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Showing posts with label SDR. Show all posts
Showing posts with label SDR. Show all posts

Monday, August 01, 2016

Top embedded stories in July

By Nick Flaherty www.flaherty.co.uk

Somewhat surprisingly, it's Microchip's move to add intelligent peripherals to its low cot 32bit microcontrollers that dominates the news in July, beating Softbank's $24bn swoop on embedded processor core designer ARM.  This mostly highlights the practicality of engineers who need to know what they will need for their next designs, whether in industrial systems or the Internet of Things, and from hardware to software applications. Hence the interest in Altair using software defined radio for its cellular IoT chips and Avnet's move into supporting software apps in the cloud for IoT designs.

The $15bn takeover of Linear Devices by Analog Devices creates a significant new player in the embedded market, second only to Texas Instruments. With the Dust Networks technology now part of Analog, expect to see reference design for wireless sensors nodes that will make like easier for those designers.

But there's still plenty of interest in 'gee whiz' technology - Facebook solving the key challenge of moving data to and from its unmanned aerial basestations is deeply significant for the roll out of Interent service in rural areas around the world.

You can see how this has changed from May and June below.

Posts

Monday, July 11, 2016

Altair uses software defined radio for dual mode LTE-M IoT chipset

By Nick Flaherty www.flaherty.co.uk

Altair Semiconductor, recently bought by Sony, has launched a new embedded chipset that will enable lower cost cellular connections for the Internet of Things (IoT).

The dual-mode FourGee-1210 CAT-1/CAT-M chipset will be available later this year, enabling a smooth transition to the next standard of Cellular IoT networks through a software defined radio architecture.




While CAT-1 chipsets have been deployed around the world for a wide range of IoT applications, both carriers and vendors have been pursuing the emerging CAT-M (CAT-M1) and NB-IoT (CAT-NB1) standards that offer extended coverage and battery life. Altair believes there will be a lengthy transition period until there exists sufficient coverage and standards maturity to enable complete conversion to CAT-M and NB-IoT and a CAT-1 option will be needed until the ecosystem is ready to fully adopt these standards.

"Like any migration to a new cellular network, the complex transition from CAT-1 to CAT-M will take time and could potentially delay carrier and vendor rollouts," said Eran Eshed, Co-Founder and VP of Worldwide Sales and Marketing for Altair. "Altair's FourGee-1210 chipset will facilitate a smooth migration to CAT-M adoption, providing the ecosystem with the combined solution it needs for the next 18-24 months."

The single receiver handles both CAT-1 and CAT-M with a seamless switchover and low bill-of-materials cost, as well as low power consumption. Altair has also built in a Software Defined Radio (SDR) feature to allow over-the-air firmware upgrades (FOTA) to accommodate new versions of the CAT-M standard.

The FourGee-1210 chipset will reach the market by the end of 2016 alongside the projected launch of the first CAT-M networks.
http://www.altair-semi.com 

Monday, May 23, 2016

RadioVerse aims to simplify software defined radio in embedded designs

By Nick Flaherty www.flaherty.co.uk

New ecosystem includes the AD9371 integrated wideband RF transceiver, enabling simple, versatile solutions for wireless infrastructure, aerospace and defense, and instrumentation applications.
Analog Devices (ADI) has launched a technology and design ecosystem to simplify software defined radio implementations at at the circuit, architecture, system and software levels.

RadioVerse provides with integrated transceiver technologies, a robust design environment, and market-specific technical expertise to move their radio designs from concept to creation quickly. The new ecosystem’s transceiver technologies reduce radio size, weight and power (SWaP), while the design environment offers board support packages, software and tools to help customers simplify and accelerate radio development across a range of applications including wireless infrastructure, aerospace and defense electronics, and electronic test and measurement. 

As part of the RadioVerse technology and design ecosystem release, ADI introduced the AD9371, the latest addition to the integrated wideband RF transceiver product series. It is a highly versatile, carrier-grade, system-on-chip radio solution that achieves a wide RF tuning range of 300 MHz to 6 GHz, 100-MHz signal bandwidth, and power consumption of less than 5W under standard operating conditions. It replaces or eliminates as many as 20 discrete radio components and can be used as a common design platform across multiple applications and standards, increasing R&D efficiency and reducing time-to-market of the end product. Other products in the wideband RF transceiver series include the AD9361 and AD9364.

“ADI’s RadioVerse technology and design ecosystem demonstrates our system-level approach to innovation through which we deliver solutions that go beyond silicon to enable designers to get to market faster and reduce their costs,” said Rick Hess, executive vice president, Communications Business Group, Analog Devices. “RadioVerse’s industry-leading radio technology gives our customers a competitive advantage to be innovative for their customers.”

