Hi everyone,
I’ve been reading this forum for a few weeks now and have already found a lot of useful information, thank you for that. I’m currently preparing my very first electric vehicle project, but I’m still rather unsure about certain aspects of it, especially the electronics. So I have a few questions, and I’d really appreciate your help in bringing this project to life. That’s why I’m making my first post here today.
I want to design and build an outboard motor. For this purpose, I already have a FlipSky 7070 motor and a FlipSky 75100 Pro V2 ESC. The initial plan is to use this motor (no gears) to power a canoe. Based on my estimates, there is around 100–200 W needed. The target speed is 5–6 km/h.
Later on, I’d like to have the option to run the motor at full power in case I want to use it on a different boat. So the electronics need to be efficient but, above all, safe at lower and also higher loads.
I’ve read in several posts, around the internet, that some users managed to burn out their FlipSky ESCs, and I definitely want to avoid that.
Because of this, I’m planning to convert the ESC to water cooling. I saw in a YouTube video that the ESC board is only mounted at four points. I’m considering replacing the housing with a copper or aluminum base plate and increasing the number of mounting points to six or even eight.
Do you think this is a sensible modification?
My idea is to drill and tap holes to mount the ESC board, and have water flow through the opposite side of the plate.
However, a few questions arise:
Could this cause mechanical or thermal stress that might damage the board?
How much water flow would be necessary for effective cooling?
What kind of pump, flow rate, or pressure would you recommend for this ESC?
I’d also like to measure the energy consumption so I can experiment with different propellers and find the most efficient setup.
My idea is to configure the ESC for maximum efficiency, then test various propellers to locate the best propeller for the canoe.
Any tips on suitable measurement hardware or logging methods would be very helpful.
For the power supply, I plan to use a 13S 21700 lithium-ion battery pack.
I still have some questions about this as well—especially regarding which BMS would be suitable for this configuration.
Is a only charge BMS the way i should go?
Any recommendations or things I should watch out for?
I’m completely open to answering any questions and providing any details you might need. I’d really appreciate your guidance so I can build a safe, reliable, and efficient outboard motor.
Greetings from Germany
I’ve been reading this forum for a few weeks now and have already found a lot of useful information, thank you for that. I’m currently preparing my very first electric vehicle project, but I’m still rather unsure about certain aspects of it, especially the electronics. So I have a few questions, and I’d really appreciate your help in bringing this project to life. That’s why I’m making my first post here today.
I want to design and build an outboard motor. For this purpose, I already have a FlipSky 7070 motor and a FlipSky 75100 Pro V2 ESC. The initial plan is to use this motor (no gears) to power a canoe. Based on my estimates, there is around 100–200 W needed. The target speed is 5–6 km/h.
Later on, I’d like to have the option to run the motor at full power in case I want to use it on a different boat. So the electronics need to be efficient but, above all, safe at lower and also higher loads.
I’ve read in several posts, around the internet, that some users managed to burn out their FlipSky ESCs, and I definitely want to avoid that.
Because of this, I’m planning to convert the ESC to water cooling. I saw in a YouTube video that the ESC board is only mounted at four points. I’m considering replacing the housing with a copper or aluminum base plate and increasing the number of mounting points to six or even eight.
Do you think this is a sensible modification?
My idea is to drill and tap holes to mount the ESC board, and have water flow through the opposite side of the plate.
However, a few questions arise:
Could this cause mechanical or thermal stress that might damage the board?
How much water flow would be necessary for effective cooling?
What kind of pump, flow rate, or pressure would you recommend for this ESC?
I’d also like to measure the energy consumption so I can experiment with different propellers and find the most efficient setup.
My idea is to configure the ESC for maximum efficiency, then test various propellers to locate the best propeller for the canoe.
Any tips on suitable measurement hardware or logging methods would be very helpful.
For the power supply, I plan to use a 13S 21700 lithium-ion battery pack.
I still have some questions about this as well—especially regarding which BMS would be suitable for this configuration.
Is a only charge BMS the way i should go?
Any recommendations or things I should watch out for?
I’m completely open to answering any questions and providing any details you might need. I’d really appreciate your guidance so I can build a safe, reliable, and efficient outboard motor.
Greetings from Germany

