This research provides analysis of the products that will be developed to support IoT, changes in traditional RTOS required to match performance with IoT, changes in hardware required to match needs of IoT, types of peripherals, and emerging tools to support processing of embedded systems in IoT.
The report provides five year forecast for Embedded Systems in IoT for the period of 2016 - 2021. It provides regional segmentation by industry for embedded systems and components.
Embedded systems are highly customized, developed and programmed as per user requirements. Conventional embedded systems are electronic components that possess a microprocessor, peripherals, memory card, and software program that run instructions, operating system and tools (debuggers, static and non-programmable), and follows firmware programming embedded in the micro-chip.
Smart embedded systems will require changing contemporary embedded system design and architecture to suit real-time operations, smaller size of the unit and lowered power consumption and become cost efficient. Use of microcontroller and technologies such as Systems on Chip (SoC) and Reduced Instruction set Computing Chips (RISC) will have greater scope in IoT.
- Transport and cargo, oil industries, consumer electronics, Home Automation, HVAC and Utility markets will take North America to $108B in embedded systems for IoT through the year 2021 with a CAGR of 20.8%.
- Use of IoT and embedded system will be high in EMEA due to positive response to Industrial IoT and growth of embedded systems in electrical grids, automobile and healthcare. The markets in EMEA through 2021 will reach to $112 billion with a CAGR of 19%
- Hardware MCU vendors such as ARM, Texas Instruments, Intel/Wind River and Freescale are now looking to play role in IoT. The new powerful but low cost MCUs are in development. SoCs for IoT that have larger memories, higher clock rates, low power consumption and directly accessed memory will be in production
- The majority of the devices will be in building automation, healthcare, automobile, Oil and Gas and Utility industries. Many embedded devices are of size about 300KB and thus require RTOS and APIs that can handle operations with high performance at lower memory and lower RAM
Key Topics Covered:
1.1 Scope of Report
1.2 Intended Audience
1.3 Companies in Report
2 Executive Summary
3.1 Introduction to IoT
3.1.1 Consumer IoT
3.1.2 Industrial IoT (IIoT)
3.2 Embedded Systems in IoT
3.3 Key Embedded Devices used in IoT
188.8.131.52 Short Range Low Power Radio Devices
3.3.2 Network Devices: Gateway / Hub / Router / Bridges
3.3.3 Sensors and Actuators
3.3.4 Edge Devices
3.4 Role of the Embedded Systems in IoT
3.5 Real-time vs. Standard Embedded Systems
3.6 Working Principal of the Embedded Systems in IoT
3.7 Examples of Connected Embedded Devices in IoT
3.8 Global Markets for Embedded Systems
4 Embedded System Technology and Developments
4.1 Embedded Devices and IoT Infrastructure Architecture
4.2 Key Technology Developments in Embedded System for IoT
4.3 Core Embedded Systems Infrastructure
4.3.1 Microprocessor / Microcontroller
184.108.40.206 Reduced Instruction Set Computing (RISC) Chips
220.127.116.11 System on Chip (SoC) (AISC / FPGA)
4.3.2 Embedded Software
4.3.3 Next Generation Real Time Operating Systems (RTOS)
18.104.22.168 Key Next Generation RTOS Features
4.3.4 Embedded System Software Design Tools (Debuggers, Compilers and Assemblers)
5 Global Market for Embedded Systems in IoT 2016 - 2021
5.1 The $1.6 Trillion IoT Business
5.1.1 Markets for IoT 2016 - 2021
5.2 Markets for Embedded Systems 2016 - 2021
5.2.1 Markets for Hardware and Software Components in Embedded Systems 2016 - 2021
5.2.2 Market for Microcontrollers and Other Hardware Components 2016 - 2021
5.2.3 Markets for Software Components in Embedded Systems 2016 - 2021
5.2.4 Regional Markets for Embedded Systems 2016 - 2021
5.2.5 Markets for Embedded Systems in North America 2016 - 2021
5.2.6 Markets for Embedded Systems in EMEA 2016 - 2021
5.2.7 Markets for Embedded Systems in APAC 2016 - 2021
5.2.8 Markets for Embedded Systems in CALA 2016 - 2021
5.2.9 Markets for Embedded Systems by Industry 2016 - 2021
6 Embedded Systems in IoT Industry Analysis
6.1 Next Generation RTOS to Drive Embedded Expansion in IoT
6.2 Next Generation Chips in Development to support IoT Needs
6.3 Focus to be on Small Devices
6.4 Time Savings for Go to Market to Drive Demand for COTS
6.5 Embedded SIM (eSIM)
7 Embedded Systems in IoT Vendor Landscape
7.1 Hardware Vendors
7.1.1 ARM Holdings
7.1.2 Cisco System Inc.
22.214.171.124 Cisco Industrial Networks
126.96.36.199 Cisco Embedded Networks
7.1.3 Echelon Corporation
188.8.131.52 Echelon's IzoT platform
7.1.5 Intel Corporation
7.1.6 Microchip Technology Inc.
7.1.7 Micron Technology Inc.
7.1.8 MediaTek Inc.
7.1.9 Qualcomm Atheros Inc.
7.1.10 Renesas Electronics Corporation
7.1.12 Samsung Developers
7.1.13 Texas Instruments
7.2 Software Vendors
7.2.2 Lynx Software Technologies, Inc.
7.2.3 Oregan Networks Ltd.
7.2.4 Wind River
184.108.40.206 VxWorks 7 for IoT
7.3 Other Platforms/ Alliances / Peripherals
7.3.1 Digital Living Network Alliance (DLNA)
7.3.3 GE Software
220.127.116.11 GE Predicitvity Solution
18.104.22.168 GE Predix Platform
7.3.5 Nest Labs.
7.3.8 Object Management Group (OMG)
22.214.171.124 Unified Component Model for Distributed, Real-Time Embedded Systems (UCM)
7.3.10 ZigBee Alliance
7.3.11 Z-Wave Alliance
For more information about this report visit http://www.researchandmarkets.com/research/cqnpdc/embedded_internet
Related Topics: Software, Internet of Things and M2M, Operating Systems
Research and Markets
Laura Wood, Senior Manager
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