We are a leading Distributor / Channel Partner of hbl smf vrla batteries from Navi Mumbai, India.
Hbl Smf Vrla Batteries
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Approx. Rs 7,100 / PieceGet Latest Price
Product BrochureProduct Details:
Minimum Order Quantity
1 Piece
Capacity
100 Ah
Battery Type
Flat Plate Battery
Warranty
2 Years
Filled Weight
30Kg
Model Name/Number
OPTI
Dimensions
410MM x 175MM x 225MM
Operating Temperature Limits
27 deg
Terminals
Round Brass Terminal
Type Of Separator
AGM
Electrolyte Volume
10Ltrs
Thickness Of Plates
2mm
Shelf And Storage Life Before Next Charging
3Months
Charging Cycle
6-8 Hrs
Voltage
12V
Country of Origin
Made in India
Today's global businesses demand a 24X7uptime environment making UninterruptedPower Supplies (UPS) an integral part ofthe infrastructure. Batteries are the singlemost critical element of UPS system.HBL takes pride in positioning itself as theindustry leader in manufacturing reliable,safe, high-quality Sealed Maintenance Freebatteries for UPS applications.HBL has a state of the art manufacturingfacilities with high quality standards and isaccredited with ISO 9001, 14001 andOHSAS 18001. ApplicationsUPS SystemsBanking, Financial Services & InsuranceIT / ITESTelecomOptical Network TerminalTelecom EquipmentPower Back upCFL/LED LampsRailway Emergency LightingSolar Power EquipmentMedical InstrumentsFire & Security Alarm Systems Feature benefit snapshot 20 25 30 35 40 45 14 12 10 8 6 4 2 0 Cyclic grid alloy for positive plate Higher cycle life Radial grids Low internal resistance Quick recharge High discharge performance AGM Separator Greater compression Longer life Copper alloy screw type terminals Better electrical conductivity Absolute positive contact Zero wear & tear Deep discharge capability Withstands frequent & long power failures Low self discharge Longer shelf life Product conformance JIS C 8702 -1 Dual setting Boost 14.0V Float 13.7V Single setting 13.8V Cyclic 14.1V Current limit (% of rated capacity) Minimum : 10% Maximum : 20% Temperature compensation for charge voltage Compensation of 18mV to be reduced for every 1ºC rise in temperature and vice versa.