question

andyalford avatar image
andyalford asked

REC Active BMS for Victron GX - How many contactors ?

This new version of "REC-ABMS for Victron CCGX" communicates with a GX Device using CAN. It sends Max Charge Current & Voltage and Max Discharge Current along with Battery Voltage, Temp & SOC. The GX Device uses DVCC & SVS to control all Inverter / Charger & MPPT Solar controllers to comply with the charging / discharging limits. Ok, so that sounds good, huh? But I also want to have contactors set to voltage levels in case the CAN bus goes down.

The previous version of the BMS suggested just the traditional two contactors - HVD & LVD to provide High Voltage Disconnect of the charge bus and Low Voltage Disconnect of the DC load bus.

But this version offers a Main Contactor for both HVD & LVD for Victron inverter / charger devices. And another Contactor expected to be used for HVD on non-Victron Charging sources. And though it is not shown in this diagram, I am sure they expected a third contactor for LVD to disconnect DC Loads.

Is this genius or overkill?

I questioned the new functionality, and the manufacturer offered to disable it to make it functionally equivalent to the old version. But I am an Engineer, so I tend to think "here is a Solution, now lets go find a Problem..."

Any thoughts appreciated.....

Andy

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P.S. And....

I was expecting the fail-safe MultiPlus Inverter/Charger control to be made with a Charge Control signal to AUX1 and Discharge Control to T1 with the Assistant loaded "Two wire BMS (016A)"...

But they are suggesting Charge Control using the Assistant "Input Current Limit Control (0142)" and the AUX1 signal. And programming the Inverter's DC Input Low Shutdown voltage for Discharge Control.

Some REC users I have enjoyed reading before: @paulb @drmi @Boekel @Poppycock @Hakon Ingvaldsen @Eirik @Ceri.w

Lithium BatteryVenus OSBMSCCGX Color Controlgx device
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3 Answers
nebulight avatar image
nebulight answered ·

I personally wouldn't have a contactor on both the high end and low end as they are Normally open contactors and draw power just sitting. If I had a rec BMS, I'd have one main contactor for all failure conditions should there be a CAN failure(HVC, LVC, TEMP, Ect) conditions, and use a BP65 for my DC loads. Since lifepo4 can tolerate overcharge better than it can overdischarge, that's why I'd have a dedicated BP65 just for the DC loads as you don't want that killer the battery when unattended.

For the inverter/charger I also would have thought they would have done the two wire BMS assistant. For me, that's how I do it with my BMS as the low shutdown for voltage discharge doesn't account for individual cell voltages.

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edvanz avatar image
edvanz answered ·

Have you asked the question to tine@rec-bms.com he is pretty quick in answering

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brets avatar image
brets answered ·

I am running 2 contactors on my REC Active BMS. The main contactor is for my Inverter/charger, Orion DC-DC, and will be for my SCCs once I have them. The second contactor is for all of my DC loads in my camper. All of the Victron loads are controlled by the REC inputs via canbus/Cerbo, so theoretically, the main contactor should never open on a parameter unless the canbus fails. The main contactor also has a precharge on it to charge the MP capacitors. The operation of the system in this manner is so simple! I leave everything on (Multiplus, Cerbo, and main disconnect), and flip the switch on the REC BMS to start the system. The precharge occurs, and everything boots up automatically. When I am going to leave the camper stored for some time, I just flip the REC switch, and everything shuts down. Love the protection and simplicity of it all!20210606-145457.jpg


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Related Resources

CCGX Product Manual

CCGX Product page

Additional resources still need to be added for this topic

Battery Compatibility

Did You Know - How to create a battery profile for non-Victron batteries?

Victron Venus OS Open Source intro page

Venus OS GitHub (please do not post to this)

Additional resources still need to be added for this topic