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Shaft encoders - Import export

Germany

Germany

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Magnetic, absolute multi-turn rotary encoder WV36M/SSI -batteryless, with SSI interface. Owing to its double ball bearing, small design and wear-free magnetic measurement method, the WV36M/SSI is also best suited for positioning jobs in mechanically demanding environments. Compact design (36.5mm diameter). SSI interface. IP65 protection category. Multi-turn without battery. Double ball bearings. 13 bit multi-turn (8192 revolutions). 12 bit single-turn (4096 steps).

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Germany

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The AV58M rotary encoder with teach-in function is a magnetic absolute value encoder with analog output. The user himself can set the rotary encoder's desired measurement range via two buttons on the rear as well as two external inputs. The device features a batteryless multi-turn technology. Absolute analog encoder. 12 Bit (4096) resoluttion over the measuring range. Operating tmperature until -40 °C. Voltage (0 … 10 V)/ current (4 … 20 mA) outputs. Programmable measuring range via teach-in function with key funkcion or external inputs.

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Germany

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The AH36M rotary encoder with teach-in function is a magnetic absolute value encoder with analog output. The user himself can set the rotary encoder's desired measurement range via two external inputs. The device features a batteryless multi-turn technology. Absolute analog encoder. 12 Bit (4096) resoluttion over the measuring range. Operating tmperature until -40 °C. Voltage (0 … 10 V)/ current (4 … 20 mA) outputs. Programmable measuring range via teach-in function with external inputs. Hollow shaft with ø6 mm.

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Germany

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Magnetic, absolute multi-turn rotary encoder WV36M/CAN - batteryless, with CANopen or SAE J1939 interface. Owing to its double ball bearing, small design and wear-free magnetic measurement method, the WV36M/CAN is also best suited for positioning jobs in mechanically demanding environments. Compact design (36.5mm diameter). CANopen (DS406) or SAE J1939 (DS417) interface. Multi-turn without battery. Double ball bearings. 12 bit multi-turn (4096 revolutions). 12 bit single-turn (4096 steps).

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Germany

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High resolution, magnetic scanning, sturdy plastic housing in especially flat design - for applications with restricted space conditions, e.g., in drive technology or medical technology. Installation depth 25 mm. Resolutions of max. 2000 pulses/revolution. Through hollow shafts up to max. ø14 mm with plain or ball bearing. IP50 protection category (plain bearing), IP63 (ball bearing). Housing made of reinforced plastic.

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Germany

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The IG06 incremental encoder features a low-cost design with through hollow shaft and can be mounted easily. Resolutions of max. 1024 pulses/revolution. Through hollow shafts up to ø20 mm. Housing made of impact-resistant plastic. Low-cost version.

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Germany

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The IG07 is a robust incremental encoder with through hollow shaft, which is nearly indestructible even under the harshest ambient conditions. Resolutions of max. 1024 pulses/revolution. Through hollow shafts up to ø20 mm. Housing made of zinc die-cast. High shaft load rating, radial 5600 N, axial 1400 N.

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Germany

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Resolution max. 5000 pulses/revolution. Through hollow shaft up to max. ø28 mm. M12 or cable connection

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Germany

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Resolution max. 5000 pulses/revolution. Through hollow shaft up to max. ø15 mm. Robust bearing construction. -40 °C … +85 °C operating temperature. High shock and vibration resistance

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Germany

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Incremental Profile AG02 Incremental: Easy mounting Through hollow shafts up to max. ø14 mm Integrated magnetic position encoder on output shaft Integrated motor control (option)

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Germany

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Incremental Profile AG01 Incremental: Easy mounting Through hollow shafts up to max. ø14 mm possible Integrated magnetic position encoder on output shaft Electrical connection via cable or connector

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Germany

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Sturdy and powerful actuator for simple positioning jobs Easy mounting. Through hollow shafts up to max. ø14 mm. Integrated magnetic position encoder on output shaft. Integrated motor control (option).

