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Cellular Machine-to-Machine (M2M) Modules Market Analysis 2023 Dynamics, Players, Type, Applications, Trends, Regional Segmented, Outlook & Forecast till 2033
The Global Cellular Machine-To-Machine (M2M) Modules Market size is projected to be USD 24.47 billion in 2023 to USD 197.10 billion in 2033, exhibiting a CAGR of 23.2% from 2024 to 2033.
The competitive analysis of the Cellular Machine-to-Machine (M2M) Modules Market include a comprehensive analysis of market trends, competitor landscape, consumer behavior, and potential opportunities. It should cover key demographics, market size, growth projections, and risk factors. The report should also highlight the methodology used for data collection and analysis, presenting findings with visual aids such as charts and graphs. Additionally, recommendations and strategic insights for stakeholders to make informed decisions are crucial. The report should be concise, well-organized, and provide actionable information for businesses aiming to navigate the market effectively.
Key Function:
A Cellular Machine-to-Machine (M2M) Modules market research report serves to assess market dynamics, identify opportunities, and mitigate risks for businesses. It analyzes consumer preferences, competitor strategies, and economic trends. The report facilitates informed decision-making by presenting data on market size, growth potential, and emerging patterns. It aids in product development, pricing strategies, and market positioning. Additionally, market research reports help businesses understand their target audience, enhance marketing efforts, and optimize resource allocation. By offering actionable insights, these reports empower organizations to stay competitive, adapt to changing market conditions, and foster sustainable growth in a dynamic business environment.
Key Dynamics:
Market research reports capture vital dynamics, including market trends, competitive analysis, and consumer behavior. They reveal market size, growth projections, and regional nuances. SWOT analysis examines internal strengths and weaknesses, along with external opportunities and threats. Consumer insights delve into preferences, impacting product development and marketing strategies. The competitive landscape unveils key players, strategies, and market shares. Regulatory factors and industry challenges are explored, aiding risk assessment. Timely and accurate information empowers businesses to adapt strategies, capitalize on opportunities, and navigate challenges, ensuring informed decision-making and sustained competitiveness in dynamic markets.
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Market Segmentations:
Global Cellular Machine-to-Machine (M2M) Modules Market: By Company • Huawei • Sierra Wireless • SIMcom Wireless Solutions • Novatel Wireless • Telit Communications • U-blox Global Cellular Machine-to-Machine (M2M) Modules Market: By Type • WiMAX • LTE modules • 2G, 3G Global Cellular Machine-to-Machine (M2M) Modules Market: By Application • Healthcare • Energy & Utilities • Automotive • Security • Other
Regional Analysis of Global Cellular Machine-to-Machine (M2M) Modules Market
All the regional segmentation has been studied based on recent and future trends, and the market is forecasted throughout the prediction period. The countries covered in the regional analysis of the Global Cellular Machine-to-Machine (M2M) Modules market report are U.S., Canada, and Mexico in North America, Germany, France, U.K., Russia, Italy, Spain, Turkey, Netherlands, Switzerland, Belgium, and Rest of Europe in Europe, Singapore, Malaysia, Australia, Thailand, Indonesia, Philippines, China, Japan, India, South Korea, Rest of Asia-Pacific (APAC) in the Asia-Pacific (APAC), Saudi Arabia, U.A.E, South Africa, Egypt, Israel, Rest of Middle East and Africa (MEA) as a part of Middle East and Africa (MEA), and Argentina, Brazil, and Rest of South America as part of South America.
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915MHz 5dBi Rubber Magnetic Antenna with RG174 Cable (L -3Mtr) + SMA Male Connector
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Industrial Cellular Routers: Encouraging Communication in Isolated and Dangerous Settings
Traditional wired networks are no longer the only way to connect in the modern digital era. Robust, dependable, and secure communication solutions are essential for industries operating in distant or harsh areas in order to connect their vital assets and provide real-time data sharing. The industrial cellular router is a type of customized networking equipment that can be used in industrial environments where cable infrastructure may not be available or is impractical.
An Industrial Cellular Router: What Is It? A ruggedized networking device called an industrial cellular router uses cellular networks to provide wide-area connection for industrial applications. Industrial cellular routers use cellular technology (3G, 4G, and increasingly 5G) to transfer data wirelessly over great distances, in contrast to typical routers that depend on physical connections. They are designed especially to endure the harsh conditions found in industrial settings, such as high humidity, high temperatures, vibration, and electromagnetic interference.
Features and Functionalities: The following are some of the main features and functions of industrial cellular routers:
Wireless Connectivity: Reliable wireless communication is made possible by industrial cellular routers, which enable cellular network communication between industrial systems and equipment. They are compatible with multiple carriers and areas because they support a range of cellular standards and frequencies.
Secure Communication: Security is paramount in industrial applications, especially when transmitting sensitive data over public cellular networks. To secure data and defend against cyber threats, industrial cellular routers use virtual private networks (VPNs), firewalls, and sophisticated encryption techniques.
Remote Management: An administrator may monitor, configure, and troubleshoot devices from a central location with the help of several industrial cellular routers' remote management features. Industrial network implementation, maintenance, and optimization are made easier by this remote management feature.
Redundancy and Failover: Industrial cellular routers may provide redundancy and failover capabilities to guarantee constant connectivity and reduce downtime. In the event of a network outage or disturbance, they can immediately switch between the primary and backup cellular networks or use other communication channels.
Importance in Business Environments: Industrial cellular routers are essential in many different industrial domains, such as:
Oil and Gas: Industrial cellular routers provide for real-time monitoring of production processes, equipment health, and environmental conditions in remote oil and gas fields or offshore platforms. This promotes proactive maintenance and operational efficiency.
Utilities: Industrial cellular routers offer connectivity for remote monitoring, control, and optimization of essential infrastructure in utilities like water treatment plants, electrical substations, and renewable energy installations. This increases dependability and resilience.
Transportation and Logistics: By sending location data, sensor readings, and telemetry information over cellular networks, industrial cellular routers facilitate supply chain visibility, fleet management, and vehicle tracking in transportation and logistics operations.
