世界の通信用電力システム市場(~2027年):グリッドタイプ別(オングリッド、オフグリッド、バッドグリッド)、コンポーネント別、電源別、技術別(AC電源システム、DC電源システム)、電力定格別(10kW以下、10〜20kW、20kW以上)、地域別

■ 英語タイトル:Telecom Power System Market by grid type (On-Grid, Off-Grid, Bad grid), component, power source, Technology, (AC power system, DC power system), Power Rating (Below 10 kW, 10-20 kW, above 20 kW) and Geography - Global Forecast to 2027

調査会社MarketsandMarkets社が発行したリサーチレポート(データ管理コード:SE5068-22)■ 発行会社/調査会社:MarketsandMarkets
■ 商品コード:SE5068-22
■ 発行日:2022年3月31日
■ 調査対象地域:グローバル
■ 産業分野:電力
■ ページ数:230
■ レポート言語:英語
■ レポート形式:PDF
■ 納品方式:Eメール(受注後24時間以内)
■ 販売価格オプション(消費税別)
Single User(1名様閲覧)USD4,950 ⇒換算¥752,400見積依頼/購入/質問フォーム
Multi User (Five User)USD6,650 ⇒換算¥1,010,800見積依頼/購入/質問フォーム
Corporate License (全社内共有可)USD8,150 ⇒換算¥1,238,800見積依頼/購入/質問フォーム
販売価格オプションの説明はこちらで、ご購入に関する詳細案内はご利用ガイドでご確認いただけます。
※お支払金額は「換算金額(日本円)+消費税+配送料(Eメール納品は無料)」です。
※Eメールによる納品の場合、通常ご注文当日~2日以内に納品致します。
※レポート納品後、納品日+5日以内に請求書を発行・送付致します。(請求書発行日より2ヶ月以内の銀行振込条件、カード払いも可能)
MarketsandMarkets社の概要及び新刊レポートはこちらでご確認いただけます。

★グローバルリサーチ資料[世界の通信用電力システム市場(~2027年):グリッドタイプ別(オングリッド、オフグリッド、バッドグリッド)、コンポーネント別、電源別、技術別(AC電源システム、DC電源システム)、電力定格別(10kW以下、10〜20kW、20kW以上)、地域別]についてメールでお問い合わせはこちら
*** レポート概要(サマリー)***

マーケッツアンドマーケッツ社は、世界の通信用電力システム市場規模が、2022年39億ドルから2027年54億ドルまで年平均7.1%成長すると予測しています。本調査資料では、通信用電力システムの世界市場を調査対象とし、イントロダクション、調査手法、エグゼクティブサマリー、プレミアムインサイト、市場概要、グリッドタイプ別(オングリッド、オフグリッド、バッドグリッド)分析、電力定格別(10kW以下、10〜20kW、20kW以上)分析、電源別(ディーゼル‐バッテリー、ディーゼル‐ソーラー、ディーゼル‐風力、複数電源)分析、技術別(AC電源システム、DC電源システム)分析、地域別分析、競争状況、企業情報などの項目を掲載しています。
・イントロダクション
・調査手法
・エグゼクティブサマリー
・プレミアムインサイト
・市場概要
・世界の通信用電力システム市場規模:グリッドタイプ別(オングリッド、オフグリッド、バッドグリッド)
・世界の通信用電力システム市場規模:電力定格別(10kW以下、10〜20kW、20kW以上)
・世界の通信用電力システム市場規模:電源別(ディーゼル‐バッテリー、ディーゼル‐ソーラー、ディーゼル‐風力、複数電源)
・世界の通信用電力システム市場規模:技術別(AC電源システム、DC電源システム)
・世界の通信用電力システム市場規模:地域別
・競争状況
・企業情報

“The telecom power system market is projected to grow from USD 3.9billion in 2022 to USD 5.4 billion by 2027; it is expected to grow at a CAGR of 7.1% from 2022 to 2027.”
The key factors fueling the growth of this market include increasing number of telecom infrastructure in remote areas, growing adoption of telecom services and high data traffic, rising awareness about reducing carbon footprint from telecom power systems, growing adoption of hybrid power systems, increasing technological advancements in cellular networks, rising use of GaN-based power devices with evolution of 5G technology, surging requirements for advance telecom infrastructure and M2M connections.

“Increasing number of telecom infrastructure in remote areas”
With the increase in technological advancements in the telecommunications sector, the need for power-efficient networks also rises. The number of users connected to a network increases due to various services provided by service providers. To provide users with high-speed, large-scale broadband services, and computational activities, service providers install numerous devices/equipment, such as routers, servers, switches, and radio base stations, in locations such as data centers, companies, homes, streets, and public spaces. Also, to increase the energy efficiency of these devices, along with power systems, cooling systems, and batteries, there is an increased requirement for efficient power management solutions. With the increase in the number of users and telecom infrastructure in rural areas, requirements for telecom power systems of the networks will also witness significant growth. Moreover, the increase in the usage of telecommunication services in remote areas due to the growing work from home culture for schools, offices, etc. has been leading to an increase in the number of telecom infrastructure for the provision of these services.

“Growing adoption of telecom services and high data traffic”
With time, technological advancements have increased, which tend to make communication easier and efficient, and people have shifted from wired technologies to wireless technologies. With time and understanding about telecommunication services such as voice, internet, networking, and data services, people have started adopting them at a faster pace. With the growing need for telecommunication services, they are now used in all sectors i.e., schools, offices, data centers, healthcare, etc. With the smoother work execution including better communication services, improved internet services pertaining to better file transfer in offices, etc. people have started trusting these services for their day-to-day uses and necessities. The rapid adoption of these services will lead to enhanced telecom infrastructure development in terms of more towers to provide services to more people and hence, higher demand for telecom power systems. The increasing number of wireless devices that can access mobile networks is leading to the growth of mobile data traffic. As the number of mobile devices with advanced computing and multimedia capabilities is increasing, the demand for more capable and intelligent networks is also growing simultaneously.

“Rising awareness of reducing carbon footprint in telecom power systems”
The majority of the telecom tower sites across the world are in off-grid and bad-grid locations (where electricity is not continuously available throughout the day) and are powered by diesel generators. The diesel generators are of 10–15kVA capacity, have diesel consumption of about two liters per hour, and produce 2.63 kg carbon dioxide (CO2) per liter. Thus, diesel consumption leads to huge emissions of CO2 leading to a higher carbon footprint. There has been a considerable increase in the average temperature of the earth in the past century. This temperature rise is attributed to the effects of global warming brought about by the accumulation of greenhouse gases (GHG) in the atmosphere. Increasing public demand for corporate social responsibility and a genuine desire to bring positive changes in the environment are leading telecommunication service providers and their suppliers to reduce their carbon footprint. In the decade 2010–2020, carbon emissions from the telecom industry had increased by about 124%, which means an increase in the carbon footprint, which can lead to global warming. This carbon emission issue is taken seriously by the telecom industry and hence, a shift toward green telecommunication is observed by adopting energy efficient technologies or renewable energy technologies such as diesel-solar, diesel-wind to produce electricity at telecom tower sites.

