FortiLink Systems Ltd Commercial or Military HF Broadband - 3Wire

The HFFLS-230A Multi-wire Broad Band Folded Dipole Antenna offer optimum performance, fully automatic, low SWR operation over the entire HF band 2–30 MHz and suitable for transmitting, receiving or HF spectrum monitoring or surveillance. The HF 3 wire broadband dipole antenna propagates NVIS, local, medium or long distance communications. This HF broadband dipole antenna is ready to go right out of the box, no taps to change frequency, nothing to tune – ever! Designed for the military and built to last. The HFFLS-230A can work any frequency you want without going through a lot of knob twirling and measurements to get a good VSWR match – just set your frequency and go!

CONSTRUCTIONS:

CONSTRUCTIONS: The HF-3wire broadband antenna is designed for broad band operation for fixed stations application. The radiating element of dipole is made of ultra corrosion resistant marine grade stainless steel to ensure the survivability in worst environment conditions. The HF-3Wire broadband dipole antenna can be mounted either in an inverted “V” using a single mast, or in a standard dipole configuration (Horizontal Polarized) using two masts. The HF Broad Band Dipole Antenna provides optimum performance over complete HF band, eliminating the requirement of multiple antennas or an Antenna Tuning Unit, minimizing the cost and setup requirements. Antenna does not use any terminating resistor so full power is available for radiation to increase the overall efficiency of the antenna.

Technical & Functional Performance

Design & Build Quality

The HFFLS-230A is a high-performance, military-grade 3-wire broadband folded dipole antenna designed for continuous operation across the entire 2-30 MHz HF band. This fully automatic antenna requires no tuning or manual adjustments, providing optimum VSWR performance right out of the box for transmitting, receiving, and surveillance applications. Built with marine-grade stainless steel and FRP spreaders, it is engineered to withstand extreme environmental conditions while maintaining high radiation efficiency by eliminating the need for terminating resistors.