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Showing Results For: Motion Control Sensors

Motion Control Sensors

What are Motion Control Sensors?

Motion sensors are also referred to as position sensors or rotary encoders; they are exclusively used for object detection, whether this object moves or how far from the nearby object. and sends back an electrical current to the detector that transforms it into a readable or understandable format for digital equipment. To have an accurate measure, motion sensors are typically used to ensure object movement, especially in angular mechanical position, which also ensures the operator makes sure of the movement of mechanical displacements. Rotary encoders are still necessary to let users regulate and automate the outputs such as velocity, frequency, position, and volume control. 

What are the Types of Motion Control Sensors?

  • Rotary encoders - Electromechanical sensors, also referred to as shaft encoders, track the position of a shaft or an axle and digitally transmit that information back. Numerous automation applications that call for exact shaft infinite rotation frequently use rotary encoders.
  • Linear transducers - are employed to quantify linear motion. They transform displacement into a proportional electrical signal that reflects the magnitude of the displacement. These sensors are frequently employed in harsh, arctic environments and in situations where accuracy is crucial.
  • Magnetic pickups - These are the potential sensors that observe the moving part’s velocity. The motion is allocated using a magnetic field, which stimulates an AC voltage that can be measured. These sensors are used as devices for speedometers or tachometers, which are the combinatorial component of motor and industrial devices.
  • A linear variable differential transformer (LVDT) - is employed to precisely calculate linear displacement. These motion controllers come in a variety of designs, each of which is intended to measure several targets. They feature various armatures, temperature ranges, built-in electronics, and stroke lengths. It may be simply customized to perform various sensing functions, making it suitable for a variety of applications in both industry and research.
  • Incremental Encoder - Incremental encoders generate a predetermined number of pulses each rotation to track the amount of linear or angular movement. The encoder starts at zero every time it is powered up, regardless of where the shaft is, so it measures the shaft to a certain reference point.
  • Absolute Encoder - Offer an exact digital value to be used with each angular position for every cycle, which lets them work conveniently for customized measurements of automated pointed variation. Although the system is regardless of power, absolute cipher may offer a precise position value while the encoder is fueled back up.

What are the applications of Motion Sontrol Sensors?

In industrial environments where the rotation of shafts or the motion of moving parts needs to be precisely regulated and measured to ensure the smooth running of production operations, motion sensors and the following types of sensors are immensely helpful. In the following industries, motion control feedback can be a crucial tool to prevent equipment failure:

  • Automation and control industry
  • Magnitude & Assessment
  • Automation and control system
  • Aerospace production
  • Computerization & Control
  • Assembly Lines
  • Extraction Machinery
  • Aquatic Technology

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Hengstler
0551587, Hengstler
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SKM36-HVA0-K02, Sick
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SFM60-HRKT0K02, Sick
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DAXLVN-0900BA080000M01, Sick
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SFM60-HRAT4K02, Sick
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SFS60-HLKT0K02, Sick
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SRM50-HPA0-K21, Sick
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TTK50-HXQ0-K02, Sick
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DAXLAN-0300BA080000W01, Sick
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DAXLAN-0500BA080000W01, Sick
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DAXLAN-1000BA080000W01, Sick
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SFM60-HLAT4K02, Sick
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8.KIH40.5442.2048, Kubler

8.KIH40.5442.2048, Kubler

KIH40 Incremental Encoder Professional range of Kubler incremental encoders from the KIH40 series. The encoders have optical technology that has been designed for high-cost effectiveness. Resolutions of up to 2500 Pulses per revolutions available. The encoders are ideal for tight mounting spaces and small machines and appliances. Radial Cable Push-Pull or RS422 output circuit
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DBS50E-S5EK01000, Sick

DBS50E-S5EK01000, Sick

Overview At a glance Universal cable connection Face mount flange with 8 mm solid shaft Face mount flange with 2 mounting hole patterns, servo clamps with servo grooves or triangular servo clamps Communication interfaces: TTL/RS-422, HTL/push pull, Open Collector Number of lines from 10 to 2,500 possible Temperature range: –20 °C ... +85 °C Enclosure rating: IP65 Your Benefit The universal cable connection enables the device to be used in tight spaces and provides cable routing flexibility The different flanges allow the device to be mounted with servo clamps, or mounted at the front or rear side. This enables the device to be replaced without modifying the application The high flexibility of the mechanical interface of the encoder and the available accessories allow for the use of a single design in many applications The compact housing diameter saves valuable space Long-term and reliable operation thanks to a high enclosure rating, temperature resistance and bearing lifetime The DBS50 Core incremental encoder features impressively high mechanical flexibility, excellent technical properties, and a number of variations. The DBS50 Core has a 50 mm diameter face mount flange and an 8 mm diameter solid shaft. The housing, which measures 37 mm in diameter and less than 36 mm in length, is extremely compact and saves valuable installation space. The DBS50 Core offers a comprehensive range of mounting options thanks to its numerous mounting hole patterns, servo clamps, servo grooves, and triangular servo clamps. The encoder has compact dimensions and a universal cable connection that allows for cables to run in an axial or radial direction. Applications There are numerous application possibilities for positioning and speed measurement, such as in the textile industry, propulsion technology, storage and conveyor, packaging machines, printing presses, glass industry, and elevators Note Product details cover the whole product family. For details on the specifications for ...
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LT-M-0300-S 0000X000X00, Gefran

