The Televes® Ellipse Mix Antenna automatically adapts its gain in real time to optimize the reception of television signals, ensuring the optimum level of signal is always delivered. This antenna has been designed from the ground up for US broadcast frequencies, filtering any interfering 5G signals above 608 MHz, and providing independent amplification for the VHF and UHF bands. The antenna can receive very weak signals while at the same time, avoiding overload caused by very strong signals. The Ellipse Mix is a high-gain directional antenna designed to offer stable and high-quality reception of High VHF and UHF only in mid- to long-range receiving scenarios despite continuous changes in weather and transmitting conditions thanks to its built-in TForce amplifier. The triple boom design ensures maximum raw gain in a compact and install-friendly form factor suitable for outdoor or attic install. The Ellipse Mix assembles in less than 60 seconds. No additional preamplifier purchase is required as the antenna includes a built-in very low-noise TForce preamplifier with automatic gain control, plus FM and cellphone signal filtering adapting to any installation situation. A low-consumption UL®-listed power supply is included, providing 2 outputs for convenient distribution to additional TV sets.
Up to 75-mile range
Completely redesigned for reception of TV signals on RF channels 7-36-
Crystal clear TV reception enabled by a built-in TForce preamplifier that automatically adjusts its gain independently for VHF and UHF signals for an optimum no-compromise performance
Built-in TForce preamplifier continuously analyzes TV signals received by the antenna to provide the optimum gain and delivered signal level at all times
FM and LTE/5G filtering eliminates radio and cellular phone interference
Extremely lightweight and compact (38.8 in x 34 in x 27 in): it makes installation in challenging locations easier and offers lower wind resistance
Highest dynamic range; it allows the reception of a quality signal in a variety of situations, detecting very weak signals and avoiding overload with high reception levels
Optimal C/N: the signal quality is always preserved thanks to a very low-noise figure
Optimal gain: intelligence auto-adjusts the gain to the optimal level