SGA-9189Z
SGA-9189Z is Medium Power Discrete SiGe Transistor manufactured by Sirenza Microdevices.
Description
Sirenza Microdevices’ SGA-9189 is a high performance transistor designed for operation to 3 GHz. With optimal matching at 2 GHz, OIP3=39 d Bm and P1d B=25.5 d Bm. This RF device is based on a Silicon Germanium Heterostructure Bipolar Transistor (Si Ge HBT) process. The SGA-9189 is cost-effective for applications requiring high linearity even at moderate biasing levels. It is well suited for operation at both 5V and 3V. 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.
SGA-9189 SGA-9189Z
Pb
Ro HS pliant & Green Package
Medium Power Discrete Si Ge Transistor
Product Features
Typical Gmax, OIP3, P1d B @ 5V,180m A
25 23 21 19 17 15 13 11 9 7 5
Gmax
OIP3, P1d B (d Bm)
OIP3
P1d B
44 42 40 38 36 34 32 30 28 26 24
Gmax (d B)
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Available in Ro HS pliant Green packaging 50-3000 MHz Operation 39 d Bm Ouput IP3 Typical at 1.96 GHz 12.2 d B Gain Typical at 1.96 GHz 25.5 d Bm P1d B Typical at 1.96 GHz 2.1 d B NF Typical at 0.9 GHz Cost Effective 3-5 V Operation
Applications
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- - Wireless Infrastructure Driver Amplifiers CATV Amplifiers Wireless Data, WLL Amplifiers AN-021 contains detailed application circuits
0.9 1.1 1.3 1.5 1.7 1.9 2.1 2.3 2.5
Frequency (GHz)
Symbol
D evice C haracteristics, T = 25ºC VCE = 5V, ICQ =180m A (unless otherw ise noted) Maxi mum Avai lable Gai n ZS=ZS- , ZL=ZL- Power Gai n ZS=ZSOPT, ZL=ZLOPT Output 1d B C ompressi on Poi nt ZS=ZSOPT, ZL=ZLOPT Output Thi rd Order Intercept Poi nt ZS=ZSOPT, ZL=ZLOPT, POUT= +10 d Bm per tone Noi se Fi gure ZS=ZSOPT, ZL=ZLOPT C ollector
- Emi tter Breakdown Voltage D C current gai n Thermal Resi stance (juncti on-to-lead) Operati ng Voltage (collector-to-emi tter) Operati ng C urrent
Test Frequency [1] 100% Tested [2] Sample Tested f = 900 MHz f = 1960 MHz...