TABLE OF CONTENT
1 EXECUTIVE SUMMARY 24
2 MARKET INTRODUCTION 27
2.1 DEFINITION 27
2.2 SCOPE OF THE STUDY 27
2.3 MARKET ATTRACTIVENESS ANALYSIS 28
2.4 MARKET STRUCTURE 28
3 RESEARCH METHODOLOGY 29
4 MARKET INSIGHTS 36
4.1 REGIONAL MARKET INSIGHTS 36
4.1.1 NORTH AMERICA: SPACE BATTERY MARKET SIZE & MARKET SHARE, BY COUNTRY (2021 VS 2030) 36
4.1.2 EUROPE: SPACE BATTERY MARKET SIZE & MARKET SHARE, BY COUNTRY (2021 VS 2030) 37
4.1.3 ASIA-PACIFIC: SPACE BATTERY MARKET SIZE & MARKET SHARE, BY COUNTRY (2021 VS 2030) 38
4.1.4 MIDDLE EAST & AFRICA: SPACE BATTERY MARKET SIZE & MARKET SHARE, BY COUNTRY (2021 VS 2030) 39
4.1.5 LATIN AMERICA: SPACE BATTERY MARKET SIZE & MARKET SHARE, BY COUNTRY (2021 VS 2030) 40
4.2 SEGMENTAL MARKET INSIGHTS 41
4.2.1 GLOBAL: SPACE BATTERY MARKET SIZE & MARKET SHARE, BY ORBIT TYPE (2021 VS 2030) 41
4.2.2 GLOBAL: SPACE BATTERY MARKET SIZE & MARKET SHARE, BY MATERIAL (2021 VS 2030) 42
4.2.3 GLOBAL: SPACE BATTERY MARKET SIZE & MARKET SHARE, BY PLATFORM (2021 VS 2030) 43
4.2.4 GLOBAL: SPACE BATTERY MARKET SIZE & MARKET SHARE, BY ENERGY TYPE (2021 VS 2030) 44
4.2.5 GLOBAL: SPACE BATTERY MARKET SIZE & MARKET SHARE, BY FUNCTION (2021 VS 2030) 45
4.2.6 GLOBAL: SPACE BATTERY MARKET SIZE & MARKET SHARE, BY APPLICATION (2021 VS 2030) 46
5 IMPACT OF COVID-19 47
5.1 COVID-19 IMPACT ANALYSIS 47
5.1.1 IMPACT OF COVID-19 ON GLOBAL ECONOMY 47
5.1.2 IMPACT OF COVID-19 ON THE GLOBAL SPACE BATTERY MARKET 47
5.1.3 SUPPLY CHAIN IMPACT 47
5.1.3.1 IMPACT ON MANUFACTURER/DEVELOPER 48
5.1.3.2 IMPACT ON COMPONENT/SERVICES SUPPLIER 48
5.1.3.3 IMPACT ON DISTRIBUTION/LOGISTICS 48
5.1.3.4 IMPACT ON CONSUMER 48
5.1.4 MARKET RECOVERY ANALYSIS 48
6 MARKET DYNAMICS 49
6.1 INTRODUCTION 49
6.2 DRIVERS 50
6.2.1 INCREASE IN THE NUMBER OF SATELLITE LAUNCHES 50
6.2.2 GROWING DEMAND FOR SMALL SATELLITES 50
6.2.3 INCREASE IN DEMAND FOR EARTH OBSERVATION AND COMMUNICATIONS 50
6.2.4 SIGNIFICANT INVESTMENTS BY VENTURE CAPITAL FIRMS AND THE GOVERNMENT IN THE SPACE INDUSTRY 51
6.2.5 DRIVERS IMPACT ANALYSIS 51
6.3 RESTRAINTS 52
6.3.1 HIGH COST OF DEVELOPMENT 52
6.3.2 STRINGENT GOVERNMENT REGULATIONS 52
6.3.3 RESTRAINT IMPACT ANALYSIS 52
6.4 OPPORTUNITIES 53
6.4.1 USAGE OF SPACE BATTERIES FOR ELECTRIC VEHICLES 53
6.4.2 REUSABLE SATELLITE LAUNCH VEHICLE 53
6.5 CHALLENGES 53
6.5.1 DESIGNING SMALL BATTERIES FOR VARIOUS SPACE APPLICATIONS 53
6.6 MARKET/TECHNOLOGICAL TRENDS 54
6.6.1 INTERNET OF THINGS (IOT) 54
6.6.2 5G 54
6.6.3 3D PRINTING 54
6.6.4 BIG DATA ANALYTICS 54
6.7 PATENT ANALYSIS 55
6.8 REGULATORY LANDSCAPE/STANDARDS 56
6.8.1 ISO GUIDLEINES: SPACE SYSTEMS — LITHIUM ION BATTERY FOR SPACE VEHICLES —
DESIGN AND VERIFICATION REQUIREMENTS 56
6.8.2 UNITED NATIONS OFFICE FOR OUTER SPACE AFFAIRS 59
6.8.3 NEW EU REGULATORY FRAMEWORK FOR BATTERIES 59
7 MARKET FACTOR ANALYSIS 61
7.1 VALUE CHAIN ANALYSIS 61
7.1.1 DESIGNER & DEVELOPMENT 61
7.1.2 SYSTEM/COMPONENT SUPPLY 61
7.1.3 SYSTEM INTEGRATION 62
7.1.4 END USE 62
7.2 PORTER’S FIVE FORCES MODEL 62
7.2.1 THREAT OF NEW ENTRANTS 63
7.2.2 BARGAINING POWER OF SUPPLIERS 63
7.2.3 THREAT OF SUBSTITUTES 63
7.2.4 BARGAINING POWER OF BUYERS 63
7.2.5 INTENSITY OF RIVALRY 63
8 GLOBAL SPACE BATTERY MARKET, BY ORBIT TYPE 64
8.1 OVERVIEW 64
8.1.1 GLOBAL SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 65
8.2 LOW EARTH ORBIT (LEO) 65
8.3 MEDIUM EARTH ORBIT (MEO) 66
8.4 GEOSYNCHRONOUS ORBIT (GEO) 66
8.5 OTHERS 66
9 GLOBAL SPACE BATTERY MARKET, BY MATERIAL 67
9.1 OVERVIEW 67
