Pepperl+Fuchs 131566 Senzor fotoelectric reflectorizant - Contactor,întrerupător de circuit,senzor,Codificator,PLC,Converter

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Pepperl+Fuchs 131566 Senzor fotoelectric reflectorizant - Contactor,întrerupător de circuit,senzor,Codificator,PLC,Converter

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Pepperl+Fuchs 131566 Senzor fotoelectric reflectorizant

Alternate Designations: HDM-NR-287-523-01-00 / Heidelberg OEM Part ZD.287-523-01-00 Basic Information Pepperl+Fuchs Order No.: 131566 P+F Internal Model: ST-H.1-19,5 Heidelberg Machine Part No.: HDM-NR-287-523-01-00 (ZD.287-523-01-00) Tip de produs: Diffuse-mode photoelectric sensor (photocell) Target Application: Heidelberg Stahlfolder folding machine, sheet-presence detection for printing equipment. Custom OEM-only variant; no public datasheet available on Pepperl+Fuchs official website. Țara de origine: ...

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Alternate Designations: HDM-NR-287-523-01-00 / Heidelberg OEM Part ZD.287-523-01-00

Informații de bază

Pepperl+Fuchs Comanda nr.: 131566

P+F Internal Model: ST-H.1-19,5

Heidelberg Machine Part No.: HDM-NR-287-523-01-00 (ZD.287-523-01-00)

Tip de produs: Diffuse-mode senzor fotoelectric (photocell)

Target Application: Heidelberg Stahlfolder folding machine, sheet-presence detection for printing equipment. Custom OEM-only variant; no public datasheet available on Pepperl+Fuchs official website.

Țara de origine: Singapore

Greutate: aproximativ. 30 g

Electric & Specificatii mecanice

  1. Tensiune de alimentare: 10…30 VDC
  2. Conexiune: M12-pin male connector
  3. Locuințe: Compact square PBT plastic housing with two mounting screw holes
  4. Clasa de protectie: IP67
  5. Indicatori: Dual-LED (putere, switching status)
  6. Ieșire: PNP, short-circuit protected
  7. Temperatura de operare: -25 … +55 ℃

Codul modelului Explicația

131566: Pepperl+Fuchs OEM part number

ST-H.1-19,5: Internal sensor series designation

HDM-NR-287-523-01-00: Heidelberg machine-specific part number, not a Pepperl+Fuchs model; printed on printing-machine accessory labels.

Repara & Note de achiziție

  1. This is a custom OEM sensor for printing-machine applications. Standard off-the-shelf Pepperl+Fuchs photoelectric sensors cannot be directly substituted. Light spot geometry, sensing range and output timing are custom-tuned for folding-machine operation.
  2. Second-hand unit inspection checklist:

M12 connector pins free of corrosion and pin-retraction damage

Optical lens free of scratches, ink and dirt contamination

Power LED illuminates upon power-on; output state toggles when tested with a reflective target

No short-circuit across supply and output pins

  1. Aprovizionare: Always specify Pepperl+Fuchs order number 131566. Heidelberg HDM-part numbers cannot be recognized by Pepperl+Fuchs distributors.

Atribuire PIN (M12-4-pin male, view from connector face)

PinSemnal
1UB+ Power Positive (10-30VDC)
2Ieșire semnal PNP
30V GND
4Nu este conectat

Pepperl+Fuchs 131566 Documentatie Tehnica

Notă importantă: 131566 (ST-H.1-19,5) is a custom OEM-exclusive sensor for Heidelberg printing presses. No original PDF datasheet is published by Pepperl+Fuchs. This document is compiled from physical-part labelling, OEM-supplier field measurements and Heidelberg machine manuals, and is suitable for maintenance, achiziții, commissioning and second-hand-unit validation.

