Baumer

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  • Converting of SinCos signals into multiplied SinCos signals
  • Multiplying factor 1...128
  • Offset and amplitude adjustment
  • Oversampling with 24 MHz
  • Digitally pre-filter
  • High signal quality
  • Converting of SinCos signals into multiplied SinCos signals
  • Additional interpolation of HTL or TTL signals (multiplying or dividing)
  • Oversampling with 24 MHz
  • Digitally pre-filter
  • Very high output frequency possible
Fiber-optic receiver for interference-free transmission of square-wave signals
  • For high interference locations
  • Each channel is coupled onto fiber-optic easy-to-fit plug
  • Reconversion of optical to electrical signals in the receiver control cabinet
  • 3 different plug versions available
  • Delay time over a 100 m length of fiber-optic is 1 Вµs
  • Except of POF all fiber optic cable usable, e. g. PCF 200 Ојm, silica fiber 50 and 62.5 Ојm
  • For high interference locations
  • Converting standard square-wave signals into fiber-optic signals
  • Each channel is coupled onto fiber-optic easy-to-fit plug
  • 3 different plug versions available
  • Delay time over a 100 m length of fiber-optic is 1 Вµs
  • Except of POF all fiber optic cable usable, e. g. PCF 200 Ојm, silica fiber 50 and 62.5 Ојm
Voltage supply9...30 VDC
5 VDC ±5 %
9...26 VDC
Consumption w/o load≤100 mA
Sensing methodOptical
Operating temperature-30...+100 °C
Voltage supply9...26 VDC
5 VDC ±5 %
Consumption w/o load≤100 mA
Sensing methodOptical
Operating temperature-30...+70 °C
Voltage supply9...26 VDC
5 VDC ±5 %
Consumption w/o load≤100 mA
Sensing methodOptical
Operating temperature-30...+70 °C
Voltage supply9...30 VDC
Consumption w/o load≤100 mA (per interface SSI)
≤250 mA (per interface bus)
Initializing time≤200 ms after power on
Operating temperature-20...+85 °C
Voltage supply9...30 VDC
Consumption w/o load≤100 mA (per interface SSI)
≤250 mA (per interface bus)
Initializing time≤200 ms after power on
Operating temperature-20...+85 °C
Blind hollow shaft or cone shaft (1:10)
  • Interface DeviceNet
  • Magnetic sensing method
  • Resolution: singleturn 13 bit, multiturn 16 bit
  • Function display via LEDs
  • Multiturn sensing with Energy Harvesting technology "MicroGen", without gear or battery
  • Two-sided bearing system with hybrid bearings
  • Special protection against corrosion CX (C5-M)
Blind hollow shaft or cone shaft (1:10)
  • Interface EtherCAT
  • Magnetic sensing method
  • Resolution: singleturn 13 bit, multiturn 16 bit
  • Function display via LEDs
  • Multiturn sensing with Energy Harvesting technology "MicroGen", without gear or battery
  • Two-sided bearing system with hybrid bearings
  • Special protection against corrosion CX (C5-M)
  • Incremental encoder (optionally programmable)
  • HTL/TTL output driver for cable length up to 350 m
  • Very high resistance to shock and vibrations
  • Two-sided insulated bearing system with hybrid bearings
  • Special protection against corrosion CX (C5-M)
  • Large terminal box, turn by 180В°
  • Support plate for torque arm 360В° freely positionable
  • Mounting compatible with HOG10 encoders
  • Function display via LEDs
  • Magnetic sensing method
  • Function display via LEDs
  • Multiturn sensing with Energy Harvesting technology "MicroGen", without gear or battery
  • Two-sided bearing system with hybrid bearings
  • Special protection against corrosion CX (C5-M)
  • Interface CANopenВ®
  • Magnetic sensing method
  • Resolution: singleturn 13 bit, multiturn 16 bit
  • Function display via LEDs
  • Multiturn sensing with Energy Harvesting technology "MicroGen", without gear or battery
  • Two-sided bearing system with hybrid bearings
  • Special protection against corrosion CX (C5-M)
  • Magnetic sensing method
  • Function display via LEDs
  • Multiturn sensing with Energy Harvesting technology "MicroGen", without gear or battery
  • Two-sided bearing system with hybrid bearings
  • Special protection against corrosion CX (C5-M)

Incremental encoderHOG 10 with9...30 VDC,40...60 %,340 gcm²

Voltage supply9...30 VDC
Consumption w/o load≤200 mA
Pulses per revolution512...2500
Operating temperature-30...+85 °C
Voltage supply15...30 VDC
Consumption w/o load≤200 mA
Pulses per revolution512...2500
Operating temperature-30...+85 °C
Shaft insulation2.8 kV
Transmission length≤350 m at 100 kHz (HTL-P)
≤550 m at 100 kHz (TTL)
Interference immunityEN 61000-6-2
Operating temperature-40...+100 °C
-25...+100 °C (>3072 pulses per revolution)
-50...+100 °C (optional)

Incremental encoders - combination HOG 10 + FSL

Voltage supply9...30 VDC
5 VDC ±5 %
Consumption w/o load≤100 mA
Pulses per revolution300...5000
Operating temperature-40...+100 °C
-25...+100 °C (>3072 pulses per revolution)
Voltage supply9...30 VDC
5 VDC ±5 %
9...26 VDC
Consumption w/o load≤100 mA
Pulses per revolution1024...10000
Operating temperature-30...+85 °C
Voltage supply9...30 VDC
5 VDC ±5 %
Consumption w/o load≤100 mA
Pulses per revolution300...5000
Operating temperature-40...+100 °C
-25...+100 °C (>3072 pulses per revolution)
-50...+100 °C (optional)
Voltage supply9...30 VDC; 5 VDC ±5 %
Consumption w/o load≤100 mA
Pulses per revolution300...5000
Operating temperature-20...+85 °C
Voltage supply9...30 VDC
5 VDC ±5 %
Consumption w/o load≤100 mA
Pulses per revolution300...5000
Operating temperature-40...+100 °C
-25...+100 °C (>3072 pulses per revolution)
Voltage supply9...26 VDC
5 VDC ±5 %
Consumption w/o load≤100 mA
Pulses per revolution1024...5000
Operating temperature-30...+85 °C
Voltage supply9...30 VDC
5 VDC ±5 %
9...26 VDC
Consumption w/o load≤100 mA
Pulses per revolution250...2500
Operating temperature-40...+100 °C
Voltage supply9...30 VDC
Consumption w/o load≤200 mA
Sensing methodOptical
Operating temperature-20...+85 °C
Voltage supply15...30 VDC
Consumption w/o load≤200 mA
Sensing methodOptical
Operating temperature-20...+85 °C
Voltage supply9...30 VDC
5 VDC ±5 %
9...26 VDC
Consumption w/o load≤100 mA
Pulses per revolution250...2500
Operating temperature-40...+85 °C