Tuesday, July 9, 2013

5 Best Semiconductor Stocks To Buy Right Now

On Wednesday, Avago Technologies (NASDAQ: AVGO  ) will release its latest quarterly results. Although the stock has largely treaded water over the past year, investors are concerned about troubling sales trends and their potential impact on the company's future.

Avago makes a variety of semiconductor chips that allow mobile devices to function more efficiently, with products including radio-frequency amplifiers and light and sound sensors. The company also has a fiber-optics business that makes important components and transceivers for network communications. Let's take an early look at what's been happening with Avago over the past quarter and what we're likely to see in its quarterly report.

Stats on Avago

Analyst EPS Estimate

5 Best Semiconductor Stocks To Buy Right Now: Taiwan Semiconductor Manufacturing Co Ltd (TSM)

Taiwan Semiconductor Manufacturing Co., Ltd. is a Taiwan-based company principally engaged in the research, development, manufacture and distribution of integrated circuit (IC) related products. The Company operates its businesses through wafer manufacture, mask production, wafer testing and packaging components. The Company also involves in the provision of production management, customer services and design services. Its products and services are applied in the manufacture of personal computers and peripheral products, information related products, wire and wireless communication systems, automobile and industrial equipment, as well as consumer electronic products, such as digital disk players, digital televisions (TVs), game consoles, digital cameras, among others. Its customers include Altera, AMD, Broadcom, Marvell, NVIDIA, Qualcomm, Analog Devices, Freescale, NXP and Texas Instruments, among others. In July 2010, Taiwan Semiconductor Manufacturing Co. acquired mechanical and engineering equipment from ASML HONG KONG LTD. In September 2010, the Company acquired a set of equipments from ASML HONG KONG LTD. In December 2010, the Company acquired a set of equipment from TOKYO ELECTRON LTD., KLA-TENCOR CORP. and NOVELLUS SYSTEMS INTERNATIONAL,B.V. In January 2011, the Company announced that it had acquired a set of equipment from KLA-TENCOR CORP., a set of equipment and facility, and another set of equipment from VARIAN SEMI. EQUIP. ASSOCIATES GmbH. In March 2011, the Company acquired a set of equipments from Rudolph Technologies, Inc.In March 2011, the Company acquired a set of equipments from Rudolph Technologies, Inc. In May 2011, it acquired a set of equipments form APPLIED MATERIALS SOUTH EAST ASIA PACIFIC LTD., Hamatech APE Gmbh and CO. KG, TOKYO ELECTRON LTD., DAINIPPON SCREEN MFG. CO., LTD., and VARIAN SEMI. EQUIP. ASSOCIATES GMBH.

TSMC's customers include semiconductor companies, ranging from fabless semiconductor and systems companies, such as Advanced Micro Devices, In! c., Altera Corporation, Broadcom Corporation, Marvell Semiconductor Inc., MediaTek Inc., nVidia Corporation and Qualcomm Incorporated, to integrated device manufacturers, such as LSI Corporation, STMicroelectronics and Texas Instruments Inc. Fabless semiconductor and system companies accounted for approximately 80%, and integrated device manufacturers accounted for approximately 20% of its net sales as of December 31, 2009.

The Company manufactures semiconductors using CMOS and BiCMOS processes. The BiCMOS process combines the speed of the bipolar circuitry and the power consumption and density of the CMOS circuitry. It uses the CMOS process to manufacture logic semiconductors, memory semiconductors, including static random access memory (SRAM), flash memory, mixed-signal/ radio frequency (RF) semiconductors, which combine analog and digital circuitry in a single semiconductor, micro-electro-mechanical-system (MEMS), which combines micrometer featured mechanical parts, analog and digital circuitry in a single semiconductor, and embedded memory semiconductors, which combine logic and memory in a single semiconductor. The BiCMOS process is used to make high-end mixed-signal and other types of semiconductors.

5 Best Semiconductor Stocks To Buy Right Now: Applied Materials Inc.(AMAT)

Applied Materials, Inc. provides manufacturing equipment, services, and software to the semiconductor, flat panel display, solar photovoltaic (PV), and related industries worldwide. The company?s Silicon Systems Group segment offers a range of manufacturing equipment used to fabricate semiconductor chips or integrated circuits. This segment provides systems that perform primary processes used in chip fabrication, including atomic layer deposition, chemical vapor deposition, physical vapor deposition, electrochemical deposition, rapid thermal processing, chemical mechanical planarization, wet cleaning, and wafer metrology and inspection, as well as systems that etch or inspect circuit patterns on masks used in the photolithography process. Its Applied Global Services segment offers products and services designed to enhance the performance and productivity, and reduce the environmental impact of the fab operations of semiconductor, liquid crystal displays (LCDs), and solar P V manufacturers. The company?s Display segment provides products for manufacturing thin film transistor LCDs for televisions, personal computers (PCs), tablet PCs, smartphones, and other consumer-oriented electronic applications. Its Energy and Environmental Solutions segment offers manufacturing systems for the generation and conservation of energy, as well as manufacturing solutions for wafer-based crystalline silicon applications. This segment also provides roll-to-roll vacuum Web coating systems for deposition of a range of films on flexible substrates for functional, aesthetic, or optical properties; and roll-to-roll machine for depositing ultra-thin aluminum films for flexible packaging applications. The company serves manufacturers of semiconductor wafers and chips, flat panel LCDs, solar PV cells and modules, and other electronic devices. Applied Materials, Inc. was founded in 1967 and is headquartered in Santa Clara, California.

