Technical Documents
Specifications
Brand
SickProduct Type
Linear Measuring Encoder
Encoder Technology
Linear Measuring
Pulses Per Revolution
65536ppr
Series
ECOline
Maximum Revolutions
65536rpm
Output Signal Type
TTL
Stroke
5 m
Shaft Diameter
11mm
Interface Type
TTL
Terminal Type
M12 Male Connector
IP Rating
IP50, IP67
Maximum Supply Voltage
32V
Minimum Operating Temperature
-30°C
Overall Depth
76.5mm
Overall Width
190mm
Standards/Approvals
cULus, CE
Overall Height
190mm
Maximum Operating Temperature
100°C
Switching Frequency
800kHz
Country of Origin
Germany
Product Details
Sick EcoLine series incremental encoders are a compact design encoder ideal for applications with limited space. The slim body features an integrated spring in the drum and an adaption without coupling, to achieve high precision and stability. The special nozzle serves to protect the measuring wire from damage caused by vibration.
Stock information temporarily unavailable.
AED 4,375.66
AED 4,375.66 Each (ex VAT)
AED 4,594.44
AED 4,594.44 Each (inc. VAT)
1
AED 4,375.66
AED 4,375.66 Each (ex VAT)
AED 4,594.44
AED 4,594.44 Each (inc. VAT)
Stock information temporarily unavailable.
1
Technical Documents
Specifications
Brand
SickProduct Type
Linear Measuring Encoder
Encoder Technology
Linear Measuring
Pulses Per Revolution
65536ppr
Series
ECOline
Maximum Revolutions
65536rpm
Output Signal Type
TTL
Stroke
5 m
Shaft Diameter
11mm
Interface Type
TTL
Terminal Type
M12 Male Connector
IP Rating
IP50, IP67
Maximum Supply Voltage
32V
Minimum Operating Temperature
-30°C
Overall Depth
76.5mm
Overall Width
190mm
Standards/Approvals
cULus, CE
Overall Height
190mm
Maximum Operating Temperature
100°C
Switching Frequency
800kHz
Country of Origin
Germany
Product Details
Sick EcoLine series incremental encoders are a compact design encoder ideal for applications with limited space. The slim body features an integrated spring in the drum and an adaption without coupling, to achieve high precision and stability. The special nozzle serves to protect the measuring wire from damage caused by vibration.