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    BROADBAND AMPLIFIERS APPLICATION NOTES Search Results

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    BROADBAND AMPLIFIERS APPLICATION NOTES Datasheets Context Search

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    rogers corp

    Abstract: AN0010
    Text: AN0010 13 AN0010 Evaluation Board Assembly Biasing Configuration Evaluation Board Assembly Biasing Configuration Introduction This application note provides information on the evaluation board assembly supplied by RFMD. This information covers NBB Series HBT Broadband Feedback Amplifiers and NDA Series HBT Distributed Amplifiers.


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    PDF AN0010 20mil rogers corp AN0010

    Stackpole 57-9322-11

    Abstract: EB-27 motorola 2N6368 ecom-2989 Granberg Design of H. F. Wideband Power Transformers AN593 Broadband Linear Power Amplifiers Using Push-Pull Transistors EB-32 complementary symmetry amplifier Indiana general ferrite core 2N6367
    Text: Order this document by AN593/D MOTOROLA SEMICONDUCTOR 33333 APPLICATION NOTE AN593 BROADBAND LINEAR POWER AMPLIFIERS USING PUSH-PULL TRANSISTORS Prepared by: Helge Granberg RF Circuits Engineering INTRODUCTION Linear power amplifier operation, as used in SSB


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    PDF AN593/D AN593 Stackpole 57-9322-11 EB-27 motorola 2N6368 ecom-2989 Granberg Design of H. F. Wideband Power Transformers AN593 Broadband Linear Power Amplifiers Using Push-Pull Transistors EB-32 complementary symmetry amplifier Indiana general ferrite core 2N6367

    NBB-500

    Abstract: NDA-412 AN0013 NBB300 NBB-300 NBB-302 NBB-400 NBB-502 NDA-212 NDA-312
    Text: AN0013 15 AN0013 NBB Series and NDA Series Reliability NBB Series and NDA Series Reliability This application note provides additional information on component reliability with varying device junction temperature, and the effect of the package used on junction temperature. This information is provided for the NBB Series HBT Broadband Feedback Amplifiers and NDA Series HBT Distributed Amplifiers.


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    PDF AN0013 NBB-500 NDA-412 AN0013 NBB300 NBB-300 NBB-302 NBB-400 NBB-502 NDA-212 NDA-312

    def stan 80-161

    Abstract: 115v 400Hz 115v 400Hz output Datasheet 11600 Traveling Wave Amplifier TWTA small signal GaAs FET MLA2470-703 amplifier 115v 400Hz output 80161
    Text: Broadband GaAs FET Power Amplifier for TWTA Replacement — 8.0 to 18.0 GHz MLA2470-703 V 1.00 Outline Drawing Features Direct TWTA Replacement Integral Power Supply Solid State Design High Reliability Qualified for Airborne Application Description This series of amplifiers has been developed


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    PDF MLA2470-703 400Hz def stan 80-161 115v 400Hz 115v 400Hz output Datasheet 11600 Traveling Wave Amplifier TWTA small signal GaAs FET MLA2470-703 amplifier 115v 400Hz output 80161

    115v 400Hz

    Abstract: 115v 400Hz output def stan 80-161 amplifier 115v 400Hz output small signal GaAs FET MLA2440-603
    Text: Broadband GaAs FET Power Amplifier for TWTA Replacement — 4.0 to 8.0 GHz MLA2440-603 V 1.00 Outline Drawing Features Direct TWTA Replacement Integral Power Supply Solid State Design High Reliability Qualified for Airborne Application Description This series of amplifiers has been developed


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    PDF MLA2440-603 400Hz 115v 400Hz 115v 400Hz output def stan 80-161 amplifier 115v 400Hz output small signal GaAs FET MLA2440-603

    Untitled

    Abstract: No abstract text available
    Text: Broadband GaAs FET Power Amplifier for TWTA Replacement — 8.0 to 18.0 GHz MLA2470-703 V 1.00 Outline Drawing Features Direct TWTA Replacement Integral Power Supply Solid State Design High Reliability Qualified for Airborne Application Description This series of amplifiers has been developed


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    PDF MLA2470-703 400Hz

    AN-S011

    Abstract: amplifier circuit diagrams msa-0520 AN-S013 AN-S001 Basic MODAMP MMIC Circuit Techniques ANS011
    Text: Applications The application notes represented by these abstracts are available from your local Hewlett-Packard sales office or nearest HewlettPackard authorized distributor or representative. Technical information is also available on the WWW at: www.hp.com/go/rf


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    PDF AN-S001 5091-9312E AN-S004 MSA-0235 MSA-0335 5091-7614E AN-S007 MSA-0520 MSA-1023 AN-S011 amplifier circuit diagrams AN-S013 AN-S001 Basic MODAMP MMIC Circuit Techniques ANS011

