Static Control Grounding Cords, Straps

Image Part Number Description / PDF Quantity Rfq
WBB-AFWS61M

WBB-AFWS61M

SCS

ESD WRIST BAND W/6' CORD

0

BLCC61M

BLCC61M

SCS

6' COIL CORD 1 MEG RESISTOR

0

SG1M-M

SG1M-M

SCS

ESD SOLE GROUNDER 1MEG MED

0

HGC1M-C

HGC1M-C

SCS

CUP HEEL GROUNDER W/QUIK CLIP

0

2368VM

2368VM

SCS

WRIST BAND ADJ DUAL CONDUCTR FAB

0

HGS1M

HGS1M

SCS

STANDARD HEEL GROUNDER 1 M

0

RACC121M

RACC121M

SCS

GROUND CORD COILED 12' RA PLUG

0

SAR-L

SAR-L

SCS

HEEL STRAP SOLE COVERAGE LARGE

0

BLUEWS

BLUEWS

SCS

BLUE ADJUSTABLE FABRIC WRISTBAND

0

BLUEWS61M

BLUEWS61M

SCS

BLU ADJST FABRIC WRISTBAND 6' CO

0

SAR-XL

SAR-XL

SCS

HEEL STRAP SOLE COVERAGE XLARGE

0

SG1M-SM

SG1M-SM

SCS

ESD SOLE GROUNDER 1MEG SMALL

0

HGC1M-ORG

HGC1M-ORG

SCS

ORANGE HEEL GROUNDER CUP 1 MEG

0

BLUE-HGC1MD

BLUE-HGC1MD

SCS

ESD HEEL GROUNDER BLUE W/D-RING

0

SG1M-L

SG1M-L

SCS

ESD SOLE GROUNDER 1MEG LARGE

0

WBB-AFWS121M

WBB-AFWS121M

SCS

BLUE/WHITE WRIST BAND/12' CORD

0

SG1M-XL

SG1M-XL

SCS

ESD SOLE GROUNDER 1MEG X-LARGE

0

LPCGC150M

LPCGC150M

SCS

LOWPRO CMNGRNDCRD NORSTR 15' CRD

0

SAR-S

SAR-S

SCS

HEEL STRAP SOLE COVERAGE SMALL

0

BLUEWS121M

BLUEWS121M

SCS

BLU ADJST FABRC WRISTBAND 12' CO

0

Static Control Grounding Cords, Straps

1. Overview

Static control grounding cords and straps are critical components in electrostatic discharge (ESD) protection systems. These devices safely dissipate static electricity generated by human contact or equipment operation, preventing damage to sensitive electronic components. With the miniaturization of semiconductor devices and increasing demands for cleanroom environments, proper grounding solutions have become essential in maintaining product reliability across industries such as electronics manufacturing, aerospace, and medical device production.

2. Major Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Wrist StrapsSingle-wire/dual-wire configurations with 1M resistance, 99.9% conductivity retentionPCB assembly lines, semiconductor wafer handling
Coiled CordsRetractable design (3-12ft extended length), 10^6-10^9 surface resistanceTest equipment stations, cleanroom workbenches
Toe GroundersConductive elastomer interface, 250-750 contact resistanceESD flooring systems, automated material handling
Grounding AdaptersMulti-port banana jack connectors, 25A current ratingCalibration labs, precision measurement equipment

3. Structural Composition

Typical wrist strap assembly includes:

  • Conductive elastomer or carbon-loaded polymer contact surface
  • Knitted elastic fabric with embedded stainless steel fibers
  • Quick-disconnect (QD) interface with gold-plated contacts
  • Coaxial grounding cable (20AWG inner conductor, 10^9 /cm insulation)
  • Earth bond monitoring circuitry (for dual-wire systems)

Cord construction features braided copper conductors with polyurethane jackets meeting UL 1572 specifications.

4. Key Technical Parameters

ParameterValue RangeSignificance
Resistance Tolerance 5% to 10%Ensures controlled discharge rate
Breakaway Strength2.3-4.5kgfPersonnel safety under tension
Operating Temperature-20 C to +70 CEnvironmental stability
Dielectric Strength2500VAC/minuteInsulation reliability
Service Life2000+ connection cyclesCost-effectiveness metrics

5. Application Fields

Primary industries include:

  • Semiconductor manufacturing (photolithography equipment, wafer probers)
  • Electronics assembly (SMT pick-and-place machines, BGA rework stations)
  • Aerospace avionics (flight control system integration)
  • Pharmaceutical cleanrooms (tablet coating machines, isolators)
  • Data centers (server rack maintenance, fiber optic handling)

6. Leading Manufacturers

ManufacturerProduct LineKey Features
Desco IndustriesOmega Wrist Strap SystemDual-path monitoring, 10-year warranty
3MESD Pro Grounding SystemNano-carbon fiber integration
AlphaMetrixCleanroom Cord SetNon-particle shedding design
Simco-IonSmartGround SolutionReal-time resistance monitoring

7. Selection Guidelines

Key considerations:

  1. Environmental factors: Humidity range (10-90% RH), chemical exposure
  2. Human factors: Ergonomic design for 8-hour shifts, skin contact materials
  3. Compliance requirements: IEC 61340-5-1, ANSI/ESD S20.20 standards
  4. System integration: Compatibility with existing ESD flooring and workstations
  5. Total cost analysis: Balance between initial cost and mean time between failures (MTBF)

Case Study: In automotive sensor manufacturing, implementing dual-wire wrist straps reduced device failure rates from 320ppm to 15ppm.

8. Industry Trends

Current development directions include:

  • Smart grounding systems with IoT-enabled resistance monitoring
  • Nano-coated textiles for improved durability in Class 10 cleanrooms
  • Integrated biometric authentication for access-controlled ESD zones
  • Self-healing polymer materials for extended service life
  • AI-driven predictive maintenance algorithms for ESD infrastructure
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