Sunday, June 29, 2014

Top Semiconductor Companies To Watch In Right Now

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Sixteen weeks into 2014, the Dow, Nasdaq and Russell 2000 are all down year-to-date, while the S&P 500 is only ahead by about 1.5%. The market is dealing with some genuine obstacles that weren’t prevalent at the end of 2013, as worries over Russia’s annexation of Ukraine, slowing in China’s economy, Japan’s anemic exports, deflationary pressure in Europe and Fed tapering are weighing on investor sentiment.

Best Income Stocks For 2015: Sunedison Inc (SUNE)

SunEdison Inc, formerly MEMC Electronic Materials, Inc., incorporated on October 1, 1984, is engaged in the development, manufacture and sale of silicon wafers. The Company is a developer and seller of photovoltaic energy solutions. Through Solar Materials and Solar Energy (SunEdison), it is a developer of solar energy projects. The Company operates in two segments: semiconductor materials and solar energy. The Company�� Solar Energy segment includes the operations of its old Solar Materials segment, as well as its SunEdison business. In the Semiconductor Materials, the Company offers wafers with a variety of features. The Company�� wafers vary in size, surface features, composition, purity levels, crystal properties and electrical properties.

Semiconductor Materials

The Company�� monocrystalline wafers for use in semiconductor applications range in size from 100 millimeter to 300 millimeter and are round in shape for semiconductor customers because of the nature of their processing equipment. Its wafers are used as the starting material for the manufacture of various types of semiconductor devices, including microprocessor, memory, logic and power devices. In turn, these semiconductor devices are used in computers, cellular phones and other mobile electronic devices, automobiles and other consumer and industrial products. Its monocrystalline wafers for semiconductor applications include four general categories of wafers: prime, epitaxial, test/monitor and silicon-on-insulator (SOI) wafers.

The Company�� prime wafer is a polished, pure wafer with an ultraflat and ultraclean surface. The Company�� epitaxial (epi), wafers consist of a thin silicon layer grown on the polished surface of the wafer. Typically, the epitaxial layer has different electrical properties from the underlying wafer. This provides customers with isolation between circuit elements than a polished wafer. Its AEGIS product is designed for certain specialized applications requiring high resis! tivity epitaxial wafers and its MDZ product feature. The AEGIS wafer includes a thin epitaxial layer grown on a standard starting wafer. The AEGIS wafer�� thin epitaxial layer eliminates harmful defects on the surface of the wafer, thereby allowing device manufacturers to increase yields. The Company supplies test/monitor wafers to its customers for use in testing semiconductor fabrication lines and processes. An SOI wafer is a different starting material for the chip making process.

Solar Energy

The Company�� Solar Energy segment provides solar energy services that integrate the design, installation, financing, monitoring, operations and maintenance portions of the downstream solar market to provide a solar energy service to its customers. As of December 31, 2012, SunEdison interconnected over 675 solar power systems representing 989 megawatt of solar energy generating capacity. As of December 31, 2012, SunEdison had 73 megawatt of projects under construction and 2.6 gigawatts in pipeline. In support of its downstream solar business, its Solar Energy segment manufactures polysilicon, silicon wafers and solar modules. Additionally, its Solar Energy segment will sell solar modules to third parties in the event the opportunity aligns with itsinternal needs. It provides its downstream customers with a way to purchase renewable energy by delivering solar power under long-term power purchase arrangements with customers or feed-in tariff arrangements with government entities and utilities. Its SunEdison business is dependent upon government subsidies, including United States federal incentive tax credits, state-sponsored energy credits and foreign feed-in tariffs. The Company�� solar wafers are used as the starting material for crystalline solar cells.

The Company competes with Shin-Etsu Handotai, SUMCO, Siltronic and LG Siltron, SunPower Corporation, First Solar, Inc., Enerparc, Sharp Corporation (Recurrent Energy), Phoenix Solar, BELECTRIC, JUWI Solar Gmbh, and S! olar City! .

Advisors' Opinion:
  • [By Rich Smith]

    MEMC (NYSE: SUNE  ) isn't MEMC anymore.

