Tweezers

Image Part Number Description / PDF Quantity Rfq
242CFR.SA.1.ITU

242CFR.SA.1.ITU

Ideal-tek

PLASTIC REPLACEABLE TIP TWEEZERS

15

4.SA.NE.6.ITU

4.SA.NE.6.ITU

Ideal-tek

ESD EPOXY COATED TWEEZERS - ANTI

12

2A.SA.0.ITU

2A.SA.0.ITU

Ideal-tek

TWEEZERS ANTI-ACID/ANTI-MAG SS

13

6.SA.B.ITE

6.SA.B.ITE

Ideal-tek

ECONOMY TWEEZERS - ANTI-ACID/ANT

55

279CFR.SA.1.ITU

279CFR.SA.1.ITU

Ideal-tek

TIPS CARBON FIBER STRAIGHT ESD

23

1.SA.0.ITU

1.SA.0.ITU

Ideal-tek

HIGH PRECISION TWEEZERS - ANTI-A

21

7.SA.6.ITE

7.SA.6.ITE

Ideal-tek

PREMIUM ECONOMY TWEEZERS - ANTI-

5

SS.SA.0.ITU

SS.SA.0.ITU

Ideal-tek

TWEEZERS ANTI-ACID/ANTI-MAG SS

13

51S.SA.0.ITU

51S.SA.0.ITU

Ideal-tek

HIGH PRECISION TWEEZERS - ANTI-A

8

00SVR.SA.1.ITU

00SVR.SA.1.ITU

Ideal-tek

ESD SV PLASTIC REPL.TWEEZ. 5.12"

20

6.SA.6.ITE

6.SA.6.ITE

Ideal-tek

PREMIUM ECONOMY TWEEZERS - ANTI-

8

4WFCPR@.SA.1.ITU

4WFCPR@.SA.1.ITU

Ideal-tek

ESD CP PLASTIC REPL.TWEEZ. 5.12"

20

7B.SA.6.ITE

7B.SA.6.ITE

Ideal-tek

PREMIUM ECONOMY TWEEZERS - ANTI-

0

14AGW.C.DR.0.ITU

14AGW.C.DR.0.ITU

Ideal-tek

TWEEZERS ANTI-ACID/ANTI-MAG SS

20

K4F.SA.NE.ITU

K4F.SA.NE.ITU

Ideal-tek

KIT OF 4 ESD EPOXY COATED TWEEZE

8

15AGHM.SA.0.ITU

15AGHM.SA.0.ITU

Ideal-tek

HIGH PRECISION CUTTING TWEEZERS

5

3XCPR.SA.1.ITU

3XCPR.SA.1.ITU

Ideal-tek

ESD SV PLASTIC REPL.TWEEZ. 4.92"

12

5A.SA.NE.6.ITU

5A.SA.NE.6.ITU

Ideal-tek

ESD EPOXY TWEEZ EXTRAFINE 4.33"

19

M00D.SA.1.ITU

M00D.SA.1.ITU

Ideal-tek

TWEEZERS MINI 90MM SERRATED TIPS

12

2.SA.B.ITE

2.SA.B.ITE

Ideal-tek

ECONOMY TWEEZERS - ANTI-ACID/ANT

65

Tweezers

1. Overview

Tweezers are precision handheld tools designed to grasp, hold, or manipulate small objects inaccessible to human fingers. Modern tweezers integrate advanced materials and ergonomic designs to meet demands in electronics, healthcare, laboratory research, and industrial manufacturing. Their importance lies in enabling precise handling of components at micro and nano scales, critical for semiconductor assembly, surgical procedures, and material science applications.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Anti-Static TweezersConductive carbon fiber composite, ESD protectionPCB assembly, IC handling
Carbide-Tipped TweezersHardened tungsten carbide tips, wear-resistantAutomotive sensor manufacturing
Smooth Tip TweezersPolished stainless steel, non-marking gripOptical lens alignment
Spring-Loaded TweezersAutomatic opening mechanism, fatigue reductionMicro-surgery procedures
High-Temperature TweezersChrome-cobalt alloy, 1200 C resistanceMetallurgical sample handling

3. Structure and Components

Typical construction includes:

  • Jaws: Angled or straight tips with precision-ground surfaces
  • Shaft: Hollow or solid design with length ranging 75-150mm
  • Material: Medical-grade stainless steel, titanium alloys, or polymer composites
  • Surface Treatment: Electropolishing, diamond-like carbon coating
  • Ergonomic Features: Bi-material handles, textured gripping zones

4. Key Technical Specifications

ParameterImportance
Tip Hardness (HV0.1): 550-1800Determines wear resistance and longevity
Parallelism Tolerance: 5 mEnsures uniform gripping force
Thermal Stability: -196 C to 1200 CEnables extreme environment operation
Surface Roughness (Ra): 0.05 mPrevents particle contamination
Spring Force: 0.5-5.0NOptimizes handling precision

5. Application Fields

Key industries include:

  • Electronics Manufacturing: SMT component placement, BGA rework
  • Medical Devices: Stent assembly, ophthalmic instrument calibration
  • Life Sciences: Cell manipulation, histology sample handling
  • Aerospace: Composite material repair, avionics maintenance
  • Photonics: Fiber optic alignment, laser component assembly

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Feature
ElectroForce SystemsESD-Pro SeriesIntegrated ionization coating
CarbTec AdvancedDuraTip XTReplaceable carbide inserts
MediTool SolutionsSurgiGrip+Autoclavable titanium construction
NanoPrecision Inc.UltraTweezerSub-micron tip accuracy

7. Selection Recommendations

Consider:

  • Material compatibility (e.g., non-magnetic for MRI components)
  • Tip geometry matching component size (0402 SMD vs. 01005 components)
  • Ergonomic assessment for >8-hour daily use
  • Traceability requirements (ISO 13485 certified tools)
  • Specialized coatings for corrosive environments

8. Industry Trends

Emerging developments:

  • Integration of piezoelectric actuators for micro-force feedback
  • Graphene-enhanced composites reducing tool weight by 40%
  • Smart tweezers with IoT-enabled usage analytics
  • 3D-printed custom geometries for specialized nanotechnology applications
  • Increased adoption of single-use polymer tweezers in sterile manufacturing
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