Machine Safety - Light Curtains

Image Part Number Description / PDF Quantity Rfq
C4C-PA12030A10000

C4C-PA12030A10000

SICK

LIGHT CURTAIN SET 1200MM

1

F3SG-4SRB0680-25-F

F3SG-4SRB0680-25-F

Omron Automation & Safety Services

GLC, BASIC, HAND SAFE

0

C4C-PA06010A10000

C4C-PA06010A10000

SICK

LIGHT CURTAIN SET 600MM

2

F3SG-4SRA0520-14-F

F3SG-4SRA0520-14-F

Omron Automation & Safety Services

GLC, ADVANCED, FINGER SAFE

0

F3SG-4SRB0720-25

F3SG-4SRB0720-25

Omron Automation & Safety Services

GLC, BASIC, HAND SAFE

0

SLLR40-1330-S

SLLR40-1330-S

Banner Engineering

LS RECEIVER RES 40MM,AREA 1330MM

0

F3SG-4SRB0280-25-F

F3SG-4SRB0280-25-F

Omron Automation & Safety Services

GLC, BASIC, HAND SAFE

0

OY003S

OY003S

ifm Efector

SAFETY LIGHT CURTAIN; PROTECTED

0

F3SG-4SRA0560-25

F3SG-4SRA0560-25

Omron Automation & Safety Services

GLC, ADVANCED, HAND SAFE

0

SLPMP14-410P128

SLPMP14-410P128

Banner Engineering

SAFETY LIGHT CURTAIN 410 MM

1

XC40E-1203A0A0AAC0

XC40E-1203A0A0AAC0

SICK

1200/30MM RCVR LED TOP

0

OY009S

OY009S

ifm Efector

SAFETY LIGHT CURTAIN; PROTECTED

0

SGSMP4-300Q128

SGSMP4-300Q128

Banner Engineering

SAFETY GRID PAIR 300MM

1

XC40E-0903A0A0CBA0

XC40E-0903A0A0CBA0

SICK

LIGHT CURTAIN 900MM RCVR EXT BTM

1

F3SG-4SRA1040-25

F3SG-4SRA1040-25

Omron Automation & Safety Services

GLC, ADVANCED, HAND SAFE

0

SLLR14-1820-S

SLLR14-1820-S

Banner Engineering

LS RECEIVER RES 14MM,AREA 1820MM

0

F3SG-4SRB1000-14

F3SG-4SRB1000-14

Omron Automation & Safety Services

GLC, BASIC, FINGER SAFE

0

SF4B-H24(V2)

SF4B-H24(V2)

Panasonic

SENSOR HEAD 9M 470MM IP-67

1

XC40S-1003A0A00AA0

XC40S-1003A0A00AA0

SICK

1050MM/30MM SENDER

0

SLLR14-1470-S

SLLR14-1470-S

Banner Engineering

LS RECEIVER RES 14MM,AREA 1470MM

0

Machine Safety - Light Curtains

1. Overview

Light curtains are photoelectric sensing devices used to protect personnel and equipment in industrial automation systems. They consist of transmitters and receivers that project and detect light beams to create a protective field. When an object interrupts the beam, the system triggers a safety response (e.g., stopping machinery). These devices are critical in modern manufacturing for compliance with safety standards (e.g., ISO 13849-1) and reducing workplace injuries.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Opposed ModeSeparate transmitter and receiver unitsLarge machinery (e.g., stamping presses)
Reflective ModeSingle unit with reflector; cost-effectiveConveyor systems
Multi-beamMultiple parallel beams for high-resolution detectionRobot workcells
Single-beamSimple on/off detectionEntryway guarding

3. Structure and Components

Typical components include:

  • Transmitter: Emits modulated infrared or visible light
  • Receiver: Detects beams using photodiodes
  • Controller: Processes signals and triggers safety outputs
  • Enclosure: IP-rated housing for environmental protection

4. Key Technical Specifications

ParameterDescriptionImportance
Detection Distance0.3-30 metersDetermines application range
Resolution10-50 mmObject size detection capability
Response Time2-20 msSpeed of safety reaction
Protection ClassIP65-IP69KEnvironmental durability
Safety CategoryCat. 2/PLc to Cat. 4/PLdCompliance with safety standards

5. Application Fields

Key industries and equipment:

  • Automotive manufacturing (robotic arms)
  • Metalworking machinery (lathes, presses)
  • Food processing equipment
  • Packaging machines
  • Assembly lines

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
SICK AGOT/OS32C seriesUp to 30m detection range, IP69K
Banner EngineeringQS30/TL70High-temperature resistance, wireless options
OmronF3SG-RA seriesMulti-beam with self-diagnosis
KeyenceCV-L3 seriesHigh-speed detection for robotics

7. Selection Recommendations

Key considerations:

  • Determine required safety category (ISO 13849-1)
  • Assess detection distance vs. resolution needs
  • Environmental factors (dust, temperature, vibration)
  • Integration with existing safety systems
  • Mounting options (fixed vs. adjustable brackets)

Industry Trends Analysis

Emerging trends include:

  • Integration with IIoT for predictive maintenance
  • AI-enhanced beam algorithms for reduced false triggers
  • Miniaturization for collaborative robot applications
  • Wireless safety protocols (e.g., Safety over EtherCAT)
  • Increased adoption in AGV obstacle detection

Real-world Application Case

In automotive assembly, SICK's OT series light curtains were implemented at a German plant to protect robotic welding cells. The system reduced unplanned downtime by 40% while maintaining SIL-3 safety compliance.

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