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Victron BlueSolar MPPT 150/70-Tr (12/24/36/48V-70A)
Victron BlueSolar MPPT 150/70-Tr (12/24/36/48V-70A)

Victron BlueSolar MPPT 150/70-Tr (12/24/36/48V-70A)



Ultra-fast Maximum Power Point Tracking (MPPT)

Especially in case of a clouded sky, when light intensity is changing continuously, an ultra-fast MPPT
controller will improve energy harvest by up to 30% compared to PWM charge controllers and by up to
10% compared to slower MPPT controllers.

Advanced Maximum Power Point Detection in case of partial shading conditions

If partial shading occurs, two or more maximum power points may be present on the power-voltage curve.
Conventional MPPTs tend to lock to a local MPP, which may not be the optimum MPP.
The innovative BlueSolar algorithm will always maximize energy harvest by locking to the optimum MPP.

Outstanding conversion efficiency

No cooling fan. Maximum efficiency exceeds 98%.

Flexible charge algorithm

Fully programmable charge algorithm (see the software page on our website),
and eight pre-programmed algorithms, selectable with a rotary switch
(see manual for details).

Extensive electronic protection

Over-temperature protection and power derating when temperature is high.
PV short circuit and PV reverse polarity protection.
PV reverse current protection.

Internal temperature sensor

Compensates absorption and float charge voltage for temperature.

Real-time data display options

- Apple and Android smartphones, tablets and other devices:
see the VE.Direct to Bluetooth Smart dongle
- ColorControl panel


Victron MPPT solar controllers offer a diverse range of products suitable for industrial, mining, marine, caravan and RV applications. A testament to Victron quality and reliability is the Victron 5 year product warranty.

Victron also offers the widest range of quality MPPT solar controllers in the market. The smaller 75/10 and 75/15 products are ideally suited to 12 and 24 volt systems that employ low cost 250 watt class "grid tie" panels. The 75 volt open circuit rating can also handle up to 3 x "12 volt" style panels in series for those who wish to retain existing panels.

The higher power 100/15, 100/30 and 100/50 products can take advantage of stacking two 260 watt class panels in series/parallel arrays for 12 and 24 volt systems. The higher open circuit voltage 150/35, 45, 60, 70, 85 and 100 models can handle up to 3 series panels in a series/parallel array.

The table below outlines the expected midday charge current into 12, 24 and 48 volt batteries for each controller with typical grid tie style solar panels. We are using a .7 power factor to derate the panel for lying flat and for temperature. Nominal 13, 26 and 52 volts were used in the calculations for battery voltage. Multiply the amps by about 6 to get an approximate idea of amp-hours generated per day. The "S" designates panels in a string and the "P" designates parallel. Actual panel output power will vary pending panel inclination, temperature, lattitude and season.

Practical Guide - Solar Panel Configurations

MPPT Model12 volt24 Volt48 Volt
75/101 x 200W - 10 amps2P x 200W - 10 amps4P x 200W - 10 amps
75/151 x 260W - 14 amps2P x 260W - 14 amps4P x 260W - 14 amps
100/151 x 260W - 14 amps1 x 2S x 260W - 14 amps2 x 2S x 260W - 14 amps
100/302S x 260W - 14 amps2 x 2S x 260W - 28 amps4 x 2S x 260W - 28 amps
100/503P x 260W - 42 amps3 x 2S x 260W - 42 amps6 x 2S x 260W - 42 amps
150/353S x 260W - 35 amps 2 x 3S x 260W - 35 amps4 x 3S x 260W - 35 amps
150/45 2 x 2S x 260W - 45 amps 2 x 3S x 260W - 42 amps4 x 3S x 260W - 42 amps
150/602 x 2S x 260W - 56 amps 3 x 3S x 260W - 60 amps6 x 3S x 260W - 60 amps
150/70 2 x 3S x 260W - 70 amps 4 x 3S x 260W - 70 amps6 x 3S x 260W - 63 amps
150/85 2 x 3S x 260W - 84 amps4 x 3S x 260W - 84 amps8 x 3S x 260W - 84 amps
150/1003 x 3S x 260W - 100 amps5 x 3S x 260W - 100 amps 10 x 3S x 260W - 100 amps

So called 12 volt panels can readily be used with the lower power controllers. Note that all panels connected to a single controller must be of the same model. In selection of the appropriate controller, the following should be taken into account.

  • The number of panels in series times the panel Voc must not exceed the controllar Voc rating. The panel Voc for the lowest temperature operation should be used.
  • The number of panels times panel watts indicates the maximum power. Divide that power by 13 to determine maximum current. Multipy that by .7 to find the expected maximum charge current.

Advanced Users

Download the Victron Solar Panel Calculator for exacting designs of solar panel systems using Victron MPPT regulators.

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