Description
**Incremental Encoder for Standard Automation Tasks:** The BEGE Flanged Encoder MIG Basic MB-140-24-0002-9 is an incremental encoder specifically designed to provide fundamental speed feedback in basic automation applications.
**Ideal for General Speed Monitoring:** This encoder converts shaft rotation into two output signals (A90°B HTL), enabling reliable speed detection and direction control in motors and machinery.
**Robust Aluminium Construction:** Housed in a corrosion-resistant aluminium body with an IP55/IP67 rating, the encoder is protected against dust, water jets, and temporary immersion, making it especially suited for harsh industrial environments.
**Precision Mechanical Fit:** With a flange outer diameter of 140mm, BCD norm of 115mm, flange thickness of 9mm, and shaft compatibility of 24mm, the encoder is engineered for seamless installation on IEC 90B14 motors and compatible assemblies.
**Long Distance Connectivity:** Supplied with a 20-meter cable, the encoder ensures stable signal transmission even in large or distributed production lines.
**Wide Operating Voltage Range:** Operates on 5–24 VDC input, making it adaptable for integration into varied control systems.
**Low Resolution Pulse Output:** With 2 pulses per revolution per channel, this encoder is optimized for simple speed feedback and coarse monitoring, suitable for conveyor systems, packaging lines, and basic automation tasks.
**Reliable Brand Performance:** As part of BEGE’s renowned encoder range, the MIG Basic ensures consistent, maintenance-friendly performance and full compliance with international standards.
**Key Industrial Applications:** Perfect for general-purpose drives, basic speed regulation, and feedback in pumps, fans, material handling, and standard automation equipment. **For enhanced precision or absolute position feedback, BEGE also offers:**
**MIG Nova+:** High-resolution incremental encoder with superior signal stability—ideal for advanced, precise automation systems.
**MIG AST:** Absolute encoder maintaining position after power loss—suitable for sophisticated positioning and advanced control systems.

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