“Asia Pacific is projected to become the fastest geographical market between 2022 and 2027”
The large population in APAC has resulted in an extensive pool of mobile subscribers for telecommunication companies. The region is the largest contributor to the total number of mobile subscribers across the world. It is expected to witness an increase in the number of these subscribers in the coming years. APAC is a diversified region with its countries transitioning toward digital transformation. The region is set to dominate 5G, edge computing, blockchain, and 5G core technologies owing to its size and diversity, as well as due to strategic lead taken by countries, including Singapore, South Korea, China, Australia, and Japan. Asian telecommunication service providers, vendors, and government firms are determined to take the lead in advanced telecom network deployments. Most of the leading industrialized economies of the world are in APAC, and the region is witnessing dynamic changes in terms of the adoption of new technologies and advancements in organizations across various industries. The high adoption rate of new technologies in APAC has made it a lucrative market for telecom power systems; APAC exhibits a large-scale growth in the telecom sector, which is observed due to a large proportion of the population in this region. Since about 60% of the world population resides in this region, it accounts for a large portion growth of telecom services in this region.

Breakdown of profiles of primary participants:
• By Company: Tier 1 = 35%, Tier 2 = 45%, and Tier 3 = 20%
• By Designation: C-level Executives = 40%, Directors = 35%, and Others (sales, marketing, and product managers, as well as members of various organizations) = 25%
• By Region: North America = 40%, APAC = 30%, Europe=20%, and ROW=10%

Major players profiled in this report:
The telecom power system market is dominated by a few established players such as Eaton (US), Huawei Technologies (China), Cummins (China), ZTE Corporation (China), General Electric (US) and Schneider Electric (France).

Research coverage
This report offers detailed insights into the telecom power system market based on component (rectifiers, inverters, convertors, controllers, generators, heat management systems, others (circuit breakers, surge protection devices, solar or PV cells, wind turbines)), technology (AC and DC power systems), grid type (On-grid, Off-grid and Bad grid), power source (diesel-battery, diesel-solar, diesel-wind power sources and multiple power sources), power rating (below 10 kW, 10-20 kW, above 20 kW) and region (North America, Europe, Asia Pacific (APAC), and Rest of the World (RoW) which includes the Middle East, Africa, and South America.

The report also provides a comprehensive review of market drivers, restraints, opportunities, and challenges in the telecom power system market. The report also covers qualitative aspects in addition to the quantitative aspects of these markets.

Key Benefits of Buying the Report
The report will help the leaders/new entrants in this market with information on the closest approximations of the revenue numbers for the overall market and the sub-segments. This report will help stakeholders understand the competitive landscape and gain more insights to better position their businesses and plan suitable go-to-market strategies. The report also helps stakeholders understand the pulse of the telecom power system market and provides them information on key market drivers, restraints, challenges, and opportunities.

*** レポート目次(コンテンツ)***

1 INTRODUCTION 22
1.1 STUDY OBJECTIVES 22
1.2 MARKET DEFINITION 22
1.3 STUDY SCOPE 23
1.3.1 MARKET SEGMENTATION 23
FIGURE 1 TELECOM POWER SYSTEM MARKET SEGMENTATION 23
1.3.2 GEOGRAPHIC SCOPE 23
1.3.3 INCLUSIONS AND EXCLUSIONS 24
1.3.4 YEARS CONSIDERED 25
1.4 CURRENCY 25
1.5 STAKEHOLDERS 25
1.6 SUMMARY OF CHANGES 26
2 RESEARCH METHODOLOGY 27
2.1 RESEARCH DATA 27
FIGURE 2 TELECOM POWER SYSTEM MARKET: RESEARCH DESIGN 27
2.1.1 SECONDARY DATA 28
2.1.1.1 Secondary sources 28
2.1.2 PRIMARY DATA 29
2.1.2.1 Primary interviews with experts 29
2.1.2.2 Breakdown of primary interviews 29
2.1.2.3 Key data from primary sources 30
2.1.2.4 Key industry insights 30
2.2 MARKET SIZE ESTIMATION 31
FIGURE 3 TELECOM POWER SYSTEM MARKET: PROCESS FLOW OF MARKET SIZE ESTIMATION 31
2.2.1 TOP-DOWN APPROACH 31
2.2.1.1 Approach for capturing market size by top-down analysis
(supply side) 32
FIGURE 4 TOP-DOWN APPROACH: MARKET SIZE ESTIMATION METHODOLOGY: APPROACH 1 SUPPLY SIDE 32
FIGURE 5 MARKET SIZE ESTIMATION METHODOLOGY: APPROACH 2 – SUPPLY SIDE 33
2.2.2 BOTTOM-UP APPROACH 34
2.2.2.1 Approach for capturing market share by bottom-up analysis
(demand side) 34
FIGURE 6 MARKET SIZE ESTIMATION METHODOLOGY: APPROACH 2 – DEMAND SIDE 34
2.3 MARKET BREAKDOWN AND DATA TRIANGULATION 35
FIGURE 7 DATA TRIANGULATION 35

