LEEB TT300 Ultrasonic Thickness Gauge
Support known Film thickness anti-measurement sound speed, upper and lower limit alarm, data storage (2000 groups) and other functions. Equipped with a variety of probes, the measurement range can reach 0.75~ 350mm, support high temperature material measurement. Compact and portable, resistant to Impact and anti-interference, with LED backlight, automatic shutdown
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Introduction
Adopting the principle of ultrasonic measurement, it is suitable for the measurement of the thickness of materials in which ultrasonic waves can propagate at a constant speed and can be reflected from the back.
This instrument can accurately measure plates and processed parts. Another important aspect is that it can monitor pipelines and pressure vessels in production equipment, and monitor their thinning degree after being corroded during use. It can be used in petroleum, chemical industry, metallurgy, shipbuilding, aviation, aerospace and other fields.
The main function
For the known thickness of composite and unknown materials, back-measure the accurate sound velocity;
Set the upper and lower limit tolerances, and automatically alarm if they exceed;
Status prompt function.
Adjustable speed of sound;
Can store 2000 data;
With instrument calibration function;
With coupling status prompt function;
With high-brightness LED backlight display, it is convenient to use in dimly lit environments;
There is a remaining power indicator function, which can display the remaining battery power;
With automatic sleep, automatic shutdown and other power-saving functions;
Small, portable, high stability, suitable for harsh operating environments, anti-vibration, shock and electromagnetic interference;
Available in Metric and Imperial.
Applicable material
Suitable for measuring the thickness of metals (such as steel, cast iron, aluminum, copper, etc.), plastics, ceramics, glass, glass, fiberglass and other good conductors of ultrasonic waves.
Fundamental
The principle of ultrasonic measurement of thickness is similar to that of light wave measurement. The ultrasonic pulse emitted by the probe reaches the object under test and propagates in the object. When it reaches the material interface, it is reflected back to the probe. The thickness of the material under test can be determined by accurately measuring the time that the ultrasonic wave travels in the material.
Probe parameters
| name | model | Frequency (MHz) | Probe diameter | Measuring range | Minimum pipe diameter | Characteristic description |
| standard probe | L51 | 5 | 10mm | 1.0mm~250.0mm (steel) | Φ20mm×3.0mm | Use at room temperature (<60°C) |
| KK probe | kk | 5 | 10mm | 1.0mm~350.0mm (steel) | Φ20mm×3.0mm | Use at room temperature (<60°C) |
| Microbore Probe | L77 | 7 | 6mm | 0.7mm~50.0mm (steel) | Φ15mm×2.0mm | For thin wall and small arc surface, use at room temperature (<60°C) |
| Coarse grain probe | LZ2 | 2 | 22mm | 2.5mm~350mm (steel) | 20 | For the measurement of coarse-grained materials such as cast iron, used at room temperature (<60°C) |
| High temperature probe | LG5 | 5 | 14mm | 2.0~100mm (steel) | 30 | For the measurement of materials with temperatures below 300°C |
Leeb TT300 Ultrasonic Thickness GaugeSpecifications
| LIST | VALUE |
|---|---|
| Measuring range | 0.75~ 350mm (steel, determined by the probe) Standard probe Measurement range 1-250mm |
| Display resolution | 0.01mm |
| Sound speed range | 1000~9999m/s |
| storage | 2000 groups |
| Surface temperature | -10~60℃ |
| Error of indication | ± (1% H + 0.1) mm, H is the actual film thickness of the measured object |
| Power | AA type alkalinity battery (2 pcs) |
| Operation time | About 200 hours |
| Dimensions | 130×70×25mm |
| Weight | About 0.2kg (host) |
| Standard configuration | Main unit, L51 probe, AA alkalinity battery, coupling agent |
Leeb TT300 Ultrasonic Thickness Gauge Packing list
Host x1, operation manual x1
[Note] Because the manufacturer's packaging may be updated or upgraded, the detailed packaging list shall be subject to the latest standard configuration of the manufacturer.
FAQ
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