IoT用組み込みセキュリティの世界市場

◆英語タイトル:Embedded Security For Internet Of Things Market: Controller Chip Segment Expected to be the Most Attractive Segment by Component: Global Industry Analysis and Opportunity Assessment 2017-2027
◆商品コード:FUMI709009
◆発行会社(調査会社):Future Market Insights
◆発行日:2017年5月9日
◆ページ数:272
◆レポート言語:英語
◆レポート形式:PDF
◆納品方法:Eメール
◆調査対象地域:グローバル
◆産業分野:IT
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【レポートの概要】

Controller Chip segment by component anticipated to expand at a higher CAGR than the Software segment during the period of assessment
In terms of revenue, the controller chip segment is projected to be the most attractive segment in the global embedded security for Internet of Things (IoT) market during the forecast period. This segment is also likely to register high Y-o-Y growth rates throughout the forecast period and is anticipated to expand at a CAGR of 14.7% between 2017 and 2027. The controller chip segment is estimated to be valued at more than US$ 2,300 Mn in 2017, accounting for more than 80% of the global market revenue share. This segment is expected to remain dominant in terms of revenue throughout the forecast period. The segment is projected to create incremental $ opportunity of more than US$ 6,800 Mn between 2017 and 2027.

Growing intensity of cyber-attacks on IoT devices and networks will create a positive impact on the controller chip segment

Due to increasing intensity of cyber-attacks, various associations that promote best practices for implementing IoT solutions have issued guidelines for implementation and adoption of necessary security solutions in order to protect against such attacks. Implementation of embedded controller chipsets is one such guideline promoting the adoption of embedded solutions for IoT. An increasing use of controller chipsets in order to ensure protection from cyber-attacks is expected to drive revenue growth of the controller chip segment in the global embedded security for Internet of Things (IoT) market. For instance, in December 2016, a non-profit multi-industry association called Smart Card Alliance promoting best practices for smart card applications in the U.S. and Latin America issued guidelines for the adoption of embedded hardware security (controller chipset) solutions involving end devices to include hardware features and functions to ensure that the required security standards are implemented and maintained.

Increasing adoption of IoT globally is resulting in a large number of devices being connected, communicating and exchanging data with each other seamlessly. Devices connected through IoT networks are used in verticals including smart cities, healthcare, industrial automation, retail, agriculture and others. According to U.S. based IoT solutions provider Cisco Systems Inc., around 7% of global mobile data traffic will come from devices connected through the IoT by 2020. A rising number of IoT enabled connected devices will result in increased demand for security solutions in terms of hardware. Increasing focus on the component aspect of security is the new trend in the global market that is likely to fuel the growth of the controller chip segment.

Security software alone is not sufficient to protect IoT devices against cyber-attacks and malware and needs to be supported by reliable hardware for data processing and safe storage. Vulnerable hardware components are susceptible to unauthorised access and data theft, thereby compromising the security of the overall system, which is why OEMs are turning towards embedded component suppliers who can address these security issues effectively.

BlackBerry’s cloud-based IoT platform addresses security aspects of the Internet of Things

In January 2015, Canadian telecom solutions provider BlackBerry launched a cloud-based IoT platform with device management features enabling data gathering from a range of devices and networks. The platform enables application developers, business partners, and others to collaborate on different aspects of IoT solutions including security. Initially, the platform was targeted at the automotive and shipping sector and in future, it will be extended to other verticals such as energy and healthcare.

Non-adherence to guidelines issued by governing authorities is a major market growth restraint

Although a number of governing authorities have issued guidelines to be followed by IoT device manufacturers so as to protect against cyber-attacks happening on IoT networks and devices, many device manufacturers and users do not strictly adhere to these guidelines nor take any precautionary measures. Non-adherence to security guidelines results in security lapses, which cyber attackers take advantage of, resulting in unauthorised data access and data thefts. This is a major factor hampering revenue growth of the global embedded security for Internet of Things (IoT) market.

