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thecomponentsstore · 2 years
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Top Qualities To Look For In Your Instruments
It might be hard to tell whether you are purchasing a high-quality instrument when you purchase in-person or online. It might be difficult to decide which brands and models are best with the variety of options available. Professionals Philips wholesale distributors will show you how to recognise high-quality equipment on the market in this post. Everything from reading the reviews to looking for structural flaws will be covered. Additionally, they will provide you some advice on how to find the greatest bargain on a tool that suits your requirements. Therefore, be prepared to read this post before visiting a music store.
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Read evaluations
Reading reviews from Texas instruments distributor is another excellent technique to decide whether equipment is worth your money. Users may post reviews on musical instruments on a variety of websites. When you're attempting to decide on an instrument, these evaluations might be immensely useful.
Online Manuals
Digital resources are also available to assist you to make the best instrument selection. These books, which are often authored by music professionals, may be an invaluable reference for choosing an instrument.
Concentrate on the points that matter to you when perusing an online manual, and hunt for tools that suit your requirements. Additionally, be certain to read the guide's associated reviews. You may get a fair notion of what other individuals consider of the instrument through this.
Warranty
When purchasing an instrument, it's critical to confirm whether the manufacturer gives a guarantee. This will safeguard you in the event that the instrument develops any issues. Most of the high-quality equipment manufacturers will provide some kind of guarantee. These warranties often run for a year or more and cover things like flaws in the materials and workmanship. But before you buy an instrument, it's usually a better idea to read the small print from Texas instruments distributor. Nothing is guaranteed to be covered by the warranty period.
Conclusion
Keeping it short, these are the qualities to look in the components you buy. Visit the Components Store to find reliable components.
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secretofresearch · 10 months
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The Programmable Silicon Market: Unlocking Innovation and Flexibility
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Market Overview:
The global Programmable Silicon Market is estimated to be valued at US$91.13 billion in 2023 and is expected to exhibit a CAGR of 12.5% from 2023 to 2030, as highlighted in a new report published by Coherent Market Insights. Programmable silicon refers to the technology of using programmable devices such as FPGA (Field-Programmable Gate Array) and CPLD (Complex Programmable Logic Device) to implement digital circuits. These devices offer flexibility, adaptability, and reprogrammability, allowing designers to make changes to the circuit design without going through complicated and costly fabrication processes. The market for programmable silicon is driven by the need for customization, rapid prototyping, and optimized performance across a wide range of industries including telecommunications, automotive, consumer electronics, and aerospace.
Market Key Trends:
One key trend in the Programmable Silicon Market is the increasing demand for Artificial Intelligence (AI) and Machine Learning (ML)-driven applications. With the exponential growth of data and the need for real-time processing, AI and ML algorithms require efficient and flexible hardware acceleration. Programmable silicon devices, such as FPGAs, offer the ability to implement custom hardware accelerators that can greatly speed up AI and ML workloads. For example, Xilinx, a major player in the market, provides AI-optimized FPGAs that deliver exceptional performance for AI inference and training applications.
Porter’s Analysis:
Threat of new entrants: The market for programmable silicon has high entry barriers due to the requirement for specialized design expertise and significant investment in research and development. Established players have a strong foothold in the market, which makes it challenging for new entrants to gain market share.
Bargaining power of buyers: As programmable silicon devices are often used for complex and customized applications, buyers have limited bargaining power. They rely on suppliers for technical support, product reliability, and competitive pricing.
Bargaining power of suppliers: Programmable silicon manufacturers have multiple options for sourcing components and materials, which reduces the bargaining power of individual suppliers. Additionally, as the market is dominated by a few major players, suppliers must compete for business and meet the high-quality standards set by these companies.
Threat of new substitutes: The threat of new substitutes in the programmable silicon market is relatively low. Programmable devices offer unique advantages in terms of flexibility and adaptability compared to fixed-function integrated circuits. While custom ASICs (Application-Specific Integrated Circuits) can provide higher performance, they lack the flexibility and time-to-market advantages of programmable silicon.
Competitive rivalry: The market for programmable silicon is highly competitive, with major players such as Xilinx (part of Advanced Micro Devices Inc.), Intel Corporation (formerly Altera), and Lattice Semiconductor Corporation dominating the market. These companies invest heavily in research and development to stay ahead of the competition and offer highly specialized products for various applications.
Key Takeaways:
The Global Programmable Silicon Market Size is expected to witness high growth, exhibiting a CAGR of 12.5% over the forecast period. This growth is driven by increasing demand for customization, rapid prototyping, and optimized performance across various industries.
