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2019年3月31日星期日

What the difference is between MPEG-2, MPEG-4, H.264, AVCHD and H.265? | Soukacatv.com

If you’re like me, you might have wondered what the difference is between MPEG-2, MPEG-4, H.264, AVCHD and H.265, and how they are related.

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This article explains exactly this, without going into technicalities. By the end, you will have a clear idea of which is which, and which ones you should remember. If you’re totally new to all this, start by reading What is Video Compression?

We’ll use the following table as reference. Don’t read it just yet, but keep coming back to it as the article progresses, and everything will be clear. Click on the image to enlarge.

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MPEG and ITU-T VCEG
In the beginning there was COST 211 (don’t worry, they don’t exist anymore). They created the H.120 standard, which basically flopped. But it paved the way for what we have today.

The ITU-T VCEG (Video Coding Expert Group) formed to improve upon H.120, and that’s all we have to know about that.

MPEG (Moving Pictures Experts Group) formed to find a way to incorporate codecs for broadcast work. To this day, the two committees – MPEG and VCEG, work side-by-side. MPEG specializes in broadcast (television), while the ITU (International Telecommunications Union) focuses on telecommunications (phone, internet).

In today’s world, their goals mostly overlap (because everything is going the way of the Internet), and this association is likely to continue.
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H.120
This started it all, but didn’t do well. It had two versions, one for PAL and the other for NTSC.

H.261 and JPEG
In 1988, H.261 was created by the VCEG, mainly for ISDN/Videoconferencing work. It had a maximum bit rate of 2 Mbps, but was limited with a chroma sub-sampling of 4:2:0.

JPEG (Joint Photographic Experts Group) became a popular codec of choice for images right about that time, and in the same ‘vein’, MPEG was formed to take care of the broadcast industry’s needs.

MPEG-1
MPEG adopted H.261 and JPEG together to form what is called a ‘Suite’. The specific name for the first suite is MPEG-1.

It was limited to 1.5 Mbps, 4:2:0 and stereo audio only. At the time, there was PAL, NTSC and VHS, and that’s all it had to cater to.

Parts and Layers
MPEG suites have sub-divisions, called Parts. Traditionally, Part 1 is always for the ‘System’ (file format). Part 2 is for video, and Part 3 is for audio. Look at the image and you’ll see this clearly.

MPEG-1 Part 2 is also H.261, for our purposes.

Parts are further sub-divided into Layers. Audio has three or more layers, called Layer I, Layer II and Layer III and so on.

MP3
It just so happens that MPEG-1 Part 3 Layer III is called MP3. It does NOT stand for MPEG-3, but the third layer of the third part of the MPEG suite. This version of MP3 was also limited to stereo (two channels only).

MPEG-2
In 1999, technology had advanced enough to warrant an upgrade of the suite.

Part 1 of the MPEG-2 suite had two major classifications: Program Stream and Transport Stream.

Part 2, video is also called H.262. It had additional support for interlacing and 4:2:2. The big change for audio was the addition of 5.1 channels, and MP3 was revised to incorporate this specification.

Most of broadcast television adopted MPEG-2, and it is still the most widely used codec today for broadcast. Additionally, DVD incorporated this technology, and was able to include surround sound as a result.

MPEG-2 also had more than three parts. The most important of these (not shown in the image) is Part 7, called the Advanced Audio Coding (AAC) audio format.

Professional camera codecs that use MPEG-2 include HDV and XDCAM.

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MPEG-4
By 2004 the world had suddenly discovered the Internet. MPEG was ready with the third suite, MPEG-4 (MPEG-3 was not used). This suite incorporates a whole lot of technology from the beginning of this century till 2012 or so.

Part 2, or technically MPEG-4 Part 2, is also called H.263. It included a new concept called ‘Profiles’ which we’ll look at last. HDCAM SR uses this specific Part.

Part 3 is still audio. AAC has been incorporated into Part 3.

MPEG-4 has about 30 parts, one for each technology. The two parts we are most concerned with are Parts 10 and 14.
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H.264 or MPEG-4 Part 10/AVC
Part 10, or technically MPEG-4 Part 10, describes the AVC (Advanced Video Coding) format. This is H.264. Rather than start a new suite, they decided to add this as a Part.

H.264 is the most widely used codec on earth, even surpassing broadcast MPEG-2, simply due to the power of the internet. It is used by Youtube, and every other video provider of note.

