Метка "incremental"

Incremental


A class of devices that present the linear motion made by a positionable object in the form of a periodic signal with a set resolution.When working with incremental encoders, it is possible to organize an absolute frame of reference coordinated with the position of any of the reference marks.

Optoelectronic linear encoder. New profile shape and readhead design with a single illuminator. Measurement length is up to 1240 mm, resolution is up to 0.1 µm. Easy to install: the body is mounted on the end supports.

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Optoelectronic linear encoder. New profile shape and readhead design with a single illuminator. Measurement length is up to 3190 mm, resolution is up to 0.1 µm. High hardness housing.

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Out of production. Optoelectronic linear encoder. New profile shape and readhead design with a single illuminator. Measurement length is up to 1240 mm, resolution is up to 0.1 µm. Easy to install: the body is mounted on the end supports.

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Out of production. Optoelectronic linear encoder. New profile shape and readhead design with a single illuminator. Measurement length is up to 3190 mm, resolution is up to 0.1 µm. High hardness housing.

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Out of production. Optoelectronic linear encoder. New profile shape and readhead design with a single illuminator. Measurement length is up to 1240 mm, resolution is up to 0.1 µm. Easy to install: the body is mounted on the end supports.

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Out of production. Optoelectronic linear encoder. New profile shape and readhead design with a single illuminator. Measurement length is up to 1540 mm, resolution is up to 0.5 µm. The narrowest body designed for use in space-limited applications.

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Optoelectronic linear encoder. New profile shape and readhead design with a single illuminator. Measurement length is up to 3190 mm, resolution is up to 0.1 µm. High hardness housing.

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Optoelectronic linear encoder. New profile shape and readhead design with a single illuminator. Measurement length is up to 3190 mm, resolution is up to 0.1 µm. The hardest housing in the lineup.

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Universal DRO


Full-size universal display for incremental encoders with LCD display, supporting up to four axes.

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Full-size universal display for incremental encoders with LCD display, supporting up to four axes.

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DRO on one coordinate


Compact single-axis digital readout for incremental and absolute encoders.

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Full-size single-axis digital readout for incremental encoders with basic functionality.

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Full-size single-axis digital readout for incremental encoders with digital keyboard and additional features.

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Full-size single-axis digital readout for incremental encoders with digital keyboard and the possibility of formation of control commands.

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DRO on two coordinates


Two small digital readout for incremental encoders with basic functionality.

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Two full-sized display for incremental encoders with basic functionality.

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Two full-sized display for incremental encoders with digital keyboard and additional features.

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Two full-sized display for incremental encoders with digital keyboard and the possibility of formation of control commands.

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DRO on three coordinates


Full-size three-axis digital readout for incremental encoders with basic functionality.

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Full-size three-axis digital readout for incremental encoders with digital keyboard and additional features.

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Full-size three-axis digital readout for incremental encoders with digital keyboard and the possibility of formation of control commands.

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Incremental linear gauges


A class of devices that present the linear movement made by a positionable object in the form of a periodic signal with a set resolution.When working with incremental encoders, it is possible to organize an absolute frame of reference coordinated with the position of any of the reference marks.

High-precision optoelectronic incremental meter with a stroke of 10 or 20 mm. Resolution is from 0.1 to 10 µm. The cable exits from the side opposite to the rod.

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High-precision optoelectronic incremental meter with a stroke of 10 or 20 mm. Resolution is from 0.1 to 10 µm. The cable exits from the rod side.

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Optoelectronic incremental meter with a stroke of 40 mm. Resolution is from 0.5 to 10 µm.

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Miniature high-precision optoelectronic incremental meter with a stroke of 10 or 15 mm. Resolution is from 0.1 to 5 µm.

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High-precision optoelectronic incremental measuring instrument with a stroke of 10 or 20 mm. Resolution is 0.1 or 0.5 µm. The cable exits from the side opposite to the rod.

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High-precision optoelectronic incremental measuring instrument with a stroke of 10 or 20 mm. Resolution is 0.1 or 0.5 µm. The cable exits from the rod side.

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Optoelectronic incremental measuring instrument with a stroke of 40 mm. Resolution is 0.5 or 1 µm.

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Miniature high-precision optoelectronic incremental measuring instrument with a stroke of 10 or 15 mm. Resolution is 0.1 µm.

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Miniature


The smallest optoelectronic rotary encoder in the world! Case diameter is 12 mm, solid shaft diameter is 3 or 4 mm. Flat cable.

