The Air Loop Gasket is a next-generation lightweight EMI shielding solution designed for compact and high-performance electronics. Its hollow D-shaped structure, formed entirely from conductive fabric without internal foam, overcomes the limits of traditional conductive foam in weight, compression force, and design flexibility.
Conductive fabric shell delivering 360-degree EMI shielding
Hollow tubular profile reducing weight and compression force
Custom geometries including straight, curved, and hybrid 3D shapes
To better understand conductive foam technologies, see related applications in Conductive Foam Selection Guide: Choosing the Right Material for Your Application from our internal library.
| Technical Dimension | Traditional Conductive Foam | Air Loop Gasket | Improvement |
|---|---|---|---|
| Weight | Limited by foam density | 40–60% less material | >50% lighter |
| Compression | Force rises rapidly | Ultra-low initial pressure | Pressure ↓ 70% |
| Design Flexibility | Mold-dependent | Complex 3D shapes; internal routing | Major increase |
| Space Utilization | Solid interior | Hollow cavity for routing | Utilization ↑ 100% |
These advantages align with modern device requirements such as 5G modules, lightweight computing, and automotive electronics. For more guidance on gasket selection, refer to our Fabric over foam resource.
Straight Air Loop for linear shielding paths
Curved Air Loop for corners and tight radii
Hybrid Air Loop for complex multi-segment geometries
Match fabric type to operating environments:
| Environment | Recommended Fabric | Key Benefit |
|---|---|---|
| Consumer electronics | Standard Ni/C-plated fabric | Cost-effective EMI shielding |
| Automotive, medical | Gold-plated conductive fabric | Superior conductivity and oxidation resistance |
| Corrosive or humid areas | Carbon-coated black fabric | Extended service life |
Fabric width determines forming accuracy.
Parameter definitions
Cross-section perimeter: 2 × (H + W) – 4 × T
Fabric allowance: 0.2–0.3 mm
Final fabric width: perimeter + allowance
Example
H = 2.0 mm, W = 1.5 mm, T = 0.1 mm
Perimeter = 6.6 mm
Final fabric width = 6.8 mm
EMI shielding: ≥ 60 dB (30 MHz–3 GHz)
Surface resistance: ≤ 0.05 Ω/in
Compression force: must meet system limit
Long-term compression set: ≥ 85% recovery
Check internal space for wire routing
Define assembly protection requirements
Decide whether suction-tube support is required
Challenge
A 12.9-inch tablet required a 5.2 mm working height, but traditional foam generated >10 kg force, distorting the panel.
Air Loop Result
Customized curved Air Loop Gasket
Resistance < 0.5 Ω at 4.5 mm compression
Resistance < 0.3 Ω at 3.84 mm compression
Total pressure <120 g per 8 mm
Comparison
| Parameter | Traditional Foam | Air Loop Gasket |
|---|---|---|
| Total Pressure | 15 kg | 3.5 kg |
| Weight | 45 g/m | 18 g/m |
| Shielding | 75 dB | 70 dB |
| Lifespan | 3 years | >5 years |
Cause: hollow structure sensitive to humidity and tension
Solution: low-shrinkage fabric and climate-controlled production
Cause: insufficient adhesive width
Solution: minimum seam width ≥ 2 mm
Cause: material elasticity and fabrication tolerance
Solution: precise tension control and internal suction-tube support
For additional insight into board-level EMI grounding strategies, see our SMT Gasket guide.
Early developer and mass-producer of Air Loop Gasket solutions in China
Multiple patents covering structural design and manufacturing processes
Automated wrapping and forming equipment
100 percent inline inspection
Air Loop Gaskets have been widely used in:
Ultra-thin laptops
High-end medical devices
Automotive dashboards and EMC sealing
If your project involves weight-critical or space-restricted EMI shielding requirements, provide your available space, environmental conditions, and performance targets. Our engineering team will deliver a customized Air Loop Gasket design and supporting samples.
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