Position Sensors - Angle, Linear Position Measuring

Image Part Number Description / PDF Quantity Rfq
3382H-1-503

3382H-1-503

J.W. Miller / Bourns

SENSOR ROTARY 330DEG PC PIN

0

AMS22S5A1BHAFL105

AMS22S5A1BHAFL105

J.W. Miller / Bourns

SENSOR ROTARY 50DEG SOLDER LUG

7

AMS22B5A1BHASL112N

AMS22B5A1BHASL112N

J.W. Miller / Bourns

SENSOR ROTARY 120DEG SOLDER LUG

0

3382G-2-503G

3382G-2-503G

J.W. Miller / Bourns

SENSOR ROTARY 330DEG SMD

0

3382G-2-104G

3382G-2-104G

J.W. Miller / Bourns

SENSOR ROTARY 330DEG SMD

0

AMS22S5A1BHAFL117

AMS22S5A1BHAFL117

J.W. Miller / Bourns

SENSOR ROTARY 170DEG SOLDER LUG

7

AMS22S5A1BHAFL312

AMS22S5A1BHAFL312

J.W. Miller / Bourns

SENSOR ROTARY 120DEG SOLDER LUG

7

AMS22B5A1BHASL123N

AMS22B5A1BHASL123N

J.W. Miller / Bourns

SENSOR ROTARY 230DEG SOLDER LUG

0

AMS22U5A1BHARL130

AMS22U5A1BHARL130

J.W. Miller / Bourns

SENSOR ROTARY 300DEG SOLDER LUG

8

AMS22S5A1BHAFL302

AMS22S5A1BHAFL302

J.W. Miller / Bourns

SENSOR ROTARY 20DEG SOLDER LUG

7

AMS22U5A1BHARL118

AMS22U5A1BHARL118

J.W. Miller / Bourns

SENSOR ROTARY 180DEG SOLDER LUG

8

AMS22B5A1BLASL325N

AMS22B5A1BLASL325N

J.W. Miller / Bourns

SENSOR ROTARY 250DEG SOLDER LUG

0

AMS22U5A1BLARL331

AMS22U5A1BLARL331

J.W. Miller / Bourns

SENSOR ROTARY 310DEG SOLDER LUG

8

AMS22U5A1BHARL326

AMS22U5A1BHARL326

J.W. Miller / Bourns

SENSOR ROTARY 260DEG SOLDER LUG

8

AMM20B5A1BHASL164

AMM20B5A1BHASL164

J.W. Miller / Bourns

SENSOR ROTARY 3960DEG PC PIN

50

AMS22B5A1BHASL301N

AMS22B5A1BHASL301N

J.W. Miller / Bourns

SENSOR ROTARY 10DEG SOLDER LUG

0

AMS22B5A1BHASL323N

AMS22B5A1BHASL323N

J.W. Miller / Bourns

SENSOR ROTARY 230DEG SOLDER LUG

0

AMS22B5A1BHASL313N

AMS22B5A1BHASL313N

J.W. Miller / Bourns

SENSOR ROTARY 130DEG SOLDER LUG

0

AMS22U5A1BHARL301

AMS22U5A1BHARL301

J.W. Miller / Bourns

SENSOR ROTARY 10DEG SOLDER LUG

8

AMS22S5A1BHAFL307

AMS22S5A1BHAFL307

J.W. Miller / Bourns

SENSOR ROTARY 70DEG SOLDER LUG

7

Position Sensors - Angle, Linear Position Measuring

1. Overview

Position sensors are devices that detect and measure the displacement of an object relative to a reference point. They are categorized into angle position sensors (measuring rotational displacement) and linear position sensors (measuring straight-line displacement). These sensors convert mechanical motion into electrical signals, enabling precise control and monitoring in automation, robotics, automotive systems, and industrial machinery. Their importance lies in enhancing system accuracy, efficiency, and safety.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
PotentiometricContact-based, high resolution, low costJoysticks, throttle position sensors
Hall EffectNon-contact, magnetic field-based, durableElectric motor commutation, automotive pedals
LVDT (Linear Variable Differential Transformer)High accuracy, infinite resolution, contactlessAerospace actuators, industrial hydraulics
Optical EncodersHigh-speed, high precision, digital outputCNC machines, robotics
MagnetostrictiveNon-contact, high repeatabilityHydraulic cylinders, tank level measurement
CapacitiveNon-contact, compact, sensitive to environmental factorsTouchscreens, precision assembly

3. Structure and Components

A typical position sensor consists of:

  • Sensing Element: Converts mechanical motion to electrical signals (e.g., resistive strip, coil, or magnetic material).
  • Signal Conditioning Circuitry: Amplifies, filters, or digitizes raw signals.
  • Housing: Protects internal components from environmental factors (e.g., dust, moisture).
  • Electrical Connectors: Interface for power and signal transmission.
Non-contact types often include magnets, optical gratings, or capacitive plates for displacement detection.

4. Key Technical Specifications

ParameterDescription
Measurement RangeDetermines the maximum displacement the sensor can measure (e.g., 0-360 for angle sensors).
AccuracyDeviation between measured and actual values (e.g., 0.1% of full scale).
ResolutionSmallest detectable position change (e.g., 0.01 mm for linear sensors).
Environmental ResistanceOperating temperature range (-40 C to +125 C), IP rating (e.g., IP67).
Output Signal TypeAnalog (voltage/current) or digital (PWM, CANbus, SSI).
RepeatabilityAbility to return the same output under identical conditions.

5. Application Fields

Key industries include:

  • Industrial Automation: Robotic arms, conveyor systems.
  • Automotive: Suspension height sensors, steering angle monitoring.
  • Aerospace: Flight control surface position detection.
  • Medical Devices: MRI scanner motion control.
  • Renewable Energy: Solar panel tracking systems.
Example: LVDT sensors in hydraulic presses ensure precise ram positioning to within 0.01 mm.

6. Leading Manufacturers and Products

ManufacturerRepresentative Product
TE ConnectivityLVDT-0600 ( 0.1% accuracy, 0-600 mm range)
Banner EngineeringQ4X Laser Distance Sensor (0.1 mm resolution)
PositekIPT101 Series (Non-contact, 0-100 mm linear range)
Bosch SensortecBMI088 (MEMS-based angle sensor for robotics)
TT ElectronicsPrecision Potentiometers ( 0.5% linearity)

7. Selection Guidelines

Consider:

  • Mechanical Requirements: Stroke length, mounting space, and environmental conditions.
  • Electrical Compatibility: Output signal type, power supply voltage.
  • Performance Needs: Accuracy, response time, and long-term stability.
  • Cost Constraints: Balance between performance and budget (e.g., potentiometers vs. optical encoders).
Example: Use Hall effect sensors in dusty environments where optical encoders may fail.

8. Industry Trends

Emerging trends include:

  • Miniaturization driven by MEMS technology.
  • Integration with wireless communication (e.g., IoT-enabled sensors).
  • AI-enhanced signal processing for error compensation.
  • Growth in non-contact sensors for harsh environments.
  • Increased adoption of inductive sensors in electric vehicles.
The global position sensor market is projected to grow at 6.8% CAGR through 2030, fueled by automation and Industry 4.0.

RFQ BOM Call Skype Email
Top