2.4 RESEARCH ASSUMPTIONS 36
TABLE 1 ASSUMPTIONS FOR RESEARCH STUDY 36
2.5 LIMITATIONS 37
2.6 RISK FACTORS 37
3 EXECUTIVE SUMMARY 38
FIGURE 8 TELECOM POWER SYSTEM MARKET, 2018–2027 (USD BILLION) 39
3.1 TELECOM POWER SYSTEM MARKET SCENARIO 39
FIGURE 9 GROWTH PROJECTIONS FOR TELECOM POWER SYSTEM MARKET IN REALISTIC, OPTIMISTIC, AND PESSIMISTIC SCENARIOS 39
3.1.1 REALISTIC SCENARIO 40
3.1.2 PESSIMISTIC SCENARIO 40
3.1.3 OPTIMISTIC SCENARIO 40
FIGURE 10 BAD GRID SEGMENT TO HOLD LARGEST SHARE OF TELECOM POWER SYSTEM MARKET, BY GRID TYPE, DURING FORECAST PERIOD 40
FIGURE 11 INVERTERS TO REGISTER HIGHEST CAGR IN TELECOM POWER SYSTEM MARKET, BY COMPONENT, DURING FORECAST PERIOD 41
FIGURE 12 DIESEL-BATTERY SEGMENT HELD LARGEST SHARE, BY POWER SOURCE,
OF TELECOM POWER SYSTEM MARKET IN 2021 41
FIGURE 13 APAC TO EXHIBIT HIGHEST CAGR IN GLOBAL TELECOM POWER SYSTEM MARKET DURING FORECAST PERIOD 42
4 PREMIUM INSIGHTS 43
4.1 ATTRACTIVE OPPORTUNITIES IN TELECOM POWER SYSTEM MARKET 43
FIGURE 14 INCREASING NUMBER OF TELECOM INFRASTRUCTURES IN REMOTE AREAS TO CREATE GROWTH OPPORTUNITIES FOR MARKET 43
4.2 TELECOM POWER SYSTEM MARKET, BY POWER SOURCE 44
FIGURE 15 DIESEL-SOLAR POWER SOURCE TO WITNESS HIGHEST CAGR IN TELECOM POWER SYSTEM MARKET DURING FORECAST PERIOD 44
4.3 TELECOM POWER SYSTEM MARKET, BY GRID TYPE 44
FIGURE 16 BAD-GRID SEGMENT HELD LARGEST SHARE OF TELECOM POWER SYSTEM MARKET IN 2021 44
4.4 TELECOM POWER SYSTEM MARKET, BY COMPONENT 45
FIGURE 17 INVERTER COMPONENT SEGMENT TO EXPERIENCE HIGHEST CAGR IN TELECOM POWER SYSTEM MARKET DURING FORECAST PERIOD 45
4.5 COUNTRY-WISE TELECOM POWER SYSTEM MARKET GROWTH 46
FIGURE 18 TELECOM POWER SYSTEM MARKET IN INDIA TO REGISTER HIGHEST CAGR DURING FORECAST PERIOD 46
5 MARKET OVERVIEW 47
5.1 INTRODUCTION 47
5.2 MARKET DYNAMICS 47
FIGURE 19 DRIVERS, RESTRAINTS, OPPORTUNITIES, AND CHALLENGES 47
5.2.1 DRIVERS 48
FIGURE 20 TELECOM POWER SYSTEM MARKET DRIVERS AND THEIR IMPACT 48
5.2.1.1 Increasing number of telecom infrastructures in remote areas 48
TABLE 2 4G TECHNOLOGY PENETRATION IN URBAN VS RURAL AREAS 49
5.2.1.2 Growing adoption of telecom services and high data traffic 49
FIGURE 21 MOBILE DATA TRAFFIC 2018–2022 49
TABLE 3 PENETRATION OF INDIVIDUALS USING INTERNET 50
5.2.1.3 Rising awareness about reducing carbon footprint from telecom power systems 50
5.2.2 RESTRAINTS 51
FIGURE 22 TELECOM POWER SYSTEM MARKET RESTRAINTS AND THEIR IMPACT 51
5.2.2.1 High deployment and operational costs 51
5.2.2.2 Environmental concerns due to usage of diesel 51
5.2.3 OPPORTUNITY 52
FIGURE 23 TELECOM POWER SYSTEM MARKET OPPORTUNITIES AND THEIR IMPACT 52
5.2.3.1 Growing adoption of hybrid power systems 52
5.2.3.2 Increasing technological advancements in cellular networks
(5G, LTE services, etc.) 53
TABLE 4 4G TECHNOLOGY PENETRATION 53
5.2.3.3 Surging requirements for advanced telecom infrastructure and
M2M connections 53
FIGURE 24 CELLULAR IOT CONNECTIONS, 2019 VS. 2025 54
5.2.3.4 Rising use of GaN-based power devices with evolution of 5G technology 54
5.2.4 CHALLENGES 55
FIGURE 25 TELECOM POWER SYSTEM MARKET CHALLENGES AND THEIR IMPACT 55
5.2.4.1 Lack of infrastructure development for energy management 55
5.2.4.2 Design challenges for telecom power systems 55
5.3 TRENDS/DISRUPTIONS IMPACTING CUSTOMERS’ BUSINESSES 56
FIGURE 26 TRENDS/DISRUPTIONS IMPACTING CUSTOMERS’ BUSINESSES RELATED TO TELECOM POWER SYSTEM MARKET 56
5.4 ECOSYSTEM/MARKET MAP 57
TABLE 5 TELECOM POWER SYSTEM MARKET: ECOSYSTEM 57
FIGURE 27 KEY PLAYERS IN TELECOM POWER SYSTEM ECOSYSTEM 58
5.4.1 TELECOM POWER SYSTEM MANUFACTURERS 58
5.4.2 TELECOM NETWORK SOLUTION PROVIDERS 58
5.4.3 SYSTEM INTEGRATORS 58
5.4.4 NETWORK OPERATORS 59
5.5 TECHNOLOGY ANALYSIS 59
5.5.1 5G NETWORK 59
5.5.2 SMART MANUFACTURING 59
5.5.3 ASSET PERFORMANCE MANAGEMENT SYSTEMS 60
5.6 VALUE CHAIN ANALYSIS 60
FIGURE 28 VALUE CHAIN: TELECOM POWER SYSTEM MARKET 60

