Global Battery for Energy Storage in Telecom Market Research Report 2019-2025

Published On: February 2020 | Report ID: 16351 | Category: EnergyPages: 165

Uninterrupted power supply can be achieved through grid or diesel generator sets. However, growing concerns about environmental and climate change issues have fueled the need for telecom towers that utilize clean energy. Renewable power sources such as solar and wind are used to power these towers. In case of grid failure, batteries are used to provide backup as standby power to telecom towers.

The rise in telecom subscriptions worldwide has led to increased number of telecom tower installations. This has led to rising consumption of diesel. An overall estimate of 80% telecom towers operate on diesel generators, thus resulting in high-energy costs. Therefore, using batteries in place of diesel generators help operators reduce costs related to fuel transport and generator maintenance. China has one of the world’s largest telecom sector. As of 2014, the country had more than 1.3 million telecom subscriptions, and the count is expected to double by the end of 2017. An increase in the demand for migration to 4G from 2G and 3G is expected to prompt the telecom operators to install more towers in the region. It is expected to contribute directly towards the consumption of batteries through 2019.

In 2019, the market size of Battery for Energy Storage in Telecom is xx million US$ and it will reach xx million US$ in 2025, growing at a CAGR of xx% from 2019; while in China, the market size is valued at xx million US$ and will increase to xx million US$ in 2025, with a CAGR of xx% during forecast period.

In this report, 2018 has been considered as the base year and 2019 to 2025 as the forecast period to estimate the market size for Battery for Energy Storage in Telecom.

This report studies the global market size of Battery for Energy Storage in Telecom, especially focuses on the key regions like United States, European Union, China, and other regions (Japan, Korea, India and Southeast Asia).

This study presents the Battery for Energy Storage in Telecom production, revenue, market share and growth rate for each key company, and also covers the breakdown data (production, consumption, revenue and market share) by regions, type and applications. history breakdown data from 2014 to 2019, and forecast to 2025.

For top companies in United States, European Union and China, this report investigates and analyzes the production, value, price, market share and growth rate for the top manufacturers, key data from 2014 to 2019.

In global market, the following companies are covered:

East Penn

Eaton

EnerSys

Exide

...

Market Segment by Product Type

Li-Ion Batteries

Lead Acid Batteries

Nickel Batteries

Market Segment by Application

Telecom

Others

Key Regions split in this report: breakdown data for each region.

United States

China

European Union

Rest of World (Japan, Korea, India and Southeast Asia)

The study objectives are:

To analyze and research the Battery for Energy Storage in Telecom status and future forecast in United States, European Union and China, involving sales, value (revenue), growth rate (CAGR), market share, historical and forecast.

To present the key Battery for Energy Storage in Telecom manufacturers, presenting the sales, revenue, market share, and recent development for key players.

To split the breakdown data by regions, type, companies and applications

To analyze the global and key regions market potential and advantage, opportunity and challenge, restraints and risks.

To identify significant trends, drivers, influence factors in global and regions

To analyze competitive developments such as expansions, agreements, new product launches, and acquisitions in the market

In this study, the years considered to estimate the market size of Battery for Energy Storage in Telecom are as follows:

