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We Make In India Entrepreneur (MiiEmart) Franchise of Energy And Fire Tech India Pvt. Ltd, In Technical collaboration with Battery Services International, L.L.C., USA uses a very unique technology that brings great benefits to all sorts of lead acid batteries in the market.
Main Causes of Battery Failures:
ÃÂ· Incorrect charging.
ÃÂ· Poor maintenance.
ÃÂ· Excess heat.
ÃÂ· Over Charging.
Did you know 80% of Lead acid batteries die prematurely due to sulphation, which we can treat and rejuvenate?
How EBEP Technology Works:
Our EBEP Technology allows the recovery of the lost potential of any lead acid battery of any brand, make, application, state-of-charge, level of sulphation, age, size, and price. Our technology for battery improvement can do this in a very quick, safe, and effective manner following scientific method and procedures regarding the maintenance, handling, recharging, and electro-chemistry of lead acid batteries.
Our Technology helps in:
a. Restoration of any lead acid battery at the end of its useful life.
b. Recovery of almost full potential of batteries by de sulphation.
c. Routine maintenance to get optimum performance of batteries.
d. Prevention of the loss of back up time of any lead acid battery.
If you have a battery Bank that is made up of individual VRLA, AGM, Gel, or flooded batteries then you can do a huge cost saving for your organization and be a valuable part in saving the environment by using our Electro-Chemical Battery Enhancement Process (EBEP) to increase the serviceable life of all your batteries. The objective of the EBEP process for your batteries is to sustain and prolong continuous performance, secure reliability, extend life span, and maximize return
on investment. The EBEP rejuvenation process will enhance life (potential) to the so called dead batteries which are actually sulphated and will also Yield the following benefits:
a. It will enhance the useful life of your batteries by Approx two year (warranty 12 Month*)
b. Guaranteed to cut expenditure in replacement batteries.
c. Will recover lost capacity or back up time.
d. Recover low internal resistance of each cell.
e. Reduces the amount of charge current required to keep them a full capacity.
f. Reduces the rate of water loss per cell.
g. Restores plate potentials and voltage.
h. Protects grid plate and paste from passivation due to hard sulphation & corrosion.
i. Recovers the soft porosity of sulphated plates.
j. Reduces the risk of thermal runaway.
k. Helps the environment by extending battery life.