dtr-1250-sm-gb-h8-hs OPLINK Communications Inc., dtr-1250-sm-gb-h8-hs Datasheet

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dtr-1250-sm-gb-h8-hs

Manufacturer Part Number
dtr-1250-sm-gb-h8-hs
Description
5v Very Long Haul Gbic Transceivers
Manufacturer
OPLINK Communications Inc.
Datasheet
Description
The DTR-1250-SM-GB-HS product family of GBICs
provides very long haul, single mode solutions for
1000BASE-LX Gigabit Ethernet ports in a networking
switch. OCP offers two optical link power budget options
to support 110km (H7) and 120km (H8) in the networking
infrastructure. Both options use 1550nm DFB lasers and
ultra high sensitivity Avalanche Photodiode (APD) receivers
to provide minimum optical link power budgets of 30dB
and 32dB. They correspond to transmission distances of
110km and 120km, respectively, assuming a total
connector and splice loss of 2dB, total system penalty of
3dB and fiber loss of 0.22dB/km. All transceivers are
Absolute Maximum Ratings
Storage Temperature
Operating Case Temperature
Supply Voltage
Maximum Input Optical Power (30 seconds max.)
OCP
Parameter
5V Very Long Haul GBIC Transceivers
Optical Communication Products, Inc.
DTR-1250-SM-GB-HS
Symbol
1
V
T
P
T
DD
Features
Class I Laser products per U.S. FDA/CDRH standards.
The “H7” transceiver is Class I Laser product while the
“H8” transceiver is Class 1M Laser product per international
IEC-825 standards.
The DTR-1250-SM-GB-HS transceivers connect to
standard 20-pad GBIC connectors for hot plug capability.
This allows the system designer to make configuration
changes or maintenance by simply plugging in different
types of GBICs without removing the power supply from
the host system.
The transceivers operate from a single +5V power supply
over an operating case temperature range of -5°C to +70°C.
op
in
st
Compliant with GBIC Serial Module Definition
Hot-pluggable
Up to 120km with Single Mode Fiber
APD Receiver
Compliant with GBIC Specification, Rev. 5.5
Compatible with IEEE 802.3z 1000BASE-LX
Compatible with Optical Interface Requirements in
Excellent EMI & ESD Protection
Eye Safe (Class I or 1M Laser Safety)
Duplex SC Optical Interface
Single +5V Power Supply
Up to 1250Mb/s Bi-directional Data Links
Specifications for Gigabit Ethernet
Annex F of GBIC Specification, Rev. 5.5
Protocol (Module Definition 4 in Annex D)
Minimum
- 40
- 5
0
-
Maximum
+ 7.0
+ 3.0
+ 85
+ 70
21737-0389, Rev. A
Units
dBm
°C
°C
01/09/2004
V

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dtr-1250-sm-gb-h8-hs Summary of contents

Page 1

... OCP 5V Very Long Haul GBIC Transceivers Description The DTR-1250-SM-GB-HS product family of GBICs provides very long haul, single mode solutions for 1000BASE-LX Gigabit Ethernet ports in a networking switch. OCP offers two optical link power budget options to support 110km (H7) and 120km (H8) in the networking infrastructure ...

Page 2

... PRBS at 1250Mb/s and 1550nm wavelength. Laser Safety: All transceivers are Class I Laser products per FDA/CDRH. The H7 transceiver is Class I Laser product while the H8 transceiver is Class 1M Laser products per IEC-825 standards. They must be operated under specified operating conditions. DTR-1250-SM-GB-HS (over Operating Case Temperature, V Symbol Minimum ...

Page 3

... TTL LOW Pin Assignments PIN FUNCTION 1 RX_LOS (RX LOSS OF SIGNAL) 2 RGND (RX GROUND) 3 RGND (RX GROUND) 4 MOD_DEF(0) 5 MOD_DEF(1) 6 MOD_DEF(2) 7 TX_DISABLE 8 TGND (TX GROUND) 9 TGND (TX GROUND) 10 TX_FAULT DTR-1250-SM-GB-HS (over Operating Case Temperature, V Symbol Minimum 1 V 0.65 PP-DIF 0 (over Operating Case Temperature, V Symbol ...

Page 4

... TX_DISABLE: When the TX_DISABLE pin is at logic HIGH, the transmitter optical output is disabled (less than -35dBm). Serial Identification: The DTR-1250-SM-GB-HS transceivers are compliant with Annex D (Module Definition 4) of the GBIC specification, Rev. 5.5, which defines the Serial Identification Protocol. The module definition of GBIC is indicated by the three module definition pins, MOD_DEF(0), MOD_DEF(1) and MOD_DEF(2) ...

Page 5

... GUIDE SLOTS WIDTH Ordering Information Model Name DTR-1250-SM-GB-H7-HS DTR-1250-SM-GB-H8-HS 1 The indicated transmission distance is for guidelines only, not guaranteed. The exact distance is dependent on the fiber loss, connector and splice loss and allocated system penalty. Longer distances can be supported if the optical link power budget is satisfied. ...

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