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    TGA4508 Search Results

    TGA4508 Datasheets (3)

    Part ECAD Model Manufacturer Description Curated Datasheet Type PDF
    TGA4508 TriQuint Semiconductor Ka Band LNA Original PDF
    TGA4508 TriQuint Semiconductor Ka Band Low Noise Amplifier Original PDF
    TGA4508-EPU TriQuint Semiconductor 37-42 GHz Low Noise Amplifier Original PDF

    TGA4508 Datasheets Context Search

    Catalog Datasheet MFG & Type Document Tags PDF

    TGA4508-EPU

    Abstract: No abstract text available
    Text: Advance Product Information February 19, 2003 Ka Band Low Noise Amplifier TGA4508-EPU Key Features • • • • • • • Preliminary Measured Data Primary Applications Bias Conditions: Vd = 3 V, Id = 40 mA Ga in & R etu rn L o ss d B 40 30 Gain 20


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    TGA4508-EPU TGA4508-EPU PDF

    TGA4508

    Abstract: 2005 ka
    Text: Advance Product Information July 19, 2005 Ka Band Low Noise Amplifier TGA4508 Key Features • • • • • • • Preliminary Measured Data Typical Frequency Range: 30 - 42 GHz 21 dB Nominal Gain 2.8 dB Nominal Noise Figure 14 dBm Nominal P1dB @ 38 GHz


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    TGA4508 0007-inch TGA4508 2005 ka PDF

    12dBm

    Abstract: Q102 TGA4508-EPU
    Text: Advance Product Information December 20, 2001 37-42 GHz Low Noise Amplifier TGA4508-EPU Key Features • • • • • • 0.15 um pHEMT Technology 12 dBm Nominal Pout 13.5 dB Nominal Gain 2.7 dB Noise Figure @ 39 GHz Bias 3.5V @ 55mA, -0.5V < Vg < +0.5V


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    TGA4508-EPU 115mm 676mm 0007-inch 12dBm Q102 TGA4508-EPU PDF

    Untitled

    Abstract: No abstract text available
    Text: TGA4508 Ka Band Low Noise Amplifier Key Features • • • • • • • Preliminary Measured Data Primary Applications Bias Conditions: Vd = 3 V, Id = 40 mA Ga in & R e tu rn L o ss d B 40 30 Gain 20 Typical Frequency Range: 30 - 42 GHz 21 dB Nominal Gain


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    TGA4508 0007-inch PDF

    TGA4508-EPU

    Abstract: No abstract text available
    Text: Advance Product Information December 4, 2003 Ka Band Low Noise Amplifier TGA4508-EPU Key Features • • • • • • • Preliminary Measured Data Typical Frequency Range: 30 - 42 GHz 21 dB Nominal Gain 2.8 dB Nominal Noise Figure 14 dBm Nominal P1dB @ 38 GHz


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    TGA4508-EPU 0007-inch TGA4508-EPU PDF

    TGA4508

    Abstract: No abstract text available
    Text: TGA4508 Ka Band Low Noise Amplifier Key Features • • • • • • • Preliminary Measured Data Primary Applications Bias Conditions: Vd = 3 V, Id = 40 mA Ga in & R e tu rn L o ss d B 40 30 Gain 20 Typical Frequency Range: 30 - 42 GHz 21 dB Nominal Gain


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    TGA4508 0007-inch TGA4508 PDF

    TGA2517

    Abstract: TQP6M9002 TQM653029 TGS4304 SG-O1-16 TGA2503 TAT7469 TGA9092-SCC 854651 AH125
    Text: 02/2010 Triquint SEMICONDUCTOR Product Selection Guide 2010 ABOUT TRIQUINT SEMICONDUCTOR ABOUT TRIQUINT SEMICONDUCTOR Corporate Headquarters – Hillsboro, Oregon Corporate Headquarters – Hillsboro, OR Semiconductor is Digital a leading TriQuint TriQuint