In terms of regional analysis, Asia Pacific is expected to be the fastest-growing and dominating region in the programmable silicon market. The region is witnessing rapid industrialization, technological advancements, and increased adoption of programmable silicon devices in sectors such as automotive, consumer electronics, and telecommunications.
Key players operating in the global programmable silicon market include Xilinx (part of Advanced Micro Devices Inc.), Intel Corporation (formerly Altera), Lattice Semiconductor Corporation, Microchip Technology Inc., and Achronix Semiconductor Corporation. These players have established themselves as industry leaders by providing innovative solutions, investing in research and development, and catering to the diverse needs of customers.
In conclusion, the programmable silicon market enables innovation and flexibility in the design and implementation of digital circuits across various industries. With AI and ML applications driving the demand for high-performance hardware acceleration, programmable silicon devices are poised to play a crucial role in accelerating technological advancements and meeting the evolving needs of the market.
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lookmcu · 2 years
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Shenzhen Jini Trading Co., Ltd.
Shenzhen Jini Trading Co., Ltd. is a first-class agent of SLKOR, a professional electronic component supplier, and has rich experience in IC chip sales. The company mainly deals in SLKOR,  ALTERA, Adi,  XILINX, ST, TI, CYPRESS, PANASONIC, INFINEON, DIODES, Atmel, NXP,ON and many electronic component brands.
The company takes "credibility for development, customer first" as its business philosophy, adhering to the tenet of "quality first, reasonable price, service first", and wholeheartedly provides our customers with high-quality preferential products and the most thoughtful service. Since its establishment, the company has been committed to the promotion and sales of famous brand electronic products from all over the world at home and abroad, and we look forward to working with you to create a better future! ! !
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We sell only new and original items! Welcome to contact for details! Skype: +86-13160667364 WhatsApp: +86-13160667364 Email: [email protected]
Website: http://www.lookmcu.com
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GreenTree Electronics -Leading supplier and distributor of obsolete electronic component
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GreenTree Electronics LTD. is a distributor and supplier of obsolete electronic components. GreenTree Electronics has worked for more than 20 years in the electronic industry and provides a unique solution to tier-1 OEMs and CMs. They are particularly known for providing reliable, authenticated, and genuine obsolete electronic products.
Obsolete electronics refers to the electronic components that have crossed their life span and are of no use but a waste for manufacturers. Green Tree Electronics is a distributor of obsolete electronics with electronic component testing service. They also perform quality inspection and additional services to many industries globally like medical, industrial, defense, and consumer applications. GreenTree Electronics is an obsolete electronic distributor with a service license agreement with white horse laboratories for different types of testing that includes soldering, electrical and functional testing, anti-static vacuum packing, baking, re-reeling, and more.
Any component becomes an obsolete electronic component when it is replaced or discarded by newly introduced technology. This leads to re-design with modifications. GreenTree Electronics provides electronic components with authentication reports under customers’ testing requirements document.
GreenTree electronics deals with leading manufacturers of different obsolete electronic products like FPGA, Integrated Circuits, Memories, and Electro Mechanic. Some of those manufacturers are XILINX, ALTERA, LATTICE, Microsemi, intel, Freescale, Samsung, ISSI, Toshiba and Panasonic, etc.
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precisionlogictech · 3 years
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bdelectronics · 3 years
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Altera | BD Electronics
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Intel and Altera introduced on June 1, 2015, that they had entered right into a definitive settlement beneath which Intel would purchase Altera. The transaction closed on December 28, 2015.
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The acquisition {couples} Intel’s modern products and manufacturing course with Altera’s main field-programmable gate array (FPGA) expertise. The mix allows new courses of merchandise that meet buyer wants within the information center and Internet of Things (IoT) market segments.
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Altera was founded in 1983 by Robert Hartmann, Michael Magranet, Paul Newhagen, and Jim Sansbury. Research into the semiconductor business Altera expanded its expertise management in 1988 with the product-term-based MAX structure and, in 1992, with the lookup table (LUT)-based FLEX® architecture. Altera pioneered the system-on-a-programmable-chip (SOPC) period with the latest introduction of newer, extra highly effective, and environment-friendly architectures, the Quartus II improvement system, and an intensive IP providing.
