Acrylic vs. Static Dissipative PVC

Static Dissipative PVC offers a new alternative to standard methods of static control in the cleanroom, lab, and other industrial environments. Like acrylic, it can be easily worked and offers great visibility, yet it also resists a wide range of chemicals. It is completely non-contaminating, and so can be safely used in the cleanest work environments.

Static Dissipative PVC Plating

The solvent of the static dissipative dielectric coating melts the plating and mixes with the coating material so that the mixture adheres to the plate top. Both materials are mingled in the coating process. The coated material has great adhesion power and never comes off. The electrical characteristics are not affected by rubbing, and the transparency remains unchanged for long periods with little or no fogging.

  • Revolutionary Static Dissipative PVC Plating renders acrylic-made products obsolete for any static or particle-sensitive application
  • Chemically embedded dissipative layers maintain a surface resistivity of about 107 ohms/square, even under real-world abuse
  • Ideal for cleanroom use effective static dissipation helps control particulate contamination by eliminating static attraction
  • Transparent material allows complete visibility
  • Also resists a wide range of corrosive chemicals and will not outgas

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Static Dissipative PVC features surface resistance between 106 and 108 ohms/square - much less than that of other treated plastics. Tests show that when 10KV is applied to the surface, electrostatic potential remains less than 15V, and static decay time is less than 1 second. And because this plating offers such effective static dissipation, it will not attract dust or other contaminating particles that could damage sensitive microelectronic components.

In a test conducted in accordance with ASTM D 257, both colorless and colored transparent plating sheets were subjected to a relative humidity of 20-80% at 10°C to 30°C and the samples exhibited almost no change in physical characteristics. The surface resistivity remained greater than 107 ohms/square.

This plating is also durable. It features superb resistance to UV radiation; tests have indicated almost no loss of static protection after 500 hours of continuous exposure to a fadeometer. In temperature tests, it maintained its dissipative properties after 50 cycles of temperature fluctuations from -20°C to 60°C. It is also completely noncombustible.

It also offers all of the chemical resistance of standard PVC plating. It remains unaffected by a wide range of chemical solutions. In the case of mixed chemicals, resistance can vary widely depending on the exact mix. Be sure to perform a test prior to using any new chemical solutions or mixtures.


This plating allows easy cutting, bending, welding, and adhesive joining, and is therefore ideal in many situations for which no suitable material currently exists. Just consider these possible applications:

In Integrated Circuit Containers:

  • Desiccator
  • Glove Boxes
  • Silicon wafer boats
  • IC storage containers
  • Transparent trays
  • IC chips and IC card boxes (PE, PET)
  • Universal hoods
  • Transparent magazine rails

In Cleanroom Environments:

  • Cleanroom partitions
  • Cleanroom benches
  • Equipment covers
  • Chamber inspection windows
  • Door and wall linings
  • Curtains
  • Fluorescent lamp louvers
  • Pass-through and tunnel coating

The Razor Scrape Test

Static Dissipative PVC Razor Scrape Test Result

Terra Universal Static Dissipative PVC with embedded dissipative media shows minimal particle shedding.

Static Dissipative PVC Razor Scrape Test Result

Competitor's Static Dissipative PVC with spray-on coatings shows extensive particle shedding.

Electrical Properties
Characteristics Unit Transparent Static Dissipative PVC Rigid PVC Plate Testing Method
Surface Resistivity omega/ 106 ~ 10 1016 ASTM D-257/JIS K 6911
Volume Resistivity omega•cm 1017 ~ 18 1018 ASTM D-257/JIS K 7194
Saturated Charge Voltage V Less than 10 3,000 *
Half Life - Momentary Long *

*Measured with a static-honest meter (20°C, 60% RH)
Applied voltage: 10,000V
Applied voltage • material distance: 20mm
Detected voltage • material distance: 15mm

Chemical Resistance
Colors Colorless Transparent Static Dissipative PVC
Charicteristics Appearance Antistatic Charicteristics
Chemicals Time Immersed 3 Days 30 Days 3 Days 30 Days
Acids and Alkalines Hydrocholic acid 36% U U (Redish) U U
20% U U U U
Sulfuric acid 97% CS (Blackish) x (Black) U U
60% U U U U
Nitric acid 60% U U (Greenish) U CS
40% U   U U
Phosphoric acid 85% U U U U
Acetic acid 95% U U U U
Flouric acid 46% CS (Light green) CS (Greenish) U x
10% U U U U
Hydrogen peroxide 10% U CS (Powdering) U U
Sodium hydroxide 50% U U U U
Ammonia aquenous solution 25% U U U U
Organic Solvents Methanol 100% U U U U
Ethanol 100% U U U U
Isopropanol 100% U U U U
Butanol 100% U U U U
Ethylene glycol 100% U U U U
Gasoline 100% U U U U
Kerosene 100% U U U U
Benzene 100% U U U U
Others Salt water 300% U U U U
Ammonium 50% U U U U
Potassium 10% U U U U
Mild detergent 10% U U U U
Water 100% U U U U

U = Unaffected; CS = Changed Slightly; x = Not Recommended
Tests conducted on 3 mil., 6 mil. and 10 mil. material. Immersion temp. 25°C.

Abrasion Resistance

Abrasion Resistance of Terra Universal Static Dissipative PVC

The effect of surface abrasion is very small and produces almost no change in the material’s anti-static characteristics.

Testing conditions: Scrubbing with nylon fabric at a load of 500 grams

Testing method: ASTM D 257 (20°C 60% RH)

Temperature and Humidity Effects

Effects of Temperature and Humidity on Terra Universal Static Dissipative PVC

Even when temperature or humidity vary, this material's anti-static properties exhibit almost no change, and this excellent feature is stable over the long term.

Testing method: ASTM D 257

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