5.7 PATENT ANALYSIS 62
TABLE 6 NOTABLE PATENTS PERTAINING TO TELECOM POWER SYSTEM MARKET 62
TABLE 7 NUMBER OF PATENTS REGISTERED RELATED TO TELECOM POWER SYSTEM MARKET IN LAST 10 YEARS 66
FIGURE 29 TOP 10 COMPANIES WITH HIGHEST NO. OF PATENT APPLICATIONS IN LAST 10 YEARS 67
FIGURE 30 NO. OF PATENTS GRANTED PER YEAR, 2012–2021 67
5.8 REGULATORY LANDSCAPE 68
5.8.1 NORTH AMERICA 68
5.8.2 EUROPE 68
5.8.3 APAC 69
5.8.4 GLOBAL 69
5.9 TRADE DATA 69
5.9.1 IMPORT DATA 70
TABLE 8 IMPORT DATA FOR HS CODE 8504, BY COUNTRY, 2016–2020 (USD BILLION) 70
5.9.2 EXPORT DATA 70
TABLE 9 EXPORT DATA FOR HS CODE 8504, BY COUNTRY, 2016–2020 (USD BILLION) 70
5.10 CASE STUDY ANALYSIS 71
5.10.1 POWERING OF LARGE TELECOM AND SEASONAL AIR CONDITIONING 71
5.10.2 ADVANCED REMOTE TELECOM SITE AUTOMATION 71
5.10.3 OFF-GRID LTE WIRELESS NETWORKS 72
5.10.4 HYBRID OFF-GRID TELECOM SITES 72
5.10.5 HD-PLC FOR A FASTER, CHEAPER SMART METERING 73
5.11 KEY CONFERENCES & EVENTS DURING 2022–2023 73
TABLE 10 TELECOM POWER SYSTEM MARKET: DETAILED LIST OF CONFERENCES & EVENTS 73
5.12 PORTER’S FIVE FORCE ANALYSIS 77
TABLE 11 IMPACT OF PORTER’S FIVE FORCES ON TELECOM POWER SYSTEM MARKET 77
FIGURE 31 TELECOM POWER SYSTEM MARKET: PORTER’S FIVE FORCES ANALYSIS 77
5.12.1 INTENSITY OF COMPETITIVE RIVALRY 78
5.12.2 THREAT OF SUBSTITUTES 78
5.12.3 BARGAINING POWER OF BUYERS 78
5.12.4 BARGAINING POWER OF SUPPLIERS 78
5.12.5 THREAT OF NEW ENTRANTS 78
5.13 KEY STAKEHOLDERS & BUYING CRITERIA 79
5.13.1 KEY STAKEHOLDERS IN BUYING PROCESS 79
FIGURE 32 INFLUENCE OF STAKEHOLDERS IN BUYING PROCESS FOR TOP 3 POWER SOURCES 79
TABLE 12 INFLUENCE OF STAKEHOLDERS IN BUYING PROCESS FOR TOP 3 POWER SOURCES (%) 79
5.13.2 BUYING CRITERIA 80
FIGURE 33 KEY BUYING CRITERIA FOR TOP 3 POWER SOURCES 80
TABLE 13 KEY BUYING CRITERIA FOR TOP 3 POWER SOURCES 80
5.14 AVERAGE SELLING PRICE (ASP) ANALYSIS 81
FIGURE 34 GLOBAL ASP OF TELECOM POEWR SYSTEMS, 2021 81
6 TELECOM POWER SYSTEM MARKET, BY COMPONENT 82
6.1 INTRODUCTION 83
FIGURE 35 INVERTERS TO REGISTER HIGHEST CAGR DURING FORECAST PERIOD 83
TABLE 14 TELECOM POWER SYSTEM MARKET, BY COMPONENT,
2018–2021 (USD MILLION) 83
TABLE 15 TELECOM POWER SYSTEM MARKET, BY COMPONENT,
2022–2027 (USD MILLION) 84
6.2 RECTIFIERS 84
6.2.1 RECTIFIERS CONVERT ALTERNATING CURRENT TO DIRECT CURRENT AND PROVIDE POWER TO CHARGE BATTERIES 84
6.3 INVERTERS 85
6.3.1 INVERTERS TO REGISTER HIGHEST CAGR IN TELECOM POWER SYSTEM MARKET DURING FORECAST PERIOD 85
6.4 CONVERTERS 85
6.4.1 MAJOR FUNCTION OF CONVERTERS IS TO CONVERT UNREGULATED VOLTAGE INTO REGULATED VOLTAGE 85
6.5 CONTROLLERS 86
6.5.1 CONTROLLERS PROVIDE INTELLIGENT CONTROL AND MONITOR OPERATIONAL PARAMETERS OF TEMECOM POEWR SYSTEMS 86
6.6 HEAT MANAGEMENT SYSTEMS 86
6.6.1 HEAT MANAGEMENT SYSTEMS OFFER INCLUDE HEAT EXCHANGE, DIRECT VENTILATION, THERMOELECTRIC COOLING, AND DC-POWERED AIR CONDITIONING 86
6.7 GENERATORS 87
6.7.1 GENERATORS PROVIDE RELIABILITY AND LONG HOURS OF USE IN REMOTE LOCATIONS WITHOUT COMPROMISING PERFORMANCE 87
6.8 OTHERS 87
6.8.1 POWER DISTRIBUTION UNITS 87
6.8.2 BATTERIES 88
6.8.3 SOLAR OR PV CELLS 88
6.8.4 WIND TURBINES 88
6.8.5 SURGE PROTECTION DEVICES 89
6.8.6 CIRCUIT BREAKERS 89
7 TELECOM POWER SYSTEM MARKET, BY GRID TYPE 91
7.1 INTRODUCTION 92
FIGURE 36 TELECOM POWER SYSTEM FOR OFF-GRID TYPE TO GROW AT HIGHEST CAGR DURING FORECAST PERIOD 92
TABLE 16 TELECOM POWER SYSTEM MARKET, BY GRID TYPE,
2018–2021 (USD MILLION) 92
TABLE 17 TELECOM POWER SYSTEM MARKET, BY GRID TYPE,
2022–2027 (USD MILLION) 92

7.2 ON-GRID 93
7.2.1 ON-GRID-CONNECTED TELECOM POWER SYSTEMS HAVE LOWER ENVIRONMENTAL IMPACT 93
TABLE 18 TELECOM POWER SYSTEM MARKET FOR ON-GRID, BY REGION,
2018–2021 (USD MILLION) 93
TABLE 19 TELECOM POWER SYSTEM MARKET FOR ON-GRID, BY REGION,
2022–2027 (USD MILLION) 93
7.3 OFF-GRID 94
7.3.1 OFF-GRID-CONNECTED TELECOM POWER SYSTEMS ARE EXPECTED TO WITNESS HIGHEST CAGR DURING FORECAST PERIOD 94
TABLE 20 TELECOM POWER SYSTEM MARKET FOR OFF-GRID, BY REGION,
2018–2021 (USD MILLION) 94
TABLE 21 TELECOM POWER SYSTEM MARKET FOR OFF-GRID BY REGION,
2022–2027 (USD MILLION) 95
7.4 BAD GRID 95
7.4.1 BAD GRID-CONNECTED TELECOM POWER SYSTEMS ARE MAINLY USED IN DEVELOPING ECONOMIES SUCH AS INDIA, BRAZIL, AND AFRICAN COUNTRIES 95
TABLE 22 TELECOM POWER SYSTEM MARKET FOR BAD GRID, BY REGION,
2018–2021 (USD MILLION) 96
TABLE 23 TELECOM POWER SYSTEM MARKET FOR BAD GRID BY REGION,
2022–2027 (USD MILLION) 96
8 TELECOM POWER SYSTEM MARKET, BY POWER RATING 97
8.1 INTRODUCTION 98
FIGURE 37 TELECOM POWER SYSTEMS WITH BELOW 10 KW POWER RATING TO DOMINATE MARKET DURING FORECAST PERIOD 98
TABLE 24 TELECOM POWER SYSTEM MARKET, BY POWER RATING,
2018–2021 (USD MILLION) 98
TABLE 25 TELECOM POWER SYSTEM MARKET, BY POWER RATING,
2022–2027 (USD MILLION) 99
TABLE 26 TELECOM POWER SYSTEM MARKET, BY POWER RATING,
2018–2021 (THOUSAND UNITS) 99
TABLE 27 TELECOM POWER SYSTEM MARKET, BY POWER RATING,
2022–2027 (THOUSAND UNITS) 99
8.2 BELOW 10 KW 100
8.2.1 TELECOM POWER SYSTEMS BELOW 10 KW ARE MAINLY USED IN CELL TOWERS, BTS, AND BASE STATIONS FOR TELECOM TOWERS 100
8.3 10–20 KW 100
8.3.1 POWER SYSTEMS OF 10–20 KW RATING ARE PRIMARILY USED IN
5G TOWERS AND RECTIFIER MODULES 100
8.4 ABOVE 20 KW 100
8.4.1 POWER SYSTEMS ABOVE 20 KW ARE MAINLY USED IN ACCESS NETWORKS, DATA CENTERS, AND INDOOR POWER SYSTEMS 100

