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    HMC278MS8G Search Results

    HMC278MS8G Datasheets (1)

    Part ECAD Model Manufacturer Description Curated Datasheet Type PDF
    HMC278MS8G Hittite Microwave 100 mW MEDIUM POWER GaAs IC AMPLIFIER 1.7 - 3.0 GHz Original PDF

    HMC278MS8G Datasheets Context Search

    Catalog Datasheet MFG & Type Document Tags PDF

    HMC278MS8G

    Abstract: HMC309MS8
    Text: HMC278MS8G MICROWAVE CORPORATION 100 mW MEDIUM POWER GaAs IC AMPLIFIER 1.7 - 3.0 GHz V01.1200 FEBRUARY 2001 Features General Description P1dB OUTPUT POWER: + 20 dBm SINGLE SUPPLY: +3V to +5V ULTRA SMALL 8 LEAD MSOP PACKAGE IDEAL FOR PCS/3G, MMDS, HomeRF, & BLUETOOTH


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    HMC278MS8G HMC278MS8G 100mW HMC309MS8 PDF

    Untitled

    Abstract: No abstract text available
    Text: HMC278MS8G v02.1201 MICROWAVE CORPORATION 100 mW MEDIUM POWER GaAs MMIC AMPLIFIER, 1.7 - 3.0 GHz AMPLIFIERS - SMT 1 Typical Applications Features The HMC278MS8G is ideal for: P1dB Output Power: +20 dBm • PCS/3G & WLAN Single Supply: +3V to +5V • MMDS & ISM Radios


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    HMC278MS8G HMC278MS8G 100mW PDF

    103600

    Abstract: No abstract text available
    Text: HMC278MS8G v02.1201 D E U N I T N O T C C S U I D D O PR MICROWAVE CORPORATION 100 mW MEDIUM POWER GaAs MMIC AMPLIFIER, 1.7 - 3.0 GHz AMPLIFIERS - SMT 1 Typical Applications Features The HMC278MS8G is ideal for: P1dB Output Power: +20 dBm • PCS/3G & WLAN


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    HMC278MS8G HMC278MS8G 100mW 103600 PDF

    ic amplifier

    Abstract: No abstract text available
    Text: y2 k n ew ! HMC278MS8G MICROWAVE CORPORATION 100 mW MEDIUM POWER GaAs IC AMPLIFIER 1.7 - 3.0 GHz V00.0600 JUNE 2000 Features General Description P1dB OUTPUT POWER: + 20 dBm SINGLE SUPPLY: +3V to +5V ULTRA SMALL 8 LEAD MSOP PACKAGE IDEAL FOR PCS/3G, MMDS, HomeRF,


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    HMC278MS8G HMC278MS8G 100mW 16dBm. ic amplifier PDF

    HMC307

    Abstract: HMC304MS8 prestigio c885 HMC230MS8 HMC273MS10G HMC278MS8G HMC288MS8 HMC290 HMC291
    Text: OFF-THE-SHELF HITTITE MICROWAVE CORPORATION SUMMER 2000 Broadband DC to 4 GHz Digital Attenuators Offer Low Bit Error Control of signal strength while maintaining signal integrity in the transmit and receive paths of wireless systems has always been a concern of RF design


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