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HomeOff Grid & Solar PV SERIES (HYBRID & OFF GRID) 15KWH
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PV SERIES (HYBRID & OFF GRID) 15KWH

€ 6,777.14 € 5,760.57

Solar Photovoltaic Battery – Battery for Photovoltaic System

DCS PV Series (Hybrid and Off-Grid) 15kWh LiFePO4 battery pack

  • Supercharge at up to 200Amps / 10.2kW
  • 48Amp Active Cell Management System
  • LifePO4 cylindrical long-life cell Chemistry
  • IP-67 Sealed Design (Waterproof & Dustproof)
  • Operating temperature range from -10c to 65c
  • 10 Year Unlimited Cycle Warranty
  • Wall mountable compact design
  • Serviceable onsite design

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Category: Off Grid & Solar
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Description

Description

INTRODUCING THE MOST ADVANCED 15KWH 48V LIFEPO4 LITHIUM BATTERY PACK AVAILABLE ON THE EUROPEAN MARKET.

The DCS 15KWh PV Series battery packs can be used for both hybrid and off-grid systems. They can be fast-charged at up to 200Amps / 10.2kW and can support continuous discharge at up to 250Amps / 12.8kW.

All DCS battery packs are installed with our Active Cell Management system.

Each cell pack and every component is easily interchangeable onsite for easy maintenance if ever required. If extra power is needed, up to 10 packs can be connected in parallel without any additional hardware. All DCS batteries are fitted with LifePO4 cylindrical long-life cells.

The external case is an IP-67 fully sealed design (waterproof & dustproof) and is suitable for salty coastal and remote dusty outback locations. The design is compact and wall-mountable. The wall bracket is firstly fastened to the wall structure, and then the pack can be lifted from the lifting eyelets on top of the pack or, for a tight location, can be forklifted from the underside.

The 15kWh battery packs plug and play with every 48V system on the market, such as Victron, Selectronic, SMA, Outback, SolaX, Sungrow, Goodwe, and many more. They are backed by an unlimited cycle warranty that guarantees the battery pack to be above 80% capacity at the 10-year mark.

Technical Specifications: -
Design Voltage 48V
Nominal Voltage 51.2V
Nominal Capacity 294Ah
Nominal Energy 15053Wh
Usable Storage 15kWh
Case Dimensions (L x W x H) 1271mm x 806mm x 205mm
Weight 190Kgs
Continuous Charge/Discharge Current 200A(10.24Kw) / 250A (12.8Kw)
Cycling Voltage Range 50.0V ~ 55.0V
Bulk Charge Voltage 55.0V
Float Voltage 54.0V
LVD (Low Voltage Disconnect) 50.0V
Nominal Discharge Current 1C
Nominal Charge Current 1C
Peak Power (25C) < 10 Secs 20.48Kw
Faradic Charge Efficiency (25C) 99%
Battery Roundtrip Efficiency(0.3C, 25C) 98%
Rebuildable Design Expected Services Life > 20 Years
Cycle Life (100% DoD @ 25C) >5000 Cycles
Available Operating Temperature -20 ~ 65C
Optimal Operating Temperature 0 - 45C
Longterm Storage Temperature 0 - 30C
Cooling Design Natural Convection
Ingress Protection Rating ip67
Interface Internal BMS BMS (RS485)
Certifications UN 38.3, UL 1642, IEC 62133 & 62619, CE

DCS High Performance 2C Charge & Discharge Curves

Charge Curve

DCS High Performance 2C Cylindrical Cells

Discharge Curves

Voltage (V)

Capacity (%)

Voltage (V)

Capacity (%)

DCS Bluetooth Technology powered by DCS LFP, this APP is only for DCS LFP batteries which is based on BLE 4.0 technology.
DOWNLOAD APP (DCS LFP)

This App provides comprehensive monitoring for DCS LFP batteries, including:

  • SOC%
  • Time Remaining
  • Battery Pack Voltage, Power & Current
  • Battery Management MOSFET Temperature
  • Individual Cell Status with balancing indicators.
  • Connectivity distance up to 10 meters.