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The smallest optoelectronic rotary encoder in the world! Case diameter is 12 mm, hollow shaft diameter is 2 or 3 mm. Flat cable.

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Miniature optoelectronic incremental rotary encoder. Case diameter is 19 mm, solid shaft diameter is 3 or 4 mm. Flat cable.

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Miniature optoelectronic incremental rotary encoder. Case diameter is 19 mm, hollow shaft diameter is 3 mm. Flat cable.

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The series of the smallest rotary encoders! Miniature magnetic incremental rotary encoder. Case diameter is only 8 mm, solid shaft diameter is 3 mm.

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The series of the smallest rotary encoders! Miniature magnetic incremental rotary encoder. Case diameter is only 8 mm, hollow shaft diameter is 2 or 3 mm.

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The series of the smallest rotary encoders! Miniature magnetic incremental rotary encoder with an external elastic element. Case diameter is only 8 mm, hollow shaft diameter is 2 or 3 mm.

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Miniature magnetic incremental rotary encoder. Case diameter is 12 mm, hollow shaft diameter is 3 mm. Flat cable.

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Miniature magnetic incremental rotary encoder with an external elastic element. Case diameter is 12 mm, hollow shaft diameter is 3 mm. Flat cable.

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Miniature magnetic incremental rotary encoder with a cylindrical split coupling. Case diameter is 12 mm, hollow shaft diameter is 3 mm. Flat cable.

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Miniature magnetic incremental rotary encoder. Case diameter is 20 mm, solid shaft diameter is 3 or 4 mm. Shielded cable.

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Miniature optoelectronic incremental rotary encoder with a robust bearing unit. Case diameter is 20 mm, solid shaft diameter is 4 mm. Shielded cable.

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Miniature optoelectronic incremental rotary encoder. Case diameter is 20 mm, hollow shaft diameter is 3 mm. Shielded cable.

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Miniature optoelectronic incremental rotary encoder. Case diameter is 16 mm, solid shaft diameter is 3 mm. Flat cable.

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Miniature optoelectronic incremental rotary encoder. Case diameter is 16 mm, hollow shaft diameter is 2 mm, 3 mm or 1/8". Flat cable.

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Miniature optoelectronic incremental rotary encoder. Case diameter is 16 mm, hollow shaft diameter is 2 mm, 3 mm or 1/8”. Flat cable.

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Miniature optoelectronic incremental rotary encoder. Case diameter is 16 mm, hollow shaft diameter is 2 mm, 3 mm or 1/8”. Flat cable.

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Miniature optoelectronic incremental rotary encoder. Case diameter is 19 mm, hollow shaft diameter is 3 mm. Flat cable.

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Out of production. Miniature optoelectronic incremental rotary encoder. Case diameter is 20 mm, solid shaft diameter is 3 or 4 mm. Shielded cable.

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Out of production. Miniature optoelectronic incremental rotary encoder with a robust bearing unit. Case diameter is 20 mm, solid shaft diameter is 4 mm. Shielded cable.

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Out of production. Miniature optoelectronic incremental rotary encoder. Case diameter is 19 mm, hollow shaft diameter is 3 mm. External split coupling, flat cable.

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Out of production. Miniature optoelectronic incremental rotary encoder. Case diameter is 20 mm, hollow shaft diameter is 3 mm. Shielded cable.

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Compact


Optoelectronic incremental rotary encoder. Case diameter is 28 mm, solid shaft diameter is 3 or 4 mm. Shielded cable.

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Optoelectronic incremental rotary encoder for general industrial use. Case diameter is 36.5 mm, solid shaft diameter is from 3 to 7 mm. Flange corresponds to ROD 1020 and ROD 1080 standards.

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Optoelectronic incremental rotary encoder with a hollow through shaft. Case diameter is 38 mm, shaft diameter is up to 10 mm. External elastic element.

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Optoelectronic incremental rotary encoder with a hollow through shaft. Case diameter is 38 mm, shaft diameter is up to 10 mm. External EDM coupling.

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Optoelectronic incremental rotary encoder for general industrial use. Case diameter is 36.5 mm, hollow shaft diameter is 3 or 4 mm.

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Optoelectronic incremental rotary encoder with a hollow shaft and a coupling embedded in the case. Made for general industrial use. Case diameter is 36.5 mm, shaft diameter is 3 or 4 mm.

