Knobs

Image Part Number Description / PDF Quantity Rfq
MPKG40B18

MPKG40B18

APEM Inc.

KNOB RIBBED 0.125" PLASTIC

1828

PKJT50B18

PKJT50B18

APEM Inc.

KNOB KNURLED 0.125" PLASTIC

0

KN900AB14

KN900AB14

APEM Inc.

KNOB KNURLED 0.250" METAL

0

420061B18

420061B18

APEM Inc.

KNOB KNURLED 0.125" METAL

1798

430211B14

430211B14

APEM Inc.

KNOB KNURLED 0.250" PLASTIC

0

420041B14

420041B14

APEM Inc.

KNOB KNURLED 0.250" METAL

33

MPKES90B14

MPKES90B14

APEM Inc.

KNOB FLUTED W/SKIRT 0.250" PLAST

6268

430212B14

430212B14

APEM Inc.

KNOB KNURLED 0.250" PLASTIC

1429

KS500B14

KS500B14

APEM Inc.

KNOB SMOOTH W/SKIRT 0.250" METAL

0

PKJ70B14

PKJ70B14

APEM Inc.

KNOB KNURLED 0.250" PLASTIC

0

420031A18

420031A18

APEM Inc.

KNOB KNURLED 0.125" METAL

0

420063A14

420063A14

APEM Inc.

KNOB KNURLED 0.250" METAL

1989

KS500B18

KS500B18

APEM Inc.

KNOB SMOOTH W/SKIRT 0.125" METAL

0

420015A14

420015A14

APEM Inc.

KNOB SMOOTH 0.250" METAL

0

420114A14

420114A14

APEM Inc.

KNOB SMOOTH 0.250" METAL

0

MPK50B14

MPK50B14

APEM Inc.

KNOB KNURLED W/SKRT 0.250" PLAST

0

MPKG50B14

MPKG50B14

APEM Inc.

KNOB RIBBED 0.250" PLASTIC

0

420072B18

420072B18

APEM Inc.

KNOB KNURLED 0.125" METAL

0

420053B14

420053B14

APEM Inc.

KNOB KNURLED 0.250" METAL

0

420113A14

420113A14

APEM Inc.

KNOB SMOOTH 0.250" METAL

0

Knobs

1. Overview

Knobs are mechanical components designed for manual adjustment, control, or fixation of devices and equipment. As critical elements in hardware systems, they provide user interfaces for torque transmission, positional adjustment, and functional control. Modern knob designs integrate ergonomic principles, material science, and precision engineering to ensure reliable performance across industrial, commercial, and consumer applications.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Wing ScrewsHand-adjustable fastening with wing-shaped headsPanel fastening in electronics enclosures
Dial KnobsPrecision adjustment with graduated scalesLab equipment and audio mixers
Keyed LocknutsSecurity-focused design with key-operated adjustmentMachinery calibration systems
Pull-to-Release KnobsIntegrated locking mechanism with axial releaseIndustrial control panels

3. Structure and Composition

Typical knob assemblies consist of: - Body: Formed from metal alloys (aluminum, brass) or engineered plastics (nylon, polycarbonate) - Threaded Insert: Brass or stainless steel internal threads for secure mounting - Retention Feature: Knurling, splines, or set screws for shaft coupling - Surface Treatment: Anodizing, powder coating, or electroplating for corrosion resistance

4. Key Technical Specifications

ParameterSignificance
Material Hardness (Shore/Brinell)Determines wear resistance and load capacity
Thread Engagement DepthAffects axial load transmission efficiency
Maximum Torque Rating (Nm)Critical for rotational force transmission
Temperature Resistance RangeDefines operational limits in extreme environments
Surface Friction CoefficientImpacts tactile feedback and slip resistance

5. Application Fields

  • Industrial Machinery: CNC machine controls, conveyor belt tensioners
  • Electronics: Audio equipment attenuators, test instrument selectors
  • Automotive: HVAC control knobs, seat adjustment mechanisms
  • Aerospace: Cockpit instrumentation controls, avionics panel fasteners
  • Medical Devices: Diagnostic equipment parameter adjusters

6. Leading Manufacturers and Products

ManufacturerProduct SeriesKey Features
MisumiKA2000 SeriesModular design with 12-position indexing
Knobs-R-UsProGrip XTErgonomic thermoplastic elastomer coating
Eclipse IndustrialAluminum Anodized Line MIL-STD-810G environmental compliance

7. Selection Guidelines

Key consideration factors: - Environmental conditions (temperature, chemical exposure) - Required torque transmission capacity - Mounting shaft geometry compatibility - Regulatory compliance (REACH, RoHS) - Aesthetic requirements for user interface

8. Industry Trends

Current development directions include: - Integration of smart materials with self-lubricating properties - Miniaturization for semiconductor manufacturing equipment - Haptic feedback enhancement through surface micro-texturing - Adoption of additive manufacturing for complex geometries - Increased use of corrosion-resistant polymer composites

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