Manufacturing: Machine-to-machine (M2M) communication in manufacturing facilities is supported by industrial cellular routers, which facilitate the smooth integration of robotic automation, inventory management systems, and production systems.
In summary: For enabling connectivity in remote, difficult, and mission-critical industrial environments, industrial cellular routers are essential equipment. Because of their capacity to deliver dependable, secure, and robust wireless communication, industries are able to maximize operations, maintain a competitive edge in an increasingly interconnected world, and reap the benefits of digital transformation. Organizations in a variety of industrial industries can improve efficiency, spur innovation, and close communication gaps by utilizing industrial cellular routers.
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Seizing Opportunities in the Expansive Wireless Testing Market
Overview and Scope Wireless testing refers to a process that evaluates electrical products that are intended to be operated without wires and tests their ability to connect with other devices and networks and perform operational tasks using the connection. It is used to ensure wireless products connect and interoperate with each other.
Sizing and Forecast The wireless testing market size has grown strongly in recent years. It will grow from $13.22 billion in 2023 to $14.24 billion in 2024 at a compound annual growth rate (CAGR) of 7.7%. The growth in the historic period can be attributed to increased complexity in wireless networks, increased demand for faster time-to-market, globalization and market competition, emergence of m2m communication, wi-fi standard advancements..
The wireless testing market size is expected to see strong growth in the next few years. It will grow to $19.68 billion in 2028 at a compound annual growth rate (CAGR) of 8.4%. The growth in the forecast period can be attributed to shift towards software-defined networking (sdn), edge computing testing needs, industry-specific testing demands, connected vehicle testing, increasing focus on quality of service (qos).. Major trends in the forecast period include 5g network rollout, iot expansion, connected devices proliferation, emergence of wi-fi 6 and wi-fi 6e, telecommunication standards evolution..
To access more details regarding this report, visit the link: https://www.thebusinessresearchcompany.com/report/wireless-testing-global-market-report
Segmentation & Regional Insights The wireless testing market covered in this report is segmented –
1) By Offering: Equipment, Services 2) By Connectivity Technology: Wi-Fi, Bluetooth, 2G/3G, 4G/LTE, 5G 3) By Application: Consumer Electronics, Automotive, IT and Telecommunication, Energy and Power, Medical Devices, Aerospace and Defense, Industrial, Other Applications
North America was the largest region in the wireless testing market share in 2023. Asia-Pacific is expected to be the fastest-growing region in the forecast period. The regions covered in the wireless testing market report are Asia-Pacific, Western Europe, Eastern Europe, North America, South America, Middle East, Africa.
Intrigued to explore the contents? Secure your hands-on sample copy of the report: https://www.thebusinessresearchcompany.com/sample.aspx?id=8202&type=smp
Major Driver Impacting Market Growth The development and deployment of the 5G network is a major driver propelling the growth of the wireless testing market. 5G is the 5th generation mobile network, which delivers higher multi-Gbps peak data speeds, ultra-low latency, more reliability, massive network capacity, increased availability, and a more consistent user experience to more users. 5G networks allow wireless devices' tosmooth and latency-free operation, thus driving demand for wireless testing. For instance, in August 2022, an Indian telecommunications company, Airtel, signed 5G network agreements with Ericsson, Nokia, and Samsung to deploy 5G networks in India. Therefore, the development and deployment of the 5G network will continue to drive the growth of the wireless testing market.
Key Industry Players Major companies operating in the wireless testing market report are SGS Group, Anritsu Corporation, Bureau Veritas S.A., DEKRA SE, Rohde & Schwarz GmbH & Co KG, Intertek Group plc, TUV Rheinland Group, Viavi Solutions Inc., Electro Magnetic Test Inc., EXFO Inc., BluFlux LLC, Spirent Communications plc, Eurofins Scientific SE, Spirent Communications plc, Keysight Technologies Inc., National Instruments Corporation, Cobham Wireless Limited, Teradyne Inc., Intelligraphics Inc., CTIA - The Wireless Association, Octoscope Inc., Wireless Telecom Group Inc., RedMango Analytics Inc., CETECOM GmbH, Global Wireless Solutions Inc., Elma Electronic AG, PCTEST Engineering Laboratory Inc., TestingHouse, DEWESoft d.o.o., Metricell Ltd.
The wireless testing market report table of contents includes: 1. Executive Summary 2. Market Characteristics 3. Market Trends And Strategies 4. Impact Of COVID-19 5. Market Size And Growth 6. Segmentation 7. Regional And Country Analysis . . . 27. Competitive Landscape And Company Profiles 28. Key Mergers And Acquisitions 29. Future Outlook and Potential Analysis
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BLIIoT Remote Monitoring Gateway RTU S271 Collects the Refrigerator Temperature in Real Time through the Cloud
BLIIoT Remote Monitoring Gateway RTU S271 provides 4 digital inputs, 4 analog or PT100 Resistance Temperature Detector (RTD) inputs, 4 relay outputs, 1 ambient sensor input for monitoring onsite temperature and humidity. It can monitoring and operates the I/O ports by SMS, APP, Web Server, internet, timers and programmed inter-lock events automatica
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Environmental monitoring RS485 8DI 6AI 4DO Cellular IoT Modbus RTU
The GSM GPRS 3G 4G Cellular M2M IoT RTU is an industrial class, high reliability, high stability, and programmable Remote Terminal Unit (RTU). It embedded 32-Bit High Performance Microprocessor MCU, inbuilt industrial Cellular module. It provides 8 digital inputs, 6 analog or PT100 Resistance Temperature Detector (RTD) inputs, 4 relay outputs, 1 ambient sensor input for monitoring onsite temperature and humidity, and RS485 serial port. It can monitoring and operates the I/O ports by SMS, APP, Web Server, internet, timers and programmed inter-lock events automatically.
The GSM GPRS 3G 4G Cellular M2M IoT RTU inbuilt TCP/IP protocol stack make it suitable for internet of things (IoT) applications, it can be easily to operate by the provided cloud, app, and web server, or integrated to you IoT applications according to the TCP/UDP protocol, or integrated to SCADA systems by standard Modbus TCP protocol, too. This is very useful if you need remote control onsite devices with low cost solution.
