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Home » Automation and Controls » Sensors » Proximity Sensors » ifm MFS210 Magnetic Sensor

ifm MFS210 Magnetic Sensor

Mfr # MFS210

$110.47

/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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  • Housing: Threaded type
  • Dimensions[mm]: M12 x 1 / L = 60
  • System: gold-plated contacts; Full-metal housing
  • Operating voltage[V]: 10…30 DC
  • Current consumption[mA]: < 10
  • Protection class: III
  • Reverse polarity protection: yes
  • Rugged Full-Metal Housing: M12 √ó 1 / 60 mm threaded stainless-steel body for maximum durability in harsh industrial conditions.
  • Gold-Plated Contacts: Provides superior conductivity, corrosion resistance, and long-term signal reliability.
  • Energy-Efficient Design: Operates at less than 10 mA within a wide 10‚Ķ30 V DC range, optimised for continuous use.
  • Reverse Polarity Protection: Safeguards the sensor against incorrect wiring for enhanced operational safety.

The IFM MFS210 is a robust inductive proximity sensor designed for high-performance operation in demanding industrial environments. With its rugged full-metal housing, gold-plated contacts, and efficient electrical design, it ensures reliable detection, minimal maintenance, and long service life, even in harsh conditions where conventional sensors may fail.

At the core of the MFS210’s reliability is its full-metal housing. Measuring M12 × 1 with a 60 mm length, the stainless-steel body offers exceptional resistance to mechanical stress, vibration, and impact. This makes it particularly suitable for environments with heavy machinery, constant movement, or frequent exposure to contaminants such as oils, coolants, or cleaning agents. Its threaded design allows for straightforward and secure installation, ensuring stability in both fixed and mobile applications.

The sensor’s gold-plated contacts provide significant benefits for long-term performance. Gold plating improves conductivity, reduces electrical resistance, and resists corrosion and oxidation. These qualities ensure dependable signal transmission throughout the sensor’s lifetime, even when installed in environments subject to moisture, chemicals, or temperature fluctuations. This reliability reduces the risk of downtime and minimises the need for replacement or recalibration.

Electrically, the MFS210 is highly efficient, consuming less than 10 mA of current while operating across a wide 10…30 V DC supply range. This low power consumption supports cost-effective operation in large-scale automation systems or in installations where multiple sensors operate simultaneously. Despite its efficiency, the MFS210 maintains precise detection and stable switching, contributing to system accuracy and responsiveness.

For added safety and resilience, the MFS210 integrates reverse polarity protection, preventing damage from incorrect wiring during installation or maintenance. Combined with its Protection Class III rating, the sensor is designed for Safety Extra-Low Voltage (SELV) applications, ensuring safe and reliable operation for both operators and equipment.

The MFS210 is ideal for a wide range of industrial applications, from assembly lines and packaging machinery to robotics and material handling systems. Its full-metal construction and robust electrical design make it especially valuable in environments involving exposure to oils, lubricants, or high mechanical stresses. Whether in fixed installations or mobile machinery, the sensor provides long-term detection performance with minimal intervention.

In summary, the IFM MFS210 is a durable and efficient inductive proximity sensor that combines a full-metal M12 housing, gold-plated contacts, energy-efficient design, and built-in protective features. Engineered for the toughest industrial conditions, it offers precision, reliability, and long service life. For engineers and operators requiring a sensor that delivers dependable detection in harsh environments, the MFS210 is an excellent choice.

Manufacturer

ifm efector

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