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Germany

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High-performance compact actuator for simple positioning tasks Easy mounting. Through hollow shafts up to max. ø14 mm possible. Integrated magnetic position encoder on output shaft. Electrical connection via cable or connector.

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Germany

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Metal housing with hollow shaft Profile AH36M: Absolute analog encoder 12 Bit (4096) resoluttion over the measuring range Operating tmperature until -40 °C Voltage (0 … 10 V)/ current (4 … 20 mA) outputs Programmable measuring range via teach-in function with external inputs Hollow shaft with ø6 mm

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Germany

Plastic housing - stainless steel shaft - conductive plastic element with precious metal wiper - central mounting thread M6 x 0.75 in brass - potted rear solder pins.

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Germany

Robust case with wall thickness of 5 mm either in seawater resistant aluminum or in stainless steel - shaft in stainless steel - rotating components with permanent magnet in front chamber - electronic circuit with ASiC and Hall elements and interface components fitted within main chamber, separated from rotating components by a metallic wall - integrated absolute multiturn gearbox for the acquisition of revolutions - optional potting against water jets (IP 69K) - electrical connections via round plug M12x1 or lead exit.

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Germany

Recording of the angular position and revolutions by mens of Hall sensors - multiturn version with absolute transmission for up to 4096 revolutions - data output plus parameterisation and diagnosis via Profibus-DP. Robust housing manufactured from seawater-proof aluminium or stainless steel - stainless steel shaft - ball bearing with radial shaft seal - sensor circuit consisting of ASIC with Hall elements - electrical connections via the connecting cap with threaded cable connections. The absolute encoders are designed for direct connection to the PROFIBUS-DP. The interface is implemented with the SPC3 Siemens PROFIBUS controller. The protocol corresponds to DP-Slave Class 2 functionality in accordance with Profibus profile for encoders, No. 3.062, and is described in detail in the TRD 12770 user manual. The TRD is mechanicallly and electrically compatible with the electro-optical encoder CRD.

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Germany

Robust aluminium case - Stainless steel shaft, Ø 10f7 shaft with flat (9 -0.1 mm), RS bearing with NILOS ring - Potted housing for IP 69K protection - Electrical connection via 2 sensor plugs (M12 plug, 5-pin, pins) for bus 1 and bus 2. One hex rotary coding switch each for setting the address under the blind plug

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Germany

A positive-locking mechanical connection between the cus-tomer’s shaft and the sensor shaft ensures that the magnet in the sensor shaft precisely reflects the rotation of the cus-tomer’s shaft. With the TBN model, one rotation (i.e. max. 16,384 steps) is recorded.With the subsequent absolute transmission, the TRN shaft encoder reaches a measuring range of up to 4096 rotations. The position and speed values (PDO - Process Data Object) are output via the CANopen protocol.

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Germany

Robust case with wall thickness of 5 mm either in seawater resistant aluminum or in stainless steel - shaft in stainless steel - rotating components with permanent magnet in front chamber - electronic circuit with ASiC and Hall elements and interface components fitted within main chamber, separated from rotating components by a metallic wall - integrated absolute multiturn gearbox for the acquisition of revolutions - optional potting against water jets (IP 69K) - electrical connections via round plug M12x1 or lead exit.

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Germany

A positive-locking mechanical connection between the cus-tomer’s shaft and the sensor shaft ensures that the magnet in the sensor shaft precisely reflects the rotation of the cus-tomer’s shaft. With the TBN model, one rotation (i.e. max. 16,384 steps) is recorded.With the subsequent absolute transmission, the TRN shaft encoder reaches a measuring range of up to 4096 rotations. The position and speed values (PDO - Process Data Object) are output via the CANopen protocol.

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Germany

A positive-locking mechanical connection between the cus-tomer’s shaft and the sensor shaft ensures that the magnet in the sensor shaft precisely reflects the rotation of the cus-tomer’s shaft. With the TBN model, one rotation (i.e. max. 16,384 steps) is recorded.With the subsequent absolute transmission, the TRN shaft encoder reaches a measuring range of up to 4096 rotations. The position and speed values (PDO - Process Data Object) are output via the CANopen protocol.

