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 PNP Silicon RF Transistor
q q
BFQ 75
For broadband amplifiers up to 2 GHz at collector currents from 5 mA to 30 mA. Complementary type: BFQ 72 (NPN).
ESD: Electrostatic discharge sensitive device, observe handling precautions! Type BFQ 75 Marking 75 Ordering Code (tape and reel) Q62702-F803 Pin Configuration 1 2 3 4 B E C E Package1) Cerec-X
Maximum Ratings Parameter Collector-emitter voltage Collector-emitter voltage, VBE = 0 Collector-base voltage Emitter-base voltage Collector current Total power dissipation, TS 112 C 3) Junction temperature Ambient temperature range Storage temperature range Thermal Resistance Junction - ambient 2) Junction - soldering point 3) Rth JA Rth JS

Symbol VCE0 VCES VCB0 VEB0 IC Ptot Tj TA Tstg
Values 12 1 15 2 50 350 175 - 65 ... + 175 - 65 ... + 175
Unit V
mA mW C
260 180
K/W
For detailed dimensions see chapter Package Outlines. Package mounted on alumina 15 mm x 16.7 mm x 0.7 mm. 3) TS is measured on the collector lead at the soldering point to the pcb.
1) 2)
BFQ 75
Electrical Characteristics at TA = 25 C, unless otherwise specified. Parameter Symbol min. DC Characteristics Collector-emitter breakdown voltage IC = 1 mA, IB = 0 Collector-base cutoff current VCB = 5 V, IE = 0 Emitter-base cutoff current VEB = 2 V, IC = 0 DC current gain IC = 30 mA, VCE = 5 V AC Characteristics Transition frequency IC = 30 mA, VCE = 5 V, f = 500 MHz Collector-base capacitance VCB = 10 V, VBE = vbe = 0, f = 1 MHz Input capacitance VEB = 0.5 V, IC = ic = 0, f = 1 MHz Output capacitance VCE = 10 V, VBE = vbe = 0, f = 1 MHz Noise figure IC = 10 mA, VCE = 8 V, f = 10 MHz, ZS = 50 IC = 10 mA, VCE = 8 V, f = 800 MHz, ZS = 50 Power gain IC = 30 mA, VCE = 8 V, f = 800 MHz, ZS = ZSopt, ZL = ZLopt fT Ccb Cibo Cobs F - - Gpe - 2.2 3 14 - - - - - - - 5 0.75 1.6 1.1 - - - - dB GHz pF V(BR)CE0 ICB0 IEB0 hFE 12 - - 20 - - - 50 - 50 10 - V nA
A
Values typ. max.
Unit
-
BFQ 75
Total power dissipation Ptot = f (TA*; TS) *Package mounted on alumina
Transition frequency fT = f (IC) VCE = 5 V, f = 500 MHz
Collector-base capacitance Ccb = f (VCB) VBE = vbe = 0, f = 1 MHz


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