#Electronic Patch Panel Market Trend
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dh5ryxhgbctgr · 2 months ago
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Electronic Patch Panel Market Insights and Strategic Forecasting Analysis 2024 - 2032
The electronic patch panel market has become an essential component in modern telecommunications and data management systems. These devices serve as a central point for connecting and managing various cables in data centers, telecommunications rooms, and network infrastructures. This article provides a comprehensive overview of the electronic patch panel market, including its key features, applications, advantages, challenges, and future trends. The electronic patch panel market is poised for significant growth as organizations increasingly recognize the importance of efficient cable management in their networking systems.
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Understanding Electronic Patch Panels
1. What is an Electronic Patch Panel?
An electronic patch panel is a networking device that facilitates the management and organization of cable connections within a network. It consists of multiple ports that allow for the easy connection of incoming and outgoing signals. Patch panels can be used for various types of cables, including Ethernet, fiber optic, and audio/video cables.
2. Key Features of Electronic Patch Panels
Modularity: Many electronic patch panels are designed to be modular, allowing users to customize their configurations based on specific needs.
Scalability: They can be easily expanded to accommodate growing network demands without significant overhauls.
Labeling and Management: Most patch panels come with labeling systems that help in identifying connections, improving organization and maintenance.
Market Analysis
1. Current Market Trends
The electronic patch panel market is witnessing robust growth due to several key trends:
Increasing Data Traffic: The exponential rise in data consumption and the need for faster connectivity drive the demand for efficient cable management solutions.
Growth of Data Centers: As the number of data centers continues to rise, the need for effective network management tools, including electronic patch panels, has become paramount.
Adoption of Smart Technologies: The integration of IoT and smart technologies in networking systems is fostering the development of advanced patch panels that offer enhanced functionalities.
2. Market Segmentation
The electronic patch panel market can be segmented based on various criteria:
Type: This includes Ethernet patch panels, fiber optic patch panels, and audio/video patch panels.
Application Area: The market can be divided into data centers, telecommunications, and industrial applications.
Region: Key markets include North America, Europe, Asia-Pacific, and Latin America, each exhibiting unique growth dynamics.
Advantages of Electronic Patch Panels
1. Improved Cable Management
Electronic patch panels simplify cable organization, reducing clutter and making it easier to manage connections. This leads to improved airflow and easier troubleshooting.
2. Enhanced Flexibility
The modular design of many patch panels allows for quick reconfiguration as network needs change. This adaptability is crucial in fast-paced environments like data centers.
3. Cost Efficiency
By reducing installation and maintenance time, electronic patch panels can lead to significant cost savings for organizations. Their ability to streamline network management can also reduce the likelihood of downtime.
Challenges Facing the Market
1. High Initial Investment
While electronic patch panels offer long-term savings, the initial investment can be high, which may deter smaller organizations from adopting this technology.
2. Technical Complexity
The increasing complexity of networking systems can make it challenging for some organizations to effectively implement and manage electronic patch panels without proper training and expertise.
3. Competition from Alternative Technologies
The emergence of new networking technologies, such as wireless solutions, may pose a challenge to the traditional patch panel market, requiring continuous innovation to remain competitive.
Future Outlook
1. Innovations in Technology
Advancements in technology, such as automation and intelligent patch panels, are expected to shape the future of the market. These innovations can enhance monitoring and management capabilities, making networks more efficient.
2. Rise of 5G Technology
The rollout of 5G networks will require upgraded infrastructure, which is likely to boost the demand for electronic patch panels that can handle increased data traffic and connectivity requirements.
3. Expansion in Emerging Markets
As developing regions enhance their telecommunications infrastructure, there is a growing opportunity for electronic patch panel manufacturers to enter these markets, driving overall growth.
Conclusion
With their numerous advantages, including improved organization, flexibility, and cost-effectiveness, electronic patch panels are becoming indispensable in modern data and telecommunications infrastructures. As technology continues to evolve, the market will likely witness innovations that enhance functionality and performance, solidifying the role of electronic patch panels in the future of networking.
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industryinsightsandanalysis · 3 months ago
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Specialty Tapes Market: Current Analysis and Forecast (2021-2027)
A comprehensive overview of the global specialty tapes market is recently added by UnivDatos Market Insights to its humongous database. The report has been aggregated by collecting informative data from various dynamics such as market drivers, restraints, and opportunities. This innovative report makes use of several analyses to get a closer outlook on the specialty tapes markets globally. This report offers a detailed analysis of the latest industry developments and trending factors that are influencing market growth. Furthermore, this statistical market research repository examines and estimates the global specialty tapes market at regional and country levels. The global specialty tapes market is likely to showcase a growth of around 6% during the forecast period.
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Market Overview
Specialty tapes are composed of a carrier film, foil, or other flexible material. These tapes are manufactured with high-performance adhesives using carrier materials and are designed for utilization in industries including electrical & electronics, automotive, building & construction, retail & graphics, and healthcare. Further, the trend toward using flatter and micro-electronic devices continues, increasing the application of specialty tapes in the electrical & electronics industry. In addition, the demand for in-vitro diagnostics, hydrophilic films, transdermal drug delivery patches, and oral dissolvable films are driving the specialty tapes market in the healthcare industry, globally. Furthermore, rising construction activities are rising the demand for specialty tapes for mounting window panels and sealing gaps in the window and door panels.
The global specialty tapes market report is studied thoroughly with several aspects that would help stakeholders in making their decisions more curated.
By backing material, the market is primarily divided into:
Polyvinyl Chloride
Woven/Non-Woven
Paper
Foam
Polypropylene
Others
Among these, the paper held a prominent share in the global specialty tapes market. Paper tapes have excellent adhesion, heat insulation, temperature tolerance, and are environmentally safe, and come in various colors. Further, when compared to other adhesive tapes, these tapes offer more comfort. Moreover, they are thin, flexible, and smooth, making them ideal for vehicle and aviation manufacture, as well as appliance manufacturing, HVAC, and paper and printing applications.
By end-user, the market is primarily divided into:
Electrical & Electronics
Healthcare
Automotive
Paper & Printing
Building & Construction
Others
Among these, healthcare held a prominent share in the global specialty tapes market. The specialty tapes market is rising in healthcare due to the aging population, increased chronic illness incidence, and the high demand for in vitro diagnostics, hydrophilic films, transdermal patches, and oral dissolvable films. Also, the development of products such as disposable infant diapers, feminine hygiene products, and adult incontinence products all use specialty tapes.
Global Specialty Tapes Market Geographical Segmentation Includes:
North America (United States, Canada, Rest of North America)
Europe (Germany, France, United Kingdom, Italy, Spain, Rest of Europe)
Asia-Pacific (China, Japan, India, Australia, Rest of APAC)
Rest of the World
Asia-Pacific held a prominent share in the specialty tapes market owing to growing industries such as electric & electronics, healthcare, packaging, building and construction, and others.  Also, the market growth can be attributed to the expanding automotive industry, in electric vehicles (Evs), specialty tapes are used for covering the gaps and for bonding purposes in the battery. Other prominent applications of such tapes in Evs are motor assembly, insulation, and wire harnessing. Moreover, increasing disposable income and rapid economic growth in the region are increasing the better-quality products, and improving the lifestyle is also fueling the market for specialty tapes.
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Competitive Landscape
The degree of competition among prominent companies has been elaborated by analyzing several leading key players operating globally. The specialist team of research analysts sheds light on various traits such as global market competition, market share, most recent industry advancements, innovative product launches, partnerships, mergers, or acquisitions by leading companies in the global specialty tapes market. The major players have been analyzed by using research methodologies for getting insight views on market competition.
Key questions resolved through this analytical market research report include:
What are the latest trends, new patterns, and technological advancements in the global specialty tapes market?
Which factors are influencing the global specialty tapes market over the forecast period?
What are the global challenges, threats, and risks in the global specialty tapes market?
Which factors are propelling and restraining the global specialty tapes market?
What are the demanding global regions of the global specialty tapes market?
What will be the market size in the upcoming years?
What are the crucial market acquisition strategies and policies applied by the companies?
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techinfogalaxy · 2 years ago
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9 Ways to Stay Cyber-Secure While Working From Home
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Working from home can be a great way to save time and money, but it also comes with its own set of cybersecurity risks. In this blog post, Tech Info Galaxy presents nine ways to stay cyber-secure while working from home. We’ll cover everything from protecting your computer to securing your data to staying safe online. Plus, we’ll provide tips for business owners who want to keep their data secure. Stay safe and stay productive!
1. Protected Yourself with Antivirus Software and a Firewall
When working from home, your computer must be properly protected. This means using anti-virus software and a firewall. Antivirus software protects your computer against viruses, while a firewall helps protect your computer from hackers and other online threats. If you don’t have anti-virus software installed on your computer, here are some of the leading products on the market:
Norton AntiVirus
McAfee AntiVirus
Trend Micro Antivirus+ Security
Kaspersky Internet Security
Bitdefender Internet Security
To set up a firewall, you’ll need to go into your computer’s settings. For Windows users, this is done by going to Control Panel > System and Security > Windows Firewall. For Mac users, this is done by going to System Preferences > Security & Privacy > Firewall. Once you’re in the firewall settings, you’ll need to turn on the firewall and add any exceptions for programs that need access to your computer.
2. Keep Your Operating System and Software Up to Date
One of the simplest and most effective ways to stay cyber-secure is to ensure that your operating system and software are always up to date. Hackers are constantly finding new ways to exploit vulnerabilities in outdated systems, so it’s important to keep yours patched and protected. You can usually set your system to update automatically, or Computer World explains that you can check for updates manually.
3. Create Strong Passwords
Using strong passwords is crucial when working from home. All your passwords on all your devices and accounts should be long, complex, and unique.
It’s essential not to use the same passwords on multiple accounts, as this makes it easier for hackers to gain access to your information. You should also change your passwords regularly.
4. Be Careful about What Files You Download and Open
Be vigilant about what files you download and open. Many viruses and malware are spread through email attachments and file downloads, so be cautious about where your information comes from. Before opening any file, scrutinize it for anything suspicious, like unexpected attachments or strange file extensions. If in doubt, don’t open it.
5. Use a Digital Signature
Digital signatures are a great way to keep your documents and data secure when sending them online. They allow you to electronically sign a document, providing a layer of security and assurance that the document has not been tampered with. This is particularly important for sensitive information, such as financial or legal documents.
When using a digital signature, use a strong password and change it regularly. Also, be sure to store your signature key in a safe place. You won’t be able to digitally sign any documents if you lose your key....read more
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nikita-godse · 4 years ago
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Electric Sub-meter Market -  Size, Share, Growth, Forecast 2020 - 2027
Electric sub-meter is a device that records and measures the use of electricity for each building unit and acts as an alternative to a single meter that measures the entire building's energy consumption. The electric sub-meter is connected downstream from the main utility meter and displays individual energy consumption of a multi-unit residential or commercial building. Such sub-meters enable building owners to charge unit owners or individual tenants for actual energy consumption, while allowing individual unit owners to take action to reduce overall energy consumption.
