Industrial & High-Tech
Vietnam Anti-Static Vinyl Flooring Project
Homogeneous ESD Vinyl Flooring for Electronics Manufacturing Our homogeneous ESD vinyl flooring is designed for electronics manufacturing workshops, cleanrooms, laboratories...

Homogeneous ESD Vinyl Flooring for Electronics Manufacturing
Our homogeneous ESD vinyl flooring is designed for electronics manufacturing workshops, cleanrooms, laboratories and other electrostatic-controlled areas. Available in both static-dissipative and conductive grades, the flooring helps control electrostatic charges when installed as part of a properly designed ESD flooring and grounding system.
Project Overview
- Location: Vietnam
- Application: Electronics Manufacturing Workshop / ESD-Controlled Area
- Product Supplied: Homogeneous ESD Vinyl Flooring
- Total Thickness: 2.0mm
- Available Formats: 2.0m × 20m Rolls / 600 × 600mm Tiles
Project Requirements
The client required a durable flooring system for an electronics manufacturing environment where uncontrolled electrostatic discharge could affect sensitive components and production equipment. The floor also needed to withstand frequent foot traffic, castor-chair movement and routine cleaning while maintaining stable dimensional performance.
Product Advantages
- Controlled Electrical Resistance: The static-dissipative version provides electrical resistance from 1.0 × 106 to 1.0 × 109 Ω, while the conductive version provides resistance from 1.0 × 104 to 1.0 × 106 Ω.
- Low Static Generation: Static electrical propensity is below 2kV, while the friction-generated starting voltage is below 100V.
- Fast Static Voltage Decay: The stated static voltage decay period is no more than 0.4 seconds.
- Heavy-Duty Classification: Classified as Class 34 for heavy commercial use and Class 43 for heavy industrial use according to EN ISO 10874.
- Hygienic Performance: Antibacterial testing according to ISO 22196 shows more than 99% inhibition of bacterial growth.
- Low Indoor Emissions: TVOC emissions after 28 days are below 10µg/m³, while formaldehyde was not detected under the stated test method.
- Durable Surface Performance: Residual indentation is no more than 0.10mm, and the flooring shows no delamination or cracking after castor-chair testing.
- Fire and Slip Performance: The flooring achieves a Bfl-s1 fire classification and R9 slip resistance.
Technical Data
The following values are transcribed from the supplied product technical data sheet.
| Test Item | Test Standard | Test Result |
|---|---|---|
| Total Thickness |
ISO 24346 / EN 430 SJ/T 11236-2001 |
2.0mm |
| Dimensions |
ISO 24341 / EN 426 SJ/T 11236-2001 |
2.0m × 20m Rolls 600 × 600mm Tiles |
| Electrical Resistance |
DIN 51953 EN 1081 |
Static-Dissipative:
1.0 × 106–1.0 × 109 Ω Conductive: 1.0 × 104–1.0 × 106 Ω |
| Static Electrical Propensity | EN 1815 | <2kV |
| Static Voltage Decay Period | SJ/T 10694-2006 | ≤0.4s |
| Friction-Generated Starting Voltage | SJ/T 11236-2001 | |V| <100V |
| Amount of Wear | SJ/T 11236-2001 | ≤0.02g/cm² |
| Fire Classification | EN 13501-1 | Bfl-s1 |
| Antibacterial Performance | ISO 22196 | >99% bacterial growth inhibition |
| Slip Resistance |
DIN 51130 EN 13893 |
R9 Coefficient of friction ≥0.3 |
| Toxic Substance Testing | GB 18586-2001 | Qualified / Pass |
| Formaldehyde Emission | EN 717-1 | N.D. — Not Detected |
| Residual Indentation | EN 433 | ≤0.10mm |
| Castor Chair Resistance | EN 425 | No delamination or cracking |
| Dimensional Stability | EN 434 | ≤0.40% |
| Colour Fastness to Light | EN ISO 105-B02 | ≥Grade 6 |
| Impact Sound Reduction | EN ISO 717-2 | Approx. 2dB |
| Resistance to Staining | EN 423:2001 | Not affected |
| Use Classification | EN ISO 10874 |
Class 34 — Heavy Commercial Class 43 — Heavy Industrial |
| TVOC Emissions After 28 Days | ISO 16000-6 | <10µg/m³ |
Project Result
The completed flooring system provided the Vietnamese electronics manufacturing facility with a durable, low-emission and electrostatically controlled floor surface. The system supports demanding commercial and industrial operations while helping reduce electrostatic-discharge risks around sensitive electronic equipment.