Alternate designation: HDM-NR-287-523-01-00 (Heidelberg part number, not a Pepperl+Fuchs model)

1 Prezentare generală a produsului

ArticolCaietul de sarcini
Pepperl+Fuchs Order No.131566
Internal ModelST‑H.1‑19,5
Heidelberg OEM Part No.HDM‑NR‑287‑523‑01‑00 (ZD.287‑523‑01‑00)
Tip de produsDiffuse‑mode photoelectric sensor
Target ApplicationHeidelberg Stahlfolder folding machine, sheet‑presence detection for printing equipment
Sursă de luminăModulated infrared LED
ConexiuneM12‑4‑pin male straight connector
Materialul carcaseiPlastic de inginerie PBT
Clasa de protectieIP67
Țara de origineSingapore
Greutate netă≈30 g

2 Evaluări electrice

ParametruValoareObservații
Supply Voltage Ub10 … 30 V DCDC, Class‑2 supply
Tip ieșirePNP normally‑open outputProtecție la scurtcircuit, reverse‑polarity protection
Max. Output Load Current100 mA
Curent de repaus≤25 mA
Căderea de tensiune≤2.0 VOutput ON state
Switching LogicLight‑ON (output active upon receiving reflected light)Output de‑energized when reflected light is blocked by sheet material
Frecvența de comutare≈250 HzCustomized for high‑speed sheet detection in folding machines
Temperatura de operare‑25 … +55 ℃Printing‑shop ambient conditions
Temperatura de depozitare‑40 … +70 ℃

M12-4-pin Pinout (bărbat, view from connector end face)

PinSemnalDescriere
1UB+Power supply positive 10‑30VDC
2OUTIeșire semnal PNP
30V/GNDPower supply negative
4N/CNu este conectat, leave floating

Wiring Note: Do not wire pin 4; do not connect pin 4 to 0V, otherwise sensor malfunction will occur.

3 Optical & Parametri mecanici

  1. Raza de detectare: 0…19.5 mm (suffix 19,5 denotes nominal sensing distance)
  2. Punct de lumină: Small-spot optics optimized for thin-sheet detection. Direct replacement by standard-range commercial photoelectric sensors is not permitted.
  3. Montare: Two Φ3.2 mm mounting holes integrated into housing; Șuruburi de fixare M3, recommended torque 0.4-0.6 N·m
  4. Housing Overall Dimensions: W14 mm × H31 mm × D22 mm
  5. Indicatoare LED:

LED verde: Power-supply status

LED galben: Switching-status indicator (illuminates when reflected light is detected)

4 Standarde & Certificari

CE-marked, compliant with EN 60947-5-2 for photoelectric sensors

No public UL file (OEM custom variant)

5 Instalare & Commissioning Instructions

  1. Recommended mounting gap between sensor and sheet/reference surface: 8-16 mm. Avoid direct contact; do not exceed 19.5 mm maximum sensing distance.
  2. Optical-axis alignment: Lens must face the sheet-travel path. Keep lens surface clean; ink and dust accumulation will trigger false detection.
  3. No sensitivity-adjustment potentiometer: Parameters are factory-fixed; no on-site adjustment possible.
  4. Cabling: Use M12-4-pin female-cable assembly; connect pins 1-2-3 only, pin 4 unused.

6 Troubleshooting Table

Simptom de eroareCheck Points
Green LED offVerify 10‑30 VDC at pin 1; continuity of pin 3 GND; M12‑pin corrosion / bent‑pin damage
Green LED always ON, yellow LED never illuminatesLens fully covered by ink; mounting distance exceeds 19.5 mm; missing reflective target; internal LED failure
Yellow LED permanently ON, no response to passing sheetsLens contamination; misaligned optical axis; output transistor short‑circuit; background‑reflection interference from machine frame
Sporadic false triggeringExcessive supply‑voltage drop; poor cable shielding; ink‑paper debris on lens; out‑of‑range installation distance

7 Achiziții & Replacement Critical Notes

  1. Always place orders using Pepperl+Fuchs order number 131566. Pure-reference to HDM-NR-287-523-01-00 will not be recognized by Pepperl+Fuchs channel partners.
  2. This is an exclusive Heidelberg OEM custom part. Standard Pepperl+Fuchs series (de ex. RL31) differ in spot geometry, switching threshold and timing behaviour. Direct drop-in substitution causes missed-sheet and false-detection faults and is discouraged for printing-press use.
  3. Second-hand unit validation steps:

1) Inspect M12 connector pins for oxidation and pin-retraction damage

2) Check lens for cracks and deep scratches

3) Apply 10-30VDC supply; confirm green power-LED lights up

4) Hold white reflective paper in front of lens: yellow LED turns ON. Remove paper: yellow LED turns OFF

5) Measure pin-2 output with multimeter; confirm PNP level toggles correctly; no internal short-circuit.

