The RIX Optics Pocket K3 night vision scope with advanced thermal imaging technology. Compact, lightweight, and equipped with a 384×288 sensor, 50Hz refresh rate, and detection range of up to 780 meters for clear observations day and night. Read more.
The RIX Optics Pocket K3 is an ultra-compact thermal imager that combines advanced technology with a surprisingly low weight of just 213 grams. Thanks to its handy size, it fits easily in your jacket pocket or backpack, ensuring you always have it within reach during hikes, hunting, nature observation, or security duties.
The Pocket K3 is equipped with a 384 × 288 thermal imaging sensor with a pixel pitch of 12 μm, a NETD < 25 mK, and a refresh rate of 50 Hz. This makes even minimal temperature differences accurately visible, while rendering moving objects smoothly and sharply.
For an even better viewing experience, the Pocket K3 features Electronic Image Stabilization (EIS). This technology reduces vibrations and motion blur during handheld use, ensuring you enjoy a stable image even during extended observations.
Text continues below the photo

The Pocket K3 continues to perform excellently even under challenging weather conditions. The built-in Weather Mode automatically optimizes image settings for rain, fog, and other difficult conditions, so you can always count on a clear and detailed thermal image.
The innovative integrated lens cap design prevents the lens cap from getting lost and makes opening and closing the lens easy with a single movement.
The bright 0.32-inch OLED screen with a resolution of 800 × 600 pixels delivers high contrast and rich details. Additionally, RIX’s exclusive Resolution Enhanced Technology (RET) ensures extra image sharpness through smart AI algorithms that improve details, especially during digital zoom.
Text continues below the photo

With its compact size, advanced image processing, and excellent thermal performance, the RIX Optics Pocket K2 is an ideal choice for anyone looking for a lightweight, user-friendly, and powerful thermal imager.
