PS460L-32G-F High Frequency Phase Stable Coaxial Cable (32GHz)

PS460L-32G-F Coaxial Cable Structure Breakdown Showing Silver Plated Copper Conductor, LD-PTFE, and FEP Jacket
Cross-sectional diagram of PS460L-32G-F phase stable coaxial cable operating up to 32GHz.

PS460L-32G-F Phase Stable Coaxial Cable

32GHz Max Frequency | Ultra-Low Loss | FEP Jacket Outer Protection

The PS460L-32G-F is an engineered 50-ohm phase-stable flexible coaxial cable optimized for high-frequency RF systems up to 32GHz. Incorporating a low-density PTFE dielectric and double silver-plated copper shielding, it delivers exceptional phase stability under bending and temperature fluctuations.

Max Frequency:DC-32GHz

Velocity of Prop.83%

Inner ConductorStranded SPC (1/1.29mm)

Outer Diameter:4.6mm

Structure & Construction Characteristics

Layer StructureMaterial SpecificationConstruction (mm)Nom. O.D. (mm)
Inner ConductorSilver Plated Copper (SPC)1 / 1.291.29
Insulation DielectricLow Density PTFE (LD-PTFE)3.55
Inner ShieldSilver Plated Copper Strip3.75
Outer ShieldSilver Plated Copper Wire Braid4.15
Outer JacketGray Fluorinated Ethylene Propylene (FEP)4.60

Mechanical & Environmental Parameters

Min. Bending Radius (Static)23.0 mmOperating Temperature-55 °C to +165 °C
Min. Bending Radius (Dynamic)46.0 mmNominal Weight0.048 kg/m

Electrical & Mechanical Characteristics

Impedance50 ΩMax Operating Frequency32 GHz
Capacitance80 pF/mScreening Effectiveness> 90 dB
Velocity of Propagation83 %Dielectric Withstanding Voltage1500 V DC
Phase Change vs Bending±0.3 °/GHzPhase Change vs Temp (-45~+85°C)≤ 750 PPM

Attenuation & Power Handling @ 25℃ & Sea Level

Insertion Loss Formula: IL = K1 * sqrt(F_MHz) + K2 * F_MHz  |  K1 = 0.81650, K2 = 0.00088

Frequency (MHz)Nominal Attenuation (dB/100m @ 25°C)Max Power Handling (W @ 40°C)
30014.411446
50018.701114
100026.70780
300047.35440
600068.51304
800080.04260
1000090.42230
12400101.79205
18000125.32166
26500156.15133
32000174.11120

Cross Reference / Direct Replacement

PS460L-32G-F serves as a high-performance direct alternative for standard IW 1801 and equivalent 0.180-inch outer diameter phase-stable high-frequency coaxial cables.

Frequently Asked Questions

What makes the PS460L-32G-F suitable for 32GHz phase-critical applications?

The cable utilizes Low-Density PTFE (LD-PTFE) dielectric combined with a dual-shield structure (flat SPC strip plus SPC braid). This configuration minimizes velocity variations during mechanical flexing, maintaining a phase stability of ±0.3 °/GHz.

How does the FEP jacket perform in harsh environments?

 The high-grade Gray FEP jacket offers an operating temperature range of -55°C to +165°C, high resistance to chemicals, UV exposure, and moisture ingress, making it suitable for aerospace, defense, and demanding test environments.

How to calculate attenuation at custom frequencies?

Attenuation at any frequency (F in MHz) can be calculated using the coefficient formula: IL = 0.81650 * sqrt(F_MHz) + 0.00088 * F_MHz in dB/100m.

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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