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  2. Nipkow disk - Wikipedia

    en.wikipedia.org/wiki/Nipkow_disk

    One of the advantages of using a Nipkow disk is that the image sensor (that is, the device converting light to electric signals) can be as simple as a single photocell or photodiode, since at each instant only a very small area is visible through the disk (and viewport), and so decomposing an image into lines is done almost by itself with little need for scanline timing, and very high scanline ...

  3. Paul Gottlieb Nipkow - Wikipedia

    en.wikipedia.org/wiki/Paul_Gottlieb_Nipkow

    Paul Julius Gottlieb Nipkow (German: [ˈpaʊl ˈgɔtliːp ˈnɪpkɔv]; 22 August 1860 – 24 August 1940) was a German electrical engineer and inventor. He invented the Nipkow disk , which laid the foundation of television , since his disk was a fundamental component in the first televisions. [ 1 ]

  4. Technology of television - Wikipedia

    en.wikipedia.org/wiki/Technology_of_television

    The elements of a simple broadcast television system are: . An image source. This is the electrical signal that represents a visual image, and may be derived from a professional video camera in the case of live television, a video tape recorder for playback of recorded images, or telecine with a flying spot scanner for the transfer of motion pictures to video).

  5. Mechanical television - Wikipedia

    en.wikipedia.org/wiki/Mechanical_television

    This was a spinning disk with a spiral pattern of holes in it, so each hole scanned a line of the image. Although he never built a working model of the system, Nipkow's spinning-disk image rasterizer was the key mechanism used in most mechanical scan systems, in both the transmitter and receiver. [5]

  6. System of units of measurement - Wikipedia

    en.wikipedia.org/wiki/System_of_units_of_measurement

    A system of units of measurement, also known as a system of units or system of measurement, is a collection of units of measurement and rules relating them to each other. Systems of measurement have historically been important, regulated and defined for the purposes of science and commerce .

  7. International System of Units - Wikipedia

    en.wikipedia.org/wiki/International_System_of_Units

    The International System of Units, internationally known by the abbreviation SI (from French Système international d'unités), is the modern form of the metric system and the world's most widely used system of measurement. It is the only system of measurement with official status in nearly every country in the world, employed in science ...

  8. Historical Russian units of measurement - Wikipedia

    en.wikipedia.org/wiki/Historical_Russian_units...

    Historical Russian units of measurement were standardized and used in the Russian Empire and after the Russian Revolution, but were abandoned after 21 July 1925, when the Soviet Union adopted the metric system. The Tatar system is very similar to the Russian one, but some names are different.

  9. List of human-based units of measurement - Wikipedia

    en.wikipedia.org/wiki/List_of_human-based_units...

    This is a list of units of measurement based on human body parts or the attributes and abilities of humans (anthropometric units). It does not include derived units further unless they are also themselves human-based. These units are thus considered to be human scale and anthropocentric.