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For more information, you may visit our website: here
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loadingod697 · 3 years
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Fargo Dtc4000 Driver Download
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Download: Fargo DTC4000 Driver, Firmware & User Manual Download the latest Fargo DTC4000 driver, firmware, user manual, and workbench to optimize your card printer performance and the quality of your printed cards. You can always turn to ID Wholesaler for help! Have been trying to install our card printer, Fargo Persona C30e on there. The C30e only has drivers available for upto Windows 7. But I am able to successfully install the driver. But the printer only shows up in 'Connected Devices' but not in 'Printers and Scanners'. All new Driver and Firmware versions for all new and old Printers by HID Global, Zebra, Evolis, Nisca, Datacard and YouCard - for Windows, Linux and Mac. Drivers and Firmware Here can you find all driver and firmware updates for your HID FARGO, SwiftColor, Zebra, Nisca, Evolis or Datacard card printer. Updating Firmware on a DTC4000. Keeping your ID card printer’s firmware up to date can help you prevent problems with printing. Please Note: The Fargo DTC4000 has been discontinued by the manufacturer.
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FARGO DTC1000 CARD PRINTER DRIVER (fargo_dtc1000_4561.zip)
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Version1.0Download383Stock25Total Files20Size138.61 KBCreate DateJanuary 21, 2015Last UpdatedFebruary 18, 2015
Welcome to the downloads for Fargo Card Printers page. In order to update the firmware, you will need to download and install the Fargo Workbench.
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shunlongwei · 3 years
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Xilinx Https://www.slw-ele.com; Email: [email protected]
xilinx
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https://en.wikipedia.org/wiki/Xilinx Xilinx, Inc. (/ˈzaɪlɪŋks/ ZY-links) is an American technology company and is primarily a supplier of programmable logic devices. It is known for inventing the Field-programmable gate array (FPGA) and as the semiconductor company that created the first fabless manufacturing model.
Expansion
As demand for programmable logic continued to grow, so did Xilinx's revenues and profits.
  From 1988 to 1990, the company's revenue grew each year, from $30 million to $50 million to $100 million. During this time, the company which had been providing funding to Xilinx, Monolithic Memories Inc. (MMI), was purchased by Xilinx competitor AMD. As a result, Xilinx dissolved the deal with MMI and went public on the NASDAQ in 1989. The company also moved to a 144,000-square-foot (13,400 m2) plant in San Jose, California in order to keep pace with demand from companies like HP, Apple Inc., IBM and Sun Microsystems who were buying large quantities from Xilinx.
  Other FPGA makers emerged in the mid-1990s. Still, Xilinx's sales grew to $135 million in 1991, $178 million in 1992 and $250 million in 1993.
  The company reached $550 million in revenue in 1995, one decade after having sold its first product.
  According to market research firm iSuppli, Xilinx has held the lead in programmable logic device market share since the late 1990s. Over the years, Xilinx expanded operations to India, Asia and Europe.
  Xilinx's sales rose from $560 million in 1996 to $2.53 billion by the end of its fiscal year 2018. Moshe Gavrielov – an EDA and ASIC industry veteran who was appointed president and CEO in early 2008 – introduced targeted design platforms that combine FPGAs with software, IP cores, boards and kits to address focused target applications. These targeted design platforms are an alternative to costly application-specific integrated circuits (ASICs) and application-specific standard products (ASSPs).
  On January 4, 2018, Victor Peng, company's COO, replaced Gavrielov as CEO
Company overview
Xilinx was founded in Silicon Valley in 1984 and headquartered in San Jose, USA, with additional offices in Longmont, USA; Dublin, Ireland; Singapore; Hyderabad, India; Beijing, China; Shanghai, China; Brisbane, Australia and Tokyo, Japan.
  According to Bill Carter, a fellow at Xilinx, the choice of the name Xilinx refers to the chemical symbol for silicon Si. The 'X's at each end represent programmable logic blocks. The "linx" represents programmable links that connect the logic blocks together.
  Xilinx customers represent just over half of the entire programmable logic market, at 51%. altera (now intel ) is Xilinx's strongest competitor with 34% of the market. Other key players in this market are Actel (now Microsemi), and Lattice Semiconductor.
  Technology
  The Spartan-3 platform was the industry’s first 90nm FPGA, delivering more functionality and bandwidth per dollar than was previously possible, setting new standards in the programmable logic industry.
Xilinx designs, develops and markets programmable logic products, including integrated circuits (ics), software design tools, predefined system functions delivered as intellectual property (IP) cores, design services, customer training, field engineering and technical support. Xilinx sells both FPGAs and CPLDs for electronic equipment manufacturers in end markets such as communications, industrial, consumer, automotive and data processing.
