Overview
DGC DC-1000C Ultrasonic Thickness Gauge is a simple and economical Ultrasonic Thickness Gauge. It uses microprocessor technology and ultrasonic Measurement principle, which can be applied to the thickness measurement and sound speed measurement of various ultrasonic good conductor materials. Measurement range is 0.7mm~ 400.0mm, with automatic shutdown function, and can display four-digit measurement data.
Features
1. Economical and practical, simple and easy to use
2. Measurement accuracy with microprocessor technology
3. Measurement range up to 0.7mm~ 400.0mm
4. With automatic shutdown function, energy saving and environmental protection
5. Four-digit LCD display, clear and intuitive data
6. A variety of Probes can be selected to adapt to different measurement needs
7. Chinese Operating interface, easy to use
Principle
Based on the ultrasonic Measurement principle, DC-1000C Ultrasonic Thickness Gauge uses microprocessor technology to calculate the propagation time of ultrasonic waves in materials by emitting ultrasonic waves and receiving received wave signals, so as to accurately measure the thickness and speed of sound of materials.
Applications
Thickness measurement and sound velocity measurement of various ultrasonic good conductor materials such as metal and steel
Steps
1. Press the power switch button to start the instrument
2. Zero point calibrating under the measurement interface
3. Choose the right Probe for measurement
4. Perform relevant settings through the menu key
5. After the measurement is completed, press the return button to return to the measurement interface
6. The instrument will automatically shut down after 2 minutes
Notice
• Probe contact temperature should be below 60 ° C
• Ambient Temperature -20~ 60 ℃
• Powered by 2 AA batteries
• In addition to the standard Probe, Miscellaneous Probe needs to be purchased separately
• Pay attention to the battery level display and replace the battery in time
• Zero point should be calibrated before measurement
• Probe based on measurement material