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Optoelectronic incremental rotary encoder for general industrial use. Case diameter is 34 mm, solid shaft diameter is from 3 to 6 mm. A more compact version of LIR-137A.

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Magnetic incremental rotary encoder for general industrial use. Case diameter is 36.5 mm, solid shaft diameter is 6 mm. Synchro flange.

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Magnetic incremental rotary encoder for general industrial use. Case diameter is 36.5 mm, solid shaft diameter is 6 mm. Clamping flange.

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Magnetic incremental rotary encoder for general industrial use. Case diameter is 36.5 mm, solid shaft diameter is 6 mm. IP67 protection class.

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Magnetic incremental rotary encoder for general industrial use. Case diameter is 36.5 mm, hollow shaft diameter is 3 mm.

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Magnetic incremental rotary encoder for general industrial use. Case diameter is 36.5 mm, hollow shaft diameter is 3 mm.

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Magnetic incremental rotary encoder for general industrial use. Case diameter is 24 mm, solid shaft diameter is 4 mm.

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Optoelectronic incremental rotary encoder for general industrial use. Case diameter is 36.5 mm, solid shaft diameter is from 3 to 7 mm. Flange corresponds to ROD 1020 and ROD 1080 standards.

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Optoelectronic incremental rotary encoder for general industrial use. Case diameter is 36.5 mm, hollow shaft diameter is 3 or 4 mm.

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Industrial


Optoelectronic incremental rotary encoder for general industrial use. Case diameter is 58 mm, solid shaft diameter is 6 mm. Many design options. The best choice for automation. Synchro flange corresponds to ROD 426 and ROD 456 standards.

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Optoelectronic incremental rotary encoder for general industrial use. Case diameter is 58 mm, solid shaft diameter is 5 mm. Many design options. The best choice for automation. Mounting dimensions are in accordance with the BE178 encoder.

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Optoelectronic incremental rotary encoder for general industrial use. Case diameter is 58 mm, solid shaft diameter is 5 mm. Many design options. The best choice for automation. Mounting dimensions are in accordance with the IRC 120 and IRC 121 encoders.

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Optoelectronic incremental rotary encoder for general industrial use. Case diameter is 58 mm, solid shaft diameter is 8 mm. Many design options. The best choice for automation. Mounting dimensions are in accordance with the IRC 125 encoder.

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Optoelectronic incremental rotary encoder for general industrial use. Case diameter is 58 mm, solid shaft diameter is 10 mm. Many design options. The best choice for automation. Clamping flange corresponds to ROD 420 and ROD 450 standards.

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Optoelectronic incremental rotary encoder for general industrial use. Case diameter is 58 mm, solid shaft diameter is 6 mm. Many design options. The best choice for automation. Square mounting flange.

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Optoelectronic incremental rotary encoder for general industrial use. Case diameter is 76 mm, hollow through shaft diameter is up to 24 mm. Many design options. The best choice for automation.

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Optoelectronic incremental rotary encoder with a hollow through shaft and a coupling embedded in the case. Made for general industrial use. Case diameter is 76 mm, hollow through shaft diameter is 24 mm. Many design options. The best choice for automation.

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Optoelectronic incremental rotary encoder for general industrial use. Case diameter is 50 mm, hollow shaft diameter is from 6 to 10 mm. External elastic element.

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Optoelectronic incremental rotary encoder with a hollow through shaft and a coupling embedded in the case. Made for general industrial use. Case diameter is 50 mm, hollow through shaft diameter is from 6 to 10 mm.

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Optoelectronic incremental rotary encoder for general industrial use. Case diameter is 62 mm, solid shaft diameter is 8 mm. Clamping flange.

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Optoelectronic incremental rotary encoder for general industrial use. Case diameter is 80 mm, solid shaft diameter is 8 mm. Mounting dimensions are in accordance with the IRC 102 encoder.

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Optoelectronic incremental rotary encoder for general industrial use. Case diameter is 62 mm, hollow through shaft diameter is 12 mm. External elastic elements. Many design options.

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Optoelectronic incremental rotary encoder with a hollow through shaft and a coupling embedded in the case. Made for general industrial use. Case diameter is 62 mm, hollow through shaft diameter is from 9 to 12 mm.

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Optoelectronic incremental rotary encoder for general industrial use. Case diameter is 85 mm, conical hollow shaft diameter is 17 mm.