Electric Sub-meter Market – Competitive Landscape
The global electric sub-meter market includes large number of players. Some of the key players are Siemens AG, Leviton, Linyang Electronics, GE Digital Energy, Honeywell International, Elster Group, Studebaker Submetering Inc, LEM, Kamstrup,., Schneider Electric, Echelon, Nuri Telecom and Chintim Instruments Sub-meter Solutions.
In May 2019, Honeywell International, a key player in electric sub-meter market, announced that it has been selected by the U.S. Department of Defense (DoD) to provide its satellite communications system called JetWave™ for 70 C-17 aircraft under the Fixed Installation Satellite Antenna program.
In April 2019, Siemens AG announced that it has developed a comprehensive concept for sustainable energy system, the first such concept that takes into account and brings together technology and areas of regulation and social engagement.
In March 2019, Leviton introduced a new ‘Cable Management Clip’ that enables faster, neater, and more efficient management of category-rate cables. According to the company, the new clip not only saves time but also provides a simple way to manage individual cables on the rear of patch panels.
Siemens AG
Established in 1847, Siemens AG is headquartered in Berlin, Germany, and operates in nearly all countries of the world. Main divisions of the company include Industry, Energy, Healthcare, and Infrastructure and cities. It offers a range of products and services on building technology, energy, drive technology, financing, industrial automation and mobility.
Jiangsu Linyang Energy Co., Ltd. (Linyang Electronics)
Founded in 1995, Jiangsu Linyang Energy Co., Ltd., a leading player in electric sub-meter market, is based in Qidong China and offers a range of energy measurement products. The company specializes in manufacturing and supply of electronic energy meters and electricity management information systems around the world.
Schneider Electric
Founded in 1836, Schneider Electric is headquartered in Rueil-Malmaison, France, and provides energy management and automation solution worldwide. Four mains businesses of the company includes Low Voltage, Medium Voltage, Secure Power, and Industrial Automation. Currently, it has a strategic partnership with the Carlyle Group to develop new and innovative infrastructure projects.
Studebaker Submetering Inc.
Established in 1999, Studebaker Submetering Inc. is based in Alexandria, Virginia and offers a range of electric meter products, water meter products, wireless communication systems, run time devices, and others. It mainly operates as a third party billion company that read meters, provides monthly bills to the residents, and collects monthly bills on behalf of the community.
LEM Holding SA
Founded in 1972, LEM Holding SA is headquartered in Fribourg, Switzerland and offers solutions for measuring electrical parameters in Switzerland, Germany, Italy, China, Japan, and the USA. The company operates through two segments, industry and automotive.
Electric Sub-meter Market - Dynamics
Electric Sub-meter Market Upheld by Growing Efforts to Reduce Electrical Usage
Growth of electric sub-meter market is primarily influenced by a notable rise in adoption of energy management solutions. The use of electric-sub meters in multi-unit buildings not only reduces additional operational costs but also provides numerous economic and environmental benefits to both building owners and tenants. Growing importance of controlling, reduction, and granular reporting of electrical usage among today's facility managers, especially in commercial as well as industrial sectors, has also led to surge in the adoption of electric sub-meters. Further, increasing stringency is regulations on energy management along with growing focus towards identifying important aspects for efficient use of electricity will be instrumental in accelerating the growth of electric sub-meter market.
Market Gains Underpinned by Mandatory Government Rules to Install Electric Sub-meters
Increasing efforts to develop strategies for efficient energy management across industrial and commercial spaces in tune with growing interest towards integration of sub-meters into cloud technology and big data software analytics to accurately analyze and control energy use, has been working to the advantage of electric sub-meter market. In addition, consumers are mandated to adhere to government rules to install sub-meters for transforming traditional energy infrastructure at the time of constructing a new structure or building, which in turn favors the expansion of electric sub-meter market. Further, growing popularity and advances in technologies such as Internet of Things (IoT) will augur well with the market growth. However, lack of awareness regarding the potential benefits of energy management may limit the adoption of electric sub-meters.
Electric Sub-meter Market - Segmentation
Based on type, the global electric sub-meter market can be bifurcated into:
Non-socket/electronic Sub-meter
Socket type/electromechanical Sub-meter
Current Transformer
Feed-through sub-meter
In terms of application, the global electric sub-meter market is classified into:
Commercial Establishments
Industrial Sector
Residential Sector
The report on electric sub-meter market is a compilation of first-hand information, qualitative and quantitative assessment by industry analysts, inputs from industry experts and industry participants across the value chain. The electric sub-meter market report provides in-depth analysis of parent market trends, macroeconomic indicators and governing factors along with market attractiveness as per segments. The electric sub-meter market report also maps the qualitative impact of various market factors on market segments and geographies
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dbmronkar08 · 5 years ago
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Global Fusion Splicer Market Is Thriving Worldwide by 2026 | Leading Companies: Sumitomo Electric, FURUKAWA ELECTRIC, Fujikura; INNO Instruments
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Data Bridge Market Research has recently added a concise research on Global Fusion Splicer Market to depict valuable insights related to significant market trends driving the industry. The report features analysis based on key opportunities and challenges confronted by market leaders while highlighting their competitive setting and corporate strategies for the estimated timeline. Some are the key & emerging players that are part of coverage and have being profiled are Eloik Communication Equipment Technology Co., Ltd.; Fiberfox.; Emerson Electric Co; COMWAY Technology LLC; Promax Electronica S.L; Multicom, Inc.; Yamasaki Optical Technology; Deviser Technology.; Easysplicer; GAO Tek & GAO Group Inc. 3SAE Technologies IncAurora Optics, Inc. among others
Analysis of Global Fusion Splicer Market report:
Global fusion splicer market is estimated to register a substantial CAGR of 7.64% in the forecast period of 2019 to 2026. The report contains data from the base year of 2018 and the historic year of 2017.
Definition:
Fiber splicing is the technique of reunifying two fibers permanently. Unlike fiber connectors which are often designed on cross-connect or patch panels for simple reconfiguration. There are two forms of fiber splicing mechanical splicing and fusion splicing. Mechanical splicing does not fuse two optical fibers next to each other physically, but instead, two fibers are held in a sleeve with the mechanical method. In Fusion splicer is a device which is used to combine two fibers together and get heat through an electric arc.
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Market Drivers:
·         Great demand for enlarged network bandwidth  is driving the market growth
·         Low insertion loss is propelling the market to grow
·         Growing number of data centers is enhancing the market growth
·         Increase in government funding for fiber optic network is flourishing the market growth
Market Restraints:
·         High cost of equipment is hindering the market growth
·         Requirement of continues power supply  and appropriate tool is restraining the growth of the market
Top Manufacturers Profiles Operating in the Global Fusion Splicer Market:
Few of the major competitors currently working in the global fusion splicer market are  Sumitomo Electric Industries Ltd.; FURUKAWA ELECTRIC CO., LTD.; Fujikura Ltd.; Ilsintechindi.com; INNO Instruments Inc.; Ltd.; China Electronics Technology Instruments Co.,Ltd; Nanjing Jilong Optical Communication Co., LTD.; Nanjing DVP OE Tech Co., Ltd.; WeiKu.com., SIGNAL FIRE TECHNOLOGY CO., LTD.; Shanghai Shinho Fiber Communication Co., Ltd.. etc
     Global Fusion Splicer Market Segmentation:
By Offering
·         Hardware
o   Electrodes
o   Cleaver
o   Sheath Claps
o   Batteries
o   Power Chords
o   Tube Heater
o   Stripper
o   Display
o   Microscope
o   Heating Element
·         Software
·         Services        
By Alignment Types
·         Core Alignment
·         Cladding Alignment
By Application
·         Telecommunications
·         Enterprise
·         Cable TV
·         Aerospace
·         Defence
·         Specialty
By Geography
·         North America
·         South America
·         Europe
·         Asia-Pacific
Competitive Analysis:
Global fusion splicer market is highly fragmented and the major players have used various strategies such as new product launches, expansions, agreements, joint ventures, partnerships, acquisitions, and others to increase their footprints in this market. The report includes market shares of fusion splicer market for Global, Europe, North America, Asia-Pacific, South America and Middle East & Africa.
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katherinewangfs-blog · 8 years ago
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Cat 6a Shielded Cable vs. Cat 6a Unshielded Cable
As the need for high bandwidth and fast data transmission rate is on the rise, the deployment of 10G Ethernet network becomes much more common and popular than ever before. Cat 6a cabling, the most proper cabling infrastructure for deploying 10G Ethernet network, is designed under this trend and promptly acquiring popularity for offering the throughput that many users now demand. Do you also plan to deploy 10G Ethernet network with Cat 6a cabling? Since there are Cat 6a shielded cable and Cat 6a unshielded cable available on the market, which one would you like to choose for your 10G network cabling? Let’s study the knowledge of Cat 6a patch cable and compare these two kinds of Cat 6a patch cables, finding the most suitable one to ensure the performance of the 10G Ethernet network.
Cat 6a Patch Cable Overview
Cat 6a patch cable is an enhanced edition of Cat 6 patch cable as the letter “a”—“augmented” in its name implies. Unlike Cat 6 patch cable that only supports the 10G Ethernet network at lengths up to 55 meters, Cat 6a patch cable is more commonly used for 10 Gigabit application that has the ability to perform up to 500 MHz, allowing 10GBASE-T to be run for 100 meter distance. At present, Cat 6 patch cable can be simply divided into two types, Cat 6a shielded cable and Cat 6a unshielded cable, according to whether it is shielded, both of which have their own features and are suitable for different applications. To better know the different structures of these two kinds of patch cables, you can learn it from the following figure.
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What should be noted is that the Cat 6a patch cable is the first cable category which standard includes alien crosstalk performance parameters for the higher frequencies utilized by 10GBASE-T. As we know, when the signal is unexpectedly transmitted from a patch cable to an adjacent one, the alien crosstalk may occur. As the Cat 6a patch cable is frequently used for 10GBASE-T network nowadays, the alien crosstalk performance parameters are incorporated into the TIA/EIA standard for Cat 6a patch cable.
Shielded or Unshielded?
The Cat 6a shielded cable is designed with a metallic tape barrier to mitigate alien crosstalk, while the Cat 6a unshielded cable just uses the space between the cores of adjacent cables and non-metallic fillers to overcome the same issue. There should be no denying that the Cat 6a shielded cable performs much better than the Cat 6a unshielded cable in dealing with the alien crosstalk. Except that, is there any difference between these two kinds of Cat 6a patch cables?
As for the Cat 6a unshielded cable, its diameter is generally bigger than the shielded one, because it should have additional space and fillers to block the alien crosstalk. Since the outside diameter of category patch cable can’t be larger than 0.354 inches as ANSI/TIA-568-C.2 standard stipulates, the Cat 6a unshielded cable is mostly designed to fall close to the maximum diameter permitted. The disadvantage is that the thicker patch cable should be supported by larger conduit and hanging devices which results in higher cost and bigger space for managing the cables. But if compared with the shielded one, the Cat 6a unshielded cable and its connective hardware (jacks and patch panels) is less expensive than the shielded counterparts. Besides, the Cat 6a unshielded cable is easier and faster to be terminated without shielding and prerequisite drain wire.
