SensoPart FR 25-RGO-PS-M4M Photoelectric Sensor - Contator,disjuntor,sensor,Codificador,CLP,Conversor

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SensoPart FR 25-RGO-PS-M4M Photoelectric Sensor - Contator,disjuntor,sensor,Codificador,CLP,Conversor

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SensoPart FR 25-RGO-PS-M4M Photoelectric Sensor

Pedido nº.: 606-11016 Model Code Definition FR: Retro-reflective sensor, specially designed for transparent object detection (autocollimation principle) 25: F25 series, compact housing 34×20×12 mm RGO: Transparent object detection variant, red LED PS: PNP output M4M: M8 4-pin metal male connector Key Specifications Item Parameter Detection Principle Autocollimation retro-reflective photoelectric (for transparent bottles / films) Luz ...

  • Detalhes do produto

Pedido nº.: 606-11016

Definição de código de modelo

França: Retro-reflexivo sensor, specially designed for transparent object detection (autocollimation principle)

25: F25 series, compact housing 34×20×12 mm

RGO: Transparent object detection variant, LED vermelho

PS: Saída PNP

M4M: M8 4-pin metal male connector

Especificações principais

ItemParâmetro
Princípio de detecçãoAutocollimation retro-reflective photoelectric (for transparent bottles / films)
Fonte de luzRed LED
Working Range0~2000mm (with RF-100 KL reflector)
Tensão de alimentação10…30 VCC
SaídaSaída de comutação PNP
Frequência de comutação1000 Hz
AjusteTeach-in programming
Classe de ProteçãoIP67 / IP69K
Temperatura operacional-20℃ ~ +60 ℃
Material da HabitaçãoGlass-fiber reinforced plastic
Conexão de caboM8 4-pin metal plug
Recurso EspecialDELTA dynamic threshold, immunity to dust and dirt interference

Descrição do produto

F25 series transparent-object retro-reflective photoelectric sensor adopting autocollimation optical principle. It reliably detects glass bottles, Garrafas PET, transparent plastics and transparent films, which are difficult for conventional retro-reflective sensors.

The DELTA function dynamically adapts to light intensity variation, preventing false triggering caused by dust and water mist; clear light spot, simple alignment during installation.

1st generation product, without IO-Link. Upgrade alternative model: FR 25-RGO-PNSL-M4M (606-11052, with IO-Link)

Aplicações Típicas

Linhas de embalagem: Presence detection of transparent PET bottles and glass bottles

Film winding lines: Break / missing detection of transparent films

Comida & embalagens farmacêuticas: Detection of transparent containers

Wash-down environments: IP69K rated, suporta lavagem de alta pressão

Atribuição de alfinetes (M8 4-pin male)

  1. Marrom: +10~30V CC
  2. Preto: PNP output Q
  3. Azul: 0V GND
  4. Branco: Teach-in input

Recommended Reflector

RF-100 KL (original matched reflector, dedicated for transparent object detection)

Opções alternativas

  1. Same-series upgrade: FR 25-RGO-PNSL-M4M (Link IO, read diagnostics and temperature)
  2. Same principle compact alternative: FR25-RGO-PS-M4 (M8 4-pin plastic plug version)

Solução de problemas

  1. Unstable detection of transparent bottles: Verify reflector model; standard reflectors cannot be used for autocollimation transparent detection; perform Teach-in again.
  2. Occasional false switching: Lente / reflector contaminated; DELTA resists slow contamination drift but heavy oil fouling will still cause failure.
  3. Sem saída: Check power supply and wiring polarity; confirm successful Teach-in.

List of Original SensoPart Reflectors Compatible with FR25-RGO-PS-M4M

⚠️ Importante: FR25-RGO is an autocollimation photoelectric sensor dedicated to transparent objects. Standard photoelectric reflectors are NOT permitted. Only SensoPart KL-series reflectors can be used. Ordinary corner-cube reflectors will lead to unstable bottle detection and false switching.

