【Effortless Alignment】The tv antenna signal strength meter is engineered to quickly align satellite dishes, enabling an effortless setup and enhancement of your satellite signal reception in just minutes.
【Sensitive Meter】Equipped with an extraordinarily sensitive meter, the Satellite Finder indicates even the slightest changes in signal strength. This precision ensures optimal alignment for superior reception accuracy.
【Illuminated Display】Designed with convenience in mind, our Tv Signal Strength Meter features an illuminated display, allowing for easy use at night or in low-light conditions, enhancing your experience during setup.
【Quality and Durability】Expect outstanding performance with the , engineered for exceptional efficiency and longevity, providing a trustworthy tool for all your satellite signal needs.
【Portable Design】The boasts a compact, pocket-sized design, ensuring easy portability. This convenience makes it simple to carry around for all your satellite alignment needs.
Description
Description:
The TV Antenna Signal Strength Meter is a professional digital satellite finder designed for quick and accurate alignment of satellite dishes. It operates within a frequency range of 950-2150 MHz and showcases an illuminated display for ease of use day or night. Weighing just 0.126kg and measuring approximately 11 * 6 * 3.5 cm, this portable meter allows users to set up their satellite system without the help of others, significantly simplifying the process. It provides accurate readings without needing recalibration, ensuring optimal satellite signal reception with minimal effort.
Specifications:
Frequency Range: 950-2150 MHz
Input Level: Max. -10 DBM, Minimum -40dbm
Insertion Loss: 5.0db
Power Supply: 13-18V dc
Size: Approx. 11 * 6 * 3.5 cm / 4.3 * 2.3 * 1.3 in
Weight: Approx. 0.126kg
Material: ABS + Metal
Color: White on Black
Package Included:
1 x Satellite Finder
1 x English Manual
Notes:
1. Please allow 1-3 cm error due to manual measurement.
2. Monitors are not calibrated the same; item color displayed in photos may vary slightly from the real object.