Static Control Device Containers

Image Part Number Description / PDF Quantity Rfq
38949

38949

Protektive Pak

ESD HANDLER 18-1/4X10X2-1/4

0

39003

39003

Protektive Pak

ESD HANDLER 8X10X1

0

38946

38946

Protektive Pak

ESD HANDLER 5-7/8X4X1-1/4

0

37814

37814

Protektive Pak

TRASH RECEP SM 12-1/2X10X14''

39

37249

37249

Protektive Pak

ESD HANDLER 8-3/4X14-5/8X1

0

39022

39022

Protektive Pak

ESD HANDLER 17-1/8X7-3/4X1

2

37336

37336

Protektive Pak

ESD HANDLER 10X6-1/4X1-1/4

0

38847

38847

Protektive Pak

SHIPPER PLASTEK CIRCUIT BOARD

48143

38959

38959

Protektive Pak

ESD HANDLER 6-3/4X7-1/8X2-3/8

0

39002

39002

Protektive Pak

ESD HANDLER 8X6-1/2X2-1/4

0

39312

39312

Protektive Pak

CNTNR 22-7/8X12-7/8X6

0

37398

37398

Protektive Pak

ESD HANDLER 8X4X1-1/4

0

38911

38911

Protektive Pak

BIN BOX OPEN PLASTEK 12X12X4

72

39040

39040

Protektive Pak

ESD HANDLER 10X4X1-1/4

0

39065

39065

Protektive Pak

ESD HANDLER 8X5-3/8X2-3/4

0

37382

37382

Protektive Pak

ESD HANDLER 14X8-1/8X1

0

37330

37330

Protektive Pak

ESD HANDLER 10X12-3/4X2-7/8

0

37282

37282

Protektive Pak

ESD HANDLER 6X10-3/4X3-5/8

0

37355

37355

Protektive Pak

ESD HANDLER 12X16-5/8X2-3/4

0

37610

37610

Protektive Pak

BOX BIN CLOSED REEL DIP/TUBE

0

Static Control Device Containers

1. Overview

Static Control Device Containers are specialized enclosures designed to store, transport, or manage electrostatic discharge (ESD)-sensitive devices. They mitigate risks of ESD damage in environments like semiconductor manufacturing, electronics assembly, and cleanrooms. These containers integrate materials and designs that neutralize static charges, prevent particle contamination, and ensure compliance with international standards (e.g., IEC 61340-5-1). Their importance is critical in modern technologies where microelectronics and nanoscale components are vulnerable to sub-micron particulates and electrostatic fields.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Conductive Polymer ContainersSurface resistivity 10 10 , permanent charge dissipationIC trays in SMT lines
Antistatic Coated ContainersSurface resistivity 10 10 , temporary ESD protectionPCB storage in R&D labs
Ionization-Integrated UnitsActive neutralization of isolated charges via corona dischargeWafer handling in Class 10 cleanrooms
Faraday Cage ContainersElectromagnetic shielding attenuation >60dBMilitary/aerospace component storage

3. Structure and Components

Typical construction includes: - Base Material: Carbon-loaded polypropylene or dissipative ABS polymer - Shielding Layer: Sputtered aluminum coating (thickness 50 200nm) - ESD Mechanism: Embedded carbon nanotube networks or quaternary ammonium compounds - Containment Design: Interlocking lids with gasket seals (particulate retention >99.97% at 0.3 m) - Grounding Interface: 10mm diameter brass stud with <4 resistance

4. Key Technical Specifications

ParameterValue/RangeSignificance
Surface Resistance10 10 /sqDetermines charge dissipation rate
Decay Time 0.5 seconds @ 1kVMeasures static neutralization efficiency
Shielding Effectiveness30 100MHz: >40dBProtects against electromagnetic interference
Particulate Emission<10 particles/ft >0.5 mEnsures cleanroom compliance

5. Application Fields

Primary industries include: - Semiconductor manufacturing (e.g., AMAT Centura platforms) - Medical device assembly (ISO 14644-1 certified facilities) - Aerospace electronics (MIL-PRF-81705D compliant systems) - Data centers (server rack ESD control) - Precision optics (particle-sensitive lens handling)

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Feature
3M Electronic SolutionsSCD-450XSelf-ionizing polymer matrix
Omega EngineeringESD-COMB2023Integrated humidity control
Snap-on IndustrialTST-7800PROModular Faraday cage design
LPKF Laser ElectronicsCAD-KIT2Customizable conductive dividers

7. Selection Recommendations

Key considerations: - Environmental operating range (-40 C to +125 C for automotive applications) - Load capacity (static vs. dynamic storage needs) - Regulatory compliance (JEDEC J-STD-033D, ANSI/ESD S541) - Integration with automated handling systems (SEMI E14-0703 compatibility) - Total cost of ownership (cleaning/maintenance intervals)

8. Industry Trends

Current developments focus on: - Nanocomposite materials with graphene-enhanced conductivity - IoT-enabled containers with real-time ESD monitoring - Biodegradable antistatic polymers for RoHS compliance - AI-driven charge prediction algorithms - Miniaturization for 3nm process node component handling

9. Case Study: Semiconductor Production

A 12-inch wafer fabrication plant implemented ionization-integrated containers, achieving 99.3% reduction in ESD-related yield loss. The solution incorporated self-diagnostic sensors meeting SEMI E121-0602 standards, with automated reporting to the facility's MES system.

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