Available on Android & Apple Devices

GET IT ON

Google Play

Available on the

App Store

Real time monitoring of our headquarters in Belgium

Our entire HQ including offices, workshop and warehouses are powered by our DCS PV series batteries and Victron inverting;

– 3 x 15kW Quattro Battery Inverters
– 2 x Goodwe 8.5kW PV inverters
– 3 x Fronius 8.2kw PV inverters
– 1 x 250V/100A MPPT
– 65kW of Solar Power
– 2 x 180kwh DCS PV series storage cabinets

”TEXT”

Harness the Power of the Sun with Our High-Performance PV Panel Battery. These Photovoltaic Batteries for PV Panels Offer Long-Term Energy Solutions.

Sunlight is the best gift by nature it generates a sufficient amount of energy to use in our daily life. Solar is the most common type of renewable energy; however, it isn’t available all day. A Photovoltaic Battery is the best storage solution. Among all types of batteries, lithium ion batteries are best for solar power storage.

Lithium Ion Photovoltaic Battery for Renewable Energy

photovoltaic batteryThe world is in dire need of sustainable and renewable energy sources, and sunlight has emerged as a major contender. Whilst solar energy is widely used, its availability is limited to the duration of sunlight. This is where photovoltaic batteries come into play. Lithium ion photovoltaic battery packs are crucial components for energy storage to use it when sunlight isn’t available.

Efficiency of Lithium Ion Photovoltaic Battery

Amongst the various types of batteries, lithium ion cells have proven to be the most efficient for storing solar power. We will explore why lithium ion photovoltaic battery is the future of renewable energy and how it can revolutionise the way we harness the power of the sun.

Understanding the Gift of Sunlight as Renewable Energy and use of Photovoltaic Energy Storage Battery

Sunlight, a precious gift from nature, holds immense potential as a renewable energy source. Harnessing this energy efficiently is key, and that’s where photovoltaic batteries come in. These batteries enable us to capture and store solar energy, ensuring its availability even during non-sunny periods.

By utilising lithium ion cells, we can maximise the efficiency of solar power storage. The use of sunlight with photovoltaic batteries can revolutionise our approach to renewable energy, leading us towards a more sustainable and greener future.

The Role and Importance of Solar Energy Storage Solutions

Solar energy storage solutions play a vital role in the efficient utilisation of renewable energy. These storage systems are essential for ensuring a constant supply of electricity even during non-sunny periods. They enable us to store excess solar power generated during the day and use it during peak demand or when sunlight is not available.

This ensures uninterrupted power supply and reduces dependency on traditional grid systems. The importance of solar energy storage solutions cannot be overstated, as they contribute to a more sustainable and reliable energy future.

Diving into Lithium-Ion Cells as Best Battery for Photovoltaic System

battery for photovoltaic systemLithium-ion cells have emerged as the leading battery for photovoltaic system, and for good reason. These batteries offer the best storage solution for solar power, providing high energy density, long cycle life, and efficient performance. Their lightweight design and compact size make them ideal for integration into solar panel systems, maximising the use of available space.

With their ability to handle high charge and discharge rates, lithium-ion cells ensure optimal energy utilisation and storage. When it comes to harnessing the power of the sun, diving into lithium-ion cells is the key to unlocking the full potential of renewable energy.

Lead Acid Batteries Are Outdated and Waste of Money for Solar Panel System

Lead-acid batteries have been the traditional choice for solar panel systems, but they are now outdated and not the most cost-effective option. These batteries have a limited cycle life and a low energy density, which means they need to be replaced frequently and take up more space. Additionally, lead-acid batteries require regular maintenance and can be prone to leakage and hazardous materials.

Invest in Feature Rich Lithium Ion Battery for Photovoltaic System

Investing in lithium-ion battery for photovoltaic system provides a more efficient and reliable solution for solar energy storage. These feature rich solar batteries are designed for higher energy density, longer cycle life, and require minimal maintenance.

These features makes them a better choice for your solar panel system. Don’t waste your money on outdated lead-acid batteries when you can embrace the future of renewable energy with lithium-ion technology.

