Showing posts with label discharge. Show all posts
Showing posts with label discharge. Show all posts

Monday, June 8, 2015

Go Motorboard 2000X with New 18650 Battery Pack: Much Better than the Original !

As many of you know, the Go Motorboard 2000X was my first EV, purchased 8 years ago back in 2007, and I enjoyed a lot riding it with the kids, commuting with it, etc


But these last years, as the original 14V 8Ah NiMH Battery pack grew older, the range and power were just not the same anymore, and we had to charge it right before using it, because it was self discharging :(



Because they are lighter, only the kids would use it, me - not so heavy with 67kg - on it, I would have to help and riding carefully not to go quickly in yellow, and red, sign of a low voltage after few kilometers ...


For several years I had the idea of replacing the battery pack, but when early January 2015 I got several 18650 cells from discarded laptops packs on my hands, I thought the time had finally come to make this move :)





So after 3 months of tidious work charging, discharging, timing them, ranking them by capacity, I finally made a new pack for the 2000X using 4 modules of 8 18650 cells in parallel - a 4S 8P configuration - with Panasonic cells; Why 8 in parallel ? because, that fits perfectly under the wooden deck, and 4 modules in series because that gives roughly the same voltage as the original NiMH pack



- Pack Voltage = 4 x 3.7V =  14.8V nominal same as 14.4V NiMH
- Pack Capacity = 8 x 2Ah = 16Ah (roughly) so we doubled the original 8Ah with NiMH !

Of course each module gathers 8 cells with a total discharge time equivalent the the others: they roughly have the same capacity


To make each module, I aranged them in 2 rows of 4 cells, and soldered each terminal to a small wire linking it the a 2.5mm2 solid copper bus wire, so we have the cell level fuse concept as what Tesla does in its battery packs (for the Roadster, Model S, PowerWall, etc)



As usual, when the pack is made, I take time to Bottom Balance each Module, before charging or discharging it; This is performed automatically by my Low Cost Bottom Balancer, used on every project for several years


After that, I perform a full charge of the pack; For this, I used a regular laptop power supply and had to watch for the limit voltage of 16.6V (4 x 4.2V) and I eventually found the perfect one, and old Compaq one that provides 16.5V, so when the battery reaches this voltage, no more Energy is being pushed into it, and the charge safely ends ...

On the picture above, I replaced to original 3-pin charge connector with this 12V standard barrel jack one, perfect for the power supply too :)

Also I made a custom wooden extra flat support for the 4 modules, held separately in place firmly inside the aluminum body



My first test spinning the rear wheel was an anjoyable moment :

Here is the new pack, wired into the Go Motorboard controller, using the original plug, in my "battery lab" at home:



For the first few weeks, I attach a voltmeter to the handle bar to be able to follow voltage while charging, voltage drop while riding, etc

Charging


Riding



City test ride; As soon as the weather allowed it, I went outside for a ride, at night fall I remember, going around the block and more, slowly first, watching the voltage, then faster and fatser and I rediscovered the sensations I had 8 years ago using it with its brand new battery: Power and Torque were back ! that was very cool :)

BTW, so were the cells, very cool, after 20mn ride, no heat at all, simply amazing !


The next day, a saturday, my daughter and I rode together - 90kg total -, all the way down to the Boulogne's cityhall, few kilometers, did some testing over there, came back up home, and still had a green light (!!); The new pack has clearly a lot in its guts !


The next day, crusing around Boulogne again, for like 1h 30mn, and still green light, incredible - I really pushed it this time -



Now we take it every staurday for lunch and afternoon in Paris, and everybody gets to ride it, it's a lot of fun





So now this puppy is back to life, re-born and even better than the original !

Sunday, November 23, 2014

Enphase AC Battery Technical Details - What's in the box & How does itwork ?

Enphase announced "a revolution" in the Energy Storage world with its new AC Battery coming mid 2015, a very exciting announcement ...





