Prasad Pande

  • Global Schottky Barrier Diode Market to Witness Steady Growth

    The schottky barrier diode is named after the German Physicist Walter H. Schottky. The schottky barrier diode can be defined as a type of electronic component with a low forward voltage drop and very fast switching action. Sometimes it is also termed as schottky diode, surface barrier diode, hot carrier diode or hot electron diode. These diodes provide higher switching speeds and better system efficiency as compared to silicon diode due to lower forward voltage requirement. A silicon diode requires 600-700 mV forward voltage, while the schottky diode’s requirement of forward voltage is 150–450 mV.

    Some of the factors driving the global schottky barrier diode market are the significant features of these diodes, such as low forward voltage drop, higher efficiency, low profile surface-mount package, ultra-small, low capacitance, integrated guard ring for stress protection, and few others. Owing to these advance features, schottky barrier diodes provide a wide range of application. Schottky diodes are used in transistor saturation and voltage clamping application due to their higher current density. While germanium diodes have a forward bias voltage of 0.2V, standard silicon diodes have 0.6 V, schottky barrier diode forward voltage drop around 1 mA which ranges between 1.5 V to 0.46 V.

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    Furthermore, schottky barrier diodes are the most efficient choice for high efficiency, and sensitive applications due to their low forward voltage drop. For instance these diodes are used in stand-alone photovoltaic systems to prevent batteries from discharging through solar panels at night. Schottky barrier diodes are also integrated with grid connected systems which contains multiple string connected in parallel, resulting in less energy consumption.  These diodes offer various advantages as compared to regular p-n junction based diodes, when used in diode based sample and hold circuits. For instance, it does not have any minority carrier charge shortage which allows them to switch more quickly, resulting in lower transition time from the sample to the hold step, in a more accurate sample. Schottky diodes are being used as rectifiers in switch mode power suppliers to reduce levels of power consumption. The schottky barrier diodes has shown an emerging growth in electronics, and semiconductor industry. It has been observed that the schottky barrier diode market is gaining momentum owing to the augmenting applications and wide applications across the globe. The factors that are fueling growth of schottky barrier diode market include augmentation in the demands, widening application areas, robust industrialization, increasing awareness level among end users, constant innovations, technological developments, burgeoning applications, urbanization, emerging economies, and growth of electronics sector. Moreover, the manufacturers are implementing different strategies in order to benefit from the significant growth rate of schottky barrier diode market through joint ventures, partnerships, and acquisitions. However, there are some limitations in schottky barrier diodes which are anticipated to hinder the growth of global schottky barrier diode market. The most evident ones are identified to be relatively high reverse leakage current, and low reverse voltage ratings associated with these products. Reverse leakage current increases with the temperature which results in thermal instability. Unless great switching speed is required, these schottky barrier diodes offers limited advantages.

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    The global schottky barrier diode market can be segmented on the basis of packaging type, lead type, application, and geography. Based on packaging type, the global schottky barrier diode market can be categorized into plastic packaging, metal packaging, and glass packaging. Based on lead type, the global market can be bifurcated into high voltage, and low voltage. Based on application, the schottky barrier diode market can be segmented into automotive, consumer electronics, IT and telecommunication, and others. The geographical segment of schottky barrier diode market includes North America, Europe, Asia Pacific, Middle East and Africa, and South America. Among these geographies North America is anticipated to be the dominant schottky barrier diode market during the forecast period due to increasing applications, focused research and development activities, rapid growth of electronic sector, and technological advancements.

    Some of the most prominent players in the global schottky barrier diode market includes NXP Semiconductors, Shanghai WillSemi, Media Data Systems Pte Ltd, PANJIT International Inc, Taiwan Semiconductor, and Infineon Technologies AG.

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    About Us

    Transparency Market Research (TMR) is a global market intelligence company providing business information reports and services. The company’s exclusive blend of quantitative forecasting and trend analysis provides forward-looking insight for thousands of decision makers. TMR’s experienced team of analysts, researchers, and consultants use proprietary data sources and various tools and techniques to gather and analyze information. 

    TMR’s data repository is continuously updated and revised by a team of research experts so that it always reflects the latest trends and information. With extensive research and analysis capabilities, Transparency Market Research employs rigorous primary and secondary research techniques to develop distinctive data sets and research material for business reports.

