- Functional principle: Through-beam photoelectric sensor
- Dimensions (W x H x D): 16.2 mm x 45.5 mm x 31.8 mm
- Housing design (light emission): Hybrid
- Thread diameter (housing): M18
- Mounting system type: M18, head/side (24.1 … 25.4 mm)
- Housing color: Blue
- High-performance background suppression: Ensures accurate detection of objects regardless of surface color or reflectivity, minimizing false triggers.
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- Brand: Sick
Sick 1071841 Through-beam photoelectric sensor
Mfr # 1071841
$135.66
/ea
Availability: Available to Order|Typically ships within 7 to 10 business days. Lead time may vary based on supplier availability.
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- High-performance background suppression: Ensures accurate detection of objects regardless of surface color or reflectivity, minimizing false triggers.
- Extended sensing range up to 500 mm: Reliable detection capabilities for both small and large objects in diverse automation environments.
- Compact, rugged housing: Durable design for space-constrained installations and resistance to harsh industrial conditions.
- Flexible connection via PNP switching output: Simple integration into existing automation systems for fast and efficient deployment.
The Sick HSE18-P1G1BA (part number 1071841) is a high-performance photoelectric sensor designed to deliver precision, reliability, and versatility in industrial automation applications. Belonging to the HSE18 series, this sensor utilizes advanced background suppression technology, allowing it to distinguish objects accurately even in challenging environments where colors, textures, or reflective surfaces might otherwise create detection errors. This makes it particularly well-suited for applications in packaging, material handling, assembly lines, and robotics, where reliable object detection is essential for smooth operations.
One of the key strengths of the HSE18-P1G1BA lies in its extended sensing range of up to 500 mm. This range provides the flexibility to handle both close-up and moderately distant detection tasks, supporting a wide spectrum of automation scenarios. Its ability to perform consistently across various object sizes and surface characteristics ensures high process stability and reduces downtime caused by misdetection.
The sensor is built with a compact and rugged housing, making it an ideal choice for installations where space is limited. Despite its small footprint, it maintains the durability and robustness required for use in demanding industrial environments. Its sturdy design ensures resistance to dust, vibration, and mechanical stress, thereby offering long-term reliability even in harsh conditions. This durability reduces maintenance requirements and enhances overall system uptime.
Another important aspect of the HSE18-P1G1BA is its user-friendly integration. Equipped with a PNP switching output, the sensor can be easily connected to a wide range of control systems, making setup straightforward and minimizing installation time. This plug-and-play capability not only simplifies deployment but also supports system flexibility, allowing for quick adjustments or expansions in dynamic production settings.
Furthermore, Sick’s engineering expertise is evident in the sensor’s precision optics and stable performance, which contribute to reliable detection in high-speed and complex automation processes. Its ability to suppress background interference enhances detection accuracy, particularly in environments with reflective surfaces or varying background conditions.
In summary, the Sick HSE18-P1G1BA photoelectric sensor is a dependable solution that combines advanced sensing technology with robust mechanical design and easy integration. It provides industries with a reliable way to improve automation efficiency, reduce errors, and maintain consistent performance under a wide range of conditions. With its extended sensing range, compact housing, and high-accuracy detection, this model represents a powerful tool for enhancing productivity and ensuring process reliability across industrial sectors.
Product Specifications
| Manufacturer | Sick |
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