  Xilinx's FPGAs have been used for the ALICE (A Large Ion Collider Experiment) at the CERN European laboratory on the French-Swiss border to map and disentangle the trajectories of thousands of subatomic particles. Xilinx has also engaged in a partnership with the United States Air Force Research Laboratory’s Space Vehicles Directorate to develop FPGAs to withstand the damaging effects of radiation in space, which are 1,000 times less sensitive to space radiation than the commercial equivalent, for deployment in new satellites.
  The Virtex-II Pro, Virtex-4, Virtex-5, and Virtex-6 FPGA families, which include up to two embedded IBM PowerPC cores, are targeted to the needs of system-on-chip (SoC) designers.
  Xilinx FPGAs can run a regular embedded OS (such as Linux or vxWorks) and can implement processor peripherals in programmable logic.
  Xilinx's IP cores include IP for simple functions (BCD encoders, counters, etc.), for domain specific cores (digital signal processing, FFT and FIR cores) to complex systems (multi-gigabit networking cores, the MicroBlaze soft microprocessor and the compact Picoblaze Microcontroller). Xilinx also creates custom cores for a fee.
  The main design toolkit Xilinx provides engineers is the Vivado Design Suite, an integrated design environment (IDE) with a system-to-IC level tools built on a shared scalable data model and a common debug environment. Vivado includes electronic system level (ESL) design tools for synthesizing and verifying C-based algorithmic IP; standards based packaging of both algorithmic and RTL IP for reuse; standards based IP stitching and systems integration of all types of system building blocks; and the verification of blocks and systems. A free version WebPACK Edition of Vivado provides designers with a limited version of the design environment.
  Xilinx's Embedded Developer's Kit (EDK) supports the embedded PowerPC 405 and 440 cores (in Virtex-II Pro and some Virtex-4 and -5 chips) and the Microblaze core. Xilinx's System Generator for DSP implements DSP designs on Xilinx FPGAs. A freeware version of its EDA software called ISE WebPACK is used with some of its non-high-performance chips. Xilinx is the only (as of 2007) FPGA vendor to distribute a native Linux freeware synthesis toolchain.
  Xilinx announced the architecture for a new ARM Cortex-A9-based platform for embedded systems designers, that combines the software programmability of an embedded processor with the hardware flexibility of an FPGA. The new architecture abstracts much of the hardware burden away from the embedded software developers' point of view, giving them an unprecedented level of control in the development process. With this platform, software developers can leverage their existing system code based on ARM technology and utilize vast off-the-shelf open-source and commercially available software component libraries. Because the system boots an OS at reset, software development can get under way quickly within familiar development and debug environments using tools such as ARM's RealView development suite and related third-party tools, Eclipse-based IDEs, GNU, the Xilinx Software Development Kit and others.In early 2011, Xilinx began shipping a new device family based on this architecture. The Zynq-7000 SoC platform immerses ARM multi-cores, programmable logic fabric, DSP data paths, memories and I/O functions in a dense and configurable mesh of interconnect. The platform targets embedded designers working on market applications that require multi-functionality and real-time responsiveness, such as automotive driver assistance, intelligent video surveillance, industrial automation, aerospace and defense, and next-generation wireless.
  Following the introduction of its 28 nm 7-series FPGAs, Xilinx revealed that several of the highest-density parts in those FPGA product lines will be constructed using multiple dies in one package, employing technology developed for 3D construction and stacked-die assemblies. The company’s stacked silicon interconnect (SSI) technology stacks several (three or four) active FPGA dies side-by-side on a silicon interposer – a single piece of silicon that carries passive interconnect. The individual FPGA dies are conventional, and are flip-chip mounted by microbumps on to the interposer. The interposer provides direct interconnect between the FPGA dies, with no need for transceiver technologies such as high-speed SERDES. In October 2011, Xilinx shipped the first FPGA to use the new technology, the Virtex-7 2000T FPGA, which includes 6.8 billion transistors and 20 million ASIC gates. The following spring, Xilinx used 3D technology to ship the Virtex-7 HT, the industry’s first heterogeneous FPGAs, which combine high bandwidth FPGAs with a maximum of sixteen 28 Gbit/s and seventy-two 13.1 Gbit/s transceivers to reduce power and size requirements for key Nx100G and 400G line card applications and functions.
  In January 2011, Xilinx acquired design tool firm AutoESL Design Technologies and added System C high-level design for its 6- and 7-series FPGA families.The addition of AutoESL tools extends the design community for FPGAs to designers more accustomed to designing at a higher level of abstraction using C, C++ and System C.