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  • Global PIN Diode Market Analysis and Value Forecast Snapshot by End-use Industry 2018 - 2026

    A PIN diode is a silicon semiconductor consisting of a highly resistive intrinsic layer between heavily doped P and N type material. The intrinsic layer of the PIN diode is either undoped or virtually undoped and provides the change in properties when compared to a normal PN junction diode. Its wide intrinsic layer makes it an inferior rectifier but highly suitable for photo detectors, attenuators, and high voltage power electronic applications. In forward bias, a PIN diode behaves as a variable resistor and its resistance decreases with forward bias voltage. In reverse bias, it behaves as a variable capacitor until it reaches swept voltage point, after which it works as a constant capacitor. At frequencies, up to 100 MHz, a PIN diode operates as a normal PN junction diode whereas above 100 MHz it behaves as a switch or resistor.

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    Major factor driving the PIN diode market is its rising demand for RF switching applications. Size, cost and speed considerations are making it challenging for electromechanical switches to switch RF power in portable applications. Moreover, the RF switching challenge is rising owing to growing applications to switch the RF signal path to connect and route several, amplifiers, filters, and antennas. Furthermore, this necessity for added switching with superior performance is further growing with the advancement of multiband wireless devices and other advanced technologies, specifically for battery-powered and portable devices. PIN diodes provide certain exclusive advantages such as high speed and isolation potential which makes it a better alternative to other non-mechanical options such as MEMS structures and CMOS switches. Therefore, they are increasingly used for RF switching applications across the world.

    However, since PIN diode has two terminals, the port that is used for the RF signal and the control port used for biasing are the same connection point in the design. Since, the design must allow them to combine at the diode and also keep them secluded from rest of the electric circuit, careful consideration and understanding when evaluating whether to use shunt, series, or combined methods is very essential. Therefore, accessibility of thorough models is required so as to enable highly accurate representations of the PIN diodes and their use in the final circuit design. In spite of this, they are expected to be increasingly used owing to several advantages they offer as compared to the other RF switching alternatives.

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    The PIN diode market can be classified on the basis of product type, mounting type, diode configuration, application, and geography. In terms of product type, the PIN diode market can be segmented into PIN photodiode, RF PIN diode, PIN switch diode, and others. Based on mounting type, the PIN diode market can be segmented into surface mount and through hole. Based on diode configuration, the PIN diode market is classified into common cathode and common anode. On the basis of application, the PIN diode market can be bifurcated into attenuator, high voltage rectifier, RF switch, RF limiter, photo detector and photovoltaic cell, and industrial applications. Based on geography, the PIN diode market can be segmented into North America, Europe, Asia Pacific (APAC), Middle East & Africa (MEA), and South America. North America and Asia Pacific are expected to be highly attractive regions for the PIN diode market owing to the presence of large number of semiconductor manufacturers in these regions.

    Prominent players operating in the PIN Diode market include M/A-COM Technology Solutions Inc., Albis Optoelectronics AG, Cobham plc, Fairchild Semiconductor Corp., GeneSiC Semiconductor Inc., Infineon Technologies AG, Laser Components GmbH, LITEC-LLL GmbH, Micro Commercial Components Corp., Microsemi Corp, NXP Semiconductors N.V., ON Semiconductor Corp, Qorvo, Inc., Renesas Electronics Corporation, Rohm Corporation, Skyworks Solutions, Inc., Toshiba Corporation, and Vishay Intertechnology, Inc.

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    About Us

    Transparency Market Research (TMR) is a global market intelligence company providing business information reports and services. The company’s exclusive blend of quantitative forecasting and trend analysis provides forward-looking insight for thousands of decision makers. TMR’s experienced team of analysts, researchers, and consultants use proprietary data sources and various tools and techniques to gather and analyze information. 

    TMR’s data repository is continuously updated and revised by a team of research experts so that it always reflects the latest trends and information. With extensive research and analysis capabilities, Transparency Market Research employs rigorous primary and secondary research techniques to develop distinctive data sets and research material for business reports.

