Vehicle Charging
Energy storage in electromobility can be used in vehicle charging systems, enabling more efficient and sustainable use of energy.
TFPowerPack is an advanced energy storage system developed by TFKable Group that supports sustainable development and energy transformation. With its modular design, versatile functionality and advanced technologies, TFPowerPack is the ideal solution for industry, infrastructure and commercial applications.
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The system allows for significant savings thanks to the Peak Shaving and Load Shifting functions.
TFPowerPack guarantees uninterrupted power supply thanks to the UPS, Back-up Power and Black Start functions, which minimizes the risk of losses resulting from network failures.
Integration with RES systems allows for effective energy management and reduction of CO₂ emissions.
The system eliminates voltage fluctuations, ensuring a steady and reliable power supply.
TFPowerPack is based on its own energy management system - EMS (Energy Management System), which allows for precise monitoring, analysis and optimization of energy consumption and storage in real time.
In TFPowerPack, the latest technological advancements are utilized to ensure maximum efficiency and safety:
Vehicle Charging
Energy storage in electromobility can be used in vehicle charging systems, enabling more efficient and sustainable use of energy.
Solar Energy Storage
Energy storage facilities enable the efficient use of energy from renewable sources (such as solar energy) by storing it during periods of excess production
Buildings and Infrastructure
Energy storage in buildings and infrastructure can manage energy consumption, provide emergency power and integrate with energy management systems and smart grids.
Traction Network and Charging Stations
Energy storage in public transport acts as a stabilizer of traction network parameters, limits peak power and recovers energy from braking electric vehicles. They also allow for integration with fast charging stations.
Renewable Energy Sources
Energy storage, in conjunction with renewable energy sources such as wind power, helps to efficiently store energy during periods of overproduction and use it when it is needed.
Public Infrastructure
Energy storage in public infrastructure enables surplus renewable energy production to be shifted to peak demand hours, optimizing energy consumption and reducing building operating costs.
Public Transport
Energy storage in transport stabilizes the traction voltage of the transport network, minimizing its fluctuations and enables the recovery of braking energy, which improves the efficiency of the supply network.
Industry
Energy storage systems in industry eliminate voltage sags, ensure grid stability and actively compensate for reactive power, increasing the reliability of power supply to production plants.
Integration with Renewable Energy Systems – Enables optimization of energy sources and provides full flexibility in resource management. Benefits:
UPS Mode – Allows the energy storage system to be used for emergency power supply to critical infrastructure and to protect production processes from voltage drops and outages. Benefits:
Load Balancing – Manages energy consumption by shifting loads from peak demand periods to off-peak hours, ensuring stable power supply without overloads.
Grid Stabilization – Provides functionality for stabilizing and balancing phase voltages and filtering harmonic distortions. Benefits:
Dual Voltage Standards:
Operational Flexibility – Microgrid and island mode operation allow adaptation to different operational environments. Benefits:
Energy Consumption Optimization Based on Tariffs – The system can analyze tariffs and energy usage, drawing power from the grid during the cheapest hours and feeding it back when prices are high, ensuring significant savings on electricity bills.
Optimization for Electric Vehicles – The energy storage system can work with a home charging station, adjusting vehicle charging based on tariffs and available energy. Benefits:
Compatibility with Other EMS and SCADA Systems – TFPowerPack operates on an in-house developed EMS (Energy Management System) created by a dedicated team of software engineers and developers, allowing for flexible expansion and security monitoring. The EMS can also be integrated with an external SCADA system or another EMS, enabling real-time monitoring and energy resource management while ensuring seamless integration with external infrastructure for maximum efficiency.
TFPowerPack complies with international safety and quality standards. It is equipped with advanced fire protection systems, access control, and operational monitoring. Comprehensive verification of all operational parameters ensures its reliability.