The GSM GPRS 3G 4G Cellular M2M IoT RTU is design for working in the harsh industrial application environment, widely used in a variety of industrial automation, security monitoring system, automatically measurement and control system, BTS monitoring, remote data acquisition, telemetrically systems, automatically control system. It can be used as a remote switch, remote I/O, remote smart PLC, timer switches.
The GSM GPRS 3G 4G Cellular M2M IoT RTU can be used as remote access control for BTS monitoring, the authorized users can open the gate or turn on the machine with a free charge call at specified time, this is useful for daily maintenance to save the time of traditional authorized . The GSM GPRS 3G 4G Cellular M2M IoT RTU supports transparent data transmission and performs as Modbus Slave over GPRS/3G/4G network and RS485 serial port. S272 has new Version and Old Version, please contact us to confirm product details.
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Types of IoT Sim Card and How It Works?
IoT Sim Card or an M2M Sim Card is a kind of Subscriber Identity Module used in IoT devices (Internet of Things) to recognize the connectivity when they attempt to connect with a 2G, 3G, 4G-LTE, 5G, NB-IoT, or Cat-M wireless cellular network. Devices that use IoT SIM cards mostly establish a connection to the cloud, for example- GPS trackers. With mobile data becoming cheaper, the entry costs are also reducing to enable you to connect devices to the internet at a very affordable price. You are charged monthly per the IoT data plans for running IoT Sim Cards.
The IoT SIM cards are also called UICC or Universal Integrated Circuit Cards. An IoT Sim Card is a protective locker that keeps personal user logs and security keys that help recognize a cellular subscription. Every SIM uses a unique International Mobile Subscriber Identity or an IMSI that is different for every connected device, whether on or off the network anywhere in the world. SIM cards also pass on the information or identity of a connected device to a cellular modem. This cellular modem works as a radio or radio modem to reciprocate by establishing an attachment to the network.
Types of IoT Sim Cards As the necessity of IoT SIM cards is growing with businesses being more dependent on cloud systems, a single type of IoT SIM card is not enough to cater to all environments. Here are the 6 types of IoT SIM cards that are available-
3-in-1 form Like regular cellular SIM cards, many devices can use the global M2M SIM cards. Like normal SIM cards, an IoT SIM also comes in various sizes, such as mini, micro, nano, etc. The 3-in-1 form IoT SIM cards suggest the three sizes of the SIM are- 2FF or mini, 3FF or micro, and 4FF or nano.
Each size of IoT SIM card, like 2FF, 3FF, and 4FF, is compatible with any IoT or commercial device. These SIMs are made so that they can be operated with multi-network operators and carriers with the ability to switch carriers. This ensures the user has connected to the cloud network anytime, anywhere, even while roaming.
Industrial SIM cards Industrial SIM cards are IoT SIM cards that have great durability and don't wear and tear easily. These sturdy and long-wearing SIM cards are made of ruggedized plastic; thus, these are great for use in heavy machinery in industrial use. These are designed to be wear-proof even in the most difficult situations.
These SIM cards can be operated in any temperature ranging from as low as -40°C to as high as 105°C. As these are robust and enduring, they can go into heavy industrial machinery without yielding to the most testing situations.
LTE-M/CAT-M SIM Cards An LTE-M card is a CAT-M SIM that operates on an LTE Network. An LTE network is a successor of wireless networks' 2G and 3G generations. Thus, an LTE Network is an ideal replacement or upgradation for a 2G or 3G network. LTE Network came into the market with the emergence of the fourth generation (4G) of the wireless network. The LTE Network is being massively used as a substitute for NB-IoT.
Many IoT projects are allotted low energy levels where you would require a remote device to save its battery life by keeping it in reserve. These LTE-M SIM cards come in handy in such situations as the speed can be 10 megabits/second.
Regarding the global roaming service, CAT-M has pretty limited availability. But this will grow in the future when more businesses understand the value of this wireless technology in the future.
MFF2 EUICC SIM MFF2 SIM or EUICC SIM is a type of IoT SIM that is ideal for devices that run without a specific SIM slot; instead, these are directly soldered into the circuit board of a device while manufacturing.
Where an Industrial SIM card can last ten years or more, the MFF2 SIM/Chip EUICC SIM Cards are fragile and have a limited life span of about 48 hours after taking out of the protective airtight seals if they are not resealed after use. These SIMs are also known as eSIMs, where their specialist type makes them take more time to get connected than an RSP SIM.
Remote SIM Provisioning cards (RSP SIM) RSP SIMs are also called eSIMs, and they come in a format that is the same as the conventional consumer SIM format. This type of IoT SIM card is different as they can alter the NOP or Network Operator Profile OTA (Over-the-Air).
To sum up, connecting your IoT or M2M device with a unique IoT SIM card enables you to work anywhere in the world without the fear of losing performance and speed.
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Wireless RAN Market - Forecast (2022 - 2027)
Global Wireless RAN Market is analyzed to grow at a CAGR of 8.6% during the forecast 2021-2026 to reach $31.6 Billion. Wireless RAN can be referred as the LTE core network technology which focuses on offering cost-effective high bit rate and peak data rates coupled with optimum performance levels. The growth in the market is majorly attributed to the rising shift towards IoT connectivity and the need for improved network performance such as reduced latency, high speed transmission with many others. Introduction of Wireless RAN was done in order to cope up or address the challenges of unlicensed spectrum requirements, referred to as Licensed Assisted Access (LAA), resulting in growth of Wireless RAN market size. The rising demand towards improving network coverage due to growth of various industry verticals as well as initiatives by telecom operators towards upgrading or advancing network communication infrastructure overtime can further drive forward the Wireless RAN industry in the long run.
