Rotary Potentiometers, Rheostats

Image Part Number Description / PDF Quantity Rfq
EVJ-Y00F30A24

EVJ-Y00F30A24

Panasonic

POT 20K OHM 1/20W LOGARITHMIC

0

EVJ-Y10F03D54

EVJ-Y10F03D54

Panasonic

POT 50K OHM 1/20W LOGARITHMIC

0

EVU-E2KFK4B14

EVU-E2KFK4B14

Panasonic

POT 10K OHM 1/20W LINEAR

0

EVU-F3MFL3B54

EVU-F3MFL3B54

Panasonic

POT 50K OHM 1/20W LINEAR

0

EVJ-Y81F30B54

EVJ-Y81F30B54

Panasonic

POT 50K OHM 1/20W LINEAR

0

EVU-E2JFK4D54

EVU-E2JFK4D54

Panasonic

POT 50K OHM 1/20W LOGARITHMIC

0

EVJ-YK1F03368

EVJ-YK1F03368

Panasonic

POT 50K OHM 1/20W LOGARITHMIC

0

EVU-F3AF30B14

EVU-F3AF30B14

Panasonic

POT 10K OHM 1/20W LINEAR

0

EVJ-C00F25D53

EVJ-C00F25D53

Panasonic

POT 5K OHM 1/20W LOGARITHMIC

0

EVJ-C25F02D24

EVJ-C25F02D24

Panasonic

POT 20K OHM 1/20W LOGARITHMIC

0

EVJ-C20F02A53

EVJ-C20F02A53

Panasonic

POT 5K OHM 1/20W LOGARITHMIC

0

EVJ-Y10F03A54

EVJ-Y10F03A54

Panasonic

POT 50K OHM 1/20W LOGARITHMIC

0

EVU-E2AF25D14

EVU-E2AF25D14

Panasonic

POT 10K OHM 1/20W LOGARITHMIC

0

EVJ-C00F25A53

EVJ-C00F25A53

Panasonic

POT 5K OHM 1/20W LOGARITHMIC

0

EVJ-Y15F03D54

EVJ-Y15F03D54

Panasonic

POT 50K OHM 1/20W LOGARITHMIC

0

EVJ-Y15F03A54

EVJ-Y15F03A54

Panasonic

POT 50K OHM 1/20W LOGARITHMIC

0

EVU-E3KFK4B14

EVU-E3KFK4B14

Panasonic

POT 10K OHM 1/20W LINEAR

0

EVJ-C00F25A24

EVJ-C00F25A24

Panasonic

POT 20K OHM 1/20W LOGARITHMIC

0

EVJ-C20F02D53

EVJ-C20F02D53

Panasonic

POT 5K OHM 1/20W LOGARITHMIC

0

EVU-F3MFL3D53

EVU-F3MFL3D53

Panasonic

POT 5K OHM 1/20W LOGARITHMIC

0

Rotary Potentiometers, Rheostats

1. Overview

Rotary potentiometers and rheostats are variable resistors used to control electrical resistance in circuits. Potentiometers function as voltage dividers, while rheostats regulate current flow. These components enable precise manual control in electronics, making them critical in applications ranging from audio equipment to industrial machinery. Their ability to provide analog signal adjustment remains indispensable despite the rise of digital controls.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Carbon Composition PotentiometersLow-cost, medium precision, durableConsumer electronics volume controls
Cermet PotentiometersHigh temperature stability, long lifespanIndustrial measurement devices
Conductive Plastic PotentiometersSmooth rotation, high resolutionMedical imaging equipment
Wirewound RheostatsHigh power handling, coarse adjustmentMotor speed controllers
Digital PotentiometersProgrammable resistance, non-volatile memoryAutomotive sensor calibration

3. Structure and Components

Typical rotary potentiometer construction includes: 1) A resistive element (circular track of carbon film, cermet, or wirewound material), 2) A wiper contact assembly with spring-loaded arm, 3) Rotational shaft with detent mechanisms, 4) Insulated housing (usually plastic or ceramic), 5) Terminal connections (solder lugs or PCB pins). Rheostats often use thicker wirewound elements for higher current capacity.

4. Key Technical Specifications

ParameterDescriptionImportance
Resistance RangeTypical: 10 - 10M Determines control resolution
Tolerance 1% to 20%Signal accuracy indicator
Power Rating0.1W - 50WThermal performance limit
Mechanical Lifespan5,000-1,000,000 rotationsProduct durability metric
Taper TypeLinear, logarithmic, or customResponse curve matching

5. Application Fields

Main industries include: - Consumer electronics (smartphones, audio equipment) - Industrial automation (process control systems) - Automotive (HVAC controls, pedal position sensors) - Medical devices (diagnostic equipment calibration) - Aerospace (flight control systems) - Audio engineering (mixing console faders)

6. Leading Manufacturers and Products

ManufacturerKey ProductsSpecializations
Bourns Inc.3352/3386 seriesHigh-precision trimmers
Vishay Precision Group3006/3008 seriesMilitary-grade ruggedization
TT ElectronicsPO15 seriesCustom industrial sensors
Alps AlpineRK09 seriesCompact audio controls
Curtis Industries835 seriesHeavy-duty vehicle controls

7. Selection Guidelines

Key considerations: 1. Match resistance range to circuit requirements 2. Choose taper type (linear for voltage measurement, logarithmic for audio) 3. Consider environmental factors (temperature, vibration) 4. Evaluate electrical noise specifications 5. Determine required mechanical durability Example: Audio mixing boards typically use 100k logarithmic potentiometers with conductive plastic elements for smooth fading performance.

8. Industry Trends

Current developments include: - Miniaturization for portable devices (sub-10mm rotary controls) - Integration with digital interfaces (smart potentiometers) - Increased use of conductive polymer materials for smoother operation - Rising demand in EV applications (regenerative braking control) - Environmental regulations driving halogen-free materials adoption - Military/aerospace demand for radiation-hardened components

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