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Optoelectronic incremental rotary encoder for mounting on a large diameter shaft. Case diameter is 92 mm, hollow through shaft diameter is 42 mm. External elastic elements. Many design options.

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Optoelectronic incremental rotary encoder for mounting on a large diameter shaft. Case embedded coupling. Case diameter is 92 mm, hollow through shaft diameter is 42 mm. Many design options.

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Optoelectronic incremental rotary encoder for mounting on a large diameter shaft. Case diameter is 95 mm, hollow through shaft diameter is 42 mm. Many design options.

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Magnetic incremental rotary encoder for general industrial use. Case diameter is 42 mm, solid shaft diameter is 6 mm.

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Magnetic incremental rotary encoder for general industrial use. Case diameter is 42 mm, solid shaft diameter is 6 mm.

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Magnetic incremental rotary encoder for general industrial use. Case diameter is 50 mm, solid shaft diameter is 6 mm.

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Magnetic incremental rotary encoder for general industrial use. Case diameter is 50 mm, solid shaft diameter is 6 mm.

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Magnetic incremental rotary encoder for general industrial use. Case diameter is 58 mm, solid shaft diameter is 6 mm. Synchro flange corresponds to ROD 426 and ROD 456 standards. IP65 protection class.

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Magnetic incremental rotary encoder for general industrial use. Case diameter is 58 mm, solid shaft diameter is 10 mm. Сlamping flange corresponds to ROD 420 and ROD 450 standards. IP65 protection class.

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Heavy-duty magnetic incremental rotary encoder. Case diameter is 58 mm, solid shaft diameter is 6 mm. Synchro flange corresponds to ROD 426 and ROD 456 standards. IP67 protection class.

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Heavy-duty magnetic incremental rotary encoder. Case diameter is 58 mm, solid shaft diameter is 10 mm. Clamping flange corresponds to ROD 420 and ROD 450 standards. IP67 protection class.

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Optoelectronic incremental rotary encoder with a hollow through shaft. Used in lifting and crane equipment and elevator winches. Case diameter is 100 mm, shaft diameter is 30 mm.

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Optoelectronic incremental rotary encoder with a hollow through shaft and a coupling embedded in the case. Made for general industrial use. Case diameter is 76 mm, hollow through shaft diameter is 24 mm. Many design options. The best choice for automation.

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Optoelectronic incremental rotary encoder with a hollow through shaft for large diameters and a built-in coupling. Made for general industrial use. Case diameter is 92 mm, hollow through shaft diameter is 42 mm. Many design options.

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Optoelectronic incremental rotary encoder with a hollow through shaft. Case diameter is 100 mm, hollow through shaft diameter is 24 mm. External elastic elements. Many design options. The best choice for automation.

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Optoelectronic incremental rotary encoder with a hollow through shaft. Used in lifting and crane equipment and elevator winches. Case diameter is 100 mm, shaft diameter is 30 mm.

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Angular encoder for General industrial use. Housing diameter 58 mm, solid shaft 6 mm in diameter.

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High-precision


High-precision optoelectronic incremental rotary encoder for rotary tables. Case diameter is 90 mm, solid shaft diameter is 10 or 14 mm. Permissible error is ±2,5".

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High-precision optoelectronic incremental rotary encoder for rotary tables with a hollow through shaft and a built-in coupling. Case diameter is 90 mm, shaft diameter is 20 mm. Permissible error is ±5".

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High-precision optoelectronic incremental rotary encoder for rotary tables. Case diameter is 170 mm, solid shaft diameter is 14 mm. Permissible error is ±1". Mounting flange corresponds to ROD 700, ROD 780 and ROD 880 standards.

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High-precision photoelectric angular incremental encoder for rotary table fit on a shaft and integrated coupling. Diameter 200 mm, hollow shaft diameter 60 mm. the margin of error of +/-1,5". At the place of installation are similar to RON 786.

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High-precision photoelectric angular incremental encoder for rotary tables. Case diameter 90 mm, solid shaft with a diameter of 10 mm or 14 mm. the margin of error of +/-2,5". Square mounting flange similar to ROD 260 ROD 270 ROD 280.

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High-precision photoelectric angular incremental encoder for rotary tables supplied as a means of measurement. Case diameter 170 mm, solid shaft with a diameter of 14 mm. the margin of error of +/-5". The mounting flange similar to ROD 780 ROD 880.