Report Coverage
The report: “Wireless RAN Market Report– Forecast (2021-2026)”, by IndustryARC covers an in-depth analysis of the following segments of the Brushless DC Motor market
By Component: Radio Equipment, Radio Software, Managed Services
By Technology: 2G, 2.5G, 2.75G, 3G, 3.5G, 3.75G, 4G, 4.5G, 5G
By Vertical: Residential, Enterprise, Urban, Rural, Industrial, Transportation, Retail and Hospitality and Others
By Geography: North America (U.S, Canada, Mexico), Europe (Germany, UK, France, Italy, Spain, Russia and Others), APAC (China, Japan India, Australia and Others), and RoW (Middle East and Africa, South America)
Key Takeaways
There is a significant preference for local players in East Asian market with Huawei and ZTE dominating the market in China and Samsung emerging as a market leader in South Korea
Samsung is witnessing significant growth as the company has signed a number of agreements for 5G rollout in this region.
Nokia has witnessed a lot of rollover contracts in this region as its LTE customers have significantly expanded their relationship with the company through 5G contracts
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Wireless RAN Market Segment Analysis - By Technology
Rising IoT growth along with increasing demands from telecommunication sector are some of the major factors fuelling the growth of Wireless RAN market, particularly 5G Technology at 52.1%. Moreover, high growth of consumer electronics sector and increasing mobile phone users are also helping in propelling the market demand towards 5G technology. The market growth is mainly driven by the factors including growing demand for enhanced mobile broadband services along with virtual networking architecture in telecom industry, growing investment in development of 5G, data transfer and machine to machine communication solutions. Apart from that, rising adoption of IoT and growing requirement for better digital ecosystem will accelerate the growth of the 5G multimode fiber transceivers industry. In addition, demand for high-speed connections, greater reliability and access to real time information also contribute towards the Wireless RAN market growth.
Wireless RAN Market Segment Analysis - By Vertical
Based on end-user industry, Wireless RAN market is segmented into Residential, Commercial, Industrial and others (government and public sectors, defence and others). The market for industrial sector is estimated to witness the highest market growth with a CAGR of 14.1%, during the forecast period 2021-2026. Growing demand for better M2M communication solutions along with increasing penetration of IoT across industries is one of the major factors fuelling this growth. In October 2020, The ETSI announces about the launch of a new version of DECT which supports massive machine type communication system and can be used in building automation, asset tracking, industry 4.0, condition monitoring and others. However, after the industrial sector, Commercial sector is set to witness significant amount of growth during 2021-2026. Especially, due to the out-break of COVID-19, the demand for healthcare services such as tele-medicine, remote patient monitoring, m-health and others, digital educational services, retail and e-commerce services and others is rising, resulting in high demand of better mobile broadband services, ultimately affecting the growth of 5G market positively during the forecast period. In May 2020, Stasis, Bangalore based Start-up company, had launched a cutting edge patient monitoring system that helps in managing the increased demand for wards by setting up isolation wards at the peak of covid-19. According to Ericsson Mobility report published in November 2020, India is estimated to have 350 million 5G subscriptions by 2026, which will represent 27% of the total mobile connections in the country.
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Wireless RAN Market Segment Analysis - By Geography
Asia Pacific is expected to have a major growth in the global Wireless RAN market during the forecast period from 2021 to 2026 at 36.5% share in 2020. High investments towards research and development activities along with the rising growth of consumer electronics sector have been fuelling the growth for Wireless RAN market in this region. Moreover, factors such as increasing smartphones user penetration and growing digitization have been also helping towards significant market growth for Wireless RANs. High spending towards 5G base stations infrastructure development majorly from Chinese mobile companies has been also impacting the market growth of Wireless RANs.
Wireless RAN Market Drivers
Changing Competitive Scenario
The lack of governmental action on Huawei and ZTE will lead to a more diversified market in Europe compared to North America. Despite lack of governmental action, a number of carriers in this region – Orange, Deutsch Telekom and BT among others - have pulled out of awarding Huawei Wireless RAN contracts. There is an increased preference for local players in this region, particularly France with Ciena (as well as small cell suppliers including Baicells) witnessing significant revenue growth in recent years. Issues with Nokia’s Wireless RAN equipment supply timelines as well as performance concerns could result in the company losing market presence in this region over the next few years.
Improved Governmental Approval Scenario
According to Government of Canada, all telecommunications equipment entering into Canada must meet the applicable Innovation, Science and Economic Development (ISED) technical standards and marking requirements in order to prevent radio communication interference, harm to the Canadian public telecommunications networks, and to ensure the safety of personnel working on telecommunications facilities and the safety of users. In 2019, BNetzA, the federal network agency of Germany had released rules that critical telecom equipment including wireless RAN equipment should only be used after scrutiny and certification overseen by Germany's BSI federal cybersecurity. According to China Government, foreign-funded telecom companies can operate their businesses in China after the approval from China government, and the telecommunications regulations and other applicable laws and administrative regulations.
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Wireless RAN Market Challenges
Ban on Chinese Players
According to the American Government, in U.S., the use of China telecom equipment has been banned after it was found spying and providing data to the Chinese communist government. The U.S Federal Communications Commission (FCC) had banned telecommunication companies in the U.S. from using Chinese equipment like next generation wireless networks. For instance, in 2019, the U.S. has banned using china based companies such as Huawei and ZTE equipment particularly wireless 5G equipment due to security concerns. This regulation affects Chinese trade of telecommunication equipment, thereby decreasing the market share of the Chinese telecom equipment companies. U.S. Federal Communications Commission (FCC) has mandated that the telecom equipment produced by U.S. manufacturers must meet the minimum compliance standards. Most electrical products are required to comply with the FCC's Part 15 rules for unintentional RF emissions. This ensure products don't emit RF noise that may interfere with other electrical devices or wireless communications. This mandating of meeting minimum standards for telecom equipment have been restricting the new players entering into the wireless RAN market.
Wireless RAN Market Landscape
Product launches, acquisitions, Partnerships and R&D activities are key strategies adopted by players in the Wireless RAN market. Wireless RAN top companies include Ericsson, Huawei, Nokia, ZTE, Samsung, The ban of Chinese players in North America is set to significantly shake up the market. Samsung is projected to be a huge beneficiary in the shift to 5G although Nokia and Ericsson are set to witness increased demand as well
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Acquisitions/Product Launches
In February 2019, MaxLinear Inc. has announced launch of next generation quad RF transceivers named MxL1500 and MxL1600 for 5G wireless infrastructure. These transceivers help in providing high system integration, wide range of bandwidth, along with high performance and broad system flexibility. With lower power consumption capability, both transceivers create high deployments in wireless infrastructure radios.
