400W Portable Solar panel - Quad Fold AllSpark

400W Portable Solar panel - Quad Fold AllSpark

Limited stock remaining due to massive demand - get in fast before they run out. Next stock arrives late Oct.

$899.00
Sale price  $899.00 Regular price  $0.00
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400W Portable Solar panel - Quad Fold AllSpark

400W Portable Solar panel - Quad Fold AllSpark

SKU CODE: AS-400SPFOLD-LV
Pre-Order

Limited stock remaining due to massive demand - get in fast before they run out. Next stock arrives late Oct.

$899.00
Sale price  $899.00 Regular price  $0.00

HARNESS THE SUNS ENERGY AND STAY OFF GRID LONGER WITH ALLSPARK SOLAR

This model suits all MPPT controllers

Portable and reliable solar for whever your journey takes you

  • Charge ONE or TWO VEHICLES at the same time
  • High efficiency shingle cells
  • Excellent temperature tolerance 
  • Heavy duty carry bag
  • Water proof 
  • 5 Year Manufacturers Warranty

Description

THIS CUTTING-EDGE FOLDING SOLAR PANEL IS NOT YOUR AVERAGE OUTDOOR COMPANION - GENERATES UP TO 28A PER HOUR!*

 

When you need serious portable power for extended trips, a 400W solar panel that can actually deliver changes the game. The AllSpark 400W Quad Fold Solar Panel is built for grey nomads, serious free campers, and 4WD travellers.

 

Featuring A-grade monocrystalline shingle cells at 23.5% minimum efficiency, Japanese ETFE laminate rated for 25+ years, and a fully flexible wiring arrangement - this 400W portable solar panel can power one battery system or split into two independent 200W sections to charge your 4WD and caravan simultaneously.

 

Operating at 18.2V, it's compatible with every DC-DC charger and MPPT solar controller on the Australian market for 12V systems.

 

400W Portable Solar panel - Quad Fold AllSpark

One Panel. Two Batteries. Fully Independent Charging

Running a 4WD and a caravan from the same campsite? Touring with multiple vehicles? The AllSpark 400W Quad Fold output can be split into two - charge your 4WD battery and your caravan battery at the same time with two separate controllers.

No splitter cables that lose power. No compromise. Simply unplug the supplied double adaptor and connect an optional extension cable.

One 400W folding solar panel that does the job of two.

400W Portable Solar panel - Quad Fold AllSpark

Japanese ETFE: Built for 25 Years of Australian Sun

Panels that yellow, blister, or lose 30% output in three years aren't a bargain, they're a liability.

The AllSpark 400W uses premium Japanese ETFE laminate that's UV stable for 25+ years and bonded with advanced polycomposite materials that prevent micro-cracking as cells heat and cool.

Water resistant, salt resistant, and engineered for the conditions that destroy lesser panels.

400W Portable Solar panel - Quad Fold AllSpark

Outback Temperatures Don't Slow This Panel Down

Standard cells can lose significant output as temperatures rise through a summer day. AllSpark's shingle cell technology runs at a -0.38%/°C power temperature coefficient, outperforming conventional solar panels in high heat.

With 23.5% cell efficiency and an operating range from -40°C to +60°C, this 400W portable solar panel keeps charging when the midday heat would throttle a cheaper alternative.

400W Portable Solar panel - Quad Fold AllSpark

Maximum Power from Every Centimetre of Panel

Conventional cells waste surface area with gaps and ribbon busbars. AllSpark's shingle cell design eliminates both - cells overlap for maximum density, and there are no fragile metal busbars that can fracture under thermal expansion or travel vibration.

More output per square centimetre, and significantly fewer ways for the panel to fail on a remote trip.

400W Portable Solar panel - Quad Fold AllSpark

5-Year Warranty. 30-Day Money Back. We Stand Behind It.

Remote travel means you need gear that won't let you down - and a supplier you can actually reach.

The AllSpark 400W Quad Fold is backed by a 5-year manufacturer's warranty and a 30-day money-back guarantee. Australian-based support from people who know this product. No ticket queues, no unanswered emails.

Buy with confidence, travel with confidence.