As for the Cat 6a shielded cable, its diameter is always smaller than 0.3 inches that supports smaller conduit and pathways with lower cost. But in fact, if you choose the Cat 6a shielded cable to deploy 10G Ethernet network, it will take you much more money for the high cost of Cat 6a shielded cable and its connective hardware. Meanwhile, it should be more difficult to be terminated as mentioned above. Then what are its advantages? On one hand, the Cat 6a shielded cable performs better in overcoming the alien crosstalk for its shielding feature. On the other hand, it also provides the added benefit of increased immunity from outside damage, noise and electronic interference to ensure the maximum performance of the data transmission on the cables.
Conclusion
Although the Cat 6a shielded cable and its connective hardware cost higher than the unshield one, it is the best choice for deploying 10G Ethernet network because the shielding provides exceptional protection from alien crosstalk, noise, damage. Except the performance factor, there are other factors like ease of installation and cost you should take into consideration when making the decision for Cat 6a cabling. Hope this paper would be helpful for you to deploy a smooth and stable 10G Ethernet network.
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lovekedars-blog · 5 years ago
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Global Market for Potentiometer Kits to Record Significant Incremental Dollar Opportunity Through 2029
Connectors are electromechanical components essential for connecting electrical circuits. Connectors are an integral part of electronic and electrical connections. Connectors are used in a plastic insulator, metallic contacts, and generally enclosed in a housing. These products are utilized for connection of devices in all kind of applicability where it requires to be possible to disconnect and connect. The market has been growing at a higher rate with the improvement of productive procedures and heightening customer’s capabilities. Connectors provide various circuit boards, electronic device, and peripherals. The pin & socket connectors market involves firms, many associations, makers, and merchants.
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Pin & Socket Connectors Market: Drivers
Increasing demand of automotive connectors are estimated to boost the pin & socket connectors market
Growing in the pin & socket connectors market is driven by technological trends, the general economic outlook, and functional enhancements. Increasing demand for convenience, connectivity, and safety features in vehicles are anticipated to boost the market growth of pin & socket connectors market. The use of pin & socket connectors in smart car are boosting the pin & socket connectors market. With the increasing popularity of electric and hybrid electric vehicles, demand for electric vehicle connectors and charging cables has never been higher. The major growth drivers for this market are growing 3C applications (Communications, Consumer electronics, and Computers).
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Increasing demand for pin & socket connector in the military is boosting the market.
Electronic connectors are devices that connect electrical circuits. Connectors make electronic products more accessible to manufacture and assemble. Pin & socket connectors are used widely on circuits for computers, communications, consumer electronics, and industrial machinery. Pin & socket connectors provide the electrical conduction that makes the connection. The pin & socket connectors are also utilized in military applications like navigators, airborne, communication, radar, and electronic welfare. Military connectors are highly reliable and durable products designed to fit the demand of the armed forces.
Pin & Socket Connectors Market: Segmentation
The pin & socket connectors market has been segmented on the basis of end user, application, pin type, product type, and region.
The Pin & Socket Connectors market is segmented on the basis of Application:
Automotive/Transportation
Industrial & Instrumentation
Medical
Military, Space & Aerospace
Power
Lighting
Data & Communication
Consumer
The Pin & Socket Connectors market is segmented on the basis of Product Type:
Printed circuit board (PCB) connector
Fiber optic connector
Circular connector
Integrated circuit sockets
Radio frequency (RF) coax
Rectangular I/O
The Pin & Socket Connectors market is segmented on the basis of Pin Type:
Two pin type
Three pin type
The Pin & Socket Connectors market is segmented on the basis of End-User:
Commercial Use
Industrial Use
Residential Use
Pin & Socket Connectors Market: Competition Landscape
Pin & Socket Connectors is the crucial for the optimum growth of plants and ensuring the required amount of nutrient dosing in irrigation water. Some of the prominent players manufacturing Pin & Socket Connectors are MI, Opple, PHILIPS, Schneider, Midea, BULL, Deli, Honyar, TOP, and Huntkey.
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Pin & Socket Connectors Market: Regional overview
Based on geography, the patch panel accessories market in North America, Europe, Japan, Southeast Asia, India are assumed to capture essential market share due to the focus on the automotive industry. Transportation and automotive will remain the largest end-use industry and observe the highest growth during the forecast period due to increasing electronic content in vehicles. The information regarding increasing air pollution levels has boosted the adoption of electric vehicles that create significant opportunities for pin & socket connectors in Japan, India, China, and other countries. In Germany, the demand for pin & socket connectors is increasing due to the adoption for pin & socket connectors in the automotive industry.
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industrybuying-blog · 6 years ago
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Get better network connectivity with premium quality Wi-Fi routers available online
A wifi router is a network device to provide network connectivity to multiple computers, phones, tablets and other supported device with internet access. Modern routers provide the connectivity to your devices with Ethernet or wirelessly using Wi-Fi. While router is suitable for home or small businesses, if you are looking for network connectivity in medium to large organizations with number of computers then you should look for Wi-Fi access point. Ensuring the flexible cross- network connection to various devices such as computers, cell phones, routers and access points has become the prominent need with the advancement of computer technologies in any field. You can easily buy WiFi routers online choosing from a large number of choices available like Netgear routers, TP link wireless router and D link router available in the market at affordable prices.
Choose online from the different type of network router product such as wireless access point, range extender, firewall, wifi router, wireless router, broad band router, dual band gigabit router, Wi-Fi modem router, WAN router, AC range extender, WiFi USB mini adapter, and many more devices. Shopping IT products online has become a trend these days, as getting branded products at the most attractive deals make your shopping experience the perfect one. Get to know the different components of a network router:
Internal components of a Wi-Fi router:
ROM: It is used to store the routers bootstrap details, operating system software.
RAM: Used to store the Routing tables, configuration files, caching and buffering details. Content is lost when lost router is switched off or restarted.
NVRAM: Stores the routers startup config files. Data is non volatile.
Network interfaces to connect router to network.
Buy Router online in India for homes and small business. You can buy wired or wireless routers for home or business need. Always choose from the leading brands such as TP-Link, Netgear, D-link, Asus, iBall, HP among many others. If you are looking for improved speed on home network, buy wireless AC router for best performance. Apart from routers you can also buy different IT & electronics product online comprises with CPU Accessories, Cables, Network interface card (Lan Cards), switches, Patch Cord, wireless adapter, Patch Panel, antenna, Server Rack and many more IT items. The broadband network router can be password protected against unwanted intervention from unknown distant networks or to avoid connecting an unrecognized supported device on your network. Shop online to get attractive deals on modem and wireless routers price. Buy wireless WiFi routers and WAN routers which primarily acts as the default gateway for host computers on a local area connection.
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mobileedge · 6 years ago
Text
Opportunities for Competitive Gamers Rival that of Traditional Athletes
New Post has been published on http://www.mobileedge.com/blog/2018/08/21/opportunities-for-competitive-gamers-rival-that-of-traditional-athletes/
Opportunities for Competitive Gamers Rival that of Traditional Athletes
If your high-school or college-aged athlete needed a bag or duffel to transport and organize his or her soccer, football, hockey, track and field, or other sporting gear, you wouldn’t give a second thought to outfitting him or her with the right tools for the job . . . would you? It’s a traditional right of passage for our youth, whether those activities one day result in professional success or simply remain a way for casual athletes to stay in shape.
In 2018, it’s time to add another type of athlete to this list: the competitive gamer (or eSports athlete). With more than 250 million players worldwide, and even more fans, playing video games—even as a hobby—no longer carries with it the stigma of mal-nourished, sedentary players glued in front of flickering computer screens late at night. ESports is now recognized as an official sport by high schools, colleges, and professional organizations around the globe.
According to the Newzoo 2018 Global eSports Market Report:
The total eSports audience will reach 380 million people this year, representing growth of more than 13.5% from 2017.
In 2017, there were nearly 600 major eSports events representing some $59 million in ticket revenue, up from $32 million the year before.
Prize money for major eSports events held in 2017 is estimated at $112 million.
Global eSports revenues are expected to jump more than 38% this year, to slightly more than $906 million ($345 million in North America).
Deloitte.com estimates that by 2020, the global eSports market will generate $1.5 billion in annual revenues, derived from sponsorships and advertising, betting, ticket sales, and merchandising. And in the recent article, A 2018 Update On Trends in eSports, Medium.com reported that “revenues, audiences, and events are growing exponentially. All of these statistics indicate double-digit growth, with brand investment, predicted to reach triple digits.”
When compared to the revenues of traditional sports leagues, such as the NBA and NHL—according to Statista.com, total NBA league revenue in 2017 was $7.37 billion; while the NHL took in $4 billion last year—it’s clear the opportunities that an eSport athlete has (or will soon have) are likely to one day rival those of participants in other, more-traditional sports.
Gamers are Athletes Too
In 2016,  a study of eSports athletes conducted by scientists at the German Sports University, found that eSports athletes are exposed to “physical strains similar to those of ‘normal’ athletes.” They attributed this strain to hand and eye movements as well as increased brain activity as eSports competitors encounter game play that requires snap decision-making as well as rapid physical movements and reflexes.
According to the study, many aspects of eSports areas demanding as other types of sports:
The physical demands of hand-eye coordination for eSports athletes had never been observed in any other sport, not even in table-tennis (which is renowned for its demanding hand-eye coordination).
The amount the stress hormone cortisol produced by gamers was found to be at about the same level as that of racecar drivers.
eSports athletes attained pulse rates as high as 160 to 180 beats per minute, equivalent to that experienced by runners and marathoners.
eSports is a Game Changer
Mobile Edge recognizes that the growth of eSports is a game changer. With all this interest in eSports, participants and enthusiasts alike now more than ever need a reliable way to stow and transport their gear from home to school to gaming venues and back again . . . and Mobile Edge is leading the way.
CORE Gaming Backpack
Named the 2017 VIP Award Winner in TWICE Magazine’s PC Accessories category, the full-featured CORE Gaming Backpack offers the ultimate in transport, protection, storage, and easy access to gaming gear, accessories, and other cool tech.
Sized to hold all popular models of gaming laptops (up to 17″-18″)
Three large storage sections pre-wired for a power bank or external battery
Four side accessory pockets for cables, phones, or oversized water bottles or snacks
Built-in external USB charge port
Checkpoint-friendly design to speed through TSA checkpoints
Constructed of durable ballistic nylon with tailored contrast stitching
Lifetime warranty
Gamers and their followers may be particularly interested in the Core Gaming Backpack with Velcro panel, which features a Velcro panel on which athletes and fans can affix patches and emblems of their favorite teams.
