Spec Sheet

Video | DINION IP starlight 8000 MP
DINION IP starlight 8000 MP
www.boschsecurity.com
u Remarkable low-light performance (0.0121 lx)
u 5MP high detail at fast speeds (30 fps)
u Low network strain and storage costs
u Outstanding wide dynamic range (97+16 dB)
The DINION IP starlight 8000 MP offers a new
standard in round-the-clock video surveillance.
Regardless of lighting conditions, time-of-day or object
movement, the camera delivers relevant IP video 24/7.
Capturing images at 5 megapixel resolution even under
extreme low-light conditions, it gives amazing images
in fine detail. The camera produces multi-megapixel
full-color video in near darkness, and delivers detailed
monochrome images where other cameras show no
image at all.
System overview
Advanced image processing techniques take the
DINION IP starlight 8000 MP to the next level.
Intelligent Video Analysis (IVA) tracks and focuses on
relevant situations and adds sense and structure to
stored video, allowing you to quickly retrieve the
correct data.
Intelligent Auto Exposure (iAE) gives superb front and
back light compensation, providing the perfect picture
every time.
Intelligent Dynamic Noise Reduction (iDNR) saves
bitrate at the source and only uses bandwidth when
needed. This results in up to 50% less bitrate which
significantly reduces storage costs and network strain
without compromising on video quality.
Functions
Exceptional low-light performance
The latest sensor technology, combined with the
sophisticated noise suppression, results in a sensitivity
of 0.0121 lx at full 5MP resolution in color and even
0.00825 lx at 1080p resolution. The low-light
performance is so good that the camera continues to
provide excellent color performance even with a
minimum of ambient light.
Measured dynamic range
The dynamic range of the camera is outstanding and is
obvious in real-world performance comparisons —
97 dB wide dynamic range for 5MP mode (plus an
extra 16 dB when combined with intelligent Auto
Exposure).
The actual dynamic range of the camera is measured
using Opto-Electronic Conversion Function (OECF)
analysis with a standardized test chart based on ISO
standards. This method provides more realistic and
verifiable results in comparison with the theoretical
approximations sometimes used.

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