PSE400-40G-BF 40GHz High Frequency Phase Stable Coaxial Cable

PSE400-40G-BF 40GHz high frequency phase stable coaxial cable exploded view showing silver plated copper conductor, LD-PTFE insulation, inner shield, LD-PTFE interlayer, outer shield, and blue FEP jacket.
Internal structural layers of PSE400-40G-BF 40GHz phase stable coaxial cable.

PSE400-40G-BF

40GHz Ultra-Low Loss & Phase Stable Flexible Coaxial Cable

Engineered for demanding RF and microwave applications up to 40 GHz. Features low-density PTFE (LD-PTFE) dielectric insulation combined with a high-density double shielding system, ensuring minimal signal attenuation and exceptional phase stability under dynamic mechanical stress and thermal fluctuations.

Max Frequency:DC-40GHz

Velocity of Prop.76%

Inner ConductorStranded SPC (1/0.91mm)

Outer Diameter:4.0mm

Structure & Construction Characteristics

LayerMaterialConstruction (mm)Nom. O.D. (mm)
Inner ConductorSilver Plated Copper1 / 0.910.91
InsulationLD-PTFE (Low Density PTFE)2.70
Inner ShieldSilver Plated Copper Strip2.90
InterlayerLD-PTFE3.15
Outer ShieldSilver Plated Copper Wire Braid3.56
JacketBlue FEP4.00

Electrical & Mechanical Characteristics

Impedance50 OhmVelocity of Propagation76%
Max Operating Frequency40 GHzCapacitance88 pF/m
Screening Effectiveness> 90 dBDielectric Withstanding Voltage1200 V DC
Phase Change vs Bending±0.2 °/GHzPhase Change vs Temp (-45~+85℃)≤ 1500 PPM

Mechanical & Environmental Characteristics

Min. Static Bending Radius16.00 mmMin. Dynamic Bending Radius38.00 mm
Weight0.039 kg/mOperating Temperature-55℃ to +165℃

Attenuation & Power Handling @ 25℃ & Sea Level

Insertion Loss Formula: IL = K1 * sqrt(F_MHz) + K2 * F_MHz (dB/100m)
Constants: K1 = 1.232579, K2 = 0.000462

Frequency (MHz)Nom. Attenuation (dB/100m)Max Power Handling (W @ 40℃)
50027.79728
100039.44513
200056.05361
300068.90294
600098.25206
8000113.94178
10000127.88158
12400142.98142
18000173.68116
26500212.8995
40000265.0076

Cross-Reference & Form-Fit Interchangeability

PSE400-40G-BF offers direct mechanical and electrical interchangeability with industry standards, serving as a high-reliability direct equivalent for HUBER+SUHNER SUCOFLEX 102 assemblies in microwave test leads and system cabling.

Frequently Asked Questions

How does LD-PTFE dielectric improve phase stability compared to solid PTFE in high-frequency applications?

Low-Density PTFE (LD-PTFE) incorporates controlled microporous structures that lower the effective dielectric constant to achieve a velocity of propagation (VoP) of 76%. This significantly reduces phase drift caused by thermal expansion and mechanical flexing near room temperature phase transition points inherent to solid PTFE.

What shielding mechanism guarantees >90 dB screening effectiveness up to 40 GHz?

The PSE400-40G-BF utilizes a composite triple-layer outer architecture featuring a silver-plated copper strip inner shield, an LD-PTFE interlayer, and a high-coverage silver-plated copper wire outer braid. This combination eliminates microwave energy leakage and maintains robust shielding integrity up to 40 GHz.

What are the critical considerations when selecting between FEP and PUR outer jackets for millimeter-wave assemblies?

The FEP outer jacket (-BF variant) provides exceptional chemical inertness, low outgassing, and a wide operating temperature range (-55℃ to +165℃), ideal for aerospace and laboratory environments. For applications requiring extreme flexural fatigue resistance or rugged field deployment, polyurethane (PUR) jackets may be preferred.

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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