9.1.1 GLOBAL SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 68
9.2 NICKEL-BASED BATTERY- 69
9.3 LITHIUM-BASED BATTERY 69
9.4 SILVER-ZINC BATTERY 69
9.5 OTHERS 69
10 GLOBAL SPACE BATTERY MARKET, BY PLATFORM 70
10.1 OVERVIEW 70
10.1.1 GLOBAL SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 71
10.2 COMMUNICATION 71
10.3 EARTH OBSERVATION (EO) 72
10.4 MILITARY SURVEILLANCE 72
10.5 SCIENCE 72
10.6 NAVIGATION 72
10.7 OTHERS 72
11 GLOBAL SPACE BATTERY MARKET, BY ENERGY TYPE 73
11.1 OVERVIEW 73
11.1.1 GLOBAL SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 74
11.2 LESS THAN 100 WH/KG (WATT-HOURS PER KILOGRAM) 74
11.3 100–150 WH/KG 74
11.4 MORE THAN 150 WH/KG 75
12 GLOBAL SPACE BATTERY MARKET, BY FUNCTION 76
12.1 OVERVIEW 76
12.1.1 GLOBAL SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 77
12.2 PRIMARY BATTERY 77
12.3 SECONDARY BATTERY 78
13 GLOBAL SPACE BATTERY MARKET, BY APPLICATION 79
13.1 OVERVIEW 79
13.1.1 GLOBAL SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 80
13.2 SATELLITE 80
13.3 LAUNCH VEHICLE 81
13.4 OTHERS 81
14 GLOBAL SPACE BATTERY MARKET, BY REGION 82
14.1 OVERVIEW 82
14.1.1 GLOBAL SPACE BATTERY MARKET, BY REGION, 2021 VS 2030 (USD MILLION) 83
14.1.2 GLOBAL SPACE BATTERY MARKET, BY REGION, 2021–2030 (USD MILLION) 83
14.2 NORTH AMERICA 84
14.2.1 NORTH AMERICA: SPACE BATTERY MARKET, BY COUNTRY, 2021–2030 (USD MILLION) 85
14.2.2 NORTH AMERICA SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 85
14.2.3 NORTH AMERICA SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 86
14.2.4 NORTH AMERICA SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 87
14.2.5 NORTH AMERICA SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 88
14.2.6 NORTH AMERICA SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 89
14.2.7 NORTH AMERICA SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 90
14.2.8 US 91
14.2.8.1 US SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 91
14.2.8.2 US SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 91
14.2.8.3 US SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 92
14.2.8.4 US SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 92
14.2.8.5 US SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 93
14.2.8.6 US SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 93
14.2.9 CANADA 94
14.2.9.1 CANADA SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 94
14.2.9.2 CANADA SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 94
14.2.9.3 CANADA SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 95
14.2.9.4 CANADA SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 95
14.2.9.5 CANADA SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 96
14.2.9.6 CANADA SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 96
14.3 EUROPE 97
14.3.1 EUROPE: SPACE BATTERY MARKET, BY COUNTRY, 2021–2030 (USD MILLION) 98
14.3.2 EUROPE SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 99
14.3.3 EUROPE SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 100
14.3.4 EUROPE SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 101
14.3.5 EUROPE SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 102
14.3.6 EUROPE SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 103
14.3.7 EUROPE SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 104
14.3.8 UK 105
14.3.8.1 UK SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 105
14.3.8.2 UK SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 105
