Document | DataSheet (36.45KB) |
Silicon VDMOS and LDMOS transistors designed specifically for broadband RF applications. Suitable for Militry Radios, Cellular and Paging Amplifier Base Stations, Broadcast FM/AM, MRI, Laser Driver and others. "Polyfet" process features low feedback and output capacitances resulting in high F t tran.
low feedback and output capacitances resulting in high F t transistors with high input impedance and high efficiency. TM SILICON GATE ENHANCEMENT MODE RF POWER VDMOS TRANSISTOR 40.0 Watts Single Ended Package Style AP HIGH EFFICIENCY, LINEAR HIGH GAIN, LOW NOISE o ABSOLUTE MAXIMUM RATINGS ( T = 25 C ) Total Device Dissipation 110 Watts Junction to Case Thermal Resistance o 1.40 C/W Maximum Junction Temperature o 200 C Storage Temperature o o -65 C to 150 C DC Drain Current Drain to Gate Voltage 70 V Drain to Source Voltage 70 V Gate to Source Voltage 20 V 6.5 A RF CHARACTERISTICS ( SYMBOL .
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SIPAT |
700MHz Low-loss SAW Filter 47MHz Bandwidth |
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Polyfet RF Devices |
SILICON GATE ENHANCEMENT MODE RF POWER VDMOS TRANSISTOR |
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Sipex |
Low Power Microprocessor Supervisory with Battery Switch-Over |
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Sipex |
Low Power Microprocessor Supervisory with Battery Switch-Over |
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Sipex |
Low Power Microprocessor Supervisory Circuits |
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Exar |
Low Power Microprocessor Supervisory Circuits |
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Sipex |
Low Power Microprocessor Supervisory Circuits |
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Exar |
Low Power Microprocessor Supervisory Circuits |
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Sipex |
+3.0V/+3.3V Low Power Microprocessor Supervisory Circuits |
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Sipex |
+3.0V/+3.3V Low Power Microprocessor Supervisory Circuits |
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Exar |
3.0V/3.3V Low Power Microprocessor Supervisory Circuits |
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Sipex |
+3.0V/+3.3V Low Power Microprocessor Supervisory Circuits |
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Exar |
3.0V/3.3V Low Power Microprocessor Supervisory Circuits |
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Sipex |
+3.0V/+3.3V Low Power Microprocessor Supervisory Circuits |
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Exar |
3.0V/3.3V Low Power Microprocessor Supervisory Circuits |
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