In February 2019, Signal chip had announced the launch of semiconductor chips for 5G NR modems. The company introduced SCRF4502, a 2x2 transceiver, which was designed specifically for 5G NR standards. This transceiver was optimally designed to provide high performance with supporting the evolving network architectures.
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The reliable and most trusted brand of GPRS modem suppliers
What is a GPRS Modem?
The GPRS modem is a device for different programming, and remote monitoring, and has reliable security features that make it perfect for IoT and M2M applications. The main objective was to establish a reference in quality and performance. Carrier gathering process makes this compact device unique in areas or applications where cellular data speeds are finite. GPRS is the improved version of communication networks. Moreover, the GPRS speeds range from 40 to 172.2 kbps.
General packet radio service (GPRS) modem is a mobile-related communications system that operates on 2G and 3G cellular networks to enable moderately high-speed data transfers using packet-based technologies. One of the important aspects of this GPRS modem is that the user can use its GPRS Modem supplier a USB interface, permitting it to connect to a Computer.
It is a type of cellular terminal device developed based on 2G/3G/4G LTE connectivity as, Virtual Power Network (VPN) customers, are some of the additional features of GPRS modem. It approves high-powered industrial 32 bits CPU and is inserted with a real-time operating system. GPRS Modem is a versatile operating device equipped to use, a robust module that may be embedded or plugged into any software. GPRS modems are used to assist connections dealing with Internet protocols which provide a set of functions including commercial and other company-related applications. Let us discuss some of the salient features of a GPRS modem when installed on a device.
This system has been utilized for wide legal networks and Industrial IoT infrastructure worldwide requires various systems for connectivity. Compact, sturdy and powerful Industrial Cellular Modems available with the manufacturers contribute to innumerable cellular connectivity options, ranging from 2G (EGPRS) to 4G LTE Cat 1, LTE Cat-M1 and NB-IoT. Below you will find our Industrial modems which are specifically designed to meet Industrial IoT connectivity challenges and connect. The modem support auto recovery mechanism, including online detection, and auto redial when offline to make it always online.
Salient Features of GPRS modem are
They are sturdy and compact devices.
GPRS modems are accustomed to the built-in three-phase power supply
Possess bipolar Meter connectivity option. One is by Optical communication port, and the other one is by serial RS-232/RS-485 communication port
Has status LEDs
Easily mounted on a wall.
The Sim card facility is available
The device is enclosed for security features
This is a simple device suited for communications modules that uses all the benefits of GPRS/3G technology. It is done to program your unit and exchange data via GSM or GPRS, and send SMS updates from remote controlling bases, in a fast and effective process, with our quad-band GSM/GPRS Modem. We are a GPRS Modem supplier that gives this GPRS modem to customers at an economical price in the market.
Benefits of GPRS Modem
The installation charges are less.
This will provide excellent environmental descriptions with respect to temperature, shock, vibration, and MTB.
Reverse-voltage and over-voltage security and protection
Maximum operational flexibility: it can be used with any type of electronic meter
It supports a vast power range of 5-60V DC.
GPRS modems are cheaper than 3G & 4G modems.
GPRS is a highly compact and robust design, it includes the necessary attachments for Mounting tools or DIN rail.
An automatic SMS message has got through the notification of metering events.
These are located to detect HV or LV metering installations.
It has been widely used on M2M communication systems, such as intelligent transportation, industrial automation, telemetry, finance, POS, water supply, environment protection, postal and telecommunications, weather report, smart networks, and so on.
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TREN TEKNOLOGI TAHUN 2021 DAN YANG AKAN HADIR DI 2022
Teknologi tercipta untuk semakin memudahkan hidup manusia. Oleh karenanya, teknologi akan terus berevolusi mengikuti perkembangan kebutuhan manusia. Kita saksikan bersama, tiap tahun kemunculan teknologi terbaru terus mewarnai kehidupan manusia. Banyak aspek yang tersentuh teknologi mulai dari medis, komunikasi, pendidikan hingga ekonomi.
Meski tahun 2022 ruang gerak manusia tetap akan terbatasi pandemi Covid-19, teknologi terbaru tetap hadir. Apa saja teknologi tersebut? Untuk membahasnya akan sulit jika memisahkan dari perkembangan teknologi yang saat ini terjadi. Berikut beberapa teknologi yang hadir di tahun 2021:
TREN TEKNOLOGI DI TAHUN 2021
Otomatisasi Proses Robotik (RPA)
Robotic Process Automation (RPA) adalah teknologi terbaru berupa perangkat lunak yang bekerja secara otomatis yang digunakan untuk menafsirkan aplikasi, memproses transaksi, menangani data, dan bahkan membalas email. RPA mampu memudahkan beragam pekerjaan dan menganalisanya dengan cepat dan akurat.
Hybrid Cloud
Teknologi terbaru ini merupakan salah satu bentuk transformasi digital. Teknologi ini merupakan kombinasi dari public dan private cloud. Umumnya, perusahaan menyimpan data yang sensitif menggunakan private cloud. Sementara, layanan lain disimpan di public cloud. Nah, hybrid cloud banyak digunakan oleh berbagai perusahaan berbasis teknologi untuk meningkatkan keamanan dan ketahanan pada bisnis mereka.
Edge Computing
Edge computing (EC) adalah teknologi terbaru berbentuk paradigma komputasi terdistribusi, yang mendekatkan komputasi dan penyimpanan data ke sumber data. Hal ini dapat meningkatkan waktu respon dan menghemat bandwidth. Perusahaan seperti AWS (Amazon Web Services), Microsoft Azure, dan Google Cloud Platform terkenal memiliki layanan EC yang baik.