    MAX2172

    Abstract: MAX2550 MAX5879 MAX2169 MAX2135A MAX2136 sdars radio tuner max2547 433MHZ amplifier 1w MAX2850
    Text: Maxim > Design Support > App Notes > Wireless and RF > APP 5100 Keywords: layout, pcb, mixed signal, rf pcb, board design, board layout, wireless, printed circuit board, stripline, transmission line APPLICATION NOTE 5100 Sep 14, 2011 General Layout Guidelines for RF and Mixed-Signal PCBs


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    PDF 1700MHz 2200MHz com/an5100 AN5100, APP5100, Appnote5100, MAX2172 MAX2550 MAX5879 MAX2169 MAX2135A MAX2136 sdars radio tuner max2547 433MHZ amplifier 1w MAX2850

    AN-S002

    Abstract: AN-S013 5091 AN-S001 MGA-64135 GaAS MMIC Assembly and Handling Guidelines MSA1104 msa-0520 POWER AMPLIFIERS CIRCUIT DIAGRAMS TRANSIMPEDANCE mmic
    Text: Applications The application notes represented by these abstracts are available from your local Hewlett-Packard sales office or nearest HewlettPackard authorized distributor or representative. Technical information is also available on the WWW at: www.hp.com/go/rf


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    PDF AN-G006 MGA-64135 5091-3745E70 5091-9313E AN-S009 5091-9054E AN-S010 5966-0453E AN-S014 AN-S002 AN-S013 5091 AN-S001 GaAS MMIC Assembly and Handling Guidelines MSA1104 msa-0520 POWER AMPLIFIERS CIRCUIT DIAGRAMS TRANSIMPEDANCE mmic

    Calculate Oscillator Jitter By Using Phase-Noise

    Abstract: Boris Drakhlis 2n 3631 an363 AN3631 APP3631
    Text: Maxim > App Notes > WIRELESS, RF, AND CABLE Keywords: random noise, jitter, timing jitter, rms noise, phase noise, rms phase noise Sep 25, 2005 APPLICATION NOTE 3631 Random Noise Contribution to Timing Jitter—Theory and Practice Abstract: Numerous factors affect random timing jitter, including noise sources such as phase noise, broadband noise, and


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    PDF com/an3631 AN3631, APP3631, Appnote3631, Calculate Oscillator Jitter By Using Phase-Noise Boris Drakhlis 2n 3631 an363 AN3631 APP3631

    Untitled

    Abstract: No abstract text available
    Text: HMC990LP4E v00.0312 MIXERS - SMT BROADBAND HIGH IP3 DUAL CHANNEL DOWNCONVERTER, 0.7 - 3.5 GHz Typical Applications Features The HMC990LP4E is Ideal for: Broadband Operation with no external matching • Multiband/Multi-standard Cellular BTS Diversity Receivers


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    PDF HMC990LP4E HMC990LP4E

    Untitled

    Abstract: No abstract text available
    Text: HMC990LP4E v05.1113 MIXERS - SMT BROADBAND HIGH IP3 DUAL CHANNEL DOWNCONVERTER, 0.7 - 3.5 GHz Typical Applications Features The HMC990LP4E is Ideal for: Broadband Operation with no external matching • Multiband/Multi-standard Cellular BTS Diversity Receivers


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    PDF HMC990LP4E HMC990LP4E

    Untitled

    Abstract: No abstract text available
    Text: HMC990LP4E v04.0113 MIXERS - SMT BROADBAND HIGH IP3 DUAL CHANNEL DOWNCONVERTER, 0.7 - 3.5 GHz Typical Applications Features The HMC990LP4E is Ideal for: Broadband Operation with no external matching • Multiband/Multi-standard Cellular BTS Diversity Receivers


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    PDF HMC990LP4E HMC990LP4E 700MHz.

    Untitled

    Abstract: No abstract text available
    Text: HMC990LP4E v04.0113 Mixers - SMT BROADBAND HIGH IP3 DUAL CHANNEL DOWNCONVERTER, 0.7 - 3.5 GHz Typical Applications Features The HMC990LP4E is Ideal for: Broadband Operation with no external matching • Multiband/Multi-standard Cellular BTS Diversity Receivers


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    PDF HMC990LP4E HMC990LP4E

    Untitled

    Abstract: No abstract text available
    Text: HMC990LP4E v01.0712 MIXERS - SMT BROADBAND HIGH IP3 DUAL CHANNEL DOWNCONVERTER, 0.7 - 3.5 GHz Typical Applications Features The HMC990LP4E is Ideal for: Broadband Operation with no external matching • Multiband/Multi-standard Cellular BTS Diversity Receivers


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    PDF HMC990LP4E HMC990LP4E

    Untitled

    Abstract: No abstract text available
    Text: HMC990LP4E v02.1212 Mixers - SMT BROADBAND HIGH IP3 DUAL CHANNEL DOWNCONVERTER, 0.7 - 3.5 GHz Typical Applications Features The HMC990LP4E is Ideal for: Broadband Operation with no external matching • Multiband/Multi-standard Cellular BTS Diversity Receivers


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    PDF HMC990LP4E HMC990LP4E 700MHz.

