Pros
- Compact mini format for on the go
- 1300 mAh battery
- European manufacturer with direct support
Cons
- Conduction not convection heating
- No water pipe compatibility
- Less well-known brand
Hizen Stilus Mini — Price Comparison (2 shops)
Last updated: 02/05/2026, 10:38 AM
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Specifications
| Specifications | |
|---|---|
| Heating Method | Conduction |
| Device Type | Portable |
| Brand | Hizen |
| Power Source | Battery |
| Heat-up Time | 25 seconds |
| Battery Capacity | 1300 mAh |
| Warranty | 1 year |
| Dosing Capsules | View dosing capsules |
| Session Mode | Session |
| Vapor Path | Ceramic |
| Replaceable Battery | No |
| Passthrough Charging | No |
Source: HizenOfficial, 157gradRetailer · Verified 19.02.2026
About this vaporizer
The Hizen Stilus Mini is a compact portable conduction vaporizer from the German manufacturer Hizen with a 1300 mAh battery and a maximum temperature of 225 °C. The mini form factor makes it particularly inconspicuous for on the go, while the 25 second heat-up time ensures that it is ready for use quickly. As a device from a European manufacturer, it offers short support channels and solid workmanship.
- Compact mini format for on the go
- 1300 mAh battery
- European manufacturer with direct support
- Conduction not convection heating
- No water pipe compatibility
- Less well-known brand
The Hizen Stilus Mini uses conduction heating — the material rests directly against the heated chamber wall and is warmed evenly. Hizen designed the device as a compact companion for everyday use. The maximum temperature is 225 °C. The integrated battery has a capacity of 1300 mAh. It is worth comparing prices: the price comparison includes offers from more than 60 shops.
See also: Hizen Convectum · Hizen Stilus Pro MAX · Hizen Stilus Pro · Hizen Stilus Pro Konvektion
How Portable and Ergonomic Is the Design?
Research context: A study in the Journal of Pharmaceutical Sciences (Hazekamp et al., 2006) showed that vaporisation at controlled temperatures releases more than 95 % of the desired active compounds, while combustion by-products are largely avoided. Source: PubMed 16637053







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