Description
BEGE Flanged Encoder MIG Nova+ MN-160-14-0256-7
Key Features and Benefits:
• High-resolution incremental encoder – provides superior feedback precision compared to basic models, ideal for advanced motion control in automated systems.• 256 pulses per channel – ensures smooth and accurate speed and position feedback for processes requiring precise regulation.• Outstanding signal stability – reduces system noise and guarantees reliable data transmission, thus minimizing operational errors and downtime.• Stainless steel housing – delivers exceptional resistance to corrosion, ensuring long-term durability in harsh industrial environments including food, chemical, and marine sectors.• Flange outer diameter of 160mm & 14mm shaft diameter – designed to fit IEC 71B5 motors, supporting seamless mechanical integration.• BCD 130mm and flange thickness of 7mm – standardized dimensions for compatibility with diverse automation setups and retrofits.• Wide input voltage range (5–24VDC) – supports flexible interface to a variety of control systems and drive electronics for universal applicability.• HTL/TTL A, B, A’, B’ output – offers robust signal options for modern PLCs and controllers, allowing high-performance interfacing.• Protection classes IP55/IP67 – suitable for both ordinary industrial as well as washdown and outdoor environments, providing dependable operation against dust and water ingress.• 5-meter cable length – facilitates versatile installation even in larger machinery.Application Opportunities:
• Factory automation and conveyor systems requiring precise speed and position feedback.• Robotics and automated machinery demanding reliable incremental encoder data for servo control.• Packaging, food processing, and chemical manufacturing, where stainless steel and ingress protection are critical.• Motion control in material handling, textile, and printing industries, where signal stability and high accuracy drive productivity.• As a step-up from MIG Basic for users requiring higher resolution, or in projects where standard automation solutions demand enhanced feedback performance.

calcPageSize())"
/>



