Global IoT in Manufacturing Market Analysis, 2020

By Solution (Application Management, Data Management, Network Management, Device Management, Smart Surveillance, Others), By Connectivity (Satellite Network, Cellular Network, RFID, NFC, Wi-Fi, Others... ... , NFC, Wi-Fi, Others), By End-User (Automotive, Food and Beverages, Healthcare, Consumer Electronics, Energy & Utilities, Chemicals, Others), By Application (Process Optimization, Predictive Maintenance, Asset Management, Workforce Management, Emergency and Incident Management, Logistics and Supply Chain Management, Inventory Management), By Services (Professional Services, Managed Services), By Region (North America, South America, Europe, Middle East & Africa and Asia-Pacific), By Country (US, Canada, Mexico, Argentina, Brazil, Spain, France, Germany, Russia, Italy, United Kingdom UAE, Saudi Arabia, South Africa, China, India, Japan and South Korea), By Company Read more

  • ICT & Electronics
  • Jan 2020
  • 232
  • PDF, Excel, PPT

The IoT in the Manufacturing market is gradually propelling on an account of surging demand for customization considering the complexity of the supply chain. Moreover, the need for reducing operating costs and product cycle time are the key factors contributing to the growth in demand for IoT in the Manufacturing in the market. Also, the deployment of IoT in the Manufacturing helps to make a safer workplace by efficiently monitoring the hazardous activities by monitoring development cycles, manage warehouses and inventories that also help in predictive maintenance as it helps to determine the condition of in-service equipment to estimate when maintenance should be performed. For instance, IoT is used in the oil and gas industry to monitor gas leakage in pipelines.

Report Coverage Details
Study Period   Historical Data: 2015-19
  Base Year: 2019
  Forecast Period: 2020-25
Regions Covered   North America
  Europe
  Asia-Pacific
  South America
  Middle East & Africa
Unit Denominations   USD Million/Billion

According to the MarkNtel Advisors’ research report titled “Global IoT in Manufacturing Market Analysis, 2020”, the market of IoT in manufacturing is expected to grow with a CAGR of around 29% during 2020-25. The market is expected to surge due to the growing need for predictive maintenance in the industries. Moreover, extensive cloud adoption and the need for centralized monitoring in the manufacturing sector are some of the key factors contributing to the growth of the IoT in the manufacturing sector.

