Showing posts with label solder. Show all posts
Showing posts with label solder. Show all posts

Monday, January 26, 2015

New Project : Re-use 18650 Lithium-ion Cells from Discarded Laptop Battery packs

Early 2015, I started a new project: Re-use cells from discarded laptop battery packs

I got a lot of them from the battery trash at work and some on eBay after looking at Jehu Garcia's work to try build cheap battery packs, first to replace the aging NiMH one in my Electric Go Motorboard 2000X, and maybe for another Energy Storage System at Home ....  A 3rd one, yes ;)





I am very excited about this new cell format and discovering how to work with it along the way;
Also you probably know that this is the cell Tesla uses to build its Roadster and Model S packs, with 7,000 Panasonic cells in a Model S ....



Opening the laptop battery case is more or less difficult, and I have to be carefull no to short circuit anything during the process; Inside the cells are mostly made by Panasonic and Samsung SDI, with various external insulation colors (different generations of cells probably)


Every pack has 3, 6 or 9 cells, in 1P, 2P, or 3P and always 3S configuration to have a common 3 x 3.7V = 11.1V nominal





This 18650 cell is to be charged at 4.2V maximum using a ususal Constant Current & Contant Voltage Charger

Guess what's inside ? an "over-engineered" - Jack Rickard's language - PCB / BMS with leads to every group of cells in parallel, and as usual I don't think it is very usefull - apart from the thermal sensor(s) - and in many cases it damaged cells trying to bablance them on top while charging ... the same old story => there are going to trash / recycle because I won't need these at all
An example this morning: out of 6 cells, 2P 3S, a set of 2P is at 0.05V and all the rest is at 3.7V .... where does this come from ? (answer the BMS, which in this case can be called a Battery Murdering System !)


As usual, I am using my good old Low Cost Bottom Balancer, used on all my others battery chemistry projects: Mottcell 39Ah, CALB CA180FI, LEAF Battery Modules, and now 18650; The 2 first the bottom balance voltage was set to 2.75V, and the 2 last to 3.0V (but could be 2.75V too as Jack Rickard did bottom balance his LEAF Modules from the Renault Fluenze Better Place to 2.75V per half module)



Like Jehu, I find out that some cells are close to 0V, some around 4V, and all over the place in between of course ...
When the cell is showing a lower voltage than 3.0V, I charge it to go beyond this value and then proceed to the bottom balancing phase, and all cells are then stored at 3.0V in a box, filling up slowly


Most of the cells originally had between 2 to 2.4Ah of capacity, but they are used, so the real / remaining capacity is the question here ...

I started charging using a eSmoke charger - charges to 4.2V - but it is way to slow for me,



so I siwtched a to 12V lead-acid 2.7A battery charger (Mascott from Norway, a pretty good charger BTW)


To see the current drawned and pushed in the 18650 cells, I wired an analog Ampmeter, and I am discharging at 4A, which is 2C, and charging at 2A, which is 1C



With this setup, I can quickly see in few seconds if a cell has a lot or not so much, or not any more capacity left, as it will show "resistance" on the charging and/or discharging side




A little bit is done at night when I am back home, a liitle bit in the morning before leaving to work, and most of it during the week end; It is taking time but I like it - picture taken yesterday -



Stay tuned for more in Episode 2 ....

Monday, June 10, 2013

DIY ESS - Soldering of the PWM kit and Using it ... for the Fan Speed Control

Last sunday, I finally took some time to solder the PWM kit I got few weeks ago



A little test with a 12V AGM battery and a small motor

It worked !

But when I tested it instead of the capacitor and resistor on the Tyco Kilovac EV200A1ANA, then I got smoke and blew the 2A fuse on the 24V line ... after hearing the contactor having difficulties to close properly with its usual big clap. There must have been too much consumption from the coil to close I guess and the MOSFET was burning hot !

So I kept the resistor & capacitor Economizer solution for the Kilovac, tested for sevral weeks now, and   used this PWM kit for the fan speed control on the metal cabinet, manual control that is for now

After long tests with the fan at different speeds, nothing was over heating, and it seemed like a good match

So I plugged it on 24V line of the ESS to further test it with the voltage it will get when mounted in line on the switched 24V

24V taken at the source, right after the 2A fuse

Monday, April 29, 2013

LiFePO4 DIY ESS - Charger Stuff

If you remember the last time I got 3 24V LiFePO4 Chargers, one of them did not blow any air and went into an over-temperature situation; I had my Hong Kong contact send me another one and it arrived last night


The new charger is exactly like the six others, except this blue sticker instead of orange



Only now I decided to open the problem charger, and discovered that its fan connector was simply not plugged into the charger PCB ... This was easy to fix ! :-)





I then replugged it the the ESS Control Board / EMS to test it and the fan started spinning right away :-) 






Now, let's prepare this new charger to connect it with the other ones: 
Always the same thing: remove the original US AC plug, strip the wires and apply solder to make it stronger; On the DC side, remove the plug, strip the wires and solder 8mm lug on positive and 6mm lug for negative 



Done !



So I now have 7 Low Power Chargers to feed my battery pack, and had to plug 2 on the same AC port, together pushing 650W

The stack is getting a bit high with 7 chargers !

2 chargers are connected to the same AC port

7 x 92W = 650W (roughly)

It is tight, but all the DC chargers cables fit

This is the new charger positive lug

and the negative one



Sunday, April 21, 2013

Done - New GTI interconnects for the DIY ESS

I finally found time to make these short and clean interconnects for the Grid Tie Inverters stack and tested them (Video at the end of this post)

After cutting the 2.5mm2 electric wire to the right length, a little bending on each end, and using a good soldering iron, I could easily make the 6 pairs of 8mm lugs + wire interconnects 


A littler piece of thick paper to make a pattern for the next ones

Fits very nicely after a little adjustment  

Soldering quickly , filling solder inside the hole without have the plastic burn !

There is a good contact between the lug and the terminal after screwing the nut

Adding more inverters to the stack



BEFORE : The grid tie inverters already in use and wired

4 brand new ones received recently that will soon be part of the ESS


AFTER : The same stack with the new interconnects


DC Power is ON (GTI Mode) and the first inverter's AC side is switched ON 

Overview of the Grid Tie Inverters stack, Battery PackControl Board, and Wattson in the back


The whole stack is ON (DC & AC) and after long minutes of test, nothing is heating up (wires, lugs, connections) 

Net usage is low


A little video of the ESS fully using its 6 GTIs (out of 8, 2 not wired yet) going up to 1200W +



BTW, this is what I was watching on Youtube at the same time:  Daft Punk - Get Lucky



ESS overview




and this is Wattson Anywhere's Graphs for this good test sunday (click screen capture for direct link to my live graph)
 

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