2013-03-12

Umniah tests LTE network, Orange ‘not part of the game’

Bahrain-backed cellco Umniah Telecommunications has successfully completed technical test of its 4G Long Term Evolution (LTE) network. Vendor: Huawei

You will pay more for MTN (South Africa) LTE

MTN will be charging an additional subscription fee to access its Long Term Evolution (LTE) network, though the network was not able to give an indication of what it will cost at this stage. 

EMT 4G Will Be Available to 95% of Estonian Population by the End of 2013

Press-release, via LTE-Depot. EMT is building its 4G network in the 1800MHz and 2600MHz frequency bands. The 1800MHz provides better coverage, while 2600 MHz is better at covering densely populated areas.

According to Tiit Tammiste, CTO at EMT, the company is also interested in getting the 800MHz license, when it will be auctioned, but that does not affect the 4G network roll-out this year. 800MHz frequency will be used in rural areas. „It is important to point out that EMT’s 4G is built upon the future-proof LTE technology that runs on a completely new network, while Elisa calls their enhanced and already overloaded 3G network 4G”, Tammiste noted.

4G is also gaining popularity among users: over 30% of EMT’s mobile data subscribers opt for a 4G plan. Tammiste brings out the reasons why users go for 4G: „LTE enables speeds up to 150Mbps, and also the latency between the modem and tower is smaller. Low latency is important for providing services in real time, live broadcasting, and online gaming.”

EMT’s 4G network is open for modems and tablets, and, currently, EMT is the only carrier in Estonia who has launched its 4G services for smartphones.

EMT launched the first 4G network in Estonia in 2010. Today, EMT’s 4G covers 75 percent of the country’s population.

The high-speed EMT 4G network will be available throughout the whole country by the end of 2014.

2013-02-23

ST-Ericsson brings PC speeds to mobile devices: first 3 GHz smartphone prototype demo at Mobile World Congress

February 20, 2013, press release, via LTE-Depot. L8580 is the fastest, coolest, integrated Application Processor and LTE Advanced Modem platform based on 28nm FD-SOI process technology.

Geneva, February 20, 2013 – Next week at Mobile World Congress in Barcelona, ST-Ericsson, a world leader in wireless platforms and semiconductors, will demo the NovaThor™ L8580 integrated smartphone platform with a 3Ghz eQuad™ application processor and a multimode LTE Advanced modem supporting Carrier Aggregation. By demonstrating the L8580 at this speed, ST-Ericsson is revealing the world’s fastest smartphone processor and validating the company as an innovator in the wireless market.

“Our next-generation NovaThor platform is creating a disruption for the wireless industry by combining some of the most advanced technologies on the market, including STMicroelectronics’ 28nm FD-SOI process technology, to deliver a real industry breakthrough in terms of speed, power consumption and overall performance,” said Didier Lamouche, President and CEO of ST-Ericsson. “We focused on innovation on real world use cases and delivered a ModAp that lets applications run significantly faster – up to 35% faster CPU while GPU and multimedia accelerators run 20% faster. With the NovaThor L8580, ST-Ericsson is bringing speeds normally reserved for the PC market to mobile devices.”

The initial commercial version of the NovaThor L8580 integrates an eQuad 2.5GHz processor based on ARM Cortex-A9’s, a powerful Imagination PowerVR™ SGX544 GPU running at 600Mhz and an advanced multimode LTE modem supporting Carrier Aggregation on a single 28nm FD-SOI die. 

The NovaThor L8580 supports 3GPP Release 10, LTE category 4, with downlink speeds up to 150Mbps. It supports LTE-FDD, LTE-TDD, HSPA+, GSM and TD-SCDMA in the same chipset as well as VoLTE and HD voice. With up to 17 bands in the same device and a single radio for Carrier

Aggregation the L8580 addresses device manufacturers’ needs for a simple and cost effective solution to build global LTE smartphones with the smallest number of manufacturing variants.

“In addition to speed and multiband support, the NovaThor L8580 consumes 35% less power than rival architectures at comparable high frequencies. And last but not least, the L8580’s ground breaking 0.6V low power mode consumes 50% less power at 1GHz redefining the active standby experience for users of mobile devices while adding hours of battery life,” continued Lamouche. “All of these factors highlight the innovation and product differentiation that ST-Ericsson can now deliver to its customers.”

The complete platform includes outstanding multimedia performance and pre-integrated connectivity with support for Bluetooth™, GNSS (GPS+ GLONASS), FM, WLAN, WiFi Direct™, Miracast™ and NFC. With ST-Ericsson’s connectivity solutions, CG2905 and CW1260, the platform comes optimized for wireless radio co-existence and low power consumption.

The NovaThor L8580 is pin-to-pin and Software compatible with ST-Ericsson’s first generation NovaThor LTE multimode platform the L8540.

The NovaThor L8580 will be demoed at Mobile World Congress in the ST-Ericsson Public Booth in Hall 7 (#E111) and, by appointment only, in our Private Pavilion in Hall 2 (#D90).

