Module descriptions – Grass Valley KAM-XM-SERIES v.1.4.1 User Manual
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KAM-XM-SERIES Instruction Manual
Module Descriptions
The KAM-XM Up/Down conversion series modules also feature:
•
Proprietary Teranex™ PixelMotion™ De-interlacing,
•
Support of SD and HD video with embedded audio, including
Dolby-E,
•
Hot-swap capability,
•
Operates in the same frame with other 2000 and Kameleon modules,
•
Three external GPI inputs to trigger selectable Preset 1-10 registers,
•
Network control with the Newton Control Panel or Kameleon web con-
trol, and
•
Support of NetConfig™ configuration tool and NetCentral™
SNMP-based monitoring system.
Module Descriptions
Each KAM-XM module uses the same circuit board with the application
software enabled for the particular module type. The module type is iden-
tified by a sticker on the circuit board and the Model name is identified in
the web page header. For up/down conversion rates supported, refer to
The modules described in this manual include the following:
•
KAM-XM-UDC – supports broadcast quality up and down conversion
of SD and HD video with embedded audio with the standard conver-
sion controls. This application utilizes de-interlacing on a
pixel-by-pixel basis for preserving fine detail from the original image.
Down conversion offers an anti-aliasing filter.
•
KAM-XM-UNC – supports broadcast quality HD up conversion for
SDI video with or without embedded audio with the standard conver-
sion controls. In addition, this module also offers advanced noise
reduction with adaptive median spike, brickwall, and temporal recur-
sive filter controls. This application utilizes de-interlacing on a
pixel-by-pixel basis for preserving fine detail from the original image.
•
KAM-XM-UPC – supports broadcast quality HD up conversion for SDI
video with or without embedded audio with the standard conversion
controls. This application utilizes de-interlacing on a pixel-by-pixel
basis for preserving fine detail from the original image.
•
KAM-XM-DNC – this broadcast quality down converter application
also utilizes de-interlacing on a pixel-by-pixel basis. Once the image
has been de-interlaced and down converted, detail enhancement can be
applied to the image to further shape the output. The first two groups
of audio from the HD video are re-embedded into the standard defini-
tion SDI video signal.