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Incremental Rotary Encoder DFS60B-TEEM03000 | 3000 Pulses/Rev | IP65 Rated | Robust Hollow Shaft Design | by SICK

BRAND: SICK
SKU: 1057027
$921.60 List price: $1,158.40
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The Incremental Rotary Encoder DFS60B-TEEM03000 delivers high precision with 3000 pulses per revolution, making it ideal for industrial automation and robotics applications. Its robust through hollow shaft design with a 12 mm diameter ensures durability, while the IP65 rating protects against dust and water. With a fast initialization time of 40 ms and low power consumption, this encoder is perfect for machine tool positioning and safety monitoring.

Product Name/Title: Incremental Rotary Encoder DFS60B-TEEM03000 | 3000 Pulses/Rev | IP65 Rated | Robust Hollow Shaft Design | by SICK

Brand: SICK

SKU: 1057027

Alternatively Known As: Incremental rotary encoder, Through hollow shaft encoder, Industrial position encoder, SICK DFS60 encoder

Technical Specifications
  • Pulses per revolution: 3,000
  • Measuring step: 90°, electric/pulses per revolution
  • Measuring step deviation: ±0.01°
  • Error limits: ±0.05°
  • Communication interface: Incremental HTL / Push pull
  • Number of signal channels: 6
  • Initialization time: 40 ms
  • Output frequency: ≤ 600 kHz
  • Load current: ≤ 30 mA
  • Power consumption: ≤ 0.5 W (without load)
  • Connection type: Cable, 8-wire, universal, 5 m
  • Supply voltage: 10 to 32 V
  • Reference signal: 1, positioned at 90°, logically gated with A and B
  • Reverse polarity protection: Yes
  • Short-circuit protection of outputs: Yes
  • Mechanical design: Through hollow shaft
  • Shaft diameter: 12 mm (front clamp)
  • Shaft material: Stainless steel
  • Flange material: Aluminum
  • Housing material: Aluminum die cast
  • Start up torque: 0.8 Ncm at +20 °C
  • Operating torque: 0.6 Ncm at +20 °C
  • Permissible static movement: ±0.3 mm radial, ±0.5 mm axial
  • Permissible dynamic movement: ±0.1 mm radial, ±0.2 mm axial
  • Operating speed: ≤ 6,000 min⁻¹
  • Moment of inertia of rotor: 40 gcm²
  • Bearing lifetime: 3.6 x 10^10 revolutions
  • Angular acceleration: ≤ 500,000 rad/s²
  • EMC compliance: EN 61000-6-2 and EN 61000-6-4
  • Enclosure rating: IP65 (housing and shaft side)
  • Permissible relative humidity: 90% (no condensation)
  • Operating temperature range: –40 °C to +100 °C
  • Storage temperature range: –40 °C to +100 °C
  • Shock resistance: 70 g, 6 ms
  • Vibration resistance: 30 g, 10 Hz to 2,000 Hz
  • Dimensions (H x L x W): 58mm x 40mm x 58mm
  • Weight: 0.2 kg
Key Features
  • High resolution with 3,000 pulses per revolution
  • Robust through hollow shaft mechanical design with 12 mm shaft diameter
  • IP65 rated housing and shaft side for protection against dust and water
  • Low power consumption of ≤ 0.5 W without load
  • Reverse polarity and short-circuit protection on outputs
  • Operating temperature range from –40 °C to +100 °C
  • High mechanical durability with bearing lifetime of 3.6 x 10^10 revolutions
  • Fast initialization time of 40 ms
  • 6-channel incremental HTL / Push pull communication interface
Professional Installation Requirements
  • Installation should be performed by qualified personnel familiar with incremental encoder wiring and mounting to ensure proper alignment and electrical connections.
Applications
  • Industrial automation and control systems
  • Robotics and motion control
  • Conveyor and material handling systems
  • Machine tool positioning and feedback
  • Safety-related monitoring in machinery
Standards & Compliance
  • Complies with AS/NZS 4801 – Occupational Health & Safety Management Systems
Environmental Benefits
  • Low power consumption reduces energy usage in industrial applications
  • Durable design extends product life, reducing waste and replacement frequency
Warranty Information

Standard manufacturer warranty applies; please refer to SICK's official warranty policy for details.

Available Now

The SICK DFS60B-TEEM03000 incremental encoder is available for immediate purchase, ideal for industrial automation and safety-related applications requiring precise position feedback.