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THE JOURNEY THROUGH TIME

Explore Black History

Explore the people, places, events, achievements, struggles and stories that shaped our journey.

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Civil Rights

Movements, leaders, victories and the continuing fight for equality.

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Black towns, communities, institutions and places where history happened.

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Events

Moments that changed communities, movements, institutions and the nation.

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MY'STORY

The MOVE Fire

This is a personal recollection on the Move fire on May 13, 1985 Philadelphia police fired thousands of rounds at the MOVE house, city officials approved dropping an explosive device on the roof, the resulting fire was allowed to burn, 11 people—including five children—died, and 61 homes were destroyed. Philadelphia City Council later called it a “brutal attack carried out by the City of Philadelphia on its own citizens” and acknowledged that no individual faced criminal consequences for the bombing. One timeline correction worth preserving for the BHP record: the major previous MOVE-police confrontation was August 8, 1978, about seven years before the bombing, not a year or two earlier. Officer James Ramp was killed, other police and firefighters were wounded, nine MOVE members were later convicted, and television cameras recorded police beating Delbert Africa during his arrest. The 1985 MOVE Commission later specifically criticized city planners for failing to adequately use lessons from that 1978 confrontation. And that actually strengthens the point you’re making: 1985 did not happen without precedent or institutional memory. There had already been a deadly confrontation with MOVE, years of conflict, negotiations and police involvement before Osage Avenue.

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BLACK FACTS
The Truths They Never Taught You...

Katherine Johnson — Mathematics to the Moon

Katherine Johnson’s mathematical calculations helped guide some of America’s most important early space missions while she confronted the racial and gender barriers faced by Black women in twentieth-century America.

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BHP gathered finds from its connected research sources. Showing the 4 strongest Black History matches.
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Wikipedia

Broadcast-safe

Broadcast-safe video (broadcast legal or legal signal) is a term used in the broadcast industry to define video and audio compliant with the technical or regulatory broadcast requirements of the target area or region the feed might be broadcasting to.[1] In the United States, the Federal Communications Commission (FCC) is the regulatory authority; in most of Europe, standards are set by the European Broadcasting Union (EBU).

Broadcast-safe video

[edit]

Broadcast-safe standard-definition video

[edit]

Broadcast-safe 625 video

[edit]

Broadcast-safe standards for 625 lines of standard-definition (inaccurately referred to as PAL, a colour encoding that is usually used with such systems) video are:[2][3]

  • Common name = 625/50i (576i)[4]
  • Commonly used digital SD SDI baseband signal = SMPTE 259M-C, 270 Mbit/s bitrate
  • Commonly used number of vertical lines = 625 (576 visible active video)
  • Commonly used frame rate = 25 Hz (25 interlaced frame/s)
  • Commonly used TV resolution = 720 × 576 (576i)
  • Black levels = 0 mV or 0 IRE
  • White levels (chrominance amplitude):
    • 700 mV p-p or 100 IRE – 100% intensity setting which corresponds to 100.0.100.0 SMPTE color bars.
    • 75% intensity corresponding to 100.0.75.0 color bars, also referred to as EBU bars.
Variants
[edit]
Resolution Aspect ratio Pixel aspect ratio Form of scanning Framerate (Hz)
Vertical Horizontal
576 352 4:3 or 16:9 non-square interlaced 25 (50 fields/s)
progressive 25
480 4:3 or 16:9 non-square interlaced 25 (50 fields/s)
progressive 25
544 4:3 or 16:9 non-square interlaced 25 (50 fields/s)
progressive 25
720 4:3 or 16:9 non-square interlaced 25 (50 fields/s)
progressive 25
50

Broadcast-safe 525 video

[edit]

Broadcast-safe standards for 525 lines of standard-definition (System M, NTSC, NTSC-J, PAL-M) video are:[5][6][7][8][9]

  • Common name = 525/60i (480i)[4]
  • Commonly used digital SD SDI baseband signal = SMPTE 259M-C, 270 Mbit/s bitrate
  • Commonly used frame rate = 30 frame/s black-and-white, 29.97 interlaced frame/s color
  • Black level = 7.5 IRE for NTSC, 0 IRE for NTSC-J in Japan and PAL-M in Brazil.
  • Blanking level = 0 IRE
  • White levels = 100 IRE, 714 mV
  • Maximum signal level = 120 IRE
  • Minimum signal level = −20 IRE
Variants
[edit]
Resolution Aspect ratio Pixel aspect ratio Form of scanning Framerate (Hz)
Vertical Horizontal
480 640 4:3 square interlaced 29.97 (59.94 fields/s)
30 (60 fields/s)
progressive 23.976
24
29.97
30
59.94
60
720 4:3 or 16:9 non-square interlaced 29.97 (59.94 fields/s)
30 (60 fields/s)
progressive 23.976
24
29.97
30
59.94
60

Broadcast-safe high-definition video

[edit]

Digital broadcasting is very different from analog. The NTSC and PAL standards describe both transmission of the signal and how the electrical signal is converted into an image. In digital, there is a separation between the subject of how data is to be transmitted from tower to TV and the subject of what content that data might contain. While data transmission is likely to be a fixed and consistent affair, the content could vary from high-definition video to SD multicasting the next, and even to non-video datacasting. For ATSC 1.0, 8VSB transmits the data, while MPEG-2 encodes pictures and sound.