9 TELECOM POWER SYSTEM MARKET, BY POWER SOURCE 101
9.1 INTRODUCTION 102
FIGURE 38 TELECOM POWER SYSTEM MARKET FOR DIESEL-SOLAR POWER SOURCE TO GROW AT HIGHEST CAGR DURING FORECAST PERIOD 102
TABLE 28 TELECOM POWER SYSTEM MARKET, BY POWER SOURCE,
2018–2021 (USD MILLION) 102
TABLE 29 TELECOM POWER SYSTEM MARKET, BY POWER SOURCE,
2022–2027 (USD MILLION) 103
9.2 DIESEL–BATTERY POWER SOURCE 103
9.2.1 DIESEL–BATTERY POWER SOURCE IS MOST COMMON POWER SOURCE USED FOR TELECOM POWER SYSTEMS 103
TABLE 30 ADVANTAGES OF DIESEL–BATTERY POWER SOURCE 103
TABLE 31 DISADVANTAGES OF DIESEL–BATTERY POWER SOURCE 104
TABLE 32 TELECOM POWER SYSTEM MARKET FOR DIESEL–BATTERY POWER SOURCE, BY REGION, 2018–2021 (USD MILLION) 104
TABLE 33 TELECOM POWER SYSTEM MARKET FOR DIESEL–BATTERY POWER SOURCE BY REGION, 2022–2027 (USD MILLION) 105
TABLE 34 TELECOM POWER SYSTEM MARKET FOR DIESEL–BATTERY POWER SOURCE IN NORTH AMERICA, BY COUNTRY, 2018–2021 (USD MILLION) 105
TABLE 35 TELECOM POWER SYSTEM MARKET FOR DIESEL–BATTERY POWER SOURCE IN NORTH AMERICA, BY COUNTRY, 2022–2027 (USD MILLION) 105
TABLE 36 TELECOM POWER SYSTEM MARKET FOR DIESEL–BATTERY POWER SOURCE IN EUROPE, BY COUNTRY, 2018–2021 (USD MILLION) 106
TABLE 37 TELECOM POWER SYSTEM MARKET FOR DIESEL–BATTERY POWER SOURCE IN EUROPE, BY COUNTRY, 2022–2027 (USD MILLION) 106
TABLE 38 TELECOM POWER SYSTEM MARKET FOR DIESEL–BATTERY POWER SOURCE IN APAC, BY COUNTRY, 2018–2021 (USD MILLION) 106
TABLE 39 TELECOM POWER SYSTEM MARKET FOR DIESEL–BATTERY POWER SOURCE IN APAC, BY COUNTRY, 2022–2027 (USD MILLION) 107
TABLE 40 TELECOM POWER SYSTEM MARKET FOR DIESEL–BATTERY POWER SOURCE IN ROW, BY REGION, 2018–2021 (USD MILLION) 107
TABLE 41 TELECOM POWER SYSTEM MARKET FOR DIESEL–BATTERY POWER SOURCE IN ROW, BY REGION, 2022–2027 (USD MILLION) 107
9.3 DIESEL–SOLAR POWER SOURCE 108
9.3.1 DIESEL–SOLAR POWER SOURCE IS DESIGNED TO USE IN MORE REMOTE CELLULAR BASE STATIONS 108
TABLE 42 ADVANTAGES OF DIESEL–SOLAR POWER SOURCE 108
TABLE 43 DISADVANTAGES OF DIESEL–SOLAR POWER SOURCE 109
TABLE 44 TELECOM POWER SYSTEM MARKET FOR DIESEL–SOLAR POWER SOURCE,
BY REGION, 2018–2021 (USD MILLION) 109
TABLE 45 TELECOM POWER SYSTEM MARKET FOR DIESEL–SOLAR POWER SOURCE,
BY REGION, 2022–2027 (USD MILLION) 110
TABLE 46 TELECOM POWER SYSTEM MARKET FOR DIESEL–SOLAR POWER SOURCE IN NORTH AMERICA, BY COUNTRY, 2018–2021 (USD MILLION) 110
TABLE 47 TELECOM POWER SYSTEM MARKET FOR DIESEL–SOLAR POWER SOURCE IN NORTH AMERICA, BY COUNTRY, 2022–2027 (USD MILLION) 110
TABLE 48 TELECOM POWER SYSTEM MARKET FOR DIESEL–SOLAR POWER SOURCE IN EUROPE, BY COUNTRY, 2018–2021 (USD MILLION) 111
TABLE 49 TELECOM POWER SYSTEM MARKET FOR DIESEL–SOLAR POWER SOURCE IN EUROPE, BY COUNTRY, 2022–2027 (USD MILLION) 111
TABLE 50 TELECOM POWER SYSTEM MARKET FOR DIESEL–SOLAR POWER SOURCE IN APAC, BY COUNTRY, 2018–2021 (USD MILLION) 111
TABLE 51 TELECOM POWER SYSTEM MARKET FOR DIESEL–SOLAR POWER SOURCE IN APAC, BY COUNTRY, 2022–2027 (USD MILLION) 112
TABLE 52 TELECOM POWER SYSTEM MARKET FOR DIESEL–SOLAR POWER SOURCE IN ROW, BY REGION, 2018–2021 (USD MILLION) 112
TABLE 53 TELECOM POWER SYSTEM MARKET FOR DIESEL–SOLAR POWER SOURCE IN ROW, BY REGION, 2022–2027 (USD MILLION) 112
9.4 DIESEL–WIND POWER SOURCE 113
9.4.1 DIESEL–WIND POWER SYSTEMS ARE WELL SUITED IN BAD-GRID AND OFF-GRID AREAS 113
TABLE 54 ADVANTAGES OF DIESEL–WIND POWER SOURCE 113
TABLE 55 DISADVANTAGES OF DIESEL–WIND POWER SOURCE 113
TABLE 56 TELECOM POWER SYSTEM MARKET FOR DIESEL–WIND POWER SOURCE,
BY REGION, 2018–2021 (USD MILLION) 114
TABLE 57 TELECOM POWER SYSTEM MARKET FOR DIESEL–WIND POWER SOURCE,
BY REGION, 2022–2027 (USD MILLION) 114
TABLE 58 TELECOM POWER SYSTEM MARKET FOR DIESEL–WIND POWER SOURCE IN NORTH AMERICA, BY COUNTRY, 2018–2021 (USD MILLION) 114
TABLE 59 TELECOM POWER SYSTEM MARKET FOR DIESEL–WIND POWER SOURCE IN NORTH AMERICA, BY COUNTRY, 2022–2027 (USD MILLION) 115
TABLE 60 TELECOM POWER SYSTEM MARKET FOR DIESEL–WIND POWER SOURCE IN EUROPE, BY COUNTRY, 2018–2021 (USD MILLION) 115
TABLE 61 TELECOM POWER SYSTEM MARKET FOR DIESEL–WIND POWER SOURCE IN EUROPE, BY COUNTRY, 2022–2027 (USD MILLION) 115
TABLE 62 TELECOM POWER SYSTEM MARKET FOR DIESEL–WIND POWER SOURCE IN APAC, BY COUNTRY, 2018–2021 (USD MILLION) 116
TABLE 63 TELECOM POWER SYSTEM MARKET FOR DIESEL–WIND POWER SOURCE IN APAC, BY COUNTRY, 2022–2027 (USD MILLION) 116
TABLE 64 TELECOM POWER SYSTEM MARKET FOR DIESEL–WIND POWER SOURCE IN ROW, BY REGION, 2018–2021 (USD MILLION) 116
TABLE 65 TELECOM POWER SYSTEM MARKET FOR DIESEL–WIND POWER SOURCE IN ROW, BY REGION, 2022–2027 (USD MILLION) 117
9.5 MULTIPLE POWER SOURCES (DIESEL/SOLAR/WIND/BATTERY/BIOMASS) 117
9.5.1 MULTIPLE POWER SOURCES ENABLE COST-EFFECTIVE WAY OF GENERATING ELECTRICITY 117
TABLE 66 ADVANTAGES OF DIESEL–BIOMASS POWER SOURCE 118
TABLE 67 DISADVANTAGES OF DIESEL–BIOMASS POWER SOURCE 118
TABLE 68 TELECOM POWER SYSTEM MARKET FOR MULTIPLE POWER SOURCES,
BY REGION, 2018–2021 (USD MILLION) 118
TABLE 69 TELECOM POWER SYSTEM MARKET FOR MULTIPLE POWER SOURCES,
BY REGION, 2022–2027 (USD MILLION) 119
TABLE 70 TELECOM POWER SYSTEM MARKET FOR MULTIPLE POWER SOURCES IN NORTH AMERICA, BY COUNTRY, 2018–2021 (USD MILLION) 119
TABLE 71 TELECOM POWER SYSTEM MARKET FOR MULTIPLE POWER SOURCES IN NORTH AMERICA, BY COUNTRY, 2022–2027 (USD MILLION) 119
TABLE 72 TELECOM POWER SYSTEM MARKET FOR MULTIPLE POWER SOURCES IN EUROPE, BY COUNTRY, 2018–2021 (USD MILLION) 120
TABLE 73 TELECOM POWER SYSTEM MARKET FOR MULTIPLE POWER SOURCES IN EUROPE, BY COUNTRY, 2022–2027 (USD MILLION) 120
TABLE 74 TELECOM POWER SYSTEM MARKET FOR MULTIPLE POWER SOURCES IN APAC, BY COUNTRY, 2018–2021 (USD MILLION) 120
TABLE 75 TELECOM POWER SYSTEM MARKET FOR MULTIPLE POWER SOURCES IN APAC, BY COUNTRY, 2022–2027 (USD MILLION) 121
TABLE 76 TELECOM POWER SYSTEM MARKET FOR MULTIPLE POWER SOURCES IN ROW, BY REGION, 2018–2021 (USD MILLION) 121
TABLE 77 TELECOM POWER SYSTEM MARKET FOR MULTIPLE POWER SOURCES IN ROW, BY REGION, 2022–2027 (USD MILLION) 121
10 TELECOM POWER SYSTEM MARKET, BY TECHNOLOGY 122
10.1 INTRODUCTION 123
FIGURE 39 DC POWER SYSTEMS TO HOLD LARGER SHARE OF TELECOM POWER SYSTEM MARKET DURING FORECAST PERIOD 123
TABLE 78 TELECOM POWER SYSTEM MARKET, BY TECHNOLOGY,
2018–2021 (USD MILLION) 123
TABLE 79 TELECOM POWER SYSTEM MARKET, BY TECHNOLOGY,
2022–2027 (USD MILLION) 123
10.2 AC POWER SYSTEMS 124
10.2.1 AC POWER SYSTEMS ARE MAINLY USED FOR TESTING RF AMPLIFIERS, SATELLITES, AND DATA CENTERS 124
10.3 DC POWER SYSTEMS 124
10.3.1 DC POWER SYSTEMS ARE MAINLY USED IN TELECOM POWER SYSTEMS 124
11 GEOGRAPHIC ANALYSIS 125
11.1 INTRODUCTION 126
FIGURE 40 APAC TO REGISTER HIGHEST CAGR DURING FORECAST PERIOD 126
TABLE 80 TELECOM POWER SYSTEM MARKET, BY REGION, 2018–2021 (USD MILLION) 126
TABLE 81 TELECOM POWER SYSTEM MARKET, BY REGION, 2022–2027 (USD MILLION) 127
11.2 NORTH AMERICA 127
FIGURE 41 SNAPSHOT: TELECOM POWER SYSTEM MARKET IN NORTH AMERICA 128
TABLE 82 TELECOM POWER SYSTEM MARKET IN NORTH AMERICA, BY COUNTRY, 2018–2021 (USD MILLION) 128
TABLE 83 TELECOM POWER SYSTEM MARKET IN NORTH AMERICA, BY COUNTRY, 2022–2027 (USD MILLION) 129
TABLE 84 TELECOM POWER SYSTEM MARKET IN NORTH AMERICA, BY POWER SOURCE, 2018–2021 (USD MILLION) 129
TABLE 85 TELECOM POWER SYSTEM MARKET IN NORTH AMERICA, BY POWER SOURCE, 2022–2027 (USD MILLION) 129

