SICK Incremental encoders Items 4513 - 4608 of 6162 ⍾ SICK ⍾ Last modified
The SICK Incremental encoders catalog features rotary encoders designed for incremental measurement. These encoders commonly utilize 90° measuring steps electronically and offer various pulse counts per revolution, ranging from 50 to 65536. They typically employ TTL/RS422 electrical interfaces, often utilizing M12 or M23 connectors. These devices are characterized by incremental communication interfaces and radial electrical connections.
Incremental encoders ⍾ Page 48
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DGS35-YK204096
Performance: Pulses per revolution: 4,096; Measuring step: 90° electric/pulses per revolution; Measuring step deviation: ± 45° / pulses per revolution; Error limits: ± 45° / pulses …
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DGS35-YLK02048
Performance: Pulses per revolution: 2,048; Measuring step: 90° electric/pulses per revolution; Measuring step deviation: ± 45° / pulses per revolution; Error limits: ± 45° / pulses …
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DGS80B-TSL401024
Incremental encoders DGS80/90, model DGS80B-TSL401024, feature a through hollow shaft design of 30 mm with a front clamp. They operate with a communication interface of 5 V to 30 V …
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DKS40-A5P01024
Performance: Pulses per revolution: 1,024; Measuring step: 90° electric/pulses per revolution; Measuring step deviation at binary number of lines: 0.035°; Error limits: 0.09° 1); I …
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DKS40-E5K00020
Performance: Pulses per revolution: 20; Measuring step: 90° electric/pulses per revolution; Measuring step deviation at non binary number of lines: 0.07°; Error limits: 0.13° 1); I …
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DKS40-E5M00016
Performance: Pulses per revolution: 16; Measuring step: 90° electric/pulses per revolution; Measuring step deviation at binary number of lines: 0.035°; Error limits: 0.09° 1); Inte …
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DKS40-E5M00100
Performance: Pulses per revolution: 100; Measuring step: 90° electric/pulses per revolution; Measuring step deviation at non binary number of lines: 0.07°; Error limits: 0.13° 1); …
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DKS40-E5M00250
Performance: Pulses per revolution: 250; Measuring step: 90° electric/pulses per revolution; Measuring step deviation at non binary number of lines: 0.07°; Error limits: 0.13° 1); …
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