loading

 sales@gsl-energy.com     0086 13923720280

tips on how to extend the life of the battery in your mobile device

Most people today use some type of mobile computer.
The device can be a laptop, a tablet, or a smartphone.
These devices have one thing in common.
They use rechargeable batteries to move them.
The batteries that allow them to move are rechargeable.
However, the charging capacity of these batteries eventually began to decline and eventually died.
They will have to be replaced and of course it will cost you money.
Would it be good to extend the life of these expensive batteries your mobile devices rely on?
Fixing the batteries used by mobile devices is a way to do so.
Most mobile devices use lithium today. ion battery.
This battery has a large amount of charge compared to its size.
This technology uses lithium ion to generate charge.
Power your mobile device when the battery is discharged, and the lithium ion is moving from the negative pole to the positive pole.
When the battery is charged, the flow of electrons is the opposite.
The process of battery discharge and charging will eventually wear the electrode.
This is due to the chemical change of the electrode.
The process is temperature-
If the battery is stored or used at a higher temperature, it will increase.
Therefore, the life of lithium
Ions are reduced if operated or stored at high temperatures.
Life of lithium-
Ion batteries above 30 ℃ (86°F)
Will shorten.
To extend the life of the battery, store them at room temperature, that is, between 20 and 25 degrees Celsius
It is not recommended to charge you in the car, especially when the weather is warm and sunny.
Letting the battery charge more than the required time will also put pressure on the battery and shorten the battery life.
Stop the charging process when the battery is fully charged and ready to be used.
Storing the battery in a fully charged state also shortens its life.
This is because lithium-when it\'s fully charged-
The speed of ions is the highest.
If you\'re storing lithium
Ion batteries discharge to about 40% for a long time and stay in cool places such as refrigerators.
Don\'t put it in your fridge.
These tips will help extend the life of lithium
Ion batteries used in mobile devices.
This means that the number of charge/discharge cycles it can experience will increase before starting to drop.
The number of extended charge/discharge cycles will save you money. Best Regards.

GET IN TOUCH WITH Us
recommended articles
SERVICE INFO CENTER Inverter Compatibility
60kWh High Voltage Battery Energy Storage System Case Study with Solis  Inverters

High voltage batteries for energy storage are becoming the preferred solution for commercial and industrial solar applications worldwide. Compared with low voltage systems, high voltage battery energy storage systems deliver higher efficiency, lower energy loss, and better inverter compatibility—especially in markets such as Vietnam, where electricity costs and grid stability are key concerns.

This case study presents a 60kWh high voltage battery energy storage system in Vietnam, deployed with Solis high voltage hybrid inverters, using a stackable high voltage LiFePO₄ battery architecture.
How Does GSL Energy Liquid-Cooling Energy Storage System Operate Stability in Ukraine's Cold Winter? 
Deploying energy storage systems in cold winter regions imposes challenges that often extend beyond mere installation completion. The core difficulty lies in achieving long-term stable operation in sub-zero environments. Cold temperature can affect cell activity and charge/discharge capabilities, while also potentially introducing engineering challenges such as condensation, moisture build-up, and thermal stress differentials, placing higher demands on the thermal management and control strategies of the storage system.
Netherlands Commercial Energy Storage Project | Dual 125kW Liquid-Cooled C&I ESS Deployment
GSL ENERGY recently supported the deployment of a dual commercial energy storage system in the Netherlands. The project consists of two liquid-cooled C&I energy storage cabinets installed at a research-oriented facility with stable and continuous power requirements.
Energy Storage Fundamentals: A Practical Guide to Modern Energy Storage Systems
Explore the fundamentals of energy storage, microgrids, and battery technologies. Learn how GSL ENERGY's innovative solutions enhance commercial, industrial, and residential energy systems. From lithium-ion battery lifespan to system efficiency, this guide covers everything you need for smart, reliable energy storage.
Hungary Energy Storage Subsidy 2026: The Best Residential Battery Solutions Guide

As Hungary accelerates its national energy transition, 2026 marks a decisive year for residential energy storage deployment. Backed by a HUF 100 billion government subsidy, the country is entering a phase where battery storage is no longer an optional upgrade—but a core component of compliant, future-proof household energy systems.

For battery manufacturers, system integrators, and installers targeting Central and Eastern Europe, Hungary represents a high-ROI, policy-driven market with unusually clear rules of entry.

This guide provides a decision-oriented analysis of Hungary's storage subsidy framework, technical requirements, and the optimal battery system architecture for long-term commercial success.
no data
  Tel: +86 755 84515360
 Address: A602, Tianan Cyber Park, Huangge North Road, Longgang District, Shenzhen, China
GSL ENERGY - A leading green energy supplier in China since 2011

0086 13923720280

Solar energy storage battery manufacturer contact information
Contact us
whatsapp
Contact customer service
Contact us
whatsapp
cancel
Customer service
detect