Static Control Shielding Bags, Materials

Image Part Number Description / PDF Quantity Rfq
48691

48691

Protektive Pak

BG STTSHLD 7X15" 100EA

209

48770

48770

Protektive Pak

BG STTSHLD ZP 3X5" 100EA

342

48779

48779

Protektive Pak

BG STTSHLD ZP 18X24" 100EA

13

48705

48705

Protektive Pak

BG STTSHLD 10X12" 100EA

116

48753

48753

Protektive Pak

BG STTSHLD 6X10" 100EA

152

48730

48730

Protektive Pak

BG STTSHLD ZP 6X8" 100EA

12

48712

48712

Protektive Pak

BG STTSHLD 24X30" 100EA

14

48689

48689

Protektive Pak

BG STTSHLD 6X30" 100EA

23

48952

48952

Protektive Pak

BG MBB 4 MIL 12X20" 100EA

33

49109

49109

Protektive Pak

BAG PINK POLY 4MIL 8X10 NO ZIP

35

49110

49110

Protektive Pak

BAG PINK POLY 4MIL 8X12 NO ZIP

24

48725

48725

Protektive Pak

BG STTSHLD ZP 10X12" 100EA

81

48701

48701

Protektive Pak

BG STTSHLD 4X6" 100EA

1743

48754

48754

Protektive Pak

BG STTSHLD 8X10" 100EA

98

48699

48699

Protektive Pak

BG STTSHLD 10X30" 100EA

44

48780

48780

Protektive Pak

BG STTSHLD ZP 8X12" 100EA

134

48787

48787

Protektive Pak

BG EMI/RFI MBB 6.5M 10X24" 100EA

25

49101

49101

Protektive Pak

BAG PINK POLY 4MIL 3X4 NO ZIP

8

48790

48790

Protektive Pak

BG EMI/RFI MBB 6.5M 15X18" 100EA

95

48707

48707

Protektive Pak

BG STTSHLD 12X18" 100EA

41

Static Control Shielding Bags, Materials

1. Overview

Static control shielding bags and materials are specialized packaging solutions designed to protect sensitive electronic components from electrostatic discharge (ESD), electromagnetic interference (EMI), and environmental contaminants. These products are critical in industries where electrostatic sensitive devices (ESDS) require protection during storage, handling, and transportation. Their importance has grown exponentially with the miniaturization of electronic circuits and the increasing prevalence of high-speed semiconductor devices.

2. Major Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Metal-in-Film Shielding BagsMulti-layer construction with aluminum/polymer layers for EMI/RFI shielding and ESD protectionIC packaging, PCB transport
Conductive Polyethylene BagsCarbon-loaded plastic with surface resistance 10 -10 Low-voltage electronics packaging
Anti-Static Barrier MaterialsMulti-layer films with static decay <2s and low particle emissionMedical device packaging
EMI/RFI Shielding GasketsConductive elastomers with shielding effectiveness >60dBAerospace equipment enclosures

3. Structure and Composition

Typical shielding bags employ a 3-5 layer construction:

  1. Outer layer: PET or nylon for mechanical protection
  2. Conductive layer: Aluminum coating (0.02-0.05mm)
  3. Dielectric layer: Polyethylene terephthalate (PET)
  4. ESD dissipative inner layer: Carbon-loaded polymer or conductive adhesive

Advanced materials incorporate nanotechnology coatings (e.g., silver nanowires) for improved shielding performance while maintaining optical transparency.

4. Key Technical Parameters

ParameterTypical ValueImportance
Shielding Effectiveness30-100 dB (100kHz-10GHz)Protects against EMI/RFI interference
Surface Resistance10 -10 /sqDetermines ESD dissipation rate
Charge Decay Time<2 secondsTime to neutralize 1kV charge
Particle Emission<10 particles/ft (ISO Class 4)Cleanroom compatibility

5. Application Fields

Key industries include:

  • Semiconductor manufacturing (wafer transport, die packaging)
  • Aerospace (avionics component protection)
  • Medical devices (implantable electronics packaging)
  • Data centers (server hardware transportation)

Typical equipment protected: ICs (CSP/BGA packages), MEMS sensors, RF modules, optical transceivers.

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
Desco IndustriesAlpha Shield III3-layer metalized film, 50dB shielding
3MESD Shielding Bag 3600Transparent EMI shielding, 10 surface resistance
Able ElectropolishEMI-STAT Stainless steel fiber composite, 80dB performance

7. Selection Guidelines

Key selection factors:

  1. ESDS sensitivity level (voltage tolerance of protected device)
  2. Environmental conditions (temperature, humidity, contamination level)
  3. Shielding frequency range requirements
  4. Material compatibility (outgassing characteristics for vacuum environments)
  5. Compliance with industry standards (ANSI/ESD S541, MIL-PRF-81705E)

Case study: A semiconductor fab achieved 98% defect reduction by switching to metal-in-film bags with <1s charge decay time for 28nm node wafer transport.

8. Industry Trends

Emerging trends include:

  • Development of resealable smart packaging with integrated ESD monitoring
  • Graphene-based composite materials for lighter weight shielding
  • Nano-coating technologies enabling transparent EMI protection
  • Increased adoption of IPC-J-STD-033D compliant moisture barrier packaging
  • Growth in demand for flexible hybrid shielding solutions combining conductive polymers with metal meshes

Market projections indicate 6.2% CAGR through 2027 driven by 5G infrastructure and automotive electronics growth.

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