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2N5245 HIGH-FREQUENCY AMPLIFIER JFET

2N5245

2N5245
2N5245 2N5245
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Part Number 2N5245
Manufacturer Motorola
Description MAXIMUM RATINGS Rating Drain-Gate Voltage Gate-Source Voltage Gate Current @Total Device Dissipation TA = 25°C Derate above 25°C (Free Air) @Total Device Dissipation Tq = 25°C Derate above 25°C Lead Temperature (1/16" from Case for 10 Seconds) Storage Temperature Range Symbol VDG Vgs IQ PD Pd tl Tstg Value 30 -30 50 360 2.88 500 4.0 260 - 65 to + 1 50 Uni.
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Datasheet Datasheet 2N5245 Data Sheet
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2N5245

Fairchild Semiconductor
2N5245
Part Number 2N5245
Manufacturer Fairchild Semiconductor
Title N-Channel RF Amplifier
Description 2N5245 2N5245 N-Channel RF Amplifier • This device is designed for HF/VHF mixer/amplifier and applications where process 50is not adequate. Sufficient gain and low noise for sensitive receivers. • Sourced from process 90. TO-92 1 1. Gate 2. Source 3. Drain Absolute Maximum Ratings* Ta=25°C unless.
Features = 25V, VDS = 0 VDS = 15V, ID = 1.0nA VDS = 15V, VGS = 0 VGS = 0V, VDS = 15V, f = 1.0kHz VGS = 0V, VDS = 15V, f = 1.0kHz -1.0 5 4500 Min. -30 -1.0 -0.6 15 11000 50 Max. Units V nA V mA µmhos µmhos Gate-Source Breakdwon Voltage Gate Reverse Current Gate-Source Cutoff Voltage Zero-Gate Voltage Drain Current * Forward Transferconductance Common- Source Output Conductance On Characteristics Small Sign.


2N5245

National Semiconductor
2N5245
Part Number 2N5245
Manufacturer National Semiconductor
Title N-Channel JFETs
Description The 2N5245 thru 2N5247 series of N-channel JFETs is designed for common-source or common-gate VHF/UHF amplifier, mixer and oscillator applications to 400 MHz. Absolute Maximum Ratings Drain-Gate Voltage Source Gate Voltage Drain Current Forward Gate Current Total Device Dissipation 25°C (Dera.
Features ation Drain Current Common-Source Forward Transconductance Common-Source Output 9os Conductance Re Wfs> Common-Source Forward Transconductance Re (Vos) Common-Source Output Conductance Re lvisl Qss Common-Source Input Conductance Common-Source Input Capacitance Grss Common-Source Reverse Transfer Capacitance Noise Figure Common-Source Power G ps Gain VGS = -20V, Vqs= IG=- IMA, V DS =.


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