14.3.8.3 UK SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 106
14.3.8.4 UK SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 106
14.3.8.5 UK SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 107
14.3.8.6 UK SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 107
14.3.9 GERMANY 108
14.3.9.1 GERMANY SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 108
14.3.9.2 GERMANY SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 108
14.3.9.3 GERMANY SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 109
14.3.9.4 GERMANY SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 109
14.3.9.5 GERMANY SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 110
14.3.9.6 GERMANY SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 110
14.3.10 FRANCE 111
14.3.10.1 FRANCE SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 111
14.3.10.2 FRANCE SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 111
14.3.10.3 FRANCE SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 112
14.3.10.4 FRANCE SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 112
14.3.10.5 FRANCE SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 113
14.3.10.6 FRANCE SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 113
14.3.11 ITALY 114
14.3.11.1 ITALY SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 114
14.3.11.2 ITALY SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 114
14.3.11.3 ITALY SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 115
14.3.11.4 ITALY SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 115
14.3.11.5 ITALY SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 116
14.3.11.6 ITALY SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 116
14.3.12 SPAIN 117
14.3.12.1 SPAIN SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 117
14.3.12.2 SPAIN SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 117
14.3.12.3 SPAIN SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 118
14.3.12.4 SPAIN SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 118
14.3.12.5 SPAIN SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 119
14.3.12.6 SPAIN SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 119
14.3.13 POLAND 120
14.3.13.1 POLAND SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 120
14.3.13.2 POLAND SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 120
14.3.13.3 POLAND SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 121
14.3.13.4 POLAND SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 121
14.3.13.5 POLAND SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 122
14.3.13.6 POLAND SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 122
14.3.14 NETHERLANDS 123
14.3.14.1 NETHERLANDS SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 123
14.3.14.2 NETHERLANDS SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 123
14.3.14.3 NETHERLANDS SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 124
14.3.14.4 NETHERLANDS SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 124
14.3.14.5 NETHERLANDS SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 125
14.3.14.6 NETHERLANDS SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 125
14.3.15 DENMARK 126
14.3.15.1 DENMARK SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 126
14.3.15.2 DENMARK SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 126
14.3.15.3 DENMARK SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 127
