
8
Professional Display Engine
The high-precision signal processing engine has been developed to
fulfill the master monitor criteria and is optimized to maximize OLED
panel performance. This engine incorporates 12-bit output accuracy
at each process, and provides both a high quality I/P conversion
algorithm and a highly accurate color management system.
Nonlinear Cubic Conversion color management
The nonlinear cubic conversion color management system of BVM-E and BVM-F Series master
monitors use a unique 3D LUT (look-up table) to accurately reproduce the color gamuts of each
broadcast standard such as ITU-R BT.709, EBU, and SMPTE-C phosphor standards. In addition, the
OLED’s wide color gamut enables D-Cine emulation for digital intermediate work.*
* D-Cine is a color gamut emulating the color gamut described in SMPTE RP 431-2-2007. The chromaticity of the green-red region is
not covered in full; however, the color shift is subtle in this region. This feature is supported by the BVM-E Series only.
Cutting-edge I/P conversion
with low process delay
Sony’s original I/P conversion technology used in the BVM Series
minimizes processing artifacts found in typical upconversion processes.
This has been improved in the BVM-E and BVM-F Series so that an
interlaced image is displayed accurately and faithfully.
12-bit output accuracy signal processing
The BVM-E and BVM-F Series use a 12-bit display engine, which allows
images to be reproduced with high precision for display accuracy.
OLED Master Monitor
For Critical Picture Evaluation
BVM-E250A BVM-F250ABVM-E170A BVM-F170A
BVM-E Series BVM-F Series
0.900
0.800
0.700
0.600
0.500
0.400
0.300
0.200
0.100
0.000
0.100 0.200 0.300 0.400 0.500 0.600 0.700 0.800
520
510
500
490
480
470
530
550
570
590
610
700~
780
380~410
SMPTE-C
EBU
E250 NATIVE
D-Cine
B
G
R
Same color!
(OLED RGB)
(R90, G110, B100)
(CRT RGB)
(R100, G100, B100)
3D LUT
Nonlinear Cubic Conversion color management system
Sophisticated I/P conversion
Original source
1/60=16.6 ms
BVM-L 11.9 ms
BVM-E / BVM-F 6.2 ms
Picture delay reduced to half
Field 2
Field 1
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