Ultra Low Loss 13.5GHz CFS1000 Precision Test Cable with PFA Jacket

Product ID: MCC-CFS1000
Deal
Quantity Price
1 - 19 20,00 $
20 - 49 19,40 $
50 - 99 18,80 $

* All Prices are in US Dollars and do not include duties

Key Specifications

Connector 1

1.0mm Male

Connector 2

1.0mm Male

VSWR Max

Frequency Max

Insertion Loss Max

Body Style

Description

The Mechanc CFS 1000 coaxial cable exemplifies the CFS series’ dedication to delivering high-performance cabling solutions. Designed for flexibility, ultra-low-loss, and high power applications, this cable ensures phase and amplitude stability across a broad range of operational scenarios.

Suited for an operating frequency of up to 13.5 GHz and with a standard impedance of 50 Ohms, the CFS 1000 is engineered to cater to demanding high-frequency environments. It features a silver-plated copper inner conductor, surrounded by an LD-PTFE insulating layer and enclosed in a PFA jacket measuring 10.00 mm in diameter, providing a robust construction that offers flexibility without sacrificing durability.

Maintaining phase stability within ≤±2° at 10 GHz, the CFS1000 guarantees precise and dependable signal transmission. Designed to function within a temperature range of -55°C to +85°C, the cable operates with phase stability temperature variations kept below 750 ppm, ensuring reliability across different environmental conditions.

With an attenuation of 0.498 dB/m at the highest frequency, the CFS1000 efficiently preserves signal integrity. It also boasts substantial power handling capabilities, with an average power of 0.510 kW, affirming its ability to support relatively high-power applications.

The CFS 1000 allows for a single minimum bend radius of 40.00 mm and a repeated minimum bend radius of 100.00 mm, ensuring installation flexibility even in space-constrained situations. The cable’s 83% velocity of propagation further emphasizes its efficiency in signal conveyance, vital for rapid communication.

In essence, Mechanc’s CFS 1000 is an exceptional coaxial cable, ideally suited for sophisticated applications that require a high-power, stable, and ultra-low-loss signal transmission solution.