LiFePO4 is Ideal for Due to Highest Battery Capacity Storage

LiFePO4 (Lithium Iron Phosphate) batteries have emerged as the ideal choice for photovoltaic systems due to their exceptional battery capacity storage. These batteries offer the highest energy density and can store a significant amount of solar power.

With LiFePO4 batteries, you can maximise the utilisation of solar energy and ensure a reliable power supply even during non-sunny periods. Their high capacity storage capability makes them the perfect solution for efficient solar energy storage, making them a vital component in the future of renewable energy. Embrace the potential of LiFePO4 batteries and revolutionise your solar panel system today.

Lithium Ion Battery Photovoltaic System is Efficient for Excess Energy Storage

battery photovoltaic systemDCS lithium ion battery photovoltaic system is highly efficient when it comes to storing excess energy. These systems have the ability to capture and store any surplus energy generated by solar panels during sunny periods, ensuring that it is not wasted.

Best Battery Photovoltaic System to Maximise Solar Storage

This excess energy can then be used during times when sunlight is limited or during peak energy demand, making the overall system more efficient and reducing reliance on traditional energy sources. With their high energy density and long cycle life, lithium ion batteries for photovoltaic systems are the ideal solution for storing and utilising excess energy.

Reduce Your Energy Bills with DCS Lithium Power Battery Photovoltaic System

Reduce your energy bills and embrace a greener future with the DCS Lithium Battery Photovoltaic System. This advanced system harnesses the power of solar energy and stores it efficiently, allowing you to significantly reduce your reliance on traditional energy sources.

With DCS’s cutting-edge technology, you can take control of your energy usage and enjoy lower bills while contributing to a more sustainable planet. Don’t miss out on this opportunity to save money and make a positive impact – invest in the DCS Lithium Battery for Photovoltaic System today.

DCS Offer 12v 150ah Battery Storage System Has IP 67 Rating

The DCS Lithium Battery Storage System is an exceptional choice for storing your solar power. With a 12v 150ah capacity, it provides reliable and efficient energy storage for your home or business. What sets this system apart is its IP 67 rating, ensuring that it is dust-tight and can withstand immersion in up to 1 metre of water for up to 30 minutes.

This durability makes it ideal for outdoor installations and ensures that your battery will continue to perform optimally, even in harsh weather conditions. Choose the DCS 12v 150ah Battery Storage System for a reliable and long-lasting solution for your solar energy storage needs.

DCS Solar Battery Storage Systems are Optimised for Ultra High Performance

DCS Solar Battery Storage Systems are designed with one goal in mind – to provide ultra-high performance for your solar energy needs. These systems are optimised to deliver maximum efficiency and reliability, ensuring that you get the most out of your solar power investment.

With advanced technology and innovative design, DCS Solar Battery Storage Systems offer superior energy storage capabilities, allowing you to enjoy uninterrupted power supply even during non-sunny periods.

Whether for residential or commercial use, DCS Solar Battery Storage Systems are the ultimate choice for those seeking top-notch performance and exceptional reliability in their solar energy systems.

DCS Lithium Batteries for Solar Storage Offer 100% DOD and 2500 Life Cycles

DCS Lithium Batteries for Solar Storage are a game-changer in the world of renewable energy. These batteries offer an impressive 100% Depth of Discharge (DOD), meaning you can fully utilise the stored energy without any wastage.

Additionally, with a lifespan of 2500 life cycles, these batteries provide long-lasting and reliable energy storage for your solar system. Say goodbye to limited energy storage and embrace the efficiency and durability of DCS Lithium Batteries for Solar Storage. It’s time to take control of your energy needs and make the most of your solar power investment.

Lithium Battery Can Store Energy To meet Your Night Electricity Demands

With a lithium battery, you can meet your night electricity demands and enjoy uninterrupted power supply. These batteries have the ability to store excess solar energy generated during the day, allowing you to use it when sunlight is not available. By harnessing the power of lithium-ion cells, you can ensure a reliable and sustainable energy source, even during non-sunny periods. Say goodbye to relying on traditional energy sources and embrace the efficiency and convenience of a lithium battery for your night electricity needs. Experience the future of renewable energy today!

