Static Control Clothing

Image Part Number Description / PDF Quantity Rfq
JKV9025SPLB

JKV9025SPLB

Transforming Technologies

V-NECK, SNAP CUFF, X-LARGE

115

68121

68121

EMIT

GLOVES YARN GRAY MEDIUM 1PAIR

3417

73911

73911

EMIT

SMOCK JCKT ORNG SM

83

73770

73770

EMIT

ESD ESD JACKET W/CUFFS BLUE 2XL

710

JKV9022SPWH

JKV9022SPWH

Transforming Technologies

V-NECK, SNAP CUFF, SMALL

15

109-0008-P

109-0008-P

E S D Control Centre Ltd.

INTEGRITY ESD PU TIP GLOVE, M

5

JKV8823BG

JKV8823BG

Transforming Technologies

KNIT CUFF, BURGUNDY, MEDIUM

10

JKV9026LB

JKV9026LB

Transforming Technologies

V-NECK, KNIT CUFF, 2X-LARGE

43

NPF100-9-L

NPF100-9-L

Bertech

LARGE, CLASS 100 NITRILE GLOVES

0

JKC9026BK

JKC9026BK

Transforming Technologies

LAPEL COLLAR, KNIT CUFF, 2X

76

FC-P-M

FC-P-M

Bertech

MEDIUM, ESD FINGER COTS, PINK

200

JKV9025BK

JKV9025BK

Transforming Technologies

V-NECK, KNIT CUFF, X-LARGE

44

GL2506P

GL2506P

Transforming Technologies

2XL ESD CUT RES GLOVES PALM CTD

590

73910

73910

EMIT

SMOCK, STATSHIELD, JACKET, KNITT

0

JLC5403SPWH

JLC5403SPWH

Transforming Technologies

SNAP CUFF, MEDIUM, WHITE

22

04640

04640

EMIT

ESD SMOCK BL SNPS PKT SM

28

JKC9027SPTL

JKC9027SPTL

Transforming Technologies

ESD JACKET SNAP CUFF 3XL TEAL

19

109-0004-P

109-0004-P

E S D Control Centre Ltd.

INTEGRITY ESD PU PALM GLOVE, M

5

JKC8808SPLB

JKC8808SPLB

Transforming Technologies

SNAP CUFF, LIGHT BLUE, 4X-LARGE

4

770014

770014

SCS

SMOCK JACKET W/CUFFS BLUE XL

451

Static Control Clothing

1. Overview

Static Control Clothing refers to specialized garments designed to prevent electrostatic discharge (ESD) and contamination in controlled environments. These garments incorporate conductive materials and advanced fabric technologies to dissipate static charges, protect sensitive electronics, and maintain cleanroom standards. They play a critical role in semiconductor manufacturing, pharmaceutical production, and precision engineering industries where electrostatic interference or particulate contamination can cause catastrophic failures.

2. Major Types & Functional Classification

TypeFunctional CharacteristicsApplication Examples
Anti-Static CoverallsEmbedded carbon or stainless steel fibers, surface resistance 10^6-10^9 PCB assembly lines, cleanrooms
ESD Lab CoatsWoven conductive polymer threads, wrist strap grounding pointsResearch laboratories, electronics R&D
Cleanroom SuitsNon-shedding materials, HEPA filter compatibilityBiotech manufacturing, aerospace
Conductive Fiber JacketsHigh-tensile conductive yarns, static decay time <2sExplosive handling, fuel processing

3. Structural Composition

Typical static control garments feature a 3-layer construction:

  • Outer layer: Polyester blend with embedded conductive fibers (stainless steel/carbon)
  • Middle layer: Dielectric barrier coating (surface resistivity 10^7 /sq)
  • Inner layer: Moisture-wicking antistatic fabric (carbon particle dispersion)
Conductive elements form a Faraday cage effect, with grounding points at wrists and ankles. Advanced models incorporate phase-change materials for thermal regulation and micro-porous membranes for particle filtration.

4. Key Technical Parameters

ParameterValue RangeSignificance
Surface Resistivity10^5 - 10^12 /sqCharge dissipation efficiency
Charge Decay Time<0.1s - 2sStatic neutralization speed
Particle Shedding Rate<1000 particles/m /minCleanroom compliance
Grounding Resistance<1 Electrical safety assurance
Tensile Strength 50NMechanical durability

5. Application Fields

Key industries include:

  • Semiconductor manufacturing (photolithography equipment protection)
  • Medical device assembly (Class 100 cleanrooms)
  • Pharmaceutical production (ISO 14644-1 certified facilities)
  • Aerospace electronics (MIL-STD-1686 compliance)
  • Data centers (server rack maintenance)
Typical equipment integration: Ionizers, wrist strap monitoring systems, and ESD floor mats.

6. Leading Manufacturers & Products

ManufacturerRepresentative ProductKey Features
DuPontTyvek Static ControlLow-linting, 10^8 resistivity
3MESD Cleanroom Suit 4200Integrated grounding system
HoneywellGamma Series Anti-Static CoatEMI shielding, 0.5s decay time
Kimberly-ClarkKimtech Pure ESDClass 10 particle specification

7. Selection Guidelines

Key considerations:

  • Electrostatic properties (surface resistance matching ANSI/ESD S20.20)
  • Environmental compliance (ISO 14644-1, NFPA 99)
  • Garment durability (washing cycles >50, abrasion resistance)
  • Operator comfort (breathability >50g/m /h)
  • Integration with grounding systems (parallel resistance monitoring)
Example: Semiconductor manufacturers typically select Class 0 ESD garments with <10^6 resistance.

8. Industry Trends

Emerging developments:

  • Nano-coating technologies for permanent conductive properties
  • Smart garments with real-time discharge monitoring
  • Bio-based antistatic materials (PLA fiber composites)
  • Self-cleaning surfaces using photocatalytic coatings
  • AI-driven static risk assessment systems
Market growth driven by 5G electronics manufacturing and EV battery production requirements.

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