Essence Engineering

We Offer Solar Energy Solutions in all Pakistan to reduce your Electricity bills

Office No. 1,
1st floor, Adnan Plaza, G10 Markaz,
Islamabad

Lithium Ion Batteries

Electricity

Best Solar Batteries in Pakistan

Essence Engineering offer Li-ion/Li-FePO₄ Batteries that provide high capacity of storage.

Essence Engineering Solar Batteries
Lithium batteries

We offer a charge controller for charging the essence power banks and storage devices. It is available in different volts and different charging current capacity depends upon the electrical data of the storage devices and banks.  

Our charge controllers are available in 8A to 100A with 12v to 72v including charing facilities for e bikes and scooties. 

Our Range of domestic energy storage banks

Essence Power Banks for solar street light

Essence engineering offers the services to provide a wide range of batteries for solar street lights. We can customize the batteries for 1 night backup to 5 night backup. The battery will be underground racks or pole mounted depending upon client requirements. The recommended power backup for solar street lights are 3 nights throughout the years in all regions of Pakistan. 

Essence Energy storage for E bikes and electric scooters

Essence engineering has  a well established R & D laboratory to manage load and increase the range of E bikes and electric scooters. We manufacturing batteries with following specifications. 

It depend upon range of the e bikes and load it carries 

Essence Engineering Solar Power Batteries

Essence Energy storage for long backup with torque load:

We are the excellency to design and install the power storage for long backup and also for torque load including industries and commercial usage. The power requirements and backup calculation is based on the usage of the client. Often we offer 8000 deep cycle cells for such industries or for long backup. Essence power banks use 50A smart bms to 400A smart bms for online monitoring to superwise charge current, charging voltage and cutoff voltage to ensure long life of the cells. 8000 cycle life batteries have more than 15 years. 

sr d 1 3

EVERYTHING YOU NEED

What We Provide

Customize Casing

We provide customized casing from 12v 50ah to 72v 100ah. This includes rack-mounted and wall-mounted casing with your own name/brands.

Cells We Used

Essence Engineering batteries are made with the high quality material. That increase it life upto 16 years so that you can save your money.

Screens and Interfaces

We offer a smart LCD screen with RS485 and CAN interfaces to our power banks. This makes it possible to communicate with almost all types of solar hybrid inverters.

BMS We Use

We use smart BMS in our battery banks with blue connectivity. The cells Ampere, volts and charging current can easily be seen on mobile screens. It also depends upon customer needs.

How we design a lithium

We design all types of battery banks on customers' demands. Our design of back up of load is 100% ideal and authentic as per electrotechnical calculation.

Warranty and Claims

The warranty of essence power bank is a minimum of three years. All the protocols should be followed by the customers as per essence engineering warranty terms and conditions.

Got a question?

If you have a question for us, see if we’ve answered it below. You’ll find answers
to the questions people ask us about the most.

Lithium batteries are rechargeable batteries that use lithium ions to store and release energy. They are commonly used in a wide range of applications, from consumer electronics to electric vehicles and renewable energy storage systems.

Yes, it is recommended for a load of not more than 5kw in the industrial solar system. It is highly recommended for torque and short time back up.

When a battery becomes fully charged and then discharges up to its design depth of discharge, this one charge and discharge is called one cycle.

BMS stand for Battery Management System

  • Lithium-Ion (Li-ion): Commonly used in consumer electronics, electric vehicles, and renewable energy storage.
  • Lithium Iron Phosphate (LiFePO4 or LFP): Known for their safety and long cycle life, often used in energy storage and electric vehicles.
  • Lithium Polymer (Li-Po): Lightweight and flexible, used in mobile devices and drones.

Lithium Titanate (LTO): Fast charging and long lifespan, used in electric vehicles and industrial applications.

  • High Energy Density: Store more energy in a smaller size.
  • Long Cycle Life: Can be charged and discharged many times.
  • Low Self-Discharge: Retain charge well when not in use.
  • Fast Charging: Can be charged quickly compared to other types of batteries.
  • Lightweight: Lighter than many other types of rechargeable batteries.
  • Consumer Electronics: Smartphones, laptops, tablets, and cameras.
  • Electric Vehicles (EVs): Powering electric cars, bikes, and scooters.
  • Renewable Energy Storage: Storing energy from solar panels and wind turbines.
  • Portable Power Tools: Providing power to cordless tools.

Medical Devices: Used in portable medical equipment.

The lifespan of a lithium battery depends on its type, usage, and operating conditions. On average, lithium-ion batteries last between 300 to 500 charge cycles, while lithium iron phosphate batteries can last over 2,000 cycles.

Store lithium batteries in a cool, dry place, away from direct sunlight and heat sources. For long-term storage, it’s best to keep them at a partial charge (around 50%) and avoid completely discharging or overcharging them.

Lithium batteries are generally safe when used and handled properly. However, they can pose safety risks if damaged, improperly charged, or exposed to extreme conditions. Safety features like overcharge protection, thermal management, and robust casing help mitigate these risks.

Lithium batteries should be recycled through specialized recycling programs or facilities that can safely handle and process them. Do not dispose of lithium batteries in regular trash due to the risk of fire and environmental harm.

Most lithium batteries have built-in protection circuits to prevent overcharging. However, using a charger not designed for lithium batteries can result in overcharging and potential safety hazards.

  • Temperature: High temperatures can degrade battery performance and lifespan.
  • Charge/Discharge Cycles: Frequent deep discharges can shorten battery life.
  • Charge Rate: Fast charging can generate heat and affect longevity.
  • Storage Conditions: Poor storage conditions can lead to capacity loss and reduced lifespan.
  • Lithium-Ion: Generally have higher energy density and are more common in consumer electronics.
  • Lithium Polymer: Are lighter and can be made in various shapes, making them suitable for applications where weight and form factor are critical.

Lithium batteries should be disposed of at designated recycling centers or through battery recycling programs. Many retailers and local waste management facilities offer drop-off points for battery recycling.

Lithium batteries degrade due to chemical reactions within the battery that occur during charge and discharge cycles. Factors such as high temperatures, deep discharges, and high charge rates accelerate this degradation.

Thermal runaway is a condition where a lithium battery overheats uncontrollably, leading to the release of gases, fire, or explosion. It can be caused by overcharging, short circuits, or physical damage to the battery.

Lithium batteries perform best within a specific temperature range (typically 20°C to 25°C). Extreme cold can reduce their capacity and efficiency, while extreme heat can accelerate degradation and pose safety risks.