+91 79955 44066
IndMALL: B2B Marketplace - We Connect Buyers & Sellers for Industrial Products

Sick UM30-211111 Ultrasonic Sensor

The Sick UM30-211111 Ultrasonic Sensor offers Cylindrical, design LED display, 2 x LED indication, Straight sending axis, Male connector, M12, 5-pin connection. Manufactured by Sick under the Sick Ultrasonic Sensor category, this model belongs to the UM Series.

BrandSick
Product TypeUltrasonic Sensor
ProductUM30-211111

Sick UM30-211111 Ultrasonic Sensor – Technical Specifications

SpecificationValue
DesignCylindrical
Supply voltage VsDC 9 V ... 30 V
Power consumption≀ 2.4 W
Initialization time< 300 ms
Housing materialMetal (nickel-plated brass, PBT, ultrasonic transducer: polyurethane foam, glass epoxy resin)
Connection typeMale connector, M12, 5-pin
IndicationLED display, 2 x LED
Sending axisStraight
Dimensions (W x H x D)30 mm x 30 mm x 84 mm
Enclosure ratingIP65 / IP67
Weight150 g

The Sick UM30-211111 Ultrasonic Sensor offers a powerful combination of rugged design and precise measurement. Operating within a DC supply voltage of 9 V to 30 V and consuming just ≀ 2.4 W, this sensor supports continuous operations in energy-conscious environments. The cylindrical form factor, sized at 30 mm x 30 mm x 84 mm, is engineered to fit easily into automation panels, robotic arms, and compact machine assemblies. It features a metal housing constructed from nickel-plated brass and PBT, making it highly resistant to mechanical stress, corrosion, and industrial wear-and-tear.

The integrated LED display with 2 indicators allows maintenance teams to easily monitor sensor status during operation. A straight sending axis ensures accurate alignment with the target, while the M12, 5-pin male connector simplifies integration with PLCs and control systems. Its rapid initialization time of under 300 ms minimizes downtime during system reboots or power cycles. Built to endure harsh working conditions, the UM30-211111 carries an IP65/IP67 enclosure rating, protecting it from dust, moisture, and temporary water immersion. At just 150 grams, it’s lightweight yet durable enough for both fixed and dynamic setups.

The UM30-211111 Ultrasonic Sensor represents the best of Sick’s engineering excellenceβ€”delivering consistent, accurate, and robust performance in a wide range of automation scenarios. For full datasheets, installation manuals, or 3D CAD files, please refer to the official Sick product page or contact us for tailored integration support.

The UM30-211111 Ultrasonic Sensor from Sick is an ideal choice for industrial environments where optical sensors fail due to surface reflectivity, transparency, or environmental interference. This Ultrasonic Sensor accurately detects various objectsβ€”whether shiny, dark, wet, dusty, or curvedβ€”making it especially useful in Indian factories and workshops that handle variable product types and changing conditions.

In the automotive sector, it reliably identifies car doors or chassis parts on paint lines, even when the surfaces are glossy or wet. In the FMCG and pharma industries, it detects plastic bottles, blister packs, and pouches on high-speed conveyorsβ€”regardless of material or label color. For textile or paper industries, it monitors roll diameter or web alignment, operating consistently despite lint, dust, or vibration. The IP65/IP67 rating also makes it suitable for washdown zones or production areas with frequent cleaning, oil exposure, or humidity.

Junior engineers and maintenance teams find this sensor easy to install using its M12 connector and helpful LED indicators. It’s also compatible with standard PLCs used in Indian automation systems. The Sick UM30-211111 Ultrasonic Sensor is a long-lasting and intelligent investment for automation professionals who demand reliability and flexibility from their sensor systems.

Disclaimer: IndMALL serves solely as a platform connecting buyers and vendors. It does not participate in pricing, payment, or delivery of goods.
Buyers are advised to verify all details and deal directly with vendors before finalizing any transaction.