Wenglor YP05MGVL80 Laser Distance Sensor High Precision

The Wenglor YP05MGVL80 Laser Distance Sensor High Precision is a high-end measurement solution specifically engineered for automated industrial processes requiring microscopic accuracy. Combining laser triangulation with advanced CMOS line technology, this sensor provides exceptionally stable distance readings within a 60 mm measuring range, regardless of the target’s material properties or color.

Description

The Wenglor YP05MGVL80 Laser Distance Sensor High Precision operates based on the high-resolution principle of laser triangulation. The sensor projects a fine red laser beam onto an object, while the reflected light is detected by a built-in CMOS line. This allows the device to calculate distances with an impressive linearity deviation of just 0.1%. With a working range of 50 to 110 mm, it is optimized for sensitive applications where consistent measurement is paramount.

Performance and integration versatility are key strengths of the Wenglor YP05MGVL80 Laser Distance Sensor High Precision. It features a switching frequency of 1,000 Hz and a response time of less than 0.5 ms, making it capable of tracking fast-moving components without compromising data integrity. The sensor provides an analog output (0…10 V / 4…20 mA) and two switching outputs (PNP), allowing it to communicate seamlessly with various PLC systems. Alignment is made simple by the visible Class 1 laser beam, while sensitivity can be fine-tuned via a high-precision potentiometer.

Brand

Wenglor

Wenglor

Technology that moves in over three decades of wenglor sensoric. On this interactive journey through time, we researched deep into wenglor’s archives and have tracked the history of the company since the eighties – starting in an attic and growing into a global corporation.

The innovative company for smart sensor and image processing technologies. Many patented product and system solutions are used in countless automated industries worldwide. Constant growth, outstanding products and excellent corporate governance qualify wenglor as a top employer in the SME sector.

Specification

Optical Data

  • Working Range: 50 … 110 mm

  • Measuring Range: 60 mm

  • Linearity Deviation: 0.1 %

  • Light Source: Laser (Red)

  • Wavelength: 655 nm

  • Service Life (T = +25 °C): 100,000 h

  • Laser Class: 1

  • Max. Ambient Light: 10,000 Lux

  • Light Spot Diameter: 0.8 mm

Electrical Data

  • Supply Voltage: 18 … 30 V DC

  • Current Consumption (Ub = 24 V): < 30 mA

  • Switching Frequency: 1,000 Hz

  • Response Time: < 0.5 ms

  • Temperature Drift: < 20 µm/K

  • Temperature Range: -25 … 50 °C

  • Analog Output: 0…10 V / 4…20 mA

  • Switching Outputs: 2

  • Switching Output Voltage Drop: < 2.5 V

  • PNP Switching Output/Switching Current: 100 mA

  • Protection Class: III

Mechanical Data

  • Setting Method: Potentiometer

  • Housing Material: Plastic

  • Degree of Protection: IP67

  • Connection: M12 × 1; 8-pin

  • Optic Cover: PMMA

  • Weight: 40 g

Features

  • Microscopic accuracy with a linearity deviation of 0.1%.
  • Stable performance on diverse surfaces thanks to CMOS line technology.
  • High-speed data acquisition with a 1,000 Hz switching frequency.
  • Visible Class 1 Red Laser for safe operation and effortless alignment.
  • Flexible output options: Analog (0…10 V / 4…20 mA) and dual switching outputs.
  • Robust IP67 plastic housing designed for rigorous industrial use.
  • Precise configuration using an integrated potentiometer.
  • Comprehensive electrical safeguards including short circuit and reverse polarity protection.

Applications

The Wenglor YP05MGVL80 Laser Distance Sensor High Precision is designed for the most demanding technical sectors:

  • Automotive Industry: High-precision gap measurement and component positioning.
  • Electronics Assembly: Verifying the height and presence of microscopic parts on PCBs.
  • Packaging and Food: High-speed fill level monitoring and precise container alignment.
  • Wood and Metal Working: Precise thickness measurement and surface profiling during production.