1.     Introduction

1.1.   Product Definition

1.2.   Research Process

1.3.   Assumptions

1.4.   Segmentation

2.     Executive Summary

3.     Expert Verbatim- What our Experts Say?

4.     Global IoT in Manufacturing Market Outlook, 2015-2025F

4.1.   Market Size & Analysis

4.1.1. By Revenues

4.2.   Market Share & Analysis

4.2.1. By Solution

4.2.1.1.  Application Management

4.2.1.2.  Data Management

4.2.1.3.  Network Management

4.2.1.4.  Device Management

4.2.1.5.  Smart Surveillance

4.2.1.6.  Other

4.2.2. By Connectivity

4.2.2.1.  Satellite Network

4.2.2.2.  Cellular Network

4.2.2.3.  Radio Frequency Identification (RFID)

4.2.2.4.  Near-field communication (NFC)

4.2.2.5.  Wi-Fi

4.2.2.6.  Other (Ethernet, Bluetooth, LPWAN etc.)

4.2.3. By Service

4.2.3.1.  Professional Services

4.2.3.2.  Managed Services

4.2.4. By Application

4.2.4.1.  Process Optimization

4.2.4.2.  Predictive Maintenance

4.2.4.3.  Asset Management

4.2.4.4.  Workforce Management

4.2.4.5.  Emergency and Incident Management

4.2.4.6.  Logistics and Supply Chain Management

4.2.4.7.  Inventory Management

4.2.5. By End User

4.2.5.1.  Automotive

4.2.5.2.  Food and Beverages

4.2.5.3.  Healthcare

4.2.5.4.  Consumer Electronics

4.2.5.5.  Energy & Utilities

4.2.5.6.  Chemicals

4.2.5.7.  Other (Aerospace & Defence etc.)

4.2.6. By Region

4.2.6.1.  North America

4.2.6.2.  South America

4.2.6.3.  Europe

4.2.6.4.  Middle East and Africa

4.2.6.5.  Asia-Pacific

4.2.7. By Company

4.2.7.1.  Revenue Shares

4.2.7.2.  Strategic Factorial Indexing

4.2.7.3.  Competitor Placement in MarkNtel Quadrant

4.3.   Market Attractiveness Index

4.3.1. By Solution

4.3.2. By Connectivity

4.3.3. By Service

4.3.4. By Application

4.3.5. By End User

4.3.6. By Region

5.     Global Application Management Market Outlook, 2015-2025F

5.1.   Market Size & Analysis

5.1.1. By Revenues

5.2.   Market Share & Analysis

5.2.1. By Service

5.2.2. By End User

5.2.3. By Region

6.     Global Data Management Market Outlook, 2015-2025F

6.1.   Market Size & Analysis

6.1.1. By Revenues

6.2.   Market Share & Analysis

6.2.1. By Type

6.2.1.1.  Data Integration

6.2.1.2.  Data Security

6.2.1.3.  Data Migration

6.2.1.4.  Data Analytics and Visualization

6.2.1.5.  Metadata Management

6.2.1.6.  Data Governance

6.2.1.7.  Data Orchestration

6.2.2. By Service

6.2.3. By End User

6.2.4. By Region

7.     Global Network Management Market Outlook, 2015-2025F

7.1.   Market Size & Analysis

7.1.1. By Revenues

7.2.   Market Share & Analysis

7.2.1. By Type

7.2.1.1.  Network Bandwidth Management

7.2.1.2.  Network Security Management

7.2.1.3.  Network Performance Monitoring and Management

7.2.1.4.  Network Configuration Management

7.2.2. By Service

7.2.3. By End User

7.2.4. By Region

8.     Global Device Management Market Outlook, 2015-2025F

8.1.   Market Size & Analysis

8.1.1. By Revenues

8.2.   Market Share & Analysis

8.2.1. By Type

8.2.1.1.  Device Provisioning and Authentication

8.2.1.2.  Device Configuration Management

8.2.1.3.  Monitoring and Troubleshooting

8.2.2. By Service

8.2.3. By End User

8.2.4. By Region

9.     Global Smart Surveillance Market Outlook, 2015-2025F

9.1.   Market Size & Analysis

9.1.1. By Revenues

9.2.   Market Share & Analysis

9.2.1. By Type

9.2.1.1.  Central Monitoring System

9.2.1.2.  Video Analytics and Events

9.2.2. By Service

9.2.3. By End User

9.2.4. By Region

10.  Global Professional Services Market Outlook, 2015-2025F

10.1. Market Size & Analysis

10.1.1.   By Revenues

10.2. Market Share & Analysis

10.2.1.   By Type

10.2.1.1. IoT Consulting Services

10.2.1.2. IoT Infrastructure Services

10.2.1.3. System Designing and Integration Services

10.2.1.4. Support and Maintenance Services

10.2.1.5. Education and Training Services

10.2.2.   By End User

10.2.3.   By Region

11.  Global Managed Services Market Outlook, 2015-2025F

11.1. Market Size & Analysis

11.1.1.   By Revenues

11.2. Market Share & Analysis

11.2.1.   By Type

11.2.1.1. Infrastructure Management Services

11.2.1.2. Security Management Services

11.2.1.3. Network Management Services

11.2.2.   By End User

11.2.3.   By Region

12.  North America IoT in Manufacturing Market Outlook, 2015-2025F

12.1. Market Size & Analysis

12.1.1.   By Revenues

12.2. Market Share & Analysis

12.2.1.  By Solution

12.2.2.  By Connectivity

12.2.3.  By Service

12.2.4.  By Application

12.2.5.  By End User

12.2.6.  By Country

12.2.6.1. US

12.2.6.2. Canada

12.2.6.3. Mexico

12.3. Market Attractiveness Index

12.3.1.  By Solution

12.3.2.  By Connectivity

12.3.3.  By Service

12.3.4.  By Application

12.3.5.  By End User

12.3.6.  By Country

13.  South America IoT in Manufacturing Market Outlook, 2015-2025F

13.1. Market Size & Analysis

13.1.1.   By Revenues

13.2. Market Share & Analysis

13.2.1.  By Solution

13.2.2.  By Connectivity

13.2.3.  By Service

13.2.4.  By Application

13.2.5.  By End User

13.2.6.  By Country

13.2.6.1. Brazil

13.2.6.2. Argentina

13.2.6.3. Others

13.3. Market Attractiveness Index

13.3.1.  By Solution

13.3.2.  By Connectivity

13.3.3.  By Service

13.3.4.  By Application

13.3.5.  By End User

13.3.6.  By Country

14.  Europe IoT in Manufacturing Market Outlook, 2015-2025F

