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A simple configuration with a built-in interferometer, providing high resolution and high precision laser length measuring instrument.

LV-9300 Laser Length Meter Unit, LV-9001 Laser Length Meter Sensor

1ch length measuring device/2ch length measuring device

LV-9300 Laser Length Meter Unit, LV-9001 Laser Length Meter Sensor

Simple structure with integrated interferometer
Measurement range up to ±5 m
Maximum 1 MHz sampling
High-speed response supporting 2.5 m/s
±1 m: resolution 0.618 nm,
±5 m: resolution 2.5 nm
High displacement resolution
The LV-0930 dynamic characteristics analysis software allows for high-speed response at a sampling frequency of 1 MHz, displaying movement trajectories, vibration trajectories, and other data graphically.
USB 2.0 digital output is included as standard.

The newly developed LV-9300/LV-9001 is a high-precision, high-speed response non-contact length measuring system that measures linear displacement using He-Ne laser light. Its simple configuration with a built-in interferometer allows for quick and easy installation. It excels in high-precision positioning measurement, from OA equipment such as printers, scanners, and copiers to dynamic characteristic analysis of machines with precision positioning mechanisms, such as machine tools and moving stages. Furthermore, using the LV-0930 displacement analysis software option, measurement data can be read via USB output, enabling dynamic characteristic analysis of the object's movement trajectory and overshoot during stopping, as well as positioning accuracy testing compliant with ISO230-2, at a sampling frequency of up to 1 MHz. The laser length measuring system can be configured as a 1-channel or 2-channel length measuring system for pitching & yawing and differential measurement by combining units.

The information on this page is based on the information available at the time of publication.
Please note that if product sales are discontinued, organizational changes are made, or specifications are changed after publication, the information may differ from the latest information.

This page is created by an automatic translation system based on the information in the Japanese version. Details