Rutland 1200 + 12 V Hybrid MPPT

Marlec Rutland 1200 + Hybrid MPPT Controller 12 V wiring diagram

Review how the Marlec Rutland 1200 + Hybrid MPPT Controller 12 V connects, how it operates and which installation requirements apply to this model.

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

Connection and installation overview

Controller specifically forbids switches/relays/VSRs/fuses in battery cables and battery interruption under generation. Requires exact turbine/controller installation; generic fused-source example conflicts with manual.

Controller specifically forbids switches/relays/VSRs/fuses in battery cables and battery interruption under generation. Requires exact turbine/controller installation; generic fused-source example conflicts with manual.

Show sizes in AWG

Wiring diagram

How the Rutland 1200 + 12 V Hybrid MPPT 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.

Marlec Rutland 1200 + Hybrid MPPT Controller 12 V wiring example with 1 components: Rutland 1200 + 12 V Hybrid MPPT. 0 cable connections. Crossings are not junctions.Marlec Rutland 1200 + Hybrid MPPT Controller 12 V. Controller specifically forbids switches/relays/VSRs/fuses in battery cables and battery interruption under generation. Requires exact turbine/controller installation; generic fused-source example conflicts with manual. Connection overview only. Cable lengths are placeholders; use the complete manufacturer diagram to select conductors and protection. No automatic fuse or cable-size recommendation is supplied by this example.Rutland 1200 + 12 VHybrid MPPT
Marlec Rutland 1200 + Hybrid MPPT Controller 12 V wiring example with 1 components: Rutland 1200 + 12 V Hybrid MPPT. 0 cable connections. Crossings are not junctions.Controller specifically forbids switches/relays/VSRs/fuses in battery cables and battery interruption under generation. Requires exact turbine/controller installation; generic fused-source example conflicts with manual. Connection overview only. Cable lengths are placeholders; use the complete manufacturer diagram to select conductors and protection. No automatic fuse or cable-size recommendation is supplied by this example.Scroll sideways to inspect all components and connections.
Edit this connection overview

Installation notes

Connections and installation requirements.

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

Verified against the manufacturer's documentation (rev. Hybrid MPPT manual SM-469 Issue E.1 Part 2, 1 August 2019), checked 2026-10-01. Manufacturer documentation →

The catalog item includes the controller

The Rutland 1200 turbine produces three-phase power and requires its Hybrid MPPT Controller. The battery terminals shown here belong to that 12 V turbine/controller bundle. They must not be used to connect the bare turbine directly to a battery. The controller's two battery outputs and optional PV input have distinct roles. Neither the 35 A wind-only cable-table value nor the 55 A wind-plus-solar value establishes continuous wind generation. See system diagrams and cable tables, PDF p. 2.

Install the turbine and its cable

The turbine instructions require suitable mounting geometry and clearance for its 1,220 mm rotor. The controller table calls for 2.5 mm² turbine cable up to 5 m in a 12 V installation, increasing for longer routes. These three phase conductors are inside the catalog bundle boundary; their physical cable still needs to be installed and secured. Refer to turbine mounting, PDF p. 1 before designing the pole or arch.

Respect the battery connection restrictions

For wind only, the controller table specifies 6 mm² battery conductors within 1.5 m and a minimum 175 Ah C20 bank; additional solar changes the requirements. Marlec explicitly prohibits switches, relays, VSRs and fuses in these battery cables, relying on the controller's internal protection. Battery 1 must remain connected while generating. This restriction requires a complete manufacturer-specific protection layout; a generic fused source example is not appropriate. Never disconnect a running turbine from its controller/battery arrangement.

Connect and stop in the prescribed order

Connect Battery 2 before Battery 1 if both are used. Verify polarity and charging settings before starting. The controller has separate WG and PV stop controls; stop both and confirm their solid-red indications before battery disconnection. Optional solar must remain within 20 A and 50 V cold open-circuit voltage. Restart uses the documented three-second button actions. Check real charging under suitable wind rather than interpreting a controller or cable limit as generated current. See startup and shutdown sequence, PDF p. 1.

Build it out

Connect it to the rest of your system.

Add Rutland 1200 + 12 V Hybrid MPPT 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

Nominal voltage
12 V
Compatible systems
12 V
PV open-circuit limit
50 V

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.

BATTERY 1 +

out-pos

positive · output

—

BATTERY 1 −

out-neg

negative · output

—

BATTERY 2 +

bank2-pos

positive · output

—

BATTERY 2 −

bank2-neg

negative · output

—

OPTIONAL PV +

pv-pos

positive · input

20 A

OPTIONAL PV −

pv-neg

negative · input

20 A

REMOTE BAT 1 +

sense1

signal · bidi

—

REMOTE BAT 2 +

sense2

signal · bidi

—

REMOTE TEMPERATURE

temp

signal · bidi

—

A dash means a current rating is not specified here.

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 Rutland 1200 + 12 V Hybrid MPPT.

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