    Untitled

    Abstract: No abstract text available
    Text: HMC990LP4E v01.0712 MIXERS - SMT BROADBAND HIGH IP3 DUAL CHANNEL DOWNCONVERTER, 0.7 - 3.5 GHz Typical Applications Features The HMC990LP4E is Ideal for: Broadband Operation with no external matching • Multiband/Multi-standard Cellular BTS Diversity Receivers


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    PDF HMC990LP4E HMC990LP4E

    Untitled

    Abstract: No abstract text available
    Text: HMC990LP4E v06.0114 MIXERS - SMT BROADBAND HIGH IP3 DUAL CHANNEL DOWNCONVERTER, 0.7 - 3.5 GHz Typical Applications Features The HMC990LP4E is Ideal for: Broadband Operation with no external matching • Multiband/Multi-standard Cellular BTS Diversity Receivers


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    PDF HMC990LP4E HMC990LP4E

    4558 lowpass filter CIRCUIT DIAGRAM

    Abstract: oscillator circuit with op amp 4558 j1708 to RS232 converter an4993 MAX6749 RS-422 to spi converter DS1666 DS1669 Digital Pot IC IC 4558 CIRCUIT DIAGRAM ic 4558 low pass filter diagram
    Text: Maxim > App Notes > A/D and D/A Conversion/Sampling Circuits Amplifier and Comparator Circuits Analog Switches and Multiplexers ASICs Audio Circuits Circuit Protection Communications Circuits Digital Potentiometers Filter Circuits Analog General Engineering Topics High-Speed Signal Processing Interface Circuits Miscellaneous Circuits Protection and Isolation


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    PDF 10-Bit MAX9207 MAX9208 REF01 REF02 com/an4993 AN4993, APP4993, 4558 lowpass filter CIRCUIT DIAGRAM oscillator circuit with op amp 4558 j1708 to RS232 converter an4993 MAX6749 RS-422 to spi converter DS1666 DS1669 Digital Pot IC IC 4558 CIRCUIT DIAGRAM ic 4558 low pass filter diagram

    Untitled

    Abstract: No abstract text available
    Text: HMC313 / 313E v03.0605 AMPLIFIERS - SMT 8 GaAs InGaP HBT MMIC BROADBAND AMPLIFIER GAIN BLOCK, DC - 6.0 GHz Typical Applications Features Ideal as a Driver & Amplifier for: P1dB Output Power: +14 dBm • 2.2 - 2.7 GHz MMDS Output IP3: +27 dBm • 3.5 GHz Wireless Local Loop


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    PDF HMC313 HMC313 HMC313E

    hmc313e

    Abstract: No abstract text available
    Text: HMC313 / 313E v03.0605 AMPLIFIERS - SMT 8 GaAs InGaP HBT MMIC BROADBAND AMPLIFIER GAIN BLOCK, DC - 6.0 GHz Typical Applications Features Ideal as a Driver & Amplifier for: P1dB Output Power: +14 dBm • 2.2 - 2.7 GHz MMDS Output IP3: +27 dBm • 3.5 GHz Wireless Local Loop


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    PDF HMC313 HMC313 HMC313E

    23S11

    Abstract: No abstract text available
    Text: HMC313 / 313E v03.0605 AMPLIFIERS - SMT 5 GaAs InGaP HBT MMIC BROADBAND AMPLIFIER GAIN BLOCK, DC - 6.0 GHz Typical Applications Features Ideal as a Driver & Amplifier for: P1dB Output Power: +14 dBm • 2.2 - 2.7 GHz MMDS Output IP3: +27 dBm • 3.5 GHz Wireless Local Loop


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    PDF HMC313 HMC-DK001 HMC313 HMC313E 23S11

    AN-S002

    Abstract: 5091-9054E AN-S014 AN-S011
    Text: f ï J l HEW LETT '1 1 PACKARD “KM Applications The application notes represented by these abstracts are available from your local Hewlett-Packard sales office or nearest HewlettPackard authorized distributor or representative. Technical information is also available on the WWW at:


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    PDF AN-G006 MGA-64135 5966-0453E AN-S011 5091-7798E AN-S013 5091-6488E AN-S014 AT-41411 AN-S002 5091-9054E

    Avantek amplifier

    Abstract: Avantek amt AVANTEK transistor nomograph Avantek diode limiter AMT 4052 AWS01 Avantek apg AVANTEK solid state 290K1
    Text: AVANTEK APPLICATION NOTES A Snbddiary at HewUtt-Packard AM PLIFIERS If excessive power is applied to a transistor amplifier, the first measureable affect is almost always an increase in noise figure. A somewhat higher power will further degrade noise figure and decrease the gain of the amplifier. If the input power


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    PDF 1-800-AVANTEK Avantek amplifier Avantek amt AVANTEK transistor nomograph Avantek diode limiter AMT 4052 AWS01 Avantek apg AVANTEK solid state 290K1