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B-MAC

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(Redirected from B-Multiplexed Analogue Component)
The simultaneous PAL transmission of all TV-picture elements and the multiplexed transmission of the TV picture elements with D2-MAC.
Simulated MAC signal. From left to right: digital data, chrominance and luminance

B-MAC is a form of analog video encoding, specifically a type of Multiplexed Analogue Components (MAC) encoding. MAC encoding was designed in the mid 80s for use with Direct Broadcast Satellite systems. Other analog video encoding systems include NTSC, PAL and SECAM. Unlike the FDM method used in those, MAC encoding uses a TDM method. B-MAC was a proprietary MAC encoding used by Scientific-Atlanta for encrypting broadcast video services; the full name was "Multiple Analogue Component, Type B".

B-MAC uses teletext-style non-return-to-zero (NRZ) signaling with a capacity of 1.625 Mbit/s. The video and audio/data signals are therefore combined at baseband.

  • Both PAL (626/50) and NTSC (525/60) versions of B-MAC were developed and used.

User base (PAL/NTSC zones)

  • This system was used in South Africa and Australia (for TVRO until 2000).
  • B-MAC was used for satellite broadcasts of the American Forces Radio and Television Service from the early 1980s until 1996-1997 when the analogue standard was replaced by the digital PowerVu system.
  • B-MAC has not been used for DTH applications since Primestar switched to an all-digital delivery system in the mid-1990s.

Technical details

MAC transmits luminance and chrominance data separately in time rather than separately in frequency (as other analog television formats do, such as composite video).

Audio and Scrambling (selective access)

  • Audio, in a format similar to NICAM was transmitted digitally rather than as an FM subcarrier.
  • The MAC standard included a standard scrambling system, EuroCrypt, a precursor to the standard DVB-CSA encryption system.

See also

References

  1. Report 1074-1 - Satellite transmission of multiplexed analogue component (MAC) vision signals (PDF). ITU. 1990. p. 48.
  2. Conradie, D.G. (19 June 1988). "The SABC's TV/radio satellite distribution system". COMSIG 88@m_Southern African Conference on Communications and Signal Processing. Proceedings. pp. 51–55. doi:10.1109/COMSIG.1988.49301. ISBN 0-87942-709-4. S2CID 131163463 – via IEEE Xplore.
  3. "8.3 Multiplexed Analogue Components Transmissions". happy.emu.id.au.
  4. "Scientific-Atlanta's PowerVu Technology Helping AFRTS Expand the Delivery of A Touch of Home to Military Abroad" (Press release). Atlanta, GA: Scientific Atlanta. PR Newswire. Retrieved 2014-05-29.

External links

Digital video resolutions
Designation
Usage examples Definition (lines) Rate (Hz)
Interlaced (fields) Progressive (frames)
Low,
MP@LL
LDTV, VCD, HTV 240, 288 (SIF)   24, 30; 25
Standard,
MP@ML
SDTV, SVCD, DVD, DV 480 (NTSC), 576 (PAL/SECAM) 60; 50 24, 30; 25
Enhanced,
HMP@HML
EDTV 480, 540 (NTSC-HQ), 576 (PAL-HQ)   24, 30; 25
High,
MP@HL
HDTV, BD, HD DVD, HDV 720   24, 30, 60; 25, 50
1080, 1440 60; 50 24, 30, 60; 25, 50
Ultra-high
UHDTV, UHD BRD 2160, 4320   60, 120, 180
Broadcast video formats
Television
Analog
405 lines
525 lines
625 lines
819 lines
1125 lines
1250 lines
Audio
Hidden signals
Historical
Digital
Interlaced
Progressive
MPEG-2 Video
AVS
AVS+
MPEG-4 Visual
MPEG-4 AVC
AVS2
MPEG-H HEVC
Audio
Hidden signals
  1. ^ Also used in China's DVB-S/S2 network.
  2. ^ Defunct.
Technical issues
Analog television broadcasting topics
Systems
Color systems
Video
Sound
Modulation
Transmission
Frequencies & bands
Propagation
Testing
Artifacts
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