Price (USD)
Kingtons Black Widow edgeXL E-Nano
$280
Kingtons Black Widow
$65
Kingtons Black Widow is typically around $215 lower.
Vaporizer Comparison
Side-by-side specs, pricing context, and clear decision guidance.
XL E-Nano
Epickai $280
Kingtons Black Widow
Kingtons $65
XL E-Nano and Kingtons Black Widow solve similar use-cases with different tradeoffs. Kingtons Black Widow is usually the lower-cost pick at $65, around $215 below XL E-Nano. Kingtons Black Widow has the quicker listed heat-up profile, which can matter for shorter sessions.
Specs Compared
20
Different Specs
20
Shared Specs
0
Overall Overlap
0%
A quick snapshot of the specs people usually care about first.
XL E-Nano
$280
Kingtons Black Widow
$65
Kingtons Black Widow is typically around $215 lower.
XL E-Nano
2 Minutes
Kingtons Black Widow
<30 seconds
Kingtons Black Widow has the quicker listed heat-up profile.
XL E-Nano
~188g
Kingtons Black Widow
190 grams
Weight is close enough that portability is likely similar.
XL E-Nano
Convection
Kingtons Black Widow
Conduction
Heating style differs, which can impact flavor and extraction behavior.
Top specs where these two devices diverge.
Price (USD)
XL E-Nano
$280
Kingtons Black Widow
$65
Device Type
XL E-Nano
Desktop
Kingtons Black Widow
Portable
Heating Type
XL E-Nano
Convection
Kingtons Black Widow
Conduction
Heat Up Time
XL E-Nano
2 Minutes
Kingtons Black Widow
<30 seconds
Temperature Range
XL E-Nano
0-560°F
Kingtons Black Widow
180°C - 220°C (356 - 428°F)
Chamber Capacity
XL E-Nano
0.2g
Kingtons Black Widow
~0.5g
Battery Type
XL E-Nano
N/A
Kingtons Black Widow
Internal
Charging
XL E-Nano
N/A
Kingtons Black Widow
Micro USB
Dimensions
XL E-Nano
108x50mm
Kingtons Black Widow
128 x 44 x 26mm
Weight
XL E-Nano
~188g
Kingtons Black Widow
190 grams
Direct comparison of every spec from each device profile.
| Specification | XL E-Nano | Kingtons Black Widow |
|---|---|---|
| Price (USD) | $280 | $65 |
| Device Type | Desktop | Portable |
| Heating Type | Convection | Conduction |
| Heat Up Time | 2 Minutes | <30 seconds |
| Temperature Range | 0-560°F | 180°C - 220°C (356 - 428°F) |
| Chamber Capacity | 0.2g | ~0.5g |
| Battery Type | N/A | Internal |
| Battery Capacity | — | 2200mAh |
| Battery Life | — | ~90 minutes |
| Charging | N/A | Micro USB |
| Charge Time | — | 3-4 hours |
| Dimensions | 108x50mm | 128 x 44 x 26mm |
| Weight | ~188g | 190 grams |
| Power Adjustment | Rotary Knob | Modular - 5 Stages |
| Chamber Material | Glass | Ceramic |
| Brand | Epickai | Kingtons |
| Country of Manufacture | United States (USA) | — |
| Power Cable Length | 2.5 Metres | — |
| Power Source | AC Power (110v) | — |
| Warranty | 3 years | — |
The biggest practical difference is price tier: the Kingtons Black Widow sits at $65 while the XL E-Nano is $280, a gap of about $215 that puts them in different buying brackets.
Kingtons Black Widow is the cheaper option at $65 compared with $280 for the XL E-Nano, about $215 less. Live retailer pricing can shift, so confirm before buying.
Kingtons Black Widow reaches session-ready temperature in <30 seconds, while the XL E-Nano takes 2 Minutes. That's roughly 90 seconds quicker on the Kingtons Black Widow, which is useful if you want shorter, on-demand sessions.
XL E-Nano uses convection heating, while the Kingtons Black Widow uses conduction. Heating style influences flavor profile, vapor density, and how forgiving the device is to draw technique.
Kingtons Black Widow has the larger chamber at ~0.5g, versus 0.2g on the XL E-Nano. A bigger bowl means fewer reloads on long sessions; a smaller one suits microdosing and quicker bowls.
Kingtons Black Widow is the take-anywhere choice. It's a portable, battery-powered unit, while the XL E-Nano is built for home use, where bigger heaters, AC power, and larger chambers make sense.
Kingtons Black Widow is the better pick if low-profile use matters. It's tagged as stealth or pocket-friendly in our database, while the XL E-Nano is more conspicuous in hand and harder to keep out of sight.
Jump into the comparison hub to pick any two devices and open a canonical side-by-side page.