1. YMHD-LL Low Density PTFE Dielectric Semi-Flexible ( Hand-Formable ) Coaxial Cable 低損耗低密度PTFE介質半柔性(手形)同軸電纜
    YMHD-Low Loss PTFE Microwave Coaxial Cable & Assembly for up to 26.5 GHz低損耗射頻微波(26.5G)同軸電纜及SMA組裝
    YMHD-RF Flexible Low Loss PE FOAM (LMR) Communications Coaxial Cable 低損耗微波通訊同軸電纜
    YMHD-RF Low Loss Microwave Cable 低損耗射頻微波傳輸同軸電纜
    YMHD-SEMI-FLEXIBLE and SEMI-RIGID PTFE COAXIAL CABLE 手工成形(半柔/半硬)同軸電纜
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    首頁 > > YMHD-RF Flexible Low Loss PE FOAM (LMR) Communications Coaxial Cable 低損耗微波通訊同軸電纜

    YMHD-LLC-MFT195 ( LMR195 RG58/RG316 Type 1/4-inch )  50 Ω RF (30㎒~ 6G)  Low Loss Flexible Communications Coaxial Cable PE低損耗微波高射頻通訊同軸電纜
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    YMHD-LLC-MFT195

    YMHD-LLC-MFT195 ( LMR195 RG58/RG316 Type 1/4-inch )  50 Ω RF (30㎒~ 6G)  Low Loss Flexible Communications Coaxial Cable PE低損耗微波高射頻通訊同軸電纜微波高射頻同軸電纜
     
    LOW LOSS PE FOAM COAXIAL CABLE
     

    LLC-MFT100A

    Description
    (RG316/RG174 1/4-inch) 
    This document is the physical structure & Mechanical, Electrical Characteristics of LLC-MFT100A Cable based on 50 Ω Low Loss Foam Coaxial Cable.
    Replacement for
    LMR-100A
    Physical Structure
    Inner Conductor
    Copper Clad Steel
    0.0177 in
    (0.45 mm )
    Dielectric
    Solid Polyethylene
    0.060 in
    (1.52 mm )
    1st Outer Conductor
    Unsealed APA Tape
    0.065 in
    (1.65 mm )
    2nd Outer Conductor
    38AWG, 90% Tinned Copper Braid
    0.081 in
    (2.06 mm )
    Jacket
    Black PVC
    0.110 in
    (2.79 mm)
    Mechanical
    Product Weight
    9.4 lb/kft
    (14 kg/km)
    Minimum Bend Radius
    1.10 in
    (27.9 mm)
    Electrical Characteristics
    Operation Frequency
    50 ~ 2500 ㎒
    Characteristic Impedance
    50 ± 5 Ω
    Velocity of Propagation, Nom.
    66 %
    Capacitance, Nom.
    31.1 ㎋/kft
    (102.0 ㎋/㎞)
    Inner Conductor Resistance @ 20℃
    81.7 Ω/kft
    (268 Ω/km)
    Outer Conductor Resistance @ 20℃
    8.8 Ω/kft
    (29 Ω/km)



    LLC-MFT195 

    Description
    (RG58/RG142 1/2-inch)
    This document is the physical structure & Mechanical, Electrical Characteristics of LLC-MFT195 Cable based on 50 Ω Low Loss Foam Coaxial Cable.
    Replacement for
    LMR-195
    Physical Structure
    Inner Conductor
    Solid Bare Copper
    0.0370 in
    (0.94 mm)
    Dielectric
    Foamed Polyethylene
    0.110 in
    (2.79 mm)
    1st Outer Conductor
    Sealed APA Tape
    0.116 in
    (2.95 mm)
    2nd Outer Conductor
    36AWG, 95% Tinned Copper Braid
    0.138 in
    (3.51 mm)
    Jacket
    Black PE
    0.195 in
    (4.95 mm)
    Mechanical
    Product Weight
    23.5 lb/kft
    (35 kg/km)
    Minimum Bend Radius
    1.95 in
    (49.5 mm)
    Electrical Characteristics
    Operation Frequency
    30 ~ 6000 ㎒
    Characteristic Impedance
    50 ± 3 Ω
    Velocity of Propagation, Nom.
    80 %
    Capacitance, Nom.
    25.4 ㎋/kft
    (83.3 ㎋/㎞)
    Inner Conductor Resistance @ 20℃
    7.6 Ω/kft
    (25 Ω/km)
    Outer Conductor Resistance @ 20℃
    4.9 Ω/kft
    (16 Ω/km)
     

