KJTDQ OMT550-R201-UEP-IO-0,3M-V1 Laser Sensor: Precision Measurement Redefined - KJT
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KJTDQ OMT550-R201-UEP-IO-0,3M-V1 Laser Sensor: Precision Measurement Redefined

  • time:2026-01-07 03:20:02
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In the demanding world of industrial automation and precision control, the reliability and accuracy of sensor technology are non-negotiable. The OMT550-R201-UEP-IO-0,3M-V1 laser sensor emerges as a pivotal solution, engineered to meet the rigorous requirements of modern manufacturing, logistics, and quality inspection processes. This device represents a significant leap in laser-based measurement, offering a blend of high performance, robust connectivity, and user-centric design that sets a new benchmark for operational efficiency.

At its core, the OMT550-R201-UEP-IO-0,3M-V1 is a laser distance sensor. The "0,3M" in its designation indicates a substantial measuring range, providing versatile application potential across various setups. Unlike conventional sensors, it utilizes a focused laser beam to deliver contactless, highly accurate distance measurements. This capability is crucial for applications where physical contact is impossible or undesirable, such as measuring hot surfaces, delicate materials, or rapidly moving objects on a production line. The precision afforded by this laser technology minimizes errors, reduces waste, and ensures consistent product quality.

A key feature of this model is its integrated IO-Link communication interface, denoted by the "UEP-IO" suffix. IO-Link is a standardized, point-to-point serial communication protocol that transforms a simple sensor into an intelligent, data-rich device. This is not merely a digital on/off switch. With IO-Link, the OMT550-R201-UEP-IO-0,3M-V1 can transmit detailed process data, such as exact distance values, directly to the control system. Furthermore, it allows for remote parameterization and configuration. Settings like the measuring window, response time, or switching thresholds can be adjusted on-the-fly from a central controller or HMI, drastically reducing downtime during product changeovers or maintenance. The "UEP" indicates a specific pin assignment and housing style, ensuring compatibility with standard M12 connectors and facilitating easy integration into existing industrial networks.

The robustness of the sensor is tailored for harsh industrial environments. It typically features a sturdy housing rated for high IP protection against dust and water ingress, ensuring reliable operation even in challenging conditions like machining workshops or outdoor logistics hubs. The laser source itself is designed for longevity and stability, maintaining calibration over extended periods and across varying temperatures. This durability translates directly into lower total cost of ownership by minimizing failures and the need for frequent replacements.

Practical applications for the OMT550-R201-UEP-IO-0,3M-V1 are extensive. In automated assembly, it can precisely position robotic arms or verify the correct placement of components. In packaging machinery, it can control fill levels or check the presence and height of items on a conveyor. In material handling, it assists in palletizing and depalletizing by accurately detecting stack heights. Its ability to provide analog or digital output (configurable via IO-Link) makes it adaptable for both precise monitoring and straightforward object detection tasks.

Choosing the right sensor impacts overall system performance. The OMT550-R201-UEP-IO-0,3M-V1 laser sensor stands out by offering not just measurement, but measurable intelligence. Its combination of a long-range laser, smart IO-Link communication, and industrial ruggedness provides engineers and system integrators with a powerful tool to enhance automation transparency, flexibility, and productivity. By delivering exact data where it's needed, it enables smarter decision-making and paves the way for more adaptive and efficient industrial operations, solidifying its role as a critical component in the landscape of Industry 4.0.

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