14.3.15.4 DENMARK SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 127
14.3.15.5 DENMARK SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 128
14.3.15.6 DENMARK SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 128
14.3.16 GREECE 129
14.3.16.1 GREECE SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 129
14.3.16.2 GREECE SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 129
14.3.16.3 GREECE SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 130
14.3.16.4 GREECE SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 130
14.3.16.5 GREECE SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 131
14.3.16.6 GREECE SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 131
14.3.17 CZECH REPUBLIC 132
14.3.17.1 CZECH REPUBLIC SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 132
14.3.17.2 CZECH REPUBLIC SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 132
14.3.17.3 CZECH REPUBLIC SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 133
14.3.17.4 CZECH REPUBLIC SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 133
14.3.17.5 CZECH REPUBLIC SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 134
14.3.17.6 CZECH REPUBLIC SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 134
14.3.18 SWEDEN 135
14.3.18.1 SWEDEN SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 135
14.3.18.2 SWEDEN SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 135
14.3.18.3 SWEDEN SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 136
14.3.18.4 SWEDEN SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 136
14.3.18.5 SWEDEN SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 137
14.3.18.6 SWEDEN SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 137
14.3.19 REST OF EUROPE 138
14.3.19.1 REST OF EUROPE SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 138
14.3.19.2 REST OF EUROPE SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 138
14.3.19.3 REST OF EUROPE SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 139
14.3.19.4 REST OF EUROPE SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 139
14.3.19.5 REST OF EUROPE SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 140
14.3.19.6 REST OF EUROPE SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 140
14.4 ASIA-PACIFIC 141
14.4.1 ASIA-PACIFIC: SPACE BATTERY MARKET, BY COUNTRY, 2021–2030 (USD MILLION) 142
14.4.2 ASIA-PACIFIC SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 143
14.4.3 ASIA-PACIFIC SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 144
14.4.4 ASIA-PACIFIC SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 145
14.4.5 ASIA-PACIFIC SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 146
14.4.6 ASIA-PACIFIC SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 147
14.4.7 ASIA-PACIFIC SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 148
14.4.8 CHINA 149
14.4.8.1 CHINA SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 149
14.4.8.2 CHINA SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 149
14.4.8.3 CHINA SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 150
14.4.8.4 CHINA SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 150
14.4.8.5 CHINA SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 151
14.4.8.6 CHINA SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 151
14.4.9 JAPAN 152
14.4.9.1 JAPAN SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 152
14.4.9.2 JAPAN SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 152