    Contact    

    Mr.Sudip S
    90 State Street, Suite 700
    Albany, NY 12207
    Tel: +1-518-618-1030
    USA - Canada Toll Free: 866-552-3453
    Email: sales@transparencymarketresearch.com
    Website: https://www.transparencymarketresearch.com


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  • Global Envelope Tracking Chips Market will Reflect Significant Growth Prospects by 2026

    Envelope tracking is one of the power management technology utilized in RF based device that increases energy efficiency, reduces heat dissipation, minimizes power consumption and also boosts the battery life. Envelope tracking is a fast power supply technique as it helps to improve the energy efficiency of RF (radio frequency) power amplifier devices. In this method, the power supply input is constantly changing with respect to the envelope of the input power. Envelope tracking is the one of the most appropriate technique that is used to improve the efficiency of wireless power amplifiers. The Wi-Fi RF power amplifiers usually achieve less energy efficiency. The current consumption can be reduced by almost 75% with the application of high bandwidth envelope tracking solutions. For battery life and thermal efficiency in consumer electronics products such as smart phones or tablets, co-design is even more important and envelope tracking is the appropriate technique to design such products.

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    Rising insistence for consumer electronics products, current technological developments in envelope tracking chips, magnificent investments in power management technologies as well as increase adaption of advance technologies in the field of telecommunication sector are some of the major factors driving the growth of global envelope tracking chips market. While designing the ET module the architecture is very complex and usually high bandwidth is required compared to the conventional RF channel. One of the major drawback of envelope tracking is that its efficiency quickly increases at higher data rates. These are some of the factors hampering the growth of envelope tracking chips market. In recent times, the major companies are developing envelope tracking power supply chips. Such chips will help to reduce the power consumption in 4G LTE multi-mode and 3G, multi-band RF power amplifiers that used in smartphones and tablets. Various steps are being taken by many companies to enhance their R & D activities in order to introduce new innovations in this field in order to gain competitive advantage over its peer.

    Globally, the envelope tracking chips market is segmented on the basis of technology, application, industry vertical and region. On the basis of technology, the envelope tracking chips market is segmented into satellite communication, wireless communications and cellular communications. Wireless communications is further bifurcated into Zigbee, Bluetooth and other wireless communication mediums. Cellular communications is further segmented into 3G/ WCDMA, 4G/ LTE and other cellular communications. On the basis of industry vertical, the global envelope tracking chips market is segmented into telecommunications, healthcare, consumer electronics, defense, automotive and others. On the basis of application, the envelope tracking chips market is segmented into smart phones, tablets, IoT Devices (M2M), wearable devices, GPS tracking devices, base stations, tactical radios, connected home devices as well as other applications. Smart phones segment will hold the major envelope tracking chips market share due to the emergence of new technologies including 5G. Such chips are also used in feature phones as well as wireless network enabled surveillance system (WNESS).

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    Geographically, the global envelope tracking chips market can be bifurcated into North America, Europe, Asia-Pacific, Latin America and Middle East & Africa. North America is expected to dominate the envelope tracking chips market.

    Some of the key players operating in the global envelope tracking chips market are Qualcomm, Inc., Texas Instruments Inc., TriQuint Semiconductor, Samsung Electronics Co., Ltd., R2 Semiconductor, Analog Devices, Inc., Maxim Integrated, Linear Technology Corporation, Artesyn Embedded Technologies Inc., Skyworks Solutions, Inc., Qorvo and Efficient Power Conversion Corporation among others. These prominent players present in envelope tracking chips market are continuously engaged in evolving technologies that would help to develop efficient and reliable envelope tracking chips.

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    About Us

    Transparency Market Research (TMR) is a global market intelligence company providing business information reports and services. The company’s exclusive blend of quantitative forecasting and trend analysis provides forward-looking insight for thousands of decision makers. TMR’s experienced team of analysts, researchers, and consultants use proprietary data sources and various tools and techniques to gather and analyze information. 

    TMR’s data repository is continuously updated and revised by a team of research experts so that it always reflects the latest trends and information. With extensive research and analysis capabilities, Transparency Market Research employs rigorous primary and secondary research techniques to develop distinctive data sets and research material for business reports.