On-Grid Photovoltaic Cell for Backup Power to Power Cuts

When power cuts strike, having a reliable backup power source is crucial. An on-grid photovoltaic power battery system can provide the solution. By storing excess solar energy during the day, this system ensures you have backup power when you need it most.

With an on-grid system, you can remain connected to the electrical grid and enjoy uninterrupted power supply during power outages. Say goodbye to the inconvenience and frustration of power cuts and embrace the reliability and convenience of an on-grid photovoltaic energy battery system. Take control of your power supply and never be left in the dark again.

DCS Photovoltaic Home Batteries Can be Controlled with DCS LFP Mobile App

DCS Photovoltaic Home Batteries are not only reliable and efficient energy storage solutions, but they also offer the convenience of being controlled through the DCS LFP Mobile App. With this app, you can easily monitor and manage your photovoltaic home battery system right from your smartphone or tablet.

The DCS LFP Mobile App provides you with real-time information about the state of charge, battery voltage, power, and current supply of your battery system. You can also check the status of individual battery cells to ensure optimal performance. This level of control and monitoring allows you to make informed decisions about your energy usage and maximise the efficiency of your solar power system.

Additionally, the DCS photovoltaic home batteries are equipped with a high-quality Battery Management System (BMS) that offers protection against power surges and under-voltage situations, increasing the overall lifespan of your battery. With the DCS LFP Mobile App and advanced BMS technology, you can have peace of mind knowing that your photovoltaic home battery system is always performing at its best.

Take advantage of the convenience and control offered by the DCS LFP Mobile App and revolutionise your solar power experience. Embrace the future of renewable energy with DCS Photovoltaic Home Batteries and experience a new level of efficiency and convenience in managing your energy storage system.

PRODUCT RANGE
DEEP CYCLE BATTERIES
DUAL BATTERY SYSTEMS
MARINE BATTERIES
CARAVAN & MOTORHOME
LITHIUM BATTERIES
LITHIUM GOLF CART BATTERIES
Lithium Car Battery
lithium trolling motor battery
AGM LEAD ACID BATTERY
LITHIUM STARTER BATTERY
OFF GRID BATTERIES
12V BATTERY PACKS
SOLAR BATTERIES
BOAT BATTERIES
12V LAWN MOWER BATTERY
LITHIUM MOTORCYCLE BATTERY
lithium polymer battery
12 volt power supply
24v battery pack
OTHER PRODUCTS
DCS 12V 180AH
DCS 24V 10AH
DCS 12V 150AH
DCS 12V 100AH
DCS 12V 80AH EXTREME
DCS 12V 140AH
DCS 12V 120AH SUPER SLIM LINE
400ah lithium battery
12v 50ah battery
solar battery 12v 250ah
12v 20ah battery
12v 80ah battery
12v 10ah battery
12v 75ah battery
12v 35ah deep cycle battery
DCS 24V 120AH
DCS 12V 110AH
DCS 12V 50AH
DCS 12V 75AH
DCS 12V 200AH SLIM LINE
DCS 12V 150AH
DCS 12V 150AH IP-67
Photovoltaic Battery
12 volt 24ah battery
12v 500ah lithium ion battery
12v 300ah lithium ion battery
12v 70ah battery
12v 120ah battery
130ah agm battery
105ah agm battery
60ah lithium battery
12v 90ah battery

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FAQ

FAQ

Cell Safety Info - Why LiFePO4 (LFP)?

Lithium Ferrophosphate (LFP) is a flame retardant, stable, safe and proven cell chemistry that has a very good energy density around 325 Wh/L. This cell chemistry can be engineered for various applications by adjusting the ratio of elements to provide high performance characteristics. E.g. the DCS marine battery range runs 2C cells, which means our little 75Ah battery will discharge comfortably at 75Ah x 2C = 150A. The DCS 80Ah Extreme runs 10C cells which means the 80A can comfortably discharge at 80Ah x 10C = 800A but is of course limited to lower currents due the the Battery Management System.