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    cus937 TGA2517 TQP6M9002 TQM653029 TGS4304 SG-O1-16 TGA2503 TAT7469 TGA9092-SCC 854651 AH125 PDF

    TGA2519-SG

    Abstract: HPA Ku TGF4350-EPU HPA41 ic 7435 TGC4401-EPU ku vsat amplifier TGA2512 price tga8658 TGA2519
    Text: Microwave / Millimeter Wave Products GaAs MMICs and Discretes for Broadband, Military and Space TriQuint Semiconductor Phone: +1-972-994-8465 Fax: +1-972-994-8504 E-mail: i n f o - s a l e s @ t q s . c o m


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    AsareavailableforkeybandsacrossDCto100GHz Alldevicesare100% 11GHzCut-OffFreq TGC1430F-EPU TGC1430G-EPU TGC4401-EPU TriQuintSemiconductor5/06 S11/S22 DC-20 DC-18 TGA2519-SG HPA Ku TGF4350-EPU HPA41 ic 7435 TGC4401-EPU ku vsat amplifier TGA2512 price tga8658 TGA2519 PDF

    TGA2517

    Abstract: TQP6M9002 TQM7M5013 TGA4943-SL CGB241 TQM6M4003 bt ag402 TGA4956-SM TQM6M4048 TGA9092-SCC
    Text: TABLE OF CONTENTS About TriQuint Semiconductor . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .3 Guide by Market Automotive . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .4


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    TG2H214220-FL

    Abstract: TGA2572 TGA2573 lte transceiver TGA2540-FL TQM963014 TGA2517 TQM6M9069 TQP6M9002 TQM7M5013
    Text: Product Selection Guide Choose TriQuint’s Innovative RF Solutions Connecting the Digital World to the Global Network Welcome to Our Product Selection Guide Table of Contents About TriQuint Semiconductor.3 Guide by Market Automotive. 4


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    TGA4508-EPU

    Abstract: TGA4514-EPU
    Text: Advance Product Information April 28, 2003 Ka Band 2W Power Amplifier TGA4514-EPU Key Features • • • • • • • • Preliminary Measured Data Gain & Return Loss dB Primary Applications Bias Conditions: Vd = 6 V, Id = 1150 mA 30 20 GAIN 10 Typical Frequency Range: 31 - 35 GHz


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    TGA4514-EPU 31dBc 22dBm TGA4508-EPU TGA4514-EPU PDF

    ka band lna

    Abstract: TGA4820-EPU ka band Limiter HPA Ku diode 142 19C ka Band LNA, mixer TGB2001-EPU HPA-40 ka band power fet ka band space lna
    Text: Microwave / Millimeter Wave Products GaAs MMICs for Broadband, Military and Space TriQuint Semiconductor Phone: +1-972-994-8465 Fax: +1-972-994-8504 E-mail: info-mmw@tqs.com Web: www.triquint.com TriQuint uses proven 0.25µm power pHEMT and 0.15µm LN processes to design MMICs for


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    TGA2517

    Abstract: TGA2540-FL TGA2573 TQM7M5013 TQP6M9002 tga2540 tqp340003 TQM726018 QFN28 6x6 TQM679002A
    Text: May 2010 Product Selection Guide Amplifiers Control Products Filters Integrated Products Optical Components Connecting the Digital World to the Global Network Table of Contents ABOUT TRIQUINT SEMICONDUCTOR .2 GUIDE BY MARKET Automotive . 4


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    Mil-Std-883 Wire Bond Pull Method 2011

    Abstract: MIL-STD-883 Method 2010 pHEMT transistor RF MESFET S parameters MESFET 0.15 phemt p-hemt TGA8310 MIL-STD-883 method 2011 GaAs 0.15 pHEMT
    Text: GaAs MMIC Space Qualification GaAs MMIC Testing TriQuint Semiconductor has advanced Lot Acceptance Testing LAT for High Reliability Applications of GaAs MMICs. A flowchart depicting the entire MMIC processing flow, including the Quality Conformance Inspection


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