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PCIe DC-DC Converter Market - Forecast(2024 - 2030)
PCIe DC-DC Converter Market Overview
PCIe DC-DC Converter Market is analyzed to grow at a CAGR of 16.6% during the forecast period 2021-2026 to reach $9.5 billion. PCIe or PCI Express generally refers to a high speed serial computer expansion bus standard that is designed with more advantages in comparison to older standards. PCIe standards are capable of providing benefits including better performance scaling, lower latency, synchronous rectification, pulse amplitude modulation, larger bandwidth support, higher data speeds and so on making it an ideal choice for various application areas like graphic cards, storage devices, network interface cards, and many other high performance peripherals. With rise in data traffic and need for high performance computing devices and integrated circuits, different generation models be it PCIe 5.0, PCIe 4.0 and so on are selected according to end-use requirements. Increasing rate of data center infrastructure growth as well as shift towards advanced technologies including artificial intelligence and machine learning are considered as some of the major drivers impacting the growth of PCIe DC-DC Converter Market. In addition, investments towards advancing telecom communication infrastructure with 5G technology along with rise of adoption in automotive applications like ADAS systems, infotainment systems and so on are further analyzed to fuel the growth of PCIe technology in the long run.
Report Coverage
The report: “PCIe Industry Outlook – Forecast (2021-2026)”, by IndustryARC covers an in-depth analysis of the following segments of the PCIe industry.
By Generation: PCIe 1.0 & 2.0, PCIe 3.0, PCIe 4.0, PCIe 5.0.
By Form Factor: Mini PCIe, PCIe.
By Product: SLC, MLC.
By Output Voltage: Upto 3.3V, 3.3-5V, 5-10V, 10-15V, 15-24V And Above 24V.
By Output Power: Upto 20W,20-50W,50-100W and Above 100W.
By Application: Graphic Processor Units, Network Interface Cards, Storage Device & Controllers, PCIe Switches (Gen 1, Gen 2, Gen 3, Gen 4 and Gen 5), Servers.
By End Users: Telecommunication, Industrial, Residential, Data Centers (Hyperscale, Colocation, Others), Automotive, Infrastructure, Others.
By Geography: North America, South America, Europe, APAC and RoW.
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Key Takeaways
Growing shift towards advanced technologies like artificial intelligence and machine learning along with increasing growth of data center infrastructures is analyzed to significantly drive the PCIe DC-DC Converter Market during the forecast period 2021-2026.
Storage Device & Controllers application segment had accounted for the largest market share in 2020, attributed to the factors including rise of cloud based data storage requirements, infrastructural developments for data centers and so on.
High investments towards research and development activities by some of the key market players such as Samsung Electronics Co. Ltd, Renesas Electronics Corporation and Toshiba Corporation with others have helped in boosting the growth of PCIe across APAC markets.
PCIe DC-DC Converter Market Segment Analysis- By Generation
Based on generation, the PCIe DC-DC Converter Market is segmented under PCIe 1.0 & 2.0, PCIe 3.0, PCIe 4.0 and PCIe 5.0. PCIe 3.0 generation had dominated the PCIe DC-DC Converter Market with 46.5% share in 2020, and is analyzed to grow significantly at a rate of 16.4% during the forecast period 2021-2026. Generation PCIe 3.0 can be referred to as a Gen 3 expansion card comprising of a four-lane configuration, used across some of the major end-use industries be it telecom, data centers and so on. However, with growing advancements towards Gen 4 and Gen 5, adoption of PCIe 3.0 based solutions has been still maintaining a significant growth in the markets, due to its long time presence. Capable of reaching speeds upto 1000 Mbps, PCIe 3.0 architecture incorporate features like enhanced signaling and data integrity, channel enhancements, clock data recovery, pulse amplitude modulation and so on, retaining its market position. Factors including growth in video streaming, video conferencing, online gaming, social networking and many others have surged the internet traffic amidst the COVID-19 pandemic situation, attributing towards the need for PCIe 3.0 interfaces. In addition, usage of PCIe 3.0 has been still in demand owing to rising rate of investments from various key vendors towards developing products with Gen 3 support. In 2020, AMD announced about the launch of A520 chipset, as a part of supporting its third generation Ryzen desktop processors. Through this, the company wanted to help its customers offer a path for future upgrades, based on Zen 3 architecture. Such factors have eventually helped in creating a positive impact towards the deployment of PCIE 3.0 solutions for the end-use markets.
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PCIe DC-DC Converter Market Segment Analysis- By Application
Based on application, Storage Device & Controllers had accounted for the largest share of 32.1% in 2020, analyzed to grow significantly with a CAGR of 15.5% in the global PCIe DC-DC Converter Market during the forecast period. The need for PCIe had evolved in the storage applications overtime with the introduction of technologies namely SATA Express and Non-Volatile Memory Express. With the shift towards ultra thin laptops, tablet PCs and so on, there is significant need towards connectors used in peripheral devices capable of fitting into narrower spaces. In order to address such requirements, PCI-SIG specified the M.2 connectors, thereby gaining it wide popularity. In addition, growing number of investments towards construction of new data centers or upgradation of existing facilities can be considered as some of the major factors attributing towards its market growth owing to rise of cloud based data storage and improved integrated circuits. NVMe and PCIe have been becoming highly popular owing to technological advancements in the field of solid state storage applications. Deployment of PCIe based solid state drives are raising its demand in the markets serving cloud computing requirements, with comparitively higher data transmission as well as high speed connectivity. Owing to these advantages, PCIe had turned as a popular choice among data centers and telecom sectors due to shift towards high-performance computing while storage applications. In 2021, Interface Concept announced about the launch of a removable SSD mass storage XMC module, named IC-EM2-XMCa, capable of supporting PCIe x1/x2/x4 Gen2/Gen3 interface connection. Owing to its capability of increasing storage capacity upto 2TB, as a part of adding mass storage capacity to any third party Single Board Computer or host carrier board, used across VPX, cPCI or VME systems, thus making it suitable for computing as well as storage-intensive applications. Such factors are further set to propel the growth of PCIe within storage devices or controllers in the long run.
PCIe DC-DC Converter Market Segment Analysis- Geography
APAC had accounted for the largest share of 36.5% in 2020, followed by North America and Europe in the PCIe DC-DC Converter Market, analyzed to grow at a rate of 19.6% during the forecast period 2021-2026. Factors including growing demand for cloud computing services, shift of telecom sector towards advancing network or communication infrastructures and many others have acted as some of the major factors attributing to the market growth. Presence of key players such as Renesas Electronics Corporation, Samsung Electronics Co. Ltd, Toshiba Corporation with many others opting for R& D activities overtime have been also helping in creating significant growth of PCIe across the region. In 2020, Samsung announced about the launch of PCIe 4.0 NVMe SSD (solid state drive), named SSD 980 Pro. This development was meant to help professionals as well as consumers opting for high performance PCs, workstations and gaming consoles, also making it an ideal choice for consumers working with 4K or 8K contents or playing high graphic games. High investments towards building data center facilities as well as growing shift towards improving virtualization, high-performance computing, and many others for automotives is further analyzed to drive the market growth in the coming years. In 2020, China revealed about constructing one of the world's highest-altitude cloud-computing data center in Tibet in order to meet data storage requirements for China as well as various South Asian nations including Bangladesh, Nepal and Pakistan. As per Ningsuan Technology Group, an investment of about 11.8 billion yuan (around USD 1.8 billion) has been planned for this project, which will help in providing services such as video rendering, distance-learning data backup, autonomous driving and so on in the long run. Such construction projects related to data centers are set to drive the need for high-speed switches, storage devices, and so on, impacting the market growth of PCIe during the forecast period 2021-2026.