14.1. Market Size & Analysis

14.1.1.   By Revenues

14.2. Market Share & Analysis

14.2.1.  By Solution

14.2.2.  By Connectivity

14.2.3.  By Service

14.2.4.  By Application

14.2.5.  By End User

14.2.6.  By Country

14.2.6.1. UK

14.2.6.2. Germany

14.2.6.3. France

14.2.6.4. Italy

14.2.6.5. Spain

14.2.6.6. Russia

14.2.6.7. Others

14.3. Market Attractiveness Index

14.3.1.  By Solution

14.3.2.  By Connectivity

14.3.3.  By Service

14.3.4.  By Application

14.3.5.  By End-User

14.3.6.  By Country

15.  The Middle East & Africa IoT in Manufacturing Market Outlook, 2015-2025F

15.1. Market Size & Analysis

15.1.1.   By Revenues

15.2. Market Share & Analysis

15.2.1.  By Solution

15.2.2.  By Connectivity

15.2.3.  By Service

15.2.4.  By Application

15.2.5.  By End-User

15.2.6.  By Country

15.2.6.1. Saudi Arabia

15.2.6.2. UAE

15.2.6.3. South Africa

15.2.6.4. Others

15.3. Market Attractiveness Index

15.3.1.  By Solution

15.3.2.  By Connectivity

15.3.3.  By Service

15.3.4.  By Application

15.3.5.  By End-User

15.3.6.  By Country

16.  Asia-Pacific IoT in Manufacturing Market Outlook, 2015-2025F

16.1. Market Size & Analysis

16.1.1.   By Revenues

16.2. Market Share & Analysis

16.2.1.  By Solution

16.2.2.  By Connectivity

16.2.3.  By Service

16.2.4.  By Application

16.2.5.  By End-User

16.2.6.  By Country

16.2.6.1. China

16.2.6.2. India

16.2.6.3. Japan

16.2.6.4. Australia

16.2.6.5. South Korea

16.2.6.6. Singapore

16.2.6.7. Malaysia

16.2.6.8. Others

16.3. Market Attractiveness Index

16.3.1.  By Solution

16.3.2.  By Connectivity

16.3.3.  By Service

16.3.4.  By Application

16.3.5.  By End-User

16.3.6.  By Country

17.  Global IoT in Manufacturing Market- Value Chain Analysis

18.  Global IoT in Manufacturing Market Policies, Regulations, Product Standards

19.  Global IoT in Manufacturing Trends & Insights

20.  Global IoT in Manufacturing Dynamics

20.1.     Growth Drivers

20.2.     Challenges

20.3.     Impact Analysis

21.  Global IoT in Manufacturing Market Hotspot & Opportunities

22.  Global IoT in Manufacturing Key Strategic Imperatives for Success & Growth

23.  Competition Outlook

23.1.  Competition Matrix

23.1.1. Product Portfolio

23.1.2. Brand Specialization

23.1.3. Target Markets

23.1.4. Target End Users

23.1.5. Research & Development

23.1.6. Strategic Alliances

23.1.7. Strategic Initiatives

23.2.  Company Profiles (Business Description, Product Segments, Business Segments, Financials, Strategic Alliances/ Partnerships, Future Plans)

23.2.1.   Cisco Systems

23.2.2.   IBM

23.2.3.   PTC

23.2.4.   Microsoft

23.2.5.   General Electric

23.2.6.   SAP

23.2.7.   Zebra Technologies

23.2.8.   Siemens

23.2.9.   Bosch

23.2.10.  Huawei

23.2.11.  Schneider Electric

23.2.12.  Hitachi

23.2.13.  Honey well International

23.2.14.  Software AG

23.2.15.  Intel Corporation

23.2.16.  Verizon Communication Inc.

23.2.17.  AT&T Inc.

23.2.18.  Qualcomm

23.2.19.  ABB

23.2.20.  Dell Inc.

23.2.21.  Hewlett Packard Enterprise

24.  Disclaimer


MarkNtel Advisors follows a robust and iterative research methodology designed to ensure maximum accuracy and minimize deviation in market estimates and forecasts. Our approach combines both bottom-up and top-down techniques to effectively segment and quantify various aspects of the market. A consistent feature across all our research reports is data triangulation, which examines the market from three distinct perspectives to validate findings. Key components of our research process include:

1. Scope & Research Design At the outset, MarkNtel Advisors define the research objectives and formulate pertinent questions. This phase involves determining the type of research—qualitative or quantitative—and designing a methodology that outlines data collection methods, target demographics, and analytical tools. They also establish timelines and budgets to ensure the research aligns with client goals.

2. Sample Selection and Data Collection In this stage, the firm identifies the target audience and determines the appropriate sample size to ensure representativeness. They employ various sampling methods, such as random or stratified sampling, based on the research objectives. Data collection is carried out using tools like surveys, interviews, and observations, ensuring the gathered data is reliable and relevant.

3. Data Analysis and Validation Once data is collected, MarkNtel Advisors undertake a rigorous analysis process. This includes cleaning the data to remove inconsistencies, employing statistical software for quantitative analysis, and thematic analysis for qualitative data. Validation steps are taken to ensure the accuracy and reliability of the findings, minimizing biases and errors.

Data Trangulation

4. Data Forecast and FinalizationThe final phase involves forecasting future market trends based on the analyzed data. MarkNtel Advisors utilize predictive modeling and time series analysis to anticipate market behaviors. The insights are then compiled into comprehensive reports, featuring visual aids like charts and graphs, and include strategic recommendations to inform client decision-making

We’d love to understand what matters most to you.

Your data is 100% confidential & secure