POWERFUL THERMAL CORE, UNRIVALED SENSITIVITY - Leveraging years of experience creating the industry's most innovative technologies, the SIG SAUER ECHO MV35 is a compact thermal monocular, powered by an LWIR 640x512 VGA, 12um thermal core with a 50Hz refresh rate and <20mK sensitivity that allows you to identify targets in total darkness; The 35mm thermal lens paired with 2-16x digital zoom delivers sharp detection at range and precision close-up scanning
REAL-TIME PHOTO & VIDEO RECORDING - Compatible with SIG SAUER's BDX 2.0 Mobile App, the thermal vision monocular can capture both photo and video (with audio) that can be viewed or shared in real-time via the app; Maximize the potential of your thermal optic by pairing it with a smartphone through the SIG Ballistics app (BDX 2.0), enabling seamless downloads of recordings, live video streaming & software updates
FULLY CUSTOMIZABLE OLED DISPLAY - Users can choose from 8 selectable color palettes for optimized visibility across diverse environments; The OLED display provides a suite of precision image controls, letting operators tailor display brightness to specific conditions, adjust tone for warm or cool thermal rendering, switch between multiple color palettes, enhance contrast to expand dynamic range, and refine sharpness
COMPACT DESIGN, EXTREME DURABILITY, SHARP OPTICS - This durable thermal target spotting monocular performs in the toughest field conditions, featuring IP67 waterproofing to repel rain, dust, and moisture while maintaining reliable operation, while its LensArmor abrasion-resistant lens coatings keep optics sharp, bright & crystal-clear; Its compact 7-inch length & 2.4-inch diameter dimensions balance ergonomics, portability and a secure, comfortable grip
10-HOUR RUNTIME, SMART POWER MANAGEMENT - Engineered for endurance, this night hunting monocular delivers up to 10 hours of continuous runtime, supporting extended missions and overnight use; The integrated MOTAC motion-activated auto-shutdown system conserves power by shutting down automatically when inactive and instantly reactivates upon detecting movement, extending operational efficiency