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Out of production. High-precision photoelectric angular incremental encoder for rotary tables. Case diameter 170 mm, solid shaft with a diameter of 14 mm. the margin of error of +/-1". The mounting flange similar to ROD 780 ROD 880.

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High-precision photoelectric angular incremental encoder for rotary table fit on a shaft and integrated coupling. Case diameter 90 mm, hollow shaft diameter 20 mm. margin of error of +/-5".

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High-precision photoelectric angular incremental encoder for rotary table fit on a shaft and integrated coupling. Case diameter 170 mm, hollow shaft diameter 50 mm. the margin of error of +/-2". At the place of installation are similar to RON 705, RON 785.

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High-precision photoelectric angular incremental encoder for rotary table fit on a shaft and integrated coupling. Case diameter 170 mm, hollow shaft diameter 50 mm. the margin of error of +/-2". At the place of installation are similar to RON 705, RON 785.

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High-precision dual-channel angular optoelectronic incremental encoder. The first channel for positioning at speed, the other for accurate positioning. Case diameter 90 mm, solid shaft with a diameter of 10 mm or 14 mm. the margin of error is +/-7,5".

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High-precision photoelectric angular incremental encoder for rotary table fit on a shaft and integrated coupling. Diameter 200 mm, hollow shaft diameter 60 mm. the margin of error of +/-1,5". At the place of installation are similar to RON 786.

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Embedded


Angular photoelectric incremental encoder, without the mechanics and the housing. Planting diameters of the hub 20 mm, 24 mm, 30 mm. Inlining inside the body of the instrument.

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Angular photoelectric incremental encoder, without the mechanics and the housing. The diameter of the hub 40 mm. Inlining inside the body of the instrument.

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Magnetic contactless incremental linear encoder of our own production.

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Magnetic contactless incremental linear encoder from our partners RLS, Slovenia. Consists of a readhead and a self-adhesive magnetic scale.

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Universal interface module for the connection of incremental and absolute encoders from a PC or controller via RS485, USB, Ethernet or radio link with a mass of additional functions and the ability to control external devices. Compact aluminum housing.

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Universal interface module for the connection of incremental and absolute encoders from a PC or controller via RS485, USB, Ethernet or radio link with a mass of additional functions and the ability to control external devices. Plastic case with mounting on DIN rail.

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Interface module for connection of an incremental encoder with a PC via USB.

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Interface Converter RS485 to USB for modules of LIRA-LIRA and 915-916.

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Out of production. Interface module for connection of an incremental encoder with a PC or controller via RS232 or RS485.

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Optoelectronic incremental flywheel drive 100 clicks to manually control the displacement coordinate.

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Optoelectronic incremental flywheel drive 100 clicks to manually control the displacement coordinate. Flange for surface mounting. Replacement flywheels ВЕ178А-1 and ВЕ178А5-1.

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Incremental magnetic flywheel drive 100 clicks to manually control the displacement coordinate.

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Incremental magnetic flywheel drive 100 clicks to manually control the displacement coordinate. Flange for surface mounting.

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Incremental magnetic flywheel drive 100 clicks to manually control the displacement coordinate. Convenient connection turn the terminal block.

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Incremental magnetic flywheel drive 100 clicks to manually control the displacement coordinate. Flange for surface mounting. Convenient connection via terminal block.

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Angular photoelectric incremental encoder fit onto the shaft for lifting and crane equipment and lift winches. Case diameter 100 mm, through hollow shaft with a diameter of 30 mm.

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Incremental magnetic rotary encoder for converting the movement of a gear or rack.

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Small interface Board for the PCI bus to connect up to 4 incremental encoders with separate connectors for them and without galvanic isolation.

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Small interface Board for the PCI bus to connect up to 4 incremental encoders with a common connector for them and without galvanic isolation.

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Interface Board for the PCI bus to connect up to 4 incremental encoders with separate connectors for them, and full galvanic isolation.

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Interface Board for the ISA bus to connect up to 4 incremental encoders with a common connector for them, and galvanic isolation.

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Interface Board for the ISA bus to connect up to 4 incremental encoders with a common connector for them, and galvanic isolation of signals of external devices.

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Interface Board for the ISA bus to connect up to 3 incremental encoders with separate connectors for them, and galvanic isolation of signals of external devices.

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Out of production. Interface Board for the ISA bus to connect up to 2 incremental encoders with separate connectors for them, and galvanic isolation of signals of external devices.

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Incremental encoder for lift winches.

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