Encoders & Feedback
Incremental, absolute, rotary and linear encoders plus resolvers.
Also searched as: rotary encoderabsolute encoderlinear encoderresolverquadrature
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Incremental Optical Rotary Encoder
Rotation: 360 degrees
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Rotary Encoder + Extras
PPR: 100Phases: 2
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Incremental Rotary Encoder
Output: PNPPhase: AB 90°Pulses per revolution: 100Shaft Diameter: 6 mmShaft Type: Solid
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2 Phase Incremental Rotary Encoder
Cable Length: 194 cmPPR: 600Shaft Diameter: 6 mmShaft Length: 16 mmVoltage: 5-24V DC
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360 Degree Rotary Encoder Module KY-040 with Push Button
Rotation: 360 Degree
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Absolute Encoder 0-5V 0-10V 4-20mA Output 12 Bit
Output: 0-5V 0-10V 4-20mAResolution: 12 Bit
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Absolute Encoder Single Turn 10-30VDC
Voltage: 10-30VDC
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Absolute Encoder, 10 bit, Single Turn Rotary
Resolution: 10 bitTurns: Single Turn
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EC11 Rotary Encoder with Push Button 360° 5 Pins and Knob Cap
Pins: 5Rotation: 360°
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EC11 Rotary Encoder with Push Button 360° 5 Pins and Knob Cap
Pins: 5Rotation: 360°
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Hall Absolute Encoder 6mm Solid Shaft Micro
Shaft Diameter: 6mmShaft Type: Solid
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Hall Absolute Encoder 8mm Solid Shaft
Shaft Diameter: 8mmShaft Type: Solid
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High Accuracy 5um Linear Scale Linear Encoder 400mm Travel Length
Accuracy: 5 umTravel Length: 400 mm
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High Accuracy Linear Scale Encoder High Precision 0.001mm 0-1000mm
Accuracy: 0.001 mmMeasuring Range: 0-1000 mm
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Hollow Shaft Incremental Encoder AB 2 Phase
Phases: 2Shaft Diameter: 6 mmShaft Type: HollowType: Incremental
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Incremental Absolute Encoder 14 Bit Single Turn Rotary
Resolution: 14 BitTurns: Single Turn
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Incremental Rotary Encoder
Outer Diameter: 38 mmShaft Diameter: 6 mm
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KY-040 Rotary Encoder Module 360 Degree Switch Encoders with Knob Cap
Rotation: 360 Degree
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KY-040 Rotary Encoder Module 360 Degrees
Rotation: 360 Degrees
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KY-040 Rotary Encoder Module with Knob Cap
Dimensions: 15x16.5 mm
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Linear Encoder 1um 5V
Resolution: 1 umVoltage: 5 V
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Linear Encoder, 0.01mm 0-500mm Digital
Resolution: 0.01 mmTravel Length: 0-500 mm
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Linear Encoder, High Precision 0.005mm, 20mm x 28mm Slim
Dimensions: 20mm x 28mmResolution: 0.005 mmTravel Length: 50-400 mm
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Linear Encoder, Thin High Precision 0.005mm Slim
Resolution: 0.005 mm
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Magnetic Linear Encoder 5um 500mm
Resolution: 5 umTravel Length: 500 mm
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Multi Turn Absolute Rotary Encoder
Turns: Multi Turn
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Multi-Turn Rotary Absolute Encoder Analogue Voltage Output 0-5V 10V 8mm Blind Hollow
Output: Analogue Voltage 0-5V 10VShaft Diameter: 8mmShaft Type: BlindTurns: Multi-Turn
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Photoelectric Rotary Encoder AB Phase
Output: Voltage OutputPulse: 100-600Voltage: 5-24V
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Quadrature Encoder Metal Geared Motor
RPM: 80Voltage: 12V
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Rotary Encoder CAN Single Turn Absolute Rotary Encoder Solid Shaft Center Hole Angle Measurement
Resolution: 10/12/14/15 bitShaft Diameter: 6 mmShaft Type: SolidTurns: SingleType: Absolute
About encoders & feedback
Encoders and feedback devices translate mechanical motion into electrical signals for control and measurement. This category encompasses incremental, absolute, rotary, and linear encoders, alongside resolvers. Incremental encoders output a series of pulses per unit of displacement, often in quadrature (A/B channels) with an index pulse (Z channel), providing relative position. Absolute encoders provide a unique digital code for each position, maintaining position information after power cycling, available in single-turn and multi-turn variants. Rotary encoders measure angular displacement, specified by resolution (PPR for incremental, bits for absolute), shaft diameter (e.g., 6mm, 10mm, 1/4", 3/8"), mounting style (flange, servo, hollow shaft), and output protocol (e.g., HTL, TTL, SSI, BiSS, Ethernet/IP, PROFINET). Linear encoders measure linear displacement, defined by resolution, measuring length, and output. Resolvers are analog inductive devices providing absolute angular position via sine/cosine signals, robust in harsh environments. Key selection parameters include resolution, accuracy, operating temperature range, shock/vibration resistance, IP rating (e.g., IP65, IP67), electrical interface, and supply voltage. Common materials include aluminum or stainless steel housings, with various bearing types for rotary units.
How to choose
When selecting an encoder or feedback device, first determine if relative or absolute positioning is required. For relative, incremental encoders are suitable; for absolute, consider absolute encoders or resolvers. Next, specify the type of motion: rotary or linear. For rotary, define the required resolution (PPR or bits) and shaft interface (solid, hollow, through-hole). For linear, specify the measuring length and resolution. Evaluate environmental conditions: IP rating for dust/moisture, operating temperature, and shock/vibration resistance. Finally, select the appropriate output protocol (e.g., HTL, TTL, SSI, BiSS, Ethernet/IP) and electrical interface for integration with the control system, balancing performance requirements against system complexity and cost implications.