【レポートの目次】

Table Of Content

1. Embedded Security for Internet of Things (IoT) Market- Executive Summary

2. Assumptions & Acronyms Used

3. Research Methodology

4. Market Overview

4.1. Introduction

4.1.1. Embedded Security for Internet of Things Market Definition

4.1.2. Embedded Security for Internet of Things Market Taxonomy

4.2. Global Embedded Security for Internet of Things Market Dynamics

4.2.1. Drivers

4.2.2. Restraints

4.2.3. Opportunity

4.3. Value Chain

4.4. Global Embedded Security for Internet of Things Market Forecast, 2017-2027

4.4.1. Global Embedded Security for Internet of Things Market Size (Value) Forecast

4.4.1.1. Y-o-Y Growth Projections

4.4.1.2. Absolute $ Opportunity

4.5 Global Embedded Security for Internet of Things (IoT) Market Trend

4.6. Global Embedded Security for Internet of Things Market Snapshot (2016)

4.6.1. Market Size By Component

4.6.2. Market Size By Application

4.6.3. Market Size By Vertical

4.6.4. Market Size By Region

5. Global Embedded Security for Internet of Things Market Analysis, By Component

5.1. Introduction

5.1.1. Y-o-Y Growth Comparison, By Component

5.1.2. Basis Point Share (BPS) Analysis, By Component

5.2. Global Embedded Security for Internet of Things Market Forecast By Component

5.2.1. Software

5.2.1.1. Absolute $ Opportunity

5.2.1.2. Market Value Forecast, By Region

5.2.2. Controller Chip

5.2.2.1. Absolute $ Opportunity

5.2.2.2. Market Value Forecast, By Region

5.3. Global Embedded Security for Internet of Things Market Attractiveness Analysis, By Component

5.4. Prominent Trends

6. Global Embedded Security for Internet of Things Market Analysis, By Application

6.1. Introduction

6.1.1. Y-o-Y Growth Comparison, By Application

6.1.2. Basis Point Share (BPS) Analysis, By Application

6.2. Global Embedded Security for Internet of Things Market Forecast By Application

6.2.1. Smart Factory

6.2.1.1. Absolute $ Opportunity

6.2.1.2. Market Value Forecast, By Region

6.2.2. Smart Grid

6.2.2.1. Absolute $ Opportunity

6.2.2.2. Market Value Forecast, By Region

6.2.3. Connected Car

6.2.3.1. Absolute $ Opportunity

6.2.3.2. Market Value Forecast, By Region

6.2.4. Network Equipment

6.2.4.1. Absolute $ Opportunity

6.2.4.2. Market Value Forecast, By Region

6.2.5. Computing Devices

6.2.5.1. Absolute $ Opportunity

6.2.5.2. Market Value Forecast, By Region

6.3. Global Embedded Security for Internet of Things Market Attractiveness Analysis, By Application

6.4. Prominent Trends

7. Global Embedded Security for Internet of Things Market Analysis, By Vertical

7.1. Introduction

7.1.1. Y-o-Y Growth Comparison, By Vertical

7.1.2. Basis Point Share (BPS) Analysis, By Vertical

7.2. Global Embedded Security for Internet of Things Market Forecast By Vertical

7.2.1. Retail

7.2.1.1. Absolute $ Opportunity

7.2.1.2. Market Value Forecast, By Region

7.2.2. Aerospace and defense

7.2.2.1. Absolute $ Opportunity

7.2.2.2. Market Value Forecast, By Region

7.2.3. Healthcare

7.2.3.1. Absolute $ Opportunity

7.2.3.2. Market Value Forecast, By Region

7.2.4. Gaming

7.2.4.1. Absolute $ Opportunity

7.2.4.2. Market Value Forecast, By Region

7.2.5. Automotive

7.2.5.1. Absolute $ Opportunity

7.2.5.2. Market Value Forecast, By Region

7.2.6. Others

7.2.6.1. Absolute $ Opportunity

7.2.6.2. Market Value Forecast, By Region

7.3. Global Embedded Security for Internet of Things Market Attractiveness Analysis, By Vertical

7.4. Prominent Trends

8. Global Embedded Security for Internet of Things Market Analysis, By Region

8.1. Introduction

8.1.1. Y-o-Y Growth Projections, By Region

8.1.2. Basis Point Share (BPS) Analysis, By Region

8.2. Global Embedded Security for Internet of Things Market Forecast By Region

8.2.1. North America Market Value Forecast

8.2.2. Latin America Market Value Forecast

8.2.3. Asia Pacific excluding Japan Market Value Forecast

8.2.4. Japan Market Value Forecast

8.2.5. Eastern Europe Market Value Forecast

8.2.6. Western Europe Market Value Forecast

8.2.7. Middle East & Africa Market Value Forecast

8.3. Regional Attractiveness Analysis

8.4. Prominent Trends

9. North America Embedded Security for Internet of Things Market Analysis

9.1. Introduction

9.1.1. Y-o-Y Growth Projections, By Country

9.1.2. Basis Point Share (BPS) Analysis, By Country

9.2. North America Embedded Security for Internet of Things Market Forecast

9.2.1. Market Value Forecast By Country

9.2.1.1. U.S. Absolute $ Opportunity

9.2.1.2. Canada Absolute $ Opportunity

9.2.2. Market Value Forecast By Component

9.2.2.1. Software

9.2.2.2. Controller Chip

9.2.3. Market Value Forecast By Application

9.2.3.1. Smart Factory

9.2.3.2. Smart Grid

9.2.3.3. Connected Car

9.2.3.4. Networking Equipment

9.2.3.5. Computing Devices

9.2.4. Market Value Forecast By Vertical

9.2.4.1. Retail

9.2.4.2. Aerospace and defense

9.2.4.3. Healthcare

9.2.4.4. Gaming

9.2.4.5. Automotive

9.2.4.6. Others

9.2.5. Embedded Security for Internet of Things Market Attractiveness Analysis

9.2.5.1. By Component



【レポートのキーワード】

組み込みセキュリティ、IoT

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