• Part: SGA-6586Z
  • Description: Cascadable SiGe HBT MMIC Amplifier
  • Manufacturer: Sirenza Microdevices
  • Size: 92.24 KB
Download SGA-6586Z Datasheet PDF
Sirenza Microdevices
SGA-6586Z
SGA-6586Z is Cascadable SiGe HBT MMIC Amplifier manufactured by Sirenza Microdevices.
Description The SGA-6586 is a high performance Si Ge HBT MMIC Amplifier. A Darlington configuration featuring 1 micron emitters provides high F T and excellent thermal perfomance. The heterojunction increases breakdown voltage and minimizes leakage current between junctions. Cancellation of emitter junction non-linearities results in higher suppression of intermodulation products. Only 2 DC-blocking capacitors, a bias resistor and an optional RF choke are required for operation. The matte tin finish on Sirenza’s lead-free package utilizes a post annealing process to mitigate tin whisker formation and is Ro HS pliant per EU Directive 2002/ 95. This package is also manufactured with green molding pounds that contain no antimony trioxide nor halogenated fire retardants. Gain & Return Loss vs. Freq. @TL=+25°C GAIN SGA-6586 SGA-6586Z Pb Ro HS pliant & Green Package DC-4000 MHz, Cascadable Si Ge HBT MMIC Amplifier Product Features - Now available in Lead Free, Ro HS pliant, & Green Packaging - High Gain : 18.4 d B at 1950 MHz - Cascadable 50 Ohm - Operates From Single Supply - Low Thermal Resistance Package -10 IRL ORL Return Loss (d B) Gain (d B) Applications - - - - PA Driver Amplifier Cellular, PCS, GSM, UMTS IF Amplifier Wireless Data, Satellite -20 8 0 0 1 2 3 Frequency (GHz) 4 5 -30 -40 Symbol G Parameter Small Si gnal Gai n U nits d B d B d B d B m d B m d B m d B m MHz d B d B d B V m A °C /W Frequency 850 MHz 1950 MHz 2400 MHz 850 MHz 1950 MHz 850 MHz 1950 MHz Min. Typ. 23.8 18.4 16.7 21.5 19.0 33.8 32.2 2500 Max. P 1d B OIP3 Output Power at 1d B C ompressi on Output Thi rd Order Intercept Poi nt Bandwi dth D etermi ned by Return Loss (>10d B) IRL ORL NF VD ID RTH, j-l Input Return Loss Output Return Loss Noi se Fi gure D evi ce Operati ng Voltage D evi ce Operati ng C urrent Thermal Resi stance (juncti on to...