Showing posts with label HDTV. Show all posts
Showing posts with label HDTV. Show all posts

Saturday, January 8, 2011

Confusion over high-definition TV


 Now that a critical mass of people have embraced digital TV, DVDs, and digital video recorders, the next revolution for TV is being prepared for our sets.
 
In most corners of TV and technology industries, high-definition (HDTV) is being heralded as the biggest thing to happen to the television since colour.
HD essentially makes TV picture quality at least four times better than now.
But there is real concern that people are not getting the right information about HD on the High Street.
Thousands of flat panel screens - LCDs (liquid crystal displays), plasma screens, and DLP rear-projection TV sets - have already been sold as "HD", but are in fact not able to display HD. 

No connectors
 
"The UK is the largest display market in Europe," according to John Binks, director of GfK, which monitors global consumer markets.

   WHAT DO I NEED FOR HDTV?
  • HDTV set-top-box with receiver or integrated TV set with HD receiver
  • HD-ready display - LCD, plasma, or DLP
  • HD devices must have min resolution of 720 physical lines
  • HD resolutions are typically 720p (p=progressive) or 1080i (i=interlaced)
But, he added: "Of all the flat panel screens sold, just 1.3% in the UK are capable of getting high-definition."

There are 74 different devices that are being sold as HD but are not HD-ready, according to Alexander Oudendijk, senior vice president of marketing for satellite giant Astra.
They may be fantastic quality TVs, but many do not have adaptors in them - called DVI or HDMI (High-Definition Multimedia Interface) connectors - which let the set handle the higher resolution digital images.
Part of this is down to lack of understanding and training on the High Street, say industry experts, who gathered at Bafta in London for the 2nd European HDTV Summit last week.
"We have to be careful about consumer confusion. There is a massive education process to go through," said Mr Binks.
The industry already recognised that it would be a challenge to get the right information about it across to those of us who will be watching it.
Eventually, that will be everyone. The BBC is currently developing plans to produce all its TV output to meet HDTV standards by 2010.
 


Men watching high-definition TV
The "HD-ready" sticker should help consumer education
Preparations for the analogue switch-off are already underway in some areas, and programmes are being filmed with HD cameras.

BSkyB plans to ship its first generation set-top boxes, to receive HDTV broadcasts, 
in time for Christmas.
Like its Sky+ boxes, they will also be personal video recorders (PVRs).
The company will start broadcasts of HDTV programmes, offering them as "premium channel packages", concentrating, to start with, on sports, big events, and films, in early 2006.
But the set-top box which receives HDTV broadcasts has to plug into a display - TV set - that can show the images at the much higher resolution that HD demands, if HDTV is to be "real".
By 2010, 20% of homes in the UK will have some sort of TV set or display that can show HD in its full glory. 

Education, education, education
 
But it is all getting rather confusing for people who have only just taken to "being digital".
As a result, all the key players, those who make flat panel displays, as well as the satellite companies and broadcasters, formed a HD forum in 2004 to make sure they were all talking to each other.
Part of the forum has been concerned with issues like industry standards and content protection.
But it has also been preoccupied with how to help the paying public know exactly what they are paying for. 

WHO IS DOING HD NOW?
  • HD1 channel in Europe started 1 January 2004
  • BSkyB plans HD channels 2006
  • Premiere Digital in Europe starts three channels in November 2005
  • Canal + in Europe starts HD version of premium channel in 2006
  • BBC to have 100% HD programmes by 2010
  • TPS starts HD versions of premium channel in autumn 2005
From next month, all devices that have the right connectors and resolution required will carry a "HD-Ready" sticker.

This also means they are equipped to cope with both analogue and HDTV signals, and so comply with the minimum specification set out by the industry.
"The logo is absolutely the way forward," said David Mercer, analysts with Strategy Analytics.
"But it is still not appearing on many retail products."
The industry is upbeat that the sticker will help, but it is only a start.
"We can only do so much with the position we are in today with manufacturers," said Mr Oudendijk.
"There may well be a number of dissatisfied customers in the next few months."
The European Broadcast Union (EBU) is testing different flavours of HD formats to prepare for even better HDTV further down the line.
It is similarly concerned that people get the right information on HDTV formats, as well as which devices will support the formats.
"We believe consumers buying expensive displays need to ensure their investment is worthwhile," said Phil Laven, technical director for the EBU. 

The TV display manufacturers want us to watch HD on screens that are at least 42in (106cm), to get the "true impact" of HD, they say, although smaller displays suffice.
What may convince people to spend money on HD-ready devices is the falling prices, which continue to tumble across Europe.
The prices are dropping an average of 20% every year, according to analysts. LCD prices dropped by 43% in Europe as a whole last year, according to Mr Oudendijk.

