Monitoring

Victron BMV-712 Smart wiring diagram

See the Victron BMV-712 Smart connection points and wiring example. Open the diagram in Crimp to add your equipment and plan the cables between them.

Open this example as a new project. Use your own parts and cable lengths to make the plan yours.

About this wiring example

Use the diagram as a starting point for your installation. Replace the example equipment and cable lengths with your own, and check the connections against your exact model's instructions.

Cable sizes depend on the connected equipment, current and cable lengths. Add those details in Crimp to size each run.

Show sizes in AWG

Wiring diagram

How the BMV-712 is wired.

Open this example in Crimp to use your own parts and cable lengths. Review the assumptions and installation notes as you adapt the circuit.

Victron BMV-712 Smart wiring diagram, positive and negative connections between the system bus and the unit, plus LOAD −, B+ sense, AUX sense.
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Installation notes

Connections and installation requirements.

Guidance for this model, with sources linked beside the relevant advice.

Verified against the manufacturer's documentation (rev. 19 — 08/2026), checked 2026-09-11. Manufacturer documentation →

Which BMV-712 Smart is this?

This is the BMV-712 Smart battery monitor: a round head unit with a display and Bluetooth, supplied with the 500 A / 50 mV shunt, a 10 m RJ12 cable and a 2 m battery-positive lead carrying a 1 A slow-blow fuse. The datasheet gives a 6.5–70 V supply range, under 1 mA draw with the backlight off, a VE.Direct port, a 60 V / 1 A bistable relay and an auxiliary input for a second battery's voltage, a temperature sensor or a midpoint. The head is IP55 and not meant for outdoor mounting. Its sibling, the SmartShunt, is the same shunt without the head.

How is the BMV-712 shunt wired?

The shunt goes in the battery negative, and the rule that makes the monitor right is simple: the battery's negative post connects to the shunt's battery side and to nothing else, and every load, charger, inverter and chassis ground lands on the other side. In Crimp those two studs are BATT − and LOAD −. The fused red lead from the shunt's circuit board goes to battery positive and is B+ sense on the canvas; AUX sense is the auxiliary input. The RJ12 cable to the head carries data only. Victron's installation section has the connection diagrams.

The technical reference above sizes the example battery-negative run with Crimp's engine from the connected loads and chargers, not from the shunt's 500 A measuring range. Cables to the shunt's M10 bolts follow the system, not the shunt.

What should I bear in mind with the BMV-712?

  • State of charge is calculated, not measured. It counts amp-hours through the shunt and resets to 100 % only when three conditions hold at once: charged voltage, tail current and a charge-detection time. The defaults suit lead-acid; set them for your battery and set the capacity, Peukert exponent and charge-efficiency factor, or the reading drifts. The manual's troubleshooting section walks through it.
  • The aux input does one job at a time. Second-battery voltage, temperature or midpoint, never two together, and the temperature sensor (ASS000100000) is a separate purchase. Choosing starter-battery voltage means giving up temperature compensation from this unit.
  • Anything on the battery side of the shunt is invisible. A charger or ground strap landed on the battery post instead of the load side is counted wrong or not at all. Only one cable belongs on the battery post.
  • A monitor draws current too. The datasheet's own warning: a lithium battery discharged to its low-voltage cut-off has almost nothing left, and a residual draw of 10 mA can damage a 200 Ah battery left in that state for a little over a week. Disconnect or keep charged during storage.
  • The relay is small. 60 V / 1 A, bistable, invertible; it drives a contactor or a signal input, not a load.

What do owners and installers say about the BMV-712?

  • Most "wrong reading" threads are shunt wiring. Something else on the battery side of the shunt, or a return that bypasses it, shows up as a monitor that never agrees with the charger; see this Victron Community thread, the Escape owners' corrected wiring and a DIY Solar Forum case. Charge showing as discharge means the two heavy cables are swapped, per the Ford Transit forum.
  • "It never reaches 100 %" or "it jumps to 100 % too early" are settings. Owners resolve it by raising the charged voltage for lithium, setting the tail current just above the charger's, and adjusting Peukert and charge efficiency; see this thread, this one on the efficiency factor and the DIY Solar Forum.
  • BMV-712 or SmartShunt is the pre-purchase question. The consensus is that both report the same data to VictronConnect and a GX device, and the BMV adds the display, the alarm and the relay, with better Bluetooth range because the antenna sits in the head rather than in the battery box; see this comparison thread, YBW and the Footprint Hero review.
  • People want the aux input to do two things. Threads asking to monitor the starter battery and the temperature at once end with "one or the other"; see this one and this one.

What belongs around the BMV-712?

Build it out

Connect it to the rest of your system.

Add BMV-712 to your diagram, then connect your batteries, chargers and loads. Crimp calculates cable sizes and checks the connections as you draw.

Every cable you draw there is sized against ABYC E-11, from the same tables as the reference on this page.

Technical reference

Specifications, terminals and supporting parts.

Check the model, ratings and connection points against your own unit before choosing installation hardware.

Catalog specification

Connection limits are listed in the terminal map. Use the manufacturer's documentation for the full specifications.

Supporting parts

  1. A lug or terminal to match each post on the part
  2. Strain relief and boots so nothing chafes or shorts
  3. Cable and fuses sized once the whole system is drawn

Check stud sizes, fuse type, run length and how warm the space gets against the gear you actually have before you order.

Terminal map

Catalog connection points, current direction and planning limits. Check the manufacturer's pinout and connector ratings before installation.

BATT −

batt-neg

negative · input

500 A

LOAD −

load-neg

negative · output

500 A

B+ sense

vbat

signal · bidi

1 A

AUX sense

vaux

signal · bidi

1 A

Method & provenance

Where the specifications and sizing come from.

Manufacturer specifications describe the equipment. Crimp calculates cable results from the circuit and assumptions you enter.

From the maker

What the catalog says

Manufacturer, model, ratings and which terminal does what come from the catalog. A newer revision, or the nameplate on the unit in your hand, can say something different — when it does, the nameplate wins.

ABYC E-11

What Crimp worked out

Sized against ABYC E-11. Boats built to UK or EU rules answer to ISO 13297 — check these figures against it before you build. The run length and the current above are what drive the result. Crimp doesn't know how warm your space gets; draw the cable inside an engine-bay zone on the canvas and it sizes for the heat.

Read how the sizing works

Next step

Plan your installation with BMV-712.

Open this example as a new project. Add your equipment and cable lengths, then review the sizing and checks for your setup.