11.2.1 US 129
11.2.1.1 US held largest size of North American market in 2021 129
TABLE 86 TELECOM POWER SYSTEM MARKET IN US, BY POWER SOURCE,
2018–2021 (USD MILLION) 130
TABLE 87 TELECOM POWER SYSTEM MARKET IN US, BY POWER SOURCE,
2022–2027 (USD MILLION) 130
11.2.2 CANADA 131
11.2.2.1 Demand for telecom power systems in Canada is primarily driven by development of telecom infrastructure in rural areas 131
TABLE 88 TELECOM POWER SYSTEM MARKET IN CANADA, BY POWER SOURCE,
2018–2021 (USD MILLION) 131
TABLE 89 TELECOM POWER SYSTEM MARKET IN CANADA, BY POWER SOURCE,
2022–2027 (USD MILLION) 131
11.2.3 MEXICO 132
11.2.3.1 Mexico is estimated to be fastest-growing market in North America during forecast period 132
TABLE 90 TELECOM POWER SYSTEM MARKET IN MEXICO, BY POWER SOURCE,
2018–2021 (USD MILLION) 132
TABLE 91 TELECOM POWER SYSTEM MARKET IN MEXICO, BY POWER SOURCE,
2022–2027 (USD MILLION) 132
11.3 EUROPE 133
FIGURE 42 SNAPSHOT: TELECOM POWER SYSTEM MARKET IN EUROPE 134
TABLE 92 TELECOM POWER SYSTEM MARKET IN EUROPE, BY COUNTRY,
2018–2021 (USD MILLION) 134
TABLE 93 TELECOM POWER SYSTEM MARKET IN EUROPE, BY COUNTRY,
2022–2027 (USD MILLION) 135
TABLE 94 TELECOM POWER SYSTEM MARKET IN EUROPE, BY POWER SOURCE,
2018–2021 (USD MILLION) 135
TABLE 95 TELECOM POWER SYSTEM MARKET IN EUROPE, BY POWER SOURCE,
2022–2027 (USD MILLION) 135
11.3.1 UK 136
11.3.1.1 UK is expected to be fastest-growing market in Europe during forecast period 136
TABLE 96 TELECOM POWER SYSTEM MARKET IN UK, BY POWER SOURCE,
2018–2021 (USD MILLION) 136
TABLE 97 TELECOM POWER SYSTEM MARKET IN UK, BY POWER SOURCE,
2022–2027 (USD MILLION) 136
11.3.2 GERMANY 137
11.3.2.1 Germany held largest share of telecom power system market in Europe in 2021 137
TABLE 98 TELECOM POWER SYSTEM MARKET IN GERMANY, BY POWER SOURCE, 2018–2021 (USD MILLION) 137
TABLE 99 TELECOM POWER SYSTEM MARKET IN GERMANY, BY POWER SOURCE, 2022–2027 (USD MILLION) 137