LT-M-0300-S 0000X000X00, Gefran

Gefran LT series linear position transducers Main characteristics: 50 → 900 mm strokes Pull shaft, M6 threaded Independent linearity: ±0.05% Infinite resolution Absence of electrical signal variation in output, outside the theoretical electrical stroke Maximum displacement speed 5 m/s Operating temperature: -30 → 100°C Electrical connections:       3-pole LTH connector       4-pole LTM connector DIN43650-ISO4400 Life duration: >25 ´ 10 6 m strokes, or >100 ´ 10 6 manoeuvres, whichever is less (within C.E.U.) Degree of protection IP60 Model 100 130 175 200 275 300 400 500 600 900 Useful electrical stroke mm 100 130 175 200 275 300 400 500 600 900 (C.E.U.) +3/-0 Theoretical electrical stroke mm C.E.U. +3 C.E.U. +4 406 508 609 914 (C.E.T.) ±1 Resistance (C.E.T.) KΩ 5 5 5 5 5 10 Mechanical stroke (C.M.) mm C.E.U. +9 C.E.U. +10 412 518 619 924 Case length (A) mm C.E.U. +62 C.E.U. +63 465 571 672 977 Useful electrical stroke (C.E.U.) 100/130/175/200/275/300/400/500/600/900 Independent linearity (within C.E.U.) ±0·0.05% Resolution Infinite Resistance tolerance ±20% Recommended cursor current Maximum cursor current ≤10mA Dissipation at 40°C (0 W at 120°C) 3 W Maximum applicable voltage 60 V Coeff. Termico della resistenza -200 ±200 ppm/°C Coeff. Termico effettivo della tensione d'uscita Electrical Insulation >100 Mohm at 500 V Dielectric strength >500 V eff at 50 Hz Operating temperature -30°C → 100°C Storage temperature -50°C → 120°C Displacement speed Standard ≤5 m/s Displacement force ≤2 N IP60 version Material transducer case Anodized aluminium Nylon 66 GF 40 Materiale costruttivo albero trascinamento Stainless steel AISI 431 Fixture Brackets with adjustable distance between centres
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BDK 16.24K.0500-5-4, Baumer

BDK 16.24K.0500-5-4, Baumer

BDK Miniature Shaft Collar mounting Push-pull or complementary versions available Radial Shaft Load (N) 10 Axial Shaft Load (N) 10 Body-Housing Material Polyamide Cable Length (m) 1 IP Rating (Housing) IP65 IP Rating (Shaft) IP64 Moment of Inertia 0.65 x 10 -7 (Rotor) Operating Temp. Range (°C) 0 to 65 Pulse Frequency (kHz) 100 Switching Frequency (kHz) 50 Mount Collar Body Diameter (mm) 30 Termination Type (mm) Cable Bayonet, Joint Axial Weight (g) 85 Baumer Aluminium flange material IP42 shaft Maximum speed 1200rpm
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DFS60B-TEPA10000, Sick

DFS60B-TEPA10000, Sick

Overview At a glance Short installation depth High resolution of up to 16 bits Optional programming: Output voltage, zero pulse position, zero impulse width, pulse number and counting direction Connection: Radial or axial cable connection, M23 or M12 male connector, axial or radial. Electrical interfaces: 5 V & 24 V TTL/RS-422, 24 V HTL/push pull, 5 V sin/cos 1 Vss Mechanical interfaces: Face mount flange or servo flange, blind hollow shaft or through hollow shaft Remote zero set possible Positioning of the oxygen cutting torch during continuous casting Monitoring of damper position during aluminum distribution Damper positioning in duct system Monitoring rotary valve operation Calculation of belt speed and running direction Monitoring train loading and unloading operations Exact positioning in the printing process Monitoring of the sheet coil uncoiling process Loop control: loop and speed measurement Static freight measuring Measurement of freight objects Monitoring the ULD contour Your Benefit Reduced storage costs and downtime due to customer-specific programming Variety of different mechanical and electrical interfaces enable the encoder to be optimally adjusted to fit the installation situation Excellent concentricity even at high speeds High resolution of up to 16 bits ensures precise measurements Permanent and safe operation due to a high enclosure rating, temperature resistance and a long bearing lifetime Programmability via the PGT-08 programming software and the PGT-10-Pro display programming tool allow the encoder to be adapted flexibly and quickly according to customer needs Programmable zero pulse position simplifies installation Width and diameter control of coils during winding Monitoring belt operation in carbon and sinter supply Monitoring the operation of the sinter conveyor in the sinter plant Speed measurement on the conveying equipment Speed measurement on conveying systems using encoders Dynamic freight measuring The DFS60 is a high-resoluti...
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AFM60E-TEAK004096, Sick

