KJTDQ OMT550-R200-UEP-IO-V1 Laser Sensor Precision Measurement Solution - KJT
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KJTDQ OMT550-R200-UEP-IO-V1 Laser Sensor Precision Measurement Solution

  • time:2026-01-01 01:39:16
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In the demanding world of industrial automation and precision control, the reliability and accuracy of sensor technology are paramount. The OMT550-R200-UEP-IO-V1 laser sensor emerges as a critical component for engineers and system integrators seeking robust, high-performance measurement solutions. This device represents a significant advancement in photoelectric sensing, designed to meet the rigorous challenges of modern manufacturing, logistics, and quality inspection environments.

The core of the OMT550-R200-UEP-IO-V1 lies in its advanced laser triangulation principle. Unlike conventional sensors, it projects a highly focused, visible red laser spot onto the target object. The reflected light is captured by a precision receiver at a calculated angle. By analyzing the position of this reflected beam, the sensor can determine the exact distance to the object with exceptional accuracy. This method provides superior performance compared to diffuse reflection sensors, especially on objects with varying colors, textures, or surface finishes. The "R200" in its designation indicates a 200mm sensing range, offering flexibility for diverse application setups.

A standout feature of this sensor is its integrated IO-Link communication protocol, denoted by the "UEP-IO" suffix. IO-Link transforms the sensor from a simple data provider into a smart, configurable device. Through a point-to-point serial connection, it enables bidirectional communication. Users can not only read the measured distance value but also remotely configure parameters such as switching thresholds, response time, and teaching modes directly from the PLC or controller software. This drastically reduces downtime for setup changes and allows for advanced condition monitoring and predictive maintenance, as the sensor can report operating status and health metrics.

The construction of the OMT550-R200-UEP-IO-V1 is engineered for industrial durability. It typically features a rugged metal housing rated for high IP67 or IP69K protection, making it resistant to dust, water jets, and harsh cleaning chemicals. This resilience ensures stable operation in environments like automotive assembly lines, food and beverage processing, and outdoor machinery. Its precise measurement capability is unaffected by ambient light interference, thanks to sophisticated optical filtering and evaluation algorithms.

Practical applications for this laser sensor are extensive. In automated production, it is indispensable for precise height detection, contour profiling, and presence verification of components on a conveyor. It can reliably measure the fill level of transparent bottles or the thickness of materials like glass or plastic sheets. In robotic guidance systems, it provides accurate positioning feedback for pick-and-place operations. The combination of analog output for continuous distance data and digital switching outputs for limit detection makes it versatile for both monitoring and control tasks.

Integration into existing control systems is straightforward. The IO-Link interface simplifies wiring and allows for seamless data exchange with all major PLC platforms. The visible laser spot also facilitates easy alignment and teaching during installation, saving valuable commissioning time. For maintenance personnel, the diagnostic capabilities offered through IO-Link mean quicker troubleshooting and reduced machine downtime.

Selecting the right sensor is crucial for system performance. The OMT550-R200-UEP-IO-V1 laser sensor is specifically suited for applications requiring micron-level accuracy at a medium range. Its design prioritizes consistency, durability, and smart functionality. When evaluating options, engineers should consider this model for tasks where environmental robustness, precise measurement independent of surface color, and the benefits of digital parameterization and diagnostics are required. It stands as a reliable tool for enhancing quality control, optimizing processes, and building more intelligent, data-driven industrial systems.

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