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PCIe DC-DC Converter Market Drivers
Increasing growth towards data center infrastructures:
Increasing growth towards data center infrastructures can be considered as one of the vital factors driving the market growth of PCIe. This growth is significantly impacting the need for high-speed devices capable of offering faster data transmission owing to rise of data traffic for optimizing data center facilities. Enterprise workloads have already started migrating towards cloud, which in turn requires the need for high performance computing, virtualization and related applications, making it beneficial for the use of PCIe based devices. In addition to this, with the surging COVID-19 pandemic situation, there is a rapid rise of remote work or work from home, driving the growth of data centers towards handling bulks of data with higher efficiency. Moreover, data centers have been continuously focusing on leveraging hyperscale computing networks to be able to meet growing cloud-based workloads, thereby accelerating the demand towards high-speed networking devices be it PCIe switches, servers, storage devices and many more. Large Enterprises including Microsoft Corporation, Google, Amazon Web Services and many others have been constantly focusing on expanding data center facilities across various regions alongside renovation or upgradation for the existing facilities to cope up with the growing data traffic is further set to propel the demand for PCIe based solutions. As a part of this, in 2021, Microsoft had revealed about its plans of investing about $200 million towards construction of two data centers of around 200,000 square feet outside Chicago, expected to become operational by 2022. Such factors are further set to propel the need for PCIe switches, servers, storage devices and so on owing to conducting various processes be it high-performance computing, optimum network connectivity and many others during the forecast period 2021-2026.
Growing shift towards advanced technologies like artificial intelligence and machine learning:
Growing shift towards advanced technologies including artificial intelligence (AI) and machine learning (ML) can be considered as one of the major drivers impacting the growth of PCIe DC-DC Converter Market. With technological advancements, there is significant rise towards AI or ML based workloads, eventually raising the need for upgraded or new generation of computing architectures. Since AI based applications work on generating as well as processing of massive amounts of data within real-time data speeds, there is significant demand towards various high speed PCIe devices like graphic processor units, switches, controllers and many others, capable of handling large bandwidth requirements at high-speeds. In comparison to traditional CPUs, the need for computational models is rising, owing to growing demand towards high-bandwidth and low latency communication channels. Rise of demands have been eventually attributing towards various PCIe generation models, particularly PCIe 4.0 or PCIe 5.0 for serving such application requirements. Leveraging PCIe technology can help CPU models to keep up with the increasing data flow from edge devices across various enterprises, thereby creating a positive impact on market growth. In 2020, an AI chipmaker, Hailo had introduced high-performance AI acceleration modules, namely M.2 and mini PCIe designed for empowering edge devices. The development of the modules was meant to allow customers integrate high-performance AI capabilities within edge devices, while offering a more flexible and optimized solution. Deployment of such modules can help in accelerating a large number of deep learning based application areas with higher efficiency, thereby creating its significant growth in the PCIe DC-DC Converter Market in the long run.
PCIe DC-DC Converter Market Challenges
Complexities related to designing, implementation or verification:
Designing, implementation or verification related complexities act as one of the major challenges restraining the growth of PCIe DC-DC Converter Market. PCIe based devices are capable of offering improved reliability, availability and many other advantages, gaining it wider adoption across various end-use verticals. However, configurability and complexities for PCIe pose several designing challenges, as the designer needs to read as well as understand various specifications associated with the standard for selecting an option to be incorporated within the designing architecture. In addition, due to its adoption across a broad range of application areas, manufacturing of PCIe in large quantities based on various factors be it voltage, temperature and so on, eventually affects its signal efficiency or integrity, thereby contributing towards high amounts of variation while designing process. Design or verification complexity issues exponentially rises due to need for a huge sample space of configurable features, along with a minimal error while selecting configuration can make the design unsuited for targeted application, thereby causing prolonged time to market. Such factors have been contributing towards lesser adoption of PCIe, while hampering its market growth across various end-use sectors.
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PCIe DC-DC Converter Market Landscape
Product launches, collaboration, and R&D activities are key strategies adopted by players in the PCIe DC-DC Converter Market. The key players in the PCIe DC-DC Converter Market include Broadcom Inc., Microchip Technology Inc., Renesas Electronics Corporation, Intel Corporation, Nvidia Corporation, Samsung Electronics Co. Ltd, Toshiba Corporation, Xilinx Inc., PLDA and Texas Instruments among others.
Acquisitions/Technology Launches/Partnerships
In April 2021, Samsung Electronics launched PM9A1 SSD, featuring a PCIe 4.0x4 interface. This development was meant to be used in PCs, specifically for enterprises as well as government agencies dealing with sensitive information with sophisticated security requirements.
In February 2021, Microchip Technology Inc. had introduced PCI Express 5.0 switch solution, Switchtec PFX PCIe 5.0 which is capable of doubling interconnects performance for dense compute, high-speed networking as well as NVM Express storage. Development of the world’s first PCIe 5.0 switch was done to support high density and reliability capabilities, including 28 lanes to 100 lanes and upto 48 non-transparent bridges.
#PCIe DC-DC Converter Market#PCIe DC-DC Converter Market size#PCIe DC-DC Converter industry#PCIe DC-DC Converter Market share#PCIe DC-DC Converter top 10 companies#PCIe DC-DC Converter Market report#PCIe DC-DC Converter industry outlook
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Wired Interface Market Size Worth USD 1,385.44 Million, Globally, By 2030 At 6.40% CAGR.
The latest market report published by Credence Research, Inc. “Global Wired Interface Market: Growth, Future Prospects, and Competitive Analysis, 2016 – 2028. The global demand for wired interface was valued at USD 840.29 Million in 2022 and is expected to reach USD 1,385.44 Million in 2030, growing at a CAGR of 6.40% between 2023 and 2030.
Wired interfaces, the backbone of contemporary electronic communication, play a pivotal role in our tech-driven society. They facilitate data transfer across a myriad of devices, from smartphones to servers, ensuring seamless connectivity. Wired Interface Market refers to the global market for various wired technologies that facilitate data transfer and communication between devices. This market encompasses a wide range of interfaces, including USB, Ethernet, HDMI, DisplayPort, Thunderbolt, and many more.
Wired Interface Market Key Growth Trends refer to the significant developments and patterns observed in the market for wired interfaces. As technology continues to advance at a rapid pace, wired interfaces have maintained their relevance by offering reliable and high-speed connectivity solutions for various devices across industries. One of the key growth trends is the increasing demand for USB Type-C connectors, which provide faster data transfer speeds along with enhanced power delivery capabilities. This trend can be attributed to the rising popularity of portable devices such as smartphones, tablets, and laptops that require efficient charging and seamless data transmission. Another noteworthy growth trend is the adoption of Ethernet technologies in industrial applications like manufacturing, transportation, and energy sectors.
These wired interfaces play a crucial role in today's interconnected world by enabling high-speed and reliable transmission of digital signals across different electronic devices like computers, smartphones, televisions, gaming consoles, and other consumer electronics. The Wired Interface Market is driven by increasing demand for faster data transfer rates and higher-quality audio-visual experiences among consumers. Advancements in technology have led to the development of new interfaces with improved performance capabilities and enhanced features such as power delivery over cables or support for multiple displays. Additionally, industries such as automotive and aerospace are also utilizing wired interface solutions to enable seamless integration of various systems within vehicles or aircrafts.
Browse 190 pages report Wired Interface Market By Interface Type (USB (Universal Serial Bus), HDMI (High-Definition Multimedia Interface), Ethernet) By End Users (Consumer Electronics, Enterprise Users, IT and Telecom Sectors, Government and Public Sector, Healthcare Institutions, Retail, Automotive) - Growth, Future Prospects & Competitive Analysis, 2016 – 2030)- https://www.credenceresearch.com/report/wired-interfaces-market
Wired Interface Market Recommendations:
1. Networking:
Ethernet (RJ-45) Cables:
Cat5e: This supports up to 1Gbps and is widely used in residential setups.
Cat6/Cat6a: These support up to 10Gbps. Cat6a has better performance over longer distances.
Cat7/Cat8: These are even faster but might be overkill for average users. Suitable for data centers or professional setups.
