Pettit Trinidad XSR

 
 
 
 
Part No Description Unit Price Quantity
PET1890G Pettit Trinidad XSR Black GAL $ 457.81

Pettit Trinidad XSR  – Triple Biocide Hard Antifouling Bottom Paint

Pettit Trinidad XSR  is an extremely effective, premium hard antifouling bottom paint engineered to provide maximum protection against marine growth in even the harshest fouling environments.

Its advanced triple-biocide formulation combines Copper Thiocyanate, ECONEA® and Zinc Pyrithione to deliver powerful, multi-season protection against a broad range of marine fouling. The formulation provides exceptional antifouling performance while using less copper than many traditional high-copper bottom paints.

Unlike antifouling coatings that depend on vessel movement, Trinidad XSR remains effective both at the dock and while underway, making it an excellent choice for boats that may remain stationary for extended periods.

The hard, durable finish provides excellent adhesion and high abrasion resistance and can be scrubbed when necessary. Boats coated with Trinidad XSR can also be hauled and relaunched without losing antifouling effectiveness.

Features & Benefits

  • Extremely effective triple-biocide antifouling protection

  • Combines Copper Thiocyanate, ECONEA® and Zinc Pyrithione

  • Provides multi-season protection

  • Maximum protection against a wide range of marine growth

  • Excellent choice for harsh and high-fouling environments

  • Works effectively at the dock or underway

  • Does not require boat movement to maintain effectiveness

  • Hard, durable and highly abrasion-resistant finish

  • Scrubbable surface for easier maintenance

  • Excellent adhesion

  • Can be hauled and relaunched without losing effectiveness

  • Designed for extended in-water service

  • Uses reduced copper compared with traditional high-copper antifouling technology

  • Lloyd's Register certified

  • Covered by Pettit's HD (Hull Defense) 24-Month Limited Warranty

Typical Uses

Ideal for recreational and commercial vessels requiring maximum antifouling protection, particularly boats operating or remaining docked in areas with aggressive marine growth.

Recommended applications include:

  • Powerboats

  • Sailboats

  • Cruising vessels

  • Boats kept continuously in the water

  • Boats exposed to severe fouling conditions

  • Vessels requiring a durable, scrubbable bottom coating

  • Boats that are periodically hauled and relaunched

Technical Information

Color: Black
Product Number: 1890
Finish: Flat
Type: Hard Triple-Biocide Antifouling Bottom Paint

Active Biocides:

  • Copper Thiocyanate – 15%

  • ECONEA® – 6%

  • Zinc Pyrithione – 6%

Solids by Weight: 73% ± 2%
Solids by Volume: 54% ± 2%
Coverage: Approximately 435 sq. ft. per gallon (11 m²/L)
Recommended Coats: 2
Wet Film Thickness: Approximately 3.6 mils / 90 µm
Dry Film Thickness: Approximately 2 mils / 50 µm
Application Temperature: 50°F–90°F (10°C–32°C)
Application: Brush, Roller, Airless Spray or Conventional Spray
Maximum Roller Nap: 3/8" / 10 mm
Thinner: Pettit 120 Brushing Thinner / Pettit 121 Spraying Thinner
VOC: Maximum 330 g/L

Dry & Launch Times

At approximately 70°F / 20°C:

  • Touch dry: approximately 30 minutes

  • Recoat: approximately 4 hours

  • Launch: approximately 8 hours

At lower temperatures, additional drying time is required. There is no maximum dry time before launching.

Packaging

Container Size: 1 Gallon (3.8 L)

Application

For best performance, apply two coats of Trinidad XSR over a properly prepared and compatible substrate or existing antifouling coating.

Proper surface preparation is essential for maximum adhesion and antifouling performance. Application requirements may vary depending on whether the substrate is fiberglass, wood, previously painted surfaces or underwater metals, so the appropriate Pettit preparation and primer system should be followed.

Pettit Trinidad XSR Black is an excellent choice for boat owners who demand maximum, long-lasting antifouling protection with a tough, durable finish capable of handling severe marine environments.