Category

Through-Beam Edge Sensor

Through-Beam Edge Sensor

SinceVision provides high-speed, non-contact alignment sensors for precision edge and width detection. Utilizing an advanced through-beam optical structure, our sensors ensure stable measurement of challenging materials where traditional sensors fail.

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SE1 Series
SE2 Series
  • Measuring range(mm) (mm)

  • Installation distance of sensor heads(mm) (mm)

  • Spot size(mm) (mm)

  • Linearity

  • Repeatability(μm) (μm)

  • Sampling period(μs) (μs)

  • Weight

  • Product Status

Model Measuring range(mm) (mm) Installation distance of sensor heads(mm) (mm) Spot size(mm) (mm) Linearity Repeatability(μm) (μm) Sampling period(μs) (μs) Weight Product Status Compare Favorites
SE2-024K2 ±12 Max.200 5*29 ±0.4%F.S.(±96μm) 50 500 80mm*33mm*15mm/64g Published
SE1-010K4 ±5 Max.300 3*14 ±0.4%F.S.(±40μm) 5 250 Transmitting head and receiving head: 35g each (including 300mm cable) Published

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FAQs

  • 1. What is a Through-Beam Edge Sensor?

    A through-beam edge sensor is a high-precision, non-contact photoelectric measurement system consisting of a separate emitter and receiver placed opposite each other. Unlike standard sensors that simply detect presence, these industrial-grade devices monitor minute interruptions in a light beam to calculate the exact position, width, or diameter of a material.

    In modern industrial automation, such as the SinceVision SE Series, these sensors utilize a specialized contrast structure and high-speed CMOS technology to provide real-time data for edge control and web guiding, even on challenging materials.

  • 2. What is the primary function of a through-beam edge sensor?

    SinceVision through-beam edge sensor is a non-contact measurement device designed for the real-time detection of material edge positions, widths, and diameters. It utilizes a contrast structure to capture minute changes in an object's edge, ensuring high precision in automated production lines.

  • 3. Can these sensors detect transparent or highly reflective materials?

    Yes. The SE series is specifically engineered for stable detection of complex materials, including transparent films, translucent battery separators, and high-reflectivity surfaces. This makes them ideal for the lithium battery and film processing industries where standard sensors often fail.

  • 4. What are the key differences between the SE1 and SE2 series?

    SE1 Series (Ultra-Precision): Designed for high-speed, high-accuracy tasks. It features a 4kHz sampling frequency and 5μm repeatability with a 10mm measurement range.

    SE2 Series (Large Range & Scalable): Optimized for cost-efficiency and wide materials. It offers a 24mm measurement range, 2kHz sampling, and supports a one-to-four configuration where one module manages four sensor heads.

  • 5. How does the "One-to-Four" configuration benefit production?

    Available with the SE2 series, this configuration allows a single EtherCAT module to connect to four sensor heads. This architecture eliminates the need for individual AD conversion modules, significantly reducing procurement costs and simplifying wiring for large-scale production lines.

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