Reflector ModelNúmero do pedido.Effective Sensing RangeDescriçãoPrioridade de recomendação
RF-100 KL904-516440~2000mmStandard factory reflector, reference reflector for FR25-RGO datasheet; square KL autocollimation film, supports zero-distance mounting, first choice for PET/glass bottle applications✅ Preferred
R5/L904-515430.5~2000mmRound cased reflector, minimum mounting distance 0.5 eu; suitable for compact space where distance ≥0.5 m✅ Secondary option
R2-2LB1904-515950~500 mmSmall square cased reflector, only for short range ≤0.5 m, small light spot close-range applications⭕ Short-range only
R3-2LK1904-515960~500 mmStrip small cased reflector, ≤0.5 m mounting for narrow installation space⭕ Short-range only
RF-230 KL-0~2000mmLarge-size KL autocollimation film; for long distance, heavy vibration and difficult alignment to increase receiving spot area⭕ Backup option

Diretrizes de seleção

  1. Detecção de objetos transparentes (Garrafas PET, garrafas de vidro, filmes transparentes): Prioritize RF-100 KL. Only KL coated reflectors match the autocollimation principle of this sensor; standard R-type reflectors cause missing detection of transparent workpieces.
  2. Mounting distance>0.5 m: RF-100 KL / R5/L
  3. Mounting distance<0.5 m: R2-2LB1 / R3-2LK1
  4. Ambiente hostil (high-pressure washdown IP69K): Prefer hard-cased R5/L, R2-2LB1, R3-2LK1 to protect reflective layer; RF-100 KL is adhesive film and needs extra protection.

Warning on Non-Compatible Parts

Standard triangular corner-cube reflectors (for conventional retro-reflective sensors) cannot be used with FR25-RGO. The autocollimation optics rely on special KL coating. Ordinary reflectors lead to transparent detection failure: bottles pass without signal change, random toggling when no workpiece present.

Instalação & Teach-in Instructions

Teach-in must be re-executed after reflector replacement

Teach-in procedure: Perform one teach cycle with clear optical path (sem peça de trabalho); perform second teach cycle with transparent workpiece blocking beam to activate DELTA dynamic threshold.

FR25-RGO-PS-M4M Reflector Selection Sheet (Procurement Version)

Applicable to SensoPart FR25-RGO autocollimation transparent-object photoelectric sensor; KL dedicated reflectors only, standard triangular reflectors prohibited

Reflector ModelNúmero do pedido.DimensãoEffective Working RangeEstrutura
RF-100 KL904-51644100×100mm0~2000mmSelf-adhesive flexible KL reflector film, cuttable
R5/L904-5154351×61mm500~2000mmHard encapsulated KL reflector
R2-2LB1904-5159520×32mm0~500mmSmall hard-cased reflector
R3-2LK1904-5159620×30mm0~500mmStrip hard-cased reflector
RF-230 KLN / D230×230mm0~2000mmLarge self-adhesive KL reflector film

Matching Mounting Brackets (Sensor + Refletor)

Sensor Brackets for FR25 Series

  1. MS F 20: Standard angle bracket with fasteners, universal for F25 sensors, mais amplamente utilizado
  2. SensoClip F25 (MBD F25ST2): Dovetail quick-mount bracket for fine beam alignment adjustment
  3. SensoClip F25 (MBD F25STP): With protective shield for dusty / washdown environments

No universal factory brackets for reflectors. Hard-cased R5/L, R2-2LB1, R3-2LK1 can be fixed via sheet metal holes and screws. RF-100 KL adhesive film can be stuck on flat substrate; add pressure plate for heavy vibration applications.

Selection Decision Rules (For Field Engineers)

  1. Garrafa transparente / filme, distance>0.5 m, normal environment → RF-100 KL
  2. Garrafa transparente, distance>0.5 m, washdown / pó / heavy vibration → R5/L
  3. Mounting distance<0.5 m, tight space → R2-2LB1 / R3-2LK1
  4. Longa distância, beam prone to misalignment → RF-230 KL

Notas importantes (Aquisições & Comissionamento)

  1. Re-run Teach-in and activate DELTA dynamic threshold after any reflector change
  2. ❌ Conventional retro-reflective corner-cube reflectors are forbidden, will cause missing detection and random signal toggling of transparent workpieces
  3. RF-100 KL is adhesive film. Add acrylic protective cover in high-pressure washdown applications to prevent film aging and peeling
  4. Teach-in steps: First teach with unobstructed beam path; second teach with transparent workpiece inserted into beam path

One-line Procurement Remark

FR25-RGO series works on autocollimation principle. SensoPart KL coated reflectors are mandatory. Generic photoelectric reflectors are not interchangeable. RF-100 KL is standard for most projects, R5/L preferred for washdown lines.

