Description Of The SMOK TFV16 Mesh Coils - Pack Of 3
SMOK TFV16 Mesh Coils (3 Pack)
SMOK TFV16 Mesh Coils are engineered for high-performance sub-ohm vaping, delivering strong flavour and dense vapour production. Designed specifically for use with the SMOK TFV16 tank, these coils utilise an advanced mesh heating structure to enhance overall vaping performance.
The honeycomb-style mesh design features multiple small openings, allowing e-liquid to be heated quickly and evenly across a larger surface area. This results in faster ramp-up times, improved flavour reproduction and consistent vapour output with every inhale. The efficient design also helps to reduce hot spots, creating a smoother and more reliable vaping experience.
The 0.17Ω single mesh coil is best suited for around 120W, offering a balance of flavour and vapour.
Designed for convenience, these coils feature a secure installation system, allowing for quick and easy replacement. Regular coil changes will help maintain optimal performance and flavour quality.
Whether you prefer balanced performance or high-wattage cloud production, SMOK TFV16 Mesh Coils provide a reliable and versatile solution for sub-ohm vapers.
Key Features
- Designed for SMOK TFV16 tank
- Advanced honeycomb mesh coil structure
- Available in 0.17Ω resistance
- Fast ramp-up and even heating
- Strong flavour and dense vapour production
- Organic cotton wicking material
- High-wattage performance
- Pack of 3 coils
Compatibility
- SMOK TFV16 Tank
What’s Included
- 3 × SMOK TFV16 Mesh Replacement Coils
Frequently Asked Questions (FAQs)
What tank are SMOK TFV16 coils compatible with?
They are designed specifically for the SMOK TFV16 tank.
What resistances are available?
They are available in 0.17Ω single mesh.
What wattage should I use?
0.17Ω coils perform best around 120W.
What type of vaping are these coils designed for?
They are designed for direct-to-lung (DTL) vaping with high vapour production.
What e-liquid works best with these coils?
High VG e-liquids (70% VG or higher) are recommended for optimal performance.




