CRYSOUND POCKET
Handheld Acoustic Imaging for Industrial Inspections
Visualize Leaks and Electrical Faults in Real-Time
The CRYSOUND POCKET is a high-performance, ultra-portable acoustic imaging camera that helps maintenance teams detect compressed air leaks and partial discharge (PD). By overlaying a live soundmap onto a digital image, it allows technicians to pinpoint sound sources instantly, document findings, and act with total confidence.
The POCKET is a rugged, “one-per-person” solution for fast deployment across any industrial site.

Key Capabilities
Main Applications
Non-Contact Efficiency
Locate leaks in compressed air, gas, or vacuum systems faster than traditional soap-bubble tests or manual probes. The POCKET is particularly effective for complex manifolds, overhead lines, and hard-to-reach fittings where physical contact is impossible or unsafe.
Rapid PD Screening
Identify potential Partial Discharge hotspots in switchgear, bus ducts, and insulators. The visual interface allows for quick localization of electrical issues, supporting faster maintenance planning and follow-up testing.

Built for the Modern Technician
Designed with a smartphone-like workflow, the POCKET requires minimal training. It features a 1.5 m drop-tested body and IP54 protection, ensuring it survives the rigors of daily field use in tight or elevated spaces.
Seamless Reporting Workflow
- One-Tap Capture: Save photos, videos, and audio directly to the 32 GB internal storage.
- Instant Sharing: Use the built-in WLAN hotspot and the Acoustic Link app to share results on-site.
- Standardized Reports: Export data via Wi-Fi or USB-C to generate professional inspection reports on your PC or mobile device.

High-ROI Fleet Deployment
The CRYSOUND POCKET is engineered for large-scale rollout. While specialized ultrasonic tools remain vital for deep diagnostics, the POCKET empowers every member of your team to perform “first-pass” inspections. This “one-per-person” approach shortens inspection cycles, reduces energy waste, and prevents costly downtime across multiple facilities.



