Coaxial Cables (RF)

Image Part Number Description / PDF Quantity Rfq
PT1951TNRPTNRP

PT1951TNRPTNRP

Laird - Antennas

CABLE ASSY A195 RTNM RTNM

0

PT820TT

PT820TT

Laird - Antennas

CBL ASSY PIGTAIL 20' TNCM TNCM

0

PT8X8SMN

PT8X8SMN

Laird - Antennas

CBL ASSY PIGTAIL 8' SKDR MALE-NM

0

CANM31FSMAM-001

CANM31FSMAM-001

Laird - Antennas

CABLE ASSY 58A NM SMAM

0

CASNM120LNM

CASNM120LNM

Laird - Antennas

CABLE ASSY 120" N MALE-N MALE

0

CA100-NM-MC-12

CA100-NM-MC-12

Laird - Antennas

CBL ASSY NMALE-MCCARD LMR100 12"

0

CA100-NFB-RMMCX-12

CA100-NFB-RMMCX-12

Laird - Antennas

CBL ASSY RPMMCX-NTYPE LMR100 12"

0

CANNM12TRSMLA

CANNM12TRSMLA

Laird - Antennas

CABLE ASSY 12" N MALE-RPSMA MALE

0

PT21310NNF

PT21310NNF

Laird - Antennas

CABLE ASSY 213 NM NF

0

PT1952NFBHTHS

PT1952NFBHTHS

Laird - Antennas

CABLE ASSY A195 NF TNCM

0

CARTNM610PRTNF-001

CARTNM610PRTNF-001

Laird - Antennas

CABLE ASSY A400 20FT ATX400

0

PT8U3TRATRA

PT8U3TRATRA

Laird - Antennas

CBL ASSY PIGTAIL 3' TNCM TNCM

0

PTD1PFMU

PTD1PFMU

Laird - Antennas

CBL ASSY 1' TEFLEX MUHFM UHFF

0

CA100-NFB-SMAM-8

CA100-NFB-SMAM-8

Laird - Antennas

CBL ASSY NFEM-SMA MALE LMR100 8"

0

PTD10NT

PTD10NT

Laird - Antennas

CBL ASSY 10' TEFLEX NM TNCM

0

PT19514TT

PT19514TT

Laird - Antennas

CABLE ASSY A195 TNCM TNCM

0

PT40075NN

PT40075NN

Laird - Antennas

CBL ASSY PIGTAIL 75' NM NM

0

MAF94120

MAF94120

Laird - Antennas

ANT CABLE ASSY 1.13MM X 182MM

0

PT82NPS

PT82NPS

Laird - Antennas

CBL ASSY PIGTAIL 2' NM UHFM

0

PT400100NP

PT400100NP

Laird - Antennas

CBL ASSY PIGTAIL 100' NM PL259 M

0

Coaxial Cables (RF)

1. Overview

RF coaxial cables are cylindrical transmission lines consisting of concentric conductors separated by dielectric materials. They enable efficient transfer of high-frequency electrical signals (typically 1 MHz to 110 GHz) with minimal interference, making them critical components in telecommunications, broadcasting, aerospace, and test equipment. Their shielded structure ensures signal integrity in noisy environments.

2. Main Types and Functional Classification

TypeKey FeaturesApplications
Rigid Coaxial CableMetallic outer conductor, fixed geometryTest labs, high-power transmitters
Semi-Rigid CableFormable but non-flexing, excellent shieldingMicrowave systems, aerospace
Flexible Coaxial CableBraided shield, bendableGeneral-purpose communication systems
Low-Loss Foam DielectricPE/PTFE dielectric, reduced attenuation5G infrastructure, satellite links

3. Structure and Composition

Typical construction includes:
  1. Center Conductor: Solid/stranded copper/aluminum for signal transmission
  2. Dielectric Insulator: Polyethylene (PE) or PTFE foam maintaining uniform impedance
  3. Shielding Layer: Braided copper/aluminum with 85-95% coverage (single/double layers)
  4. Outer Jacket: PVC/PE for mechanical/environmental protection
Critical dimensions determine characteristic impedance (commonly 50 for data/75 for video).

4. Key Technical Parameters

ParameterDescriptionImportance
Characteristic ImpedanceMatched load resistance (50/75 )Minimizes signal reflection
Attenuation (dB/100m)Signal loss per unit lengthDetermines transmission distance
Frequency RangeOperational bandwidth (e.g., 0-18GHz)Limits application scope
VSWRVoltage Standing Wave RatioMeasures impedance matching quality
Power HandlingMax RF power capacityPrevents dielectric breakdown

5. Application Fields

  • Telecommunications: 5G base stations, fiber-wireless systems
  • Broadcasting: TV antenna feeds, studio equipment
  • Aerospace: Radar systems, avionics
  • Test & Measurement: Oscilloscope probes, signal analyzers
  • Industrial IoT: Wireless sensor networks

6. Leading Manufacturers

ManufacturerKey Products
Amphenol CorporationSUCOFLEX 104, 106 series
TE ConnectivityRadiation-resistant RG-58
HUBER+SUHNERRF flexible cables (SST series)
CommScopeHeliax FSJ1-50A
Southwest Microwave832 Series semi-rigid

7. Selection Guidelines

Key considerations:
  • Match impedance to system requirements
  • Verify frequency/attenuation specifications
  • Environmental factors (temperature, UV resistance)
  • Mechanical requirements (flexure life, bending radius)
  • Connector compatibility (SMA, N-Type, etc.)
Example: 5G massive MIMO deployment requires low-PIM (Passive Intermodulation) cables with <0.1dB/100m loss at 3.5GHz.

8. Industry Trends

  • High-Frequency Demand: Development of 110GHz+ cables for 6G research
  • Weight Reduction: Composite materials in aerospace applications
  • Green Manufacturing: Halogen-free jacket materials adoption
  • Smart Cables: Embedded sensors for condition monitoring
  • Standardization: 5G NR band-specific cable specifications
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