START450
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Npn silicon rf transistor. The START450 is a member of the START family that provide the state of the art of RF silicon process to the market. Manufacturated in
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START405 - NPN Silicon RF Transistor
(ST Microelectronics)
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START405
NPN Silicon RF Transistor
• LOW NOISE FIGURE: NFmin = 1.1dB @ 1.8GHz, 2mA, 2V • COMPRESSION P1dB = 5dBm @ 1.8GHz, 5mA, .
START420 - NPN Silicon RF Transistor
(ST Microelectronics)
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START420
NPN Silicon RF Transistor
• LOW NOISE FIGURE: NFmin = 1.05dB @ 1.8GHz, 5mA, 2V • COMPRESSION P1dB = 12.5dBm @ 1.8GHz, 2.
START499 - NPN Silicon RF Transistor
(ST Microelectronics)
..
START499
NPN Silicon RF Transistor
• HIGH EFFICIENCY • HIGH GAIN • LINEAR AND NON LINEAR OPERATION • TRANSITION FREQUENCY 42GHz .
START540 - NPN Silicon RF Transistor
(ST Microelectronics)
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START540
NPN Silicon RF Transistor
• LOW NOISE FIGURE: NFmin = 0.9dB @ 1.8GHz, 5mA, 2V • HIGH OUTPUT IP3 = 24dBm @ 1.8GHz, 20mA,.
START620 - NPN SiGe RF Transistor
(ST Microelectronics)
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START620
NPN SiGe RF Transistor
PRELIMINARY DATA
• LOW NOISE FIGURE: NFmin = 0.8dB @ 1.8GHz, 5mA, 2V • COMPRESSION P1dB = 13dBm .
STAR1000 - STAR1000 1M Pixel Radiation Hard CMOS Image Sensor
(Cypress Semiconductor)
STAR1000
STAR1000 1M Pixel Radiation Hard CMOS Image Sensor
Key Features
The STAR1000 sensor has the following characteristics: • Integrating 3-transi.
STAR405F10 - Laser Diode Module
(Roithner)
STAR405F10
Description
STAR405 series of Laser diode modules has been designed with emphasis on superior beam quality, high power stability, and rel.
STAR405F20 - Laser Diode Module
(Roithner)
STAR405F20
Description
STAR405 series of Laser diode modules has been designed with emphasis on superior beam quality, high power stability, and rel.
STAR405F5 - Laser Diode Module
(Roithner)
STAR405F5
Description
STAR405 series of Laser diode modules has been designed with emphasis on superior beam quality, high power stability, and reli.
STAR450F10 - Laser Diode Module
(Roithner)
STAR450F10
Description
STAR450 series of Laser diode modules has been designed with emphasis on superior beam quality, high power stability, and rel.