Pytes V5°α LiFePO4 home storage 100Ah, 48V - 5.12kWh, 100A BMS, new model with heater V5°α | PY000160

✅ new generation | ✅ long service life | ✅ open for large systems | ✅ powerful | ✅ integrated heating


Varianten-ID 97127

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Weight , Versand durch Spedition, frei Bordsteinkante

Transportzeit 2-3 Werktage**

Add suitable accessories

Pytes V5°α lithium home storage system 48V - 5.12kWh, modularly expandable

New model with 100A BMS and integrated heating | Power connection: Amphenol SurLok Plus 8.0 mm


Differences between the V5° / V5°α pyte storage systems

The only difference between the two battery storage systems is their battery connections. The different battery connections give you the opportunity to reduce the overall costs of your home storage system.

 

Power connection for the V5° Pytess storage system

PHOENIX M6 Bolt battery connections are available for the Pytess V5° storage system. This means that cables with tubular cable lugs (ring lugs) can be connected here, which are considerably cheaper to purchase than the cables with Ampenol connectors. They are not included in the scope of delivery, but allow you to save money in the end.

 

Power connection for the V5°α phytesspeicher

The V5°α phyto storage system is equipped with Amphenol SurLok Plus 8.0 mm battery connectors. Here you have to use the relatively expensive battery connection cables with Amphenol connectors.


Introducing:

The Pytes V5°α 48V lithium home storage battery with great new features. Pytes is known for safe, well-designed and powerful LFP batteries, specially developed for today's demands on a home storage battery and ensure a long service life even with daily deep discharges. This is underlined by a 10-year manufacturer's warranty for the V5°α storage units.


New features

Higher charging / discharging current

The new battery management system now allows continuous charging and discharging currents of up to 100A, as well as peak charging and discharging currents of 120A for 3 minutes and 180A for 15 seconds. This means that even large consumers can be reliably supplied with energy and the storage capacity can be reduced in relation to the inverter output.


Integrated heating

The new V5°α storage tank is equipped with an integrated heating mat, which enables the storage tank to be charged at temperatures below 0°C. If the storage tank has an internal temperature below 0°C, the charging current is initially used to heat the cells via the integrated heater. When a certain cell temperature above 0°C is reached, the heating switches off and the charging current enters the storage tank unhindered. Where other storage tanks cannot be charged despite a high solar yield because the temperature is too low, the Pytes V5° with its integrated heater really comes into its own.


Greater scalability, open for large systems

Up to 16 of these storage units can be connected in parallel to form a group, thus achieving a capacity of 81.92kWh. Up to 6 groups can be combined via an optionally available hub, which corresponds to a total capacity of 491.52kWh. The system can grow with your requirements.


Communication / Smart

In addition to the familiar interfaces, the new V5°α storage system has a connection for an optionally available W-Lan stick. This can be used to establish a connection with an existing network. This enables remote monitoring and remote maintenance of the storage units via the network. If several storage units are connected in parallel, one W-Lan stick per group is sufficient.


Field of application:

Pytes home storage systems are primarily used as solar storage systems to maximise self-consumption of the solar energy generated. A grid-connected solar system that previously fed all of its energy into the grid can now be used for self-consumption. But even purely stand-alone systems can significantly increase their storage capacity by using the 5kWh storage modules.

During the day - when electricity consumption is usually relatively low but the solar system is delivering maximum power - the surplus energy is stored in the storage modules. In the evening and overnight or during peak loads, the energy from the storage modules is used to cover your own electricity requirements. This significantly reduces the amount of electricity purchased from the public electricity supplier and prevents expensive solar energy from being fed into the grid at low cost. Depending on the design / size of the solar system and the storage system, almost 100 per cent self-sufficiency can be achieved. With a grid-connected solar system, only the surplus is fed into the public grid when the solar storage tank is full.

Furthermore, these storage systems are increasingly being used as an emergency power solution to maintain the operation of essential consumers in the event of power failures.


Battery management BMS:

Each storage module has its own integrated battery management system, which ensures the safe operation of each storage system at all times. The BMS permanently monitors the status of the individual cells and protects them against overvoltage, undervoltage and excessive temperatures. These protective mechanisms - integrated into each storage module - prevent premature failure of the storage system and ensure maximum safety.

  • Protection against cell overvoltage
  • Protection against cell undervoltage
  • Shutdown of charging / discharging if the cell temperature is too high or too low
  • Shutdown of charging / discharging if charging or discharging currents are too high
  • Cell equalisation, constant monitoring of cell voltages with corresponding equalisation
  • Reverse polarity protection

Service life / economy

The integrated high-performance cells in Pytes home storage systems deliver more than 6,000 cycles at a depth of discharge of 90%. This secures your investment through years of reliable use.

In comparison with conventional battery technology (lead batteries), lithium storage systems can fully utilise their advantages. Of course, all battery storage systems are consumables and their service life is reduced with every discharge, which cannot be avoided with LifePO4 storage systems either. However, the significantly greater number of charging cycles and the energy density of lithium storage systems mean that the costs per kWh at the end of the storage system's life are significantly lower than with conventional lead battery technology.


