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Showing posts with label record. Show all posts
Showing posts with label record. Show all posts

Saturday, July 7, 2012

Tiny transmitter sets frequency record: Revolutionary terahertz transmitter developed

ScienceDaily (Jan. 13, 2012) — A terahertz transmitter developed at the TU Darmstadt has generated the highest frequency ever attained by a microelectronic device. The innovative device is also minuscule and operates at room temperature, which could lead to it paving the way for new applications in, e.g., nondestructive testing or medical diagnostics.

Although terahertz (THz) electromagnetic radiation, which has wavelengths ranging from 0.1 mm and 1 mm, penetrates common materials, such as plastics, paper, fabrics, or ceramics, allows, e.g., nondestructively testing workpieces, analyzing processes occurring in engine combustion chambers while engines are running, inspecting packages and letters for hazardous biological substances without need for opening them, it has yet to establish a reputation for itself in scientific and engineering fields. One of the hindrances involved was that, until now, transmitters and receivers operating at THz?frequencies were bulky and very expensive.

However, that situation might soon be reversed, since a team of physicists and engineers led by Dr. Michael Feiginov at the TU?Darmstadt's Institute for Microwave Technology and Photonics has developed a resonance tunnel diode (RTD) for generating terahertz electromag­netic radiation that takes up less than a square millimeter and may be produced using more or less conventional semiconductor-device fabrication technologies. Furthermore, their innovative transmitter has set a new frequency record, 1.111 THz, for microelectronic devices.

The highest frequency ever generated by an active semiconductor device

Feiginov, a physicist, noted, that, "That is the highest frequency ever generated by an active semiconductor device." He was also able to theoretically prove that a minuscule transmitter, like that developed by his group, should be capable of generating much higher frequencies extending up to 3 THz. As Feiginov, who intends to continue pursuing development work on the transmitter over the coming years until generation of such higher frequencies has been achieved, went on to say, "That was formerly regarded as impossible by those involved in terahertz research." Achieving such higher frequencies would allow attaining better spatial resolutions, i.e., recognizing finer details, employing terahertz electromagnetic radiation in materials testing and analysis than would be possible at lower frequencies.

That the RTD his group has developed operates at room temperature makes it even more attractive for use in engineering applications. He further commented that, "It might, for example, be utilized in spectroscopic analyses of molecules that have transitions falling within the THz?range." According to Feiginov, that would mean that substances that have thus far escaped spectroscopic analysis in the THz?range could be investigated employing that widely practiced, scientific method, which would be of great benefit in various fields, among them medicine, where it might, e.g., allow distinguishing diseased body tissues from healthy body tissues in vivo. Since active semiconductor devices, such as the THz?transmitter developed by the TU?Darmstadt group, represent the heart of modern informatics and telecommunications technologies, as well as all sorts of electronic equipment, Feiginov presumes that the device developed by his group will prove useful in many other application areas that cannot readily be foreseen at this stage. As he put it, "Extracting higher frequencies from the device would lead to new applications, or application areas, in the fields of computers, mobile telephones, and other types of electronic equipment."

In the course of miniaturizing their new device, the group of TU?Darmstadt researchers spent the past few years taking microelectronics close to the limits of the technically feasible. The heart of their RTD is a dual-barrier structure, within which a quantum well (QW) is embedded. A QW is a very thin layer of indium-gallium arsenide semiconductor sandwiched between a pair of ultrathin barrier layers of aluminum-arsenide semiconductor. Every one of those layers is just one nanometer to a few nanometers thin. This dual-barrier structure, plus a quantum-mechanical effect, provides that electromagnetic waves generated within a terahertz oscillator will be repeatedly amplified, rather than attenuated, which means that the oscillator will emit continuous-wave electromagnetic radiation at terahertz frequencies. The group of TU?Darmstadt researchers collaborated with ACST GmbH, a local fabricator of microelectronic circuit components, in producing their diode.

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Story Source:

The above story is reprinted from materials provided by Technische Universit?t Darmstadt, via AlphaGalileo.

Note: Materials may be edited for content and length. For further information, please contact the source cited above.

Journal Reference:

Michael Feiginov, Cezary Sydlo, Oleg Cojocari, Peter Meissner. Resonant-tunnelling-diode oscillators operating at frequencies above 1.1?THz. Applied Physics Letters, 2011; 99 (23): 233506 DOI: 10.1063/1.3667191

Note: If no author is given, the source is cited instead.

Disclaimer: Views expressed in this article do not necessarily reflect those of ScienceDaily or its staff.


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Thursday, December 29, 2011

Record Sales Figures For The Super iPhone 4S

Nearly a week has passed since the iPhone 4S was released amidst o flurry of attention from both the media and the general public. It is now clear that despite some negative reports about this new phone it is still destined to become the best selling phone that Apple have ever released.

When initial reports about this model first surfaced the general consensus was that the phone was slightly disappointing. Both the industry and the public were expecting a brand new iPhone 5 complete with a new design on the body and this led many people to feel underwhelmed by the new arrival. Now the phone is generally available it seems that the handset is actually far more impressive than we had first thought with the upgraded specification and exciting new features such as Siri resulting in a near perfect user experience. The improvements present on the phone have resulted it clocking up some record sales figures within its first four days of release. The 4S was released in America, France, Japan, Germany, Canada, Germany and the UK on Friday the 14th of October and in that time a massive four million units have been sold. This more than doubles what the original iPhone 4 achieved on its release which at the time set new records. This figure looks set to increase by a huge amount when the phone is eventually released in a further 22 countries by the end of October.

Despite the initial negativity that surrounded the iPhone 4S it seems that customers who have actually purchased the model have fallen in love with some of the excellent new features that are on offer. The new A5 chipset that is incorporated in the phone has been lifted straight from the superb iPad 2 and its effect on the performance of this phone is massive. Thanks to the dual core 1Ghz processor even the most complex of tasks is performed at lightning speed whilst the extra power available on the Graphics Processing Unit gives developers much more scope for producing games that are more similar to a console experience than a typical mobile phone title. The other major difference which influences the day to day use of this model is the new iOS5 operating system which brings a host of new features to the user. These include the new iCloud sytem which can remotely back up all of your data and the Find My Friends facility which present you with a map and the current location of all of your friends.

We always knew that the iPhone 4S would be a popular model but nobody could have predicted the heights it would scale within a few days of its release. Much of this success is down to the excellent upgrades featured on the model including the user friendly iOS5 operating system and the powerful A5 chipset.

The iPhone 4S and the iPhone 4 8GB are available now.


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Saturday, September 3, 2011

Beyonc� baby reveal sets Twitter record

Beyoncé's pregnant performance at the MTV Video Music Awards sparked a Twitter record.

When Beyoncé performed at 10:35 p.m. ET Sunday night, there were 8,868 tweets per second. Twitter said that rate was a record for the service.

At the VMAs, Beyoncé revealed a baby bump, cupping her growing belly for photographers as she arrived and rubbing her tummy when she performed. The 29-year-old singer is married to Jay-Z.

The VMAs drew MTV's biggest audience since the network began measuring its viewership. Sunday night's show attracted 12.4 million viewers.

Beyoncé's baby announcement topped the previous Twitter record of 7,196 tweets per second, which was set in July after Japan beat the United States in the final of the women's World Cup.

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