• Features

    • Magnetic absolute linear encoder
    • MK has a measuring length of up to 50.000 mm
    • Accuracy can reach up to ±35 μm.
    • Encoder has two versions of serial interface - SSI or BiSS C
    • Optionally it can have 2 analog sinusoidal signals with phase shift 90°C and amplitude approx. 1Vpp.
  • Features

    • Measuring length: Up to 50,000 mm (50 meters)
    • Accuracy: Up to ±25 micrometres (μm)
    • Customizable: Other parameters can be modified to meet specific needs
  • Features

    • Converts the movement of key machine parts into electrical signals.
    • Designed for harsh industrial environments and resistant to various physical and environmental factors.
    • Magnetic band length can reach up to 50 meters.
    • Allows for either user-defined reference marks or external zero signal actuator.
    • LED on the reading head confirms reference mark detection.
    • Compressed air can be used to clean the rail surface, improving accuracy.
    • Two output signal options:
      • PCMT-F: Square-wave with built-in interpolation electronics.
      • PCMT-AV: Sinusoidal signal requiring external interpolation.
  • Features

    • Scalable 14-bit analog input for 0 ... 10 V or 0/4 ... 20 mA
    • Power supply 24 VDC
    • Miniature norm panel housing
    • 5 digits LED display with 8 mm height
    • Display range -19999 ... 99999, adjustable zero and full-scale value
    • Latch input to freeze the display, minimum/maximum record memory
    • Easy to set up with only two front keys and menu support
    • Delivery includes adapter frame for 50 x 25 mm cut out and label set with dimensions
    • Front dimension 48 x 24 x 59 mm (1.89 x 0.945 x 2.322")
  • Features

    • 2 universal 16-bit analog inputs for ±10 V or 0/4 … 20 mA
    • 3 control inputs for HTL / PNP signals
    • Power supply 18 ... 30 VDC
    • 24 V auxiliary output for encoder supply
    • High accuracy reference output 10 V for potentiometers > 1 kOhm
    • 3.78 x 1.89-inch norm panel housing and IP65 protection
    • Bright and high-contrast display with event-dependent color variations
    • Emulation of a 7-segment display inclusively icons and units
    • Intuitive and easy parameterization by plain text and touchscreen
    • Operating modes for visualization of INPUT 1, INPUT 2 or combinations of IN1 + IN2, IN1 - IN2, IN1 x IN2, IN1: IN2
    • Numerous features, e. g. Ttara, filters, averaging
    • Linearization with 24 control points

    Option IO (= IO-Link Device)

    • Data transfer via COM3 (230,4 kBaud)
    • Cycle times < 3 msec
    • Process data IN 32 Byte (6 x process values from AX350): - Analog value 1 (scaled / linearized) and unit - Analog value 2 (scaled / linearized) and unit - Analog value 1 (scaled / linearized) with totalisation and unit - Analog value 2 (scaled / linearized) with totalisation and unit - Shortcut analogue value 1 (scaled / linearized) with analogue value 2  (scaled / linearized) and unit - Shortcut totalisator analogue value 1 (scaled / linearized) with totalisator analogue value 2 (scaled / linearized) and unit
    • Process data Out 8 Byte (2 x IO-Link process values to AX350): - IOL process value Out 1 with scaling, adjustable decimal point and programmable units - IOL process values Out 2 with scaling, adjustable decimal point and programmable units

    Combinable with further options:

    • Option AC: Power supply 115 ... 230 VAC
    • Option AO: 16-bit analog output, 4 control outputs, serial RS232 interface
    • Option AR: 16-bit analog output, 4 control outputs, serial RS485 interface
    • Option CO: 4 control outputs, serial RS232 interface
    • Option CR: 4 control outputs, serial RS485 interface
    • Option RL: 2 relay outputs
  • Features

    • 2 pulse inputs with format A, B, 90° [HTL] or A, /A, B, /B [RS422]
    • 4 control inputs for HTL / PNP / NPN / Namur signals [10 ... 30 VDC]
    • Input frequency up to 300 kHz
    • 4 fast transistor outputs, push-pull, short-circuit-proof [5 … 30 VDC]
    • 1 scalable 14-bit analog output (±10 V or 0/4 … 20 mA)
    • Cutting length specification via keyboard
    • Power supply 24 VAC and 17 … 40 VDC
    • Compact norm panel housing (according to EN 60715)
    • Top hat rail mounting by using SM300 support brackets (option)
    • Setup via keys or via PC by serial RS232 interface
    • PROFIBUS connection via Motrona gateway PB251
  • Features