Quantum Computing
Quantum computing merupakan bentuk komputasi yang memanfaatkan fenomena kuantum seperti superposisi dan keterikatan kuantum. Teknologi terbaru ini juga terlibat dalam mencegah penyebaran Covid-19, dan untuk mengembangkan vaksin potensial. Ini dapat tercapai berkat kemampuannya untuk menanyakan, memantau, menganalisis, dan menindaklanjuti data dengan mudah.
Quantum computing juga banyak digunakan oleh perbankan dan industri keuangan non-bank untuk mengelola risiko kredit, perdagangan frekuensi tinggi dan untuk mendeteksi penipuan.
Teknologi 5G
Sebelumnya kita mengenal teknologi 3G dan 4G dalam menjelajahi internet, menggunakan layanan berbasis data, meningkatkan bandwidth dan lainnya secara cepat. Tahun ini, kita menantikan lahirnya teknologi terbaru di sektor komunikasi, yakni 5G. Layanan ini mengandalkan teknologi canggih seperti AR dan VR, bersama dengan layanan game berbasis cloud seperti Google Stadia, dan NVidia GeForce Now.
Internet of Thing (IoT)
Internet of Thing (IoT) merupakan konsep di mana objek yang memiliki kemampuan mentransfer data melalui jaringan tanpa memerlukan interaksi manusia ke manusia atau manusia ke komputer. IoT telah berkembang dari konvergensi teknologi nirkabel, micro-electromechanical systems (MEMS) dan Internet.
Sejauh ini, IoT paling erat hubungannya dengan komunikasi machine-to-machine (M2M) di bidang manufaktur dan listrik, perminyakan, dan gas.
Virtual Reality
Virtual Reality (VR), bersama dengan Augmented Reality (AR), dan Extended Reality (ER) merupakan teknologi terbaru yang hadir tahun ini. Dalam prosesnya, VR membenamkan user dalam suatu lingkungan sementara AR menyempurnakan lingkungan mereka.
Teknologi ini utamanya digunakan untuk bermain game, namun penggunaannya semakin luas, karena bisa digunakan juga untuk pelatihan. Misalnya, perangkat lunak simulasi VirtualShip yang digunakan untuk melatih Angkatan Laut, Angkatan Darat, dan penjaga pantai di Amerika Serikat (AS).
Inilah beberapa teknologi terbaru yang muncul di tahun 2021. Dengan perkembangan teknologi yang pesat, tentu saja ini kehadiran teknologi baru tidak akan berhenti di sini, karena akan ada banyak inovasi ke depan yang akan memudahkan pekerjaan manusia, dan memasuki Tahun 2022, perkembangan teknologi ini pasti akan menjadi tren hits.
Arah Teknologi Terbaru di Bidang Bisnis
Melihat beberapa teknologi terbaru yang hadir selama ini, penting bagi perusahaan untuk selalu update kemampuan dan adaptasi teknologi. Berikut merupakan arah teknologi di tahun 2022.
Otomatisasi yang Mempercepat Kerja Manusia
Dengan otomatisasi, waktu yang diperlukan untuk mengerjakan suatu pekerjaan menjadi lebih cepat. Teknologi akan mengarah pada diperpendeknya rantai birokrasi, sehingga suatu pekerjaan yang biasanya selesai dalam 1 minggu, dapat diperpendek menjadi 1 hari atau bahkan bisa selesai dalam hitungan jam.
Pengambilan Keputusan yang Cepat
Teknologi juga akan mengarah pada dipercepatnya sebuah pengambilan keputusan. Dengan suplai data yang lebih cepat, perusahaan maupun pengambil kebijakan bisa segera membuat keputusan.
Penghematan Biaya
Teknologi terbaru juga akan berorientasi pada penghematan biaya, baik itu produksi maupun pemasaran.
Meningkatkan Respons
Dengan teknologi terbaru, sistem akan dapat terintegrasi di semua kantor cabang atau anak perusahaan. Sehingga akan dapat meningkatkan kecepatan dalam merespons sesuatu. Pihak manajemen pun akan dengan cepat mengetahui kondisi yang ada tanpa harus berkunjung ke kantor cabang yang jauh dan membutuhkan biaya akomodasi.
TREN TEKNOLOGI TERBARU DITAHUN 2022
Seperti yang telah disebutkan sebelumnya, kehadiran teknologi terbaru tidak akan berhenti di tahun ini. Sebab, kemajuan ilmu pengetahuan akan selalu diiringi dengan kehadiran teknologi-teknologi baru. Apalagi sifat natural teknologi adalah “dinamis”, yang artinya perkembangannya selalu bergerak mengikuti perkembangan zaman dan tuntutan hidup manusia.
Menurut analis dari Gartner, di tahun depan akan ada delapan tren teknologi terbaru yang harus dicermati. Para ahli percaya teknologi-teknologi yang akan hadir ini akan relevan, setidaknya selama lima tahun ke depan.
1. Internet of Behavior (IoB)
Internet of Behavior (IoB) adalah tren yang sedang berkembang. Istilah ini mengacu pada pengumpulan dan penggunaan apa yang disebut “digital dust”, yaitu jejak digital yang ditinggalkan orang dalam kehidupan sehari-hari mereka.
Teknologi terbaru ini mampu hadir dalam bentuk facial recognition, pelacakan lokasi, dan Big Data. Termasuk dari ponsel cerdas dan perangkat yang dapat dikenakan, dan sensor ditanamkan di tubuh manusia. Gartner memperkirakan, pada akhir 2025 lebih dari setengah populasi dunia akan berpartisipasi dalam setidaknya satu program IoB.
2. Intelligent Composable Business
Ini adalah teknologi terbaru yang dapat beradaptasi dan merekayasa ulang dirinya sendiri sesuai dengan situasi. Kehadirannya memungkinkan user mendapatkan fungsionalitas yang dibutuhkan dengan cepat. Teknologi tersebut dapat disediakan oleh vendor atau dikembangkan di rumah.
3. Jejaring Keamanan Siber
Cybersecurity mesh atau jaring keamanan siber adalah teknologi terbaru yang memungkinkan user mengakses aset digital dengan aman, di mana pun aset atau user berada. Artinya, sistem perlindungan akan fokus pada pengorganisasian perimeter keamanan di sekitar setiap pengguna.