Mobile Power Supplies
Gamers also need power and performance on the go, and Mobile Edge offers two options to meet the mobile power supply needs of demanding eSports participants.
CORE Power AC USB (27,000mAh Portable Laptop Charger)
The compact and versatile CORE Power AC, with its massive battery capacity, provides extreme power and performance for even your most power-hungry devices! It features a universal AC outlet that delivers an incredible 85 watts of power. With 27,000mAh, you can plug in and power laptops and personal electronics, as well as USB devices.
CORE Power (26,800mAh Portable USB Battery/Charger)
Perfect for business professionals, travelers, students, and other commuters, the CORE Power battery/charger easily slips into a briefcase, handbag, backpack, or carry-on for reliable universal portable power at your fingertips. Works with smartphones, tablets, cameras, speakers, drones, Bluetooth headsets, wearables, and other USB devices.
Check out the CORE Gaming Backpack and other CORE accessories at Mobile Edge.
0 notes
itsemilyadamsat36 · 6 years ago
Text
Hopping On The Short Enphase Bandwagon
Hopping On The Short Enphase Bandwagon
On July 25th,  Prescience Point Capital Management recently released a report accusing Enphase energy Inc. (ENPH) of earnings manipulation. Prescience is an investment manager with a reputation for strong short-side analysis. I was intrigued, and decided to investigate Prescience’s claims for two reasons:
I am generally concerned about overall market conditions, so adding a short position to my portfolio is attractive in the current market environment.
As an analyst who specializes in clean energy stocks, I have suspected that Enphase would not survive much longer because I believe that its core technology is no longer the best solution for most applications.  As a poorly capitalized, unprofitable company, Enphase lacks the financial resources to regain a competitive edge.
After considering the evidence in the report, and using one of my own favorite tools to detect possible earnings manipulation, I decided to join Prescience Point in shorting the stock.
The Solar Inverter Landscape
Solar photovoltaic systems produce direct current (DC) electricity, and inverters are required to convert DC power to the alternating current (AC) power which is used by the electric grid.
There are four basic types of inverters, with different strengths and weaknesses for different types of solar installations.
Central inverters
String inverters
Microinverters
String inverters with DC optimizers
Central inverters are used in very large utility and commercial scale solar farms. They do not compete with Enphase’s microinverters, and so I will not discuss them in detail here.
String inverters were the industry standard for small and medium-scale solar installations until recently.  String inverters achieve high conversion efficiency by relying on high voltage DC current, which is achieved by wiring several solar panels in series.  A group of solar panels wired this way is called a string.
The downside of strings of solar panels is a weakest link problem.  The power output from each of the panels is effectively limited by the power output of the lowest power panel in the string.  Variations in output between panels arise from mismatched panels (panel manufacturing is not completely consistent), soiling of the panels by dirt or bird droppings, and by partial shading.  Even a tiny patch of shade on a single panel can greatly reduce the output from the entire string.
Advantages of Microinverters
Enhpase M190 microinverter by Maury Markowitz [CC BY-SA 3.0 or GFDL], from Wikimedia CommonsEventually, power electronics progressed, and high DC voltage was no longer needed to achieve high DC to AC conversion efficiency. Enphase and a few competitors introduced microinverters, which paired each solar panel with a single small “micro” inverter attached to the back of the panel. Of these microinverter pioneers, only Enphase still does significant business.
The microinverter instantly solved the weakest link problem for solar strings by eliminating the string. In addition, new fire codes being adopted by states since 2012 have given microinverters a leg up on their larger cousins for rooftop installations. These codes require that a solar system can be shut down from near the panels on the roof. String inverters are incapable of this feat, because they do not have any electronic controls on the roof, while cutting power to a microinverter turns off the current all the way back to the panel.
It can also lower the cost of installation, since installers only need to know how to handle wiring for AC current at typical household voltages.
Some solar panel manufacturers, notably SunPower (SPWR) took the next logical step in installation cost reduction by bundling a microinverter with a solar panel in a single package they called an “AC module.” Sunpower’s AC modules come with a 30 year guarantee on the complete system. This premium product (Sunpower’s panels are also higher efficiency than any of their competitors’) appeals to many homeowners, especially ones trying to get as much electricity as possible out of limited roof space.
SunPower’s AC module strategy was dealt a serious blow by President Trump’s solar tariffs, because by combining the microinverter and the DC solar panel into a single product, they inadvertently made both subject to the tariff. Unable to obtain an exemption, SunPower sold its microinverter business to Enphase in June.
Enphase’s stated motivation was to acquire a captive customer and consolidate its hold on the microinverter market, although Prescience Point calculates that Enphase significantly overpaid for a five year supplier agreement at inflated prices in an effort to artificially boost its profit margins. The company admits that it did not gain significant intellectual property in the deal.
Even if Enphase did not overpay, I believe that consolidating its control on the microinverter market is a risky strategy because, without significant technological advances, microinverters are an inferior product for most applications.
Microinverter Drawbacks
Microinverters come with several drawbacks.
The large number of microinverters needed to replace a single string inverter adds to cost.
The 120 or 240 volt AC current that microinverters produce requires larger and more expensive wiring than the several-hundred volt DC current typically used by strong inverters to connect the panels to the inverter.
Inverters are typically less durable than solar panels. Placing microinverters on the roof under the solar panels places them under additional stress than a string inverter which can typically be placed in an area subject to fewer temperature extremes. Although a single mincroinverter failure will not take down an entire solar installation, the larger number of microinverters means that such failures are more common, and the placement of the microinverters under the solar panels adds to replacement costs, especially on rooftop installations.
Given these drawbacks, microinverters have only been competitive for small residential systems, especially ones that have to cope with significant shading. For larger systems, the economics of scale generally win out.
The most recent innovation in the space is string inverters with DC optimizers. These combine the economics and efficiency of having a string inverter in a protected location, with the control and power balancing of microinverters by pairing each panel with a much smaller piece of electronics, a DC optimizer with each panel. These DC optimizers both compensate for differential power production between panels (solving the “weakest link” problem), and allows power to be shut down all the way back to the panel, allowing them to comply with the new fire codes.
While not quite as flexible as microinverters in terms of compensating for variations in output from different panels, string inverters with DC optimizers are nearly as good as microinverters in typical installations, but are competitive with traditional string inverters from a price standpoint.
The string inverters with DC optimizers are sold by SolarEdge (SDGE). By maintaining a high, fixed DC voltage from the panels to the inverter, SolarEdge’s solution has a slight advantage over traditional string inverters (and a large advantage over microinverters) in terms of wire sizing. It also maintains most of the maintenance advantages of traditional string inverters by locating the most sensitive electronic parts at the inverter.
These advantages have allowed SolarEdge to grow its market share by 182% from 2014 to 2017, while Enphase’s market share declined 17.5% over the same period. In order to reverse this trend, Enphase would have to improve its technology and cost structure in order to remove SolarEdge’s price advantage. While Enphase is working towards this goal, it is not well capitalized or profitable. SolarEdge is both of these things, and is also investing in improving its technology. It seems unlikely that Enphase can win this innovation race with fewer resources when it is already behind.
Meanwhile, other profitable and well capitalized inverter and electronics manufactures are working on solutions to comply with fire codes and address partial shading.
Earnings Manipulation
As a contestant is what seems to me to be an unwinnable race, it would hardly be surprising if Enphase’s management were tempted to cook the books in order to boost the share price and raise some much needed funds. This is precisely what Prescience Point’s report alleges. I found that the report makes a compelling case, which I will not summarize here. Instead, I suggest that you read it yourself.
In addition to reading the report, I decided to do my own test. I like to use the Beneish M-Score, a statistical model which combines a number of financial ratios to detect financial situations which would tempt a business to fudge its accounts, as well as tell-tale signs of actual cheating. Before the first quarter this year, Enphase’s M-Score was normal, but with the Q1 numbers a number of the component ratios moved in the wrong direction, and the M-score began signaling a high probability that Q1 earnings may have been manipulated.
In particular, the ratios that contributed to the unfavorable M-Score were the Gross Margin Index and Sales Growth Index, both of which were showing a high incentive to manipulate, while the Asset Quality Index was indicating likely excessive capitalization of expenses.
An unfavorable M-Score is nothing like proof of earnings manipulation, it just means that cautious investors should be going over the books with a fine-toothed comb. Which is exactly what Prescience did.
Conclusion
I was already looking for stocks to short as a hedge in what I believe is an increasingly dangerous stock market environment. I was also already skeptical of Enphase’s long term business prospects. Prescience’s report, and the unfavorable M-Score combined to make the decision to short Enphase a particularly easy one.
It turns out that the stock is hard to borrow, so rather than shorting directly, I sold Enphase $7.50 December calls the day the report came out (July 25th.) I only wish I’d sold more.
Disclosure: Short ENPH calls.
DISCLAIMER: Past performance is not a guarantee or a reliable indicator of future results. This article contains the current opinions of the author and such opinions are subject to change without notice. This article has been distributed for informational purposes only. Forecasts, estimates, and certain information contained herein should not be considered as investment advice or a recommendation of any particular security, strategy or investment product. Information contained herein has been obtained from sources believed to be reliable, but not guaranteed.
https://ift.tt/2LW53hU
0 notes
charlesmatthews0501 · 6 years ago
Text
Hopping On The Short Enphase Bandwagon
Hopping On The Short Enphase Bandwagon
On July 25th,  Prescience Point Capital Management recently released a report accusing Enphase energy Inc. (ENPH) of earnings manipulation. Prescience is an investment manager with a reputation for strong short-side analysis. I was intrigued, and decided to investigate Prescience’s claims for two reasons:
I am generally concerned about overall market conditions, so adding a short position to my portfolio is attractive in the current market environment.
As an analyst who specializes in clean energy stocks, I have suspected that Enphase would not survive much longer because I believe that its core technology is no longer the best solution for most applications.  As a poorly capitalized, unprofitable company, Enphase lacks the financial resources to regain a competitive edge.
After considering the evidence in the report, and using one of my own favorite tools to detect possible earnings manipulation, I decided to join Prescience Point in shorting the stock.
The Solar Inverter Landscape
Solar photovoltaic systems produce direct current (DC) electricity, and inverters are required to convert DC power to the alternating current (AC) power which is used by the electric grid.
There are four basic types of inverters, with different strengths and weaknesses for different types of solar installations.
Central inverters
String inverters
Microinverters
String inverters with DC optimizers
Central inverters are used in very large utility and commercial scale solar farms. They do not compete with Enphase’s microinverters, and so I will not discuss them in detail here.
String inverters were the industry standard for small and medium-scale solar installations until recently.  String inverters achieve high conversion efficiency by relying on high voltage DC current, which is achieved by wiring several solar panels in series.  A group of solar panels wired this way is called a string.
The downside of strings of solar panels is a weakest link problem.  The power output from each of the panels is effectively limited by the power output of the lowest power panel in the string.  Variations in output between panels arise from mismatched panels (panel manufacturing is not completely consistent), soiling of the panels by dirt or bird droppings, and by partial shading.  Even a tiny patch of shade on a single panel can greatly reduce the output from the entire string.