    Late last week, MEMC Electronic Materials confirmed that it will officially change its name to SunEdison today and adopt the "SUNE" ticker symbol for itself. Stockholder support for the change was said to be "overwhelming."

  • [By Roberto Pedone]

    Another semiconductor player that's starting to move within range of triggering a near-term breakout trade is SunEdison (SUNE), which provides technology solutions to corporations, utilities, governments and chip manufacturers to transform lives around the world. This stock has been red hot so far in 2013, with shares up big by 150%.

    If you look at the chart for SunEdison, you'll notice that this stock recently formed a double bottom chart pattern at $7.08 to $7.13 a share. Following that bottom, shares of SUNE have started to spike higher and move within range of its 50-day moving average at $8.30 a share and close to triggering a near-term breakout trade.

    Traders should now look for long-biased trades in SUNE if it manages to break out above its 50-day at $8.30 a share and then once it takes out more key resistance levels at $8.35 to $8.41 a share with high volume. Look for a sustained move or close above those levels with volume that hits near or above its three-month average action of 5.81 million shares. If that breakout triggers soon, then SUNE will set up to re-fill some of its previous gap down zone from August that started at $10 a share. If this stock gets into that gap with volume, then this stock could easily re-test or take out its 52-week high at $10.47 a share.

    Traders can look to buy SUNE off any weakness to anticipate that breakout and simply use a stop that sits right below those double bottom support levels at $7.13 to $7.08 a share. One can also buy SUNE off strength once it takes out that breakout levels with volume and then simply use a stop that sits a comfortable percentage from your entry point.

Top Semiconductor Companies To Watch In Right Now: NextStage Inc (NXT)

NextStage, Inc. is a holding company. The Company is engaged in the management of its investments in shares of stocks of its subsidiaries. The Company�� subsidiaries include Mondex Philippines Inc. (MXP), Infinit-e Asia Inc. (Infinit-e Asia) and Technology Support Services, Inc. (TSSI). MXP operates a multi-application smart card system in Philippines. Infinit-e Asia is a software development company specializing on smart card and e-commerce solutions tailored to enhance the business of its clients. Infinit-e Asia develops smart card solutions for both real and online applications and on both contact and contactless platform. Infinit-e Asia�� spectrum of products and applications are classified as payments, data capture and security. TSSI is engaged in the business of business process outsourcing (BPO), applications service providers (ASP) and managed service providers (MSP). Advisors' Opinion:
  • [By Namitha Jagadeesh]

    HSBC Holdings Plc (HSBA), Europe�� largest bank, slid 2.1 percent. International Consolidated Airlines Group SA (IAG) declined 2 percent as it canceled some of its flights following a disruption caused by one of its planes at Heathrow airport. Next Plc (NXT) retreated 2.4 percent as Morgan Stanley cut its recommendation on the shares.

Top Semiconductor Companies To Watch In Right Now: Micropac Industries Inc (MPAD)

Micropac Industries, Inc. (Micropac), incorporated on March 3, 1969, manufactures and distributes various types of hybrid microelectronic circuits, solid state relays, power operational amplifiers, and optoelectronic components and assemblies. Micropac�� products are used as components in a range of military, space and industrial systems, including aircraft instrumentation and navigation systems, power supplies, electronic controls, computers, medical devices, and high-temperature (200o degree Celsius) products. The Company�� products are either custom (being application-specific circuits designed and manufactured to meet the particular requirements of a single customer) or standard components. During the fiscal year ended December 31, 2011 (fiscal 2011), its custom-designed components accounted for approximately 34% of its revenue and standard components accounted for approximately 66% of its revenue.

Micropac occupies approximately 36,000 square feet of manufacturing, engineering and office space in Garland, Texas. The Company owns 31,200 square feet of that space and leases an additional 4,800 square feet. It also sub-contracts some manufacturing to Inmobiliaria San Jose De Ciuddad Juarez S.A. DE C.V, a maquila contract manufacturer in Juarez, Mexico.