8 Safety Notes

  1. Do not aggressively wash sensor lens with strong solvents; optical coating will be degraded. Clean only with lint-free cloth.
  2. Output is PNP sourcing type; connect only to PLC high-level-input channels. Incompatible with NPN-sinking inputs.
  3. Do not exceed maximum 30 VDC supply voltage; permanent internal circuit damage may occur.

Working Principle of Diffuse-Mode Photoelectric Sensors

Pepperl+Fuchs 131566 is a diffuse-mode photoelectric sensor, with emitter and receiver integrated within one single housing.

Principiul fundamental

Two core internal components:

  1. Transmitter: LED infrarosu: Emits modulated infrared light (modulation suppresses false triggering caused by ambient workshop-lighting and sunlight).
  2. Receptor: Phototransistor / Photo-IC: Captures light reflected back from targets.

Functional sequence:

  1. Infrared LED emits light beam outwards.
  2. Beam strikes the surface of target object (hârtie / workpiece).
  3. Object surface diffusely reflects part of the incident light.
  4. Portion of reflected light returns to the sensor receiver window.
  5. Receiver chip detects incoming light → internal circuitry activates and toggles solid-state switching output (PNP / NPN level change).

⚠️ Distinction from retro-reflective sensors (separate reflector plate required):

Diffuse-mode: No reflector plate required. Relies on natural reflectance from target surface. Model 131566 works in this way for sheet-detection.

Retro-reflectorizant: Sensor plus dedicated reflector plate. Light bounces off reflector; object interrupts beam to trigger switching.

Two Standard Switching Logics

  1. Lumină aprinsă: Output becomes active when reflected light is received. When object moves away / blocks return light path, output de-energizes.

✅ Pepperl+Fuchs 131566: Lumină aprinsă. When sheet enters detection zone, sheet reflects infrared light, yellow LED illuminates and PNP output turns high. After sheet passes, reflected-light signal vanishes and output de-activates.

  1. Dark-ON: Output becomes active when return-light signal is absent; output de-activates upon light reception.

Factori cheie de influență (Field-fault root-causes for folding-machine installations)

  1. Distanța de Sentire

Each sensor has a defined nominal sensing range. For 131566 maximum range =19.5 mm. Target outside this distance yields insufficient reflected-light amplitude for reliable triggering.

  1. Target Colour / Reflectivity

White paper gives high reflectance and reliable triggering. Negru / matte-dark objects deliver substantially reduced effective sensing range.

  1. Light-spot Geometry

OEM printing-special sensors use small-spot optics for narrow-sheet detection. Standard-commercial sensors feature large spot sizes and may falsely trigger from metallic machine-frame background reflections. This is the primary reason that 131566 cannot be arbitrarily substituted by general-purpose sensors.

  1. Lens Contamination

Ink-and-dust fouling blocks outgoing and incoming light paths and causes complete sensor failure; this represents the most-common failure mode within printing-plant environments.

  1. Modulated-light technology

Emission is high-frequency-modulated infrared. Receiver circuitry only responds to this specific modulation frequency. Unmodulated ambient daylight and workshop-lamps are filtered out for anti-interference performance.

Comparison Table of Three Common Photoelectric Sensor Types

Tip senzorConstructiiPrincipiul de funcționareAplicații tipice
Diffuse‑mode (this unit)Emițător & receiver combined in one housingLight reflected directly from target objectSheet‑presence detection, workpiece‑presence monitoring
Retro‑reflectiveSingle‑body sensor + external reflector plateLight returns from reflector; object blocks beam pathGate‑way monitoring, conveyor‑belt blockage detection
Through‑beam (thru‑beam)Separate emitter unit and separate receiver unitEmitter projects beam directly onto receiver; object interrupts beam pathObject counting, long‑range detection

Practical Application Example for Heidelberg Stahlfolder with 131566

Sensor is mounted in the sheet-transport path of the folding machine, operating gap set to approx. 8-16 mm from sheet plane.

Sheet passing through detection zone: White sheet reflects infrared light back to receiver → yellow LED lights up; PNP output goes high; machine control registers sheet present.

Sheet exits detection zone: Only dark-metallic machine frame is present; return-light amplitude falls below threshold → yellow LED switches off; output de-energizes; machine registers sheet-departure.

Typical Application Scenarios for Diffuse-Mode Photoelectric Sensors

Diffuse-mode photoelectric sensors integrate emitter and receiver within one housing. No reflector plate or paired separate-receiver unit is required. Detection relies on light reflected off target-object surfaces. Simple-to-mount, and among the highest-volume sensor categories deployed across industrial automation.

