
The confocal laser displacement sensor is primarily employed in the measurement of the thickness of metal flakes and thin plates. Its application is focused on accurately determining the distance between the sensor and the target surface, thus enabling precise thickness measurements. This sensor utilizes laser technology to provide reliable and high-quality data, making it suitable for various industrial applications. By rearranging the given content, we can emphasize the importance of this sensor in the realm of thin material thickness measurement.
FAQ
1.What is the measurement range and accuracy?
Measuring range 25-35MM, accuracy 0.01.MM
Measuring range 65-135MM, accuracy 0.01.MM
Measuring range 200-600MM, accuracy 0.4-0.8MM
2.What light source is it?
This is a description of a red semiconductor laser that falls under CLASS 2 with a maximum output power of 1mw and a luminescent wavelength of 660nm.
3.What is the measurement range and accuracy?
Measuring range 25-35MM, accuracy 0.01.MM
Measuring range 65-135MM, accuracy 0.01.MM
Measuring range 200-600MM, accuracy 0.4-0.8MM
4.What light source is it?
The red semiconductor laser is classified as CLASS 2 with a maximum output power of 1 mw and a luminescent wavelength of 660 nm. In other words, it emits a red light with a wavelength of 660 nm and has a power output of up to 1 milliwatt.
5What is the temperature of the ring mirror?
Sure, here is a rearranged version of the original text:
Please pay attention to the temperature range of 10℃~+45℃. It is important to avoid condensation and freezing in this range. However, when it comes to storage, the temperature range can be wider, between -20℃ and +60℃. It is crucial to note these temperature conditions to ensure the proper functioning and safety of the products.
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