Kemunculan teknologi ini disebabkan oleh meningkatnya permintaan akan teknologi cloud dan meningkatnya jumlah karyawan jarak jauh. Banyaknya karyawan yang bekerja jarak jauh, membuat sistem keamanan internal tidak lagi berfungsi.
Para ahli percaya bahwa pada tahun 2025, jaringan keamanan siber akan mendukung lebih dari setengah permintaan manajemen akses digital.
4. Total Experience
Total Experience merupakan bentuk teknologi terbaru yang mengkonsolidasikan pengalaman pelanggan, karyawan, dan user dengan lingkungan multi-channel. Perusahaan membutuhkan strategi konsolidasi yang berpengalaman karena interaksi menjadi lebih mobile, virtual, dan terdistribusi.
Menggunakan data terkonsolidasi untuk membuat strategi terpadu dapat memberikan manfaat yang kuat bagi bisnis. Gartner memprediksi bahwa perusahaan yang mengadopsi Total Experience akan mengungguli pesaing dalam metrik kepuasan pelanggan selama tiga tahun ke depan.
5. Hyper Automation
Di masa depan masih ada permintaan yang besar untuk otomatisasi proses dan tugas manual yang berulang. Oleh karena itu, RPA tetap menjadi tren penting. Nah, otomatisasi berbasis tugas ini akan semakin digantikan oleh otomatisasi berbasis proses. Inilah yang disebut Gartner sebagai Hyper Automation. Teknologi terbaru ini menyiratkan pengoptimalan proses bisnis pada tingkat yang baru secara kualitatif, menerapkan teknologi inovatif, termasuk kecerdasan buatan dan machine learning.
6. Anywhere Operation
Anywhere Operations adalah model bisnis yang dirancang untuk mendukung pelanggan, karyawan, dan layanan dari mana saja di dunia. Trennya sudah ada sebelumnya, tetapi pandemi 2020 telah mempercepat pergerakan ke arah ini.
Gartner percaya bahwa pada akhir 2023, 40% perusahaan akan menggunakan teknologi terbaru untuk mendukung model bisnis "Anywhere Operation", dengan menggabungkan interaksi virtual dan fisik dengan pelanggan dan karyawan.
7. AI Engineering
AI Engineering adalah teknologi terbaru yang menyediakan disiplin rekayasa dan struktur kuat, yang akan menekankan ketersediaan AI dan memastikan skala dan penerapannya. Gartner menganggap ini penting, karena menurut penelitian hanya setengah dari proyek AI yang beralih dari prototipe ke implementasi.
AI Engineering didasarkan pada metodologi DataOps, ModelOps, dan DevOps, dan membantu meningkatkan keandalan dan kinerja model AI, serta laba atas investasi yang diperoleh perusahaan dalam kecerdasan buatan.
8. Distributed Cloud
Teknologi terbaru ini mampu mendistribusikan layanan cloud ke beberapa lokasi di luar pusat data penyedia. Namun, tanggung jawab untuk operasi, pengelolaan, dan pengembangannya tetap berada di tangan penyedia cloud.
Bagi perusahaan, ini berarti dapat menemukan pusat data dan layanannya di lokasi yang sama, yang mengurangi latensi dan membantu mematuhi peraturan yang mewajibkan penyimpanan data di area geografis tertentu. Menurut Gartner, pada 2025, sebagian besar penyedia cloud akan menyediakan beberapa bentuk layanan ini.
Demikianlah beberapa tren teknologi terbaru yang diperkirakan akan hadir tahun 2022. Kehadiran teknologi-teknologi ini tentu menarik untuk dicermati, karena akan semakin mengubah pola kerja dan hubungan antar individu di masa depan.
Sumber : https://commercial.acerid.com/support/articles/8-teknologi-terbaru-yang-menjadi-tren-di-tahun-2022-pebisnis-wajib-tahu
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Intercel is Australia’s leading cellular solution provider for M2m Serial Modem and manufacturer and supplier of GSM, GPRS, 3G, and 4G industrial modems for machine-to-machine applications.
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Global Cellular M2M Market Research Report - Forecast till 2027
Global Cellular M2M Market Research Report - Forecast till 2027
MARKET SNAPSHOT
Cell or mobile infrastructure has undergone significant improvements since the launch of 2G networks, GPRS, 3G, LTE and more recently, 5G mobile technologies. Users will also access the internet at fast speeds and download high-definition content to their smart mobile devices. Advancements in technology have also facilitated developments in the IoT sector. Cellular networks are wireless technologies that provide secure and reliable data transmission functionality over long distances to IoT devices. Machinery is now an integral part of the connectivity network, from industry to smart homes. Machine-to-machine (M2M) connectivity is the primary mode of these computers, and automatically supports humans in different ways. So many more M2M devices are focused on cellular networks, taking advantage of greater coverage and lower network launch costs. Actually, machine terminals connecting to cellular networks are much like mobile phones, suggesting a dynamic protocol stack, power consumption and high cost, which are the key barriers to the introduction of computers.
M2M communication facilitates universal networking between autonomous vehicles and/or Internet connectivity to MTC devices. M2M connectivity is separate from human-to-human (H2H) communication, which includes primarily voice calls, texting, and web surfing. The aim of M2M communications is to enhance the strength of automated systems by enabling devices and systems to exchange and transfer data.
The cellular M2M market size is projected to grow from USD 12.8 billion in 2020 to USD 27.0 billion by 2026, at a Compound Annual Growth Rate (CAGR) of 20.43% during the forecast period. The growth in the need for risk assessment and management, the decrease in the cost of communication applications and the increasing adoption of the Internet of Things have propelled the demand for cellular M2M. The rising need for wireless connectivity has led to a need for a single M2M network. Moreover , growing demand across the IT & Telecom sector is expected to boost market growth significantly. The cellular M2M market is witnessing popularity as technology enables data or information transfers to remote locations on the condition of physical devices and properties for efficient control and monitoring. In addition, factors such as network connectivity , the need to enhance business operations , and increased revenue sources are also considered to have a strong effect on significant growth during the forecast period.