  In April 2012, Xilinx introduced a revised version of its toolset for programmable systems, called Vivado Design Suite. This IP and system-centric design software supports newer high capacity devices, and speeds the design of programmable logic and I/O. Vivado provides faster integration and implementation for programmable systems into devices with 3D stacked silicon interconnect technology, ARM processing systems, analog mixed signal (AMS), and many semiconductor intellectual property (IP) cores.
  Xilinx began his journey with the Reconfigurable Acceleration Stack technology in the late 2016. The company was providing software and IP blocks to accelerate Machine Learning and other datacenter apps. Xilinx's goal was to reduce the barriers to adoption of FPGAs for accelerated compute-intensive datacenter workloads.
  Family lines of products
  CPLD Xilinx XC9536XL
Prior to 2010, Xilinx offered two main FPGA families: the high-performance Virtex series and the high-volume Spartan series, with a cheaper EasyPath option for ramping to volume production. The company also provides two CPLD lines: the CoolRunner and the 9500 series. Each model series has been released in multiple generations since its launch. With the introduction of its 28 nm FPGAs in June 2010, Xilinx replaced the high-volume Spartan family with the Kintex family and the low-cost Artix family.
  In newer FPGA products, Xilinx minimizes total power consumption by the adoption of a High-K Metal Gate (HKMG) process, which allows for low static power consumption. At the 28 nm node, static power is a significant portion of the total power dissipation of a device and in some cases is the dominant factor. Through the use of a HKMG process, Xilinx has reduced power use while increasing logic capacity. Virtex-6 and Spartan-6 FPGA families are said to consume 50 percent less power, and have up to twice the logic capacity compared to the previous generation of Xilinx FPGAs.
  In June, 2010 Xilinx introduced the Xilinx 7 series: the Virtex-7, Kintex-7, and Artix-7 families, promising improvements in system power, performance, capacity, and price. These new FPGA families are manufactured using TSMC's 28 nm HKMG process. The 28 nm series 7 devices feature a 50 percent power reduction compared to the company's 40 nm devices and offer capacity of up to 2 million logic cells. Less than one year after announcing the 7 series 28 nm FPGAs, Xilinx shipped the world’s first 28 nm FPGA device, the Kintex-7, making this the programmable industry’s fastest product rollout. In March 2011, Xilinx introduced the Zynq-7000 family, which integrates a complete ARM Cortex-A9 MPCore processor-based system on a 28 nm FPGA for system architects and embedded software developers. In May 2017, Xilinx expanded the 7 Series with the production of the Spartan-7 family.
  In Dec, 2013, Xilinx introduced the UltraScale series: Virtex UltraScale and Kintex UltraScale families. These new FPGA families are manufactured by TSMC in its 20 nm planar process. At the same time it announced an UltraScale SoC architecture, called Zynq UltraScale+ MPSoC, in TSMC 16 nm FinFET process.
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daniel1244martinez · 6 years
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Automotive Electronics Market
Summary
Automotive Electronics Market research report will help you take informed decisions, understand opportunities, plan effective business strategies, plan new projects, analyse drivers and restraints and give you a vision on the Automotive Electronics Market forecast. Report is an expert and extensive research report on the major regional market conditions, focusing on the United States, China, Europe, Japan, Southeast Asia, and India regions.
The research report studies the Automotive Electronics market research report 2018 market on the basis of several criteria, including type, application, and geography to provide a better understanding to the readers. The overall supply chain of the market has been explained in detail, which includes statistical information and special emphasis on various upstream and downstream elements.
The report also sheds light on the current trends related to the demand, supply, and sales of Automotive Electronics market research report 2018, along with the recent developments in the field. The report includes tools such as Porter’s five force analysis and market attractiveness analysis. Through those tools, the report sheds light on the bargaining power of buyers, bargaining power of suppliers, threat of new entrants, threat of substitutes, degree of competition, and measure of the potential of each regional market.
Get 15 minutes of free Consultation When you request a Sample Report! Download PDF Brochure @ http://garnerinsights.com/Asia-Pacific-Automotive-Electronics-Market-Report-2018#request-sample
The research report takes into consideration the drivers, restraints, trends, and opportunities of the  Automotive Electronics market research report 2018 market in order to identify the future of the market. The report also provides an estimation of the overall market size in terms of both value and volume and offers qualitative and quantitative insights into the key segments and the geographical subdivisions of the Automotive Electronics market research report 2018 market. It also provides a comprehensive study of the development trends and government regulations and policies in each of the geography. According to the report, equipment and raw material are two primary components of the manufacturing process of Automotive Electronics market research report 2018.
