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    CHARACTERISTIC IMPEDANCE MATCHING Search Results

    CHARACTERISTIC IMPEDANCE MATCHING Result Highlights (5)

    Part ECAD Model Manufacturer Description Download Buy
    MUSBR439330 Amphenol Communications Solutions Rugged USB 3.0, IP67, Stacked on PCB with matching USB connector Visit Amphenol Communications Solutions
    MUSBRB35130 Amphenol Communications Solutions Rugged USB Mini B, Type B, on PCB with matching mini B, unified thread Visit Amphenol Communications Solutions
    MUSBRB35135 Amphenol Communications Solutions Rugged USB Mini B, Type B, on PCB with matching mini B, unified thread, with black dust cover Visit Amphenol Communications Solutions
    MUSBRA31140 Amphenol Communications Solutions Rugged USB 2.0, Input Output Connector, IP67, Right Angle on PCB with Right Angle Matching USB connector, 4 Position, Low Profile Shell for Type A, Unified Thread Visit Amphenol Communications Solutions
    MUSBRA311M5 Amphenol Communications Solutions Rugged USB 2.0, Input Output Connector, IP67, Right Angle on PCB with Right Angle Matching USB connector, 4 Position, Standard Shell for Type A, Metric Thread, with Black dust cover Visit Amphenol Communications Solutions

    CHARACTERISTIC IMPEDANCE MATCHING Datasheets Context Search

    Catalog Datasheet Type Document Tags PDF

    Untitled

    Abstract: No abstract text available
    Text: M ODELS M 2001 and M 2 0 0 2 A d ju s ta b le A tte n u a to rs FEA TU R ES • Model M2001 is for matching the characteristic impedance of coaxial antenna cables and is suitable for antenna amplifiers of up to 900 MHz. • Model M2002 is for matching the characteristic impedance of coaxial


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    M2001 M2002 M2001 PDF

    Untitled

    Abstract: No abstract text available
    Text: Cable Assemblies Definition of Parameters Impedance - The characteristic impedance equation for a coaxial transmission line is expressed as follows: 138.06 Impedance = Zo= - — - \e where: Log 10 D/d D = diameter of outer conductor d = diameter of center conductor


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    Untitled

    Abstract: No abstract text available
    Text: Cable Assemblies Definition of Parameters Impedance - The characteristic impedance equation for a coaxial transmission line is expressed as follows: Impedance ≡ Zo = where: 138.06 √ ε Log 10 D/d D = diameter of outer conductor d = diameter of center conductor


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    Untitled

    Abstract: No abstract text available
    Text: Rg = GENERATOR SOURCE IMPEDANCE = 50 OHMS R1.R2 = INPUT MATCHING PAD RESISTORS Rt = TERMINATING RESISTOR Zo = DELAY LINES CHARACTERISTIC IMPEDANCE R1 = |Rg X Zo| / R2 R 2 = v/ v Zo - Rg ' Figura 5A. Recommended test circuit for Passive Delay Lines GLOSSARY


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    Untitled

    Abstract: No abstract text available
    Text: SF1065-T 167 MHz SAW Filter • • • • Designed for GSM DCS Receiver IF Applications Simple to use – No External Impedance Matching Internal Impedance Matching to 50 Ω Unbalanced Input and Output See Associated Plots Characteristic Nominal Center Frequency


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    SF1065-T fc-400 fc-225 fc-600 fc-800 fc-26 SF1065T PDF

    SF1058T

    Abstract: No abstract text available
    Text: SF1058-T 167 MHz SAW Filter • • • • • Designed for GSM DCS Receiver IF Applications Simple to use – No External Impedance Matching Internal Impedance Matching to 50 Ω Unbalanced Input and Output Internally-Matched Version of SF1058 Characteristic


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    SF1058-T SF1058 DIP14L-8 SF1058T PDF

    Untitled

    Abstract: No abstract text available
    Text: SF1065-T 167 MHz SAW Filter • • • • Designed for GSM DCS Receiver IF Applications Simple to use – No External Impedance Matching Internal Impedance Matching to 50 Ω Unbalanced Input and Output Characteristic Nominal Center Frequency Passband Insertion Loss at fc


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    SF1065-T fc-400 fc-225 fc-600 fc-800 fc-26 DIP18-8 PDF

    270R

    Abstract: 600R MAX4265 MAX4475
    Text: Maxim > App Notes > AMPLIFIER AND COMPARATOR CIRCUITS VIDEO CIRCUITS Keywords: termination, resistor termination, driving 75Ω, minimize reflections, op amps, line driver, cable matching, characteristic impedance matching, video Nov 04, 2004 APPLICATION NOTE 3390


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    com/an3390 MAX4265: MAX4475: AN3390, APP3390, Appnote3390, 270R 600R MAX4265 MAX4475 PDF

    Untitled

    Abstract: No abstract text available
    Text: Cable Assemblies Definition of Parameters Impedance - The characteristic impedance equation for a coaxial transmission line is expressed as follows: 138.06 Im p e d a n c e where: = Z o= - - — - L o g 10 D /d D = diam eter of outer conductor


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    94HB 138

    Abstract: 900MHZ M2001H
    Text: Model M2001H Vishay Sfernice Adjustable Carbon Attenuators FEATURES • Model M2001H is for matching the characteristic impedance of coaxial antenna cables and is suitable for antenna amplifiers of up to 900MHz. MECHANICAL SPECIFICATIONS STANDARD ELECTRICAL SPECIFICATIONS


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    M2001H M2001H 900MHz. 25-Apr-00 M2001HP1, M2001HS2: M2001HP2, M2001HP3: 94HB 138 900MHZ PDF