RadioVerse provides integrated RF transceivers, software API, design support packages, robust documentation, access to ADI’s EngineerZone online technical support community, and more. RadioVerse provides integrated wideband RF transceiver evaluation boards that directly connect to an FPGA development platform, allowing customers to perform chip-level performance evaluation and rapid prototyping of complete wireless scenarios using a single hardware platform. The boards are supported by a toolkit that includes HDL, Linux drivers, software API, a GUI, and design files necessary for customers to kick-start their own designs. An exact, verified model of the AD9371 transceiver, enabling advanced simulation and analysis of the transceiver, can be developed by using MATLAB and Simulink. End users can then use the model to configure the transceiver and verify performance, correct problems earlier, and accelerate completion of their RF system design.

The RadioVerse design environment will continue to expand to include third-party design houses, COTS providers and other partners to further enable customers to rapidly deploy their products to market.
The AD9371 integrated wideband RF transceiver is ideal for applications such as wireless communications, aerospace and defense electronics, and electronic test and measurement equipment that require high-performance radios across a wideband frequency range while maintaining industry leading low-power consumption levels. The AD9371 covers a 300-MHz to 6-GHz frequency range and supports receiver and transmit large signal instantaneous bandwidths up to 100 MHz, observation receiver and transmit synthesis bandwidths up to 250 MHz, fully integrated LO and clocking functions, and highly advanced on-chip calibration and correction algorithms. It supports a wide range of standards and applications, and enables customers to reduce component and development costs by reducing their need for multiple design variants. The versatility, ease-of-use, and reduced SWaP of the AD9371 enable designers to deploy radios in an array of applications:

· Small-form-factor, multi-band base stations on buildings, light poles, and office walls

· Long-range, high-definition video links in unmanned aerial vehicles

· Wide bandwidth military satellite communication systems

· Electronic test and measurement equipment supporting testing of multi-mode, multi-band applications.

Pricing and Availability
Part Number
Sample Availability
Production Availability
Price Each in 1,000 Units
Package
AD9371
Now
July 2016
$245
12mm x 12mm, 196-Ball CSP_BGA

Thursday, December 10, 2009

SDR comes to radio and TV


Microtune has developed a chip architecture that brings Software Defined Radio (SDR) to car radios.
The MT3511 RF MicroDigitizer provides a flexible RF front end for many different standards and is coupled with a digital signal processor for a low cost implemention in a car radio.
For automotive manufacturers, software defined radio (SDR) represents a revolutionary approach to in-vehicle car entertainment, connectivity and multimedia. It enables them to flexibly deliver the most popular consumer features ­AM/FM, digital radio, CD audio, MP3 playback, navigation, as well as connectivity for iPod®, SD card, USB and Bluetooth by using common hardware that is configurable, scalable and upgradable via software. SDR solutions dramatically change ‘infotainment’ business, design and manufacturing models. This technology offers car makers a global radio platform, increased design flexibility, substantial cost-efficiencies and a future-proof migration path to new standards and enhanced features.
The MT3511 is a key front-end component in the SDR architecture. It combines the functions of a state-of-the-art RF tuner and an advanced analogue-to-digital converter in a single miniature chip­it receives and tunes a broadcast signal from a car antenna, and then converts the signal from analog to digital format for processing in software by a DSP or multimedia processor. It also supports world-standard AM/FM, HD Radio technology, digital radio mondiale (DRM), and weather band, and a DAB version with support for the higher frequency L band is being considered.
The advantage is that it replaces multiple hardware-specific components in today’s radio subsystem with a generic hardware platform that reduces design complexity, time-to-market, time-to-qualification and costs.
“For decades, leading automotive manufacturers and Tier-1 suppliers have used Microtune radio and TV tuners to migrate compelling consumer-class entertainment to the car,” said James Fontaine, President and CEO of Microtune. “We are now introducing a single-chip RF-to-digital converter that will help drive software defined radio throughout the auto industry as a practical mainstream technology. The MT3511 will be a key enabler for the future of in-vehicle audio and multimedia, while it fuels growth and opportunity for our Company across the worldwide automotive entertainment markets.”
“Software defined radio has been the holy grail of the automotive industry,” said Paul O’Donovan, analyst, Gartner Research. “While car makers have been eager to deploy the SDR concept, the baseline hardware technology required to navigate commercial cost sensitivities and the stringent automotive quality and manufacturing requirements has not been available. Modern multimedia or DSP processors are now increasing in computer power, allowing the complete processing of radio signals in software, while providing the necessary connectivity features. SDR applications also demand a new kind of front-end technology, such as the MT3511, that can receive and digitize radio broadcast signals across the fast-changing signal environment of the moving vehicle.”

Key Features

The MT3511 is characterized by very high RF-to-bits performance, a high level of integration, low cost and very low profile. With its high sensitivity, high linearity, and configurable, fully autonomous automatic gain control circuit, the MT3511 is engineered to deliver stable, clear digital intermediate frequency (IF) signals. It offers the system designer the flexibility to configure solutions for even the most challenging reception environments, while enabling high-quality radio sound and multimedia within the SDR system.
As a key feature, the MT3511 is optimized to work in the digital domain of the SDR architecture and supports on-board designs with minimal external components. It is engineered to support block-oriented processing, and combined with a patented approach for generating a manageable data rate, it frees the microprocessor to focus on other tasks, including display, connectivity, traffic management and GPS. In effect, the MT3511 enables the microprocessor to manage its resources more effectively and efficiently, a key factor in overall SDR performance.

