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Thursday, April 17, 2008

Now Talk Over Iphone Free - Forget Your Carrier

Get ready for free VoIP calls on your iPhone. An Israeli company called Fring announced today that it started publicly testing an application for the iPhone called Fring, which allows users to make and receive calls using voice over IP technology. In case there’s any sort of misconception here, Fring bypasses any cellphone carrier and relies solely on an Internet connection to make a call.

But here’s the surprise. Fring allows users to make VoIP calls over 3G or EDGE connections, which is a huge deal. With Fring, all customers need would be a data subscription with their carrier (in case of the U.S., AT&T) and begin making those free calls. According to Fring, the application will dynamically adjust audio quality depending on the type of connection it detects.

This is a big deal for iPhone users, and even Apple itself. The partnership between Apple and AT&T as well as other carriers becomes almost meaningless. Most of the time, with available WiFi access points, you can connect and start making calls. Bypass those pesky long distance. According to Fring:

Make cheap local and international calls to landlines and regular mobile contacts using your SkypeOut account or hundreds of SIP-based providers such as Eutelia, GizmoProject, VoipCheap, VoipStunt, Free World & SIPNET over fring, even from non-SIP enabled handsets.

Tuesday, April 15, 2008

Sony Unveils The PMW-EX3 - A Cinematographers Dream

Sony announced the PMW-EX3 the latest camera in the XDCAM EX line, the PMW-EX3 sports three 1/2 inch CCDs with full HD resolution (1920 x 1080) for maximum image quality.

The lens that comes with the EX3 can be detached and different lenses can be used. Interchangeable lens features are a must for many cinematographers.

The camera rests easily on the shoulder for ENG, live production or event use. With native 24p (23.98 fps), this is also an affordable digital cinema camera for filmmakers looking to shoot high quality movies without spending too much money.

On the high end of the spectrum, Sony will soon be introducing the F35, which is more advanced than the current F23.

Sunday, April 13, 2008

52LG50 Hot LCD Flat Panel TV Brings It In Clear

52LG50 Hot LCD Flat Panel TV Brings It In Clear.

When it comes to a clear picture and great sound the LG 52LG50 delivers with its invisible speakers and 1080p full HD resolution.

The LG 52LG50 AV MODE
The AV Mode optimizes the picture into Cinema, Sports, and game Mode according to the video and audio content. The viewer has the ability to quickly choose the correct mode for the picture they are viewing.


The LG 52LG50 includes a inteligent sensor system, unlike other sensors which can only sense brightness of ambient light, LG’s “Intelligent Sensor” uses 4,096 sensing steps to evaluate its surroundings. Using a sophisticated algorithm, the LG processes picture quality elements including brightness, contrast, color, sharpness and white balance. The result is a picture optimized for it’s surroundings, more pleasing to watch and which can also save up to 50% in power consumption.

CLEAR VOICE TECHNOLOGY
Automatically enhances and amplifies the sound of human voice frequency range to help keep dialogs audible when background noise swells.

This television was amazing to watch and listen to, you wont be disappointed.

Total Recall Brain Chip Implant

What would you do to have a memory chip implanted in your brain if that chip will double the capacity of your short-term memory? Or guarantee that you would never again forget a face or a name?

All this becomes even more poignant when you compare our memories to those of the average laptop. Whereas it takes the average human child weeks or even months or years to memorize something as simple as a multiplication table, any modern computer can memorize any table in an instant — and never forget it. Why can’t we do the same?

In the best-case situation, this process works well: the particular memory we need just “pops” into our minds, automatically and effortlessly. The catch, however, is that our memories can easily get confused, especially when a given set of cues points to more than one memory. What we remember at any given moment depends heavily on the accidents of which bits of mental flotsam and jetsam happen to be active at that instant. Our mood, our environment, even our posture can all influence our delicate memories. To take but one example, studies suggest that if you learn a word while you happen to be slouching, you’ll be better able to remember that word at a later time if you are slouching than if you happen to be standing upright.

However difficult the practicalities, there’s no reason in principle why a future generation of neural prostheticists couldn’t pick up where nature left off, incorporating Google-like master maps into neural implants. This in turn would allow us to search our own memories — not just those on the Web — with something like the efficiency and reliability of a computer search engine.