Market Segmentation: Automotive Electronics
Some of the major players involved in the research and development of Automotive Electronics market are;       
Robert Bosch, Denso, ZF Friedrichshafen, Continental AG, Panasonic Corporatio, Intel Corporation, Aisin Seiki, Alpine, Altera, ARC Vehicle, Atmel Corporation, Audiovox Corp., Autoliv, AutoNavi, Avago Technologies, Chery Cloudrive, China TSP, Daicel, Delphi Automotive, DEPO, DIAS Automotive Electronic Systems Co., Ltd, Dongfeng Citroen Citroen Connect, Magna, Magneti Marelli, Mercedes-Benz CONNECT, Mobis, Nanjing Top Sun Technology Co., Ltd, Tokai Rika, Toyoda Gosei.
This report displays the sales volume, revenue, product price, market share and growth rate of each type, primarily split into
Engine Controls, Ignition System Controls, Fuel Injection System Controls, Transmission System Controls, Other Automotive Electronics.
This report focuses on the status and outlook for major applications/end users, sales volume, market share and growth rate for each application, including
Passenger Cars, Commercial Vehicles.
Browse Detailed TOC, Tables, Figures, Charts and Companies Mentioned in Automotive Electronics Market Research Report @ http://garnerinsights.com/Asia-Pacific-Automotive-Electronics-Market-Report-2018
Table of Contents:
Chapter 1, to describe Definition, Specifications and Classification of Automotive Electronics, Applications of Automotive Electronics, Market Segment by Regions;
Chapter 2, to analyze the Manufacturing Cost Structure, Raw Material and Suppliers, Manufacturing Process, Industry Chain Structure;
Chapter 3, to display the Technical Data and Manufacturing Plants Analysis of Automotive Electronics, Capacity and Commercial Production Date, Manufacturing Plants Distribution, R&D Status and Technology Source, Raw Materials Sources Analysis;
Chapter 4, to show the Overall Market Analysis, Capacity Analysis (Company Segment), Sales Analysis (Company Segment), Sales Price Analysis (Company Segment);
Chapter 5 and 6, to show the Regional Market Analysis, Automotive Electronics Segment Market Analysis (by Type);
Chapter 7 and 8, to analyze the Automotive Electronics Segment Market Analysis (by Application) Major Manufacturers Analysis of Automotive Electronics;
Chapter 9, Market Trend Analysis, Regional Market Trend, Market Trend by Product Type, Market Trend by Application;
Chapter 10, Regional Marketing Type Analysis, International Trade Type Analysis, Supply Chain Analysis;
Chapter 11, to analyze the Consumers Analysis of Automotive Electronics;
Chapter 12, 13, 14, 15 and 16, to describe Automotive Electronics sales channel, distributors, traders, dealers, Research Findings and Conclusion, appendix and data source, disclaimer.  
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chitrakullkarni · 4 years
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Embedded System Market Manufacturing Cost Structure | SWOT Analysis | Company Snapshot
The global Embedded System Market research report provides complete insights on industry scope, global trends, regional estimates, key application, competitive landscape and financial performance of prominent players. It also offers ready, data-driven answers to several industry-level questions. This study enables numerous opportunities for the market players to invest in research and development.
Market Overview:
In 2013, the Embedded System Market was valued USD 140.32 billion and is predicted to reach USD 214.39 billion by 2020 growing at CAGR of 6.3% from 2014 to 2020. The increased investment in automation technologies and growth in sales of electronic devices are key factors that are expected to drive the market.
Key Players:
Altera Corporation
ARM Holdings
Atmel Corporation
Freescale Semiconductor
Infineon Technologies
Intel Corporation
Microchip Technology
Request free sample to get a complete analysis of top-performing companies @ https://www.millioninsights.com/industry-reports/embedded-system-market/request-sample
Growth Drivers:
The increased investment in automation technologies and growth in sales of electronic devices are key factors that are expected to drive the market. The use of embedded system has increased in many sectors. The Automotive industry is dominating among other industries. Embedded system is application-specific system that ensures accurate and desired functionality. The demand for devices such as smart electric meter is expected to propel the market.
The demand for smart meter has increased due to its capabilities such as sending accurate reading to suppliers and is expected to increase even more in forecast period. Technological advancement and availability of electronic components at low price will have positive impact on market. Embedded system has numerous applications in various fields; as a result the demand for systems is high. Besides, the demand from areas such as healthcare is expected to fuel market in next six years.