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2013-02-22

Qualcomm RF360 Front End Solution Enables Single, Global LTE Design for Next-Generation Mobile Devices

New WTR1625L and RF Front End Chips Harness Radio Frequency Band Proliferation, Enable OEMs to Develop Thinner, More Power-Efficient Devices with Worldwide 4G LTE Mobility


SAN DIEGO – February 21, 2013 – Qualcomm Incorporated (NASDAQ: QCOM) today announced that its wholly-owned subsidiary, Qualcomm Technologies, Inc., introduced the Qualcomm RF360 Front End Solution, a comprehensive, system-level solution that addresses cellular radio frequency band fragmentation and enables for the first time a single, global 4G LTE design for mobile devices. Band fragmentation is the biggest obstacle to designing today’s global LTE devices, with 40 cellular radio bands worldwide. The Qualcomm RF front end solution comprises a family of chips designed to mitigate this problem while improving RF performance and helping OEMs more easily develop multiband, multimode mobile devices supporting all seven cellular modes, including LTE-FDD, LTE-TDD, WCDMA, EV-DO, CDMA 1x, TD-SCDMA and GSM/EDGE. The RF front end solution includes the industry’s first envelope power tracker for 3G/4G LTE mobile devices, a dynamic antenna matching tuner, an integrated power amplifier-antenna switch, and an innovative 3D-RF packaging solution incorporating key front end components. The Qualcomm RF360 solution is designed to work seamlessly, reduce power consumption and improve radio performance while reducing the RF front end footprint inside of a smartphone by up to 50 percent compared to the current generation of devices. Additionally, the solution reduces design complexity and development costs, allowing OEM customers to develop new multiband, multimode LTE products faster and more efficiently. By combining the new RF front end chipsets with Qualcomm Snapdragon all-in-one mobile processors and Gobi™ LTE modems, Qualcomm Technologies can supply OEMs with a comprehensive, optimized, system-level LTE solution that is truly global.

As mobile broadband technologies evolve, OEMs need to support 2G, 3G, 4G LTE and LTE Advanced technologies in the same device in order to provide the best possible data and voice experience to consumers no matter where they are.

“The wide range of radio frequencies used to implement 2G, 3G and 4G LTE networks globally presents an ongoing challenge for mobile device designers. Where 2G and 3G technologies each have been implemented on four to five different RF bands globally, the inclusion of LTE brings the total number of cellular bands to approximately 40,” said Alex Katouzian, senior vice president of product management, Qualcomm Technologies, Inc. “Our new RF devices are tightly integrated and will allow us the flexibility and scalability to supply OEMs of all types, from those requiring only a region-specific LTE solution, to those needing LTE global roaming support.”

The Qualcomm RF360 front end solution also represents a significant technological advancement in overall radio performance and design, and it comprises the following components: 
  • Dynamic Antenna Matching Tuner (QFE15xx) – The world’s first modem-assisted and configurable antenna-matching technology extends antenna range to operate over 2G/3G/4G LTE frequency bands, from 700-2700 MHz. This, in conjunction with modem control and sensor input, dynamically improves the antenna’s performance and connection reliability in the presence of physical signal impediments, like the user’s hand.
  • Envelope Power Tracker (QFE11xx) – The industry’s first modem-assisted envelope tracking technology designed for 3G/4G LTE mobile devices, this chip is designed to reduce overall thermal footprint and RF power consumption by up to 30 percent, depending on the mode of operation. By reducing power and heat dissipation, it enables OEMs to design thinner smartphones with longer battery life.
  • Integrated Power Amplifier / Antenna Switch (QFE23xx) – The industry’s first chip featuring an integrated CMOS power amplifier (PA) and antenna switch with multiband support across 2G, 3G and 4G LTE cellular modes. This innovative solution provides unprecedented functionality in a single component, with smaller PCB area, simplified routing and one of the smallest PA/antenna switch footprints in the industry.
  • RF POP™ (QFE27xx) – The industry’s first 3D RF packaging solution, integrates the QFE23xx multimode, multiband power amplifier and antenna switch, with all the associated SAW filters and duplexers in a single package. Designed to be easily interchangeable, the QFE27xx allows OEMs to change the substrate configuration to support global and/or region-specific frequency band combinations. The QFE27xx RF POP enables a highly integrated multiband, multimode, single-package RF front end solution that is truly global.
OEM products featuring the complete Qualcomm RF360 Solution are anticipated to be launched in the second half of 2013.
Qualcomm also announced today a new RF transceiver chip, the WTR1625L. The chip is the first in the industry to support carrier aggregation with a significant expansion in the number of active RF bands. The WTR1625L can accommodate all cellular modes and 2G, 3G and 4G/LTE frequency bands and band combinations that are either deployed or in commercial planning globally. Additionally, it has an integrated, high-performance GPS core that also supports GLONASS and Beidou systems. The WTR1625L is tightly integrated in a wafer scale package and optimized for efficiency, offering 20 percent power savings compared to previous generations. The new transceiver, along with the Qualcomm RF360 front end chips, is integral to Qualcomm Technologies Inc.’s single-SKU World Mode LTE solution for mobile devices that are expected to launch in 2013. 

2013-02-21

Ofcom announces winners of the 4G mobile auction

After more than 50 rounds of bidding, Everything Everywhere Ltd, Hutchison 3G UK Ltd, Niche Spectrum Ventures Ltd (a subsidiary of BT Group plc), Telefónica UK Ltd and Vodafone Ltd have all won spectrum.