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Key Developments
In October 2019 , AT&T collaborated with Vodafone Business to open up access for their respective NB-IoT networks to make it easier for customers to create massive IoT deployments that work across the U.S. and parts of Europe
In July 2020, Deutsche Telekom introduced LTE-M in Germany, allowing its consumers to gain applications to enable data transfer and analysis. LTE-M is intended to assist customers allow applications across a wide range of industry sectors via 5G-based LTE-M technology.
Regional Analysis
Geographically , the global cellular M2M market has been segmented into North America , Asia-Pacific , Europe , the Middle East & Africa , and South America
North America held the largest share in the cellular M2M market, followed by Asia-Pacific and Europe ; it is expected to continue to retain its dominance until the end of the forecast period. North America is one of the key markets for cellular M2M. The US accounted for the largest market share , followed by Canada and Mexico. Growing adoption of M2M cellular in North America's business operations would stimulate the global demand in the future. Emerging markets are expected to witness a broader opportunity for M2M cellular devices for the projected period. In addition , a massive ROI is anticipated in cellular M2M value-added services in developing economies due to better prospects for increased output in M2M value-added services. Asia Pacific (APAC) is expected to grow at the highest CAGR from 2020 -2026. Asia Pacific is another fast-growing region due to the fact that your own device trend is becoming increasingly common among small and medium-sized enterprises with a view to improving business continuity management and privacy risk management, which is expected to fuel global cellular M2M market growth.
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BLIIoT Industrial 4G SMS Modbus to MQTT Controller Alarm S272 for Power Harvesting and Control Device Switch
The Industrial 4G SMS Modbus to MQTT Controller Alarm S272 is design for working in the harsh industrial application environment, widely used in a variety of industrial automation, security monitoring system, automatically measurement and control system, BTS monitoring, remote data acquisition, telemetrically systems, automatically control system. It can be used as a remote switch, remote I/O, remote smart PLC, timer switches.
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2G 3G 4G 2DI 2AI 2DO RTU Remote control Cellular IoT Modbus RTU
Cellular M2M IoT RTU S270 is wireless internet of things device, is an industrial class, high reliability, high stability, and programmable Remote Terminal Unit (RTU). It embedded 32-Bit High Performance Microprocessor MCU, inbuilt industrial Cellular module.
Cellular M2M IoT RTU S270 provides 2 digital inputs, 2 analog or PT100 Resistance Temperature Detector (RTD) inputs, 2 relay outputs, 1 ambient sensor input for monitoring onsite temperature and humidity. It can monitoring and operates the I/O ports by SMS, APP, Web Server, internet, timers and programmed inter-lock events automatically.
Cellular M2M IoT RTU S270 inbuilt TCP/IP protocol stack make it suitable for internet of things (IoT) applications, it can be easily to operate by the provided cloud, app, and web server, or integrated to you IoT applications according to the TCP/UDP protocol, or integrated to SCADA systems by standard Modbus TCP protocol, MQTT Protocol too. This is very useful if you need remote control onsite devices with low cost solution.
Cellular M2M IoT RTU S270 is design for working in the harsh industrial application environment, widely used in a variety of industrial automation, security monitoring system, automatically measurement and control system, BTS monitoring, remote data acquisition, telemetrically systems, automatically control system. It can be used as a remote switch, remote I/O, remote smart PLC, timer switches.
Cellular M2M IoT RTU S270 can be used as remote access control for BTS monitoring, the authorized users can open the gate or turn on the machine with a free charge call at specified time, this is useful for daily maintenance to save the time of traditional authorized. Cellular M2M IoT RTU S270 performs as Modbus TCP Slave over GPRS/3G/4G network.
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Electric vehicle and automatic charging station
Electric vehicles like electric cars, electric bikes and electric bikes are turning into a more a famous kind of transportation. They are generally calmer and precisely easier than inner ignition motor vehicles. The expense of re-energizing is considerably less than gas; it resembles paying 60 pennies for every gallon of gas. Electric vehicles are regularly straightforwardly controlled by outer force stations that are fueled by put away power. Electric vehicle energizes may take to a couple of hours for typical regular use.
CAN is a correspondence convention that is usually utilized in the Automobile Industry. Electric vehicles can speak with charging stations through CAN to Wi-Fi converters like I-7540D-WF. Sequential to Wi-Fi converters like M2M-711D can carry the accuse siphon to impart of the electric vehicle. Cell modems like GTM-201-3GWA can permit electric charge siphons to impart back to a focal area and can report siphon utilization or issues with the siphon. EV charging cable
Would converters be able to permit vehicles to speak with various sorts of gadgets and organizations. They make an interpretation of CAN convention to another kind of convention different gadgets and organizations can comprehend. I-7540D-WF is a CAN to Wi-Fi converter which upholds the remote transmission of CAN information between different CAN organizations or permits correspondence between a CAN arrange and a WLAN network as per 802.11b/g principles. Would converters be able to like I-7540D-WF are set up with a product utility, support encryption and can be utilized in highlight point or highlight multi point geographies.
Sequential to Wi-Fi converters permit siphon stations to speak with electric vehicles by permitting sequential information to speak with the WLAN organization. M2M-711D backings information burrowing between two RS-485 or RS-422 sequential gadgets through virtual COM ports. They support a remote transmission distance up to 100 meters, support encryption and are set up with a product utility.
Cell modems like GTM-201-3GWA permit siphon stations to report back to a focal worker. The siphon and caution information can be gathered and put away for investigation. They can likewise permit the charge station to send electric vehicle administrators a SMS instant message when the vehicle is finished charging. GTM-201-3GWA backings 850/900/1800/1900 Mhz and 3G organizations.
M2M gadgets permit electric vehicles to speak with charge stations and charge stations to convey back to focal workers. Machine to Machine arrangements help simplify our lives and more advantageous. Instant message warnings assist drivers with knowing precisely when their vehicles are finished charging so they can all the more effectively make it to their next objective.
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