The UIG Watch Detector by GER Detect, the smallest ground scanner using nanotech imaging for detecting metals, voids, and treasures to depths of 20 meters/65.6 ft. Ideal as a compact and powerful ground scanner.

Combines multiple scanning systems (Live Scan, Wall Live Scan, 3D Imaging) in one compact device.
Capable of detecting underground structures, metals, and voids up to 20 m deep.
Weighs under 90 grams, making it one of the most concealable scanners on the market.
Integrates advanced nanotech methods to boost sensitivity in target detection and imaging.
Supports multiple languages (English, German, Spanish, Arabic, etc.) and holds CE / ISO certifications.
The UIG Watch represents the first patented invention utilizing nanotechnology. Designed for locating precious metals, treasures, artifacts, tunnels, passages, caves, and underground voids, it combines three advanced detection and imaging technologies into a single device.
The GER Detect UIG 3D Watch Detector leverages cutting-edge nanotechnology to provide precise detection of precious metals, hidden treasures, artifacts, tunnels, voids, and underground structures. This advanced device integrates three distinct detection and imaging systems, delivering comprehensive 3D analysis in a single, portable tool for expert use.
The UIG Watch detector facilitates efficient exploration and detection of precious metals, treasures, archaeological artifacts, tunnels, caves, and underground voids. It also delivers precise scanning of ancient walls and monuments, reaching depths up to 20 meters. With the capability to measure depth in meters and centimeters, it provides high accuracy in differentiating between metals and voids.
This system provides a rapid scan of the target site and directly identifies the shape of the buried target or void.
It is used for fast and direct searches for metals, voids, and ancient treasures behind the wall.
Many innovative technical specifications have been recently introduced to this system.
Professional metal detectors are designed to detect metals that have been buried for many years by identifying subtle changes in the surrounding environment caused by these metals.
These advanced detectors utilize a combination of technologies, including bio-energy interaction, ionization sensing, electromagnetic field detection, microprocessor-based analysis, detection of long-term soil disturbances, and sensor fusion. The longer a metal object remains buried, the stronger its ionization field and electromagnetic signature, making it easier to detect over time.