Recommendation: For general home use, Cat5e or Cat6 cables should suffice. For more professional or demanding setups, consider Cat6a or higher.
2. Audio:
3.5mm Audio Jack: This is the common headphone jack. Still found on many devices despite the trend of wireless audio.
6.35mm Audio Jack: Often used in professional audio setups like electric guitars and high-end headphones.
XLR: Primarily used for microphones and professional audio equipment.
RCA: Used for both audio and video, common in older systems and some hi-fi equipment.
Recommendation: For personal audio devices, 3.5mm jacks are standard. If you're delving into professional audio or musical instruments, consider XLR or 6.35mm jacks.
3. Computing:
USB-A: The traditional USB plug, still found on many devices.
USB-C: A more recent standard, supporting faster data transfer and charging, and it's reversible. Found on newer laptops, smartphones, and tablets.
HDMI: Widely used for transmitting both audio and video to displays.
DisplayPort: Another video/audio transmission cable, often preferred for gaming monitors because of its support for higher refresh rates.
Thunderbolt 3/4: Uses the USB-C connector but supports even faster data transfer rates and can transmit power, data, and video. Mostly found on high-end laptops and peripherals.
Recommendation: USB-C and Thunderbolt (especially Thunderbolt 4) are the way forward in terms of versatility and speed for computing needs. For display, the choice between HDMI and DisplayPort depends on the use case; for regular media consumption, HDMI is sufficient, but for gaming or professional use, DisplayPort might be preferable.
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The report provides a qualitative as well as quantitative analysis of the global Wired Interface Market by segments, current trends, drivers, restraints, opportunities, challenges, and market dynamics with the historical period from 2016-2020, the base year- 2021, and the projection period 2022-2028.
The report includes information on the competitive landscape, such as how the market's top competitors operate at the global, regional, and country levels.
Major nations in each region with their import/export statistics
The global Wired Interface Market report also includes the analysis of the market at a global, regional, and country-level along with key market trends, major players analysis, market growth strategies, and key application areas.
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Enterprise Hard Disk Market Statistics, Segment, Trends and Forecast to 2032
An enterprise hard disk is a type of high-performance storage device designed for use in enterprise-level environments, where reliability, durability, and fast data access speeds are critical. These hard disks are typically used in servers, data centers, and other high-performance computing applications, where they are used to store large amounts of data and provide fast access to that data.
Enterprise hard disks are typically available in both SAS (Serial Attached SCSI) and SATA (Serial ATA) interfaces, and they come in a range of storage capacities. They are also designed to operate in high-temperature and high-vibration environments, which makes them suitable for use in data centers and other industrial settings.
One key feature of enterprise hard disks is their high reliability. They are designed with advanced error correction mechanisms and other technologies to minimize the risk of data loss due to hardware failure. Many enterprise hard disks also come with built-in redundancy features, such as RAID (Redundant Array of Independent Disks), which provides additional protection against data loss.
The estimated market size for the Enterprise Hard Disc Drives (HDD) Market is provided in terms of both value (million USD) and volume (K Units). Enterprise Hard Disc Drives (HDD) market size has been estimated and validated using both top-down and bottom-up methodologies. These approaches have also been used to estimate the size of numerous additional dependent submarkets within the overall market. Secondary research has been used to identify the major market participants, and primary and secondary research has been used to estimate their market shares. Both confirmed secondary sources and primary sources have been used to calculate all percentage shares, splits, and breakdowns.
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Market Segmentations:
Global Enterprise Hard Disk Market: By Company • Seagate • Western Digital • Toshiba • Eaget • Lenovo • Founder Global Enterprise Hard Disk Market: By Type • External Hard Drives • Internal Hard Drives Global Enterprise Hard Disk Market: By Application • For Desktop • For Notebook • For Server Global Enterprise Hard Disk Market: Regional Analysis 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 Enterprise Hard Disk 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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#Enterprise Hard Disk Market Statistics#Segment#Trends and Forecast to 2032#An enterprise hard disk is a type of high-performance storage device designed for use in enterprise-level environments#where reliability#durability#and fast data access speeds are critical. These hard disks are typically used in servers#and other high-performance computing applications#where they are used to store large amounts of data and provide fast access to that data.#Enterprise hard disks are typically available in both SAS (Serial Attached SCSI) and SATA (Serial ATA) interfaces#and they come in a range of storage capacities. They are also designed to operate in high-temperature and high-vibration environments#which makes them suitable for use in data centers and other industrial settings.#One key feature of enterprise hard disks is their high reliability. They are designed with advanced error correction mechanisms and other t#such as RAID (Redundant Array of Independent Disks)#which provides additional protection against data loss.#The estimated market size for the Enterprise Hard Disc Drives (HDD) Market is provided in terms of both value (million USD) and volume (K U#and primary and secondary research has been used to estimate their market shares. Both confirmed secondary sources and primary sources have#splits#and breakdowns.#Click Here#To Get Free Sample Report : https://stringentdatalytics.com/sample-request/enterprise-hard-disk-market/510/#Market Segmentations:#Global Enterprise Hard Disk Market: By Company#• Seagate#• Western Digital#• Toshiba#• Eaget#• Lenovo#• Founder#Global Enterprise Hard Disk Market: By Type
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Intelligent Platform Management Interface (IPMI) market : Worldwide Industry Analysis and New Market Opportunities Explored By 2022 - 2032
Intelligent Platform Management Interface (IPMI) is a standard message-based hardware management interface which consists a hardware chip which implements the core of IPMI. IPMI defines a specific way for embedded management subsystems to communicate with CPU’s, embedded management sub-subsystems and Remote management applications (with the help of serial lines, LANs, etc.).
IPMI management consists of various subsystems are embedded such as BMCs (baseboard management controllers), EMCs (enclosure management controllers through the application of the IPMB standard) and PMCs (peripheral management controllers through ICMB). Baseboard Management Controller (BMC) or Management Controller (MC) is the hardware chip which is used to upfront the IPMI and helps in controlling the server.
IPMI out-of-band operation allows the system to operate, even when hosts in-band communication is not functioning. IPMI enable systems to be interoperable, extensible, and scalable. IPMI is finding high usage in various sectors and new geographical areas which are driving the market. Because of its vast usage and secure climate IPMI market will witness an escalating demand globally.
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IPMI: Market Dynamics
IPMI facilitates processor independent monitoring which is driving the market. IPMI is a standard that shapes a consistent hardware and software framework. Also, IPMI implementations reduce development time by handling standard failures. Because of the significant features, IPMI has found applications in various vertical such as banking, healthcare, retail, financial services, aviation, insurance, IT, Manufacturing, Telecom, education, research, public sector and many more.
Industries such as retail, aviation, IT and telecom requires specialized IPMI systems because a single breakdown in hardware can kill the sales for that period. Industries such as retail, aviation, IT and telecom need dedicated IPMI systems because a single failure in hardware can kill the sales for that period. Many industry vertical deals with a large workforce, diverse customer profiles and assets in different locations.
In the current scenario, the economic and financial sector development has supported the automation and expansion of IT structure, which changed the operating environment of these industries forever and played a significant role in shaping and strengthening economies of developing countries such as India and China.
However, IPMI comes along with many restraints. IPMI might give total control in the hands of a remote attacker who can get complete control over a vulnerable operating system. IPMI firmware also contains many security flaws such as buffer overflow vulnerabilities, shell injection, and privilege escalation vulnerabilities.
Some of the IPMI have poorly written shell scripts, bad architecture, and terrible security design. The high price is also a major restraint for the market as it restricts companies looking for IPMI for their network of computers because of the budget.
IPMI market has an opportunity towards the advancements in the retail sector since it requires a large number of systems running continuously 24/7. Also, IPMI can foresee a substantial market growth in China and Japan because of advancement in the telecommunication sector in these regions.