    • 2 pulse inputs with format A, B, 90° [HTL] or A, /A, B, /B [RS422]
    • 4 control inputs for HTL / PNP / NPN / Namur signals [10 ... 30 VDC]
    • Input frequency up to 300 kHz
    • 4 fast transistor outputs, push-pull, short-circuit-proof [5 … 30 VDC]
    • 4 potential-free changeover relay outputs
    • 1 scalable 14-bit analog output (±10 V or 0/4 … 20 mA)
    • Cutting length specification via keyboard or front BCD decade switch
    • Power supply 24 VAC and 17 … 40 VDC
    • Compact norm panel housing (according to EN 60715)
    • Top hat rail mounting by using SM600 support brackets (option)
    • Setup via keys or via PC by serial RS232 interface
    • PROFIBUS connection via Motrona gateway PB251
  • Features

    • 4 pulse inputs with format  A, /A, B, /B [RS422]
    • 4 scalable 12-bit analog inputs for ±10 V or 0/4 ... 20 mA
    • 8 control inputs for PNP signals [10 ... 30 VDC]
    • 4 scalable 12-bit analog outputs for ±10 V or 0/4 ... 20 mA
    • Short loop time (depending on application)
    • Power supply 18 ... 35 VDC
    • Snap-on housing for top-hat rail (according to EN 60715)
    • Setup via Windows operator software (free of charge)
    • OnBoard interfaces: RS232 and CANopen
  • Features

    • The MC800 hardware is a universal motion controller, which serves for sophisticated control tasks in today’s machine engineering and drive technology. This motion controller can cover a wide application range due to the function features and settings of the equipped control firmware.
    • Typical control applications are e.g. drive synchronization of a master and slave axis, index and print mark evaluation, rotating cross cutters, flying and eccentric shears, label printing machines and many more.
    • The unique feature of the MC800 is the integrated tandem drive controller. This enables to reach the acceleration requirements of heavy loads by splitting the necessary power to two independent drives.
    • Further features are the flexible and combinable input configuration for different types of encoders, measuring systems and sensors, the high frequency range up to 2 MHz and the adaptive interface architecture.
    • Due to an extremely short position loop time of 250 µs, a self-optimizing polynomial motion profile, and excellent accuracy - even at high line speeds, the MC800 ensures a very smooth motion with maximum protection of the mechanical parts.
  • Features

    • Start-stop interface for absolute transducers and magnetostrictive sensors
    • SSI input in the format DATA +, DATA-, CLOCK +, CLOCK- up to 32 bits
    • 3 control inputs (hold) for PNP signals [10 ... 30 VDC]
    • Pulse inputs A, B [HTL], A, / A, B, / B [RS422, HTL]
    • Input frequency up to 1 MHz
    • 25-bit parallel output push-pull in BCD, binary or Gray code format
    • Power supply 18 ... 30 VDC
    • Compact housing for mounting on 35 mm top-hat rail (according to EN 60715)
  • Features

    • Start-stop interface for absolute transducers and magnetostrictive sensors
    • Adjustable frequency of the init pulses from 62.5 Hz to 5 kHz
    • Analog output ± 10 V, 0/4 ... 20 mA, 16 bit
    • Power supply 18 ... 30 VDC
    • Compact housing for mounting on a 35 mm top-hat rail (according to EN 60715)
    • Simple parameterization via the OS6.0 user interface
    • Serial RS232 / RS485 interface
    • Pulse inputs A, B [HTL], A, /A, B, /B [RS422, HTL]
    • SSI input DATA+, DATA-, CLOCK+, CLOCK- [RS422], 32 Bit
    • USB interface and RS232/RS485 interface for configuration and serial readout
  • Features

    • Ultra Miniature Size
    • High reliability with mounting the Opt-ASIC (by components quantities decreased)
    • Low torque and low inertia
    • High signal accuracy
    • Type: 12SA
    • Pulse: 100-256
    • Outer Diameter: φ12
    • Ingress Protection: IP00
  • Features

    • Ultra Miniature Size
    • Shaft Diameter of 2.5mm available
    • Type: 18M
    • Pulse: 200-1600
    • Outer Diameter: φ18
  • Features

    • Ultra Miniature Size
    • A shaft Diameter of 2.5mm is available
    • Type: 18S
    • Pulse: 100-1600
    • Outer Diameter: φ18
    • Ingress Protection: IP50
  • Features

    • Compact size for general purpose
    • Type: 38H
    • Pulse: 100-4096
    • Outer Diameter: φ38
    • Ingress Protection: IP50
  • Features

    • Compact size for general purpose
    • Type: 38S
    • Pulse: 100-4096
    • Outer Diameter: φ38
    • Ingress Protection: IP50
  • Features

    • Compact size for general purpose
    • Type: 38SG
    • Pulse: 100-2048
    • Outer Diameter: φ38
    • Ingress Protection: IP50
  • Features

    • Ultra-miniature size
    • OD 7.2mm
    • Height 10.5mm
    • High Resolution
    • Up to 400 resolution
    • Pulse: 100~400
    • Type: 7s
    • Outer Diameter: φ7
  • Features

