Encoders

Image Part Number Description / PDF Quantity Rfq
288T232R161A1

288T232R161A1

CTS Corporation

ROTARY ENCODER MECHANICAL 16PPR

1627

11CEK25F122B

11CEK25F122B

CTS Corporation

ROT ENCODER MECHANICAL 12PPR WSW

0

291C6022F832AB

291C6022F832AB

CTS Corporation

ROTARY ENCODER OPTICAL 8PPR

0

12CE1K25F125N

12CE1K25F125N

CTS Corporation

ROT ENCODER MECH 12PPR GRN LED

0

12CE1H25F12224

12CE1H25F12224

CTS Corporation

ROT ENCODER MECH 12PPR BLUE LED

492

288T232R161A2

288T232R161A2

CTS Corporation

ROTARY ENCODER MECHANICAL 16PPR

4770

291C6022F624AB

291C6022F624AB

CTS Corporation

ROTARY ENCODER OPTICAL 6PPR

195

290VAB0R201A1

290VAB0R201A1

CTS Corporation

ROTARY ENCODER MECHANICAL 20PPR

0

11CEM20F121A

11CEM20F121A

CTS Corporation

ROTARY ENCODER MECHANICAL 12PPR

491

291V1022F832AB

291V1022F832AB

CTS Corporation

ROTARY ENCODER OPTICAL 8PPR

436

11CEH20F122B

11CEH20F122B

CTS Corporation

ROT ENCODER MECHANICAL 12PPR WSW

482

291V1022S624AA

291V1022S624AA

CTS Corporation

ROTARY ENCODER OPTICAL 6PPR

138

291V1024FX24AAB

291V1024FX24AAB

CTS Corporation

ROTARY ENCODER OPTICAL 24PPR

142

11CEK25F122A

11CEK25F122A

CTS Corporation

ROTARY ENCODER MECHANICAL 12PPR

0

11CEK25F243B

11CEK25F243B

CTS Corporation

ROT ENCODER MECHANICAL 24PPR WSW

465

12CE1N25F125N

12CE1N25F125N

CTS Corporation

ROT ENCODER MECH 12PPR GRN LED

499

11CEK25F243A

11CEK25F243A

CTS Corporation

ROTARY ENCODER MECHANICAL 24PPR

500

11CEH20F122A

11CEH20F122A

CTS Corporation

ROTARY ENCODER MECHANICAL 12PPR

478

291P1022F416AB

291P1022F416AB

CTS Corporation

ROTARY ENCODER OPTICAL 4PPR

126

290VAB0F201B2

290VAB0F201B2

CTS Corporation

ROTARY ENCODER MECHANICAL 20PPR

0

Encoders

1. Overview

Encoders are electro-mechanical devices that convert mechanical motion into digital signals. They play a critical role in measuring position, velocity, and direction in automation systems. By translating physical movement into electrical signals, encoders enable precise control in industrial machinery, robotics, and motion control systems. Their importance continues to grow with advancements in Industry 4.0, smart manufacturing, and autonomous systems.

2. Main Types & Functional Classification

TypeFunctional CharacteristicsApplication Examples
Rotary EncodersMeasure angular position/speed using optical/magnetic sensorsCNC machine spindles, motor feedback systems
Linear EncodersTrack straight-line motion with scale and readheadCoordinate measuring machines, semiconductor manufacturing
Absolute EncodersProvide unique digital position codes at power-onRobot joint positioning, multi-axis systems
Incremental EncodersGenerate pulse trains for relative motion measurementConveyor belts, speed monitoring systems

3. Structure & Components

Typical encoder construction includes: - Housing (metal/plastic for environmental protection) - Shaft/bearing system (precision-machined for rotational stability) - Sensor module (optical code disk with LED/photodetector or magnetic Hall-effect sensors) - Signal processing circuitry (for noise filtering and waveform shaping) - Output interface (push-pull, open-collector, or digital fieldbus)

4. Key Technical Specifications

ParameterImportanceTypical Values
Resolution (PPR)Determines measurement precision100-10,000 PPR
Accuracy (arc-minutes)Indicates position measurement reliability 1 to 20 arc-minutes
Output TypeAffects system compatibilityIncremental: TTL/HTL, Absolute: SSI/CANopen
Environmental RatingDefines operating conditionsIP54-IP69K for dust/water resistance

5. Application Fields

  • Industrial Automation: Machining centers, assembly robots
  • Automotive: Electric power steering systems, transmission control
  • Renewable Energy: Wind turbine blade pitch control
  • Medical: MRI scanner positioning systems
  • Aerospace: Flight control surface monitoring

6. Leading Manufacturers & Products

ManufacturerProduct SeriesKey Features
HeidenhainROC400023-bit absolute rotary encoder with 0.1 m accuracy
OmronE6B2-CWZ6CIncremental encoder with 1000 PPR and IP67 rating
BalluffBML-CRK-P-2Magnetic linear encoder with 1 m resolution
CUI DevicesAMT22Programmable absolute encoder with SPI interface

7. Selection Guidelines

Key considerations include: - Application type (position vs. speed measurement) - Required resolution and mechanical accuracy - Environmental factors (temperature, vibration, contamination) - Output signal compatibility (analog/digital, communication protocol) - Mechanical mounting constraints (shaft size, space limitations) - Cost-performance trade-offs for the specific application

8. Industry Trends

Current trends shaping encoder technology: - Integration with IoT-enabled condition monitoring systems - Development of high-temperature encoders for extreme environments - Miniaturization for medical and aerospace applications - Adoption of wireless signal transmission for mobile equipment - Increasing use of multi-turn absolute encoders without battery backup - Enhanced cybersecurity features for industrial network protocols

Real-world implementation example: In semiconductor manufacturing, Heidenhain's linear encoders with 1 m accuracy enable nanometer-precision wafer positioning during photolithography processes, achieving 99.999% production yield rates.

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