WIRING OPTIONS:

  • All 4 panels in parallel via supplied double adaptor - 18.2V @ 400W (compatible with all DC-DC and MPPT rated 25A+)
  • Split 2 × 200W into two separate MPPT chargers for dual-vehicle charging (with optional extra solar cable) 18.2V @ 200W each
  • Series connection to run at 36.5V @ 400W using optional series adaptor (sold separately)

WHATS IN THE BOX

  • 1 x 400W AllSpark Folding Solar Panel
  • 1 x AllSpark Grey Anderson - 2 into 1 double adaptor (Parallel connection)
  • 1 x 5m Grey Anderson to Anderson solar extension cable
  • 1 x padded carry bag

Optional Accessories sold Separately (click links below)

*in good solar conditions, using a quality MPPT or DCDC charger

Warranty

5 Year Allspark Warranty 

1 Year Warranty on bag

Features

  • Charge ONE VEHICLE @ 400w or TWO VEHICLES at the same time at 200W each - configure two lots of 200W using seperate cables
  • High efficiency shingle cells - 23% efficiency meaning more power for their size compared to other panel brands
  • Excellent temperature tolerance - outperforming other glass panels in high temperature conditions
  • Heavy duty carry bag - for protection and easy transport
  • 4 bypass diodes - for protection against cell damage
  • Water proof - IP68 for protection against rain and dust
  • Japanese made ETFE laminate - UV stable for 25 years
  • 5 Year Manufacturers Warranty

Specifications

SKU AS-400SPFOLD-LV AS-400SPFOLD-HV
 
Type Quad-fold portable Quad-fold portable
Maximum Power (Pmax) 400W 400W
Default Configuration Combined parallel
Series & Split also available
Combined series + parallel
All-Series & Split also available
Electrical Configuration
  Default

Parallel + Series

(with optional series adapter)

Default

Series + Series 

(with optional series adapter)

Open-Circuit Voltage (Voc) 21.5V 43.1V 43.1V 86.2V
Voltage at Pmax (Vmp) 18.2V 36.5V 36.5V 73V
Short-Circuit Current (Isc) 23.3A 11.62A 11.62A 5.81A
Current at Pmax (Imp) 21.98A 10.96A 10.96A 5.48A
Cell Efficiency 23.5% 23.5%
Maximum System Voltage 200V 200V
Output Power Tolerance ±3% ±3%
Temperature Coefficients
Power −0.38%/˚C
Voltage −0.36%/˚C
Current +0.07%/˚C +0.07%/˚C
Physical
Cell Type A Grade Shingle 210mm A Grade Shingle 210mm
No. of Cells 256 (4 × 17 × 4) 256 (4 × 17 × 4)
Closed Size (L×W×D mm) 900 × 590 × 90 900 × 590 × 90
Open Size (H×W×D mm) 2362 × 900 × 25 2362 × 900 × 25
Weight — Panel only 12.1kg 12.1kg
Weight — Total kit 14.5kg 14.5kg
IP Rating IP68
Operating Temperature −20˚C to +70˚C −20˚C to +70˚C
Output Connector AllSpark 50A Anderson
Warranty 5 Years 5 Years
SKUAS-400SPFOLD-HV
Configuration Options
Combined — Series + Parallel Double adaptor included
Combined — All in Series Purchase additional series adaptor
Split — 2 × 100W series + 2 × 100W series Purchase additional 5m cable
Electrical — Combined Series + Parallel
Maximum Power (Pmax) 400W
No. of MPPT Required 1
MPPT Min Input Volts 45V
MPPT Min Output Amps 30A
Open-Circuit Voltage (Voc) 43.1V
Voltage at Pmax (Vmp) 36.5V
Short-Circuit Current (Isc) 11.62A
Current at Pmax (Imp) 10.96A
Electrical — All in Series
Maximum Power (Pmax) 400W
No. of MPPT Required 1
MPPT Min Input Volts 100V
MPPT Min Output Amps 30A
Open-Circuit Voltage (Voc) 86.2V
Voltage at Pmax (Vmp) 73V
Short-Circuit Current (Isc) 5.81A
Current at Pmax (Imp) 5.48A
Electrical — Split (per 200W half)
Maximum Power (Pmax) 200W + 200W
No. of MPPT Required 2
MPPT Min Input Volts 45V
MPPT Min Output Amps 15A
Open-Circuit Voltage (Voc) 43.1V + 43.1V
Voltage at Pmax (Vmp) 36.5V + 36.5V
Short-Circuit Current (Isc) 5.81A + 5.81A
Current at Pmax (Imp) 5.48A + 5.48A
Common Electrical
Cell Efficiency 23.5%
Maximum System Voltage 200V
Output Power Tolerance ±3%
Temperature Coefficients
Power −0.38%/˚C
Voltage −0.36%/˚C
Current +0.07%/˚C
Physical
Cell Type A Grade Shingle 210mm
No. of Cells 256 (4 × 17 × 4)
Closed Size (L×W×D mm) 900 × 590 × 90
Unfolded Size (H×W×D mm) 2362 × 900 × 25
Weight — Panel only 12.1kg
Weight — Panel + 5m cable 13kg
Weight — Total with cable + bag 14.5kg
IP Rating IP68
Operating Temperature −20˚C to +70˚C
Output Connector AllSpark 50A Anderson
Warranty 5 Years

FAQS

Q: How do I decide between the High Voltage and Low Voltage models?

