Ugh. I saw the headline and I was hoping it would be an entry-level, low cost, highly analogue, "looks just like a normal car but electric" car.
It is low cost! The Tesla Model 3 was twice the cost almost a decade ago.
BTW: The price premium for electric is offset by the lower cost of electricity, and the fact that electricity's cost is much less volatile than gas.
Depends on where you live. In states like Connecticut, or certain areas of California (PG&E Bay Area customers), the ROI is very long or simply doesn't pencil out at all. I think for Connecticut, which has high electricity prices but low gas prices, it's just net negative. For me in SF, despite high gas prices the ROI is just too long (5-10 years?), and that's before factoring in the ~$5000+ required for updating my electrical box, which is a conservative estimate because now the city requires the meter to be outside the house, whereas it's currently in the garage.
A regular household plug should be more than enough unless you want to use your home as a quick pit-stop between two long rides. (e.g. drive 150km from work to home, then drive 300km to your holiday home for the weekend an hour later).
Typical EVs nowadays get about 6 km per kWh, the average driver in the US drives about 54 km. A US home typically has 15A plugs, or 20A in the kitchen/garage. That's 1.8 - 2.4 kW. Even at 80% safe continuous charge, you'll be averaging 1.5 kW at minimum. So that's just 6 hours of daily charging at minimum.
If you have a garage and plug in when you get home, your car typically sits there from 8PM to 8AM for 12 hours. That's already double the time necessary to charge 100% of your driving at home, at the minimum charging speeds equivalent to a microwave or washing machine. And you'll typically have much more time with the car plugged in on weekends and home-work days.
A 5k upgrade to the electrical box might be a good idea, but it's definitely not necessary for most normal EV users.
As for ROI, a Corolla might get 20 km per liter, in Connecticut that's 6c per km. An EV even at the 29c per kWh is just 4.8c per km which is 20% cheaper. If you have some solar panels you can cut that figure by another 65%.
Not to mention the lower maintenance costs for EVs and the rebates various local governments give.
zacharycohn · · focus · HN ↗
gwbas1c · · focus · HN ↗
BTW: The price premium for electric is offset by the lower cost of electricity, and the fact that electricity's cost is much less volatile than gas.
wahern · · focus · HN ↗
NoLinkToMe · · focus · HN ↗
Typical EVs nowadays get about 6 km per kWh, the average driver in the US drives about 54 km. A US home typically has 15A plugs, or 20A in the kitchen/garage. That's 1.8 - 2.4 kW. Even at 80% safe continuous charge, you'll be averaging 1.5 kW at minimum. So that's just 6 hours of daily charging at minimum.
If you have a garage and plug in when you get home, your car typically sits there from 8PM to 8AM for 12 hours. That's already double the time necessary to charge 100% of your driving at home, at the minimum charging speeds equivalent to a microwave or washing machine. And you'll typically have much more time with the car plugged in on weekends and home-work days.
A 5k upgrade to the electrical box might be a good idea, but it's definitely not necessary for most normal EV users.
As for ROI, a Corolla might get 20 km per liter, in Connecticut that's 6c per km. An EV even at the 29c per kWh is just 4.8c per km which is 20% cheaper. If you have some solar panels you can cut that figure by another 65%.
Not to mention the lower maintenance costs for EVs and the rebates various local governments give.