IPMI: Segment Outlook
IPMI market can be segmented on the basis of types which include Hardware (Baseboard Management Controllers (BMCs), Sensors & Controls, Memory Devices, and Others) and Software. IPMI market can be segmented on the basis of applications which include Server (Blade Server, Rack Server, and Tower Server), Storage Devices and Telecommunication Equipment.
IPMI market can also be segmented on the basis of end-user which includes banking, healthcare, retail, financial services, aviation, insurance, IT, manufacturing, telecom, education, research, public sector and others
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Serial Device Server Market 2021 | Business Opportunity, Growth Strategies & Forecast Report By 2027
The Serial Device Server Market Report, in its latest update, highlights the significant impacts and the recent strategical changes under the present socio-economic scenario. The Serial Device Server Market industry growth avenues are deeply supported by exhaustive research by the top analysts of the industry. The report starts with the executive summary, followed by a value chain and marketing channels study. The report then estimates the CAGR and market revenue of the Global and regional segments.
Base Year: 2020
Estimated Year: 2021
Forecast Till: 2027
The report classifies the market into different segments based on type and product. These segments are studied in detail, incorporating the market estimates and forecasts at regional and country levels. The segment analysis is helpful in understanding the growth areas and potential opportunities of the market.
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A special section is dedicated to the analysis of the impact of the COVID-19 pandemic on the growth of the Serial Device Server market. The impact is closely studied in terms of production, import, export, and supply.
The report covers the complete competitive landscape of the Worldwide Serial Device Server market with company profiles of key players such as:
Moxa
Digi International
Advantech
Siemens Industrial Communication
Comtrol Corporation
3onedata
OMEGA
Westermo
Atop Technologies Inc.
Kyland
Perle
EtherWAN Systems
Korenix Technology
Sealevel Systems
ORing Industrial Networking Corp.
Chiyu Technology
Tibbo Technology Inc.
Silex Technology America, Inc.
Sena Technologies
UTEK
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Serial Device Server Market Analysis by Type
1-port Serial Device Server
2-port Serial Device Server
4-port Serial Device Server
8-port Serial Device Server
16-port Serial Device Server
Others (32-port Serial Device Server, etc.)
Serial Device Server Market Analysis by Application:
Access Control Systems
Attendance System
POS Systems
Others
Serial Device Server Market Analysis by Geography:
North America (USA, Canada, and Mexico)
Europe (Germany, UK, France, Italy, Russia, Spain, Rest of Europe)
Asia Pacific (China, India, Japan, South Korea, Australia, South-East Asia, Rest of Asia-Pacific)
Latin America (Brazil, Argentina, Peru, Chile, Rest of Latin America)
The Middle East and Africa (Saudi Arabia, UAE, Israel, South Africa, Rest of the Middle East and Africa)
Key questions answered in the report:
What is the expected growth of the Serial Device Server market between 2022 to 2027?
Which application and type segment holds the maximum share in the Global Serial Device Server market?
Which regional Serial Device Server market shows the highest growth CAGR between 2022 to 2027?
What are the opportunities and challenges currently faced by the Serial Device Server market?
Who are the leading market players and what are their Strengths, Weakness, Opportunities, and Threats (SWOT)?
What business strategies are the competitors considering to stay in the Serial Device Server market?
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#Serial Device Server Market#Serial Device Server Market Report#Serial Device Server Market Size#Serial Device Server Market Share#Serial Device Server Market Growth
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China Serial Device Server Market : Size, Share, Growth, Analysis & Demand Forecast 2018-2023
China Serial Device Server Market : Size, Share, Growth, Analysis & Demand Forecast 2018-2023
Market Reports on China Provides the Trending Market Research Report on “2018-2023 China Serial Device Server Market Report (Status and Outlook)” under Consumer Goods category. The report provides information on industry overview, market size, latest developments, industry trends, Key players, global presence, and their future prospects.
Serial Device Server Market size was xx million USD in…
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#Serial Device Server Market Forecast#Serial Device Server Market#Serial Device Server Market size#Serial Device Server Market research report
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Serial Device Server Market: Forecast & Opportunities To 2026 | Top Players-Kyland Technology Co.,Ltd., Korenix Technology, Moxa,
The latest statistical and qualitative analysis of Serial Device Server Industry on the Global and Regional level is presented in this report. The complete evaluation of market size, revenue, growth, demand, and Serial Device Server import-export is offered in this study. The key market segments are divided based on top Serial Device Server companies, types, applications or end-users, and regions. The key inclusion and exclusion criteria along with industry dynamics in terms of Serial Device Server drivers, restraints, opportunities, and challenges are stated. The regulatory scenarios by regions & countries as well as strategic market investment scenarios are explained.
Serial Device Server COVID 19 impact on industry advancements, supply chain, and impact on demand, price, and growth is studied. The SWOT analysis, Porter’s Five Forces analysis, and PEST analysis are conducted. The Serial Device Server global industry trends, macro-economic policies, industry news, and policies are specified. Also, the downstream major customer analysis is conducted.
Click here to receive a Free sample report to have a clear industry picture and key points@ https://www.qmsresearch.com/request-for-sample-pages/?reportId=7573
The top companies analysed in this research are: Kyland Technology Co.,Ltd., Korenix Technology, Moxa, Tibbo Technology Inc., MULTENET, Siemens Industrial Communication, Shenzhen 3onedata Technology, Wiesemann & Theis, Advantech, Comtrol Corporation, GE Digital Energy, Digi International, EtherWAN Systems, ORing Industrial Networking Corp, Atop Technologies Inc, OMEGA, Westermo, Rabbit, Sealevel Systems
The key product types are:
1-port Serial Device Server, 2-port Serial Device Server, 4-port Serial Device Server, 8-port Serial Device Server, 16-port Serial Device Server, Others
The top application studied is:
Access Control Systems, Attendance System, POS Systems Others
The Serial Device Server revenue in US$ Mn is provided by comparing different product types on a global and regional level. Also, the market attractiveness analysis by type from 2015-2026 is covered. Similarly, the end-user analysis, regional analysis, and industry outlook are stated.
The Y-o-Y growth rate comparison is calculated from 2015-2026 for each type, region, and end-user. The vital regions studied in this report include Serial Device Server presence across North America, South America, Europe, Asia-Pacific, Middle East & Africa, and the rest of the world. In the next part, top company profiles are presented with company overview, Business portfolio, product details, key financials, global revenue share by region, and SWOT analysis.
The most crucial Serial Device Server key financial segment analyzes the revenue (US$ Mn), operating income, net margin %, gross margin %, capital spending, production capacity, net income, and more. Also, the competitive scenario is reflected by competition among different industry players in terms of marketing strategies, growth opportunities, new product launches, and developments.
The country-based market segmentation is as follows:
North America Serial Device Server Market Y-o-Y growth rate comparison includes the United States, Canada, Mexico
Europe Serial Device Server Market Y-o-Y growth rate comparison includes Germany, France, United Kingdom, Italy, Spain, Russia, and the rest
Asia-Pacific Serial Device Server Market Y-o-Y growth rate comparison includes Japan, South Korea, India, China, Indonesia, Taiwan, Australia, and the rest
The Middle East & Africa Serial Device Server Market Y-o-Y growth rate comparison includes Saudi Arabia, UAE, Turkey, Egypt, Israel, Iran, and the rest
South America Serial Device Server Market Y-o-Y growth rate comparison includes Brazil, Argentina, Colombia, Chile, and the rest
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Insights on Research Methodology:
The research methodology consists of qualitative and quantitative analysis derived using primary and secondary databases. The top-down and bottom-up approaches are used to derive and validate the Serial Device Server Industry statistics. Paid primary interviews are conducted with Serial Device Server manufacturers, dealers, marketing managers, product managers, R&D people, VP’s, directors, and more.
The manufacturing processes, technological advancements, Serial Device Server cost structure, price trends are analyzed in detail. The forecast analysis based on the potential demand from Serial Device Server downstream clients, government, influencing factors, and policy changes are reflected.
