1570nm OPO Laser Rangefinder Module
Laser Rangefinder Module
Laser Seeker/Laser Guidance Heads
Laser Target Designator
1570nm OPO Laser Rangefinder Module
The 1570nm OPO laser rangefinder module leverages optical parametric oscillation technology to realize long-distance ranging capability from 8 km to 40 km.
Thanks to optimized optical path design, the module maintains consistent measuring stability amid complex outdoor environments. The platform supports customised interfaces, output modes and mechanical dimensions to adapt to airborne, vehicle-mounted and portable application schemes.
Laser Rangefinder Module
Erdi Laser offers 1535nm and 905nm laser rangefinder modules equipped with in-house developed diode-pumped solid-state microchip lasers. All modules conform to NATO standards and provide reliable ranging performance.
Embedded functions include self-testing, power-on auto activation, temperature collection and data transmission. Additional functionalities consist of three-target ranging, target indication before and after measurement, single/continuous ranging modes, adjustable baud rates and laser shot cumulative counting.
View More
Embedded functions include self-testing, power-on auto activation, temperature collection and data transmission. Additional functionalities consist of three-target ranging, target indication before and after measurement, single/continuous ranging modes, adjustable baud rates and laser shot cumulative counting.
Laser Seeker/Laser Guidance Heads
We have hundreds of models of Laser Seekers.
The laser tracking seeker is a key component of precision-guided weapons, which can track targets and guide weapons to hit. It consists of a laser detector, a signal processing module, and a tracking drive mechanism.
When working, the detector captures the laser signal reflected by the target, and the processing module analyzes the target position and movement trajectory. The drive mechanism then adjusts the direction to maintain continuous lock on the target. Its advantage is high tracking accuracy. Even if the target moves quickly or is interfered with, it can still track stably, and it has a fast response speed and is suitable for a variety of combat scenarios.
Currently, it is widely used in weapons such as air-to-ground missiles and anti-tank missiles, which greatly improves the strike effectiveness of weapons.
View More
The laser tracking seeker is a key component of precision-guided weapons, which can track targets and guide weapons to hit. It consists of a laser detector, a signal processing module, and a tracking drive mechanism.
When working, the detector captures the laser signal reflected by the target, and the processing module analyzes the target position and movement trajectory. The drive mechanism then adjusts the direction to maintain continuous lock on the target. Its advantage is high tracking accuracy. Even if the target moves quickly or is interfered with, it can still track stably, and it has a fast response speed and is suitable for a variety of combat scenarios.
Currently, it is widely used in weapons such as air-to-ground missiles and anti-tank missiles, which greatly improves the strike effectiveness of weapons.
Laser Target Designator
Manufactured by Erdi Tech LTD. The laser target designator incorporates state-of-the-art laser technologies to deliver precise distance detection and reliable target marking.
Serving as a dual-purpose optoelectronic unit, it plays a vital role in directing precision-guided ordnance onto designated targets and helps limit unintended collateral damage.
The system calculates target distance by measuring the round-trip travel time of reflected laser beams. Supported by this working principle, the module achieves low measurement deviation, outstanding operational stability and high ranging accuracy.
View More
Serving as a dual-purpose optoelectronic unit, it plays a vital role in directing precision-guided ordnance onto designated targets and helps limit unintended collateral damage.
The system calculates target distance by measuring the round-trip travel time of reflected laser beams. Supported by this working principle, the module achieves low measurement deviation, outstanding operational stability and high ranging accuracy.