GEK-106310AB
F650 Digital Bay Controller
2-29
2 PRODUCT DESCRIPTION
2.4 TECHNICAL SPECIFICATIONS
2
2.4.11 OPTIC FEATURES
Wave length:
1300nm
Connector types:
ST package style
Fiber type:
multimode 62.5/125
μ
m or 50/125
μ
m
Notes
:
1.
These optical power values are measured with the following conditions:
The Beginning of Live (BOL) to the End of Life (EOL) optical power degradation is typically 1.5 dB per industry
convention for long wavelength LEDs. The actual degradation observed in Agilent’s 1300nm LED products is <1 dB, as
specified in this data sheet.
Over the specified operating voltage and temperature ranges.
With HALT Line State, (12.5 MHz square-wave), input signal.
At the end of one meter of noted optical fiber with cladding modes removed.
The average power value can be converted to a peak power value by adding 3 dB. Higher output optical power
transmitters are available on special request.
2.
The transmitter provides compliance with the need for Transmit_Disable commands from the FDDI SMT layer by
providing an Output Optical Power level of <-45 dBm average in response to a logic “0” input. This specification applies
to either 62.5/125
μ
m or 50/125
μ
m fiber cables.
3.
This specification is intended to indicate the performance of the receiver section of the transceiver when Input Optical
Power signal characteristics are present per the following definitions. The Input Optical Power dynamic range from the
minimum level (with a window time-width) to the maximum level is the range over which the receiver is guaranteed to
provide output data with a Bit Error Ratio (BER) better than or equal to 2.5e-10.
At the Beginning of Life (BOL).
Over the specified operating temperature and voltage ranges.
4.
All conditions for Note 3 apply except that the measurement is made at the center of the symbol with no window time-
width.
TRANSMITTER CHARACTERISTICS
Parameter
Min.
Typ.
Max.
Unit
Reference
Output Optical Power BOL
62.5/125
μ
m, NA = 0.275 Fiber EOL
-19
-20
-14
dBm avg.
Note 1
Output Optical Power BOL
50/125
μ
m, NA = 0.275 Fiber EOL
-22.5
-23.5
-14
dBm avg.
Note 1
Output Optical Power at
Logic “0” State
-45
dBm avg.
Note 2
RECEIVER CHARACTERISTICS
Parameter
Min.
Typ.
Max.
Unit
Reference
Input Optical Power
Minimum at Window Edge
-33.9
-31
dBm avg.
Note 3
Input Optical Power
Minimum at Eye Center
-35.2
-31.8
dBm avg.
Note 4
Input Optical Power Maximum
-14
dBm avg.
Note 3
Содержание Multilin F650
Страница 9: ...8 F650 Digital Bay Controller GEK 106310AB TABLE OF CONTENTS ...
Страница 147: ...4 74 F650 Digital Bay Controller GEK 106310AB 4 3 WEB SERVER 4 HUMAN INTERFACES SETTINGS ACTUAL VALUES 4 ...
Страница 323: ...5 176 F650 Digital Bay Controller GEK 106310AB 5 13 IEC 60870 5 103 PROTOCOL CONFIGURATION 5 SETTINGS 5 ...
Страница 443: ...7 74 F650 Digital Bay Controller GEK 106310AB 7 3 IEC 61850 CONFIGURATOR 7 IEC 61850 PROTOCOL 7 Figure 7 21 ...
Страница 457: ...7 88 F650 Digital Bay Controller GEK 106310AB 7 3 IEC 61850 CONFIGURATOR 7 IEC 61850 PROTOCOL 7 ...
Страница 513: ...10 28 F650 Digital Bay Controller GEK 106310AB 10 18 THERMAL IMAGE ELEMENT 49 10 COMMISSIONING 10 ...
Страница 529: ...12 6 F650 Digital Bay Controller GEK 106310AB 12 4 RELAY CONFIGURATION 12 FREQUENTLY ASKED QUESTIONS 12 ...
Страница 569: ...A 36 F650 Digital Bay Controller GEK 106310AB A 1 LOGIC OPERANDS APPENDIX A A ...
Страница 735: ...C 24 F650 Digital Bay Controller GEK 106310AB C 8 ANALOG INPUTS APPENDIX C C ...
Страница 743: ...D 8 F650 Digital Bay Controller GEK 106310AB D 5 IEC 60870 5 104 POINT LIST APPENDIX D D ...
Страница 755: ...F 10 F650 Digital Bay Controller GEK 106310AB F 1 IEC 60870 5 103 PROTOCOL APPENDIX F F ...
Страница 766: ...GEK 106310AB F650 Digital Bay Controller G 11 APPENDIX G G 1 FACTORY DEFAULT LOGIC G ...
Страница 767: ...G 12 F650 Digital Bay Controller GEK 106310AB G 1 FACTORY DEFAULT LOGIC APPENDIX G G ...
Страница 801: ...I 2 F650 Digital Bay Controller GEK 106310AB I 1 GE MULTILIN WARRANTY APPENDIX I I ...