Advantages of Microinverters
Enhpase M190 microinverter by Maury Markowitz [CC BY-SA 3.0 or GFDL], from Wikimedia CommonsEventually, power electronics progressed, and high DC voltage was no longer needed to achieve high DC to AC conversion efficiency. Enphase and a few competitors introduced microinverters, which paired each solar panel with a single small “micro” inverter attached to the back of the panel. Of these microinverter pioneers, only Enphase still does significant business.
The microinverter instantly solved the weakest link problem for solar strings by eliminating the string. In addition, new fire codes being adopted by states since 2012 have given microinverters a leg up on their larger cousins for rooftop installations. These codes require that a solar system can be shut down from near the panels on the roof. String inverters are incapable of this feat, because they do not have any electronic controls on the roof, while cutting power to a microinverter turns off the current all the way back to the panel.
It can also lower the cost of installation, since installers only need to know how to handle wiring for AC current at typical household voltages.
Some solar panel manufacturers, notably SunPower (SPWR) took the next logical step in installation cost reduction by bundling a microinverter with a solar panel in a single package they called an “AC module.” Sunpower’s AC modules come with a 30 year guarantee on the complete system. This premium product (Sunpower’s panels are also higher efficiency than any of their competitors’) appeals to many homeowners, especially ones trying to get as much electricity as possible out of limited roof space.
SunPower’s AC module strategy was dealt a serious blow by President Trump’s solar tariffs, because by combining the microinverter and the DC solar panel into a single product, they inadvertently made both subject to the tariff. Unable to obtain an exemption, SunPower sold its microinverter business to Enphase in June.
Enphase’s stated motivation was to acquire a captive customer and consolidate its hold on the microinverter market, although Prescience Point calculates that Enphase significantly overpaid for a five year supplier agreement at inflated prices in an effort to artificially boost its profit margins. The company admits that it did not gain significant intellectual property in the deal.
Even if Enphase did not overpay, I believe that consolidating its control on the microinverter market is a risky strategy because, without significant technological advances, microinverters are an inferior product for most applications.
Microinverter Drawbacks
Microinverters come with several drawbacks.
The large number of microinverters needed to replace a single string inverter adds to cost.
The 120 or 240 volt AC current that microinverters produce requires larger and more expensive wiring than the several-hundred volt DC current typically used by strong inverters to connect the panels to the inverter.
Inverters are typically less durable than solar panels. Placing microinverters on the roof under the solar panels places them under additional stress than a string inverter which can typically be placed in an area subject to fewer temperature extremes. Although a single mincroinverter failure will not take down an entire solar installation, the larger number of microinverters means that such failures are more common, and the placement of the microinverters under the solar panels adds to replacement costs, especially on rooftop installations.
Given these drawbacks, microinverters have only been competitive for small residential systems, especially ones that have to cope with significant shading. For larger systems, the economics of scale generally win out.
The most recent innovation in the space is string inverters with DC optimizers. These combine the economics and efficiency of having a string inverter in a protected location, with the control and power balancing of microinverters by pairing each panel with a much smaller piece of electronics, a DC optimizer with each panel. These DC optimizers both compensate for differential power production between panels (solving the “weakest link” problem), and allows power to be shut down all the way back to the panel, allowing them to comply with the new fire codes.
While not quite as flexible as microinverters in terms of compensating for variations in output from different panels, string inverters with DC optimizers are nearly as good as microinverters in typical installations, but are competitive with traditional string inverters from a price standpoint.
The string inverters with DC optimizers are sold by SolarEdge (SDGE). By maintaining a high, fixed DC voltage from the panels to the inverter, SolarEdge’s solution has a slight advantage over traditional string inverters (and a large advantage over microinverters) in terms of wire sizing. It also maintains most of the maintenance advantages of traditional string inverters by locating the most sensitive electronic parts at the inverter.
These advantages have allowed SolarEdge to grow its market share by 182% from 2014 to 2017, while Enphase’s market share declined 17.5% over the same period. In order to reverse this trend, Enphase would have to improve its technology and cost structure in order to remove SolarEdge’s price advantage. While Enphase is working towards this goal, it is not well capitalized or profitable. SolarEdge is both of these things, and is also investing in improving its technology. It seems unlikely that Enphase can win this innovation race with fewer resources when it is already behind.
Meanwhile, other profitable and well capitalized inverter and electronics manufactures are working on solutions to comply with fire codes and address partial shading.
Earnings Manipulation
As a contestant is what seems to me to be an unwinnable race, it would hardly be surprising if Enphase’s management were tempted to cook the books in order to boost the share price and raise some much needed funds. This is precisely what Prescience Point’s report alleges. I found that the report makes a compelling case, which I will not summarize here. Instead, I suggest that you read it yourself.
In addition to reading the report, I decided to do my own test. I like to use the Beneish M-Score, a statistical model which combines a number of financial ratios to detect financial situations which would tempt a business to fudge its accounts, as well as tell-tale signs of actual cheating. Before the first quarter this year, Enphase’s M-Score was normal, but with the Q1 numbers a number of the component ratios moved in the wrong direction, and the M-score began signaling a high probability that Q1 earnings may have been manipulated.
In particular, the ratios that contributed to the unfavorable M-Score were the Gross Margin Index and Sales Growth Index, both of which were showing a high incentive to manipulate, while the Asset Quality Index was indicating likely excessive capitalization of expenses.
An unfavorable M-Score is nothing like proof of earnings manipulation, it just means that cautious investors should be going over the books with a fine-toothed comb. Which is exactly what Prescience did.
Conclusion
I was already looking for stocks to short as a hedge in what I believe is an increasingly dangerous stock market environment. I was also already skeptical of Enphase’s long term business prospects. Prescience’s report, and the unfavorable M-Score combined to make the decision to short Enphase a particularly easy one.
It turns out that the stock is hard to borrow, so rather than shorting directly, I sold Enphase $7.50 December calls the day the report came out (July 25th.) I only wish I’d sold more.
Disclosure: Short ENPH calls.
DISCLAIMER: Past performance is not a guarantee or a reliable indicator of future results. This article contains the current opinions of the author and such opinions are subject to change without notice. This article has been distributed for informational purposes only. Forecasts, estimates, and certain information contained herein should not be considered as investment advice or a recommendation of any particular security, strategy or investment product. Information contained herein has been obtained from sources believed to be reliable, but not guaranteed.
https://ift.tt/2LW53hU
0 notes
natalieweber221 · 6 years ago
Text
Hopping On The Short Enphase Bandwagon
Hopping On The Short Enphase Bandwagon
On July 25th,  Prescience Point Capital Management recently released a report accusing Enphase energy Inc. (ENPH) of earnings manipulation. Prescience is an investment manager with a reputation for strong short-side analysis. I was intrigued, and decided to investigate Prescience’s claims for two reasons:
I am generally concerned about overall market conditions, so adding a short position to my portfolio is attractive in the current market environment.
As an analyst who specializes in clean energy stocks, I have suspected that Enphase would not survive much longer because I believe that its core technology is no longer the best solution for most applications.  As a poorly capitalized, unprofitable company, Enphase lacks the financial resources to regain a competitive edge.
After considering the evidence in the report, and using one of my own favorite tools to detect possible earnings manipulation, I decided to join Prescience Point in shorting the stock.
The Solar Inverter Landscape
Solar photovoltaic systems produce direct current (DC) electricity, and inverters are required to convert DC power to the alternating current (AC) power which is used by the electric grid.
There are four basic types of inverters, with different strengths and weaknesses for different types of solar installations.
Central inverters
String inverters
Microinverters
String inverters with DC optimizers
Central inverters are used in very large utility and commercial scale solar farms. They do not compete with Enphase’s microinverters, and so I will not discuss them in detail here.
String inverters were the industry standard for small and medium-scale solar installations until recently.  String inverters achieve high conversion efficiency by relying on high voltage DC current, which is achieved by wiring several solar panels in series.  A group of solar panels wired this way is called a string.
The downside of strings of solar panels is a weakest link problem.  The power output from each of the panels is effectively limited by the power output of the lowest power panel in the string.  Variations in output between panels arise from mismatched panels (panel manufacturing is not completely consistent), soiling of the panels by dirt or bird droppings, and by partial shading.  Even a tiny patch of shade on a single panel can greatly reduce the output from the entire string.
Advantages of Microinverters
Enhpase M190 microinverter by Maury Markowitz [CC BY-SA 3.0 or GFDL], from Wikimedia CommonsEventually, power electronics progressed, and high DC voltage was no longer needed to achieve high DC to AC conversion efficiency. Enphase and a few competitors introduced microinverters, which paired each solar panel with a single small “micro” inverter attached to the back of the panel. Of these microinverter pioneers, only Enphase still does significant business.
The microinverter instantly solved the weakest link problem for solar strings by eliminating the string. In addition, new fire codes being adopted by states since 2012 have given microinverters a leg up on their larger cousins for rooftop installations. These codes require that a solar system can be shut down from near the panels on the roof. String inverters are incapable of this feat, because they do not have any electronic controls on the roof, while cutting power to a microinverter turns off the current all the way back to the panel.
It can also lower the cost of installation, since installers only need to know how to handle wiring for AC current at typical household voltages.
Some solar panel manufacturers, notably SunPower (SPWR) took the next logical step in installation cost reduction by bundling a microinverter with a solar panel in a single package they called an “AC module.” Sunpower’s AC modules come with a 30 year guarantee on the complete system. This premium product (Sunpower’s panels are also higher efficiency than any of their competitors’) appeals to many homeowners, especially ones trying to get as much electricity as possible out of limited roof space.
SunPower’s AC module strategy was dealt a serious blow by President Trump’s solar tariffs, because by combining the microinverter and the DC solar panel into a single product, they inadvertently made both subject to the tariff. Unable to obtain an exemption, SunPower sold its microinverter business to Enphase in June.
Enphase’s stated motivation was to acquire a captive customer and consolidate its hold on the microinverter market, although Prescience Point calculates that Enphase significantly overpaid for a five year supplier agreement at inflated prices in an effort to artificially boost its profit margins. The company admits that it did not gain significant intellectual property in the deal.
Even if Enphase did not overpay, I believe that consolidating its control on the microinverter market is a risky strategy because, without significant technological advances, microinverters are an inferior product for most applications.
Microinverter Drawbacks
Microinverters come with several drawbacks.
The large number of microinverters needed to replace a single string inverter adds to cost.
The 120 or 240 volt AC current that microinverters produce requires larger and more expensive wiring than the several-hundred volt DC current typically used by strong inverters to connect the panels to the inverter.
Inverters are typically less durable than solar panels. Placing microinverters on the roof under the solar panels places them under additional stress than a string inverter which can typically be placed in an area subject to fewer temperature extremes. Although a single mincroinverter failure will not take down an entire solar installation, the larger number of microinverters means that such failures are more common, and the placement of the microinverters under the solar panels adds to replacement costs, especially on rooftop installations.