Micropac provides microelectronic and optoelectronic components and assemblies along with contract electronic manufacturing services, and offers a range of products sold to the industrial, medical, military, aerospace and space markets. The Microcircuits product line includes custom microcircuits, solid state relays, power operational amplifiers, and regulators. During fiscal 2011, microcircuits product line accounted for 51% of its revenue and the optoelectronics product line accounted for 62% of its business respectively. The Company�� core technology is the packaging and interconnects of miniature electronic components, utilizing thick film and thin film substrates, forming microelectronics circuits. Other technologi! es include light emitting and light sensitive materials and products, including light emitting diodes and silicon phototransistors used in its optoelectronic components, and assemblies.

The Company�� basic products and technologies include custom design hybrid microelectronic circuits, solid state relays and power controllers, custom optoelectronic assemblies and components, optocouplers, light-emitting diodes, Hall-Effect devices, displays, power operational amplifiers, fiber optic components and assemblies, and high temperature (200o degree Celsius) products. Micropac�� products are primarily sold to original equipment manufacturers (OEM��) who serve major markets, which includes military/aerospace, such as aircraft instrumentation, guidance and navigations systems, control circuitry, power supplies and laser positioning; space, which include control circuitry, power monitoring and sensing, and industrial, which includes power control equipment and robotics.

The Company�� products are marketed throughout the United States and in Western Europe. During fiscal 2011, approximately 21% of the Company�� revenue was from international customers. The Company�� major customers include contractors to the United States Government. During fiscal 2010, sales to these customers for the Department of Defense (DOD) and National Aeronautics and Space Administration (NASA) contracts accounted for approximately 62% of its revenues. The Company�� customers are Lockheed Martin, Northrop Grumman, Boeing, Rockwell Int��, and NASA.

The Company compete with Teledyne Industries, Inc., MS Kennedy, Honeywell, Avago and International Rectifier.

Advisors' Opinion:
  • [By Geoff Gannon] strong>ADDvantage Technologies (AEY)

    路 Solitron Devices (SODI)

    路 OPT-Sciences (OPST)

    Micropac

    Micropac is 76% owned by Heinz-Werner Hempel. He�� a German businessman. You can see the German company he founded here. He�� had control of Micropac for a long-time. I don�� have an exact number in front of me. But I would guess it�� been something like 25 years.

    ADDvantage

    ADDvantage Technologies is controlled by the Chymiak brothers. See the company�� April 4 press release explaining their decision to turn over the CEO position to an outsider. Regardless, the Chymiaks still control 47% of the company. Ken Chymiak is now chairman. And David Chymiak is still a director and now the company�� chief technology officer. Clearly, it�� still their company.

    By the way, the name ADDvantage Technologies has nothing to do with the Chymiaks. Today�� AEY really traces its roots to a private company called Tulsat. The Chymiak brothers acquired that company about 27 years ago. So, effectively, when you buy shares of AEY you are buying into a 27-year-old family-controlled company.

    That�� pretty typical in the world of net-nets.

    Solitron

    Solitron Devices is 29% owned by Shevach Saraf. He has been the CEO for 20 years. The post-bankruptcy Solitron has never known another CEO. Before the bankruptcy, Solitron was a much bigger, much different company. So even though we are not talking about the founder here ��and even though 70% of the company�� shares are not held by the CEO ��we��e still talking about a company where one person has a lot of control. Solitron only has three directors. Saraf is the chairman, CEO, president, CFO and treasurer. Neither of the other two directors joined the board within the last 15 years. So, we aren�� talking about a lot of tumult at the top.

    In fact, profitable net-nets seem to be especially common candidates for abandoning the responsibilities of a public comp

Top Semiconductor Companies To Watch In Right Now: ARM Holdings PLC (ARMH)

ARM Holdings plc (ARM), incorporated on October 16, 1990, designs microprocessors, physical intellectual property (IP) and related technology and software, and sells development tools. As of December 31, 2012, the Company operated in three business segments: the Processor Division (PD), the Physical IP Division (PIPD) and the System Design Division (SDD). ARM licenses and sells its technology and products to international electronics companies, which in turn manufacture, markets and sells microprocessors, application-specific integrated circuits (ASICs) and application-specific standard processors (ASSPs) based on ARM�� technology to systems companies for incorporation into a range of end products. It also licenses and sells development tools directly to systems companies and provides support services to its licensees, systems companies and other systems designers.