    LLC-MFT200

    Description
    (1/2-inch)
    This document is the physical structure & Mechanical, Electrical Characteristics of LLC-MFT200 Cable based on 50 Ω Low Loss Foam Coaxial Cable.
    Replacement for
    LMR-200
    Physical Structure
    Inner Conductor
    Solid Bare Copper
    0.0441 in
    (1.12 mm)
    Dielectric
    Foamed Polyethylene
    0.116 in
    (2.95 mm)
    1st Outer Conductor
    Sealed APA Tape
    0.123 in
    (3.12 mm)
    2nd Outer Conductor
    36AWG, 95% Tinned Copper Braid
    0.144 in
    (3.66 mm)
    Jacket
    Black PE
    0.195 in
    (4.95 mm)
    Mechanical
    Product Weight
    22.8 lb/kft
    (34 kg/km)
    Minimum Bend Radius
    1.95 in
    (49.5 mm
    Electrical Characteristics
    Operation Frequency
    30 ~ 6000 ㎒
    Characteristic Impedance
    50 ± 3 Ω
    Velocity of Propagation, Nom.
    82 %
    Capacitance, Nom.
    24.5 ㎋/kft
    (80.3 ㎋/㎞)
    Inner Conductor Resistance @ 20℃
    5.5 Ω/kft
    (18 Ω/km)
    Outer Conductor Resistance @ 20℃
    4.9 Ω/kft
    (16 Ω/km)
     

    LLC-MFT240

    Description
    (3/4-inch 8X-Type)
    This document is the physical structure & Mechanical, Electrical Characteristics of LLC-MFT240 Cable based on 50 Ω Low Loss Foam Coaxial Cable.
    Replacement for
    LMR-240
    Physical Structure
    Inner Conductor
    Solid Bare Copper
    0.0559 in
    (1.42 mm)
    Dielectric
    Foamed Polyethylene
    0.150 in
    (3.81 mm)
    1st Outer Conductor
    Sealed APA Tape
    0.157 in
    (3.99 mm)
    2nd Outer Conductor
    36AWG, 95% Tinned Copper Braid
    0.178 in
    (4.52 mm)
    Jacket
    Black PE
    0.240 in
    (6.10 mm)
    Mechanical
    Product Weight
    34.3 lb/kft
    (51 kg/km)
    Minimum Bend Radius
    2.40 in
    (61.0 mm)
    Electrical Characteristics
    Operation Frequency
    30 ~ 6000 ㎒
    Characteristic Impedance
    50 ± 3 Ω
    Velocity of Propagation, Nom.
    83 %
    Capacitance, Nom.
    24.2 ㎋/kft
    (79.4 ㎋/㎞)
    Inner Conductor Resistance @ 20℃
    3.4 Ω/kft
    (11 Ω/km)
    Outer Conductor Resistance @ 20℃
    4.0 Ω/kft
    (13 Ω/km)
     

    LLC-MFT300

    Description
    (7/8-inch)
    This document is the physical structure & Mechanical, Electrical Characteristics of LLC-MFT300 Cable based on 50 Ω Low Loss Foam Coaxial Cable.
    Replacement for
    LMR-300
    Physical Structure
    Inner Conductor
    Solid Bare Copper
    0.0701 in
    (1.78 mm)
    Dielectric
    Foamed Polyethylene
    0.190 in
    (4.83 mm)
    1st Outer Conductor
    Sealed APA Tape
    0.196 in
    (4.98 mm)
    2nd Outer Conductor
    36AWG, 95% Tinned Copper Braid
    0.225 in
    (5.72 mm)
    Jacket
    Black PE
    0.300 in
    (7.62 mm)
    Mechanical
    Product Weight
    51.7 lb/kft
    (77 kg/km)
    Minimum Bend Radius
    3.00 in
    (76.2 mm)
    Electrical Characteristics
    Operation Frequency
    30 ~ 6000 ㎒
    Characteristic Impedance
    50 ± 3 Ω
    Velocity of Propagation, Nom.
    85 %
    Capacitance, Nom.
    23.9 ㎋/kft
    (78.4 ㎋/㎞)
    Inner Conductor Resistance @ 20℃
    2.1 Ω/kft
    (7.0 Ω/km)
    Outer Conductor Resistance @ 20℃
    2.2 Ω/kft
    (7.3 Ω/km)