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HFBR-5205T Ver la hoja de datos (PDF) - HP => Agilent Technologies

Número de pieza
componentes Descripción
Fabricante
HFBR-5205T Datasheet PDF : 19 Pages
1 2 3 4 5 6 7 8 9 10 Next Last
200
180
3.0
1.0
160
1.5
140 2.0
120 2.5
3.0
tr/f – TRANSMITTER
OUTPUT OPTICAL
RISE/FALL TIMES – ns
100
1260
1280
1300
1320
1340 1360
λC – TRANSMITTER OUTPUT OPTICAL
CENTER WAVELENGTH –nm
HFBR-5205 TRANSMITTER TEST RESULTS
OF λC, ∆λ AND tr/f ARE CORRELATED AND
COMPLY WITH THE ALLOWED SPECTRAL WIDTH
AS A FUNCTION OF CENTER WAVELENGTH FOR
VARIOUS RISE AND FALL TIMES.
Figure 9. Transmitter Output Optical Spectral Width
(FWHM) vs. Transmitter Output Optical Center
Wavelength and Rise/Fall Times.
5
4
3
HFBR-5203/-5204/-5205
SERIES
2
1
0
-3
-2
-1
0
1
2
3
EYE SAMPLING TIME POSITION (ns)
CONDITIONS:
1.TA = 25° C
2. VCC = 5 Vdc
3. INPUT OPTICAL RISE/FALL TIMES = 1.0/2.1 ns.
4. INPUT OPTICAL POWER IS NORMALIZED TO
CENTER OF DATA SYMBOL.
5. NOTE 16 AND 17 APPLY.
Figure 10. Relative Input Optical Power vs. Eye Sampling
Time Position.
Regulatory Compliance Table
Feature
Electrostatic Discharge
(ESD) to the Electrical
Pins
Electrostatic Discharge
(ESD) to the Duplex SC
Receptacle
Electromagnetic
Interference (EMI)
Test Method
MIL-STD-883C
Method 3015.4
Variation of
IEC 801-2
FCC Class B
CENELEC EN55022
Class B (CISPR 22B)
VCCI Class 2
Immunity
Variation of IEC 801-3
Performance
Meets Class 2 (2000 to 3999 Volts)
Withstand up to 2200 V applied between electrical
pins.
Typically withstand at least 25 kV without damage
when the Duplex SC Connector Receptacle
is contacted by a Human Body Model probe.
Transceivers typically provide a 13 dB margin
(with duplex SC receptacle) or a 9 dB margin
(with duplex ST receptacles) to the noted
standard limits when tested at a certified test
range with the transceiver mounted to a circuit
card without a chassis enclosure.
Typically show no measurable effect from a
10 V/m field swept from 10 to 450 MHz applied
to the transceiver when mounted to a circuit card
without a chassis enclosure.
116

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