History Year: 2014-2018

Base Year: 2018

Estimated Year: 2019

Forecast Year 2019 to 2025

Table of Contents

1 Report Overview

1.1 Research Scope

1.2 Major Manufacturers Covered in This Report

1.3 Market Segment by Type

1.3.1 Global Battery for Energy Storage in Telecom Market Size Growth Rate by Type (2019-2025)

1.3.2 Li-Ion Batteries

1.3.3 Lead Acid Batteries

1.3.4 Nickel Batteries

1.4 Market Segment by Application

1.4.1 Global Battery for Energy Storage in Telecom Market Share by Application (2019-2025)

1.4.2 Telecom

1.4.3 Others

1.5 Study Objectives

1.6 Years Considered

2 Global Growth Trends

2.1 Production and Capacity Analysis

2.1.1 Global Battery for Energy Storage in Telecom Production Value 2014-2025

2.1.2 Global Battery for Energy Storage in Telecom Production 2014-2025

2.1.3 Global Battery for Energy Storage in Telecom Capacity 2014-2025

2.1.4 Global Battery for Energy Storage in Telecom Marketing Pricing and Trends

2.2 Key Producers Growth Rate (CAGR) 2019-2025

2.2.1 Global Battery for Energy Storage in Telecom Market Size CAGR of Key Regions

2.2.2 Global Battery for Energy Storage in Telecom Market Share of Key Regions

2.3 Industry Trends

2.3.1 Market Top Trends

2.3.2 Market Drivers

3 Market Share by Manufacturers

3.1 Capacity and Production by Manufacturers

3.1.1 Global Battery for Energy Storage in Telecom Capacity by Manufacturers

3.1.2 Global Battery for Energy Storage in Telecom Production by Manufacturers

3.2 Revenue by Manufacturers

3.2.1 Battery for Energy Storage in Telecom Revenue by Manufacturers (2014-2019)

3.2.2 Battery for Energy Storage in Telecom Revenue Share by Manufacturers (2014-2019)

3.2.3 Global Battery for Energy Storage in Telecom Market Concentration Ratio (CR5 and HHI)

3.3 Battery for Energy Storage in Telecom Price by Manufacturers

3.4 Key Manufacturers Battery for Energy Storage in Telecom Plants/Factories Distribution and Area Served

3.5 Date of Key Manufacturers Enter into Battery for Energy Storage in Telecom Market

3.6 Key Manufacturers Battery for Energy Storage in Telecom Product Offered

3.7 Mergers & Acquisitions, Expansion Plans

4 Market Size by Type

4.1 Production and Production Value for Each Type

4.1.1 Li-Ion Batteries Production and Production Value (2014-2019)

4.1.2 Lead Acid Batteries Production and Production Value (2014-2019)

4.1.3 Nickel Batteries Production and Production Value (2014-2019)

4.2 Global Battery for Energy Storage in Telecom Production Market Share by Type

4.3 Global Battery for Energy Storage in Telecom Production Value Market Share by Type

4.4 Battery for Energy Storage in Telecom Ex-factory Price by Type

5 Market Size by Application

5.1 Overview

5.2 Global Battery for Energy Storage in Telecom Consumption by Application

6 Production by Regions

6.1 Global Battery for Energy Storage in Telecom Production (History Data) by Regions 2014-2019

6.2 Global Battery for Energy Storage in Telecom Production Value (History Data) by Regions

6.3 United States

6.3.1 United States Battery for Energy Storage in Telecom Production Growth Rate 2014-2019

6.3.2 United States Battery for Energy Storage in Telecom Production Value Growth Rate 2014-2019

6.3.3 Key Players in United States

6.3.4 United States Battery for Energy Storage in Telecom Import & Export

6.4 European Union

6.4.1 European Union Battery for Energy Storage in Telecom Production Growth Rate 2014-2019

6.4.2 European Union Battery for Energy Storage in Telecom Production Value Growth Rate 2014-2019

6.4.3 Key Players in European Union

6.4.4 European Union Battery for Energy Storage in Telecom Import & Export

6.5 China

6.5.1 China Battery for Energy Storage in Telecom Production Growth Rate 2014-2019

6.5.2 China Battery for Energy Storage in Telecom Production Value Growth Rate 2014-2019

6.5.3 Key Players in China

6.5.4 China Battery for Energy Storage in Telecom Import & Export

6.6 Rest of World

