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HV52S09011051207002The BEGE flanged encoder MIG Nova+ MN-090-11-0512-7 is an incremental encoder designed for higher resolution feedback and improved signal stability, making it suitable for precise control in automated systems. Key attributes include: Outer diameter: 90 mm, Flange BCD: 75 mm, Shaft diameter: 11 mm, IEC norm: 63B14, Flange thickness: 7 mm, Material: Stainless steel, Pulses per revolution: 512 per channel, Outputs: A90°B / A'90°B' HTL/TTL, Input voltage: 5–24 VDC, Cable length: 2 m, IP classification: IP55 / IP67. Suitable for demanding industrial environments where reliable speed and position feedback are required.
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Product description
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€459.00
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IP classification
IP55 / IP67
Outer diameter (mm)
90
Flange thickness (mm)
7
Encoder Material
Stainless steel
Cable length (m)
2
Shaft diameter (mm)
11
IEC norm
63B14
BCD norm
75
HS-Code
90292038.000000
Encoder supply
5-24VDC
Encoder signals
A90°B / A'90°B' HTL/TTL
Pulses
512
Description

BEGE Power Transmission is a renowned European manufacturer known for their innovative drive technology and robust, high-quality industrial components. Their encoders are trusted for reliability, precision, and superior engineering in demanding environments.
**Key Features and Advantages:**
• High-resolution incremental encoder (512 pulses per channel) for enhanced speed and position feedback, enabling accurate regulation in automated systems.
• Stainless steel housing and shaft offer exceptional durability and superior resistance to corrosion, making the encoder suitable for harsh industrial environments.
• Dual high-protection rating (IP55/IP67) ensures reliable performance even in dusty or wet conditions, reducing downtime and maintenance costs.
• Supports both HTL and TTL output signals (A90°B / A'90°B'), compatible with a wide range of control systems and programmable logic controllers.
• 2-meter pre-installed cable allows flexible integration and easy installation, minimizing wiring effort on-site.
• Flange design (IEC 63B14, Ø90mm, BCD 75mm, thickness 7mm) ensures a perfect fit for standard motor sizes, simplifying retrofit and OEM solutions.
• 11mm shaft delivers robust mechanical stability and precise signal transfer, suitable for high dynamic loads.**Application Possibilities:**
• MIG Basic: Incremental encoder for essential speed feedback in standard automation, conveyors, or packaging machines.
• MIG Nova+: High-resolution incremental encoder for precise control applications — ideal in robotics, precise positioning systems, and synchronized drives.
• MIG AST: Absolute encoder variant that retains the position data after power loss—used for advanced motion controllers, gantry systems, and automated warehouses.
**Key Features and Advantages:**
• High-resolution incremental encoder (512 pulses per channel) for enhanced speed and position feedback, enabling accurate regulation in automated systems.
• Stainless steel housing and shaft offer exceptional durability and superior resistance to corrosion, making the encoder suitable for harsh industrial environments.
• Dual high-protection rating (IP55/IP67) ensures reliable performance even in dusty or wet conditions, reducing downtime and maintenance costs.
• Supports both HTL and TTL output signals (A90°B / A'90°B'), compatible with a wide range of control systems and programmable logic controllers.
• 2-meter pre-installed cable allows flexible integration and easy installation, minimizing wiring effort on-site.
• Flange design (IEC 63B14, Ø90mm, BCD 75mm, thickness 7mm) ensures a perfect fit for standard motor sizes, simplifying retrofit and OEM solutions.
• 11mm shaft delivers robust mechanical stability and precise signal transfer, suitable for high dynamic loads.**Application Possibilities:**
• MIG Basic: Incremental encoder for essential speed feedback in standard automation, conveyors, or packaging machines.
• MIG Nova+: High-resolution incremental encoder for precise control applications — ideal in robotics, precise positioning systems, and synchronized drives.
• MIG AST: Absolute encoder variant that retains the position data after power loss—used for advanced motion controllers, gantry systems, and automated warehouses.
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