IoT Communication Technologies Market: By Cellular Technologies (2G/3G, 4G); By Wireless Technologies (Wi-Fi, Bluetooth, ZigBee, Others); By Low Power Technologies (Licensed, Unlicensed); By Applications -Forecast 2016-2021

  • ID: 3920126
  • Report
  • 162 pages
  • IndustryARC
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The Internet of Things (IoT) is a technology aimed at creation of smart devices network to apprehend the surroundings effectively and offer alternatives for decision making as opposed to the conventional approach of treating the device/equipment as a single entity. The devices in such networks are inter-dependent to share the information and create opportunities for data driven decisions. Thus, the connectivity technologies form the crucial basis for such networks that has various attributes associated with it including high data rates, low latency, effective communication range, ubiquitous inter-operability and several others.

IoT technologies can help in gaining short-term economic advantages, if adopted properly it will streamline commercial and industrial operations, the result of which would be lower costs and greater profits. The Market for IoT Communication Technologies has been segmented By Cellular Technologies, By Wireless technologies, By Low-Power technologies, By applications and By geography. The segmentation on the basis of Cellular technologies are 2G/3G Networks and 4G Networks, whereas By Wireless Technologies the market is segmented into Wi-Fi, Bluetooth, ZigBee, Wireless HART, Thread and Others. The market is divided on terms of Low Power Technologies into Licensed Spectrum, and Unlicensed Spectrum, again having further classification under each category.

On the basis of Applications, the segments include Aerospace & Defense, Automotive, Computing, Communications, Automation, Power & Energy, Infrastructure, Medical/Healthcare and Others. Subsequently, the global market has been analyzed by fragmenting it into following Geographic Regions: North & South America, Europe, Asia-Pacific (APAC) and Rest of the World (RoW). These regions are further sub-categorized into respective nations, notable from the perspective of IoT communication technology based products demand.

The IoT communication Technologies market is projected to develop from USD X Billion in 2015 to USD Y Billion by 2021, at a CAGR of XX% between 2016 and 2021. The key players in the market are analysed with aforementioned communication technologies offered by them.

Some prominent examples include:

Senet, Inc. (U.S.)
Huawei Technologies Co. Ltd. (China)
Nokia Networks (Finland)
Intel Corporation (U.S.)
Telefonaktiebolaget L. M. Ericsson (Sweden)
Sigfox S.A. (France)
ZTE Corporation (China) and several others.
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1. IoT Communication Technologies Market Overview
2. Executive Summary
3. IoT Communication Technologies Market Landscape
3.1. Market Share Analysis
3.2. Comparative analysis
3.2.1. Product Benchmarking
3.2.2. End User profiling
3.2.3. Patent Analysis
3.2.4. Top 5 Financial Analysis
4. IoT Communication Technologies-Market Forces
4.1. Market Drivers
4.2. Market Constraints
4.3. Market Challenges
4.4. Attractiveness of the IoT Communication Technologies Market
4.4.1. Power of Suppliers
4.4.2. Power of Customers
4.4.3. Threat of new Entrants
4.4.4. Threat of Substitution
4.4.5. Degree of competition
5. IoT Communication Technologies-Strategic Analysis
5.1. Value Chain Analysis
5.2. Pricing Analysis
5.3. Opportunities Analysis
5.4. Product/Market Life Cycle Analysis
6. IoT Communication Technologies Market - By Cellular Technologies
6.1. Introduction
6.2. 2G/3G Networks
6.3. 4G Networks
7. IoT Communication Technologies Market - By Wireless Technologies
7.1. Introduction
7.2. Wi-Fi
7.3. Bluetooth
7.4. ZigBee
7.5. Wireless HART
7.6. Thread
7.7. Others
8. IoT Communication Technologies Market - By Low Power Technologies
8.1. Introduction
8.2. Licensed Spectrum
8.2.1. Extended Coverage GSM (EC-GSM)
8.2.2. LTE-M
8.2.3. NB-IoT
8.2.4. Others
8.3. Unlicensed Spectrum
8.3.1. Ultra Narrow Band (Weightless-W,-N,-P; Sigfox)
8.3.2. LoRa/LoRaWAN
8.3.3. IEEE 802.11ah
8.3.4. Random Phase Multiple Access (Ingenu)
8.3.5. Others
9. IoT Communication Technologies Market - By Applications
9.1. Introduction
9.2. Aerospace & Defense
9.3. Automotive
9.3.1. Vehicle-to-Vehicle (V2V)
9.3.2. Vehicle-to-Infrastructure (V2X)
9.4. Computing
9.4.1. Personal Computers
9.4.2. Laptops/Notebooks
9.4.3. Tablets
9.4.4. Servers
9.5. Communications
9.5.1. Smartphones
9.5.2. Consumer Premise Equipment
9.5.3. Enterprise Premise Equipment
9.5.4. Base Stations
9.5.5. Others
9.6. Automation
9.6.1. Home Automation
9.6.2. Building Automation
9.6.3. Industrial Automation
9.7. Power & Energy
9.8. Infrastructure
9.9. Medical/Healthcare
9.10. Others
10. IoT Communication Technologies Market - By Geography
10.1. Americas
10.1.1. U.S.
10.1.2. Canada
10.1.3. Brazil
10.1.4. Others
10.2. Europe
10.2.1. U.K.
10.2.2. Germany
10.2.3. France
10.2.4. Italy
10.2.5. Others
10.3. Asia-Pacific (APAC)
10.3.1. China
10.3.2. Japan
10.3.3. South Korea
10.3.4. Australia
10.3.5. Others
10.4. Rest of the World (RoW)
10.4.1. Middle-East
10.4.2. Africa
11. IoT Communication Technologies-Market Entropy
11.1. New Product Launches
11.2. M&As, Collaborations, JVs and Partnerships
12. Company Profiles
12.1. Senet, Inc.
12.2. Huawei Technologies Co. Ltd.
12.3. Nokia Networks
12.4. Intel Corporation
12.5. Telefonaktiebolaget L. M. Ericsson
12.6. Sigfox S.A.
12.7. NWave Technologies
12.8. On-Ramp Wireless, Inc. (Ingenu)
12.9. U-Blox
12.10. Telstra Corporation
12.11. ZTE Corporation
12.12. Qualcomm, Inc.
12.13. NXP Semiconductor N.V.
12.14. Texas Instruments Inc.
12.15. Cypress Semiconductor Corporation
12.16. Sierra Wireless
12.17. Microchip Technology Corporation
12.18. Silicon Labs Inc.
12.19. STMicroelectronics N.V.
12.20. Murata Manufacturing Co., Ltd.

"*Financials would be provided on a best efforts basis for private companies"
13. Appendix
13.1. Abbreviations
13.2. Sources
13.3. Research Methodology
13.4. Bibliography
13.5. Compilation of experts insights
13.6. Disclaimer
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