optoNCDT 1750 Micro-Epsilon Vietnam, Cảm biến laser optoNCDT 1750 Micro-Epsilon Vietnam
Nhà cung cấp: Pitesco
Hãng sản xuất: Micro-epsilon
optoNCDT 1750 Micro-Epsilon Vietnam, Cảm biến laser optoNCDT 1750 Micro-Epsilon Vietnam
The new optoNCDT 1750 laser sensor is designed for precise and high speed displacement, distance and position measurements. New evaluation algorithms and enhanced components provide highest accuracy and dynamics. The unique Real Time Surface Compensation (RTSC) feature enables measurements against a wide range of material surfaces. All optoNCDT 1750 models are operated using an intuitive web interface. The settings for the measurement task can be quickly selected using predefined presets. Due to its compact, robust design and different interfaces, the optoNCDT 1750 is ideal for industrial applications in automated machines and production plants.
- Measuring ranges (mm):
2 | 10 | 20 | 50 | 100 | 200 | 500 | 750 - Linearity max. 1,6 µm
- Adjustable measuring rate up to 7.5kHz
- Analog and digital outputs
- Compact size with integrated electronics
- Real-time adaption to changing surfaces (RTSC)
- Predefined and individual presets in web interface
Compact design with integrated controller
optoNCDT 1750 laser sensors are extremely compact and equipped with a completely integrated controller, enabling a straightforward, rapid mounting and wiring. Due to its extremely compact size, the laser sensors can easily be integrated into restricted installation space.
High performance in all measurement tasks
The optoNCDT 1750 is a new laser sensor with significantly increased performance:
- 3x higher measuring rate for fast measurement tasks
- 2x higher resolution
- Increase in linearity of 25%
The optoNCDT 1750 operates almost regardless of any material and color due to the RTSC surface compensation feature. The real-time surface compensation feature (RTSC) determines the amount of reflection from the target surface during continuous exposure and in real-time. The exposure time or the amount of light produced by the laser is optimally matched to the reflection characteristics of the target surface. This enables extremely reliable measurements even on reflecting surfaces.