14.4.9.3 JAPAN SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 153
14.4.9.4 JAPAN SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 153
14.4.9.5 JAPAN SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 154
14.4.9.6 JAPAN SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 154
14.4.10 INDIA 155
14.4.10.1 INDIA SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 155
14.4.10.2 INDIA SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 155
14.4.10.3 INDIA SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 156
14.4.10.4 INDIA SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 156
14.4.10.5 INDIA SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 157
14.4.10.6 INDIA SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 157
14.4.11 SOUTH KOREA 158
14.4.11.1 SOUTH KOREA SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 158
14.4.11.2 SOUTH KOREA SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 158
14.4.11.3 SOUTH KOREA SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 159
14.4.11.4 SOUTH KOREA SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 159
14.4.11.5 SOUTH KOREA SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 160
14.4.11.6 SOUTH KOREA SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 160
14.4.12 REST OF ASIA-PACIFIC 161
14.4.12.1 REST OF ASIA-PACIFIC SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 161
14.4.12.2 REST OF ASIA-PACIFIC SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 161
14.4.12.3 REST OF ASIA-PACIFIC SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 162
14.4.12.4 REST OF ASIA-PACIFIC SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 162
14.4.12.5 REST OF ASIA-PACIFIC SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 163
14.4.12.6 REST OF ASIA-PACIFIC SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 163
14.5 MIDDLE EAST & AFRICA 164
14.5.1 MIDDLE EAST & AFRICA: SPACE BATTERY MARKET, BY COUNTRY, 2021–2030 (USD MILLION) 165
14.5.2 MIDDLE EAST & AFRICA SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 166
14.5.3 MIDDLE EAST & AFRICA SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 167
14.5.4 MIDDLE EAST & AFRICA SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 168
14.5.5 MIDDLE EAST & AFRICA SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 169
14.5.6 MIDDLE EAST & AFRICA SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 170
14.5.7 MIDDLE EAST & AFRICA SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 171
14.5.8 SAUDI ARABIA 172
14.5.8.1 SAUDI ARABIA SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 172
14.5.8.2 SAUDI ARABIA SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 172
14.5.8.3 SAUDI ARABIA SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 173
14.5.8.4 SAUDI ARABIA SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 173
14.5.8.5 SAUDI ARABIA SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 174
14.5.8.6 SAUDI ARABIA SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 174
14.5.9 UAE 175
14.5.9.1 UAE SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 175
14.5.9.2 UAE SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 175
14.5.9.3 UAE SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 176
14.5.9.4 UAE SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 176
14.5.9.5 UAE SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 177
14.5.9.6 UAE SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 177