But what's in it exactly ? Let's take a look at the spec sheet provided by Enphase and try to identify its components

   

Specs tell us:

- Capacity: 1.2kWh  of storage in LiFePO4 batteries
- Power: 275 / 550 W
- Weight: 40lbs



That's not much, but enough to start guessing; I think :

{Update}
Through GreenTech Media, Enphase unveiled their LiFePO4 cells source: A Japanese maker which should be actually cheaper than the Chinese (!) and have been providing residential storage systems (UPS): Eliiy Power Co., Ltd



Japanese Eliiy Power 50Ah LiFePO4 cell

- Capacity: the Battery pack could be composed of 7 50Ah LiFePO4 cells wired in series because 7 x 50Ah x 3.32V = 1,162Wh, which can be considered 1.2kWh, and would give a pack voltage of 7 x 3.32 = 23.24V in the range of the Enphase M250 operating voltage below



- New S275 Micro Inverter : This New Special Bi-Directional Grid Tie Inverter, Enphase's 5th generation inverter, is capable of 25W more at 275W; Here it will be charging (from AC) and discharging (into AC) the pack at 275W and this 550W probably means that 2 S275 inverters could be running in one AC Battery units to double power ouput (?)



- Weight: The rather small unit is light enough to be mounted on any wall, since it is actually lighter than some existing inverters and this could be more important than you think because people do not want to waste space in their garage or basement as seen already with Tesla / SolarCity backup only storage systems installed in California (even if this could be mounted anywhere in the house or apartment)

The AC Battery can be added any existing Solar installation, not only Enphase based ones of course; That means that the Bi-Directional Inverter is using AC only, and from what we can see on the drawing below, the Enphase Storage Solution would require Load Controllers (on the every outlet ...) like seen in the SMA Smart Manager Solution



The AC Battery units will communicate with the Enphase Energy Management System (EMS) Control called Enphase Envoy-S using power line (PLC), like it is with the existing M* Grid Tie Inverters of the brand, via their Engage AC Cables, but we also see a WiFi sign near the Load Controllers meaning they will use this to report appliances Power Use to the EMS through a new Envoy Communication Gateway (the Envoy-S that is)


This Envoy-S would know how much Power is in use at home, how much is Generated by the PV array, calculate the difference and tell the AC Battery to Charge or Discharge, to keep the Home Net Usage equal or close to 0W, by Storing surplus PV Power or Using Power from the AC Battery units, to help the PV array power appliances at home during the day and at night when the sun is down
I also think it will be capable of powering on and off these AC outlets through WiFi, triggering loads when surplus PV Power can be used directly by appliances instead of being stored in the AC Battery units

Simply mounted on the wall, these AC Battery units can be added one by one and provide more Storage Capacity and also more Power Output to cover your Home loads, in the end more savings because lower Energy bills from your utility company :)



We do not know the retail price of one unit yet, but I guess it could be around 1,000 USD (?), based on the price of the cells and existing Enphase inverters






For Report, Follow up and Analysis, the Enphase Enlighten Portal will be used, like it is already for a regular Enphase Micro Inverter install; You will be able to see how much Power is beeing stored into each AC Battery unit, how much is drawn from it, its State of Charge and all kinds of interesting graphs from any smartphone, tablet or PC, which is pretty cool :)




So, I think Enphase will indeed deliver a great solution, because it will be scalable, able to integrate to any existing PV install, using a very efficient proven inverter to Charge and Discharge the BAttery Pack, and safe because based on the LiFePO4 Lithium-ion chemistry

I guess it should be a hit !!

Saturday, March 22, 2014

LEAF Battery Modules First Discharge through a Grid Tie Inverter

After Charging these 3 AESC or Nissan LEAF BAttery Modules up to 4V per half module, I now discharge them down to 3.6V

No BMS, just a good Bottom Balancing ....






Sunday, February 9, 2014

LiFePO4 Charge Controller - New Enclosure, fits 2 Kilovacs and a Voltmeter & More items in stock for the DIYE SS


Last week end, I got a new waterproof enclosure for the my new DIY LiFePO4 Charge Controller Project



With this new waterproof electric junction box, higher, I can fit the 2 Tyco Kilovac  EV200AAANA Contactor, the digital programmable Voltmeter, and maybe few diodes ...