Advisors' Opinion:
  • [By Kevin1977]

    Applied Materials Inc. (NASDAQ:AMAT): Up 2.22% to $10.59. Applied Materials, Inc. develops, manufactures, markets, and services semiconductor wafer fabrication equipment and related spare parts for the worldwide semiconductor industry. The Company’s customers include semiconductor wafer and integrated circuit manufacturers, flat panel liquid crystal displays, solar photovoltaic cells and modules and other electronic devices manufacturers.

Top 10 Undervalued Companies For 2014: NVIDIA Corp (NVD)

NVIDIA Corporation (NVIDIA), incorporated on February 24, 1998, is engaged in creating the graphics chips used in personal computers (PCs). The Company operates in three segments: graphics processing unit (GPU) Business, professional solutions business (PSB) and consumer products business (CPB). Its mobile processors are used in cell phones, tablets and auto infotainment systems. Designers use GPUs to create visual effects in movies and create everything from golf clubs to jumbo jets. NVIDIA solutions are based on two technologies: the GPU and the mobile processor. GPUs are the engines of visual computing, the science and art of using computers to understand, create and enhance images. It has three GPU product brands: GeForce, which creates visual experiences for gamers; Quadro, which is engaged in visual computing for designers and digital artists, and Tesla, which accelerates applications for scientists and researchers. Tegra is its mobile processor and is built for applications ranging from smartphones, tablets and notebook PCs to televisions and cars. During the fiscal year ended January 29, 2012 (fiscal 2012), it acquired Icera Inc.In fiscal 2012, it launched Project Maximus, which uses the compute power of Tesla with the visualization power of Quadro to merge the design and simulation stages into one workstation. In May 2012, the Company and Intellectual Ventures announced that they jointly acquired a set of patents developed and owned by IPWireless. The portfolio comprises approximately 500 patents granted and pending in the wireless communications area, including concepts in LTE, LTE-Advanced and 3G/4G technologies.

GPU Business

The Company�� GPU business revenue includes primarily sales of its GeForce discrete and chipset products that support desktop and notebook PCs plus license fees from Intel and sales of memory products. It also accelerates video editing and high definition (HD), content creation by consumers. GeForce GPUs power PCs made by or distributed by ! PC original equipment manufacturers (OEMs), in the world. Its media and communications processor (MCP) chipsets primarily comprised of its ION motherboard GPUs, a product reaching the end of its life cycle.

Professional Solutions Business

The Company�� PSB consists of its Quadro professional workstation products and its Tesla computing products. Its Quadro products are designed to deliver the graphics performance and application compatibility for professionals. Tesla applies the processing power of its GPUs to general-purpose computing problems. Quadro products add functionality, such as photorealistic rendering, to computer-aided design workstations, and are used in professional video editing applications and for generating special effects in movies. Tesla is used in supercomputing centers and in oil exploration; other applications include accelerating drug discovery, weather simulations and derivative price modeling.

Consumer Products Business

The Company�� CPB includes its Tegra system-on-chip products for smartphones, tablets, automotive infotainment systems, and other similar devices, and Icera baseband processors. The Tegra revenues are generated by sales in smart phones and tablets. CPB also includes license, royalty, other revenue and associated costs related to video game consoles and other digital consumer electronics devices. NVIDIA Tegra mobile products implement design techniques, both inside the chips and at the system level. These technologies enhance visual display capabilities, connectivity and minimize chip and system-level power consumption. During fiscal 2012, it launched Tegra 3, quad-core mobile computing chip, bringing PC levels of performance within the power envelope of a cellular phone chip. It also launched DirectTouch.

The Company competes with Advanced Micro Devices (AMD), Intel, Matrox Electronics Systems Ltd., VIA Technologies, Inc., ARM Holdings plc, Broadcom Corporation, Freescale Semiconductor Inc., ! Fujitsu L! imited, Imagination Technologies Ltd., Intel, Marvell Technology Group Ltd., NEC Corporation, Qualcomm Incorporated, Renesas Technology Corp., Samsung Electronics Co. Ltd., Seiko Epson Corporation, ST-Ericsson, Texas Instruments Incorporated, Toshiba America Electronic Components, Inc., Imagination Technologies Group plc., HiSilicon Technologies Co., Ltd., Mediatek, Qualcomm Incorporated, Spreadtrum Communications Co., Ltd and ST-Ericsson.