14.5.10 TURKEY 178
14.5.10.1 TURKEY SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 178
14.5.10.2 TURKEY SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 178
14.5.10.3 TURKEY SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 179
14.5.10.4 TURKEY SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 179
14.5.10.5 TURKEY SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 180
14.5.10.6 TURKEY SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 180
14.5.11 REST OF MIDDLE EAST 181
14.5.11.1 REST OF MIDDLE EAST SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 181
14.5.11.2 REST OF MIDDLE EAST SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 181
14.5.11.3 REST OF MIDDLE EAST SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 182
14.5.11.4 REST OF MIDDLE EAST SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 182
14.5.11.5 REST OF MIDDLE EAST SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 183
14.5.11.6 REST OF MIDDLE EAST SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 183
14.6 LATIN AMERICA 184
14.6.1 LATIN AMERICA: SPACE BATTERY MARKET, BY COUNTRY, 2021–2030 (USD MILLION) 185
14.6.2 LATIN AMERICA SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 186
14.6.3 LATIN AMERICA SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 187
14.6.4 LATIN AMERICA SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 188
14.6.5 LATIN AMERICA SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 189
14.6.6 LATIN AMERICA SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 190
14.6.7 LATIN AMERICA SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 191
14.6.8 BRAZIL 192
14.6.8.1 BRAZIL SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 192
14.6.8.2 BRAZIL SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 192
14.6.8.3 BRAZIL SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 193
14.6.8.4 BRAZIL SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 193
14.6.8.5 BRAZIL SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 194
14.6.8.6 BRAZIL SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 194
14.6.9 REST OF LATIN AMERICA 195
14.6.9.1 REST OF LATIN AMERICA SPACE BATTERY MARKET, BY ORBIT TYPE, 2021–2030 (USD MILLION) 195
14.6.9.2 REST OF LATIN AMERICA SPACE BATTERY MARKET, BY MATERIAL, 2021–2030 (USD MILLION) 195
14.6.9.3 REST OF LATIN AMERICA SPACE BATTERY MARKET, BY PLATFORM, 2021–2030 (USD MILLION) 196
14.6.9.4 REST OF LATIN AMERICA SPACE BATTERY MARKET, BY ENERGY TYPE, 2021–2030 (USD MILLION) 196
14.6.9.5 REST OF LATIN AMERICA SPACE BATTERY MARKET, BY FUNCTION, 2021–2030 (USD MILLION) 197
14.6.9.6 REST OF LATIN AMERICA SPACE BATTERY MARKET, BY APPLICATION, 2021–2030 (USD MILLION) 197
15 COMPETITIVE LANDSCAPE 198
15.1 COMPETITIVE BENCHMARKING 199
15.2 VENDOR SHARE ANALYSIS 200
15.3 RECENT DEVELOPMENTS 200
15.3.1 PRODUCT DEVELOPMENT 200
15.3.2 PARTNERSHIPS/AGREEMENTS/CONTRACTS/COLLABORATIONS 201
16 COMPANY PROFILE 202
16.1 SAFT 202
16.1.1 COMPANY OVERVIEW 202
16.1.2 FINANCIAL OVERVIEW 203
16.1.3 PRODUCTS/SOLUTIONS/SERVICES OFFERED 203
16.1.4 KEY DEVELOPMENTS 204
16.1.5 SWOT ANALYSIS 204
16.1.6 KEY STRATEGIES 204
16.2 EAGLEPICHER TECHNOLOGIES 205
16.2.1 COMPANY OVERVIEW 205
16.2.2 FINANCIAL OVERVIEW 205
16.2.3 PRODUCTS/SOLUTIONS/SERVICES OFFERED 205
16.2.4 KEY DEVELOPMENTS 206
16.2.5 SWOT ANALYSIS 206
16.2.6 KEY STRATEGIES 207
16.3 GS YUASA INTERNATIONAL LTD. 208
16.3.1 COMPANY OVERVIEW 208