The secondary data sources consist of data gathered from Serial Device Server Industry’s annual reports, presentations, press releases, national customs, statistical yearbook, and more. Each company’s revenue is obtained from paid databases, Hoovers, Factiva, Bloomberg Business, public databases to name a few.
The primary research assists in the analysis of segmentation types, Serial Device Server product price range, raw materials supply, downstream consumption, industry status & outlook. Hence, thorough and comprehensive research is done by QMS Research to deliver reliable, up-to-date, and complete insights.
About Us:
QMS Research is a research hub to meet the syndicate, custom and consulting research needs. Our company excels in catering to the research requirements of commercial, industrial and all other business enterprises. Our huge database with up-to-date and latest information will definitely help the businesses in planning and shaping their business strategies. Accurate market analysis backed by comprehensive research methodology will drive the growth of an industry. Our company offers the wide variety of research reports related to chemical, technology, healthcare, automobile and various other sectors.
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#Serial Device Server Market#Serial Device Server Market Size#Serial Device Server Market Trends#Serial Device Server Market Growth
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PCIe DC-DC Converter Market - Forecast(2024 - 2030)
PCIe DC-DC Converter Market Overview
PCIe DC-DC Converter Market is analyzed to grow at a CAGR of 16.6% during the forecast period 2021-2026 to reach $9.5 billion. PCIe or PCI Express generally refers to a high speed serial computer expansion bus standard that is designed with more advantages in comparison to older standards. PCIe standards are capable of providing benefits including better performance scaling, lower latency, synchronous rectification, pulse amplitude modulation, larger bandwidth support, higher data speeds and so on making it an ideal choice for various application areas like graphic cards, storage devices, network interface cards, and many other high performance peripherals. With rise in data traffic and need for high performance computing devices and integrated circuits, different generation models be it PCIe 5.0, PCIe 4.0 and so on are selected according to end-use requirements. Increasing rate of data center infrastructure growth as well as shift towards advanced technologies including artificial intelligence and machine learning are considered as some of the major drivers impacting the growth of PCIe DC-DC Converter Market. In addition, investments towards advancing telecom communication infrastructure with 5G technology along with rise of adoption in automotive applications like ADAS systems, infotainment systems and so on are further analyzed to fuel the growth of PCIe technology in the long run.
Report Coverage
The report: “PCIe Industry Outlook – Forecast (2021-2026)”, by IndustryARC covers an in-depth analysis of the following segments of the PCIe industry.
By Generation: PCIe 1.0 & 2.0, PCIe 3.0, PCIe 4.0, PCIe 5.0.
By Form Factor: Mini PCIe, PCIe.
By Product: SLC, MLC.
By Output Voltage: Upto 3.3V, 3.3-5V, 5-10V, 10-15V, 15-24V And Above 24V.
By Output Power: Upto 20W,20-50W,50-100W and Above 100W.
By Application: Graphic Processor Units, Network Interface Cards, Storage Device & Controllers, PCIe Switches (Gen 1, Gen 2, Gen 3, Gen 4 and Gen 5), Servers.
By End Users: Telecommunication, Industrial, Residential, Data Centers (Hyperscale, Colocation, Others), Automotive, Infrastructure, Others.
By Geography: North America, South America, Europe, APAC and RoW.
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Key Takeaways
Growing shift towards advanced technologies like artificial intelligence and machine learning along with increasing growth of data center infrastructures is analyzed to significantly drive the PCIe DC-DC Converter Market during the forecast period 2021-2026.
Storage Device & Controllers application segment had accounted for the largest market share in 2020, attributed to the factors including rise of cloud based data storage requirements, infrastructural developments for data centers and so on.
High investments towards research and development activities by some of the key market players such as Samsung Electronics Co. Ltd, Renesas Electronics Corporation and Toshiba Corporation with others have helped in boosting the growth of PCIe across APAC markets.
PCIe DC-DC Converter Market Segment Analysis- By Generation
Based on generation, the PCIe DC-DC Converter Market is segmented under PCIe 1.0 & 2.0, PCIe 3.0, PCIe 4.0 and PCIe 5.0. PCIe 3.0 generation had dominated the PCIe DC-DC Converter Market with 46.5% share in 2020, and is analyzed to grow significantly at a rate of 16.4% during the forecast period 2021-2026. Generation PCIe 3.0 can be referred to as a Gen 3 expansion card comprising of a four-lane configuration, used across some of the major end-use industries be it telecom, data centers and so on. However, with growing advancements towards Gen 4 and Gen 5, adoption of PCIe 3.0 based solutions has been still maintaining a significant growth in the markets, due to its long time presence. Capable of reaching speeds upto 1000 Mbps, PCIe 3.0 architecture incorporate features like enhanced signaling and data integrity, channel enhancements, clock data recovery, pulse amplitude modulation and so on, retaining its market position. Factors including growth in video streaming, video conferencing, online gaming, social networking and many others have surged the internet traffic amidst the COVID-19 pandemic situation, attributing towards the need for PCIe 3.0 interfaces. In addition, usage of PCIe 3.0 has been still in demand owing to rising rate of investments from various key vendors towards developing products with Gen 3 support. In 2020, AMD announced about the launch of A520 chipset, as a part of supporting its third generation Ryzen desktop processors. Through this, the company wanted to help its customers offer a path for future upgrades, based on Zen 3 architecture. Such factors have eventually helped in creating a positive impact towards the deployment of PCIE 3.0 solutions for the end-use markets.
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PCIe DC-DC Converter Market Segment Analysis- By Application
Based on application, Storage Device & Controllers had accounted for the largest share of 32.1% in 2020, analyzed to grow significantly with a CAGR of 15.5% in the global PCIe DC-DC Converter Market during the forecast period. The need for PCIe had evolved in the storage applications overtime with the introduction of technologies namely SATA Express and Non-Volatile Memory Express. With the shift towards ultra thin laptops, tablet PCs and so on, there is significant need towards connectors used in peripheral devices capable of fitting into narrower spaces. In order to address such requirements, PCI-SIG specified the M.2 connectors, thereby gaining it wide popularity. In addition, growing number of investments towards construction of new data centers or upgradation of existing facilities can be considered as some of the major factors attributing towards its market growth owing to rise of cloud based data storage and improved integrated circuits. NVMe and PCIe have been becoming highly popular owing to technological advancements in the field of solid state storage applications. Deployment of PCIe based solid state drives are raising its demand in the markets serving cloud computing requirements, with comparitively higher data transmission as well as high speed connectivity. Owing to these advantages, PCIe had turned as a popular choice among data centers and telecom sectors due to shift towards high-performance computing while storage applications. In 2021, Interface Concept announced about the launch of a removable SSD mass storage XMC module, named IC-EM2-XMCa, capable of supporting PCIe x1/x2/x4 Gen2/Gen3 interface connection. Owing to its capability of increasing storage capacity upto 2TB, as a part of adding mass storage capacity to any third party Single Board Computer or host carrier board, used across VPX, cPCI or VME systems, thus making it suitable for computing as well as storage-intensive applications. Such factors are further set to propel the growth of PCIe within storage devices or controllers in the long run.
PCIe DC-DC Converter Market Segment Analysis- Geography
APAC had accounted for the largest share of 36.5% in 2020, followed by North America and Europe in the PCIe DC-DC Converter Market, analyzed to grow at a rate of 19.6% during the forecast period 2021-2026. Factors including growing demand for cloud computing services, shift of telecom sector towards advancing network or communication infrastructures and many others have acted as some of the major factors attributing to the market growth. Presence of key players such as Renesas Electronics Corporation, Samsung Electronics Co. Ltd, Toshiba Corporation with many others opting for R& D activities overtime have been also helping in creating significant growth of PCIe across the region. In 2020, Samsung announced about the launch of PCIe 4.0 NVMe SSD (solid state drive), named SSD 980 Pro. This development was meant to help professionals as well as consumers opting for high performance PCs, workstations and gaming consoles, also making it an ideal choice for consumers working with 4K or 8K contents or playing high graphic games. High investments towards building data center facilities as well as growing shift towards improving virtualization, high-performance computing, and many others for automotives is further analyzed to drive the market growth in the coming years. In 2020, China revealed about constructing one of the world's highest-altitude cloud-computing data center in Tibet in order to meet data storage requirements for China as well as various South Asian nations including Bangladesh, Nepal and Pakistan. As per Ningsuan Technology Group, an investment of about 11.8 billion yuan (around USD 1.8 billion) has been planned for this project, which will help in providing services such as video rendering, distance-learning data backup, autonomous driving and so on in the long run. Such construction projects related to data centers are set to drive the need for high-speed switches, storage devices, and so on, impacting the market growth of PCIe during the forecast period 2021-2026.
