Spident Fine Etch 37% Phosphoric Acid Etching Gel
Ensure predictable retentive surfaces and maximize the longevity of your composite restorations with Spident Fine Etch. Engineered specifically for professional dental use in both total-etch and selective-etch techniques, this 37% phosphoric acid gel creates optimal micro-retention by safely demineralizing enamel and opening dentinal tubules. Its highly stable consistency provides dental practitioners with absolute control over their placement lines, minimizing patient discomfort and saving valuable chairside time.
Premium Features & Benefits:
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Perfect 37% Acid Conditioning: Formulated at the clinical gold standard concentration to efficiently etch both enamel and dentin surfaces within 15 seconds, setting up an ideal micro-porous profile for bonding resins.
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Advanced Thixotropic Control: Fine Etch is engineered to flow smoothly under pressure through micro-applicator tips but gels immediately upon placement. It stays exactly where you put it—completely preventing accidental slumping onto nearby gingival tissues.
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High-Contrast Semi-Gel Blue Color: The bright, deep blue tint provides excellent visual contrast against natural tooth enamel, dentin, and underlying base cements, allowing you to monitor application areas and verify complete removal.
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Rapid, Residue-Free Rinsing: Formulated on a unique water-soluble polymer matrix base. It flushes away cleanly and rapidly with a standard air-water syringe spray, leaving behind no film or inorganic particles that could interfere with adhesive adaptation.
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Biocompatible & Effective Cleansing: Beyond micromechanical etching, it functions as a thorough cavity cleanser, dissolving the micro-smear layer and leaving a fully conditioned, sterile dental matrix ready for bonding.
Technical Specifications:
| Feature | Details |
| Brand | Spident |
| Product Name | Fine Etch™ |
| Active Compound | 37% Phosphoric Acid |
| Viscosity profile | Thixotropic Polymer Semi-Gel |
| Color | Deep High-Contrast Blue |
| Indication | Enamel & Dentin Conditioning for Direct/Indirect Bonding |





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