    Contact    

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    90 State Street, Suite 700
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    Tel: +1-518-618-1030
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  • New Report Shares Details about Global DC Electronic Load Market Analysis and Forecast 2026

    Electronic loads are used in a variety of tests, containing battery tests and power supply tests. Common ways to use an electronic load is constant current (CC) mode and constant voltage (CV) mode. As technology is constantly evolving, demands for quality test instruments rising due to the need for making better and precise measurements to accommodate newer technologies. For most electronic applications currently, using reliable power sources and energy efficient is critical. For this reason, it is essential to have a test instrument that can precisely portray results that explain the performance of the power sources used to offer electricity for devices such as electrical vehicles, computer power supplies, 3G cellular, among others.

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    Rising spotlight on new methodologies for power conservation, requirement for power reduction engineering and requirement for higher productivity are a part of the significant factors driving the development of global DC electronic load market. Gradual advancement in energy storage technology leads to significant cost reduction and enhances the efficiency of DC electronic load system. This, in turn, is likely to boost its demand in the DC electronic load market during the forecast period. The considerable complexity in regulation for setting up proper system is estimated to restrain the potential growth prospect of the DC electronic load market during the forecast period. During round trip inefficiencies considerable amount of energy is lost and this factors hinder the expansion potential of the DC electronic load market. In DC electronic load, battery storage system allows integration of renewable energy and fossil fuel sources. This system utilizes intermittent energy, which is projected to offer a growth opportunity for the market during the forecast period.

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    The DC electronic load market is segmented on the basis of type, application, industry vertical, and geographical region. On the basis of type, the DC electronic load market is segmented into high voltage electronic load and low voltage electronic load. By application, DC electronic load market can be segmented into car batteries, DC charging pile, server power, electricity for devices such as electrical vehicles, computer power supplies, 3G cellular phones, and even consumer standard household batteries. In support of industry vertical the global DC electronic load market is subdivided into automotive, aerospace, heavy industries, rail and shipping, defense, consumer electronics, transportation and others. Rapid industrialization and growing demand in automotive, aerospace & defense industry, and heavy machineries have propelled the growth in this segment. The transportation application segment held dominant share of the DC electronic load market due to increasing utilization of batteries in battery driven cars and plug-in hybrid electric vehicles. By geographical region, the global DC electronic load market is split up into North America, Europe, Asia Pacific, Middle East & Africa and South America. Rapid development in emerging economies such as China and India as well as growth in the automotive industry and increase in production in industries such as consumer electronic and heavy machinery will support the growth of the market over the forecast period.

    Mergers & acquisitions, new product launches, investments, and partnerships & developments are the key policies adopted by market players to ensure their growth in the DC electronic load market. The key players are B&K Precision Corporation (California, U.S), Keysight Technologies (California, U.S), Chroma Systems Solutions, Inc. (Canada), Tektronix (U.S.), CHROMA ATE INC. (Taiwan), Good Will Instrument Co., Ltd (Taiwan), NFcorp (Malaysia), Kikusui Electronics Corporation (Japan) , AMETEK, Inc.(U.S), HOCHERL & HACKL GMBH (Germany), Unicorn, Maynuo Electronic Co.,Ltd (China), Ainuo Instrument Co.,Ltd (China), Dahua Electronic (China), Array Electronic Co.,Ltd (China), Hangzhou Weibo Technology Co.,Ltd (China), Texas Instruments, FDK Corporation, TDK-Lambda Corporation, General Electric, Artesyn Embedded Technologies, Ericsson, and Cosel Co.,Ltd, among others.

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    About Us

    Transparency Market Research (TMR) is a global market intelligence company providing business information reports and services. The company’s exclusive blend of quantitative forecasting and trend analysis provides forward-looking insight for thousands of decision makers. TMR’s experienced team of analysts, researchers, and consultants use proprietary data sources and various tools and techniques to gather and analyze information. 

    TMR’s data repository is continuously updated and revised by a team of research experts so that it always reflects the latest trends and information. With extensive research and analysis capabilities, Transparency Market Research employs rigorous primary and secondary research techniques to develop distinctive data sets and research material for business reports.

