The Scancon 2RHF1000-526005 is an incremental hollow shaft encoder delivering precise position and motion feedback for industrial automation and motion control systems. Its 6 mm hollow shaft design enables direct mounting onto motor shafts and axles, eliminating intermediate coupling complexity. With 12,500 PPR resolution, ±0.8 arc-min accuracy, and differential RS-422A output capability, this encoder provides the signal integrity and measurement precision required in demanding control loops.
Technical Specifications
• Resolution: 12,500 pulses per revolution
• Accuracy: ±0.8 arc-min
• Output Types: Standard (A, B, Z), Inverted, or Differential (RS-422A compatible @ 5V)
• Index Pulse: One per revolution (Z)
• Max. Pulse Frequency: 300 kHz
• Max. Shaft Speed: 12,000 rev./min
• Hollow Shaft Diameter: 6 mm
• Shaft Load Limits: Axial 20 N, Radial 20 N
• Mass Moment of Inertia: 4 gcm²
– Electrical & Environmental
• Supply Voltage: 4.5 to 30 Vdc
• Current Draw (no load): 45 mA max
• Output Load: 30 mA per channel (short-circuit protected)
• Output Low Voltage: 500 mV max @ 10 mA
• Protection: Reverse polarity and output short-circuit protection
• EMC Compliance: EN61000-6-2:2005, EN61000-6-3:2007
• Operating Temperature: -40°C to +85°C
• IP Rating: IP 65 standard (IP 67 option available)
• Humidity: 98% RH without condensation
– Key Features
• Aluminum housing with brass hollow shaft
• Lifetime lubricated ball bearings
• 8-lead twisted/shielded cable; multiple connector options (standard cable, M12 5-pin, M12 8-pin, M23 9-pin)
• Shock tolerance: 100 G / 11 ms
• Vibration rated: 10–2000 Hz / 10 G
• Weight: 120 g
• CE certified per EN 50081-1 and EN 50082-2
– Typical Applications
Motor speed feedback, positioning control, conveyor and material handling systems, robotic arm encoders, spindle monitoring.
– Compatibility & Integration
The encoder outputs standard TTL or HTL-compatible signals, inverted logic, or differential RS-422A for noise-immune long-cable runs. Multiple cable and connector formats accommodate OEM integration across control platforms.

















