PS520L-28G-P Low Loss Phase Stable Coaxial Cable (28GHz)

Internal structural view showing silver-plated copper conductor, LD-PTFE insulation, triple shield layers, and TPU jacket.
PS520L-28G-P Phase Stable Coaxial Cable Exploded Structural

PS520L-28G-P Low Loss Phase Stable Coaxial Cable (28GHz)

Ultra-Low Loss Phase Stable Coaxial Cable (DC–28GHz)

Max Frequency:DC-28 GHz

Velocity of Prop.76%

Phase Stability ±0.2 °/GHz

Outer Diameter:6.0mm

Structure & Construction Characteristics

LayerMaterialConstruction (mm)Nom. O.D. (mm)
Inner ConductorSilver Plated Copper1 / 1.291.29
InsulationLD-PTFE (Low Density PTFE)3.91
Inner ShieldSilver Plated Copper Strip4.12
InterlayerHigh Temperature Aluminum Foil4.26
Outer ShieldSilver Plated Copper Braid4.78
JacketBlack TPU6.00

Mechanical & Environmental Parameters

PropertyValuePropertyValue
Min. Bending Radius (Static)18.00 mmWeight0.060 kg/m
Min. Bending Radius (Dynamic)36.00 mmOperating Temperature-55°C to +200°C

Electrical & Mechanical Characteristics

Impedance50 OhmVelocity of Propagation76%
Capacitance88 pF/mScreening Effectiveness> 90 dB
Max. Operating Frequency28 GHzDielectric Withstanding Voltage1800 V DC
Phase Change vs. Bending±0.2° / GHzPhase Change vs. Temp (-45~+85°C)≤ 1500 PPM

Attenuation & Power Handling @ 25℃ & Sea Level

Formula: IL = K1 * sqrt(F_MHz) + K2 * F_MHz (where K1 = 0.856234, K2 = 0.0005906)

Frequency (MHz)Nom. Attenuation (dB/100m)Max. Power Handling (W @ 40°C)
50019.441065
100027.67749
240043.36478
300048.67426
600069.87296
800081.31255
1000091.53226
12400102.67202
18000125.51165
20000132.90156
26500155.04134

Cross-Reference & Compatibility
PS520L-28G-P is designed as a direct high-reliability replacement for standard 0.200-inch phase-stable flexible microwave cables, offering enhanced shielding efficacy and superior phase consistency across thermal cycles.

Frequently Asked Questions

How does the triple-layer shield affect mechanical flexibility?

The combination of a silver-plated copper strip inner shield, aluminum foil interlayer, and outer braid provides maximum RF isolation (>90 dB) while maintaining a dynamic bend radius of 36.00 mm without causing mechanical fatigue or phase jumps.

What makes LD-PTFE superior to solid PTFE dielectrics?

Low-Density PTFE (LD-PTFE) achieves a higher velocity of propagation (76%) and lower dielectric attenuation, significantly reducing phase variation across the operating temperature range (-55°C to +200°C).

What is the significance of the attenuation coefficient formula?

The formula IL = K1 * sqrt(F_MHz) + K2 * F_MHz with constants K1=0.856234 and K2=0.0005906 allows system engineers to accurately calculate total insertion loss at any custom frequency point up to 28 GHz.

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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