Would this turn us into computers? Not at all. A neural implant equipped with a master memory map wouldn’t impair our capacity to think, or to feel, to love or to laugh; it wouldn’t change the nature of what we chose to remember; and it wouldn’t necessarily even expand the sheer size of our memory banks. But then again our problem has never been how much information we could store in our memories; it’s always been in getting that information back out — which is precisely where taking a clue from computer memory could help.

The Bed That Makes Itself

ITALIAN engineer Enrico Berruti admits that it was simply his personal laziness that first prompted him to come up with the idea for a gadget to have a bed that makes itself.

Three years later, his first prototype is on show at an International Exhibition of Inventions in Geneva.

The bed has a contraption at the sides that you wrap bedsheets or duvet over.

The sheet is rolled out when the two fasteners it is attached to move along metal bars on both sides of the bed.

Once the sheet is spread over the bed, the two bars are automatically lowered - when you press a button - smoothing out the sheet and tightening it over the bed.

He said the bed could be useful to people with back problems who cannot bend.

Saturday, April 12, 2008

Government Attaching Laser Beams To Sharks - Remote Controlled

IMAGINE getting inside the mind of a shark: swimming silently through the ocean, sensing faint electrical fields, homing in on the trace of a scent, and navigating through the featureless depths for hour after hour.
We may soon be able to do just that via electrical probes in the shark's brain. Engineers funded by the US military have created a neural implant designed to enable a shark's brain signals to be manipulated remotely, controlling the animal's movements, and perhaps even decoding what it is feeling.
That team is among a number of groups around the world that have gained ethical approval to develop implants that can monitor and influence the behavior of animals, from sharks and tuna to rats and monkeys. These researchers hope such implants will improve our understanding of how the animals interact with their environment, as well as boosting research into tackling human paralysis.
More controversially, the Pentagon hopes to exploit sharks' natural ability to glide quietly through the water, sense delicate electrical gradients and follow chemical trails. By remotely guiding the sharks' movements, they hope to transform the animals into stealth spies, perhaps capable of following vessels without being spotted. The project, funded by the Defense Advanced Research Projects Agency (DARPA), based in Arlington, Virginia, was presented at the Ocean Sciences Meeting in Honolulu, Hawaii, last week.
Neural implants consist of a series of electrodes that are embedded into the animal's brain, which can then be used to stimulate various functional areas. Biologist Jelle Atema of Boston University and his students are using them to "steer" spiny dogfish in a tank via a phantom odour. As the dogfish swims about, the researchers beam a radio signal from a laptop to an antenna attached to the fish at one end and sticking up out of the water at the other. The electrodes then stimulate either the right or left of the olfactory centre, the area of the brain dedicated to smell. The fish flicks round to the corresponding side in response to the signal, as if it has caught a whiff of an interesting smell: the stronger the signal, the more sharply it turns.
The team is not the first to attempt to control animals in this way. John Chapin of the State University of New York Health Science Center in Brooklyn has used a similar tactic to guide rats through rubble piles (New Scientist, 25 September 2004, p 21). Chapin's implant stimulates a part of the brain that is wired to their whiskers, so the rats instinctively turn toward the tickled side to see what has brushed by. Chapin rewards that response by stimulating a pleasure centre in the rats' brains. Using this reward process, he has trained the rodents to pause for 10 seconds when they smell a target chemical such as RDX, a component of plastic explosives.
The New York Police Department is considering recruiting Chapin's rats to its disaster response team, where they could be used to detect bombs or even trapped people, and Chapin met them to discuss the possibility last month.
However, Chapin's "mind patch" only works in one direction: he can stimulate movement or reward an action, but he cannot directly measure what the rat smells, which is why he has to train them to reveal what they are sensing. DARPA's shark researchers, in contrast, want to use their implant to detect and decipher the different patterns of neural activity that indicate the animal has detected an ocean current, a scent or an electrical field. The implant sports a small pincushion of wires that sink into the brain to record activity from many neurons at once. The team plans to program a microprocessor to recognise which patterns of brain activity correlate with which scents.
