Global Waste Water SCADA Market Research Report 2019 (Includes Business Impact of COVID-19)

  • TBI890865
  • March 20, 2019
  • Global
  • 91 pages
  • QY Market Research
                                          

"The ongoing Coronavirus (COVID-19) pandemic is re-shaping everything from global economies to product categories, pricing, and stock availability to the consumer behavior. The final report is updated to address the impact of COVID-19 on the Waste Water SCADA market. Trusted Business Insights is tracking mining/oil and gas, transportation, employment services, travel arrangements, and the leisure and hospitality sector closely as they are likely to be the hardest-hit sectors. Utilities, local pharma, diagnostics, consumer goods and durables, agro chem and fertilizers, and telecommunications are the sectors that will be weathering the COVID-19 storm and most likely come out relatively unscathed. Interdependencies of sectors are factored in our research report on the Waste Water SCADA market." SCADA is an automated tool that facilitates supervision, analysis, and collection of real time data for generating reports. SCADA remotely monitors and controls a variety of industrial devices and sensors and display the data in a logical and organized fashion to reduce waste and improve efficiency in the manufacturing processes. Waste water treatment plants depend on reliable operation of SCADA to continuously and safely remove effluent throughout the service area to main station. With the increase in demand for automation in waste water treatment plants, there is a significant rise in the demand for SCADA. In addition, safety of the machinery and data requirement has elevated the demand of SCADA. Integration of SCADA with cloud further fuels the market growth. Introduction of cloud-based application with SCADA helps to ease the data access on multiple electronic devices allowing collaboration of multiple users at the same time. However, factors such as increase in cyber-attacks, management issue with the data generated may hamper the market growth. Growth in infrastructure and development of smart cities in the emerging economies such as China, India, Brazil, and others is expected to open new opportunities for the market players. The global Waste Water SCADA market is valued at xx million US$ in 2018 is expected to reach xx million US$ by the end of 2025, growing at a CAGR of xx% during 2019-2025. This report focuses on Waste Water SCADA volume and value at global level, regional level and company level. From a global perspective, this report represents overall Waste Water SCADA market size by analyzing historical data and future prospect. Regionally, this report focuses on several key regions: North America, Europe, China and Japan. At company level, this report focuses on the production capacity, ex-factory price, revenue and market share for each manufacturer covered in this report. The following manufacturers are covered: ABB Emerson Electric Rockwell Automation Schneider Electric Siemens AG Alstom General Electric Honeywell International Omron Corporation Yokogawa Electric Corporation Segment by Regions North America Europe China Japan Segment by Type Human Machine Interface Remote Terminal Unit Programmable Logic Controller Communication System Others Segment by Application Hardware Architecture Software Architecture Services

Table of Contents

Executive Summary
1 Waste Water SCADA Market Overview
    1.1 Product Overview and Scope of Waste Water SCADA
    1.2 Waste Water SCADA Segment by Type
        1.2.1 Global Waste Water SCADA Production Growth Rate Comparison by Type (2014-2025)
        1.2.2 Human Machine Interface
        1.2.3 Remote Terminal Unit
        1.2.4 Programmable Logic Controller
        1.2.5 Communication System
        1.2.6 Others
    1.3 Waste Water SCADA Segment by Application
        1.3.1 Waste Water SCADA Consumption Comparison by Application (2014-2025)
        1.3.2 Hardware Architecture
        1.3.3 Software Architecture
        1.3.4 Services
    1.4 Global Waste Water SCADA Market by Region
        1.4.1 Global Waste Water SCADA Market Size Region
        1.4.2 North America Status and Prospect (2014-2025)
        1.4.3 Europe Status and Prospect (2014-2025)
        1.4.4 China Status and Prospect (2014-2025)
        1.4.5 Japan Status and Prospect (2014-2025)
    1.5 Global Waste Water SCADA Market Size
        1.5.1 Global Waste Water SCADA Revenue (2014-2025)
        1.5.2 Global Waste Water SCADA Production (2014-2025)

2 Global Waste Water SCADA Market Competition by Manufacturers
    2.1 Global Waste Water SCADA Production Market Share by Manufacturers (2014-2019)
    2.2 Global Waste Water SCADA Revenue Share by Manufacturers (2014-2019)
    2.3 Global Waste Water SCADA Average Price by Manufacturers (2014-2019)
    2.4 Manufacturers Waste Water SCADA Production Sites, Area Served, Product Types
    2.5 Waste Water SCADA Market Competitive Situation and Trends
        2.5.1 Waste Water SCADA Market Concentration Rate
        2.5.2 Waste Water SCADA Market Share of Top 3 and Top 5 Manufacturers
        2.5.3 Mergers & Acquisitions, Expansion

3 Global Waste Water SCADA Production Market Share by Regions
    3.1 Global Waste Water SCADA Production Market Share by Regions
    3.2 Global Waste Water SCADA Revenue Market Share by Regions (2014-2019)
    3.3 Global Waste Water SCADA Production, Revenue, Price and Gross Margin (2014-2019)
    3.4 North ...
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