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Note that continuous power cuts will shorten battery life. The warranty covers charge cycles, not a period of time. Stage 4 load-shedding may shorten battery life to 6 months or less if batteries discharge below recommended charge levels (Lead Acid 50% DOD, LiFePO4 80% DOD). The "lifetime expectency" of a battery is the maximum life-time under no load-shedding.
Solarix UPS / Inverter / Solar Batteries [Deep cycle]Solarix. UPS / Inverter / Solar Batteries [Deep cycle]. Computer hardware South AfricaPrices displayed on our site are a reference and are subject to change without notice, quotation prices are final, subject to stock availability. All transactions are subject to our terms of sale. E&OE. | ||||
There are 11 products in UPS / Inverter / Solar Batteries [Deep cycle]
Displaying products 1 - 11 of 11 products X
Solarix Forbatt 12V 7.2 Ah Rechargeable Lead Acid GEL Battery, 86.4Wh rated energy, Service Life of around 200 cycles [more info] This product has been added to the cart.
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Solarix Forbatt 12V 8Ah Rechargeable Lead Acid Gel Battery - Nominal Voltage 12V, Nominal Capacity 8Ah, Rated Energy 102.4Wh, Recommended Charge Voltage 14.2V - 14.5V, Continuous Charge / Discharge Current 8A, Service Life Of Around 200 Cycles, Retail Box, 6 Months Warranty [more info] This product has been added to the cart.
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SOLXCLB12V8AH
Solarix Xcube 12V 8Ah Rechargeable Lithium Battery, Nominal Voltage 12.8V, Nominal capacity 8Ah, Rated energy 102.4Wh, Rechargeable LiFePO4 Li-Ion Battery, BMS Function overcharge and discharge, Overcurrent and temperature protection, Recommended charge Voltage 14.4V - 14.6V, 3000 cycles Battery Life [more info] This product has been added to the cart.
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SOLSKG10012V
Solarix 12V 100Ah Deep Cycle Gel Battery - Absorbent Glass Mat Technology, Nominal Capacity 100Ah, Voltage 12V, Maximum Charging Current 30A, Cycle Use 14.5 To 14.8V, All Purpose Battery For Use With Inverters And Solar Installations, Colour Grey, Retail Box, 6 month Warranty [more info] This product has been added to the cart.
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Solarix Ultra Power 24V 20A Lithium Ion Phosphate Battery Charger - 4 Steps Charging, Maximum Charging Output Voltage (CV) 29.2V, Maximum Output Current (CC): 20 Amps, AC Input Voltage 220VAC, AC Input Frequency 50 Hz, Input Power 600W Maximum, Lightweight Aluminium Casing With Ventilation Fan, 2x Round 8.2mm Output Connector Lugs, Colour Black, Retail Box *Note warranty is capped at maximum cycles and time, whichever comes first [more info] This product has been added to the cart.
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Solarix Ultra Power 48V 20A Lithium Ion Phosphate Battery Charger - 4 Steps Charging, Maximum Charging Output Voltage(CV) 54.8V, Maximum Output Current (CC): 20 Amps, AC Input Voltage 220VAC, AC Input Frequency 50 Hz, Input Power1000W (1380W Maximum), Lightweight Aluminium Casing With Ventilation Fan, 2x Round 8.2mm Output Connector Lugs, Colour Black, Retail Box *Note warranty is capped at maximum rated cycles or time, whichever comes first [more info] This product has been added to the cart.
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Solarix Luminous 12V 180AH Flooded Tall Tubular Battery - Tubular Plate Design, Lead Acid Storage, Suitable For Frequent Power Cuts, Excellent Overcharge Resistance, High Durability With Sealed Plastic Housing, 180AH, Voltage 12V @ C20 Rating Battery, Over 1250 Cycles At 80% Depth Of Discharge (DOD), Extra Tall to store 30% More Electrolyte, Retail Box *Note warranty is capped at maximum rated cycles or time, whichever comes first [more info] This product has been added to the cart.
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SOLNE12V100AH
Solarix Nenergy 12V 100Ah LiFePo4 Single Battery Module - Wall Mount Unit , Nominal Voltage 12.8V, Rated Capacity 100AH, Total Usable Energy 1.280KWh, Continuous Charging 20A, Continuous Discharging 50A, Working Voltage Range 11.6V-14.6V, Wall Mount Unit Design To Work Perfectly With 12V Hybrid Invertors Up To 2KVA, Retail Box *Note warranty is capped at maximum rated cycles or time, whichever comes first [more info] This product has been added to the cart.