Given these drawbacks, microinverters have only been competitive for small residential systems, especially ones that have to cope with significant shading. For larger systems, the economics of scale generally win out.
The most recent innovation in the space is string inverters with DC optimizers. These combine the economics and efficiency of having a string inverter in a protected location, with the control and power balancing of microinverters by pairing each panel with a much smaller piece of electronics, a DC optimizer with each panel. These DC optimizers both compensate for differential power production between panels (solving the “weakest link” problem), and allows power to be shut down all the way back to the panel, allowing them to comply with the new fire codes.
While not quite as flexible as microinverters in terms of compensating for variations in output from different panels, string inverters with DC optimizers are nearly as good as microinverters in typical installations, but are competitive with traditional string inverters from a price standpoint.
The string inverters with DC optimizers are sold by SolarEdge (SDGE). By maintaining a high, fixed DC voltage from the panels to the inverter, SolarEdge’s solution has a slight advantage over traditional string inverters (and a large advantage over microinverters) in terms of wire sizing. It also maintains most of the maintenance advantages of traditional string inverters by locating the most sensitive electronic parts at the inverter.
These advantages have allowed SolarEdge to grow its market share by 182% from 2014 to 2017, while Enphase’s market share declined 17.5% over the same period. In order to reverse this trend, Enphase would have to improve its technology and cost structure in order to remove SolarEdge’s price advantage. While Enphase is working towards this goal, it is not well capitalized or profitable. SolarEdge is both of these things, and is also investing in improving its technology. It seems unlikely that Enphase can win this innovation race with fewer resources when it is already behind.
Meanwhile, other profitable and well capitalized inverter and electronics manufactures are working on solutions to comply with fire codes and address partial shading.
Earnings Manipulation
As a contestant is what seems to me to be an unwinnable race, it would hardly be surprising if Enphase’s management were tempted to cook the books in order to boost the share price and raise some much needed funds. This is precisely what Prescience Point’s report alleges. I found that the report makes a compelling case, which I will not summarize here. Instead, I suggest that you read it yourself.
In addition to reading the report, I decided to do my own test. I like to use the Beneish M-Score, a statistical model which combines a number of financial ratios to detect financial situations which would tempt a business to fudge its accounts, as well as tell-tale signs of actual cheating. Before the first quarter this year, Enphase’s M-Score was normal, but with the Q1 numbers a number of the component ratios moved in the wrong direction, and the M-score began signaling a high probability that Q1 earnings may have been manipulated.
In particular, the ratios that contributed to the unfavorable M-Score were the Gross Margin Index and Sales Growth Index, both of which were showing a high incentive to manipulate, while the Asset Quality Index was indicating likely excessive capitalization of expenses.
An unfavorable M-Score is nothing like proof of earnings manipulation, it just means that cautious investors should be going over the books with a fine-toothed comb. Which is exactly what Prescience did.
Conclusion
I was already looking for stocks to short as a hedge in what I believe is an increasingly dangerous stock market environment. I was also already skeptical of Enphase’s long term business prospects. Prescience’s report, and the unfavorable M-Score combined to make the decision to short Enphase a particularly easy one.
It turns out that the stock is hard to borrow, so rather than shorting directly, I sold Enphase $7.50 December calls the day the report came out (July 25th.) I only wish I’d sold more.
Disclosure: Short ENPH calls.
DISCLAIMER: Past performance is not a guarantee or a reliable indicator of future results. This article contains the current opinions of the author and such opinions are subject to change without notice. This article has been distributed for informational purposes only. Forecasts, estimates, and certain information contained herein should not be considered as investment advice or a recommendation of any particular security, strategy or investment product. Information contained herein has been obtained from sources believed to be reliable, but not guaranteed.
https://ift.tt/2LW53hU
0 notes
andrewreynolds214t · 6 years ago
Text
Hopping On The Short Enphase Bandwagon
Hopping On The Short Enphase Bandwagon
On July 25th,  Prescience Point Capital Management recently released a report accusing Enphase energy Inc. (ENPH) of earnings manipulation. Prescience is an investment manager with a reputation for strong short-side analysis. I was intrigued, and decided to investigate Prescience’s claims for two reasons:
I am generally concerned about overall market conditions, so adding a short position to my portfolio is attractive in the current market environment.
As an analyst who specializes in clean energy stocks, I have suspected that Enphase would not survive much longer because I believe that its core technology is no longer the best solution for most applications.  As a poorly capitalized, unprofitable company, Enphase lacks the financial resources to regain a competitive edge.
After considering the evidence in the report, and using one of my own favorite tools to detect possible earnings manipulation, I decided to join Prescience Point in shorting the stock.
The Solar Inverter Landscape
Solar photovoltaic systems produce direct current (DC) electricity, and inverters are required to convert DC power to the alternating current (AC) power which is used by the electric grid.
There are four basic types of inverters, with different strengths and weaknesses for different types of solar installations.
Central inverters
String inverters
Microinverters
String inverters with DC optimizers
Central inverters are used in very large utility and commercial scale solar farms. They do not compete with Enphase’s microinverters, and so I will not discuss them in detail here.
String inverters were the industry standard for small and medium-scale solar installations until recently.  String inverters achieve high conversion efficiency by relying on high voltage DC current, which is achieved by wiring several solar panels in series.  A group of solar panels wired this way is called a string.
The downside of strings of solar panels is a weakest link problem.  The power output from each of the panels is effectively limited by the power output of the lowest power panel in the string.  Variations in output between panels arise from mismatched panels (panel manufacturing is not completely consistent), soiling of the panels by dirt or bird droppings, and by partial shading.  Even a tiny patch of shade on a single panel can greatly reduce the output from the entire string.
Advantages of Microinverters
Enhpase M190 microinverter by Maury Markowitz [CC BY-SA 3.0 or GFDL], from Wikimedia CommonsEventually, power electronics progressed, and high DC voltage was no longer needed to achieve high DC to AC conversion efficiency. Enphase and a few competitors introduced microinverters, which paired each solar panel with a single small “micro” inverter attached to the back of the panel. Of these microinverter pioneers, only Enphase still does significant business.
The microinverter instantly solved the weakest link problem for solar strings by eliminating the string. In addition, new fire codes being adopted by states since 2012 have given microinverters a leg up on their larger cousins for rooftop installations. These codes require that a solar system can be shut down from near the panels on the roof. String inverters are incapable of this feat, because they do not have any electronic controls on the roof, while cutting power to a microinverter turns off the current all the way back to the panel.
It can also lower the cost of installation, since installers only need to know how to handle wiring for AC current at typical household voltages.
Some solar panel manufacturers, notably SunPower (SPWR) took the next logical step in installation cost reduction by bundling a microinverter with a solar panel in a single package they called an “AC module.” Sunpower’s AC modules come with a 30 year guarantee on the complete system. This premium product (Sunpower’s panels are also higher efficiency than any of their competitors’) appeals to many homeowners, especially ones trying to get as much electricity as possible out of limited roof space.
SunPower’s AC module strategy was dealt a serious blow by President Trump’s solar tariffs, because by combining the microinverter and the DC solar panel into a single product, they inadvertently made both subject to the tariff. Unable to obtain an exemption, SunPower sold its microinverter business to Enphase in June.
Enphase’s stated motivation was to acquire a captive customer and consolidate its hold on the microinverter market, although Prescience Point calculates that Enphase significantly overpaid for a five year supplier agreement at inflated prices in an effort to artificially boost its profit margins. The company admits that it did not gain significant intellectual property in the deal.
Even if Enphase did not overpay, I believe that consolidating its control on the microinverter market is a risky strategy because, without significant technological advances, microinverters are an inferior product for most applications.
Microinverter Drawbacks
Microinverters come with several drawbacks.
The large number of microinverters needed to replace a single string inverter adds to cost.
The 120 or 240 volt AC current that microinverters produce requires larger and more expensive wiring than the several-hundred volt DC current typically used by strong inverters to connect the panels to the inverter.
Inverters are typically less durable than solar panels. Placing microinverters on the roof under the solar panels places them under additional stress than a string inverter which can typically be placed in an area subject to fewer temperature extremes. Although a single mincroinverter failure will not take down an entire solar installation, the larger number of microinverters means that such failures are more common, and the placement of the microinverters under the solar panels adds to replacement costs, especially on rooftop installations.
Given these drawbacks, microinverters have only been competitive for small residential systems, especially ones that have to cope with significant shading. For larger systems, the economics of scale generally win out.
The most recent innovation in the space is string inverters with DC optimizers. These combine the economics and efficiency of having a string inverter in a protected location, with the control and power balancing of microinverters by pairing each panel with a much smaller piece of electronics, a DC optimizer with each panel. These DC optimizers both compensate for differential power production between panels (solving the “weakest link” problem), and allows power to be shut down all the way back to the panel, allowing them to comply with the new fire codes.
While not quite as flexible as microinverters in terms of compensating for variations in output from different panels, string inverters with DC optimizers are nearly as good as microinverters in typical installations, but are competitive with traditional string inverters from a price standpoint.
The string inverters with DC optimizers are sold by SolarEdge (SDGE). By maintaining a high, fixed DC voltage from the panels to the inverter, SolarEdge’s solution has a slight advantage over traditional string inverters (and a large advantage over microinverters) in terms of wire sizing. It also maintains most of the maintenance advantages of traditional string inverters by locating the most sensitive electronic parts at the inverter.
These advantages have allowed SolarEdge to grow its market share by 182% from 2014 to 2017, while Enphase’s market share declined 17.5% over the same period. In order to reverse this trend, Enphase would have to improve its technology and cost structure in order to remove SolarEdge’s price advantage. While Enphase is working towards this goal, it is not well capitalized or profitable. SolarEdge is both of these things, and is also investing in improving its technology. It seems unlikely that Enphase can win this innovation race with fewer resources when it is already behind.
Meanwhile, other profitable and well capitalized inverter and electronics manufactures are working on solutions to comply with fire codes and address partial shading.
Earnings Manipulation
As a contestant is what seems to me to be an unwinnable race, it would hardly be surprising if Enphase’s management were tempted to cook the books in order to boost the share price and raise some much needed funds. This is precisely what Prescience Point’s report alleges. I found that the report makes a compelling case, which I will not summarize here. Instead, I suggest that you read it yourself.
In addition to reading the report, I decided to do my own test. I like to use the Beneish M-Score, a statistical model which combines a number of financial ratios to detect financial situations which would tempt a business to fudge its accounts, as well as tell-tale signs of actual cheating. Before the first quarter this year, Enphase’s M-Score was normal, but with the Q1 numbers a number of the component ratios moved in the wrong direction, and the M-score began signaling a high probability that Q1 earnings may have been manipulated.
In particular, the ratios that contributed to the unfavorable M-Score were the Gross Margin Index and Sales Growth Index, both of which were showing a high incentive to manipulate, while the Asset Quality Index was indicating likely excessive capitalization of expenses.