LFP also has very good cycling durability between 2,000 ~ 12,000 cycles can be achieved depending on how well the cells are managed, and the lowest rate of capacity loss (aka greater calendar-life) compared to other lithium cell chemistries.

Why You Cannot Use A Vsr Between Two Different Batteries Capacities & Chemistries?

Battery cells are simply a bunch of resistors with the ability to store energy. A 100Ah battery pack has a different resistance characteristic compared to a 50Ah battery pack, that theoretical difference in resistance is 2:1. So if you connect a 100Ah battery in parallel to a 50Ah battery there is no way for these two batteries to equalise and therefore you can’t charge them correctly. So for example connecting a 60Ah calcium starting battery to a 120Ah AGM via a VSR (Voltage Sensing Relay) you cannot charge both batteries correctly and from that day onwards you are prematurely destroying both battery packs. Same theory applies with lithium’s it’s still a battery pack.

What’s the solution? A DC-DC charger, you now have a permanent point of isolation (meaning that both batteries are never connected to each other in parallel). The DC-DC charger takes the surplus power from battery A (engine) and chargers battery B (aux/house). This device now allows any battery capacity and or chemistry to be used.

What If Both Batteries Are The Same, Can I Run A Vsr Between Exactly The Same Two Batteries?

Yes you can, but lithium’s have a different voltage curve, so you would still need to use a programmable VSR to dial them in correctly. You would also need to ensure the batteries are programmed to never exceed a 10%SOC variance, any larger and you risk damaging the BMS's. These devices also draw a lot of power when engaged to so it’s best to run the two batteries in permanent parallel and run a load disconnect instead of a VSR.

The Advantages Of The Lithium Battery Cell Chemistry

Lithium battery cells have a super low resistance so are very easy to charge and very efficient. This level of efficiency means you can charge them at very high C rates. For example if you look at the charge rate of a 100Ah AGM battery the recommended charging current will be around 25A, which is a 0.25C charge rate. If you consider the DCS 12V 100Ah Lithium battery it can be charged at up to 70A which is a 0.70C charge rate. This means you no longer need to consider DC-DC chargers as you can connect our batteries directly to high power charging devices such as suitable alternators, or large buck boosters. For example our popular dual 90Ah battery system for boats and 4WD vehicles, can be connected to alternators up to 160A.

Why Can DCS Batteries Be Connected In Parallel Without Any External Communication System?

Because our batteries are internally voltage regulated and because our BMS has such a high sustainable peak discharge current they will do an amazing job of equalising very quickly.

Configuring Battery Systems Correctly in Parallel

When expanding battery packs in parallel to achieve larger capacity battery banks, does not mean that the charging and discharging capabilities are simply added together. For Example;

Considering 2 x DCS 12V 75Ah batteries connected in parallel, to make a 12V 150Ah battery bank. These batteries have a recommended charging current of 50A. So that would be 50A + 50A = 100A with two batteries in parallel. However you always have to work on a 20% safety margin for parallel connections, especially as batteries age over time. So it would be 100A less 20% = 80A. So it would be safe to configure chargers to a maximum of 80A.

The same 75Ah batteries have a maximum continuous discharging power output of 150A. So it’s 150A + 150A = 300A less 20% = 240A. 240A x 12V = 2.9kW. So for example these two batteries would be suitable to support a 3000W inverter.

Considering 2 x DCS 12V 180Ah batteries connected in parallel. Maximum charging current is 60A + 60A = 120A less 20% = 96A. It would be safe to configure chargers at a maximum of 96A.

The same 180Ah batteries have a maximum continuous discharging power output of 180A. So it’s 180A + 180A = 360A less 20% = 288A. 288A x 12V = 3.5kW. So for example these two 180Ah batteries would be able to support a 3500W inverter.

The same formula applies for 3 or more batteries connected in parallel. In the case of our 180Ah batteries it would be 60A + 60A + 60A = 180A less 20% = 144A for maximum safe charging. 180A + 180A + 180A = 540A less 20% = 432A for maximum continuous discharge. 432A x 12V = 5.2kW. So these three batteries could support a 5000W inverter.