LCD? LED? Plasma? Guide to HDTV Technology

HDTVs

With image technology progressing faster than ever, High-Def has become the standard, giving TV buyers more options at cheaper prices. But what’s different in all these confusing TVs, and what should you know before buying one?

If you’re considering buying a television this Holiday season for a loved one (or simply for yourself), it can be a big help to know what to look for. Take a look to find out what sets HD televisions apart, learn some of the confusing jargon associated with them, and see a comparison of four of the types of HDTVs commonly sold today.


HDTV versus Standard Definition


tv pixels close up

Televisions and monitors create images in the same way, illuminating combinations of Red, Green, and Blue to create single picture elements, or pixels. Different types of displays have their unique ways of doing this, but in theory, they’re all doing the same thing: creating the illusion of an image with tiny points made from combinations of various amounts of primary colors.

For years, the standard for television and home theater were Low-Def Cathode Ray Tube monitors, which in ordinary household situations would usually have a paltry 640 pixels by 480 pixels. While it was possible to create images full of detail by shooting movies with quality film stock, when it was played on low def televisions, quality could not help but be lost as high-quality film photography is forced into a low-resolution TV medium. While film photography is independent of the confinements of pixel-based video, it was impossible for consumers to view beautiful high-quality movies without purchasing copies of movie reels and setting up old fashioned theater projectors, which are also independent of resolution.

The simple answer was just to create home monitors with more and more pixels, with the modern widescreen definition at 1920 pixels by 1080 pixels. This makes each individual pixel smaller, creating images that look sharper and cleaner. However, HDTVs and computer monitors are more complicated than simply the sum of their pixels.

Important Terms to Know When Buying HDTVs


3396427350_b6893da4bd_o

With each subsequent generation of television, the language and buzzwords surrounding Hi-Def televisions become more and more complex. Here’s a rundown of the terms you’re likely to hear, and what each of them mean.

Contrast Ratio: A number ratio resembling 1:1 or 10,000:1, which illustrates how much difference there is between the brightest whites and the darkest black colors the screen can display. The higher the ratio, the better the contrast.

Refresh Rate: How often the display hardware will redraw (or “refresh”) the image created on the screen. Videos are made of “frames,” which are flashed on screen multiple times per frame because the Refresh Rate is faster than the Frame rate. In other words, you’ll watch the same frame multiple times in a single second, because the refresh is so incredibly fast. Refresh rates are measured in Hz, or cycles per second.

The higher the refresh rate, the better your picture will be, affecting the way fast-moving images appear, reducing blurring and improving clarity. Plasma displays usually have a much higher refresh rate, with the typical screen having a 600hz refresh rate, but LCD or LED TVs have been catching up with 60, 120, 240, or even some 480hz refresh rates available.

Pixel Response Time: Similar to refresh rate, Pixel response time is the number of milliseconds the individual pixels take to react to a refreshed image. While Refresh rate deals with the time it takes the hardware to refresh the image, response time refers to how quickly the individual pixels change color from white to black or red or green. The lower the time, the better. Better response times will also create less blurry pictures for fast moving images.

CRT: Acronym for Cathode Ray Tube, the oldest commercial model of televisions and computer monitors. Cathode Ray Tubes are not preferred by modern consumers, despite excellent picture quality, because they necessarily huge, bulky, and heavy.

LCD: An acronym for Liquid Crystal Display, an extremely common model of display, found in laptops and TVs, as well as displays on alarm clocks and microwaves. LCD is a very energy efficient way of creating color displays compared to CRT.

LED: Stands for Light Emitting Diode, a simple circuit that emits light. LED is the newer addition to the HDTV bestiary, and is the new, hip product to push on consumers.

Plasma: Plasmas use the same technology that the Fluorescent lights over your head use to light televisions. Plasma screens were the Rolls Royce of television screens for years, with LED displays only recently being pushed into the forefront.

Rear Projection: Also called RPTV, rear projection TVs are effectively projectors casting high-resolution images on the back of large screens, similar to movie theater projectors, except contained in a television unit.

Composite: The yellow video cable that connects old-fashioned analog signal into televisions. Composite connections are only low-resolution, and are not ideal for HDTVs.
Component: A cable connection splitting video into three signals, allowing for HD signal.

HDMI: The standard for digital input, HDMI is a digital connection for devices to televisions, capable of output of high-def video and audio.