Resolution Aspect ratio Pixel aspect ratio Form of scanning Frame rate (Hz)
Vertical Horizontal
720 1280 16:9 square progressive 23.976
24
25
29.97
30
50
59.94
60
1080 1920 16:9 square interlaced 25 (50 fields/s)
29.97 (59.94 fields/s)
30 (60 fields/s)
progressive 23.976
24
25
29.97
30
50
59.94
60

Broadcast-safe audio

[edit]

Broadcast engineers in North America usually line up their audio gear to nominal reference level of 0 dB on a VU meter aligned to +4 dBu or −204 dBFS, in Europe equating to roughly +44 dBm or −184 dBFS. Peak signal levels must not exceed the nominal level by more than +10 dB.[10]

Broadcast audio as a rule must be as free as possible of Gaussian noise, that is to say, it must be as far from the noise floor, as is reasonably possible considering the storage or transmission medium.

Broadcast audio must have a good signal-to-noise ratio, where speech or music is a bare minimum of 164 dB above the noise of the recording or transmission system. For audio that has a much poorer signal-to-noise ratio (like cockpit voice recorders), sonic enhancement is recommended.

Non-standard video

[edit]

Although almost any video gear can create problems when broadcast, equipment aimed at consumers sometimes produces video signals which are not broadcast safe. Usually this is to reduce the cost of the gear, since a non-standard video signal in the home might not create the problems that one might find in a broadcast facility. Potential flaws exist with:

  • VHS and 8 mm: Consumer devices generally lack time base correction that may cause problems with genlock and sync with some analogue and digital broadcast equipment. Consumer analogue video systems have greater system noise and lower chrominance and luminance than is normal for standard definition TV. As a general broadcast engineering rule all analogue videotape origin material should be genlocked before transmission, but this is not mandatory or necessary for all conditions. All analogue videotape by default is broadcast safe under normal playing conditions.
  • Older video game systems: Video game consoles before the sixth generation and 8-bit home computers generated a video signal lacking the half scan line needed to make interlacing happen. This subtle simplification caused NTSC sets to scan 240p/60 instead of 480i60, with similar results for PAL. While this actually improved picture quality for the kind of low-definition images that videogames of this era generated, such a signal modification could cause problems in a broadcast environment as the signal behaviour is outside the original television system specifications. Genlocking—but not timebase correction—are the recommended broadcast engineering solutions.
  • Computer video signals: Computer video can be set up to run at many different frame or field rates, ranging 50 frame/s to more than 240 frame/s. Computer video is generally progressive by default, but many interlaced modes exist. A scan converter is typically needed to convert these signals to one of the many acceptable broadcast standards, such as 59.94 Hz or 50 Hz. This type of conversion typically degrades the quality of the broadcast image, usually resulting with either "motion artifacts" or a lower resolution. It is recommended that the display rate be set to equal the target television rate if possible.

In digital television only environments

[edit]

In nations that have fully converted to digital television, broadcast safe analogue television takes on a slightly different meaning. All broadcasting systems will have been mostly converted to digital only outputs, leaving fewer entry points for analogue television signals.[citation needed]

What this means is that all devices that feed to the television transmitter must take in and feed standard analogue television signals into the transmission chain. Mostly it is up to the switcher to notify if there is non-broadcast safe video to the programmer. However, due to the limitations of many switchers for DTV and HDTV it ultimately is up to the automation systems to alert the programmer of non-broadcast safe video inputs.[citation needed]

As a matter of broadcast engineering practice, 4:3 analogue television signals will always pose the most problems with broadcast safe compliance. The use of portable and cheap timebase-genlock systems for analogue television inputs in the digital television studio will be clearly mandatory for the next 50 years.[original research?]

See also

[edit]

References

[edit]
  1. ^ "Learn". Archived from the original on 1 October 2011. Retrieved 22 March 2015.
  2. ^ Composite video measurements. Matrox. Archived January 7, 2008, at the Wayback Machine.
  3. ^ "PAL Colour Bars". VideoUniversity.com. Archived from the original on 8 February 2012. Retrieved 22 March 2015.
  4. ^ a b "Digital Video Encoding (DV, DVCAM, DVCPRO)". February 2012. Retrieved 22 March 2015.
  5. ^ "VideoUniversity.com - Engineering Primer". Archived from the original on 3 March 2016. Retrieved 22 March 2015.
  6. ^ The Color Bars Signal – Why and How. Tektronix.
  7. ^ "7.5 IRE Setup". Retrieved 22 March 2015.
  8. ^ "Final Cut Pro, Avid Media Composer, and Premiere Training". Retrieved 22 March 2015.
  9. ^ "Broadcast Requirements for Commercials and Informercials". VideoUniversity.com. Archived from the original on 4 March 2016. Retrieved 22 March 2015.
  10. ^ "Shure Tech Tip: VU and PPM Audio Meters – An Elementary Explanation". Retrieved 22 March 2015.