What Happens If I Fully Discharge My Battery To Empty?

The BMS will emergency open circuit the battery terminals to protect the cells. This means there is no longer any resistance in the system. The BMS needs a 12V supply with at least 1A of current to release and wakeup from a cell emergency protection state.

Most mains chargers with a lithium profile will do a slow recovery charge as will most solar regulators. Some chargers on the market today that are advertised as ‘lithium’ compatible still don’t have the firmware to do a slow recovery charge to release BMS’s. If you have a charger that will not wakeup the BMS, easiest way to wake it up is to connect a unregulated solar panel directly to the battery terminals, ensure all loads are disconnected before you do this. Having said that every system should have a suitable low cut off voltage to shutdown loads/accessories so that the batteries are not fully drained.

"Batteries cannot be left flat/empty, if the low voltage cutoff is triggered the battery pack should be fully charged as soon as possible. If access to a suitable charger is not possible, disconnect all loads from the battery terminals. The warranty will be void if the battery pack has been left in a low voltage cutoff state for longer than 14 days."

Most important thing is to isolate everything from the battery terminals, as cables/loads connected to the terminals causes more power drain as the FET gates have to remain closed to cull the accessory standby loads connected to the battery pack + offset BMS standby power consumption.

Battery Monitor Settings

Use the Following Settings:

Charged voltage 14.0V
Tail current 4%
Charged detection time 1min
Peukert 1.05
Charge efficiency 98%
Current threshold 0.1A
C rates: refer to the battery pack capacity

What Is The Best State/charge To Store These Batteries ?

Fully charge to 100% isolate everything from the terminals and leave for max 3 months and then cycle (fully discharge and fully charge) and leave again for 3 months etc…. Minimum 4 cycles per year to not effect the cells capacity.

What Soc Do Modern Smart Alternators Typically Charge Batteries To?

The reason many factory batteries fall over after 9/12 months is because modern/smart alternators typically drop the alternators voltage output to 13.5/13.6V. This voltage is not high enough to charge wet/calcium/lead acid batteries so from the getgo they are destined to fail prematurely. They are typically under charged to around ~80%SOC at these voltages.

So what happens when DCS Hybrid batteries are connected to smart alternators? Exactly the same thing they get charged to around the same 80%SOC. However because LFP has no memory effect that's perfectly fine. By only charging to 80% you are further improving the service life of our batteries. It's no not necessary to charge our batteries over 80%SOC. The only advantage is that you give the BMS a chance to detect full charge voltage and calibrate the SOC readout. So try to plug into mains once a week to fully charge your batteries, especially if your not running any fixed solar supply.

Recommended Charger Settings For Dcs 12v Batteries

Bulk: 14.4V
Float: 13.5V

SOC% Out - How to Reset?

When the battery pack is discharged down to 11.50V the BMS resets to 0%SOC and now is placed in a relearning state - the pack must be fully charged continuously without stopping to calibrate again. Charge it on a mains charger to 14.60V.

Depending on the usage pattern, best to fully cycle the batteries once every 3 months to give the cells a refresh. To fully cycle a 12V pack discharge to 11.50V and charge to 14.60V.

Warranty

Warranty

PV SERIES (HYBRID & OFF GRID)

– 10 Years Unlimited Cycle warranty
– Compact and light weight
– Ground shattering performance
– Advanced battery management system controlling each cell individually
– Long life cylinderical LiFePO4 cell technology

Data Sheet

Data Sheet

Download Data Sheet

Diagram

Diagram

Deep Cycle Systems Pty Ltd is a battery technology company with its head office and warehouse in Belgium and branches in the United Kingdom, Germany, Austria, France, Spain, Netherlands, Switzerland, Italy, and Ireland.

Our Products
  • lithium lifepo4 LiFePO4 12v 180ah Lithium Battery € 1,370.00
  • LiFePO4 Battery 12v 200ah LiFePO4 12V 200AH SLIMLINE LITHIUM BATTERY € 1,680.00
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