ARM processor architecture and physical IP is used in embedded microprocessor applications, including cellular phones, digital televisions, mobile computers and personal computer peripherals, smart cards and microcontrollers. ARM�� principal geographic markets are Europe, the United States and Asia Pacific. ARM�� product offering includes microprocessor Cores: RISC microprocessor cores, including specific functions, such as video and graphics IP and on-chip fabric IP; embedded software; physical IP; development tools, and support and maintenance services.

Processor Division

The PD encompasses those resources that are centered on microprocessor cores, including specific functions, such as graphics IP, fabric IP, embedded software IP and configurable digital signal processing (DSP) IP. Service revenues consist of design consulting services and revenues from support, maintenance and training.

Physical IP Division

The PIPD is focused on building blocks for translation of a circuit design into actual silicon. During the year ended December 31, 2012, the Company�� total av! erage PIPD headcount was 557. ARM is a provider of physical IP components for the design and manufacture of integrated circuits, including systems-on-chip (SoCs). ARM Artisan physical IP products include embedded memory, standard cell and input/output components. Artisan physical IP also includes a limited portfolio of analog and mixed-signal products. ARM�� physical IP components are developed for a range of process geometries ranging from 20 nanometer - 250 nanometer. ARM licenses its products to customers for the design and manufacture of integrated circuits used in complex, high-volume applications, such as portable computing devices, communication systems, cellular phones, microcontrollers, consumer multimedia products, automotive electronics, personal computers and workstations and many others.

ARM�� embedded memory components include random access memories, read only memories and register files. These memories are provided in the form of a configurable memory compiler, which allows the customer to generate the appropriate configuration for the given application. ARM�� memory components include many configurable features, such as power-down modes, low-voltage data retention and fully static operation, as well as different transistor options to trade off performance and power. In addition, ARM�� memory components include built-in test interfaces that support the industry test methodologies and tools. ARM memory components also offer redundant storage elements.

ARM�� memory components are designed to enable the chip designer maximum flexibility to achieve the optimum power, performance, and density trade-off. ARM offers standard cell components that are optimized for high performance, high density or ultra high density. ARM logic products deliver optimal performance, power and area when building ARM Processors, Graphics, Video and Fabric IP along with general SoC subsystem implementation. ARM delivers physical interface for a range of DDR SDRAM (double-data rate s! ynchronou! s dynamic random-access memory) applications ranging from mission critical applications to low-power memory sub-systems. Silicon on Insulator (SOI) products is an alternative methodology to traditional semiconductor fabrication techniques.

System Design Division

The SDD is focused on the tools and models used to create and debug software and system-on-chip (SoC) designs. ARM�� software development tools help a software design engineer deliver products right the first time. Engineers use these tools in the design and deployment of code, from applications running on open operating systems right through to low-level firmware. The ARM Development Studio is a hardware components that allow the software designer to connect to a real target system and control the system for the purposes of finding errors in the software. The ARM DSTREAM unit allows the software developer to control the software running on the prototype product and examine the internal state of the prototype product. ARM Development Boards are ideal systems for prototyping ARM-based products. The ARM Microcontroller Development Kit supports ARM-based microcontrollers and 8051-based microcontrollers from companies, such as Analog Devices, Atmel, Freescale, Fujitsu, NXP, Samsung, Sharp, STMicroelectronics, Texas Instruments and Toshiba. The ARM Microcontroller Development Kit is used by developers who are building products and writing software using standard off-the-shelf microcontrollers.

