Product Model

ARS60-F4A00720

In Stock
Last updated: 2025/4/18
sick ARS60-F4A00720

Selling Points

  • 1Offers a maximum resolution of 720 steps per revolution with a measuring step deviation of 0.016°.
  • 2Ensures long LED lifetime with automatic light regulation and opto-ASICS with Chip-on-Board technology.
  • 3Allows for tailor-made solutions with any desired number of steps between 2 and 32,768.
  • 4Features an aluminum die-cast housing and can withstand radial and axial loads of up to 20 N and 10 N respectively.
  • 5Operates in temperatures from -20°C to +85°C and has a permissible relative humidity of up to 90%.
Product Details
ARS60-F4A00720
sick

Technical Specifications

Detailed engineering parameters based on manufacturer documentation

ParameterValueParameterValue
Number of steps per revolution (max. resolution)
720
Measuring step
360° /number of steps
Measuring step deviation
0.016° non-binary number of steps
Error limits G
0.046° (non-binary number of steps)
Repeatability standard deviation σr
0.005°
Communication interface
Parallel data world
Initialization time
80 ms
Code type
Gray
Code sequence parameter adjustable
CW (clockwise) increasing when viewing the clockwise rotating shaft
Measured value backlash
0.005°
Response threshold
0.003°
Connection type
Male connector, M23, 21-pin, radial
Supply voltage
10 ... 32 V
Operating current
Typ. 90 mA
MTTFd: mean time to dangerous failure
300 years (EN ISO 13849-1)
Switching level of control inputs
Logic H = 0.7 x U#!#, Logic L = 0 V ... 0.3 x U
Actuation of set button
≥ 100 ms
Mechanical design
Solid shaft, face mount flange
Shaft diameter
10 mm
Shaft length
19 mm
Weight
Approx. 0.3 kg
Housing material
Aluminum die cast
Start up torque
Typ. 0.4 Ncm
Operating torque
Typ. 0.3 Ncm
Permissible shaft loading
20 N (radial)#!#10 N (axial)
Operating speed
≤ 6,000 min⁻¹ with shaft seal#!#≤ 10,000 min⁻¹ without shaft seal2)
Moment of inertia of the rotor
54 gcm²
Bearing lifetime
3.6 x 10#!#revolutions
Angular acceleration
≤ 500,000 rad/s²

Specifications may be subject to change without notice