PS510LS-29G-F Flexible Stranded Coaxial Cable (29GHz)

PS510LS-29G-F Stranded Conductor Coaxial Cable Structure Diagram
Cross-sectional structural view of PS510LS-29G-F featuring 19/0.29 stranded silver-plated copper inner conductor, LD-PTFE dielectric, dual shielding, and FEP jacket.

PS510LS-29G-F

High Frequency Low Loss Flexible Coaxial Cable (DC–29GHz, Stranded Conductor)

Engineered with a 19-strand silver-plated copper inner conductor, ultra-low-density PTFE (LD-PTFE) dielectric, and FEP outer jacket to deliver exceptional mechanical flex endurance and low loss performance up to 29GHz. Perfectly suited for dynamic high-flex test cables, airborne phased arrays, and tight-radius gimbal interconnects.

Max Frequency:DC-29GHz

Velocity of Prop.83%

Inner ConductorStranded SPC (19/0.29mm)

Outer Diameter:5.1mm

Structure & Construction Characteristics

Construction PartMaterialConstruction (mm)Nom. O.D. (mm)
Inner ConductorStranded Silver Plated Copper (SPC)19 / 0.291.45
InsulationLow-Density PTFE (LD-PTFE)3.85
Inner ShieldSilver Plated Copper StripHelical Wrap4.05
Outer ShieldSilver Plated Copper WireBraid Coverage4.50
JacketGray Fluorinated Ethylene Propylene (FEP)5.10

Mechanical & Environmental Parameters

ParameterStandard ValueParameterStandard Value
Min. Bending Radius (Static)25.0 mmWeight0.065 kg/m
Min. Bending Radius (Dynamic)50.0 mmOperating Temperature-55 ℃ to +165 ℃

Electrical & Mechanical Characteristics

ParameterValueParameterValue
Impedance50 ΩDielectric Withstanding Voltage2000 V DC
Capacitance80 pF/mPhase Change vs. Bending±0.3 °/GHz
Velocity Ratio (Velocity of Propagation)83%Phase Change vs. Temp. (-45 to +85℃)≤ 750 PPM
Max Operating Frequency29.0 GHzScreening Effectiveness> 90 dB

Attenuation & Power Handling @ 25℃ & Sea Level

Insertion Loss Calculation Formula:
IL = K1 * sqrt(F_MHz) + K2 * F_MHz (dB/100m)
Constants: K1 = 0.864210, K2 = 0.000875

Frequency (MHz)Nominal Attenuation (@25℃, Sea Level) (dB/100m)Max Power Handling (@40℃, Sea Level) (W)
30015.201550
50019.701190
100028.10830
300049.80470
600072.10325
800084.20278
1000095.00245
12400106.80218
18000131.30178
20000139.30168
26500163.30143
29000172.10135

Direct Drop-in Replacement Compatibility

The PS510LS-29G-F is functionally and dimensionally equivalent to industry-standard high-frequency phase-stable cables including 33201 / SF142B and equivalent 5.10mm (0.200″) low-loss PTFE flexible coaxial cables, delivering matching mechanical tolerances, low attenuation, and high phase stability.

Frequently Asked Questions

 How does the 19-strand inner conductor architecture improve mechanical longevity compared to solid conductors?

The 19/0.29mm stranded silver-plated copper (SPC) construction significantly mitigates flex fatigue by distributing bending stresses across individual micro-strands. This structural decoupling prevents strain concentration, avoiding conductor work-hardening and micro-fracturing during continuous dynamic flexing in automated test setups or gimbal systems.

What dielectric mechanism enables PS510LS-29G-F to maintain Phase Stability under dynamic movement up to 29GHz?

The cable utilizes a Low-Density Microporous PTFE (LD-PTFE) dielectric with an 83% Velocity of Propagation (VP). The microporous matrix minimizes cross-sectional mechanical distortion during bending, suppressing localized dielectric constant variations (Δεr) and ensuring a strict phase change vs. flexure tolerance of ≤ ±0.3 °/GHz.

Why is a helical silver-plated copper strip combined with an outer braid shield?

The dual-shield architecture provides comprehensive RF isolation (>90 dB) across high microwave bands. The inner helical SPC tape forms a 100% continuous circumferential barrier against high-frequency leakages and intermodulation, while the outer SPC wire braid supplies structural tensile strength and grounding continuity during dynamic flexure.

How does the FEP outer jacket withstand extreme aerospace and defense environmental stress?

The extruded Fluorinated Ethylene Propylene (FEP) jacket is chemically inert, non-flammable, and resistant to aggressive solvents, hydraulic fluids, and severe UV radiation. Operating reliably across -55 °C to +165 °C, it exhibits high abrasion resistance and low outgassing properties suitable for vacuum environments.

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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