My EV conversion after 10 years and 90k miles

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Published 2019-12-05
This video is an overview of the electric vehicle conversion I did on my 2001 VW Passat. I'm using a 90kw Siemens AC induction motor and a drive inverter I built myself.

You can read more about this conversion at etischer.com/awdev

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To answer some of the common questions being asked in the comment section:

- This conversion started in 2008 before the Nissan Leaf or Chevy Volt were released, the only way to get an EV was to build one. I spent about 500 hours (1 day per week for a year) getting the car to the point it was a daily driver, inspected by the Bureau of Automotive repair & California Air Resources Board (CARB), registered electric, and exempt from smog checks.

- My EV conversion helped me land job at Tesla, where I was Sr. Staff Controls engineer in the Powertrain equipment engineering team in 2011. I drove the car in to my interview, and gave a 30 min presentation on it. I consider it my rolling resume. I retired from Tesla in 2018.

- I have a B.S. degree in Mechatronic engineering from California State University Chico. It's a 4 year program combining Electrical, Mechanical and Software engineering, it was the first college in the country to offer this degree. I'm now a voluntary advisory board member at Chico State.

- At 25 mpg, and $4/gallon gas (California prices), 90k miles is $14,400 in gasoline. In addition, $1k in oil changes, $2k+ in maintenance (timing belt, worn brakes, water pump, smog...) I also got $2,400 tax credit for converting my car. This video has also generated $8k from YouTube!

- Total cost for my converted EV was $25k. $12.5k was just for the battery cells. $1.8k was for the car itself, it had a seized cam and bent valves when I bought it.

- Solar panels on our house generate about 6.1 MWh per year, and the Passat EV uses 320Wh per mile. We generate 19k miles of range each year from sunlight. Our solar install was $9k.

- Cost to charge: Our electric bill actually went down once I started charging the car, because we also switched to a time of use rate plan. After midnight, electric rates were $0.03/kwh, my car gets 3 miles per kWh, and I charge at work 50% of the time. For 1,000 miles, my cost would be $5. Rates have recently gone up to $0.09/kwh, but now with our solar panels the cost is about $11 every 1,000 miles.


- Range should be about 100 miles, but I never drove past 70 to maximize battery longevity. I was driving 50-100 miles a day for 8 years, until I retired and bought a Tesla Model 3.

- The converted car weights 3,700 lbs, about 100 lbs heavier than a stock V6 Passat . Most of the battery weight (500 lbs) was added to the rear, about the weight of 3 passengers. I had custom springs wound so the car would sit level. It now has almost perfect 50/50 weight distribution. VW also put a W12 in this car (2006), 5,400 lbs!

- About Safety:
Yes, the ABS and airbags still work. The structure of the vehicle is unmodified.
LiFePo4 batteries are fairly inert, even after driving nails through them, they don't catch fire (unlike 26 gallons of gas in a gas tank).
   • Lithium battery test - ThunderSky Win...  
Brakes work awesome with disc brakes and regen brakes. Battery racks and straps engineered with 30x factor of safety.

- Insurance
The car was appraised by my insurance company, and I pay insurance based on the appraised value.

- Not shown in the video:
I have a vacuum pump to run the brake booster, it's mounted under the front battery pack.
I also have an emergency stop button on the lower dash panel. Turning the key off will also open the main power contactors if needed as a secondary redundant shut off.

-The Passat was built with a throttle by wire system. It outputs 1.5 - 4 volts, I have my VFD programmed to detect a fault if the voltage is outside of this window (broken wire, short circuit...)

- Why didn't I use a clutch?
I wasn't sure if the bearings in the motor could take the thrust load (xxx lbs) of the clutch throw out bearing pushing on the motor shaft. Adding a clutch means adding a flywheel, which requires more machining tolerance and higher force on the taper lock fitting I was using. It would also require balancing the flywheel to 9k rpm. Most EVs that use an AC motor use a single speed gearbox.

- Do you still drive it?
In 2020 I bought a Tesla Model 3, and it didn't make sense having two 4 door sedan EVs (especially one that's now 10 years old). The batteries were sold, along with the motor (and two spare motors I had), and other high value EV parts. The chassis was donated to a charity. With the car being so heavily modified, it was not worth it to me worrying about the possible liability if I sold the car to someone and they crashed it.

- I also did a Mazda Rotary engine & 5 speed in my MG Midget, and a Subaru flat 6 engine in my Porsche 914.









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All Comments (21)
  • @geneva93
    What a humble guy! I can see him saying in a future video "Yeah, this is my time displacement machine. It works ok. Not the fanciest but it gets me to and from the bronze-age..."
  • The fact that you built this yourself, in 2008, when there was virtually nothing to go off of, is incredible, and you did such a clean job.
  • Nothing short of a genius. To understand all the electronics, the mechanicals and to actually be able to machine it into a solution is nothing less than amazing. WELL DONE!
  • @Ry____
    Man as an electrical engineer, I’m amazed how you used so much off the shelf items to make this work. Very impressive!
  • @malung83
    i am an Iraqi man, i just imagine driving this car in Baghdad with all these electrical componenets, it will be really hard to prove its not a carbomb.
  • @jasepoag8930
    opens glove box More cells Opens center console More cells Lifts sun visor More cells Cuts open tires More cells Shifts seats back More cells
  • Very impressive, especially given the fact that you did all this 10+ yrs. ago when even a company like Tesla barely started having reliable vehicles available. Probably one of the best Videos on youtube that I have seen that actually does something truly unique and useful!
  • @berenv
    Last line in the description: “I also did a Mazda Rotary engine & 5 speed in my MG Midget, and a Subaru flat 6 engine in my Porsche 914.” Wow this guy is familiar with his engine swaps! I love that mindset, not doing something because it’s easy to do or necessarily the best option, but to learn a lot and have something unique to be proud of. Mechatronics engineering sounds like a really cool degree.
  • As an electrical engineer I'm impressed. That's a lot of work and gives a good example of the systems going into production EVs now.
  • @Flopsaurus
    THIS is engineering. So cool to see something like this showcased. I wish there were more people like you.
  • @DreamCarGarage1
    I have literally no idea what he's talking about at all but I'm still really impressed.
  • @stigmuri7766
    "So let's take a look in my basement. Here's a large hadron collider I built last year. Haven't been using it much. But it works ok"
  • @JesusLopez-sm4oj
    I aspire for this level of genius and also the fact that he was so calm about everything he's done is mind blowing. You deserve some sort of award for this monster level of engineering.
  • @NovaPog37
    man it's awesome to see what ev conversions looked like in 2008, nowadays it would require so much less to do the conversion, it would be much cheaper and easier too. definitely an early adopter kind of investment and an interesting car, hope to see it on the road with my own eyes someday
  • @jukkal4382
    Let´s take a moment to appreciate the fact that he built a MANUAL gearbox electric car :O
  • @mattooi4322
    I'm an electrical engineer. This is absurd. I'm floored. Good work
  • @swolltron
    This guys is the most down to earth mad scientist… I don’t understand half the words you said but all I can say is, brilliant work friend.
  • @kingbarrington_
    The fact that he did it before it was cool makes it so much better