AFM60E-TEAK004096, Sick

Overview The high-resolution AFS/AFM60 Ethernet absolute encoders take high-precision measurements of the absolute position and speed. Comprehensive smart functions for diagnosing parameters such as temperature or operating time and for early error detection increase the machine and plant availability. Various configuration options – for example, modifying the resolution – simplify installation and enable customized adjustment to each application. SICK provides function blocks for the encoders with a PROFINET and Ethernet/IP™ interface, and the AFS/AFM60 Ethernet/IP™ variants also come with an active web server. Their compact design also makes AFS/AFM60 Ethernet absolute encoders suitable for applications where space is at a premium. At a glance High-resolution absolute encoder with up to 30 bits (AFM60) or 18 bits (AFS60) Face mount flange, servo flange, blind hollow shaft Connection type: 3 x M12 axial plug Communication interfaces: PROFINET, Ethernet/IP™, Ether CAT® Round axis functionality Diagnostic functions Status display via 5 LEDs Your Benefit Their high resolution and measurement accuracy enable them to be used in demanding applications Application-specific solutions thanks to a variety of mechanical interfaces Smart diagnostics functions for increasing the availability of the overall system Easy installation due to various configuration options and function blocks (type-dependent) Fully scalable for binary, non-binary, and non-integer resolutions thanks to round axis functionality Compact and cost-efficient design Integrated web server for easy parameterization without the need for specialized interface knowledge (type-dependent) Applications Measurement of absolute position and speed in various machines and systems used in industrial automation as well as production and process technology, e.g., in storage systems, packaging machines, hydraulic presses, printing machines, rotating tables. Note Product details cover the whole product family. For detail...
New items
8.KIH40.5442.0360, Kubler

8.KIH40.5442.0360, Kubler

KIH40 Incremental Encoder Professional range of Kubler incremental encoders from the KIH40 series. The encoders have optical technology that has been designed for high-cost effectiveness. Resolutions of up to 2500 Pulses per revolutions available. The encoders are ideal for tight mounting spaces and small machines and appliances. Radial Cable Push-Pull or RS422 output circuit
New items
DPL12SHN24A21F3, TE Connectivity

DPL12SHN24A21F3, TE Connectivity

DPL12 12mm illuminated Encoder (Horizontal) Snap-in & PCB mountable versions Knurled or flatted plastic shaft types Contacts 100 mΩ max rated at 0.5mA 5Vdc Optional push switch rated at 10mA 5Vdc Single LED for non switch types and dual LED for switched types Insulation resistance 250 Vac 100MΩ min. Incremental Type Push on switch option Various shaft Lengths LED colour options Detent options
New items
DBS36E-S3EK01000, Sick

DBS36E-S3EK01000, Sick

Overview At a glance Universal cable connection Types with blind hollow shaft or face mount flange with solid shaft Face mount flange with 6 mounting hole patterns and servo groove Communication interfaces: TTL/RS-422, HTL/push pull, Open Collector Number of lines from 10 to 2,500 possible Temperature range: –20 °C ... +85 °C Enclosure rating: IP65 Your Benefit The universal cable connection enables the device to be used in tight spaces and provides cable routing flexibility Different flanges and the universal stator coupling make it possible to mount the device without changing the application Shafts in metric and US type enable worldwide use The high flexibility of the mechanical interface of the encoders and the available accessories allow a single type to be used in many applications The compact housing diameter saves valuable space Long-term and reliable operation thanks to a high enclosure rating, temperature resistance and bearing lifetime The DBS36 Core incremental encoder features impressively high mechanical flexibility, excellent technical properties, and a number of variations. A blind hollow shaft with a shaft diameter of up to 8 mm and a face mount flange with 6 mm and 1/4" solid shaft are available. The type with face mount flange offers 2 different flanges with 6 different mounting hole patterns and a servo groove for mounting with servo clamps. The hollow shaft type has a universal stator coupling that can be used for multiple typical mounting hole circles. All models have compact dimensions and a universal cable connection that allows for cables to run in an axial or radial direction. Applications There are numerous application possibilities for positioning and speed measurement, such as in the textile industry, propulsion technology, storage and conveyor, packaging machines, printing presses, glass industry, and elevators Saw-blade positioning Determining position in modular transfer systems Glass plate measurement Position determination and mo...
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