Trimmer Potentiometers

Image Part Number Description / PDF Quantity Rfq
M63P201KB30T640

M63P201KB30T640

Vishay / Spectrol

SFERNICE POTENTIOMETERS & TRIMME

0

M63P102KB30T607

M63P102KB30T607

Vishay / Spectrol

SFERNICE POTENTIOMETERS & TRIMME

0

M64X500KB40

M64X500KB40

Vishay / Spectrol

SFERNICE POTENTIOMETERS & TRIMME

0

151S-502

151S-502

Vishay / Spectrol

POT WW TRIMMER

0

M64W500KT20Q104

M64W500KT20Q104

Vishay / Spectrol

SFERNICE POTENTIOMETERS & TRIMME

0

M63P205KB30T640

M63P205KB30T640

Vishay / Spectrol

SFERNICE POTENTIOMETERS & TRIMME

0

M63X502KB40

M63X502KB40

Vishay / Spectrol

SFERNICE POTENTIOMETERS & TRIMME

0

M63P202KB30T607

M63P202KB30T607

Vishay / Spectrol

SFERNICE POTENTIOMETERS & TRIMME

0

M64Y204KB40

M64Y204KB40

Vishay / Spectrol

SFERNICE POTENTIOMETERS & TRIMME

200

M70Y103KB25

M70Y103KB25

Vishay / Spectrol

SFERNICE POTENTIOMETERS & TRIMME

100

M63P503KB30T640

M63P503KB30T640

Vishay / Spectrol

SFERNICE POTENTIOMETERS & TRIMME

0

M70Y200KB25

M70Y200KB25

Vishay / Spectrol

SFERNICE POTENTIOMETERS & TRIMME

0

M43P204KB30T601

M43P204KB30T601

Vishay / Spectrol

SFERNICE POTENTIOMETERS & TRIMME

0

Trimmer Potentiometers

1. Overview

Trimmer potentiometers (trimpots) are adjustable resistors designed for infrequent calibration and tuning of electronic circuits. Unlike standard potentiometers, trimpots are optimized for precision adjustments during device manufacturing or maintenance. They play a critical role in modern electronics by enabling fine-tuning of voltage division, signal levels, and circuit parameters in compact spaces.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Rotary TrimmerAdjustment via rotational knob (single-turn -turn)Power supply calibration, amplifier gain control
Slide TrimmerLinear slider mechanism for resistance adjustmentAudio equipment balance control, sensor signal trimming
Surface Mount (SMD) TrimmerMiniaturized design for PCB surface mountingMobile devices, IoT sensors
Digital TrimmerElectronic adjustment via digital interface (I2C/PWM)Smart instrumentation, automated calibration systems

3. Structure and Components

Typical trimpot construction includes:

  • Resistive Element: Cermet, carbon composition, or conductive plastic materials
  • Adjustment Mechanism: Precision screw-driven wiper system (rotary) or linear slider
  • Enclosure: Flame-retardant thermoplastic or ceramic housing
  • Terminals: Tin-plated copper or brass for PCB mounting
  • Protection Coating: Epoxy or UV-curable resin for environmental resistance

4. Key Technical Specifications

ParameterDescriptionImportance
Resistance Range10 to 5M standard valuesDetermines adjustment resolution and circuit compatibility
Tolerance 5% to 20% depending on materialImpacts initial calibration accuracy
Power Rating0.1-0.5W typicalLimits maximum current/voltage handling
Temperature Coefficient 100 to 200 ppm/ CDefines stability across operating temperatures
Mechanical Life500-5000 adjustment cyclesDetermines maintenance interval requirements

5. Application Fields

  • Consumer Electronics: Smartphone sensor calibration, audio device equalization
  • Industrial Control: PLC signal conditioning, motor speed regulation
  • Medical Devices: Diagnostic equipment parameter tuning, implantable device calibration
  • Automotive: ECU sensor signal adjustment, dashboard display brightness control
  • Aerospace: Avionics system gain adjustment, navigation equipment calibration

6. Leading Manufacturers and Products

ManufacturerKey ProductsTechnical Highlights
Bourns Inc.3296 series (Precision Cermet) 0.5% tolerance, 20-turn adjustment
Vishay Precision GroupVishay Dale S1A seriesHermetically sealed, MIL-STD-202 qualified
TT ElectronicsPVH series (High-Voltage)500V rating, 10M maximum resistance
Ohmite Mfg. Co.789 series (High-Power)2W rating, aluminum heatsink design

7. Selection Recommendations

Key considerations include:

  • Environmental Factors: Operating temperature (-55 C to +155 C), humidity resistance
  • Adjustment Requirements: Single-turn vs multi-turn based on precision needs
  • Mounting Type: Through-hole vs SMD depending on PCB space constraints
  • Compliance: RoHS/REACH regulations for hazardous material restrictions
  • Cost-Performance Balance: Cermet (mid-range), carbon (budget), conductive plastic (high-end)

8. Industry Trends Analysis

Emerging trends shaping trimpot development:

  • Miniaturization: 0402 package size SMD trimpots for wearable electronics
  • Digital Integration: I2C-programmable trimpots with non-volatile memory
  • Material Innovation: Graphene-enhanced resistive elements for improved stability
  • Automated Calibration: Robotics-compatible adjustment interfaces for mass production
  • Environmental Durability: IP67-rated sealed trimpots for harsh industrial environments
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