Categories

HERTZINNO HA3A Handheld Acoustic Camera: 100kHz Precision for Gas Leak

This deep-dive introduces the HERTZINNO HA3A, a third-generation acoustic imaging camera. Explore how its 128-channel MEMS array and 150m long-range detection redefine efficiency in gas leak localization and predictive maintenance for industrial professionals.
Mar 17th,2026 50 Views
In the clamor of a chemical plant or the high-decibel environment of a substation, identifying a gas leak or equipment fault used to be like finding a needle in a haystack. The HERTZINNO HA3A Handheld Acoustic Camera has fundamentally transformed this landscape. This device integrates an optimized 128-channel low-noise MEMS microphone array, creating a powerful "acoustic ear," paired with a 13 MP optical camera and a 5-inch high-definition industrial touch screen to give engineers unparalleled "eyes and ears" in the field.

When pointed at a target, the HA3A’s core AI algorithms process acoustic signals in real-time, overlaying sound as a vivid color "cloud map" onto the visible light image. Whether it is pinpointing a minute leak from 150 meters away or identifying abnormal sound signatures across a broad frequency spectrum from 2kHz to 100kHz , the HA3A delivers with precision. Its ±1° localization accuracy ensures that even in complex environments, dense acoustic sources are clearly differentiated.



Beyond simple visualization, the HA3A is designed for intelligent diagnosis. The device supports one-click analysis and instant report forwarding, while built-in AI models assist on-site personnel with leak rate estimation and mechanical fault diagnosis. Weighing less than 1.2 kg and supporting PD fast charging, the HA3A enables up to 7 hours of high-intensity inspections. This "point-and-shoot" simplicity combined with industrial-grade precision forms the first line of defense for intelligent industrial safety.
Leave a message
Your Name*
Company Name*
Email*
Message*
Country*
Code*
Verification Code
We use Cookie to improve your online experience. By continuing browsing this website, we assume you agree our use of Cookie.