Other features include:
· Very low phase noise
· Fully-autonomous tuning-control engine
· Integrated high-performance 16-bit ADC with self-calibration and digital error correction
· Automatic data synchronization for FM phase-diversity applications
The MT3511 is the first member of the Automotive RF MicroDigitizer family, and future products will support new digital standards with even higher levels of integration. A complete technical description is provided in the MT3511 Product Brief.
As with Microtune’s other automotive products, the MT3511 is engineered to operate in the harsh vehicular environment, meeting the unique challenges of temperature and long product-life times as compared to consumer products. Developed to meet stringent automotive specifications, it supports temperatures from -40 to +85°C, and is designed to be qualified according to the requirements of the Automotive Electronics Council (AEC) Q100.
The MT3511 is currently sampling to key customers and is priced at $3.50 in volumes of 100,000/year.

$2 TV chip

It has also developed world-standard radio frequency (RF)-to-baseband IC, based on the new architecture. The MT3141 single chip enables TV manufacturers to use a smaller, higher-performance and more cost-effective receiver across their next-generation global digital television designs. Using Microtune’s MT3141, manufacturers can build thinner, lighter digital TVs that deliver premium performance for all brands, models, price points and screen sizes.
The MT3141 is:
· A miniaturized RF-to-baseband single chip that combines the functions of an RF tuner, analog TV demodulator, intermediate frequency (IF) filters and amplifiers in a 6 mm x 6 mm IC.
· The only receiver engineered to exceed the RF performance requirements of worldwide analog/digital broadcast and cable standards*, including those for China’s new CTTB (also known as DTMB or DMB-T) and Europe’s next-generation DVB-T2 requirements.
· Tiny enough for the lightest ‘picture on a wall’ TVs, but packs the performance to put a superb TV picture on the biggest wide screen.

At $2.00 in high volumes, the MT3141 breaks through price, performance and size barriers to enable TV manufacturers finally to deploy an advanced silicon receiver in an unified high-quality front-end across all next-generation television platforms.

“Faced with increasing complexity, shrinking ASPs, divergent broadcast standards, and the need to differentiate, TV manufacturers have been looking for a new class of world-standard electronics,” said James Fontaine, President and CEO of Microtune. “Yet across all these factors, manufacturers and consumers are driven by TV picture quality. With our MT3141, manufacturers can drive world-class receiver performance into global TVs, while reducing their footprint, design effort and manufacturing costs.”

Mr. Fontaine added, “Our highly integrated receiver provides the compelling price/performance to finally fuel the TV industry migration from traditional can tuners to silicon solutions, while taking digital TV into the future.”

Unmatched Performance Based on MicroCeiver™ Architecture
Based on new MicroCeiver technology, the MT3141 is a complete RF analog and digital signal processing system in a single chip. It fuses RF tuner, analog video demodulation, filter and amplifier capabilities together, erasing the distinctions across these functional boundaries. The M3141 employs internal techniques and proprietary algorithms to continuously update information about signal conditions across the signal path, optimizing performance across the entire receiver chain.

Key performance metrics include:

* Typical noise figure: 3 dB
* Video signal to noise ratio: greater than 60 dB
* Typical sensitivity ATSC: -88 dBm
* DVB-T desired to undesired signal: exceeds NorDig 2.1 specifications by greater than 10 dB

The MT3141 receiver delivers excellent sensitivity and superior adjacent channel rejection, technical metrics that directly translate into an increase in digital TV signal coverage for broadcasters and high-quality, stable TV reception for TV viewers.

MT3141 Receiver: Dramatic Integration and Cost Reduction
A single chip, the MT3141 receives all frequencies in the 44 MHz to 1.0 GHz range. It converts a selected channel either to a low-IF or to a standard IF between 4 MHz and 57 MHz, and it outputs filtered audio (SIF) and baseband video (CVBS) signals. It is characterized by a very high level of integration with minimal external bill of materials that require no active components. The MT3141 virtually eliminates an external bill of materials.

The MT3141 complies with worldwide broadcast standards* and is engineered to exceed all performance requirements published for them, including those for legacy analog TV reception (NTSC, PAL and SECAM analog television signals for off-air and cable). The transition to digital broadcast around the world is expected to continue through at least 2018. For more technical information about the MT3141, please read the MT3141 Product Brief.

Price and Availability
Offered in a 6.0 mm x 6.0 mm 40-pin QFN package, the MT3141 tuner is available now to early access customers and is priced at $2.00 in high volume. To simplify evaluation and design for qualified customers, Microtune offers a MicroCeiver MT3141 evaluation board and reference design.