An unfavorable M-Score is nothing like proof of earnings manipulation, it just means that cautious investors should be going over the books with a fine-toothed comb. Which is exactly what Prescience did.
Conclusion
I was already looking for stocks to short as a hedge in what I believe is an increasingly dangerous stock market environment. I was also already skeptical of Enphase’s long term business prospects. Prescience’s report, and the unfavorable M-Score combined to make the decision to short Enphase a particularly easy one.
It turns out that the stock is hard to borrow, so rather than shorting directly, I sold Enphase $7.50 December calls the day the report came out (July 25th.) I only wish I’d sold more.
Disclosure: Short ENPH calls.
DISCLAIMER: Past performance is not a guarantee or a reliable indicator of future results. This article contains the current opinions of the author and such opinions are subject to change without notice. This article has been distributed for informational purposes only. Forecasts, estimates, and certain information contained herein should not be considered as investment advice or a recommendation of any particular security, strategy or investment product. Information contained herein has been obtained from sources believed to be reliable, but not guaranteed.
https://ift.tt/2LW53hU
0 notes
helloashleygreen2213 · 6 years ago
Text
Hopping On The Short Enphase Bandwagon
Hopping On The Short Enphase Bandwagon
On July 25th,  Prescience Point Capital Management recently released a report accusing Enphase energy Inc. (ENPH) of earnings manipulation. Prescience is an investment manager with a reputation for strong short-side analysis. I was intrigued, and decided to investigate Prescience’s claims for two reasons:
I am generally concerned about overall market conditions, so adding a short position to my portfolio is attractive in the current market environment.
As an analyst who specializes in clean energy stocks, I have suspected that Enphase would not survive much longer because I believe that its core technology is no longer the best solution for most applications.  As a poorly capitalized, unprofitable company, Enphase lacks the financial resources to regain a competitive edge.
After considering the evidence in the report, and using one of my own favorite tools to detect possible earnings manipulation, I decided to join Prescience Point in shorting the stock.
The Solar Inverter Landscape
Solar photovoltaic systems produce direct current (DC) electricity, and inverters are required to convert DC power to the alternating current (AC) power which is used by the electric grid.
There are four basic types of inverters, with different strengths and weaknesses for different types of solar installations.
Central inverters
String inverters
Microinverters
String inverters with DC optimizers
Central inverters are used in very large utility and commercial scale solar farms. They do not compete with Enphase’s microinverters, and so I will not discuss them in detail here.
String inverters were the industry standard for small and medium-scale solar installations until recently.  String inverters achieve high conversion efficiency by relying on high voltage DC current, which is achieved by wiring several solar panels in series.  A group of solar panels wired this way is called a string.
The downside of strings of solar panels is a weakest link problem.  The power output from each of the panels is effectively limited by the power output of the lowest power panel in the string.  Variations in output between panels arise from mismatched panels (panel manufacturing is not completely consistent), soiling of the panels by dirt or bird droppings, and by partial shading.  Even a tiny patch of shade on a single panel can greatly reduce the output from the entire string.
Advantages of Microinverters
Enhpase M190 microinverter by Maury Markowitz [CC BY-SA 3.0 or GFDL], from Wikimedia CommonsEventually, power electronics progressed, and high DC voltage was no longer needed to achieve high DC to AC conversion efficiency. Enphase and a few competitors introduced microinverters, which paired each solar panel with a single small “micro” inverter attached to the back of the panel. Of these microinverter pioneers, only Enphase still does significant business.
The microinverter instantly solved the weakest link problem for solar strings by eliminating the string. In addition, new fire codes being adopted by states since 2012 have given microinverters a leg up on their larger cousins for rooftop installations. These codes require that a solar system can be shut down from near the panels on the roof. String inverters are incapable of this feat, because they do not have any electronic controls on the roof, while cutting power to a microinverter turns off the current all the way back to the panel.
It can also lower the cost of installation, since installers only need to know how to handle wiring for AC current at typical household voltages.
Some solar panel manufacturers, notably SunPower (SPWR) took the next logical step in installation cost reduction by bundling a microinverter with a solar panel in a single package they called an “AC module.” Sunpower’s AC modules come with a 30 year guarantee on the complete system. This premium product (Sunpower’s panels are also higher efficiency than any of their competitors’) appeals to many homeowners, especially ones trying to get as much electricity as possible out of limited roof space.
SunPower’s AC module strategy was dealt a serious blow by President Trump’s solar tariffs, because by combining the microinverter and the DC solar panel into a single product, they inadvertently made both subject to the tariff. Unable to obtain an exemption, SunPower sold its microinverter business to Enphase in June.
Enphase’s stated motivation was to acquire a captive customer and consolidate its hold on the microinverter market, although Prescience Point calculates that Enphase significantly overpaid for a five year supplier agreement at inflated prices in an effort to artificially boost its profit margins. The company admits that it did not gain significant intellectual property in the deal.
Even if Enphase did not overpay, I believe that consolidating its control on the microinverter market is a risky strategy because, without significant technological advances, microinverters are an inferior product for most applications.
Microinverter Drawbacks
Microinverters come with several drawbacks.
The large number of microinverters needed to replace a single string inverter adds to cost.
The 120 or 240 volt AC current that microinverters produce requires larger and more expensive wiring than the several-hundred volt DC current typically used by strong inverters to connect the panels to the inverter.
Inverters are typically less durable than solar panels. Placing microinverters on the roof under the solar panels places them under additional stress than a string inverter which can typically be placed in an area subject to fewer temperature extremes. Although a single mincroinverter failure will not take down an entire solar installation, the larger number of microinverters means that such failures are more common, and the placement of the microinverters under the solar panels adds to replacement costs, especially on rooftop installations.
Given these drawbacks, microinverters have only been competitive for small residential systems, especially ones that have to cope with significant shading. For larger systems, the economics of scale generally win out.
The most recent innovation in the space is string inverters with DC optimizers. These combine the economics and efficiency of having a string inverter in a protected location, with the control and power balancing of microinverters by pairing each panel with a much smaller piece of electronics, a DC optimizer with each panel. These DC optimizers both compensate for differential power production between panels (solving the “weakest link” problem), and allows power to be shut down all the way back to the panel, allowing them to comply with the new fire codes.
While not quite as flexible as microinverters in terms of compensating for variations in output from different panels, string inverters with DC optimizers are nearly as good as microinverters in typical installations, but are competitive with traditional string inverters from a price standpoint.
The string inverters with DC optimizers are sold by SolarEdge (SDGE). By maintaining a high, fixed DC voltage from the panels to the inverter, SolarEdge’s solution has a slight advantage over traditional string inverters (and a large advantage over microinverters) in terms of wire sizing. It also maintains most of the maintenance advantages of traditional string inverters by locating the most sensitive electronic parts at the inverter.
These advantages have allowed SolarEdge to grow its market share by 182% from 2014 to 2017, while Enphase’s market share declined 17.5% over the same period. In order to reverse this trend, Enphase would have to improve its technology and cost structure in order to remove SolarEdge’s price advantage. While Enphase is working towards this goal, it is not well capitalized or profitable. SolarEdge is both of these things, and is also investing in improving its technology. It seems unlikely that Enphase can win this innovation race with fewer resources when it is already behind.
Meanwhile, other profitable and well capitalized inverter and electronics manufactures are working on solutions to comply with fire codes and address partial shading.
Earnings Manipulation
As a contestant is what seems to me to be an unwinnable race, it would hardly be surprising if Enphase’s management were tempted to cook the books in order to boost the share price and raise some much needed funds. This is precisely what Prescience Point’s report alleges. I found that the report makes a compelling case, which I will not summarize here. Instead, I suggest that you read it yourself.
In addition to reading the report, I decided to do my own test. I like to use the Beneish M-Score, a statistical model which combines a number of financial ratios to detect financial situations which would tempt a business to fudge its accounts, as well as tell-tale signs of actual cheating. Before the first quarter this year, Enphase’s M-Score was normal, but with the Q1 numbers a number of the component ratios moved in the wrong direction, and the M-score began signaling a high probability that Q1 earnings may have been manipulated.
In particular, the ratios that contributed to the unfavorable M-Score were the Gross Margin Index and Sales Growth Index, both of which were showing a high incentive to manipulate, while the Asset Quality Index was indicating likely excessive capitalization of expenses.
An unfavorable M-Score is nothing like proof of earnings manipulation, it just means that cautious investors should be going over the books with a fine-toothed comb. Which is exactly what Prescience did.
Conclusion
I was already looking for stocks to short as a hedge in what I believe is an increasingly dangerous stock market environment. I was also already skeptical of Enphase’s long term business prospects. Prescience’s report, and the unfavorable M-Score combined to make the decision to short Enphase a particularly easy one.
It turns out that the stock is hard to borrow, so rather than shorting directly, I sold Enphase $7.50 December calls the day the report came out (July 25th.) I only wish I’d sold more.
Disclosure: Short ENPH calls.
DISCLAIMER: Past performance is not a guarantee or a reliable indicator of future results. This article contains the current opinions of the author and such opinions are subject to change without notice. This article has been distributed for informational purposes only. Forecasts, estimates, and certain information contained herein should not be considered as investment advice or a recommendation of any particular security, strategy or investment product. Information contained herein has been obtained from sources believed to be reliable, but not guaranteed.
https://ift.tt/2LW53hU
0 notes
gta-5-cheats · 6 years ago
Text
Tecno Camon iClick Review
New Post has been published on http://secondcovers.com/tecno-camon-iclick-review/
Tecno Camon iClick Review
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Tecno Mobile entered the Indian market around a year ago, and already, it’s got a decently sized roster of smartphones. Its most recent addition comes in the form of the Camon iClick and as the name suggests, the focus is on providing a good camera experience. The company also boasts about the artificial intelligence (AI) capabilities given to the front camera.
However, with a market price of Rs. 13,999, Tecno faces a big challenge from the likes of Xiaomi, Asus, and Nokia, all of whom have excellent offerings under Rs. 15,000, all with very competitive specifications. Let’s see if the Camon iClick can make a compelling case for itself.
Tecno Camon iClick design
The Camon iClick is up to speed with today’s design trends, as dominating the front is a 6-inch display in the 18:9 aspect ratio. Bezels are fairly slim on the sides with just enough room on the top to comfortably fit the ear piece, sensors, selfie camera, and a fill light. There’s a bit of chin at the bottom too, which we don’t mind since it just makes it a bit easier when watching videos or while gaming.
  Our main gripe with the screen is its resolution. It’s only HD+ or 720×1440, which is too little when everyone else is offering a full-HD/ full-HD+ panel in this segment. Colours are punchy and the brightness level is good but the low resolution causes jagged edges around icons and text.
The plastic build makes it quite light (150 grams) and at 7.3mm in thickness, it’s fairly slim too. It’s easy to grip and the matte finish doesn’t attract fingerprints. Theres’s a Dual-SIM slot on the side along with a dedicated space for a microSD card. On the bottom, we have a single speaker, a Micro-USB port, and the headphone socket. At the back, we have a single rear camera with a quad-LED flash and a fingerprint sensor.