Representative device: Pepperl+Fuchs 131566 (sheet-detection for Heidelberg folding machines)

1 Imprimare & Paper-processing Industry

  1. Sheet-presence detection: Folding machines, die-cutters and printing-press paper-paths. Detect sheet arrival, missing-sheet conditions, double-sheet pre-warning and sheet-trailing-edge monitoring. This is the exact application of unit 131566; small-spot variants are purpose-built for thin-paper sensing.
  2. Label-presence detection: Verify label-in-position and label-web breakage.
  3. Paper-roll end-of-stock detection: Detect exhaustion of raw-material paper reels.

Industry-specific pain points: Lens fouling by ink and paper dust; large reflectance variation between black-and-white substrates. Prefer small-spot fixed-threshold OEM-grade sensors.

2 Material-handling & Conveyor-line Systems

  1. Work-piece-arrival detection: Belt-driven and roller-conveyor systems. Detect carton-or-work-piece arrival at workstation to trigger actuators, scanners and stoppers.
  2. Item counting: Generate switching pulses as objects pass the sensor for production-volume tallying.
  3. Bin-level presence-check: Detect presence / absence of components inside bins and feeders for missing-part alarms.
  4. Jam-detection monitoring: Identify material-pile-up conditions within transfer chutes.

3 Mașini de ambalare

  1. Pouch / carton detection: Confirm feeding-of-packaging material into processing stations; empty-pack identification.
  2. Cap & component-presence checks: Filling-and-sealing-machinery; confirm component-in-place status.
  3. Finished-goods ejection confirmation: Verify finished-product output from process stations.

4 Machine-tool & Assembly-automation

  1. Work-piece-in-fixture validation: Robot-loading / unloading stations; confirm correct part seating.
  2. Small-component presence-detection: Detect springs, screws and plastic-moulded-parts.
  3. Hopper low-level alarm: Trigger warning when feed-hopper component stock runs low.

5 Producție de automobile

  1. Component-in-jig confirmation for car-body-assembly tooling.
  2. Transfer-trolley position-detection.
  3. Component-transfer-line counting.

6 Consumer-electronics & Light-manufacturing

  1. PCB-board and plastic-housing presence-detection.
  2. Conveyor-line object-pass-by monitoring.
  3. Small-part feeder-output-verification.

7 Lifting-warehousing & General-purpose Machinery

  1. Fork-position simple-detection.
  2. Object-presence monitoring for safety-door zones (selected variants).

Diffuse-mode Photoelectric Sensor Selection Criteria & Limitări de aplicare (Engineering Focus)

  1. Strong dependency on target-object colour

Light-coloured / white surfaces deliver high reflectance and extended effective sensing distance. Black and matte-dark targets reduce usable sensing distance drastically; actual range may drop to only 30-50 % of nominal-rated value.

  1. Background-reflection susceptibility

Bright metallic rear-background surfaces may produce false-triggering. For such deployments specify small-spot or background-suppression (BGS) diffuse-mode sensors.

Pepperl+Fuchs 131566 implements small-spot optics to minimise interference from metallic folding-machine frames within tight-clearance mechanical assemblies.

  1. Limited absolute sensing range

Standard diffuse-mode sensors typically cover tens-to-hundreds of millimetres. For long-distance detection select retro-reflective or through-beam sensor configurations.

  1. Poor performance with transparent targets

Glass and clear thin-film substrates cannot be reliably sensed by standard diffuse-mode sensors. Use dedicated transparent-object-detection sensor models.

Quick-comparison Table: Diffuse-mode / Background-suppression / Retro-reflectorizant / Faza de trecere

Tip senzorCaracteristici cheieTypical Use‑case
Standard diffuse‑modeOperates on target‑surface reflectance; rentabil; vulnerable to background‑reflection interferenceGeneral‑work‑piece & sheet‑detection (Model 131566)
Background‑suppression (BGS) diffuse‑modeElectronically rejects background‑surface reflections; immune to background‑colour variationTargets located close to metallic frames; work‑pieces with variable‑height profiles
Retro‑reflectiveRequires dedicated reflector plate; long sensing‑range capabilityChute‑and‑gate beam‑interruption monitoring
Through‑beam (thru‑beam)Physically‑separate emitter‑receiver pair; maximum‑available sensing‑rangeLong‑distance detection, transparent‑object inspection

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