Product Outlook:
Embedded Hardware
Embedded Software
Application Outlook:
Automotive
Consumer Electronics
Healthcare
Industrial
Military and Aerospace
Telecommunication
Regional Insights:
In 2013, the North America was largest market and is expected to dominate in forecast period. Asia-pacific is expected to grow at a CAGR of 6.7% from 2014 to 2020. The number of trained professional and Taiwan semiconductor manufacturing company (TSMC) is main reason for growth of industry in the region. The use of java in mobiles in-order to develop different applications and to control NFC will eventually boost the market.
Browse Related Category Research Reports @ https://blog.naver.com/tomclark
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thecomponentsstore · 2 years
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Spansion Semiconductor
Are you searching for Spansion Semiconductor at the best prices? Check Out The Components Store to get Spansion Semiconductor at the lowest prices and purchase your product at the earliest moment. All our products are 100 percent unique from the manufacturer. Learn more.
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jotrin-electronics · 5 years
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Jotrin Electronics is Electronic Components Distributor.
As a world-renowned brand electronic parts supplier, Jotrin Electronics provides customers with high quality and competitive price electronic parts.
Jotrin Electronics Limited was founded in 2006 in Hong Kong, and set up branches in Shenzhen, Jotrin Electronics Limited is professional distributor of electronic components with many years of industry experience.
We help our customer find the electronic components such as integrated circuits, chips, a full range of chip, capacitors, and diodes, transistors etc.
We can sell the parts from famous brands manufacturer such as XILINX, TI, ST, TOSHIBA, MOTOROLA , CYPRESS, VISHAY, AVX, AD, MAXIM, NEC, NS, KEMET, ALTERA, EPCOS, ATMEL, IR, ON, AGILENT, LATTICE, SAMSUNG, HITACHI, NXP, INTERSIL, INFINEON, FAIRCHILD, INTEL, SONY so on.
 Our biggest advantage is that we have a variety of high-profile chips, we have large numbers of chip inventory, which makes us very proud.
Jotrin has established a good cooperative relationship with the manufacturers and world-famous brands from Europe & the US, Southeast Asia, Japan and South Korea.
We have a stable supply chains, 100% quality guarantee, competitive price, fast delivery and perfect after-sales service.
The company is on the basis of equality and mutually beneficial business philosophy, a unique marketing strategies, pragmatic and enterprising spirit, we designed for medium and large enterprises to do perfect supporting services.
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mauli24-blog · 6 years
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According to the market research report “Smart Retail Market by application (Visual Marketing, Smart Label, Smart Payment System, Intelligent System (Intelligent Vending Machine, Smart Cart, AR/VR, Interactive Kiosk), Robotics, Analytics), and Geography – Global Forecast to 2023″, The smart retail market is expected to grow from USD 13.07 billion in 2018 to USD 38.51 billion by 2023, at a CAGR of 24.12% from 2018 to 2023. Major drivers for the market are the increasing adoption of smartphones, growing need for better customer service and shopping experience, decreasing cost of electronic components, and emerging new technologies create new revenues for retailers. The major restraint for the market is data security and privacy concerns with new advanced technologies.
Top 2 players in the smart retail market:
Intel focuses on the proliferation of the market for smart and connected devices and continues toward technological advancements. The company invests in its Internet of Things (IoT) business mainly in growing areas such as smart retail, autonomous vehicle, and industrial segments. The company also focuses on acquisition and strategic investments to stimulate growth in the digital economy, create new business opportunities, and generate financial returns. For example, in 2016, Intel acquired Altera Corporation (US) to combine programmable solutions with Intel’s leading-edge products and manufacturing process to enable new classes of products for data center and the Internet of Things market segments, such as smart retail. Intel has an established position as a supplier of components and software for embedded products specifically for the smart retail market. Intel is also positioned strongly in the next-generation technology development.
Browse 71 market data Tables and 53 Figures spread through 197 Pages and in-depth TOC on “Smart Retail Market – Global Forecast to 2023”
Download PDF Brochure @
https://www.marketsandmarkets.com/pdfdownload.asp
IBM provides cognitive solutions to fulfill the needs of an enterprise and turn vast amount of data into insights and competitive advantage. Watson on the IBM Cloud is accessible to more than 200 million consumers to answer questions, find what they need online, and make recommendations. In December 2017, IBM collaborated with Walmart to ensure transparency in the way food is tracked, transported, and sold to consumers across China and the US.
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express-technology · 6 years
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Get High End Quality Integrated Circuits With Express Technology
When it comes to purchasing quality and affordable integrated circuit, just a few online suppliers can be trusted. However, there are certain online wholesale distributors that have carved a niche among their customers with the offering of their cost-effective electronic components. Whether you want to purchase IDT integrated circuit or Altera integrated circuit, or any other brand’s ICs, these distributors have a comprehensive inventory of quality integrated circuits perfect to manufacture high-end electronic devices.