16.3.2 FINANCIAL OVERVIEW 208
16.3.3 PRODUCTS/SOLUTIONS/SERVICES OFFERED 209
16.3.4 KEY DEVELOPMENTS 209
16.3.5 SWOT ANALYSIS 209
16.3.6 KEY STRATEGIES 210
16.4 ENERSYS. 211
16.4.1 COMPANY OVERVIEW 211
16.4.2 FINANCIAL OVERVIEW 211
16.4.3 PRODUCTS/SOLUTIONS/SERVICES OFFERED 212
16.4.4 KEY DEVELOPMENTS 212
16.4.5 SWOT ANALYSIS 213
16.4.6 KEY STRATEGIES 213
16.5 MITSUBISHI ELECTRIC CORPORATION 214
16.5.1 COMPANY OVERVIEW 214
16.5.2 FINANCIAL OVERVIEW 214
16.5.3 PRODUCTS/SOLUTIONS/SERVICES OFFERED 215
16.5.4 KEY DEVELOPMENTS 215
16.5.5 SWOT ANALYSIS 215
16.5.6 KEY STRATEGIES 215
16.6 AROTECH CORPORATION. 216
16.6.1 COMPANY OVERVIEW 216
16.6.2 FINANCIAL OVERVIEW 216
16.6.3 PRODUCTS/SOLUTIONS/SERVICES OFFERED 216
16.6.4 KEY DEVELOPMENTS 216
16.7 REDWIRE CORPORATION 217
16.7.1 COMPANY OVERVIEW 217
16.7.2 FINANCIAL OVERVIEW 217
16.7.3 PRODUCTS OFFERED 217
16.7.4 KEY DEVELOPMENT 218
16.7.5 SWOT ANALYSIS 218
16.7.6 KEY STRATEGIES 218
16.8 SPACE VECTOR CORPORATION 219
16.8.1 COMPANY OVERVIEW 219
16.8.2 FINANCIAL OVERVIEW 219
16.8.3 PRODUCTS OFFERED 219
16.8.4 KEY DEVELOPMENT 219
16.9 HITACHI ZOSEN CORPORATION 220
16.9.1 COMPANY OVERVIEW 220
16.9.2 FINANCIAL OVERVIEW 221
16.9.3 PRODUCTS/SOLUTIONS/SERVICES OFFERED 221
16.9.4 KEY DEVELOPMENTS 222
16.9.5 SWOT ANALYSIS 222
16.9.6 KEY STRATEGIES 222
16.10 LYTEN, INC. 223
16.10.1 COMPANY OVERVIEW 223
16.10.2 FINANCIAL OVERVIEW 223
16.10.3 PRODUCTS/SOLUTIONS/SERVICES OFFERED 223
16.10.4 KEY DEVELOPMENT 223
16.10.5 SWOT ANALYSIS 224
16.10.6 KEY STRATEGIES 224
16.11 AAC CLYDE SPACE. 225
16.11.1 COMPANY OVERVIEW 225
16.11.2 FINANCIAL OVERVIEW 226
16.11.3 PRODUCTS/SOLUTIONS/SERVICES OFFERED 226
16.11.4 KEY DEVELOPMENTS 227
16.11.5 SWOT ANALYSIS 227
16.11.6 KEY STRATEGIES 227
16.12 BERLIN SPACE TECHNOLOGY GMBH. 228
16.12.1 COMPANY OVERVIEW 228
16.12.2 FINANCIAL OVERVIEW 228
16.12.3 PRODUCTS/SOLUTIONS/SERVICES OFFERED 228
16.12.4 KEY DEVELOPMENTS 228
16.13 OCE TECHNOLOGY 229
16.13.1 COMPANY OVERVIEW 229
16.13.2 FINANCIAL OVERVIEW 229
16.13.3 PRODUCTS/SOLUTIONS/SERVICES OFFERED 229
16.13.4 KEY DEVELOPMENTS 229
| ※参考情報 宇宙用バッテリーは、宇宙環境で使用される電池の一種で、人工衛星や宇宙探査機、宇宙ステーションなどの宇宙機器に電力を供給するために設計されています。地球上の環境とは異なり、宇宙環境には極端な温度変化、放射線、真空、微小重力などの特異な条件が存在します。そのため、宇宙用バッテリーにはこれらの厳しい条件に耐える特性が求められます。 宇宙用バッテリーには主にリチウムイオンバッテリー、ニッケル水素バッテリー、そして固体電池などの種類があります。リチウムイオンバッテリーは、高エネルギー密度と軽量であるため、現代の宇宙機器に広く使用されています。ニッケル水素バッテリーは、長寿命と良好なサイクル性能を持ち、特に長期にわたるミッションに適しています。また、固体電池は、さらなる安全性やエネルギー密度の向上を図るために研究が進められています。 宇宙用バッテリーの用途は多岐にわたります。まず、宇宙機器自体の運用に必要な電力を供給します。これは衛星の通信機器、観測機器、制御システム、生命維持装置など、さまざまな設備に活用されます。次に、宇宙探査ローバーや惑星探査機では、探査活動に必要な電力を供給し、科学データを収集するための機器を稼働させます。さらに、宇宙ステーションでは、実験機器や居住空間の維持に必要な電力を確保する役割も果たしています。 宇宙用バッテリーの関連技術としては、充電システムや電力管理システムが挙げられます。宇宙環境下では、太陽光発電を利用することが一般的です。ソーラーパネルと組み合わせることで、宇宙機器は日中に発電し、得た電力をバッテリーに蓄えることができます。このため、効率的な充電システムが不可欠です。また、電力管理システムは、バッテリーの充放電を適切に制御し、機器の正常な動作を保証します。これによって、バッテリーの寿命を延ばし、過放電や過充電を防ぐことができます。 さらに、宇宙用バッテリーの開発には、前述の耐放射線性や温度耐性を持たせるための技術も含まれます。宇宙では放射線が強く、通常のバッテリーでは劣化が早まるため、特別な材料や構造を用いたり、放射線シールドを施したりすることで耐久性を向上させる努力がなされています。 最近では、次世代の宇宙用バッテリーとして、固体電池やフローバッテリーなどが注目されています。固体電池は、液体電解質ではなく固体電解質を使用するため、災害に対する耐性が高く、エネルギー密度も向上する可能性があります。フローバッテリーは、エネルギーを流体の形で蓄える方式で、長時間の運用に適していることから、長期的な宇宙探査ミッションにおいて非常に効果的です。 今後の宇宙用バッテリーの課題としては、さらなるエネルギー密度の向上、コスト削減、そして持続可能性の確保などがあります。これらのニーズに応じた新しい材料の開発や技術革新が求められています。宇宙探査活動が進む中で、高性能で信頼性の高い宇宙用バッテリーは、ますます重要な役割を果たすことになります。そのため、研究開発も活発に行われており、未来の宇宙探査を支える重要な要素として期待されています。 |
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