DVI: The PC input counterpart for HDMI, How-To Geek has already explained the differences between HDMI and DVI.

Liquid Crystal Display (LCD) Televisions


lcd television

Liquid Crystal Displays, or LCD, were the first type of monitor to provide the smaller profile, allowing for thinner displays that provide good picture quality. While they do not have the depth of color range or high contrast ratios of CRT monitors, modern LCD TVs have a good range of color that can light up even bright rooms.

Liquid Crystals do not emit any light, and have to be backlit in order to produce bright colors. (If you’ve ever owned a first generation Gameboy Advance, you’ll understand what a non-backlit LCD screen looks like.) When an HDTV is classified as an LCD television, it usually means that it is backlit with CCFLs, or Cold Cathode Fluorescent Lamps.

Light Emitting Diode (LED) Televisions


led tv

While LED televisions are what is currently being pushed on consumers, they are not quite the breakthrough that the commercials would lead consumers to believe. LED televisions are actually LCD televisions that are lit with Light Emitting Diodes as opposed to the standard CCFLs, discussed in the LCD section, above. They do offer certain advantages, but as they are the new tech offered to consumers, they are pricier than older models, and do not necessarily have the best picture because they are newer.

CCFL-style LCD televisions and Plasma televisions use more energy than LED lights, which are extremely energy efficient producers of extraordinarily bright light. For this reason, LEDs are offered as the “Eco-conscious” alternative to Plasma and traditional LCD. They are also free of harmful chemicals like mercury.

There are two styles of LED televisions. One is called “edge-lit”, with lights set around the television frame; the other is “full-array,” with lights set behind the screen in a grid pattern. Edge-lit models reflect light into the center of the monitor, and are the thinnest, lightest models available. Since they have fewer lights inside, edge-lit LED models are cheaper compared to full-array models. Full-arrays, however, have the best contrast ratios in LED technology.

LED does not quite live up to the contrast ratios and colors Plasma displays can create, although they do have excellent image quality and contrast ratios no standard LCD screen can hold a candle to.

Plasma Televisions


plasma ball

When electric currents (electrons) are passed through positively-charged gasses (protons and neutron nucleuses) inside bulbs. This soup of electrical current and ions is called “Plasma,” and emits light (photons) at different wavelengths (colors). So what does this mean for your television?
Plasma screen televisions produce some of the best image quality consumers are likely to find. Their model is well suited for larger screens, and provides some of the best contrast ratios and colors available. Plasmas are also small profile, thin monitors, capable of being hung on walls like LCD or LED televisions. Pixel response is also a key benefit to plasma televisions; their images are rendered quickly, countering image blurring effects of fast-moving images on screen, providing clear pictures. In addition to all of this. Plasma televisions also have the widest angle viewing image, with quality constant from direct, in-front viewing to side angles, delivering a better picture to a larger crowd.
While they can provide some of the best images, Plasmas are the biggest energy hogs of modern flatscreen HDTVs. While many are Energy Star compliant, LEDs consume less power and contain fewer harmful chemicals. Eco-conscious and ethical gadget buyers may wish to consider this when buying a television. Plasmas are also more vulnerable to burned-in images than LCD/LED flatscreens if users are not as careful as they should be.

Rear Projection Televisions (RPTVs)


RPTV

The forgotten ancestor to theater televisions, RPTVs still have a lot to offer consumers. Since they are lit from the back by projectors, their contrast ratio is somewhat more limited, and their images look best in dark rooms. They are also thicker and deeper than any modern HDTV, which is usually a flatscreen to be mounted on the wall. While many modern projection televisions are thinner than older models, many consumers see this as a limitation, as space and viewing distance may be an important buying factor.

You’ll find that RPTVs are surprisingly lightweight, because they are almost entirely empty space. Moving an RPTV is a simple task, while some dense flatscreens may actually be heavier by comparison.

Because the images are projected, the cost of huge screens is similar to the cost of smaller units, with excellent picture quality and reasonably price on units as large as 82 inches. By comparison, Plasma or LED screens of that size would be so outrageously expensive, most stores would not care to carry them. Despite their shortcomings, RPTVs can deliver an excellent HD experience to the budget-conscious home theater.

3D-Capable Televisions


3d tvshot

Capitalizing on the current 3D movie trend, many HDTVs are including 3D-Capable hardware in their monitors. 3D Televisions and hardware are complex, confusing, and potentially very expensive. Stay tuned to How-To Geek for a complete rundown on 3D HDTVs, and what you’ll need to get 3D in your home theater.


Source: howtogeek