Advantages of the Pytes lithium storage system

  • Integrated battery management
  • Fast charging and discharging capability
  • Integrated heating, allowing the storage system to be placed in frost-prone environments such as basements or garages.
  • Deep discharge capability, while conventional lead batteries (AGM / GEL) should only be discharged to 50%, 90% depth of discharge (DOD) is easily possible with lithium storage systems
  • high energy density in a small installation space, in order to achieve a comparable usable capacity with a GEL / AGM battery, its capacity would have to be almost doubled. Approx. 4.5kWh can be extracted from a 5.12kWh lithium storage unit at 90% depth of discharge. To obtain this amount of energy from lead batteries (with 50% DOD), a battery capacity of 9kWh would be required.
  • Charging cycles, while the Pytes home storage system achieves 6,000 charging cycles at a depth of discharge of 90% (residual capacity 10%), GEL batteries still deliver around 1,400 cycles at 50% depth of discharge and AGM batteries only 750 cycles. At 90% depth of discharge (for which they are not designed) they would deliver less than 200 cycles. Only OPzV or OPzS as representatives of lead batteries (armoured plate batteries) would be conceivable as an alternative storage solution, whereby the number of cycles at 50% DOD is around 2,500 and at 90% DOD less than 1,000 cycles.

If the number of cycles and the usable capacity are used to calculate the amount of energy that can be extracted over the entire service life, the following result is obtained.

Extracted power in kWh over the entire service life

  • Pytes 5.12kWh storage: approx. 28,000kWh
  • OPzS / OPzV 9kWh storage: 12,500kWh
  • GEL storage 9kWh storage: 7,000kWh
  • AGM storage with 9kWh storage: 4,000kWh

If you divide these values by the acquisition costs of the respective storage systems, you get the costs per kWh, which can then be easily compared with each other.


Simple installation

The storage system is easy to install, maintenance-free and can be used as the basic component of an energy storage system by connecting it in parallel. If several storage modules are used, they are connected in parallel using the supplied jumper cables. Communication cables for communication between the storage modules are also included in the scope of delivery. The memory blocks can be safely stacked on top of each other using brackets. As an option, the Pytes V-Box-IC is also available as a storage cabinet that can hold three storage modules (totalling 15kWh).


High charging and discharging currents

If several storage modules are connected directly to each other in parallel using the supplied jumper cables and the current is drawn crosswise (plus from the first and minus from the last storage module), the maximum continuous current is 100A, regardless of the number of storage modules. If higher charging and discharging currents are required, the individual storage modules must each be connected to a positive and negative busbar. The inverters or chargers are then connected directly to the busbar. This multiplies the possible current draw from the storage pack. With two storage modules it would then be 200A, with three storage modules 300A and so on.


Comprehensive compatibility

The Pytes storage modules are compatible with 16 of the most commonly used inverters on the market

  • Victron
  • Deye
  • Growatt
  • Voltronic Power
  • Goodwe
  • Megarevo
  • Studer
  • Kehua Tech
  • LuxPower
  • SRNE
  • Sermatec
  • tbb
  • SMA
  • Sofar Solar

Manufacturer's warranty:

10 years


Scope of delivery:

  • Pytes V5°α home storage system 5.12kWh 48V | Power connection: Amphenol SurLok Plus 8.0 mm
  • Cable set consisting of: Bridge cable red + black 16cm each, battery to battery communication cable 22cm, earthing cable 100cm

Further helpful tips can be found in our FAQ

Pytess memory V5°α

Power connections (+ and -):
Amphenol SurLok Plus 8.0 mm
Battery type:
Lithium-iron-phosphate
Nominal voltage:
51.2V
Voltage range:
47.5V - 57.6V
Nominal capacity:
100Ah
Nominal energy:
5.12kWh
Max. continuous discharge current:
100A, recommended continuous discharge current 75A
Max. continuous charging current:
100A, recommended continuous charging current 75A
Peak charging and discharging current:
101A~120A (3min); 121A~180A (15sec)
Communication protocols:
RS485, CAN, WiFi (with optional hardware)
Cycles:
≥6000cycles @ 90% DOD
Calendar service life:
≥10 years
Round-trip efficiency:
≥95%
Operating temperature range:
-10°C~50°C
Humidity:
20-80%, non-condensing
Altitude above sea level:
4,000m max.
Wiring:
only parallel connection
Storage temperature:
within 1 month: -20~55°C, 1-3 months: 0~35°C, 3-12 months: 20~25°C
Heating system:
Temperature rise 10°C/h, operating temperature range -18°C to +10°C
Dimensions (W x D x H):
440 x 530 x 140mm (3.2 height units)
Weight (without packaging):
44kg

Varianten ID

97127

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<div class="pdf"> <a href="https://www.dropbox.com/scl/fi/ay8d256o071wemngzl9pj/V5-V5-Datasheet.pdf?rlkey=9xnp53by6qb82d3l7suhhe6q5&dl=0"target="_blank">Datasheet V5u00b0u03b1</a> </div> <div class="pdf"> <a href="https://www.dropbox.com/scl/fi/rs7z6xe331zug9v80jtbz/V5-user-manual-PYTES-1.0.pdf?rlkey=tvyeb2y4ttsj9ox17ys3o0lcz&dl=0"target="_blank">Manual V5u00b0u03b1</a> </div>

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