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PCIe DC-DC Converter Market Drivers
Increasing growth towards data center infrastructures:
Increasing growth towards data center infrastructures can be considered as one of the vital factors driving the market growth of PCIe. This growth is significantly impacting the need for high-speed devices capable of offering faster data transmission owing to rise of data traffic for optimizing data center facilities. Enterprise workloads have already started migrating towards cloud, which in turn requires the need for high performance computing, virtualization and related applications, making it beneficial for the use of PCIe based devices. In addition to this, with the surging COVID-19 pandemic situation, there is a rapid rise of remote work or work from home, driving the growth of data centers towards handling bulks of data with higher efficiency. Moreover, data centers have been continuously focusing on leveraging hyperscale computing networks to be able to meet growing cloud-based workloads, thereby accelerating the demand towards high-speed networking devices be it PCIe switches, servers, storage devices and many more. Large Enterprises including Microsoft Corporation, Google, Amazon Web Services and many others have been constantly focusing on expanding data center facilities across various regions alongside renovation or upgradation for the existing facilities to cope up with the growing data traffic is further set to propel the demand for PCIe based solutions. As a part of this, in 2021, Microsoft had revealed about its plans of investing about $200 million towards construction of two data centers of around 200,000 square feet outside Chicago, expected to become operational by 2022. Such factors are further set to propel the need for PCIe switches, servers, storage devices and so on owing to conducting various processes be it high-performance computing, optimum network connectivity and many others during the forecast period 2021-2026.
Growing shift towards advanced technologies like artificial intelligence and machine learning:
Growing shift towards advanced technologies including artificial intelligence (AI) and machine learning (ML) can be considered as one of the major drivers impacting the growth of PCIe DC-DC Converter Market. With technological advancements, there is significant rise towards AI or ML based workloads, eventually raising the need for upgraded or new generation of computing architectures. Since AI based applications work on generating as well as processing of massive amounts of data within real-time data speeds, there is significant demand towards various high speed PCIe devices like graphic processor units, switches, controllers and many others, capable of handling large bandwidth requirements at high-speeds. In comparison to traditional CPUs, the need for computational models is rising, owing to growing demand towards high-bandwidth and low latency communication channels. Rise of demands have been eventually attributing towards various PCIe generation models, particularly PCIe 4.0 or PCIe 5.0 for serving such application requirements. Leveraging PCIe technology can help CPU models to keep up with the increasing data flow from edge devices across various enterprises, thereby creating a positive impact on market growth. In 2020, an AI chipmaker, Hailo had introduced high-performance AI acceleration modules, namely M.2 and mini PCIe designed for empowering edge devices. The development of the modules was meant to allow customers integrate high-performance AI capabilities within edge devices, while offering a more flexible and optimized solution. Deployment of such modules can help in accelerating a large number of deep learning based application areas with higher efficiency, thereby creating its significant growth in the PCIe DC-DC Converter Market in the long run.
PCIe DC-DC Converter Market Challenges
Complexities related to designing, implementation or verification:
Designing, implementation or verification related complexities act as one of the major challenges restraining the growth of PCIe DC-DC Converter Market. PCIe based devices are capable of offering improved reliability, availability and many other advantages, gaining it wider adoption across various end-use verticals. However, configurability and complexities for PCIe pose several designing challenges, as the designer needs to read as well as understand various specifications associated with the standard for selecting an option to be incorporated within the designing architecture. In addition, due to its adoption across a broad range of application areas, manufacturing of PCIe in large quantities based on various factors be it voltage, temperature and so on, eventually affects its signal efficiency or integrity, thereby contributing towards high amounts of variation while designing process. Design or verification complexity issues exponentially rises due to need for a huge sample space of configurable features, along with a minimal error while selecting configuration can make the design unsuited for targeted application, thereby causing prolonged time to market. Such factors have been contributing towards lesser adoption of PCIe, while hampering its market growth across various end-use sectors.
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PCIe DC-DC Converter Market Landscape
Product launches, collaboration, and R&D activities are key strategies adopted by players in the PCIe DC-DC Converter Market. The key players in the PCIe DC-DC Converter Market include Broadcom Inc., Microchip Technology Inc., Renesas Electronics Corporation, Intel Corporation, Nvidia Corporation, Samsung Electronics Co. Ltd, Toshiba Corporation, Xilinx Inc., PLDA and Texas Instruments among others.
Acquisitions/Technology Launches/Partnerships
In April 2021, Samsung Electronics launched PM9A1 SSD, featuring a PCIe 4.0x4 interface. This development was meant to be used in PCs, specifically for enterprises as well as government agencies dealing with sensitive information with sophisticated security requirements.
In February 2021, Microchip Technology Inc. had introduced PCI Express 5.0 switch solution, Switchtec PFX PCIe 5.0 which is capable of doubling interconnects performance for dense compute, high-speed networking as well as NVM Express storage. Development of the world’s first PCIe 5.0 switch was done to support high density and reliability capabilities, including 28 lanes to 100 lanes and upto 48 non-transparent bridges.
#PCIe DC-DC Converter Market#PCIe DC-DC Converter Market size#PCIe DC-DC Converter industry#PCIe DC-DC Converter Market share#PCIe DC-DC Converter top 10 companies#PCIe DC-DC Converter Market report#PCIe DC-DC Converter industry outlook
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Drivers Telsey Network & Wireless Cards
The easiest fix to your concern if you don't want to spend a lot, is to get an external USB wireless network dongle and use that instead of the 1x1 card you have inbuilt on your computer, Alternatively, you can replace the wireless card as well, refer to phone support to get the same done, depending on your warranty with HP. How ASUS Eee PC X101CH Monitor Driver Utility updates your Windows 8 64 bit computers ASUS. Connect a printer to your driver telsey 802 11g wireless usb without. Realtek AC'97 Audio Driver. Atheros AR5002G Wireless Network Adapter Driver: WLANAtheros8.0.0.90.zip. The #1 Driver Update utility.
Drivers Telsey Network & Wireless Cards Login
Drivers Telsey Network & Wireless Cards Download
5, 2018 /PRNewswire/ -. The 'The 2G, 3G, 4G & 5G Wireless Network Infrastructure Market: 2017-2030 - with an Evaluation of Wi-Fi and WiMAX' report from SNS Research has been added to. Setup Static IP from CLI. Plug a USB-to-Serial Console Cable into the Console Port. Locate and plug the RJ45 end into the Console port on the appliance. Plug the USB end into a laptop or desktop computer. If your computer does not have the software drivers installed for the usb-to-serial cable please visit the following page:- Appliance USB to Serial Cable- you must have the drivers.
Dana Telsey, CEO of Telsey Advisory Group (TAG), has been elected to the International Council of Shopping Center’s Board of Trustees for an initial three year term. Telsey was appointed as one of nine new trustees on Monday, May 21, 2018.
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Drivers Telsey Network & Wireless Cards Login
Setup Static IP from CLI
Plug a USB-to-Serial Console Cable into the Console Port
Drivers Telsey Network & Wireless Cards Download
Locate and plug the RJ45 end into the Console port on the appliance.
Plug the USB end into a laptop or desktop computer.
