WEIGHT
5.2X lighter than 6 x 100Ah lead-acid batteries
CONCEPTION
100%
Canadian
PROFITABILITY
2.6X more economical (15-year actual cost of ownership)
KEY FEATURES
1 COMMUNICATION PORT
RJ45 (compatible with Volthium accessories)
DISCHARGE CURRENT
Continuous 250 A (45min)
Continuous 150 A (after 45min)
Peak 300 A (3S)
SIZE
520 X 268 X 244 mm
20.5 X 10.55 X 9.6 in
WEIGHT
73 LBS
33.11 KG
PROTECTION
IP55 (splash resistant)
BMS
Suitable for a 3000 W inverter
10 YEARS
LIMITED
WARRANTY
COLD CHARGING PROTECTION
DESCRIPTION
The 12 V 300 Ah battery from Volthium is perfectly suited for your 3000 W inverter. Thanks to its high-performance BMS, you will be able to manage a discharge current of 250 A continuously, which makes it perfect for use with 3000 W inverters since they consume an average of 240A on a good lithium battery. Note that a 3000W inverter will consume a different current depending on the quality of the lithium battery, or on the type of battery (e.g. acid).
Never has a lithium battery given such a staggering performance as those offered by our range of products. Profitability is assured for at least 15 years, and certainly more!
This battery has a brand new subwoofer that is exclusive to Volthium. It is equipped with 2x RJ45 ports, allowing by adding our Smart Bridge to your system, to communicate with all communication environments on the market such as Victron. Not only is this LiFePO4 battery vibration-resistant, but it has a higher discharge range than the competition. This battery can be discharged down to -25 degrees, instead of -20 degrees for competition. By opting for the self-heating version, you increase the temperature range of use, which can be recharged down to -40 degrees. This innovation is possible due to the fact that the high-quality cells in Volthium batteries come from the automotive industry.
Access to the BMS configuration is easily accessible via a communication port. This allows for the addition of features and offers the possibility of having a custom configuration.
Our BMS technology, powered by TexasInstrument, is specifically designed for the harshness of the Canadian environment. Paired with our Grade A+ Cells (a supplier famous for its contracts with LG Chem, Audi, BMW, and Tesla), we ensure that you have the best battery in North America in your hands.
Our lithium batteries give you a shorter charging time and an energy capacity that doesn’t run out of steam over the years.
At Volthium, our mission is to gather the best parts available from each industry in order to offer the best batteries! Cartridges, BMS, assembly engineering, everything is there.
INCLUDED
12 V 300 Ah battery
Lithium batteries are one of the most common energy storage technologies today, widely used in a variety of applications, from electric and recreational cars (RVs), water vehicles, solar storage banks, medical and industrial applications. The basic principle of their operation is the mobility of lithium ions between the two electrodes: the anode (negative electrode) and the cathode (positive electrode), via an electrolyte.
- Composition: Lithium batteries are typically made up of three main components: the anode, cathode, and electrolyte. The anode is usually composed of carbon, most often in the form of graphite. The cathode of LifePO4 batteries such as the ones we manufacture is made of lithium iron phosphate, iron phosphate promotes a strong molecular bond, which withstands extreme load conditions, extends service life, and maintains chemical integrity over many cycles. For other lithium batteries, the cathode is usually composed of a lithium metal compound, such as lithium cobalt, lithiated manganese, lithium nickel, or a mixture of these elements. The electrolyte is a chemical substance that allows lithium ions to pass between the anode and the cathode. At Volthium, we believe that LifePO4 batteries are the best alternative for different reasons.
- During charging: When the battery is charged, i.e. when the current is applied, the lithium ions move from the cathode to the anode via the electrolyte. During this process, lithium ions are “inserted” into the anode structure, a process called intercalation.
- During discharge: When the battery is used to power a device, i.e., when it is discharged, lithium ions move from the anode to the cathode, a process that releases energy. The mobility of lithium ions from the anode to the cathode is what generates the energy needed to power the device.
- Capacity and durability: The capacity of a lithium battery is determined by the amount of lithium it can store, which in turn determines how much energy it can provide. However, it is normal for the capacity of a battery to decrease over time, a phenomenon known as battery degradation. This is due to several factors, including temperature, overcharging and discharging, and general battery usage. However, thanks to the quality of our batteries and in particular our grade A+ cells, our batteries are guaranteed for 10 years and offer a lifespan of about 15 years.
LiFePO4 batteries, known for their lithium iron phosphate composition, are distinguished by their durability and superior energy capacity, especially in demanding applications such as recreational vehicles (RVs), trailers, and cottages. In Canada, where the search for reliable and sustainable energy solutions is constant, lithium LiFePO4 batteries are increasingly preferred over traditional lead-acid batteries, thanks to their long lifespan that can reach up to 3000 cycles at 100% discharge without significantly damaging the remaining capacity of the battery.
Volthium offers a range of 12V and 200Ah LiFePO4 batteries, equipped with grade A cells guaranteeing optimal efficiency. These batteries offer a shorter charging time and greater energy capacity, making the installation of a solar panel for energy storage even more cost-effective. Their high charge rate and stable voltage allow any electrical equipment to be efficiently powered, without the risk of overheating, thanks to the intrinsically safe lithium iron phosphate technology.
There are several types of lithium batteries, which are usually differentiated by the material used for the cathode (the positive electrode). The most common types are lithium cobalt (LiCoO2), lithium manganese (LiMn2O4), lithium nickel manganese cobalt (NMC), lithium nickel cobalt aluminum (NCA), and lithium iron phosphate (LiFePO4 or LFP) batteries. Volthium batteries are Iron Phosphate batteries known as LiFePO4 and LFP which are a kind of lithium-ion battery. They differ from other types of lithium batteries in their use of iron-phosphate for the cathode, rather than cobalt or nickel. They are said to have the following qualities:
- Safety and stability: LFP batteries are known for their safety and superior thermal stability. Compared to other types of lithium batteries, they are less likely to overheat or catch fire if malfunctioned or misused. This increased safety is due to the intrinsic stability of iron phosphate.
- Durability and life cycle: They also have a long service life and can maintain a high load capacity even after many charge and discharge cycles. They have a low self-discharge rate, which means they can hold their charge for long periods of time without use. Our products offer more than 6000 cycles and have a service life of about 15 years.
- Environmental performance: In comparison, LFP batteries have a potentially lower environmental impact. Iron is more abundant and less toxic than cobalt and nickel, and iron mining has a lower environmental impact. In addition, LFP batteries are easier to recycle than other types of lithium batteries.
Reducing our dependence on fossil fuels, improving air quality, managing e-waste more responsibly ; Lithium batteries have had a significant positive impact on the environment, playing a critical role in the transition to a cleaner and more sustainable society. Their increasing adoption in various areas, such as electric vehicles and renewable energy storage, has helped to significantly reduce greenhouse gas emissions from transportation and power generation.
Lithium battery recycling has also become more efficient, allowing valuable materials such as lithium, cobalt, and nickel to be recovered and reused in new batteries or other applications.
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