Energy Harvesting Market

Energy Harvesting Market for Consumer Electronics (2010 - 2015)

Report Code: EP 1116 Feb, 2026, by marketsandmarkets.com

Consumer electronics has been growing at a decent pace and the ever-increasing need for efficient and long lasting energy sources led to a large number of innovations and developments. Today, typical energy sources for consumer electronics range from solar cells to fuel cells. As the race for longer power back catching on with most of the portable consumer electronic devices manufacturers, the energy harvesting market would have room for tremendous innovation and development. Our report will highlight these opportunities along with the market size and competitive landscape.

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1 INTRODUCTION
   1.1. WHAT IS ENERGY HARVESTING?
   1.3. ENERGY HARVESTING COMPARED WITH ALTERNATIVES
   1.4. POWER REQUIREMENTS OF DIFFERENT DEVICES
   1.5. BATTERY ADVANCES FAIL TO KEEP UP - IMPLICATIONS
   1.6. SOME KEY ENABLERS FOR THE FUTURE - PRINTED ELECTRONICS, SMART SUBSTRATES, MEMS
        1.6.1. PRINTED AND THIN FILM
        1.6.2. SMART SUBSTRATES
        1.6.3. MEMS
2 TECHNOLOGIES OF ENERGY HARVESTING FOR CONSUMER ELECTRONICS –ANALYSIS AND TRENDS
   2.1 ENERGY HARVESTING THROUGH ELECTRODYNAMICS
        2.1.1 APPLICATION OF ELECTRODYNAMICS IN CONSUMER ELECTRONICS –ANALYSIS AND TRENDS
              2.1.1.1. Mobile phones,
              2.1.1.2. Wristwatches,
              2.1.1.3. Radio
              2.1.1.4. Lamps
              2.1.1.5. E-signage
              2.1.1.6. Wireless Sensor Networks
   2.2 ENERGY HARVESTING THROUGH PIEZOELECTRIC,
        2.2.1. APPLICATION OF PIEZOELECTRICS IN CONSUMER ELECTRONICS –ANALYSIS AND TRENDS
              2.2.1.1. Mobile phones,
              2.2.1.2. Wristwatches,
              2.2.1.3. Radio
              2.2.1.4. Lamps
              2.2.1.5. E-signage
              2.2.1.6. Wireless Sensor Networks
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Energy Harvesting for Consumer Electronic
2010
   2.3 ENERGY HARVESTING THROUGH PHOTOVOLTAIC
        2.3.1 APPLICATION OF PHOTOVOLTAIC IN CONSUMER ELECTRONICS –ANALYSIS AND TRENDS
              2.3.1.1 Mobile phones,
              2.3.1.2 Wristwatches,
              2.3.1.3 Radio
              2.3.1.4 Lamps
              2.3.1.5 E-signage
              2.3.1.6 Wireless Sensor Networks
2.4 ENERGY HARVESTING THROUGH THERMOELECTRIC
        2.4.1 APPLICATION OF THERMOELECTRIC IN CONSUMER ELECTRONICS –ANALYSIS AND TRENDS
              2.4.1.1 Analysis and Trends
              2.4.1.2 Mobile phones,
              2.4.1.3 Wristwatches,
              2.4.1.4 Radio
              2.4.1.5 Lamps
              2.4.1.6 E-signage
3. MARKET OPPORTUNITIES FOR MEMS IN ENERGY HARVESTING APPLICATIONS
   3.1 POTENTIAL FOR MEMS IN THE CONSUMER ELECTRONICS FIELD
        3.1.1 POWER SOLUTIONS FOR BATTERY CHARGERS
        3.1.2 FOCUS ON FUEL CELLS
        3.1.3 CHIP THERMAL MANAGEMENT APPLICATION
4. GEOGRAPHIC ANALYSIS
   4.1 GEOGRAPHIC ANALYSIS OF ELECTRODYNAMICS FOR ENERGY HARVESTING
   4.2 GEOGRAPHIC ANALYSIS OF PIEZOELECTRIC FOR ENERGY HARVESTING
   4.3 GEOGRAPHIC ANALYSIS OF PHOTOVOLTAIC FOR ENERGY HARVESTING
   4.4 GEOGRAPHIC ANALYSIS OF THERMOELECTRIC FOR ENERGY HARVESTING
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Energy Harvesting for Consumer Electronic
2010
   4.5 GEOGRAPHIC ANALYSIS OF MEMS APPLICATIONS IN ENERGY HARVESTING
5. COMPETITIVE LANDSCAPING
   5.1 MARKET SHARE ANALYSIS
   5.2 COMPARATIVE ANALYSIS
6. PATENT ANALYSIS
7. COMPANY PROFILE


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