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Genie Monochrome Series-GigE Vision Camera
Genie Monochrome Series Overview
•
9
Certifications
CE
EN55022, class A,
Radio Disturbance Characteristics
EN61000-4-2,
Electrostatic discharge immunity test
EN61000-4-3,
Radiated,
radio-frequency,
electromagnetic field immunity test
EN61000-4-4,
Electrical fast transient/burst immunity test
EN61000-4-6,
Immunity to conducted disturbances, induced by radio-frequency fields
FCC
Part 15, class A
see
"
EC & FCC Declaration of Conformity
" on page 109
RoHS
Compliancy as per European directive 2002/95/EC
(applies to camera part numbers CR-GENx-xxxxx)
Vibration and Shock Certifications
Test (while operating)
Standard
Description
Sinusoidal vibrations with identification
of critical frequencies
IEC 68-2-6 (1995)
Test Fc
Frequency range: 10 to 2000 Hz
Amplitude: 5 m/s
2
Sweep rate: 1 octave per minute
Duration: 1 sweep cycle (to and fro)
Random vibrations
MIL-STD-810E (1989)
method 514.4
Category 10
Levels and frequencies:
0.04 g
2
/Hz from 20 to 1000 Hz
-6 dB/oct. from 1000 to 2000 Hz
Duration: 1 hour
Shocks
IEC 68-2-27 (1987)
Test Ea and guide
Shape: half-sine
Amplitude: 75 g
Duration: 3 ms
Number: 3 shocks (+) and 3 shocks (-)
Supported Industry Standards
Genie cameras are 100% compliant with the GigE Vision 1.0 specification
which defines the communication interface protocol used by any GigE
Vision device. The device description and capabilities are contained in an
XML file. For more information see:
http://www.machinevisiononline.org/public/articles/index.cfm?cat=167
Genie cameras implement a superset of the GenICam™ specification which
defines device capabilities. This description takes the form of an XML
device description file respecting the syntax defined by the GenApi module
of the GenICam™ specification. For more information see
www.genicam.org
.
Genie Sensor Overview
Each sensor description below provides a specification table and response graphic. The graph describes the sensor
response to different wavelengths of light (excluding lens and light source characteristics). Visible light spans
wavelengths between about 390 - 780 nanometers. Wavelengths below 390 nm are termed ultra-violet while those
above 780 nm. are termed infra-red. The peak response is around 500 nanometers typical for each sensor model,
corresponding to a shade of blue-green.
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