More stuff I got for the DIY ESS Kit #2 : AC breakers both for Europe, and US



More AC twin breaker enclosures for the Kit are in stock now; I have almost everything need for 5 complete DIY ESS Kit #2 Control Boards


I had also received some more smaller diodes for my next LiFePO4 Charge Controller project, and my dad measured them with me ....


Some of them were only working on one side, so not at all ... (defective ?)


I got this lot of 6 from Portugal for very low price, so it does not matter too much, just trying things for now; Here is the specification for this



I ordered it because it looked like what Jack Rickard is adding on top of the DC-DC Converters he is selling in his online store

Thursday, October 17, 2013

Vectrix NiMH Battery Pack Self Discharge after 4 weeks

Busy with another activity, I did not use my Vectrix in the last 4 weeks, and like it happened while I was on vacation, for the same duration, the Battery Pack shows a loss of 4 bars after 4 weeks, so it is like 1 bar per week

Also Voltage is showing 130V, and it is usually around 141-143 after a full charge, and the lower limit of 125V triggers the Red warning on the dashboard

So this time, I plugged it a full refill during the night 


Next morning, this is what I got: Fully charged and 139V

And 2kWh used to fill up ... I usually use 2.2kWh after a 5 to 6 bars use, so I was not very far from that

I then went for a good 25km ride and plugged it again to charge overnight
This morning, it shows 141V, so it is getting better I think

And exactly the same 2kWh consumption 

I will ride it like I did fro the last 3 years, having lunch with my former colleagues in Saint Ouen ... 

Thursday, August 29, 2013

New - Bottom Balancer Rental : 19.90€ / week - Why buy and own one when you need it only once ?



After building my DIY ESS, I realized that my DIY Bottom Balancer was not being used anymore; Of course, Bottom Balancing of individual LiFePO4 cells has to be performed only once before connecting the cells into the desired voltage string for use - before the first charge actually -

Same thing, if you want to build an ESS, convert your Vectrix from NiMH to LiFePO4 - many do that themselves -, or any other LiFePO4 based project, you will need to go through this step - see why below -





You will do the Bottom Balancing of all your cells and then, never gain ... So why buy and own an expensive piece of equipment for nothing ?

That is why I decided to provide a new service: The Bottom Balancer Rental, for 19.90€ / week, excluding shipping period, so you have a full week of use of it, plenty of time to empty your cells, then return the device to me


Why is Bottom Balancing mandatory ?

Read : LiFePO4 Battery Charging Method - Don't Ruin your Expensive Cells !


Bottom Balancing the DIY ESS CALB CA180FI Cells

Bottom Balancer video



Does it work ?

Yes, I have used this device on 3 different LiFePO4 Battery packs, with 2 different cells brands



How do I use it ?

I will provide a PDF documentation by email to the persons renting it



Interested ?

Start renting my Bottom Balancer Now:


Options





NB: Shipping costs not included

NB: To prevent problems, I will charge an extra 100 EUR as a security deposit, refunded when the Bottom Balancer comes back to me

Thursday, April 25, 2013

EVTV Friday Show - April 19,2013

- Bottom Balance at Zero Volts? : A bit of a problem with the 1957 Porsche Speedster Electric replica
- VW Transporter Electric Drive conversion by EV4U Custom Conversions
- New: CHAdeMO charge port arrived at EVtv Werks




News



The ancestor (1947) of the LEAF (?) in Japan


Some more news


Jack has received a CHAdeMO port and its wiring harness



VW Transporter EV conversion to start soon by EV4U Custom Conversions



In-wheel motors ... can not work


HPEVS AC-50 / AC-75 (New)



Oops, the Porsche Speedster's battery pack went all the way down to ... 0.1V per cell ! 


Thanks to a good Bottom Balancing done by Matt few years ago, not much damages to the battery pack !
Maybe one cell, the smallest in capacity, has lost some more, but that's about it ...
Another episode proving that the Bottom Balancing is THE way to go with your LiFePO4 pack 




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