Atema plans to use the implants to study how sharks track chemical trails. We know that sharks have an extremely acute sense of smell, but exactly how the animals deploy that sense in the wild has so far been a matter of conjecture. Neural implants could change all that. "You get much better information from a swimming shark than from an anaesthetised animal that is strapped down," says Atema. "It could open up a whole new window into how these animals interact with their world."
At the Hawaii Institute of Marine Biology, Tim Tricas is using the implant to investigate what information scalloped hammerhead sharks glean from their electric field sensors. Gel-filled pores, scattered across a shark's head connect to nerve endings that make them sensitive to voltage gradients. Sharks can use these electroreceptors to spot the weak bioelectric fields around hidden prey, such as a flounder buried in sand.
For decades, marine biologists have suspected that sharks might also use these electroreceptors for navigation. Tiger and blue sharks can swim mile after mile in a straight line with no view of the ocean floor and only scattered, changing light coming from above. Some researchers suspect they maintain their heading by using the Earth's magnetic field.
When a conductor - in this case the shark - passes through a magnetic field, the interaction sets up a voltage across the conductor. The strength and orientation of that voltage depends on the conductor's angle to the magnetic field. If a shark could detect those changes, it could use its electrical receptors like a compass. The only way to test this, Tricas says, is to monitor electroreception in a freely swimming shark.
Other animal behaviour researchers are setting their subjects loose too. Jaideep Mavoori at the University of Washington in Seattle has developed a neural implant for monkeys that can monitor brain activity while the primates play. "We believe we are the first to record neural activity from a monkey doing a somersault," Mavoori says.
Mavoori's implant can also stimulate one part of the brain in response to activity in another, and has a microchip that can interpret the neural signals and send a message to another part of the brain or a muscle accordingly. He and his colleagues believe such an implant might ultimately help humans compensate for lost nerve function caused by injury or disease.
They have found that when a monkey is free to move around, sets of neurons controlling opposing muscle groups - those that extend and flex a joint - are both active throughout many movements. However, when a monkey is restrained in a chair and taught to extend its hand for a food reward, say, only the neurons that control the extensor muscles tend to be active.
"Remote controlled sharks glide silently though the water without being spotted"
Understanding this difference may be vital in creating a muscle-stimulating prosthesis to restore movement to a limb paralysed by nerve damage. For some loose movements, such as gently extending your arm in and out, sending signals to opposing muscles in turn works quite well. However, for movements that require some rigidity in the joint, such as inserting a book into a bookcase, you need to engage opposing muscles simultaneously. A successful neural prosthesis will need to mimic both patterns.
Meanwhile DARPA too plans to take its shark implants out of the laboratory. Project engineer Walter Gomes of the Naval Undersea Warfare Center in Newport, Rhode Island, says the team's next step will be to implant the device into blue sharks and release them into the ocean off the coast of Florida.
However, the radio signals used to direct the dogfish in the tank will not penetrate water, so the engineers plan to communicate with the sharks using sonar. According to Gomes, the navy already has acoustic signalling towers in the area that are suitable for relaying messages from a ship to a shark up to 300 kilometres away. The team has designed a sonar receiver shaped like a remora fish to minimise drag when attached to the animal.
The scientists will be particularly interested in the sharks' health during the tests. As wild predators, it is very easy to exhaust them, and this will place strict limits on how long the researchers can control their movements in any one session without harming them. Despite this limitation, though, remote controlled sharks do have advantages that robotic underwater surveillance vehicles just cannot match: they are silent, and they power themselves. Newbury Street Source

