
NM01ABQC10250G
This is a precision-engineered, high-frequency ultrasonic transducer designed for advanced angle beam inspections in non-destructive testing (NDT) applications. The "Quick Change Fingertip Angle Beam" transducer, manufactured by CNDT, is optimized for detecting small flaws with exceptional resolution and ease of use in confined spaces.
Key Features:
Quick Change Capability: The transducer features a design that allows for rapid and efficient exchange, minimizing downtime during inspections. This is likely a specialized connector or mounting system.
Fingertip Design: The compact and ergonomic "fingertip" design enables easy handling and precise positioning, facilitating inspections in hard-to-reach areas.
High Frequency (10 MHz): Operating at 10 MHz, this transducer provides superior resolution for detecting minute flaws and discontinuities. High-frequency transducers are typically used for near-surface inspections.
Small Diameter (.25 inches): The .25-inch diameter allows for inspections of small components and access to confined areas.
Microdot Connector: The transducer utilizes a microdot connector, a standard small-sized coaxial connector commonly used in ultrasonic testing, ensuring reliable signal transmission.
CNDT Manufacturer: Manufactured by CNDT, a provider of NDT equipment and solutions.
Applications:
Weld Inspection: Detecting cracks, inclusions, and other defects in weldments.
Small Component Inspection: Inspecting intricate components in manufacturing and quality control.
Aerospace Inspection: Inspecting critical aerospace components for structural integrity.
Precision Flaw Detection: General angle beam inspections where high-resolution flaw detection is crucial.
Importance:
Enhanced Resolution: The high frequency enables the detection of very small discontinuities.
Improved Accessibility: The small size allows inspections in tight spaces.
Angle Beam Accuracy: The design provides precise angle beam control for accurate flaw detection.
Efficient Inspection: The quick change feature improves testing efficiency.