    • Compact high-speed type
    • Type: OEZ
    • Pulse: 36-1500
    • Outer Diameter: φ28
    • Ingress Protection: IP50
  • Features

    • Wide temperature range
    • Superior environment resistance
      • Vibration: 196m/s2{20G} at 10Hz .500Hz, for 2 hours to each of three axes.
      • Shock: 981m/s2{100G} for 6ms, 3 times to each of 6 axes, 18 times in total
      • Humidity: 90% RH or above at 60°C
    • High-speed rotation
    • High reliability - Extremely long life and high reliability are assured by the structure of mechanical parts and automated coil incorporation.
    • Absolute position detection
    • Long-distance transmission - Robustness against noise enables long-distance transmission
    • Capable of compact incorporation - The use of built-in types of Smartsyn minimizes the housings of motors. Best suited for compact design
    • Low cost
    • Multipolarization is possible by increasing the multiplication factor of angle
  • Features

    • Wide temperature range
    • Superior environment resistance
      • Vibration: 196m/s2{20G} at 10Hz .500Hz, for 2 hours to each of three axes.
      • Shock: 981m/s2{100G} for 6ms, 3 times to each of 6 axes, 18 times in total
      • Humidity: 90% RH or above at 60°C
    • High-speed rotation
    • High reliability - Extremely long life and high reliability are assured by the structure of mechanical parts and automated coil incorporation.
    • Absolute position detection
    • Long-distance transmission - Robustness against noise enables long-distance transmission
    • Capable of compact incorporation - The use of built-in types of Smartsyn minimizes the housings of motors. Best suited for compact design
    • Low cost
    • Multipolarization is possible by increasing the multiplication factor of angle
  • Features

    • Wide temperature range
    • Superior environment resistance
      • Vibration: 196m/s2{20G} at 10Hz .500Hz, for 2 hours to each of three axes.
      • Shock: 981m/s2{100G} for 6ms, 3 times to each of 6 axes, 18 times in total
      • Humidity: 90% RH or above at 60°C
    • High-speed rotation
    • High reliability - Extremely long life and high reliability are assured by the structure of mechanical parts and automated coil incorporation.
    • Absolute position detection
    • Long-distance transmission - Robustness against noise enables long-distance transmission
    • Capable of compact incorporation - The use of built-in types of Smartsyn minimizes the housings of motors.
    • Best suited for compact design
    • Low cost
    • Multipolarization is possible by increasing the multiplication factor of the angle.
  • Features

    • Wide temperature range
    • Superior environment resistance
      • Vibration: 196m/s2{20G} at 10Hz .500Hz, for 2 hours to each of three axes.
      • Shock: 981m/s2{100G} for 6ms, 3 times to each of 6 axes, 18 times in total
      • Humidity: 90% RH or above at 60°C
    • High-speed rotation
    • High reliability - Extremely long life and high reliability are assured by the structure of mechanical parts and automated coil incorporation.
    • Absolute position detection
    • Long-distance transmission - Robustness against noise enables long-distance transmission
    • Capable of compact incorporation - The use of built-in types of Smartsyn minimizes the housings of motors.
    • Best suited for compact design
    • Low cost
    • Multipolarization is possible by increasing the multiplication factor of the angle.
  • Features

    • Wide temperature range
    • Superior environment resistance
      • Vibration: 196m/s2{20G} at 10Hz .500Hz, for 2 hours to each of three axes.
      • Shock: 981m/s2{100G} for 6ms, 3 times to each of 6 axes, 18 times in total
      • Humidity: 90% RH or above at 60°C
    • High-speed rotation
    • High reliability - Extremely long life and high reliability are assured by the structure of mechanical parts and automated coil incorporation.
    • Absolute position detection
    • Long-distance transmission - Robustness against noise enables long-distance transmission
    • Capable of compact incorporation - The use of built-in types of Smartsyn minimizes the housings of motors. Best suited for compact design
    • Low cost
    • Multipolarization is possible by increasing the multiplication factor of angle
  • Features

    • Wide temperature range
    • Superior environment resistance
      • Vibration: 196m/s2{20G} at 10Hz .500Hz, for 2 hours to each of three axes.
      • Shock: 981m/s2{100G} for 6ms, 3 times to each of 6 axes, 18 times in total
      • Humidity: 90% RH or above at 60°C
    • High-speed rotation
    • High reliability - Extremely long life and high reliability are assured by the structure of mechanical parts and automated coil incorporation.
    • Absolute position detection
    • Long-distance transmission - Robustness against noise enables long-distance transmission
    • Capable of compact incorporation - The use of built-in types of Smartsyn minimizes the housings of motors. Best suited for compact design
    • Low cost
    • Multipolarization is possible by increasing the multiplication factor of angle
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