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Solarix Infinisolar 25.6V 100Ah Lifepo4 Single Battery Module - Total Usable Energy 2.56KWh, Normal Voltage: 25.6V, Rated Capacity (5HR): 100 Ah, Voltage Range 22.0V to 29.2V, LCD Display and Battery Level Indicator , Continuous Charging Current: 100A, Continuous Discharging Current: 100A, Low Self-Discharge, Wall Mount Unit, Parallel Up to 15 units, Work Perfectly Hybrid Inverters Up To 3.5KVA 24V, Colour White, Retail Box [more info] This product has been added to the cart.
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SOLMLP1648100
Solarix Must 51.2V 100Ah LiFePo4 Single Battery Module - LCD Control Panel, Advanced BMS With Current Limiting Factor, Normal Voltage: 51.2V, Rated Capacity (5HR):110Ah, Total Usable 4.8 kWh, Maximum Continuous Charging 100A, Maximum Continuous Discharging 100A, Equalised Charge Voltage: 57.6V, Discharge Cut-off Voltage: 44.0V, Easy Wall Mount Installation, Design To Work Perfectly Hybrid Invertors Up To 7KVA, Retail Box [more info] This product has been added to the cart.
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SOLES51LB100A
Solarix Esener 51.2V 100Ah LiFePo4 Single Battery Module-LCD Control Panel, Advanced BMS With Current Limiting Factor, Normal Voltage: 51.2V, Rated Capacity (5HR):110Ah, Total Usable 4.8 kWh, Maximum Continuous Charging 100A , Maximum Continuous Discharging 100A, Equalised Charge Voltage: 58.4V, Discharge Cut-off Voltage: 40.0V, Easy Wall Mount Or Shelf Rack Installation, Design To Work Perfectly Hybrid Invertors Up To 7KVA, Retail Box *6 month warranty or rated cycles, whichever comes first [more info] This product has been added to the cart.
What would you like to do now: More information about Solarix UPS / Inverter / Solar Batteries [Deep cycle]This category consists of 1 page. The following brands are currently available for "ups / inverter / solar batteries [deep cycle]". You can select to display only a specific brand for the category "ups / inverter / solar batteries [deep cycle]" by selecting the brand's icon at the top of this page.
Your UPS system is one of the most crucial components in your critical power infrastructure, and for your UPS, the batteries are really the “heart” of that system. Even though your UPS needs that heart, batteries are often neglected. Regardless of the batteries you choose, all batteries decrease in their ability to store and deliver power over time. Eventually you will still have to replace UPS batteries on a schedule to get the best usage out of your UPS. Deep-cycle batteries Deep-cycle batteries are designed to be regularly deeply discharged during normal operation. Deep-cycle batteries are effectively capable of discharging up to 80% of its capacity. The best lifespan vs cost method is to keep the battery at an 50% depth of discharge. How long will a deep cycle battery last? Deep cycles are rated in Volt-Amps (VA). A volt amp is how many amps the battery can supply at a certain voltage before it is flat. 100Ah is quite popular and it will supply 12V at 1 Amp for 8.3 hours (12V x 1A x 8.3 hours = 100Ah) By using an inverter, you can power 220V devices. The battery will supply a certain amount of current at 12Volts dc to the inverter, which coverts this to 220V ac. Battery energy charge when displayed as kWh and Ah Some batteries are rated in kWh (Kilowatt hours) while others are rated in Ah (Amp-hours). These two can easily be converted to each other. How to convert Ah to kWh Multiply the Ah and the Voltage of the battery which will give you the answer in watts, divide by 1000 further to get the answer in Kilo-watt hour. Popular battery energy charge (Ah to kWh / kWh to Ah) 7Ah 12Volts = 84Wh 9Ah 12Volts = 108Wh 100Ah 12Volts = 1.2kWh 200Ah 12Volts = 2.4kWh 48Vdc 12Kwh = 250Ah 48Vdc 3.5Kwh = 72.9Ah VA and Watts The power in Watts is the real power drawn by the equipment. Volt-Amps are called the "apparent power" and are the product of the voltage applied to the equipment times the current drawn by the equipment. Volts-Amps is always higher than Watts. The difference between the two is called the "power factor (p.f.)". A power factor (p.f.) in the 0.6 to 0.8 range is typical. Real power in watts = Apparent power in VA x Power factor Other losses to take into consideration Using an inverter is very inefficient compared to grid power, there are are number of losses between the battery and final device:
Calculating accurate times for different devices without actually running the device is not difficult, it is impossible! So what we have done below, is made some typical assumptions, and simplified the whole calculation. We are using a power factor of 0.8. Remember that inverters and batteries have losses - we have excluded this from the calculation to simplify this as much as possible. Typical power for 55" LED TV = 150Watts
Using the same formula with the same assumptions, we get the following times:
*If you need higher accuracy, take the efficiencies into consideration, and get an accurate power factor. | |||||
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