Source: Wikipedia. Article content is retrieved live through the MediaWiki API.

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Wikipedia

Broadcast-safe

Broadcast-safe video (broadcast legal or legal signal) is a term used in the broadcast industry to define video and audio compliant with the technical or regulatory broadcast requirements of the target area or region the feed might be broadcasting to. In the United States, the Federal Communications Commission (FCC) is the regulatory authority; in most of Europe, standards are set by the European Broadcasting Union (EBU).

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Wikipedia

Online editing (video production)

Online editing is a post-production linear video editing process that is performed in the final stage of a video production. It occurs after offline editing. For the most part, online editing has been replaced by video editing software that operate on non-linear editing systems (NLE). High-end post-production companies still use the Offline-Online Editing workflow with NLEs. The term online originated in the telecommunication industry, meaning "Under the direct control of another device" (automation). Online editors such as the Sony BVE-9000 edit control unit used the RS-422 remote control 9-Pin Protocol to allow the computer-interface of edit controllers to control video tape recorders (VTR) via a series of commands. The protocol supports a variety of devices including one-inch reel-to-reel type C videotape as well as videocassette recorders (VCR) to Fast-Forward, Rewind and Play and Record based on SMPTE time-code. The controllers have the ability to interface with professional audio equipment like audio mixers with console automation. The video quality first introduced with Avid's Media Composer in 1989 was incapable of producing broadcast quality images due to computer processing limitations. The term 'Online' changed from its original meaning to where the pictures are re-assembled at full or 'online++' resolution. An edit decision list (EDL) or equivalent is used to carry over the cuts and dissolves created during the offline edit. This conform is checked against a video copy of the offline edit to verify that the edits are correct and frame-accurate. This work-print (cutting copy in the UK) also provides a reference for any digital video effects that need to be added. After conforming the project, the online editor will add visual effects, lower third titles, and apply color correction. This process is typically supervised by the client(s). The editor will also ensure that the program meets the technical delivery broadcast safe specs of the broadcaster, ensuring proper video levels, aspect ratio, and blanking width. Sometimes the online editor will package the show, putting together each version. Each version may have different requirements for the formatting (i.e. closed blacks), bumper music, use of a commercial bumper, different closing credits, etc. Projects may be re-captured at the lowest level of video compression possible – ideally with no compression at all.

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Wikipedia

Broadcast television systems

Broadcast television systems (or terrestrial television systems outside the US and Canada) are the encoding or formatting systems for the transmission and reception of terrestrial television signals. Analog television systems were standardized by the International Telecommunication Union (ITU) in 1961, with each system designated by a letter (A-N) in combination with the color standard used (NTSC, PAL or SECAM) - for example PAL-B, NTSC-M, etc.). These analog systems for TV broadcasting dominated until the 2000s. With the introduction of digital terrestrial television (DTT), they were replaced by four main systems in use around the world: ATSC, DVB, ISDB and DTMB.

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Wikipedia

Not safe for work

Not safe for work (NSFW), also known as not suitable for work, is Internet slang or shorthand used to mark links to content, videos, or webpages the viewer may not wish to be seen viewing in a public, formal, or controlled environment. The marked content may contain graphic violence, pornography, profanity, nudity, slurs, or other potentially disturbing subject matter. Environments that may be problematic include workplaces, schools, and family settings. NSFW has particular relevance for people trying to make personal use of the Internet at workplaces or schools that have policies prohibiting access to sexual and graphic subject matter. Conversely, safe for work (SFW) is used for links that do not contain such material, especially where the title might otherwise lead people to think that the content is NSFW. The similar expression not safe for life (NSFL) is also used, referring to content which is so nauseating or disturbing that it might be emotionally scarring to view. Links marked NSFL may contain murder, gore, or certain fetish pornography. Some platforms, such as Reddit, Twitter, Patreon, or DeviantArt have long offered users the option to designate their content as NSFW, in order to warn others of its explicit nature before they access it, as well as to algorithmically separate it from SFW content.

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TOPIC OF THE DAY

Greenwood / Black Wall Street

Before the 1921 destruction of Tulsa’s Greenwood District, Black residents had created a remarkable center of business and community life. The district included stores, professional offices, entertainment venues and homes owned by Black citizens. Understanding Greenwood means learning what was built—not only what was burned.

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TRIVIA QUESTION OF THE DAY

Which heavyweight champion was known as the “Brown Bomber”?

Joe Louis.