What to keep in mind while purchasing integrated circuits
If you are looking to purchase superb quality integrated circuits from brands like such as IDT, Altera and more, you first need to do the verification of the identity of the distributor you have picked to purchase your ICs. Remember, when you choose to online purchase IDT or Altera integrated circuits, you may come across many scammers looking for their prey to sell their inferior and cheap quality integrated circuits.
Hence, you have to be cautious enough. The best way to make protect yourself from these online scammers, it will be wise if you conduct a little due diligence so you can find the trustworthy Altera or IDT integrated circuit wholesale distributors. However before you decide to go ahead with any of these distributors, you must not forget getting their registration details. You can also visit and check their website as well as email address to ensure whether they are legit or not.
In order to make sure the legitimacy of an IDT or Altera integrated circuits distributor, you can either make a visit to their office physically or even call their office.
Additionally, you can contact or email their previous or existing customers to know about their experience or the quality of the integrated circuits they have purchased through these manufacturers. Based on their experience and knowing about the quality of integrated circuits, you can best decide when it comes to purchasing these electronic components.
Besides, you must check through the brands offering integrated circuits through these online marketplaces for electronic components. Some suppliers and distributors available on these online marketplaces directly get their integrated circuits (ICs) right from the manufacturers, with wholesale integrated circuits. On the contrary, certain suppliers and distributors buy these components from third party.
You can even get in touch with the manufacturers and ask them if the distributor or supplier has accreditation to retail their integrated circuits or not. When you are on your way to purchase integrated circuits from wholesale distributors, you must also inspect the integrated circuits right when you have purchased them.
Remember, a genuine whole distributor or supplier of integrated circuits never forget to ensure that the quality of these products until their ends. They follow complete quality management.
In case you find any discrepancy in the integrated circuits, you need to get it attended and amended right away. Certain wholesale suppliers or distributors have a panel of quality controllers to ensure the quality of these integrated circuits as per international standards. If there is a very high number of integrated circuit to distribute, they should arrange a direct communication between the manufactures and their clients.
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precisionlogictech · 3 years
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Parts Catalog
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XC2C51210FG324
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XC2C51210FGG324C
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XC2C51210FT256
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XC2C51210PQ208C
XC2C51210PQ208CES
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XC2C51210PQG20
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XC2C51210PQG208I
XC2C5124FT256C
XC2C5124PQ208C
XC2C5125FT256C
XC2C5125FT256I
XC2C5125FTG256C
XC2C5125FTG256I
XC2C5126FG324C
XC2C5126FG324I
XC2C5126FT256C
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XC2C5126FTG256I
XC2C5127FG324C
XC2C5127FG324CR02
XC2C5127FG324I
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XC2C5127FT256
XC2C5127FT256BMS
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XC2C5127FT256CR01
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XC2C5127FT256IR01
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thecomponentsstore · 2 years
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What Makes Ideal Component Supplier- Qualities You Should Look For!
Fortunately, you have more choices accessible when seeking for philips components supplier to produce your goods. Of course, you are not required to date them. But selecting the ideal vendor is almost as crucial as selecting a lifetime mate.
The first step in managing production quality and reducing product faults in your orders is finding and choosing the right microchip components supplier. In this blog, you will read about qualities of an ideal component supplier. So, keep reading and explore what you must look for.
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Responsibility for quality problems
Acknowledging a blunder can be challenging! However, when your products are at stake, partnering with a dependable supplier that fulfils their end of the bargain can mean all the difference in the world. The ideal feature of a specialized provider is accountability for quality difficulties.
Capabilities for development
The majority of importers are aware of the value of seeking out manufacturers of the desired goods. In fact, a lot of importers give a potential supplier's manufacturing capacity so much attention that they neglect to take other important factors into account.
However, it is more difficult to confirm a supplier's manufacturing capabilities than it is to just speak with a supplier representative you identified on Alibaba. A quality product ought to be able to regularly produce a good that satisfies your demands.
Going to the supplier's quality system and performing an audit
Visiting a microchip components supplier, either directly or through a 3rd agent, is the only trustworthy way to confirm that the supplier is capable of producing the goods you need.
It's possible that you won't know what to search for when you visit or that you'd rather forego the expense of flying to the plant overseas. If so, you may count on a third party to conduct an ISO 9001-based or comparable standard-based audit of the factory's quality management system.
Conclusion
Wrapping up, these are the ideal qualities of your component supplier. If you want all these qualities, you can visit the component store.
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