LK-IR Series
Thermal Scope
- The battery life can reach up to 8 hours, and the battery replacement method is convenient and fast, which can meet the needs of all-day use.
- It has extremely strong cold resistance and can work normally in an environment of -30 °C.
- The anti-shock ability can reach up to 2000g.
- It adopts a new generation of auto-calibration technology without baffles, keeping the picture clear, smooth and free from lag all the time.
- It uses real-time noise reduction technology to provide a high-quality image experience.
- It adopts a larger 0.39-inch OLED display screen, allowing you to experience an ultra-wide viewing angle and ultra-clear picture quality.
- It has an IP67 waterproof and dustproof rating and can be used in more natural environments.
Application:
- Outdoor Hunting
- Animal Observation
- Outdoor Rescue
Product Features
Max Shock Resistance 2000g
JPNVision LK-IR series thermal imaging scope can withstand an impact of up to 2000g. In the field of hunting, whether it's accidental collisions encountered when moving through complex terrains or the recoil vibrations generated during the shooting process, the thermal imaging sights can stand the test and continuously provide hunters with clear, stable thermal imaging images and accurate aiming indications, which greatly improves the success rate and safety of hunting.
Shutterless Technology
JPNVision LK-IR series thermal imaging scope adopts a new generation of auto-calibration shutterless technology, completely getting rid of the stuttering problem and bringing users a silky-smooth and uninterrupted visual feast. It enables users to immerse themselves in every viewing and fully enjoy an unparalleled high-quality picture experience.
Real-Time Denoising
JPNVision LK-IR series thermal imaging scope adopts real-time denoising technology. Whether in environments with complex and changeable light conditions or in scenarios where the images are switched at a high speed, it can quickly and intelligently identify and eliminate all kinds of noise points, keeping the images pure, delicate and clear all the time, thus providing users with a high-quality image experience.
Operating Time 8H
JPNVision LK-IR series thermal imaging scope perform excellently in terms of battery life. Their battery can last for as long as 8 hours. During a long wild hunting trip, when it comes to the long-time stakeout and observation from dusk to dawn, there is no need to frequently worry about the battery running out and thus affecting the tracking and aiming of prey.
Working Normally at -30℃
JPNVision LK-IR series thermal imaging scope possess amazing cold-resistant performance. They can operate stably under extremely cold environments. Even in the freezing conditions as low as -30℃, they can still continue to work normally, providing explorers with clear and accurate thermal imaging pictures and helping them precisely locate targets in the vast snowfields.
IP67
JPNVision LK-IR series thermal imaging scope possess an IP67-rated waterproof and dustproof. They can operate stably under various harsh environments. Whether it's during an outdoor adventure in the pouring rain, in a desert operation scene with sand flying everywhere, or even when carrying out tasks deep in the misty and humid mountain forests, the thermal imagers can effectively resist the invasion of water and dust. Their precise internal structures are tightly protected and won't be damaged by short circuits due to water penetration, nor will the imaging accuracy be interfered with by the intrusion of dust.
NETD≤35mK
JPNVision LK-IR series thermal imaging scope have a Noise Equivalent Temperature Difference (NETD) of no more than 35mK. They possess an outstanding temperature resolution ability and can quickly detect and accurately identify the slight temperature changes in the surrounding environment.
0.39-inch OLED Display
JPNVision LK-IR series thermal imaging scope adopt a 0.39-inch OLED display screen, which can present image effects with high contrast and high brightness, enabling the thermal imaging pictures captured by the thermal imager to be vividly and clearly displayed on this screen.