| 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
Connector 2
VSWR Max
Frequency Max
Insertion Loss Max
Body Style
Description
The Mechanc CFS 810 coaxial cable is a prominent addition to our CFS cable series, exemplifying the series’ hallmark features of flexibility, ultra-low-loss, and phase & amplitude stability. This cable is precisely engineered to address the high-performance requirements of advanced RF applications where accuracy and reliability are paramount.
Designed for a substantial operating frequency of up to 18 GHz and with a 50 Ohm impedance, the CFS 810 is an ideal selection for sophisticated systems in need of clear and precise signal transmission. The cable boasts a robust construction, featuring a silver-plated copper inner conductor and a durable PFA jacket with a diameter of 8.10 mm, balancing protection and flexibility for diverse installation needs.
The CFS 810 maintains phase stability within ≤±2° at 10 GHz and ≤±3° at 18 GHz, guaranteeing reliable and consistent signal delivery. The cable also ensures performance within a temperature range of -55°C to +165°C, with phase stability temperature variations kept below 750 ppm, affirming its dependability under various environmental conditions.
With an attenuation of 0.633 dB/m at the highest frequency, the CFS 810 exemplifies efficient signal maintenance. It also handles an average power of 0.409 kW, showcasing its capability to support relatively high-power operations without compromising signal integrity.
The CFS 810 is designed with a single minimum bend radius of 40.00 mm and a repeated minimum bend radius of 81.00 mm, allowing for ample flexibility during installation, even in challenging spaces. An 83% velocity of propagation further enhances its ability to ensure rapid signal delivery, essential for high-speed communication.
In summary, Mechanc’s CFS 810 coaxial cable stands out as a superior option for demanding applications that require high-frequency, precision, and stability in signal transmission, solidifying its status as a vital component in state-of-the-art RF systems.