Non-linear locator Lornet Star 36m

Non-linear locators LORNET STAR are designed to detect special technical means and other devices that contain semiconductor components. The pulse principle of operation, as well as various antenna modules, make this locator the most universal device, which has no analogues in the world.

Features
Work in absorbing environments with high humidity, detection of small-sized semiconductor elements and remote detection with spatial target selection
Reliable detection of SIM cards at a distance of 60 cm (with a 3600 MHz antenna module)
Universal control unit with replaceable receiving and transmitting units and an extendable rod

Main advantages
Automatic protection system against concentrated interference
Continuous mode for effective analysis of the nature of the semiconductor
Safe radiation level for the operator
Visual indication in operating mode
Convenient push-button control

Supplied kit
Lorgnet Star control handle
Replaceable telescopic rod
2 replaceable (LI-ION) batteries (12V)
Container for charging batteries
Charger from a 220V network for batteries
Antenna module of the 3600 MHz range
Transport Carrying bag
Documentation (operator's manual, passport)

Additional delivery of individual antenna modules is possible

Probing signal frequency in the range of 3600 MHz
Maximum probing signal power value (peak//average) Pulse mode 18 W//112 mW
Maximum probing signal power value (peak//average) Continuous mode -
Pulse mode with low duty cycle (CW) 6 W//375 mW
Receiver sensitivity, not worse than -110 dBm (-140 dBW)
Probing signal power adjustment range 20 dB
Dynamic range of the receiving path 24 dB
Battery life at maximum power in pulse (continuous) mode 2.5 hours (1.5 hours)
Product dimensions 40x20x20 cm
Dimensions of the telescopic rod 54x4x4 cm (86x4x4 cm)
Weight of the product in working condition without the rod 1000 grams
Dimensions of the packing bag 65x30x20 cm
Full weight of the product set in the packing bag 8 kg
Range of operating temperatures from +5° to +40°C
See also