11.3.3 FRANCE 138
11.3.3.1 Expected introduction of upcoming 5G technology provides significant investment opportunities for leading telecom power system providers in France 138
TABLE 100 TELECOM POWER SYSTEM MARKET IN FRANCE, BY POWER SOURCE,
2018–2021 (USD MILLION) 138
TABLE 101 TELECOM POWER SYSTEM MARKET IN FRANCE, BY POWER SOURCE,
2022–2027 (USD MILLION) 138
11.3.4 SPAIN 139
11.3.4.1 Spain has developed telecommunication services with various new technologies and innovation trends 139
TABLE 102 TELECOM POWER SYSTEM MARKET IN SPAIN, BY POWER SOURCE,
2018–2021 (USD MILLION) 139
TABLE 103 TELECOM POWER SYSTEM MARKET IN SPAIN, BY POWER SOURCE,
2022–2027 (USD MILLION) 139
11.3.5 REST OF EUROPE 140
TABLE 104 TELECOM POWER SYSTEM MARKET IN REST OF EUROPE, BY POWER SOURCE, 2018–2021 (USD MILLION) 140
TABLE 105 TELECOM POWER SYSTEM MARKET IN REST OF EUROPE, BY POWER SOURCE, 2022–2027 (USD MILLION) 140
11.4 APAC 140
FIGURE 43 SNAPSHOT: TELECOM POWER SYSTEM MARKET IN APAC 141
TABLE 106 TELECOM POWER SYSTEM MARKET IN APAC, BY COUNTRY,
2018–2021 (USD MILLION) 142
TABLE 107 TELECOM POWER SYSTEM MARKET IN APAC, BY COUNTRY,
2022–2027 (USD MILLION) 142
TABLE 108 TELECOM POWER SYSTEM MARKET IN APAC, BY POWER SOURCE,
2018–2021 (USD MILLION) 142
TABLE 109 TELECOM POWER SYSTEM MARKET IN APAC, BY POWER SOURCE,
2022–2027 (USD MILLION) 143
11.4.1 CHINA 143
11.4.1.1 China held largest share of telecom power system market in APAC
in 2021 143
TABLE 110 TELECOM POWER SYSTEM MARKET IN CHINA, BY POWER SOURCE,
2018–2021 (USD MILLION) 144
TABLE 111 TELECOM POWER SYSTEM MARKET IN CHINA, BY POWER SOURCE,
2022–2027 (USD MILLION) 144
11.4.2 JAPAN 144
11.4.2.1 Development and deployment of advanced telecom network infrastructures present opportunities for telecom power system providers in Japan 144
TABLE 112 TELECOM POWER SYSTEM MARKET IN JAPAN, BY POWER SOURCE,
2018–2021 (USD MILLION) 145
TABLE 113 TELECOM POWER SYSTEM MARKET IN JAPAN, BY POWER SOURCE,
2022–2027 (USD MILLION) 145

11.4.3 SOUTH KOREA 145
11.4.3.1 South Korea is among leaders in terms of development of telecom networks 145
TABLE 114 TELECOM POWER SYSTEM MARKET IN SOUTH KOREA, BY POWER SOURCE, 2018–2021 (USD MILLION) 146
TABLE 115 TELECOM POWER SYSTEM MARKET IN SOUTH KOREA, BY POWER SOURCE, 2022–2027 (USD MILLION) 146
11.4.4 INDIA 146
11.4.4.1 India is expected to be fastest-growing market during forecast period 146
TABLE 116 TELECOM POWER SYSTEM MARKET IN INDIA, BY POWER SOURCE,
2018–2021 (USD MILLION) 147
TABLE 117 TELECOM POWER SYSTEM MARKET IN INDIA, BY POWER SOURCE,
2022–2027 (USD MILLION) 147
11.4.5 AUSTRALIA & NEW ZEALAND 148
11.4.5.1 Technological advancements and telecom infrastructure developments propel growth of telecom power system market 148
TABLE 118 TELECOM POWER SYSTEM MARKET IN AUSTRALIA & NEW ZEALAND,
BY POWER SOURCE, 2018–2021 (USD MILLION) 148
TABLE 119 TELECOM POWER SYSTEM MARKET IN AUSTRALIA & NEW ZEALAND,
BY POWER SOURCE, 2022–2027 (USD MILLION) 148
11.4.6 REST OF APAC 149
TABLE 120 TELECOM POWER SYSTEM MARKET IN REST OF APAC, BY POWER SOURCE, 2018–2021 (USD MILLION) 149
TABLE 121 TELECOM POWER SYSTEM MARKET IN REST OF APAC, BY POWER SOURCE, 2022–2027 (USD MILLION) 149
11.5 ROW 150
TABLE 122 TELECOM POWER SYSTEM MARKET IN ROW, BY REGION,
2018–2021 (USD MILLION) 150
TABLE 123 TELECOM POWER SYSTEM MARKET IN ROW, BY REGION,
2022–2027 (USD MILLION) 150
TABLE 124 TELECOM POWER SYSTEM MARKET IN ROW, BY POWER SOURCE,
2018–2021 (USD MILLION) 150
TABLE 125 TELECOM POWER SYSTEM MARKET IN ROW, BY POWER SOURCE,
2022–2027 (USD MILLION) 151
11.5.1 MIDDLE EAST AND AFRICA 151
11.5.1.1 Middle East and Africa are expected to witness higher growth of market in RoW during forecast period 151
TABLE 126 TELECOM POWER SYSTEM MARKET IN MIDDLE EAST AND AFRICA,
BY POWER SOURCE, 2018–2021 (USD MILLION) 152
TABLE 127 TELECOM POWER SYSTEM MARKET IN MIDDLE EAST AND AFRICA,
BY POWER SOURCE, 2022–2027 (USD MILLION) 152
11.5.2 SOUTH AMERICA 152
11.5.2.1 Deployment of telecom infrastructures in rural areas propels growth of market in South America 152
TABLE 128 TELECOM POWER SYSTEM MARKET IN SOUTH AMERICA, BY POWER SOURCE, 2018–2021 (USD MILLION) 153
TABLE 129 TELECOM POWER SYSTEM MARKET IN SOUTH AMERICA, BY POWER SOURCE, 2022–2027 (USD MILLION) 153
12 COMPETITIVE LANDSCAPE 154
12.1 OVERVIEW 154
12.2 KEY PLAYER STRATEGIES/RIGHT TO WIN 154
TABLE 130 OVERVIEW OF STRATEGIES DEPLOYED BY KEY MARKET PLAYERS 154
12.2.1 PRODUCT PORTFOLIO 156
12.2.2 REGIONAL FOCUS 156
12.2.3 MANUFACTURING FOOTPRINT 156
12.2.4 ORGANIC/INORGANIC GROWTH STRATEGIES 156
12.3 MARKET SHARE ANALYSIS: TELECOM POWER SYSTEM MARKET, 2021 157
TABLE 131 TELECOM POWER SYSTEM MARKET: DEGREE OF COMPETITION, 2021 157
12.4 5-YEAR COMPANY REVENUE ANALYSIS 158
FIGURE 44 5-YEAR REVENUE ANALYSIS OF TOP FIVE PLAYERS IN TELECOM POWER SYSTEM MARKET 158
12.5 COMPANY EVALUATION QUADRANT 158
12.5.1 STAR 158
12.5.2 EMERGING LEADER 158
12.5.3 PERVASIVE 159
12.5.4 PARTICIPANT 159
FIGURE 45 TELECOM POWER SYSTEM COMPANY EVALUATION QUADRANT, 2021 159
12.5.5 COMPANY FOOTPRINT 160
TABLE 132 OVERALL COMPANY FOOTPRINT 160
TABLE 133 FOOTPRINT OF DIFFERENT COMPANIES FOR VARIOUS POWER SOURCES 161
TABLE 134 FOOTPRINT OF DIFFERENT COMPANIES FOR VARIOUS COMPONENTS 162
TABLE 135 FOOTPRINT OF DIFFERENT COMPANIES FOR VARIOUS REGIONS 163
12.6 START-UP/SME EVALUATION MATRIX 164
TABLE 136 LIST OF START-UPS IN TELECOM POWER SYSTEM MARKET 164
12.6.1 PROGRESSIVE COMPANIES 165
12.6.2 RESPONSIVE COMPANIES 165
12.6.3 DYNAMIC COMPANIES 165
12.6.4 STARTING BLOCKS 165
FIGURE 46 TELECOM POWER SYSTEM MARKET, STARTUP/SME EVALUATION MATRIX, 2021 166
12.7 COMPETITIVE SITUATIONS AND TRENDS 167
12.7.1 PRODUCT LAUNCHES 167
TABLE 137 PRODUCT LAUNCHES, 2020–2022 167
12.7.2 DEALS 173
TABLE 138 DEALS, 2020–2022 173

