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Home » Automation and Controls » Sensors » Measurement Sensors » ifm OGE100 Photoelectric Sensors

ifm OGE100 Photoelectric Sensors

Mfr # OGE100

$89.30

/ea

Availability: Available to Order|Typically ships within 7–10 business days. Lead time may vary based on supplier availability.

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Elementor Single Product #2263

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  • Type of light: red light
  • Housing: Threaded type
  • Function principle: Through-beam sensor
  • Operating voltage[V]: 10…30 DC
  • Current consumption[mA]: 8
  • Protection class: III
  • Reverse polarity protection: yes
  • Through-Beam Detection Principle: Uses separate transmitter and receiver for high accuracy and long-range detection.
  • Visible Red Light Technology: Provides stable performance and easy alignment during setup.
  • Energy-Efficient Operation: Runs on 10‚Ķ30 V DC with very low current consumption of just 8 mA.
  • Robust Protection Design: Rated to Protection Class III and equipped with reverse polarity protection for safe, long-term use.

The IFM OGE100 through-beam sensor is a reliable and energy-efficient solution for precise object detection in industrial automation systems. With its visible red light technology, threaded housing, and robust electrical protections, it offers long-term accuracy and durability in demanding environments.

Operating on the through-beam principle, the OGE100 requires a transmitter and receiver to be positioned opposite each other. Detection occurs when an object interrupts the beam of light between the two units, providing a clear and dependable signal. This principle offers superior accuracy compared to reflective or diffuse sensors, as it is less affected by object colour, surface finish, or background interference. As a result, the OGE100 is ideal for long-distance detection applications such as conveyor monitoring, packaging control, and material handling systems.

The sensor uses visible red light for detection, which simplifies installation and alignment. The clear light spot allows operators to quickly and accurately position the sensor during setup, reducing commissioning time and ensuring precise operation. Once installed, the OGE100 provides stable and repeatable performance across a variety of target types and environmental conditions.

Housed in a threaded cylindrical body, the OGE100 is designed for easy mounting and mechanical stability. The threaded housing ensures secure installation into machine fixtures, while its rugged build provides resilience against vibration, dust, and industrial stress. This combination of compactness and durability allows the OGE100 to deliver reliable long-term operation, even in harsh environments.

From an electrical perspective, the OGE100 is engineered for efficiency and reliability. It operates on a supply voltage of 10…30 V DC and consumes just 8 mA, making it one of the most energy-efficient sensors in its class. This low current consumption makes it especially advantageous in systems with many sensors, reducing overall energy demand while maintaining performance.

Safety and reliability are reinforced by its protective features. Rated to Protection Class III, the OGE100 is designed for safe operation in low-voltage environments in compliance with international standards. The built-in reverse polarity protection prevents accidental wiring errors from damaging the sensor or the connected control system, ensuring secure and trouble-free integration.

In practice, the OGE100 provides precise, repeatable, and reliable detection, helping operators improve productivity and maintain consistent workflow efficiency. Its through-beam design makes it particularly effective in environments where false signals from reflective surfaces or ambient lighting could otherwise cause errors.

In summary, the IFM OGE100 through-beam sensor offers a perfect combination of accuracy, safety, and energy efficiency. With its visible red light technology, rugged threaded housing, and low power consumption, it is a trusted solution for industries requiring reliable long-range detection in automated processes.

Manufacturer

ifm efector

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