Tablet Coating Pan Guide: Equipment, Process & Troubleshooting for Pharma Labs

Why Tablets Are Coated

Tablet coating is one of the most important steps in pharmaceutical manufacturing. Coatings serve multiple critical functions: masking bitter taste, protecting API from moisture and light degradation, controlling drug release rate (immediate vs. extended release), improving swallowability, and providing product identification through color coding. A quality coating pan is the heart of this process.

SciMed's Tablet Coating Pan is constructed from pharmaceutical-grade stainless steel and designed for bench-scale to pilot-scale coating operations in research labs, compounding facilities, and small pharma manufacturers.

Types of Tablet Coating

  • Sugar coating (dragee): Traditional multi-step process applying sucrose-based layers. Creates smooth, glossy, sweetly-masked tablets. Labor-intensive but produces attractive product.
  • Film coating: Thin polymer film (HPMC, Eudragit, PVA) applied by spray. Faster, more precise, better moisture protection. Industry standard for modern tablet coating.
  • Enteric coating: Acid-resistant polymer (Eudragit L/S, HPMCP) protects API from stomach acid and releases drug in the intestine — critical for acid-labile APIs and bowel-targeted drugs.
  • Modified-release coating: Controls dissolution rate to achieve extended, delayed, or pulsatile drug release profiles.

The Coating Process: Step by Step

  1. Pre-heat the pan to operating temperature (typically 40–50°C inlet air). Pre-warming reduces moisture uptake during initial spray.
  2. Load tablets into the coating pan. Optimal fill is 50–70% of pan volume to ensure uniform tumbling.
  3. Prepare coating solution — dissolve or disperse polymer, plasticizer, colorant, and any other excipients in solvent (water or organic solvent).
  4. Spray coating solution onto the tumbling tablet bed. Spray rate, atomization pressure, pan speed, and inlet air temperature must all be controlled simultaneously.
  5. Dry between passes — allow each coating layer to dry before applying the next to prevent over-wetting and tablet sticking.
  6. Monitor weight gain — film coating typically targets 2–5% weight gain; enteric coatings may require 8–15%.
  7. Final polishing — optional wax or polish application for high-gloss finish.

Common Coating Defects and Solutions

Defect Cause Solution
Sticking / picking Spray rate too high, insufficient drying Reduce spray rate, increase inlet temperature
Orange peel texture Poor atomization, spray too far from bed Increase atomization pressure, move spray closer
Color mottling Uneven spray, poor tablet movement Increase pan speed, check spray pattern uniformity
Logo bridging Over-coating, slow drying Reduce spray rate, lower coating solution viscosity

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