13 COMPANY PROFILES 175
13.1 INTRODUCTION 175
(Business overview, Products/solutions/services offered, Recent developments & MnM View)*
13.2 KEY PLAYERS 175
13.2.1 EATON 175
TABLE 139 EATON: COMPANY SNAPSHOT 176
FIGURE 47 EATON: COMPANY SNAPSHOT 176
13.2.2 HUAWEI TECHNOLOGIES 182
TABLE 140 HUAWEI TECHNOLOGIES: COMPANY SNAPSHOT 182
FIGURE 48 HUAWEI TECHNOLOGIES: COMPANY SNAPSHOT 183
13.2.3 CUMMINS 188
TABLE 141 CUMMINS: COMPANY SNAPSHOT 188
FIGURE 49 CUMMINS: COMPANY SNAPSHOT 189
13.2.4 ZTE CORPORATION 192
TABLE 142 ZTE CORPORATION: COMPANY SNAPSHOT 192
FIGURE 50 ZTE CORPORATION: COMPANY SNAPSHOT 193
13.2.5 GENERAL ELECTRIC 197
TABLE 143 GENERAL ELECTRIC: COMPANY SNAPSHOT 197
FIGURE 51 GENERAL ELECTRIC: COMPANY SNAPSHOT 198
13.2.6 SCHNEIDER ELECTRIC 201
TABLE 144 SCHNEIDER ELECTRIC: COMPANY SNAPSHOT 201
FIGURE 52 SCHNEIDER ELECTRIC: COMPANY SNAPSHOT 202
13.2.7 ALPHA TECHNOLOGIES 205
TABLE 145 ALPHA TECHNOLOGIES: COMPANY SNAPSHOT 205
13.2.8 DELTA ELECTRONICS 207
TABLE 146 DELTA ELECTRONICS: COMPANY SNAPSHOT 207
FIGURE 53 DELTA ELECTRONICS: COMPANY SNAPSHOT 208
13.2.9 ABB 210
TABLE 147 ABB: COMPANY SNAPSHOT 210
FIGURE 54 ABB: COMPANY SNAPSHOT 211
*Details on Business overview, Products/solutions/services offered, Recent developments & MnM View might not be captured in case of unlisted companies.
13.3 OTHER PLAYERS 214
13.3.1 ASCOT INDUSTRIAL 214
TABLE 148 ASCOT INDUSTRIAL: COMPANY SNAPSHOT 214
13.3.2 UNIPOWER 215
TABLE 149 UNIPOWER: COMPANY SNAPSHOT 215
13.3.3 DYNAMIC POWER GROUP 216
TABLE 150 DYNAMIC POWER GROUP: COMPANY SNAPSHOT 216
13.3.4 EFORE 217
TABLE 151 EFORE: COMPANY SNAPSHOT 217
13.3.5 HANGZHOU ZHONGHENG POWER ENERGY 217
TABLE 152 HANGZHOU ZHONHENG POWER ENERGY: COMPANY SNAPSHOT 217
13.3.6 MYERS POWER PRODUCTS 218
TABLE 153 MYERS POWER PRODUCTS: COMPANY SNAPSHOT 218
13.3.7 STATICON 219
TABLE 154 STATICON: COMPANY SNAPSHOT 219
13.3.8 VERTIV GROUP 220
TABLE 155 VERTIV GROUP: COMPANY SNAPSHOT 220
13.3.9 VOLTSERVER 221
TABLE 156 VOLTSERVER: COMPANY SNAPSHOT 221
13.3.10 JMA WIRELESS 221
TABLE 157 JMA WIRELESS: COMPANY SNAPSHOT 221
13.3.11 CORNING INCORPORATED 222
TABLE 158 CORNING INCORPORATED: COMPANY SNAPSHOT 222
14 APPENDIX 223
14.1 DISCUSSION GUIDE 223
14.2 KNOWLEDGE STORE: MARKETSANDMARKETS’ SUBSCRIPTION PORTAL 226
14.3 AVAILABLE CUSTOMIZATION 228
14.4 RELATED REPORTS 228
14.5 AUTHOR DETAILS 229



*** 免責事項 ***
https://www.globalresearch.co.jp/disclaimer/



※注目の調査資料
※当サイト上のレポートデータは弊社H&Iグローバルリサーチ運営のMarketReport.jpサイトと連動しています。
※当市場調査資料(SE5068-22 )"世界の通信用電力システム市場(~2027年):グリッドタイプ別(オングリッド、オフグリッド、バッドグリッド)、コンポーネント別、電源別、技術別(AC電源システム、DC電源システム)、電力定格別(10kW以下、10〜20kW、20kW以上)、地域別" (英文:Telecom Power System Market by grid type (On-Grid, Off-Grid, Bad grid), component, power source, Technology, (AC power system, DC power system), Power Rating (Below 10 kW, 10-20 kW, above 20 kW) and Geography - Global Forecast to 2027)はMarketsandMarkets社が調査・発行しており、H&Iグローバルリサーチが販売します。


◆H&Iグローバルリサーチのお客様(例)◆


※当サイトに掲載していない調査資料も弊社を通してご購入可能ですので、お気軽にご連絡ください。ウェブサイトでは紹介しきれない資料も数多くございます。
※無料翻訳ツールをご利用いただけます。翻訳可能なPDF納品ファイルが対象です。ご利用を希望されるお客様はご注文の時にその旨をお申し出ください。