The Camon iClick is available in two colours and in the box, you get a silicone case, SIM eject tool, an in-ear headset, charging cable, and a 10W adapter.
Tecno Camon iClick specifications and software
The Camon iClick uses an octa-core MediaTek Helio P23 SoC, which offers similar performance to a Qualcomm Snapdragon 625 SoC as they both use eight ARM Cortex-A53 CPU cores. The graphics chips are slightly different as the P23 uses the ARM Mali-G71 GPU, which is slightly less powerful than the Adreno 506 GPU in the 625 chip.
We managed to get decent scores in benchmarks, which were 78,925 points in AnTuTu and 33fps in GFXbench’s T-Rex test. While the scores are good, it’s not good enough compared to what the competition offers as the P23 SoC is still slower than a Helio P60 or the Snapdragon 636 that usually available in this price range.
  You do get ample RAM of 4GB and 64GB of internal storage, which can be expanded. Other specifications include dual-band Wi-Fi 802.11 b/g/n, Bluetooth 4.1, FM radio, USB OTG, GPS, a notification LED and a bunch of sensors like an accelerometer, ambient light sensor, and a proximity sensor. The phone is missing one crucial sensor, which is a compass. This means, you can’t tell which direction you’re facing in apps like Google Maps.
The Camon iClick runs on HiOS v3.3.0, which is based on Android 8.1 Oreo. The security patch is quite recent too (April 2018), which is good to see. The skinning is quite extensive, right from the custom icons to the various customisable themes. Thankfully, some of the basics have been left intact so notifications can be swiped away in a single gesture; there’s an app drawer and toggle switches are present here too in its usual spot.
When an app is being installed, the OS will offer suggestions to create a folder for the shortcut on the home screen and will group the shortcuts of similar apps in the same folder. For instance, all the benchmarks we downloaded were automatically grouped in one folder.  
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  There’s a WhatsApp mode in the notification shade, which essentially prioritises data traffic for the app. As a result, the bandwidth seems to be restricted for other apps when this mode is enabled, as we found webpages took longer to load.
The Camon iClick also boasts of facial recognition, which has been conveniently named ‘Face ID’. If that’s not all, it even has a similar setup animation as the iPhone X (Review). Authentication isn’t immediate as you need to wait a bit before it recognises your face. We weren’t able to fool it with a 2D picture but it does unlock if your eyes are closed, which doesn’t make it very secure.
Other than some bundled apps from Tecno, you also get some third party apps pre-installed like Facebook, Instagram, and Facebook Messenger.
Tecno Camon iClick performance, camera, and battery life
We found the general performance to be pretty good. The phone copes well with multitasking and even games like Asphalt 8: Airborne run just fine as the GPU doesn’t have to render it at a very high resolution. The back of the phone gets a bit warm with long gaming sessions but nothing too alarming. The display has good touch response and sunlight legibility is just about okay. 4G works well and we didn’t have any trouble with call quality.
  The bundled headset provides good passive isolation from ambient noise but audio quality is strictly average. The Camon iClick handles most of the popular audio and video formats well, including our high bitrate test files. Apps scale web to the full screen too and since there’s no notch, there’s no formatting issues either. The mono speaker gets very loud but the positioning the speaker grille means it’s easy to block it when using it in landscape mode.
The rear camera is a 16-megapixel sensor with an f/1.8 aperture actually manages decent details in daylight. Burst mode works well too and we were able to get some usable shots of moving subjects. The phone is quick to focus in daylight but this slows down when light isn’t ideal. There is an ‘Auto HDR’ mode but at times, it wouldn’t automatically kick in when we actually needed it. According to Tecno, the phone supports multiple AI modes for auto-scene detection, beauty and bokeh but it’s hard to tell how and if this is actually working as there’s no visual indication for it.
Even for the beauty mode, you still have to manually select the level of beautification. The Super Pixel shooting mode takes multiple samples of the same scene and bumps up the resolution of the final picture. Macros shots have fairly good detail too under good lighting.
Tap for full size images of Tecno Camon iClick camera samples
  In low light, the phone tends to oversaturate colours at times but noise is surpressed well, at the cost of some details. The phone has a 20-megapixel front camera, which shoots fairly good selfies. The fill light in the front is quite powerful and offers good illumination in low light. Portrait mode works decently well too in adding additional blur to the background, which is present for the front and rear camera. Video quality at 1080p is decent during the day but there’s no electronic stabilisation, which causes shaky footage if you’re moving about. Continuous autofocus speed isn’t very quick either.
With typical usage, we found the Camon iClick to easily pull through a full day on a single charge. The 3750mAh battery also charges fairly quickly as with the bundled adapter, we managed to get a 57 percent charge in about an hour. In our battery loop test, we measured a runtime of 12 hours and 23 minutes of continuous video playback.
Verdict The Tecno Camon iClick has the potential to be a good mainstream offering but the absence of some features and certain hardware choices makes it tough to recommend when you look at what else is available in the market. It looks good, is built well, has decent battery life, and a good selfie camera. However, at a market price of Rs. 13,999, it doesn’t offer the best value. At this price, we would have liked a metal body, a higher resolution display and the presence of basic sensors, like a compass.
If you’re spending around Rs.15,000, then we think you’d be better off with phones like the Xiaomi Redmi Note 5 Pro (Review), Asus ZenFone Max Pro M1 (Review), Realme 1 (Review) or even the Nokia 6 (2018) (Review).
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trenttrendspotter · 8 years ago
Text
Consumerization of Health Technology
Tumblr media
The implications for healthy living, exhibited and discussed at the 2017 Consumer Electronic Show held January 5–8 in Las Vegas, NV, were life-changing. While head-spinning technology was everywhere, the ones that delivered what consumers and professionals perceive they need, are the technologies that will thrive.
It seems like the Internet of things in wellness is leading to the consumerization of healthcare and the medicalization of the consumer.
At a panel entitled “Clamoring for Connectivity: What Consumers and Physicians Need Right Now,” eloquently moderated by Jonathan Melnick of LUX RESEARCH, Olivier Hua, CEO of BewellConnect said, “While consumers are clamoring for connectivity, physicians need edited data that they can trust. Confidence in accuracy is paramount for success in today’s market and both professionals and consumers care about the outcome not the technology, so tangible services need to be provided.”
Here are some of the trends that stood out:
Need some help getting a good night’s sleep?
It has been shown in research studies that a person cannot very accurately report their own sleep quantity or quality. Emfit QS is the world’s first heart rate variability-enabled contactless sleep tracker. It is completely automatic, and installed in the bed under the mattress. When you go to sleep it automatically starts measuring and in the morning, the data is sent to your smartphone, tablet or computer.
What do you do when lying in bed with headphones on is uncomfortable and your partner wants to sleep silently? The ZEEQ Smart Pillow allows you to listen to your favorite music, meditation, audio books, and more as well as wake up to an alarm without disturbing your sleep partner.
Need absolute silence when catching Z’s? Cambridge Sound Management, Inc. offers Quiet Technology sound masking systems. The systems are simple and intelligently designed solutions to the problems of privacy and acoustic distractions and consume less power than a 40 watt light bulb per 180,000 square feet.
Effectively solve a series of your health problems by improving sleep quality and reignite your passion for life with PEGASI Smart Sleep Glasses. Worn while you sleep these glasses can synchronize your biological clock to help get into a sleep routine, shorten the amount of time needed to fall asleep and increase your energy level for higher productivity.
Sleep better and wake easier with help from sleep care innovations by Holi. From sunrise simulators that help you awaken easier to nightlights that help you fall asleep, Holi delivers a line of products that help you get the most out of your sleep.
The Eyes Have It!
VR was the buzz of the show, but technologies that treat the eyes go beyond.
Orcam brings the words to your eyes so you don’t have to strain them.  All you have to do is point at what you want to read. Amazingly, it will also remember faces and objects for you.  Not only is this breakthrough technology giving independence to the blind, it’s making life a little easier for everyone.
While there are technologies that help improve eye health, some technologies are to protect them from harm; mainly from blue lights emanating from most of our devices. Reticare and Eye Just have retina protection from those technologies.
There are also new eye tracking devices to keep track of your health including RightEye and Eyetech, among others.
Narcotic-free Neuroscience  
No one wants to say no to a little help for their stress. New technologies are addressing the neuroscience of performance without meds.
NuCalm is a digital reset button for your nervous system based on biochemistry, neurophysiology, and physics. A combination of topical, ingestible, micro-current stimulation patches behind the ears, noise dampening headphones, and light blocking eye masks will keep your mind from running at 60 miles an hour to 0, in less than 10 minutes.
Magneceutical Health uses MRI technology in the Magnesphere to balance the autonomic nervous system, which calms the fight or flight response we get when we’re stressed.
Hands-Free
No one needs an extra set of hands more than new moms. Freemie is a new hands-free breast pump that gives them back their own hands to get stuff done while they get the nutrients they need to give their babies the best. Freemie is really changing the landscape for new moms everywhere, especially working moms.
Beauty Best
Beauty buffs know collagen is important for good skin. Some take dozens of collagen pills a day or dump scoops of collagen in their smoothies every morning to get the benefits. Apira makes iDERMA to stimulate wrinkle-reducing collagen. This space-age looking mask combines red and infrared lights to stimulate deep cellular regeneration.
The same company has clinically-proven success with iGrow for hair growth. The sleek iGrow helmet increased hair counts of more than 35% after 16 weeks of therapy.
Get More Water
We all try to drink 8 glasses or more a day.  Some days are better than others. The Moikit water bottle will help you meet your quota by tracking what you consume and reminding you to sip more when you need it.
Know What’s in the Air  
Some cities have higher pollution than others. BreezoMeter helps you know what kind of air you’re getting by your location.
It’s not just cities with high smog-ratings that are concerned with air quality. Indoor and outdoor air quality is at risk everywhere and so is our respiratory system if we don’t track what’s in the air we breathe.
I was thrilled to spot the Sparrow which attaches to your phone case and alerts you to harmful air conditions. This can be as standard as having a fire and carbon monoxide detector in your home.
Wear Your Pain Relief
Relieve minor muscular pain, muscular back pain, joint pain and stiffness by stepping into the light with BioCare’s LumiWave®. The infrared light therapy device delivers non-laser infrared light energy deep into injured muscles and joints. It also temporarily increases local blood circulation and relieves muscle spasms and minor sub-acute or chronic pain associated with strains, sprains or arthritis.
Stop taking pills and using creams to get relief from aches and pains and wear Quell. The wearable device uses the body’s natural pain relief responses to “quell” body aches and pains. Worn on the upper calf, Quell uses neural pulses to trigger a natural response that blocks pain signals, leading to widespread pain relief.
I am excited for more Permission-less Innovation to lead to an improved tomorrow!  
– By The Trent Trend Spotter, Nancy Trent 
Featured in Whole Foods Magazine
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