IOT Node and Gateway Market Trends, Statistics, Segments, Graphs Growth Factors Forecast to 2023

Pune, India, 2017-Sep-28 — /EPR Network/ —

Market Highlights

The regional wise segmentation of IOT node and gateway market consists of North America, Europe, Asia-Pacific and Rest of the World. North America is one of the most competitive markets across the globe with various regional players and a few large international players in IOT node and gateway market. Europe region is growing with an excellent pace in IOT node and gateway market. Emerging economies from countries such as Germany, UK, France, Russia, Italy, Benelux and Spain is driving IOT node and gateway market. Moreover, Asia-Pacific is also expected to have potential growth in the forecast period due to increasing investment of major players in IOT node and gateway market.

Taste the market data and market information presented through more than 30 market data tables and figures spread over 100 numbers of pages of the project report. Avail the in-depth table of content TOC & market synopsis on “IOT Node and Gateway Market Research Report -Forecast to 2023”.

Major Key Players

  • Intel Corporation (U.S.),
  • NXP Semiconductor N.V. (Netherlands),
  • Texas Instruments Incorporated (U.S.),
  • Cisco Systems Inc. (U.S.),
  • Hewlett Packard Enterprise Co. (U.S.),
  • Stmicroelectronics N.V. (Switzerland),
  • Advantech Co., Ltd. (Taiwan),
  • Eurotech S.P.A (Italy),
  • Aaeon Components Inc. (Taiwan),
  • Adlink Components Inc. (Taiwan)

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Market Segmentation

The IOT node and gateway market has been segmented on the basis of hardware and end-user. The hardware segment consists of processors, sensors, connectivity IC and memory device. Blood glucose sensors provides accurate measurement of glucose content in patient body, it consists of vast measure range and offers continuous monitoring of glucose content in the blood.

Market Research Analysis:

Regional analysis for IOT node and gateway market is studied in different geographic regions such as North America, Europe, Asia-Pacific and Rest of World. North America region is the prominent player in the IOT node and gateway market due to advanced technological implementation in security system. European region is growing with a considerable pace in the IOT node and gateway market. Increase demand from citizens for better internet connectivity and investment by government in IOT node and gateway market is driving the market in the region. Europe region is facing frequent terror attacks that enable government and security agencies to implement advanced and powerful security equipments to combat foreign attacks. The protection of citizen in the region and across the border has risen the need for strong security surveillance gadgets. Asia-Pacific region is expected to grow with the highest CAGR in IOT node and gateway market owing to advanced infrastructure development from countries such as China and India that is boosting the market growth. Increasing urbanization, business expansion across and industrial developments is driving the growth of IOT node and gateway market in the region.

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Table of Content

1             Market Introduction

1.1          Introduction

1.2          Scope Of Study

1.2.1      Research Objective

1.2.2      Assumptions

1.2.3      Limitations

1.3          Market Structure

2             Research Methodology

2.1          Research Type

2.2          Primary Research

2.3          Secondary Research

2.4          Forecast Model

2.4.1      Market Data Collection, Analysis & Forecast

2.4.2      Market Size Estimation

3             Market Dynamics

3.1          Introduction

3.2          Market Drivers

3.3          Market Challenges

3.4          Market Opportunities

3.5          Market Restraints

4             Executive Summary

  1. Market Factor Analysis

5.1          Porter’s Five Forces Analysis

5.2          Supply Chain Analysis

6             Iot Node And Gateway Market, By Segments

6.1         Introduction

6.2         Market Statistics

6.2.1       By Components

6.2.1.1     Hardware

6.2.1.1.1   Processor

6.2.1.1.1.1 Microcontroller (Mcu)

6.2.1.1.1.2 Microprocessor (Mpu)

6.2.1.1.1.3 Digital Signal Processor (Dsp)

6.2.1.1.1.4 Application Processor (Ap)

6.2.1.1.2   Sensor

6.2.1.1.2.1   Temperature Sensor

6.2.1.1.2.2   Blood Glucose Sensor

6.2.1.1.2.3   Blood Oxygen Sensor

6.2.1.1.2.4 Electrocardiogram (Ecg) Sensor

6.2.1.1.2.5 Humidity Sensor

6.2.1.1.2.6 Image Sensor

6.2.1.1.2.7 Ambient Light Sensor

6.2.1.1.2.8  Flow Sensor

6.2.1.1.2.9  Level Sensor

6.2.1.1.2.10 Chemical Sensor

6.2.1.1.2.11 Carbon Monoxide Sensor

6.2.1.1.2.12 Motion And Position Sensor

6.2.1.1.2.13 Camera Module

6.2.1.1.3    Connectivity Ic

6.2.1.1.3.1  Wired

6.2.1.1.3.2  Modbus

6.2.1.1.3.3  Profinet

6.2.1.1.3.4  Foundation Fieldbus (Ff)

6.2.1.1.3.1  Wireless

6.2.1.1.3.1  Ant+

6.2.1.1.3.2  Bluetooth

6.2.1.1.3.3  Bluetooth Smart/Bluetooth Low Energy (Ble)

6.2.1.1.3.4  Bluetooth/Wlan

6.2.1.1.3.5  Zigbee

6.2.1.1.3.6  Wireless Fidelity (Wi-Fi)

6.2.1.1.3.7  Near Field Communication (Nfc)

6.2.1.1.3.8  Cellular Network

6.2.1.1.3.9  Wireless Highway Addressable Remote Transducer Protocol (Whart)

6.2.1.1.3.10 Gps/Global Navigation Satellite System (Gnss) Module

6.2.1.1.3.11 Isa100

6.2.1.1.4    Memory Device

6.2.1.1.4.1  On-Chip Memory

6.2.1.1.4.2  Off-Chip Memory/External Memory

6.2.2     By End-User

6.2.2.1   Bfsi

6.2.2.2   It & Telecommunication

6.2.2.3   Healthcare

6.2.2.4   Wearable Devices

6.2.2.5   Consumer Electronics

6.2.2.6   Building & Automation

6.2.2.7   Agriculture

6.2.2.8   Aerospace & Defense

6.2.2.9   Others

6.2.6by Geography

6.2.6.1north America

6.2.6.2europe

6.2.6.3asia-Pacific

6.2.6.4rest Of The World

7      Competitive Analysis

Continued…..

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