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Leuze DDLS 508 120.3/L 50132927 Optical Data Transmission

The DDLS 508 120.3/L is a high-performance Optical Data Transmission (Part No. 50132927) unit by Leuze, offering high-speed data transfer, long-range signal reliability, and compact industrial design. The Leuze Optical Data Transmission series enables secure and accurate communication across automated systems and control networks.

BrandLeuze
ProductOptical Data Transmission
Model NumberDDLS 508 120.3/L

Leuze DDLS 508 120.3/L 50132927 Optical Data Transmission - Technical Specifications

SpecificationValue
Thread SizeM12
Light SourceLaser, Infrared
Supply Voltage18 ... 30 V, DC
Digital Switching Inputs1 Piece(s)
Digital Switching Outputs1 Piece(s)
Connection TypeConnector
No. of Pin5 -pin
Housing MaterialMetal
Operating Temperature-5 ... 50 °C
Ambient Temperature, Storage-35 ... 70 °C
Degree of Protection (IP Rating)IP 65
Working range100 ... 120,000 mm
Dimension (W x H x L)100 mm x 156 mm x 99.5 mm
Net weight1,255 g
Type of displayBar graph, LED

The DDLS 508 120.3/L (Part No. 50132927) transmits data optically between devices, using modulated light signals to convert electrical input into precise optical output. This enables real-time communication with minimal latency, supporting multiple channels for synchronous data exchange. Its design ensures stable performance even in high-interference industrial environments.

Industries employ the DDLS 508 120.3/L (Part No. 50132927) for machine-to-machine communication, process monitoring, and remote sensor data transmission. It is widely used in factory automation, packaging lines, and material handling systems where continuous and error-free data flow is critical for operational efficiency.

Engineered for industrial settings, the DDLS 508 120.3/L (Part No. 50132927) features robust housing, optical alignment protection, and resistance to vibration and ambient light fluctuations. Its durability guarantees reliable long-term operation, even in harsh environments with temperature variations, dust, and mechanical stress.