SU-30X is a FOTEK u type photoelectric sensor designed for dependable use in industrial automation and control applications. The model designation identifies the product family and its specific electrical, sensing, control or mechanical configuration, making it suitable for integration where consistent operation, straightforward installation and model-appropriate performance are required.
Explore performance details, construction highlights, applications, and technical information in one clear overview.
SU-30X belongs to FOTEK's u type photoelectric sensor range and is intended for practical industrial automation, machine control, monitoring or sensing duties according to its product family. The exact model code is retained as the primary identifier so the electrical and mechanical configuration is not confused with other variants in the same series.
This product is suited to applications where dependable control, detection, measurement or switching performance is required. Model variants can differ in input method, output method, rated load, sensing distance, display format, connection, enclosure style or other configuration details. For that reason, the specifications below focus on the characteristics attributable to SU-30X and avoid assigning values that are not established for the exact model.
SU-30X can be used in industrial control panels, automated machinery, production equipment and process-control installations where the corresponding FOTEK product function is required. The model-specific input, output, mounting and operating characteristics should be matched to the application before installation.
| Model | SU-30X |
|---|---|
| Series / family | SU |
| Sensor type | Photoelectric sensor |
| Output | Model-dependent NPN/PNP or mark-sensing configuration |
| Application | Mark, counting or transparent-material sensing depending on model |
| Model | SU-30X |
|---|---|
| Series / family | SU |
| Sensor type | Photoelectric sensor |
| Output | Model-dependent NPN/PNP or mark-sensing configuration |
| Application | Mark, counting or transparent-material sensing depending on model |