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It is also the codec that drives Blu-ray. Many broadcast pipelines and distribution channels have adopted H.264 (and MPEG-4 Part 2) as well.

Sony has added the XAVC codec (see the ‘AVC’ in the name?) to its line-up because XDCAM couldn’t deal with 4K and above.

MP4
Part 14 describes a container format for MPEG-4 codecs, as in *.mp4. That’s all this is.

AVCHD
Sony and Panasonic took the parts they liked about H.264 and called it AVCHD (MPEG-4 Part 10 AVC+HD). The key differences between AVCHD and H.264 is the former supports Dolby AC-3 encoding in addition to LPCM, and is limited by a total bit rate of 24 Mbps.

Whereas H.264 is designed as a distribution format (all MPEG suites are distribution formats, for the end user), AVCHD is designed for cameras as an acquisition format as well.

Quality-wise, there’s no difference.

AVCHD 2.0
AVCHD 2.0 keeps up with a newer version of H.264 with better compression and sampling. But it’s still 4:2:0 and is limited to 28 Mbps. Make no mistake, AVCHD is a consumer codec.

HEVC or H.265
As of 2013, the new kid on the block is MPEG-H. Part 2 (video, of course) is also called H.265 or HEVC (High Efficiency Video Coding). There are many vendors already claiming compatibility with this new format. Here are its key benefits:

Up to 8K UHDTV (8192×4320 maximum)
12-bit color bit depth
4:4:4 and 4:2:2 chroma sub-sampling
Supports up to 300 fps (earlier versions only supported up to 59.94 fps)
Data rates of several GB/s
File size ‘subjectively’ half the size of H.264 with better quality!
This is clearly the future. However, don’t bet on H.264 going away anytime soon. Who’s going to transcode the billions of H.264 videos already online?

Profiles
The new reality of the MPEG suite, beginning with MPEG-4, is the concept of Profiles and Levels – in addition to Parts and Layers. Profiles are like presets, specific variants of the specification to be used for specific applications.

After all, the MPEG-4 specification with its thirty parts is quite large. Why would an encoder or software need to comply with all of it, if its chosen function is only for a specific need?

Profiles are unfortunately a necessary evil. Technology is moving too fast for committees to keep up, and many vendors don’t have to comply to the broadcast model anymore. Internet means freedom, and anyone can create a new variant of a codec (after paying the right licenses) and stream his or her videos in that proprietary format. Hell, you could even invent a completely new format, or encode your videos in H.120 if you like!

Established in 2000, the Soukacatv.com main products are modulators both in analog and digital ones, amplifier and combiner. We are the very first one in manufacturing the headend system in China. Our 16 in 1 and 24 in 1 now are the most popular products all over the world.
For more, please access to https://www.soukacatv.com.













CONTACT US
Company:Dingshengwei Electronics Co., Ltd
Address : BldgA,the first industry park of Guanlong,Xili Town,Nanshan,Shenzhen,Guangdong,China
Tel : +86 0755 26909863
Fax : +86 0755 26984949
Mobile : 13410066011
Email : ken@soukacatv.com

Source: wolfcrow

2019年3月7日星期四

Analog TV Vs Digital TV Broadcasting Techniques | Soukacatv.com Digital Modulator

Following Zimbabwe’s failure to meet the three deadlines set by International Telecommunications Union (ITU) to migrate from analogue to digital broadcasting, 263Chat has decided to research more into the technical differences between analogue and modern digital broadcasting techniques.

First of all, it is important to note that Analogue TV broadcasting is now considered obsolete and is being super-seeded by Digital TV broadcasting techniques marked by high quality content through modern transmission media such as fibre optic cables and digital satellite.

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“Zimbabwe is required to migrate from the current analogue broadcasting technology to the digital broadcasting technology by 17 June 2015, in accordance with the migration deadline set by the International Telecommunications Union” wrote the Broadcasting Authority of Zimbabwe.
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What is analogue television broadcasting?. Analogue television broadcasting is the use of the analogue technology in the transmission and reception of television broadcasting services. The analogue technology has been in existence since the use of technology in different everyday applications, including in telecommunication and broadcasting.

