd = +3V Output Return Loss @ Vdd = +5V Output Return Loss @ Vdd = +3V Input Return Loss @ Vdd = +5V Input Return Loss @ Vdd = +3V Gain vs. Temperature @ Vdd = +5V Gain vs. Temperature @ Vdd = +3V Output P1dB @ Vdd = +3V Absolute Maximum Ratings Outline Drawing Package Information Pin Description Application Circuit Evaluation PCB List of Materials