PS1200L-10G High Frequency Low Loss Phase Stable Coaxial Cable

Structural breakdown of PS1200L-10G low loss phase stable coaxial cable showing silver-plated copper inner conductor, LD-PTFE dielectric, silver-plated copper strip inner shield, high temperature aluminium foil interlayer, and silver-plated copper wire outer shield.
PS1200L-10G Phase Stable Coaxial Cable Construction Details

PS1200L-10G High Frequency Low Loss Phase Stable Coaxial Cable

Ultra-Low Insertion Loss & Exceptional Phase Stability Rated Up to 10 GHz

Max Frequency:DC-10 GHz

Screening: >90 dB

Phase Stability ±0.2 °/GHz

Outer Diameter:12.0 mm

Structure & Construction Characteristics

LayerElementMaterialConstruction (mm)Nom. O.D. (mm)
Inner ConductorCenter ConductorSilver Plated Copper7 / 1.173.50
DielectricInsulationLD-PTFE10.00
Inner ShieldFlat Ribbon ShieldSilver Plated Copper Strip10.32
InterlayerBarrier TapeHigh Temperature Aluminium Foil10.45
Outer ShieldBraided ShieldSilver Plated Copper Wire11.02
JacketOuter SheathLight Blue FEP12.00

Mechanical & Environmental Parameters

Min. Static Bend Radius60.00 mmMin. Dynamic Bend Radius120.00 mm
Weight0.300 kg/mOperating Temperature-55°C to +200°C

Electrical & Mechanical Characteristics

Impedance50 ΩCapacitance88 pF/m
Velocity of Propagation76%Max Operating Frequency10 GHz
Screening Effectiveness> 90 dBDielectric Withstanding Voltage4000 V DC
Phase Change vs. Bending±0.2 °/GHzPhase Change vs. Temperature (-45~+85℃)≤ 1500 PPM

Attenuation & Power Handling @ 25℃ & Sea Level

Insertion Loss Calculation: IL = K1 * sqrt(F_MHz) + K2 * F_MHz [dB/100m]
Constants: K1 = 0.39168, K2 = 0.0006

Frequency (MHz)Nominal Attenuation (dB/100m @ 25°C & Sea Level)Max Power Handling (W @ 40°C & Sea Level)
1003.988,457
3006.964,829
5009.063,713
100012.992,590
200018.721,797
250021.081,595
300023.251,446
600033.94991
800039.83844
900042.56790
1000045.17745

Cross Reference & Direct Equivalent Replacement
The PS1200L-10G low loss phase stable coaxial cable is engineered as a direct drop-in replacement for Times Microwave SFT226 / SFT-226, delivering matched 10 GHz high-frequency capability, identical mechanical dimensions (12.00 mm outer diameter), and equivalent phase stability under flexure.

Frequently Asked Questions

How does the 7/1.17 mm stranded inner conductor affect phase stability and mechanical fatigue during repeated flexure?

The 7/1.17 mm stranded silver-plated copper conductor provides significantly superior dynamic flexibility and fatigue resistance compared to solid conductors of equivalent size. Combined with expanded LD-PTFE insulation, this construction minimizes internal strain concentration during movement, maintaining consistent phase linearity (±0.2 °/GHz) and low VSWR throughout repeated dynamic bending.

Why is the PS1200L-10G ideal as a direct drop-in replacement for Times Microwave SFT226?

PS1200L-10G strictly matches the key electrical and physical parameters of SFT226, including 12.00 mm nominal outer diameter, 50 Ω impedance, 76% velocity of propagation, and identical attenuation constants (K1=0.39168, K2=0.0006). It allows seamless drop-in integration into existing system layouts without requiring redesigns of cable routing, mounting clamps, or RF connector termination tooling.

How does the triple-layer shield structure achieve >90 dB screening effectiveness at 10 GHz?

The shielding architecture utilizes a helically wrapped silver-plated copper strip as the inner shield for 100% optical coverage, a high-temperature aluminum foil interlayer to prevent inter-layer friction and signal leakage, and a high-density silver-plated copper wire braid on the outside. This combination effectively eliminates RF radiation and cross-talk across the entire DC to 10 GHz spectrum.

Need a Custom Solution?

To design the right custom RF coaxial cable, please share key details such as frequency range, application, required flexibility, installation space limitations, temperature requirements, and any existing cable model you are replacing. The more information you provide, the faster we can recommend the optimal cable solution.

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