The ARM Microprocessor Families

ARM architecture processors offers a range of performance options in the ARM7 family, ARM9 family, ARM11 family, ARM Cortex family and ARM SecurCore family. The ARM architecture gives systems designers a choice of processor cores at different performance/price points. The ARM7 offers 32-bit architecture capable of operating from 8/16-bit memory on an 8/16-bit bus through the implementation of the Thumb instruction set. The ARM9 family consists of a range of microprocessors in ! the 150-2! 50MHz range. Each processor has been designed for a specific application or function, such as an application processor for a feature phone or running a wireless fidelity (WiFi) protocol stack. The ARM9 family consists of a range of microprocessors in the 150-250 megahertz range. The ARM11 family consists of a range of microprocessors in the 300-600 megahertz range. ARM Cortex family is ARM�� family of processor cores based on version 7 of the ARM Architecture. The family is split into three series: A Series, A Series and M Series.

Advisors' Opinion:
  • [By Ashraf Eassa]

    Background on Samsung and ARM
    While Qualcomm's chips feature all-Qualcomm IP from the applications processor to the graphics, Samsung's Exynos chips have largely consisted of off-the-shelf ARM (NASDAQ: ARMH  ) Cortex A-series CPUs with either ARM Mali GPUs or Imagination's PowerVR. Naturally, while off-the-shelf IP aimed at multiple different markets isn't quite going to be as optimal as custom-tailored IP, the IP that is available is, for the most part, quite good. Further, there's no reason that Samsung can't/won't develop its own custom IP if it needs something more fine-tuned for its need.

  • [By Steve Heller]

    Filling the void
    When Intel developed its x86 architecture, raw computing power was the primary objective. You can think of Intel's x86 architecture as the equivalent of an American-made muscle car of the 1960s -- a powerful, yet inefficient gas guzzler. This is contrary to chips based on ARM Holdings' (NASDAQ: ARMH  ) architecture, which are more like your eco-friendly fuel-efficient vehicles.

Top Semiconductor Companies To Watch In Right Now: Malaysian Pacific Industries Bhd (MPI)

Malaysian Pacific Industries Berhad (MPI) is an investment holding company. The principal activities of MPI, through its subsidiaries are manufacturing, assembling, testing and sale of integrated circuits, semiconductor devices, electronic components and lead frames to customers globally. The Company�� operating geographical segments include Asia, The United States of America, and Europe. The Company's subsidiaries include Carsem (M) Sdn Bhd, Recams Sdn Bhd, Carsem Holdings Limited, Carsem Semiconductor (Suzhou) Co., Ltd, Dynacraft Industries Sdn Bhd, Carter Realty Sdn Bhd, Carter Realty Sdn Bhd and Carsem Holdings (HK) Limited. Advisors' Opinion:
  • [By Sofia Horta e Costa]

    Michael Page International Plc (MPI) increased 1.1 percent to 490.2 pence after Goldman Sachs Group Inc. upgraded the stock to buy from neutral, saying the recruitment firm will benefit from a pick-up in the European economy.

Top Semiconductor Companies To Watch In Right Now: Tokyo Electron Ltd (TOELY.PK)

Tokyo Electron Limited is a company mainly engaged in the manufacture and sale of electronic products for industrial uses. The Semiconductor Manufacturing Equipment, Flat-panel Display (FPD) and Photovoltaic Cell (PV) Manufacturing Equipment segment provides coaters and developers for wafer processing, plasma etching equipment, thermal processing systems, single wafer deposition systems, cleaning systems, coaters and developers for FPD manufacturing, ashing devices and plasma chemical vapor deposition (CVD) devices. The Electronic Component and Information Communication Equipment segment designs, develops, purchases and sells semiconductor products such as integrated circuits (ICs), computer and network equipment and software. The Others segment involves in logistics, facility management and insurance businesses. On April 1, 2013, it merged with two subsidiaries. In January 2014, the Company established TEL-Applied Holdings B.V. and a Japan-based company. Advisors' Opinion:
  • [By Stephen Simpson, CFA]

    Ultratech isn't the only game in town, though, and there are multiple technologies and process steps that are going to play significant roles in the production of FinFETs and 3D circuits. With that, I would take a look at Mattson Technologies (MTSN), as this company has already accomplished the not-so-easy task of gaining meaningful share in the dry strip, rapid thermal processing (RTP), and etch markets despite competing with giants like Lam Research (LRCX), Applied Materials (AMAT), and Tokyo Electron (TOELY.PK).

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