If your computer does not have the software drivers installed for the usb-to-serial cable please visit the following page: -> Appliance USB to Serial Cable -> you must have the drivers installed otherwise your computer will not be able to communicate with the appliance through the console cable.
From the computer determine which USB port the console cable is plugged into.
For Windows: open up device manager and expand the ports area, see below example:
in the above example, COM3 is the port.
From the computer, open up a terminal program and connect to the above detected COM port.
use the following connection settings:
Speed: 115200 n8 1
Hardware/Software flow control: disabled
For example, on a Windows computer, you can use Putty (free downloadable program) and connect as seen below (with your detected port in place of COM3):
The terminal screen should appear with login prompt. The username and password for root login will be mentioned on Quick Start Guide included in the box. By default login username is root and password is sangoma . Use nano editor to change the default network configuration file. The command is nano /etc/sysconfig/network-scripts/ifcfg-eth0
Change following parameters to set the IP , Subnet Mask and Default Gateway Address Do not change other parameters if there are any. BOOTPROTO=static ONBOOT=yes IPADDR= <Your IP Address> GATEWAY= <Your Default Gateway Address> NETMASK= <Your Network Subnet Mask> Press Ctrl-O to save the configuration file. Press Enter to complete the save and then Ctrl-X to exit the editor. Run following command to apply your network settings. service network restart Connect your network cable to default LAN port of your device. The link should come up. You should be able to ping your default gateway address and that verifies your successful local network connection. So far , you have setup your appliance on local network only. You need internet connection to Activate this deployment.
You need to set your Domain Name Servers in the following file. This is important to bring your system on Internet. nano /etc/resolv.conf You need to add nameserver <Your Name Server> line for each DNS server entry. Press Ctrl-O to save the configuration file. Press Enter to complete the save and then Ctrl-X to exit the editor.
Check internet connectivity using ping portal.sangoma.com If you receive successful ping response . You are good to continue your further setup using web browser to Activate the deployment.
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Serial Device Server Market Size | Status | Top Players | Trends | Forecast to 2029
Serial Device Server Market Size | Status | Top Players | Trends | Forecast to 2029
KandJ market research added a new market research report on 2020-2029 Report on Global Serial Device Server Market by Player, Region, Type, Application and Sales Channel in the database of market research collaterals consisting of overall market scenario with prevalent and future growth prospects, among other growth strategies used by key players to stay ahead of the market.
Report Overview
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Global Serial Device Server Market 2019|(Moxa & More)
Global Serial Device Server Market 2019|(Moxa & More)
The main aim of the Global Serial Device Server Market report is to provide an up-to-date information on the market and also pinpoint all the opportunities for Serial Device Server market growth. The report begins with a market outlook and offers market basic introduction and definition of the worldwide Serial Device Server industry. The overview part of the report contains Serial Device Server…
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#Serial Device Server Market#Serial Device Server Market Forecast#Serial Device Server Market Growth#Serial Device Server Market Report#Serial Device Server Market Share#Serial Device Server Market Size#Serial Device Server Market Trends
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Snapshot A serial port server, also called a serial server or port redirector, is a device that transfers data between a computer serial port (COM port) and an Ethernet local area network (LAN). This makes it possible to use Ethernet in place of serial cables, minimizing workstation clutter and also allowing serial devices to be placed far away from the computers with which they are used.Serial port servers can be used with all types of serial devices and peripherals. Examples include printers, scanners, data collection terminals, display devices, modems, automation equipment, security/alarm systems, and climate-control systems. Most serial port servers provide for multiple serial devices to be connected to a single serial port. Serial port servers are available for hard-wired or wireless Ethernet LANs. Some serial port servers can also function across Internet Protocol (IP) wide-area networks (WANs), making it possible to access distant serial devices as if they were directly connected to the COM port of a personal computer or network server. The latter kind of serial port server is sometimes called an Ethernet modem. This report covers Serial Device Server basic market data by segment: 1 by Product 2 by End-User 3 by Company 4 by Region 5 by Channel 6 by Price This report can also be customized according to further requirements.
#serial device server market#serial device server market trends#serial device server market size#serial device server market data#serial device server market structure#serial device server industry analysis#serial device server market research#serial device server market report
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Car Rental Software
Travelopro is the best Car Rental management for Travel Agencies, Tour operators, Travel Companies. Travelopro provides Car Rental Software| Car Reservation Software| Car Rental System. The car reservation system is a web-based car rental platform that helps travel agents handle operational aspects of the business more efficiently. The system can be configured depending upon the specific requirements of the organization. Our Car rental software can manage the operations of your car rental company. With car rental software, you can manage Fleet, Rental Agreements, Reports, Customers, Planner, Agents, Traffic Fines and much more. The goal of our car rental software is to automate your daily operations, to most importantly get rid of a lot of paperwork and prevent errors due to lost papers, etc.
At Travelopro, we provide customizable advanced car rental management software application that can fully streamline and automate the car rental business processes, simplifying the overall task of management. The program can be operated in multiple languages and enables users to manage their entire fleet of cars efficiently. Auto rental managers and their employees can book reservations with ease and saving time and energy. This car rental software is highly scalable that can support you even if you expand your business to any range. Our rental car management system will help simplify and manage all your business processes to ensure fleet efficiencies. And clients will know exactly what the status of their reservation is at any point in time. All our car rental websites and booking solutions are different according to the requirement of individual car rental companies, agencies, and tour operators. Our car reservation software consists of all the functions and procedures which allow a company to rent cars properly with the help of a computer application. Throughout the years, car rental businesses kept innovating and finding new marketing strategies, together with following the technological pace so that their business remains profitable.
Nowadays, online car rental is increasingly and progressively gaining acceptance as the favored mode of renting cars for travelers. The reason for this is the easiest and quickest way of renting a car from your home is the Internet. Coming to the functions of an Online Car Rental Software, the basic requirements for a normal fully functional system is the client management to store details of the clients, the staff managed to have login details of the staff and the care management for keeping details of the cars. Our comprehensive online rental car management solution which will immediately improve customer satisfaction levels, drive down operational costs and improve your business's bottom line margins.
Why choose our car rental software?
1. Your Own Source Code
Our car rental script issues you full control over your system to enjoy the 100% source code.
2. Ideas to Customize
We implement your ideas to make your business unique from the competitors. We will customize your ideas for you.
3. Support and Bug Fixing
Get free technical support and bug fixing when you buy our car rental system for 3 months along with server deployment.
4. Platform with Minimal Coding
This car rental booking software doesn't need you to be an expert with coding. Enjoy our no coding platform.
5. Create Your Brand
The car rental software which allows you to rebrand your own name and logo.
6. Mobile App
Give your users a seamless experience with a smooth functioning mobile app for the auto rental system.
Features of Car Rental Software:
Rental order management: Track the availability of a car with serial number, set the rental period using the calendar feature, and extend it automatically
Collaboration: Your employees can communicate in one platform to handle rental orders
Inventory management: Monitor rental products availability, movement, and maintenance
Automatic Quotation: Create offers and invoices with only few clicks
CRM & External Communication: An easy way to interact with customers or other rental companies
Automatic Notification: Notify customers of their order status and remind them that the rental period will expire
Cloud based: Access every information from anywhere and not limited to just one device
All-in-one: Save all data in one place so you won’t need to use other storage software
For more details, please visit: https://www.travelopro.com/car-rental-software.php and Email us at [email protected].
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IoT Long Range Temperature And Humidity Sensor Using node-red
Things used in this project:
Hardware components
National Control Devices IoT Long Range Wireless Temperature Humidity Sensor
National Control Devices Long Range Wireless Mesh Modem with USB Interface
Software apps
LabView UtilityNode-Red
Node-Red
Story
Introducing NCD’s long-range wireless temperature-humidity sensor, boasting up to a 28 Mile range using a wireless mesh networking architecture. Incorporating the Honeywell HIH9130 temperature-humidity sensor transmits highly accurate temperature and humidity samples at user-defined intervals.