    BP1051

    Abstract: microwave receiver
    Text: BP1051 70 MHz SAW Filter PRELIMINARY • • • • Designed for Microwave Receiver IF Applications No External Impedance Matching Required Hermetic Metal DIP Unbalanced Input and Output See Associated Plots Characteristic Nominal Center Frequency Passband


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    BP1051 microwave receiver PDF

    Untitled

    Abstract: No abstract text available
    Text: Model M2001H Vishay Draloric Adjustable Carbon Attenuators FEATURES • Model M2001H is for matching the characteristic impedance of coaxial antenna cables and is suitable for antenna amplifiers of up to 900MHz. MECHANICAL SPECIFICATIONS STANDARD ELECTRICAL SPECIFICATIONS


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    M2001H M2001H 900MHz. 08-Apr-05 PDF

    900MHZ

    Abstract: M2001H
    Text: Model M2001H Vishay Draloric Adjustable Carbon Attenuators FEATURES • Model M2001H is for matching the characteristic impedance of coaxial antenna cables and is suitable for antenna amplifiers of up to 900MHz. MECHANICAL SPECIFICATIONS STANDARD ELECTRICAL SPECIFICATIONS


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    M2001H M2001H 900MHz. 27-Aug-03 M2001HP1, M2001HS2: M2001HP2, M2001HP3: 900MHZ PDF

    BP1051

    Abstract: No abstract text available
    Text: BP1051 70 MHz SAW Filter PRELIMINARY • • • • Designed for Microwave Receiver IF Applications No External Impedance Matching Required Hermetic Metal DIP Unbalanced Input and Output See Associated Plots Characteristic Nominal Center Frequency Passband


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    BP1051 DIP14L-8 PDF

    SF1133A

    Abstract: No abstract text available
    Text: SF1133A 246 MHz SAW Filter PRELIMINARY • • • • Designed For GSM BTS Receiver IF Compatible with National Semiconductor Chip Set Very Flexible Impedance Matching Unbalanced or Balanced Input or Output Characteristic Nominal Center Frequency Passband


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    SF1133A fc-800 fc-600 fc-30 fc-80 SM9171-10 PDF

    SF1108

    Abstract: No abstract text available
    Text: SF1108 120 MHz SAW Filter PRELIMINARY • • • • Designed for CDMA IS-95 Receiver IF Applications Simple External Impedance Matching Hermetic Metal DIP Unbalanced Input and Output See Associated Plots Characteristic Nominal Center Frequency Passband Sym


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    SF1108 IS-95 fc-900 fc-875 PDF

    SF1071

    Abstract: DIP14-6
    Text: SF1071 71 MHz SAW Filter • • • • Designed for GSM Receiver IF Applications Simple External Impedance Matching Hermetic Metal DIP Unbalanced Input and Output See Associated Plots Characteristic Nominal Center Frequency Passband Insertion Loss at fc


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    SF1071 fc-18 DIP14-6 PDF

    SF1089A

    Abstract: No abstract text available
    Text: SF1089A 167 MHz SAW Filter • • • • Designed for GSM PCS Receiver IF Applications Simple External Impedance Matching Hermetic SMP-97 Surface-Mount Case Unbalanced Input and Output See Associated Plots Characteristic Nominal Center Frequency Passband


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    SF1089A SMP-97 fc-400 fc-225 fc-600 fc-800 fc-1500 PDF

    BP1042

    Abstract: No abstract text available
    Text: BP1042 70 MHz SAW Filter • • • • Designed for CDMA Receiver IF Applications Simple External Impedance Matching Hermetic Metal DIP Unbalanced Input and Output See Associated Plots Characteristic Nominal Center Frequency Passband Insertion Loss at fc


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    BP1042 PDF

    SF1062A

    Abstract: No abstract text available
    Text: SF1062A 211 MHz SAW Filter • • • • Designed for GSM PCS Receiver IF Applications Simple External Impedance Matching Hermetic SMP-87 Surface-Mount Case Unbalanced Input and Output See Associated Plots Characteristic Nominal Center Frequency Passband


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    SF1062A SMP-87 fc-400 fc-200 fc-600 fc-800 PDF

    BP1042

    Abstract: No abstract text available
    Text: BP1042 70 MHz SAW Filter • • • • Designed for CDMA Receiver IF Applications Simple External Impedance Matching Hermetic Metal DIP Unbalanced Input and Output See Associated Plots Characteristic Nominal Center Frequency Passband Insertion Loss at fc


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    BP1042 DIP14L-8 PDF

    SF1058

    Abstract: No abstract text available
    Text: SF1058 167 MHz SAW Filter • • • • Designed for GSM DCS Receiver IF Applications Simple External Impedance Matching Hermetic Metal DIP Unbalanced Input and Output See Associated Plots Characteristic Nominal Center Frequency Passband Insertion Loss at fc


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    SF1058 PDF

    SF1058-1

    Abstract: 1008CS 100NH SF1058
    Text: SF1058-1 167 MHz SAW Filter • • • • • Designed for GSM DCS Receiver IF Applications Simple External Impedance Matching Hermetic Metal DIP Unbalanced Input and Output Relaxed Rejection Version of the SF1058 Characteristic Nominal Center Frequency


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    SF1058-1 SF1058 fc-400 fc-250 Fc-600 1008CS 100NH SF1058 PDF

    SF1089A

    Abstract: No abstract text available
    Text: SF1089A 167 MHz SAW Filter • • • • Designed for GSM PCS Receiver IF Applications Simple External Impedance Matching Hermetic SMP-97 Surface-Mount Case Unbalanced Input and Output Characteristic Nominal Center Frequency Passband Insertion Loss at fc


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    SF1089A SMP-97 fc-400 fc-225 fc-600 fc-800 fc-1500 PDF