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The analogue technology essentially converts information (sound and pictures in the case of broadcasting) into electrical signals which are then used by the system to convey the information, say, through modulation of frequencies for the actual transmission.
What is digital television broadcasting?. Digital television broadcasting is the use of the digital technology in the transmission and reception of broadcasting services. The term ‘digital’ implies using digits or numbers in the representation of the information (again sound and pictures in broadcasting).
The two technologies (analogue and digital) are essentially the same in terms of information acquisition in that both convert the acquired information (sound, pictures) into electrical signals.
However, instead of using the electrical signal directly, the digital technology takes representative samples of the original signal and converts these samples to digits, into what becomes a digital representation of the information. This digital information is then used in the application at hand.
Digital television broadcasting technologies have given birth to new exciting broadcasters such as Kwese’ TV, a flagship of the Econet Media Group. The rise of Kwese’ and its widespread popularity can only be credited to the high quality content they deliver far much ahead of their state broadcaster counterpart ZBC.
Digital television broadcasting has given the MultiChoice Africa Group a household name with their DSTv content delivered through high quality digital satellite television signals.

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Established in 2000, the Soukacatv.com main products are modulators both in analog and digital ones, amplifier and combiner. We are the very first one in manufacturing the headend system in China. Our 16 in 1 and 24 in 1 now are the most popular products all over the world.
For more, please access to https://www.soukacatv.com

CONTACT US
Company:Dingshengwei Electronics Co., Ltd
Mobile : 13410066011
Email : ken@soukacatv.com
Website: https://www.soukacatv.com
Tel : +86 0755 26909863
Fax : +86 0755 26984949
Address : BldgA,the first industry park of Guanlong,Xili Town,Nanshan,Shenzhen,Guangdong,China

Source: 263chat

2019年3月4日星期一

Q&A: Connecting Digital Cable to TV Through RF Modulator | Soukacatv.com

Question:

"I need help hooking up my TV to digital cable, DVD and VCR. I have a RF modulator, but no instructions. My TV is an older set with one cable hook up - the modulator has room for 4 hookups. Please, any help would be greatly appreciated."

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Answer:

This is a problem a lot of people have - with or without a RF modulator. In this case, we'll attack the problem with the RF modulator in mind. After you connect everything you'll notice working with a RF modulator is just like working without one, except those with a RF modulator will have one device between their video signal and television.

As for the instructions, I am going to assume the DVD player is not a combo unit with the VCR, and that you want to record TV on your VCR. Step 4 will include connecting your DVD player, but if the DVD player is a combo unit with the VCR, just ignore Step 4 as DVD connection will be included in the VCR set up.

Step 1: Connect the coaxial cable coming out from the wall to your digital cable box in the ‘video in’ slot. It might also be labeled ‘antenna in’ or ‘cable in’.

Step 2: From the cable box, connect a coaxial or composite (yellow video cable) and stereo (red-white) RCA audio cables to the VIDEO IN terminal on your VCR.

Step 3: From the VCR, you will have to connect this to the RF Modulator using a coaxial cable from the VIDEO OUT on the VCR to one of the IN ports on your RF modulator.

Step 4: You can now connect your DVD player to the RF Modulator by using the yellow-red-white composite/RCA cables from the VIDEO OUT on the DVD player to another port on the RF modulator.

Step 5: From the RF modulator, connect this unit to your TV by using a coaxial cable. It will be from the VIDEO OUT on the RF modulator to the VIDEO IN or CABLE or ANTENNA IN port on your television.

This should be all you need to get started watching your digital television. In simple terms here is what you did:
Coaxial from wall to cable box
Cable box to VCR
VCR to RF modulator
DVD player to RF Modulator
RF modulator to TV

You will only be able to record what is on channel three because the digital cable will require you be on channel three. As for future connections to the RF modulator - just plug your viewing device into it and hit the button activating the video signal for the device you want to view. As long as it is connected to the television and the TV is on channel three, you should be able to see your video signal.

Established in 2000, the Soukacatv.com main products are modulators both in analog and digital ones, amplifier and combiner. We are the very first one in manufacturing the headend system in China. Our 16 in 1 and 24 in 1 now are the most popular products all over the world.
For more, please access to https://www.soukacatv.com/








CONTACT US
Company:Dingshengwei Electronics Co., Ltd
Mobile : 13410066011
Email : ken@soukacatv.com
Tel : +86 0755 26909863
Fax : +86 0755 26984949
Address : BldgA,the first industry park of Guanlong,Xili Town,Nanshan,Shenzhen,Guangdong,China

Source: lifewire