6.6.1 Japan

6.6.2 Korea

6.6.3 India

6.6.4 Southeast Asia

7 Battery for Energy Storage in Telecom Consumption by Regions

7.1 Global Battery for Energy Storage in Telecom Consumption (History Data) by Regions

7.2 United States

7.2.1 United States Battery for Energy Storage in Telecom Consumption by Type

7.2.2 United States Battery for Energy Storage in Telecom Consumption by Application

7.3 European Union

7.3.1 European Union Battery for Energy Storage in Telecom Consumption by Type

7.3.2 European Union Battery for Energy Storage in Telecom Consumption by Application

7.4 China

7.4.1 China Battery for Energy Storage in Telecom Consumption by Type

7.4.2 China Battery for Energy Storage in Telecom Consumption by Application

7.5 Rest of World

7.5.1 Rest of World Battery for Energy Storage in Telecom Consumption by Type

7.5.2 Rest of World Battery for Energy Storage in Telecom Consumption by Application

7.5.1 Japan

7.5.2 Korea

7.5.3 India

7.5.4 Southeast Asia

8 Company Profiles

8.1 East Penn

8.1.1 East Penn Company Details

8.1.2 Company Description and Business Overview

8.1.3 Production and Revenue of Battery for Energy Storage in Telecom

8.1.4 Battery for Energy Storage in Telecom Product Introduction

8.1.5 East Penn Recent Development

8.2 Eaton

8.2.1 Eaton Company Details

8.2.2 Company Description and Business Overview

8.2.3 Production and Revenue of Battery for Energy Storage in Telecom

8.2.4 Battery for Energy Storage in Telecom Product Introduction

8.2.5 Eaton Recent Development

8.3 EnerSys

8.3.1 EnerSys Company Details

8.3.2 Company Description and Business Overview

8.3.3 Production and Revenue of Battery for Energy Storage in Telecom

8.3.4 Battery for Energy Storage in Telecom Product Introduction

8.3.5 EnerSys Recent Development

8.4 Exide

8.4.1 Exide Company Details

8.4.2 Company Description and Business Overview

8.4.3 Production and Revenue of Battery for Energy Storage in Telecom

8.4.4 Battery for Energy Storage in Telecom Product Introduction

8.4.5 Exide Recent Development

9 Market Forecast

9.1 Global Market Size Forecast

9.1.1 Global Battery for Energy Storage in Telecom Capacity, Production Forecast 2019-2025

9.1.2 Global Battery for Energy Storage in Telecom Production Value Forecast 2019-2025

9.2 Market Forecast by Regions

9.2.1 Global Battery for Energy Storage in Telecom Production and Value Forecast by Regions 2019-2025

9.2.2 Global Battery for Energy Storage in Telecom Consumption Forecast by Regions 2019-2025

9.3 United States

9.3.1 Production and Value Forecast in United States

9.3.2 Consumption Forecast in United States

9.4 European Union

9.4.1 Production and Value Forecast in European Union

9.4.2 Consumption Forecast in European Union

9.5 China

9.5.1 Production and Value Forecast in China

9.5.2 Consumption Forecast in China

9.6 Rest of World

9.6.1 Japan

9.6.2 Korea

9.6.3 India

9.6.4 Southeast Asia

9.7 Forecast by Type

9.7.1 Global Battery for Energy Storage in Telecom Production Forecast by Type

9.7.2 Global Battery for Energy Storage in Telecom Production Value Forecast by Type

9.8 Consumption Forecast by Application

10 Value Chain and Sales Channels Analysis

10.1 Value Chain Analysis

10.2 Sales Channels Analysis

10.2.1 Battery for Energy Storage in Telecom Sales Channels

10.2.2 Battery for Energy Storage in Telecom Distributors

10.3 Battery for Energy Storage in Telecom Customers

11 Opportunities & Challenges, Threat and Affecting Factors

11.1 Market Opportunities

11.2 Market Challenges

11.3 Porter's Five Forces Analysis

12 Key Findings

13 Appendix

13.1 Research Methodology

13.1.1 Methodology/Research Approach

13.1.1.1 Research Programs/Design

13.1.1.2 Market Size Estimation

13.1.1.3 Market Breakdown and Data Triangulation

13.1.2 Data Source

13.1.2.1 Secondary Sources

13.1.2.2 Primary Sources

13.2 Author Details

13.3 Disclaimer

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