    Contact    

    Mr.Sudip S
    90 State Street, Suite 700
    Albany, NY 12207
    Tel: +1-518-618-1030
    USA - Canada Toll Free: 866-552-3453
    Email: sales@transparencymarketresearch.com
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  • Global High Voltage Circuit Breaker Market to Witness a Pronounce Growth During 2015 to 2023

    A circuit breaker is a mechanical switching device which is capable of making, carrying as well as breaking currents under normal circuit conditions. It is also capable of making and carrying currents for a specified time and breaking currents under specified abnormal circuit conditions, such as those of a short circuit. Electrical power transmission networks are protected and controlled by high voltage circuit breaker inside electrical grid substation. Unlike a fuse, which operates once and then must be replaced, a circuit breaker can be reset either manually or automatically in order to resume normal operation. Such circuit breakers also act as good conductors in closed position and good insulators in open position. High-voltage breakers are mostly solenoid-operated, with current sensing protective relays operated through current transformers. High voltage circuit breakers are those that are applied or that have a rating of 1000 volts or more. Such circuit breakers can be used for either indoor or outdoor applications. Circuit breakers are manufactured in varying sizes, from small devices that protect an individual household appliance up to large switchgear designed to protect high voltage circuits feeding an entire city. High voltage circuit breakers are further subdivided in to transmission class breakers which are rated as 123KV and above and distribution or medium voltage class that is lesser than 72KV circuit breakers. Such circuit breakers don’t generate over voltages at the time of switching.

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    Global High Voltage Circuit Breaker Market: Drivers and Restraints

    Advancement of power system, need to  lower the  current quickly without generating an abnormal voltage, significant developments in high voltage transmission systems, increase in demand for high quality products and meeting of environmental requirements  are some of the primary factors driving the growth of global high voltage circuit breaker market. High production cost along with higher prices are some of the factors hampering the growth of high voltage circuit breaker market. Efforts are being taken by many companies to upgrade their research and development activities to introduce innovations in this field.

    Global High Voltage Circuit Breaker Market: Key Segments

    The global high voltage circuit breaker market is segmented on the basis of product type, application and region. On the basis of product type, the high voltage circuit breaker market is segmented into high-voltage vacuum circuit breaker, sulfur hexafluoride circuit breakers, air high voltage circuit breaker, oil high voltage circuit breaker and others. High-voltage vacuum circuit breaker is also used as a high voltage control switch. Vacuum circuit breakers usually offer many advantages as compared to other types of circuit breakers. SF6 circuit breakers are mostly used in indoor type primary sub stations. In high voltage circuit breaker oil is used, but mineral oil is preferable. It acts as a better insulating property than air. On the basis of application, the global high voltage circuit breaker market is segmented into construction, transportation, power generation and others. High voltage circuit breakers are very important for the function of modern electric power supply systems. They are also used in overhead transmission line switching, shunt reactor switching, transformer switching and generator switching. In addition, other different applications of high voltage circuit-breakers are small inductive current interruption, capacitive current interruption, short-line fault interruption and generator protection. Geographically, the high voltage circuit breaker market can be segmented into North America, Europe, Asia-Pacific, South America and Middle East & Africa.

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    Global High Voltage Circuit Breaker Market: Key Players

    Some of the key players operating in the global high voltage circuit breaker market are ABB Ltd, GE Grid Solutions, Schneider Electric SE, Mitsubishi Electric Corporation, Siemens AG, Eaton Corporation, Hitachi, Ltd., Toshiba Corporation, Shandong Taikai High-Volt Switchgear Co. Ltd and Xiamen Huadian Switchgear Co. Ltd among others.

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    About Us

    Transparency Market Research (TMR) is a global market intelligence company providing business information reports and services. The company’s exclusive blend of quantitative forecasting and trend analysis provides forward-looking insight for thousands of decision makers. TMR’s experienced team of analysts, researchers, and consultants use proprietary data sources and various tools and techniques to gather and analyze information. 

    TMR’s data repository is continuously updated and revised by a team of research experts so that it always reflects the latest trends and information. With extensive research and analysis capabilities, Transparency Market Research employs rigorous primary and secondary research techniques to develop distinctive data sets and research material for business reports.

    Contact    

    Mr.Sudip S
    90 State Street, Suite 700
    Albany, NY 12207
    Tel: +1-518-618-1030
    USA - Canada Toll Free: 866-552-3453
    Email: sales@transparencymarketresearch.com
    Website: https://www.transparencymarketresearch.com


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