Tempest 2 Head: convection ball vape cap for DynaVap
Already own a DynaVap and want to take your sessions to the next level? The Tempest 2 Head is the same cap as found in the full MAD Heaters Tempest 2, mounted onto your own 8 mm stem. Convection heating through a zirconia ball matrix, Grade 5 titanium construction, and the only visual temperature indicator on the market.
- Grade 5 titanium (cap and bowl): lightweight and durable, weighing just 14 g (0.49 oz)
- 3 mm zirconia balls: convection thermal matrix for full terpene extraction
- 3-position chamber: adjust with the screen from ~0.1 g to ~0.2 g
- Visual temperature indicator: 3-line gauge with a click — you know exactly when to draw
- Torch or induction heater: compatible with both heating methods
Who is the Tempest 2 Head for?
Anyone who already owns a DynaVap and is looking for an upgrade. The ball vape cap with zirconia balls delivers denser vapour and better flavour than a standard cap. You can swap the balls and experiment with different heating profiles. Included in the box: cap with balls, spare ball, bowl screen, adjustment rod and O-ring.
Tempest 2 Head specifications
| Cap/bowl material | Grade 5 titanium |
| Sleeve material | Stainless steel |
| Balls | Zirconia 3 mm (0.12 in) |
| Weight | 14 g (0.49 oz) |
| Compatibility | 8 mm ID stems (DynaVap VapCap, Tempest 2 Stem) |
| Chamber capacity | ~0.1 g / ~0.15 g / ~0.2 g (3 positions) |
Frequently asked questions about the Tempest 2 Head
Does the Tempest 2 Head fit my DynaVap?
Yes, provided your stem has an 8 mm inner diameter. This covers the majority of DynaVap VapCap stems. If you are using an original DynaVap stem with a narrow ID, check the measurement before purchasing.
What balls are included?
The Tempest 2 Head comes with 3 mm zirconia balls. You can later swap them for other materials (e.g. ruby) to experiment with different heating profiles.
Can I use the Tempest 2 Head with an induction heater?
Yes. The Grade 5 titanium cap responds to both a torch and an IH. Heat-up times may vary slightly depending on the heat source.