Miami Gets Its Own Spy In The Sky Drone

Miami police could soon be the first in the United States to use cutting-edge, spy-in-the-sky technology to beef up their fight against crime.

A small pilotless drone manufactured by Honeywell International, capable of hovering and "viewing" using electro-optic or infrared sensors, is expected to be flying soon in the skies.

If use of the drone wins Federal Aviation Administration approval after tests, the Miami-Dade Police Department will start flying the 14-pound (6.3 kg) drone over urban areas with an eye toward full-fledged employment in crime fighting.

"We intend to use this to benefit us in carrying out our mission," he added, saying the wingless Honeywell aircraft, which fits into a backpack and is capable of vertical takeoff and landing, seems ideally suited for use by SWAT teams in hostage situations or dealing with "barricaded persons."

Miami-Dade police are not alone, however.

Taking their lead from the U.S. military, which has used drones in Iraq and Afghanistan for years, law enforcement agencies across the country have voiced a growing interest in using drones for domestic crime-fighting missions.

I for one am fed up with all this surveillance on common citizens. There has to be some type of control here. Hillery states she wants to put 100,000 more cops on the job, Are we in a police state? There needs to be an checks and balances system in place as well as laws - if this system can be like the eyes of 3000 police in the area. If you decide to launch this gadget lay-off 3,000 human police officers for every one you put up. We all know this little machine will be used to abuse the privacy rights of citizens much like the patriot act has in the past.

Spy Plane Based On Flying Bats

Scientists at the University of Michigan College of Engineering are developing a tiny six-inch robot spy plane, designed like a bat. Its whole reason for creation is gathering data such as sights, sounds, and smells in combat zones and transmitting the information back to the troops behind lines in real time.

The bat is to perform short-term surveillance missions supporting advancing troops in the battlefield. It could perch at a street corner and send data regarding its immediate surroundings, or could land on a building for longer surveillance assignments. Real-time reports of its activity will constantly be sent to the commanding unit.

The University of Michigan researchers are focusing on the microelectronics. They will develop sensors, communication tools, and batteries for the new "Bat" micro-aerial vehicle. Engineers envision tiny cameras for stereo vision, an array of mini microphones that could home in on sounds from different directions, and small detectors for nuclear radiation and poisonous gases. The robotic bat will also have the ability to navigate at night, using low-power miniaturized radar and a very sensitive navigation system. Its lithium battery will recharge using solar energy, wind, and vibrations, and the bat will communicate with the troops using radio signals.

"Bats have a highly-attuned echolocation sense providing high-resolution navigation and sensing ability even in the dark, just as our sensor must be able to do," Sarabandi said. Echolocation allows bats to navigate by emitting sounds and detecting the echoes. By basing the robotic bat on an audio navigation system, the scientists can avoid the difficulties encountered when using vision-based systems. The robot's body is designed to be about six inches long and to weigh about a quarter of a pound. Its expected energy consumption will be 1W.

University of Michigan researchers intend to improve the technologies currently in use. They will work to develop quantum dot solar cells that double the efficiency of current solar cells. Furthermore, they expect their autonomous navigation system, which would allow the robot to direct its own movements, to be 1,000 times smaller and more energy efficient than systems in use today. If the planned improvements will indeed be successful, the researchers believe they will provide the bat with a communication system ten times smaller, lighter and more energy efficient than currently available systems. "Throughout this research, we expect to make technological breakthroughs and have a much wider range of applications for other types of engineering problems, from medical to industrial," Sarabandi said.

While all this technology and assorted gadgets might seem pretty cool, I am getting a bit concerned here. To just spy on anyone at anytime you know this will be abused by law enforcement. They already are putting up airborne surveillance in Miami, Florida

PNY Quadro FX 5600 SDI Card - 1.5 GB Of Memory

PNY has a new super graphics card in the SDI series the Quadro FX 5600 , which, is seen all over the NAB 2008.

NAB 2008 has opened in Las Vegas it is the key conference for the broadcasting industry. Nvidia, AMD and Intel are there as well, I would have to say that AMD and Intel take the second and the third spot in visualization technologies for the broadcasting industry. Quadro SDI is the facto a standard in the world of HD - if you watch any of US sports channels, there is 99% chance that all those fancy effects have been created in real-time using Quadro SDI cards like the Quadro FX 5600.

PNY's new Quadro FX 5600 HD-SDI card includes 1.5 GB of memory and memory bandwidth of up to 76.8 GB/sec. A single dual link DVI-I output supports resolutions of up to 3840 x 2400 at 24Hz. The power consumption of the card tops out at 171 watts.

Friday, April 11, 2008

Saitek PK17U Cyborg Gaming Keyboard-Rules

Saitek PK17U Cyborg Gaming Keyboard, has the same great touch response and attractive, helpful illumination. Now Saitek has outdone itself with the Saitek PK17U Cyborg Gaming Keyboard. This keyboard reaches to a new height of back lighting coolness, giving you control of not only the intensity of its three colors, but the ability to mix them together into hues no sane designer would dare choose.

You can also set the Saitek PK17U Cyborg Gaming Keyboard up to independently light up commonly-used gaming keys, and if you tend to bang away at Eve Online or WOW all night long, there are metal-plated keycaps on those gaming keys that can withstand even the most spirited pounding. You can also program the system for multiple rapid key presses, letting you shoot faster than any human ever could.

The keyboard's fully-programmable custom preferences are saved for your next re-boot. Thats a lot of keyboard for a super low price.