Working Principle of Autocollimation Retro-reflective Photoelectric Sensors for Transparent Objects (SensoPart FR25-RGO type)

Conventional retro-reflective sensors: Light emits to ordinary corner-cube reflector and returns along original path. Transparent objects (Garrafas PET, films) transmit most light with little reflection. The sensor cannot detect objects and missing detection occurs. Autocollimation optics is specially developed to solve this problem.

  1. Basic Optical Configuration

Inside the sensor: Transmit lens + Receive lens, arranged coaxially (autocollimation = shared optical axis for transmit and receive)

Must pair with KL special coated reflector, not ordinary corner-cube reflector.

  1. Red light from LED travels along coaxial axis to KL reflector
  2. KL reflector characteristic: returns incident light strictly parallel and anti-parallel to incoming direction (retroreflection)
  3. No transparent workpiece in beam: Light returns to receiver with high intensity → sensor judges No object
  4. Core Change when Transparent Workpiece Enters Beam Path

When transparent workpiece (PET wall, transparent film) sits between sensor and reflector:

Refraction + minor reflection occurs at transparent medium; light propagation angle changes when passing through transparent material

KL reflector still reflects light, but refracted and offset beam no longer returns along original coaxial axis to sensor receiving window

Light energy reaching photodetector drops sharply

Sensor detects reduced light intensity → judges Object present

✅ Core Comparison

Ordinary retro-reflective sensor: Detection by light blockage. Transparent material cannot block light; signal barely changes → detection failure

Autocollimation transparent-type retro-reflective sensor: Not relying on light blocking. It detects reduction of returned light caused by beam refraction offset at transparent medium. Any transparent workpiece with refractive index difference (air ↔ plastic/glass) can be detected.

  1. DELTA Dynamic Threshold (Algorithm for FR25-RGO)

Pó, water mist and reflector aging slowly reduce overall return light intensity.

DELTA does not use fixed threshold; it continuously monitors baseline background light intensity and responds only to rapid light intensity change caused by workpiece, filtering slow drift from contamination and temperature to reduce false triggering.

This is why two-point Teach-in is required:

① Empty beam path: Record baseline return light level (background)

② Insert transparent workpiece: Record return light level with workpiece

Sensor calculates difference between the two values as switching threshold.

  1. Why KL Reflector Cannot Be Replaced by Ordinary Reflector?

Ordinary corner-cube reflector: Wide-angle reflection. Even if incident angle shifts, sufficient light still returns to receiver.

When transparent workpiece refracts light, ordinary reflector still sends enough light back. Signal difference between present / absent bottle is minimal, and workpiece cannot be distinguished.

KL reflector: Narrow-angle retroreflection, highly sensitive to incident angle. Tiny refraction offset will sharply reduce returned light, perfectly matching the detection logic of autocollimation optics.

  1. Limitações (Key for Commissioning)
  2. Transparent workpiece cannot be placed tightly against reflector or sensor. Too small gap results in insufficient refraction offset and weak light attenuation, leading to unstable detection. Maintain proper clearance.
  3. Heavy oil / limescale on workpiece surface alters refractive index and impairs detection.
  4. Multiple stacked transparent layers create multiple refraction events; re-Teaching and evaluation required.
  5. Curved transparent workpiece (round bottle wall): Beam incident angle varies with position; align light spot onto flat bottle wall area.

One-sentence Summary of Principle

Coaxial transmit/receive autocollimation optics paired with KL narrow-angle retroreflector; detection does not depend on blocking light, but uses refractive index difference between transparent medium and air to deflect light beam and reduce returning light energy for transparent object identification. DELTA algorithm suppresses slow light drift caused by dust.

 

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