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Germany

A positive-locking mechanical connection between the cus-tomer’s shaft and the sensor shaft ensures that the magnet in the sensor shaft precisely reflects the rotation of the cus-tomer’s shaft. With the TBN model, one rotation (i.e. max. 16,384 steps) is recorded.With the subsequent absolute transmission, the TRN shaft encoder reaches a measuring range of up to 4096 rotations. The position and speed values (PDO - Process Data Object) are output via the CANopen protocol.

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Germany

A positive-locking mechanical connection between the cus-tomer’s shaft and the sensor shaft ensures that the magnet in the sensor shaft precisely reflects the rotation of the cus-tomer’s shaft. With the TBN model, one rotation (i.e. max. 16,384 steps) is recorded.With the subsequent absolute transmission, the TRN shaft encoder reaches a measuring range of up to 4096 rotations. The position and speed values (PDO - Process Data Object) are output via the CANopen protocol.

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Germany

A positive-locking mechanical connection between the cus-tomer’s shaft and the sensor shaft ensures that the magnet in the sensor shaft precisely reflects the rotation of the cus-tomer’s shaft. With the TBN model, one rotation (i.e. max. 16,384 steps) is recorded.With the subsequent absolute transmission, the TRN shaft encoder reaches a measuring range of up to 4096 rotations. The position and speed values (PDO - Process Data Object) are output via the CANopen protocol.

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Germany

A positive-locking mechanical connection between the cus-tomer’s shaft and the sensor shaft ensures that the magnet in the sensor shaft precisely reflects the rotation of the cus-tomer’s shaft. With the TBN model, one rotation (i.e. max. 16,384 steps) is recorded.With the subsequent absolute transmission, the TRN shaft encoder reaches a measuring range of up to 4096 rotations. The position and speed values (PDO - Process Data Object) are output via the CANopen protocol.

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Germany

A positive-locking mechanical connection between the cus-tomer’s shaft and the sensor shaft ensures that the magnet in the sensor shaft precisely reflects the rotation of the cus-tomer’s shaft. With the TBN model, one rotation (i.e. max. 16,384 steps) is recorded.With the subsequent absolute transmission, the TRN shaft encoder reaches a measuring range of up to 4096 rotations. The position and speed values (PDO - Process Data Object) are output via the CANopen protocol.

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Germany

Please note that this product is an accessory. In the "Products" section you will find the corresponding encoders that you can order for your selected article.The linear movement of a flexible steel cable, which can have a length of up to 5 m, is converted into an rotary movement with the aid of a measuring drum. The measuring drum is connected to the shaft of an encoder. In this way a change in displacement of the measuring cable causes the shaft of the encoder to rotate by a directly proportional amount which can be recorded. The restoring force of the spring drive holds the measuring cable tight at all times and prevents any sagging which would otherwise induce an error. The cable is wound up precisely and reproducibly wrap for wrap in the helical groove of the drum. The nozzle, through which the cable enters the drum, is protected with a brush and a bellow to prevent water or dust entering the drum. Two roller units at the cable entry allow for up to 20° <) deflection of the cable.

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Germany

Please note that this product is an accessory. In the "Products" section you will find the corresponding encoders that you can order for your selected article. The linear movement of a flexible steel cable, which can have a length of up to 30 m, is converted into an rotary movement with the aid of a measuring drum. The measuring drum is connected to the shaft of an encoder. In this way a change in displacement of the measuring cable causes the shaft of the encoder to rotate by a directly proportional amount which can be recorded. The restoring force of the spring drive holds the measuring cable tight at all times and prevents any sagging which would otherwise induce an error. The measuring drum moves axially on a spindle ensuring that the cable is wound up precisely and reproducibly wrap for wrap in the helical groove of the drum. The nozzle, through which the cable enters the drum, is protected with a brush and a bellow to prevent water or dust entering the drum.

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