A: For most 12V setups, the Low Voltage model is the right choice. You only need the High Voltage model if one of these applies to you:

1. You are running a 24V or 48V system, or

2. You need to position the panel a long way from your vehicle (above 5m) and run a long extension lead.

The long-lead benefit is particularly useful for larger caravans and motorhomes, where you can be restricted on where you can park and sometimes have no choice but to park in the shade - the High Voltage model lets you set the panel up 5-15m away in a sunnier spot. (You cannot do this with the Low Voltage model without significantly increasing the cable size.)

Yes, the High Voltage model can absolutely be run on a 12V system - but it is not necessary unless one of the conditions above applies. A common misconception is that the High Voltage model produces more power. In the same conditions it does not, and it can actually produce less if there is even a little shade over part of a panel. This is because the Low Voltage model has its panels connected in parallel, so minor shading on one part of the panel won't drag down the rest of the array the way it does on the High Voltage model. For this reason the Low Voltage model is more shade tolerant.

The model that will suit your setup also depends on the solar controller you intend to use. For the High Voltage model, your solar controller (or DCDC with solar input) needs to accept a minimum input voltage of 45 volts. This value is sometimes listed on your controller's specifications as "Max. PV Open Circuit Voltage" or "Solar Input Voltage". If this value is below 45V, then the Low Voltage panel is the model you would select.

For the MPPT models we recommend, the Tracer 7810CPN MPPT and the Victron 100/30 can both handle the High Voltage panel. The RedArc BCDC range, however, only handles a maximum of 32V, so a Low Voltage model would be needed if paired with this DCDC. The Low Voltage model suits the vast majority of DCDC chargers on the market with MPPT built in - most have maximum solar inputs of around 28-32V, meaning the High Voltage model cannot be used and the Low Voltage model is the correct choice.

 

Q: Can I actually charge two vehicles at the same time?

A: Yes - the 400W Quad Fold allows you to send half the power to one vehicle, and half to the other. Connect one section to your 4WD's MPPT controller and the other to your caravan's controller simultaneously. You'll need a second 5m Anderson extension cable (sold separately) and simply unplug the supplied double adaptor to run them as two separate inputs.

 

Q: How many amps will the 400W Quad Fold Solar Panel produce?

A: In good solar conditions with a quality MPPT controller, expect up to 28A when running all four panels combined. Real-world output varies with sun angle, shade, and temperature, but the shingle cell design and -0.38%/°C temperature coefficient are engineered to deliver more consistent output throughout the day than standard cells, particularly in the Australian summer heat.

 

Q: Can I combine this panel with another panel into the same controller?

A: In almost every case, no. When connecting panels together into the same controller, the panels need to be within 1 volt of each other in order to avoid performance issues. This is because your solar controller will treat the panels as a single array, and will reduce all voltages to the lowest voltage panel. So even in full sun, in the middle of the day, your solar harvest will be significantly reduced.

Furthermore, you should never combine portable and fixed panels into the same controller, even if they are within 1 volt of each other. As, again, the controller views both the fixed and portable panels as a single solar array, and this whole array is limited by whatever panel is producing the lowest amount of voltage, so if a roof panel is shaded, or simply significantly reduced if the angle of the sun is such that roof panels are not producing efficiently (as they cannot be angled like a portable panel) your overall solar harvest will be significantly reduced (at best) or even zero (if your roof top panels are in full shade, despite your portable panels being in full sun and angled correctly towards the sun).

Short answer is = each solar array needs its own controller for the best charging performance and longevity of each array.

 

Q: WIll I get full wattage from my panel at all times?

A: The wattage on solar panels is measured in lab conditions on a light table which produces 1000 watts/m2 at 25oC (these are global standard testing conditions (STC)). The amount of power produced by your solar panel in real-life conditions will be dependent on the amount of solar radiation being received by the panel at any given time, the temperature, air quality, angle of sun etc.

You can check your location's solar radiation values online on a number of websites, one example is over here. In general terms, the amount of solar radiation you are receiving at any given time (as a ratio) is an approximation of how much power you should be receiving from your panel. For example, if the radiation is 750 watts/m2 (which is 3/4 of the light table at 1000watts/m2), then you potentially can receive approximately approximately 101.25W out of a 135W panel (3/4 x 135W) at that particular time of the day (assuming your angle to the sun is correct and enivornmental conditions are optimal, ie. there is no shade/cloud, no smoke/haze/pollution, temperature isn't too high (as solar output reduces at higher temperatures) etc). 

 

 

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