This is a way to show color on a TV. 
Long ago, people wanted color on their TV. 

Long ago, people wanted color on their TV. 

In older systems, colors could shift or change. This was a big problem during bad weather. PAL fixes this by canceling out those errors. Most of Europe and parts of Asia use PAL. It uses 625 lines to make a picture. It also shows 50 fields every second.
Long ago, people wanted to see colors on their television screens. 
To understand how it works, we can look at the signal itself. PAL uses a method where the phase of the color signal reverses on every single line. The phase is like the timing of the waves in the signal. 

There are many specific details about how PAL functions. It usually broadcasts at 625 lines to create the image. It also uses 50 fields per second to show motion. 

Phase Alternating Line, or PAL, is a major color encoding system for analog television. 
To understand the mechanism, we must look at how the signal handles color. PAL uses a variant of the Y′UV color space. This system separates the monochrome luma signal, which is the brightness, from the chrominance, which is the color. 

Because the phase reverses every line, receivers need a way to process this information. Many receivers use a chrominance analogue delay line. This component stores the color information from the previous line so it can be compared to the current line. By averaging the color information from both lines, the receiver can cancel out errors. If errors are not corrected this way, they can cause the colors to shift in hue. In the PAL system, these errors usually result in changes to saturation instead. While this makes the vertical color resolution slightly lower than NTSC, the human eye does not notice the difference. 
History shows that PAL was born from a need for better stability. In the 1950s, Western European countries began planning for color television. They noticed that the NTSC standard had weaknesses, such as color tone shifting during poor transmission. This was a major issue due to Europe's specific geography and weather. To fix this, Walter Bruch developed PAL while working at Telefunken in Hanover, West Germany. He patented the format in December 1962 and unveiled it to the European Broadcasting Union in January 1963. Interestingly, Bruch did not name the system after himself. He joked that a "Bruch system" would not sell well because "Bruch" is the German word for "breakage." 
The rollout of PAL happened in stages across different nations. The first broadcasts began in the United Kingdom in July 1967. West Germany followed shortly after at the Berlin IFA on August 25 of that same year. The Netherlands and Switzerland began their PAL broadcasts by 1968, and Austria followed in 1969. In Italy, a different system called ISA was proposed, but it was abandoned in 1975 in favor of PAL. Even the Soviet Union tested its own versions, known as TRIPAL and NIIR, though these never went beyond the testing phase.
PAL has a massive geographic reach. It was adopted by most European countries and many African nations, such as South Africa. It is also used in Argentina, Brazil, Paraguay, and Uruguay. Much of the Asia Pacific region, including the Middle East and South Asia, uses PAL as well. However, some regions did not adopt it. France and Francophone Africa used SECAM instead. Japan, South Korea, Taiwan, and several ex-Soviet states also used different standards. The technical specifications for PAL were officially last published by the International Telecommunication Union in 1998 as Recommendation ITU-R BT.470.
Today, the term "PAL" is often used in a way that relates to modern digital technology. Even though we no longer use analog signals for most things, the name persists. For example, a "PAL DVD" refers to a digital format that uses 576 interlaced lines. This is intended to be backward compatible with older PAL devices. Similarly, video game consoles that output a 50 Hz signal are often labeled as "PAL" to distinguish them from 60 Hz NTSC machines. This usage is technically imprecise because digital signals use different encoding, like YCbCr, rather than the original analog PAL method. However, it helps users understand how the device connects to their television systems. 
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