Complete technical and quality documentation includes:
A team of experienced engineers provides full support at every stage: from installation to IT support, monitoring, maintenance, and rapid issue resolution. Using advanced diagnostic tools and remote monitoring, we ensure immediate response to customer needs, guaranteeing uninterrupted operation of our energy storage systems.
Service Offerings:
TFPowerPack plays a key role in modern energy transformation by supporting renewable energy sources and enhancing energy efficiency. It enables the storage of surplus energy from solar panels and wind turbines, reducing dependence on fossil fuels and lowering CO₂ emissions. These systems contribute to grid stability, ensuring a reliable supply of clean energy for both businesses and households. Investing in our solutions supports sustainability by increasing self-consumption and minimizing energy losses.
Energy Storage Benefits for Sustainability
The goal of the transformation is to build a stable, low-emission energy system that is not only efficient but also resilient to climate and geopolitical changes. Energy storage plays a key role in this transition by enabling effective management of renewable energy, enhancing energy security, and optimizing costs for both businesses and households.
The Role of Energy Storage in the Energy Transition
TFPowerPack’s innovation and commitment to sustainability make it a highly valued solution in the energy sector. Its outstanding energy efficiency, advanced technology, and significant impact on CO₂ reduction have earned it prestigious awards, including:
An important piece of equipment for our energy storage facilities are fire safety systems that prevent secondary fires and uncontrolled temperature increases. They have all the necessary certificates: CNBOP or VdS, guaranteeing their effectiveness and safety. Before the container is put into use, each of them is subjected to a tightness test, which allows checking the efficiency of the fire protection system.
A key element of the energy storage, it connects the batteries to the external network, ensuring reliability and long service life. The systems used are based on proven technology, guaranteeing efficiency and low investment and operating costs. The implemented converter systems allow for a wide range of offered functionalities, including such unique ones as micro-network operation or the ability to work in two voltage standards: AC/DC and DC/DC.
Heating, ventilation, air conditioning - ensures optimal working conditions for all components of the energy storage, which affects its efficiency and durability. HVAC systems are carefully designed, ensuring high quality and redundancy in the event of a failure and are linked by a superior management program that provides a wide range of work settings depending on current needs and conditions.
It acts as a safeguard for the energy storage, separating it from the external network and providing additional protection. In the event of a failure or a sudden increase in voltage in the network, the transformer plays a key role in ensuring the safety of the entire system.
In our solutions, we carefully select batteries, including various material groups such as: LFP (lithium iron phosphate), NMC (nickel manganese cadmium) and LTO (lithium titanium). We focus on quality and safety, which is why each battery used is provided with appropriate certificates and certificates issued by accredited laboratories such as TUV or UL. The main parameters describing the battery, apart from its capacity or charge/discharge currents, is its durability expressed in the number of cycles. Depending on the type of battery, their lifespan can range from 2500 cycles in the case of NMC batteries, 6000 cycles for LFP, up to about 20000 cycles for LTO batteries.
TFPowerPack systems are characterized by, among other things, mobility, which is why the vast majority of housings are specially adapted sea containers. Designed by engineers, thermally insulated, anti-corrosion protected and equipped with lightning insulation, they ensure year-round operation in all weather conditions.
The test facility is Poland’s only advanced, multifunctional engineering laboratory dedicated to testing large-scale energy storage systems. Designed by our engineers, it enables precise testing, optimization of various energy storage solutions, and seamless integration with diverse components such as photovoltaic systems and conventional solutions, including diesel generators.
Testing Capabilities:
An advanced tool for optimizing energy flow, system monitoring, and maximizing the efficiency of energy storage, PV farms, and EV stations. Leveraging modern technologies and intelligent algorithms, EMS enables effective management of energy production, consumption, and storage.
The information contained in this document, including the tables and drawings, are provided for illustrative purposes only and not a commercial offer; nor may it constitute the basis for pursuing any claim against TELE-FONIKA Kable SA. The suitability of any product including properties, should be made by a qualified person; having already gained the appropriate permissions and documentation, to ensure compliance with any applicable law or regulation.