The onboard temperature sensor is rated for -25°C to 85°C or -13°F to 185°F and the humidity sensor is rated for 0 to 100% RH. It can be powered by just 2 AA batteries and an operational lifetime of 500, 000 wireless transmissions. Battery life can be extended up to 10 years depending on environmental conditions and the data transmission interval. Optionally, this sensor may be externally powered.
With an open communication protocol, this IoT wireless temperature humidity product can be integrated with just about any control system or gateway. Data can be transmitted to a PC, a Raspberry Pi, to Microsoft Azure® IoT, or Arduino. Sensor parameters and wireless transmission settings can be changed on the go using the open communication protocol providing maximum configurability depending on the intended application. The long range, price, accuracy, battery life and security features of Long Range Wireless Temperature Humidity Sensor makes it an affordable choice which exceeds the requirements for most of the industrial as well as consumer market applications.
Steps to Send Data to LabView Utility
At first, To visualize the data, we need a Labview utility application.
To use this UI, you will need to install the following drivers:
Install run time engine from here for 64-bit driver and 32-bit driver.
Install NI Visa Driver.
Install Labview Run time serial driver and LabVIEW Run-Time Engine.
Getting started guide for this product.
Setting Up Node-Red.
Now that you have sensors running, we need a way to do something useful with that data.
First of all, you’ll have to install Node-Red.
Once that’s done, you’ll need to enter your command line, or Power Shell for Windows users, navigate to the directory Node-RED is installed in.
Now type “npm I ncd-red-wireless node-red-dashboard“. This will install the nodes required to receive data from your wireless sensors and you can start Node-RED once this is done.
To start node server write node-red in the command prompt or terminal and press enter.
Steps to Build the Flow:
Step 1: At this point, you’ll be viewing a large blank flow with a long list of nodes on the left-hand side, this sidebar is called the palette.
Step 2: Go ahead and drag a Wireless Gateway node over to your flow canvas to get started.
NCD-red-wireless Provides the nodes that manage the serial connection, parse incoming sensor data, filter it by specific parameters, and allow you to configure the wireless sensors.
Step 3: Finding Your Wireless Sensors:
When you’ve delivered the node you’ll be able to view the info tab, which contains records about the node’s capability, this tab is well populated for maximum node-red packages and consists of treasured statistics, often you will now not want to view any other documentation outdoor of the info tab, so hold it in thoughts even as you’re building your flows when you have a question approximately how a node works. The next element we want to do is configure the node, when you first add it you’ll note that there is a small triangle at the top right corner next to a blue dot, the triangle indicates that the node wishes extra configuration, the blue dot indicates that the node has no longer but been deployed as part of the flow.
Double click on the node to open up the configuration options.
Click on the pencil icon next to the Serial Device field to configure your USB router, this will open a second configuration panel that only has a few options.
Step 4: Click on the magnifying glass next to the Serial Port field and select the port that corresponds with your router, then click the “Add” button on top.
Step 5: The Serial Device field will now be populated based on that selection, and you can click “Done”, you now have direct access to your wireless sensors! To view the data coming in.
Step 6: Now Go Back to Your Palette and Type “debug” Into the Search Field at the Top, Grab One of These Nodes and Drag It to the Right of Your Wireless Gateway.
Step 7: Double Click on It and Change “msg.” to “complete Msg Object” Click Done.
Step 8: Now draw a line between the two nodes, and click “Deploy” on the top right of the window.
Step 9: Working with the data
Now out of your wireless sensors data is gathered and it is output to the “debug” tab, this “debug tab” is placed within the right sidebar subsequent to the information tab. To see the information is available to hit the reset button. In node-red records is surpassed among nodes in a JSON packet. When the msg object comes into the debug tab you may make bigger it to view the overall list of information that comes with it. This is extraordinarily useful in case you need to quickly see which sensors are checking in. The other issue this node gives is an easy way to interchange your router to the network identity that devices in configuration mode document on, simply hit the button on the left of the node and the tool will switch to the configuration network, hit it once more to return it to listening mode. Once we get the wi-fi tool nodes set up, they may be set to routinely configure a sensor whilst it enters configuration mode, so it’s always available to maintain such gateway nodes present at the flow for speedy configuring a device.
Step 10: Adding the wireless sensors
we need to separate wireless sensor records domestically in order that we are able to display it, we could use a switch node to split out the messages from the gateway based totally on the mac address with or sensor type, but as I referred to, the wireless nodes truly incorporate extra functionality for configuring the sensors, so we’ll start with them to give you an extra entire image of how those structures can work. In case you haven’t already seen packets coming in from both of your sensors, cross in advance and hit the reset button on the only that hasn’t started. While a sensor assessment in through any serial device configuration node, the mac address and kind of sensor is cached in a pool so we are able to quickly find it for the duration of this next step.
Grab a Wireless Node from the palette and drag it onto the flow, double click on it to get it configured.
Step 11: select the serial device from the drop-down that you used for the Wireless Gateway.
now click the magnifying glass next to “Mac Address” and select one of the available options.
You’ll notice this automatically sets the sensor type for you, you can also give it a name to make it easier to identify. As noted in the info tab, the Serial Device for Config field is optional, and we won’t worry about it right now. The node you have just added effectively works as a filter on incoming sensor data, only passing through data for the mac address, or sensor type if no mac address is present.
Step 12: Displaying Up the Temperature/Humidity:
These nodes for the wireless sensors output a msg object with all of the same information as the Wireless Gateway node, just in a slightly different format, the Sensor Data itself is sent in the msg.payload, which is what most nodes use to interact with the msg itself.
Grab a “split” node from the palette, and place it to the right of the Temp/Hum node.
Step 13: double click and check the box under Object that says “Copy key to”, this will split the msg into multiple objects, one for each property in the payload, and set the topics for those new msgs to the property names.
Step 14: Now Add a “switch” Node, This Will Allow Us to Send Each Msg to a Specific Part of the Flow, One to Handle Temperature, and One Humidity. in the First Field Change “payload” to “topic”, Next to the “==”, Type “temperature”.
Step 15: Then click the “+add” button at the bottom left, in the new field type “humidity”. As you can see each of these has a unique number to the right, this number indicates which output the msg will be sent to when it matches the condition.
Step 16: Next let’s add a “gauge” from the palette.
Step 17: set the Label to “Temperature”, and the Value format to “{{value | number:2}}”, and the Units to “Celsius” you can alter the range to the minimum and maximum expected temperature, I’m using 0 and 50.
Another really cool feature of the flow builder is copy+paste, click on the gauge you just added and click ctrl+c (cmd+c on mac), then cntl+v, now you have a second gauge, double click on it to change the Label to Humidity, the Units to RH, and the range to 20 and 80.
Step 18: Now draw wires from the Temperature/Humidity node to the split node, from the split node to the switch node, and from the switch node’s first (top) output to the temperature gauge node, and from the switch node’s second output to the humidity gauge.
Once that’s done click deploy.
Step 19: NODE-RED DASHBOARD:
Provides the ability to create a UI using the flow builder, provides charts, graphs, and a number of other visual elements we can use to display data, along with nodes to trigger a flow using user input. We will use some of these nodes to display the telemetry from your wireless sensors.
let’s check it out! There is a tab on the top right that says “Dashboard”.
Step 20: on the top right of that tab is the little “new window” icon, click on it to view your UI.
It is likely that the gauges aren’t displaying any information, because no sensor data has been reported since you deployed the flow, click the reset button on your temperature/humidity sensor to force it to check in and your gauges should jump up. You should now have real-time data displaying!
Step 21: NODE-RED DASHBOARD OUTPUT:
Now as the temperature and humidity increases and decreases new data available inside the various variable.
Node_red_flow
Below is an export of the complete dashboard setup I built for these wireless sensors.
https://github.com/ncdcommunity/Ncd-Long-Range-Temperature-and-Humidity-Sensor-with-Node-Red/blob/master/node%20red%20flow.json
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