5 Best Semiconductor Stocks To Buy Right Now: Xilinx Inc (XLNX)

Xilinx, Inc. (Xilinx), incorporated on February 5, 1984, designs, develops and markets programmable platforms. These programmable platforms have a number of components, including integrated circuits (ICs) in the form of programmable logic devices (PLDs), including Extensible Processing Platforms (EPPs); software design tools to program the PLDs; targeted reference designs; printed circuit boards, and intellectual property (IP), which consists of Xilinx and various third-party verification and IP cores. In addition to its programmable platforms, Xilinx provides design services, customer training, field engineering and technical support. The Company�� PLDs include field programmable gate arrays (FPGAs), complex programmable logic devices (CPLDs) that its customers program to perform logic functions, and EPPs. Xilinx�� products are offered to electronic equipment manufacturers in end markets, such as wired and wireless communications, industrial, scientific and medical, aerospace and defense, audio, video and broadcast, consumer, automotive and data processing. The Company sells its products globally through independent domestic and foreign distributors and through direct sales to original equipment manufacturers (OEMs) by a network of independent sales representative firms and by a direct sales management organization. In January 2011, the Company acquired AutoESL Design Technologies, Inc. In August 2012, the Company acquired embedded Linux solutions provider PetaLogix.

Product Families

The 7 series devices that comprise the Company�� 28-nanometer (nm) product families are fabricated on a high-K metal gate 28-nm process technology. These devices are based on an architecture, which enables design and IP portability and re-use across all families, as well as provides designers the ability to achieve the appropriate combination of I/O support, performance, feature quantities, packaging and power consumption to address a range of applications. The 7 series devices consist of! three families: Virtex-7 FPGA, Kintex-7 FPGAs and Artix-7 FPGAs. The Zynq-7000 family is the family of Xilinx EPPs. The Virtex-6 FPGA family consists of 13 devices and is the sixth generation in the Virtex series of FPGAs.

Virtex-6 FPGAs are fabricated on a high-performance, 40-nm process technology. There are three Virtex-6 families: Virtex-6 LXT FPGAs, Virtex-6 SXT FPGAs and Virtex-6 HXT FPGAs. The Spartan-6 family is the PLD industry�� 45-nm high-volume FPGA family, consisting of 11 devices in two product families: Spartan-6 LX FPGAs and Spartan-6 LXT FPGAs. The Virtex-5 FPGA family consists of 26 devices in five product families: Virtex-5 LX FPGAs for logic-intensive designs, Virtex-5 LXT FPGAs for high-performance logic with serial connectivity, Virtex-5 SXT FPGAs for high-performance DSP with serial connectivity, Virtex-5 FXT FPGAs for embedded processing with serial connectivity and Virtex-5 TXT FPGAs for high-bandwidth serial connectivity. Prior generation Virtex families include Virtex-4, Virtex-II Pro, Virtex-II, Virtex-E and the original Virtex family. Spartan family FPGAs include 90-nm Spartan-3 FPGAs, the Spartan-3E family and the Spartan-3A family. Prior generation Spartan families include Spartan-IIE, Spartan-II, Spartan XL and the original Spartan family.

Design Platforms and Services

The Company offers three types of programmable platforms. The Base Platform is the delivery vehicle for all of its new silicon offerings used to develop and run customer-specific software applications and hardware designs. The Base Platform consists of FPGA silicon; Integrated Software Environment (ISE) Design Suite design environment; integration support of optional third-party synthesis, simulation, and signal integrity tools; reference designs; development boards and IP. The Domain-Specific Platform targets one of the three primary Xilinx FPGA user profiles: the embedded processing developer; the DSP developer; or the logic/connectivity developer. The Market-S! pecific P! latform enables software or hardware developers to build and run their specific application or solution. Built for specific markets, such as automotive, consumer, aerospace and defense, communications, audio, video and broadcast, industrial, or scientific and medical, the Market-Specific Platform integrates both the Base and Domain-Specific Platforms.

During April 2012, Xilinx introduced the Vivado Design Suite. Vivado supports Xilinx 7 series FPGAs and Zynq EPPs. Xilinx and various third parties offer hundreds of no charge and fee-bearing IP core licenses covering Ethernet, memory controllers Interlaken and PCIe interface, as well as domain-specific IP in the areas of embedded, DSP and connectivity, and market-specific IP cores. The Company also offers development kits, including hardware, design tools, IP and reference designs. Xilinx offers a range of configuration products, including one-time programmable and in-system programmable storage devices to configure Xilinx FPGAs. These programmable read-only memory (PROM) products support all of the Company�� FPGA devices. Xilinx and certain third parties have developed and offer a ecosystem of IP, boards, tools, services and support through the Xilinx alliance program. Xilinx also works with these third parties to promote its programmable platforms through third-party tools, IP, software, boards and design services. Xilinx engineering services provide customers with engineering, ranging from hands-on training to full design creation and implementation.

The Company competes with Altera Corporation, Lattice Semiconductor Corporation and Microsemi Corporation.

5 Best Semiconductor Stocks To Buy Right Now: ARM Holdings PLC (ARMH.O)

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. Du ring the year ended December 31, 2012, the Company�� tot! al! average 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 configur able 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! rat! e s! ynchro! nous 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 micropro! cessors !! in the 15! 0-250MHz 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.

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