JGB-10SNAA1 JDS UNIPHASE, JGB-10SNAA1 Datasheet

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JGB-10SNAA1

Manufacturer Part Number
JGB-10SNAA1
Description
Manufacturer
JDS UNIPHASE
Datasheet

Specifications of JGB-10SNAA1

Lead Free Status / RoHS Status
Not Compliant
Features
Overview
The Gigabit Interface Converters (GBICs) are inte-
grated fiber optic transceivers that provide high-
speed serial links at a signaling rate of 1062.5 Mb/s.
The JGB-10SNAA1 and JGB-10SYAA1 conform to
the American National Standards Institute’s (ANSI)
Fibre Channel, FC-0 specification for short wave-
length operation (100-M5-SN-I and 100-M6-SN-I)
[1]; the JGB-10LNAA1 and JGB-10LYAA1 conform
to ANSI Fibre Channel FC-0 specification for long
wavelength operation (100-SM-LC-L) [2].
These Gigabit Interface Converters (GBICs) are ide-
ally suited for Fibre Channel links and Fibre Channel
Arbitrated Loop (FC-AL) applications, but can be
used for other serial applications where high data
rates are required. These modules are hot-plugga-
ble and permit easy manufacturing and field configu-
ration between shortwave, longwave, and copper
implementations of the various standards.
The shortwave GBICs use short wavelength
(850nm) VCSEL lasers. This enables low cost data
transmission over optical fibers at distances up to
550 m. A 50/125 m multimode optical fiber, termi-
nated with an industry standard SC connector, is the
preferred medium. A 62.5/125 m multimode fiber
can be substituted with shorter maximum link dis-
tances.
GBIC.1063
03/06/02
• International Class 1 laser safety certified
• 1062.5 Mb/s data rate
• (ANSI) Fibre Channel compliant [1]
• Gigabit Interface Converter (GBIC) Revision 5.4
• Both short wavelength (850 nm) (distance 550
• Gigabit electrical serial interface
• Serial electrical
• UL and TUV approved
• Low bit error rate (<10
compliant [2]
m) and long wavelength (1310 nm) (distance
10 km) products available
light conversion
-12
)
.
Applications
The longwave GBICs use long wavelength
(1310nm) lasers. This enables data transmission
over optical fibers at distances up to 10 km on a sin-
gle mode (9/125 m) optical fiber.
The GBICs with Serial ID feature a 1 kbit EEPROM.
The serial ID module can store up to 128 bytes of
product information.
Encoded (8B/10B) [3, 4], gigabit/sec, serial, differen-
tial, PECL signals traverse a 20-pin straddle mount
connector interfacing the GBIC to the host card. The
serial data modulates the laser and is sent out over
the outgoing fiber of a duplex cable.
Incoming, modulated light is detected by a photore-
ceiver mounted in the SC receptacle. The optical
signal is converted to an electrical one, amplified,
and delivered to the host card. This module is
designed to work with industry standard Serial-
izer/Deserializer modules.
These Gigabit Interface Converters are Class 1
laser safe products. The optical power levels, under
normal operation, are at eye safe levels. Optical
fiber cables can be connected and disconnected
without shutting off the laser transmitter.
• Gigabit Fibre Channel
• Client/Server environments
• Distributed multi-processing
• Fault tolerant applications
• Visualization, real-time video, collaboration
• Channel extenders, data storage, archiving
• Data acquisition
JGB-10SNAA1
JGB-10SYAA1
Fibre Channel GBIC
JGB-10LNAA1
JGB-10LYAA1
Page 1 of 29

Related parts for JGB-10SNAA1

JGB-10SNAA1 Summary of contents

Page 1

... The Gigabit Interface Converters (GBICs) are inte- grated fiber optic transceivers that provide high- speed serial links at a signaling rate of 1062.5 Mb/s. The JGB-10SNAA1 and JGB-10SYAA1 conform to the American National Standards Institute’s (ANSI) Fibre Channel, FC-0 specification for short wave- length operation (100-M5-SN-I and 100-M6-SN-I) [1] ...

Page 2

... JGB-10SNAA1 JGB-10LNAA1 JGB-10SYAA1 JGB-10LYAA1 Fibre Channel GBIC Pin Configuration Pin 10 Pin 20 Pin Definitions Pin # Pin Name 1 Rx_LOS Status Out 2 RGND 3 RGND 4 MOD_DEF(0) 5 MOD_DEF(1) Input/Output 6 MOD_DEF(2) Input/Output 7 Tx_Disable Control In 8 TGND 9 TGND 10 Tx_Fault Status Out 1. MOD_DEF(1) and MOD_DEF(2) are inputs and outputs for Serial ID GBICs only. ...

Page 3

... CFR(J) for distribu- tion within the USA., and in accordance with provisions of CENELEC EN 60825 (or successive regulations) for distribution within the CENELEC countries or countries using the IEC 825 standard. GBIC.1063 03/06/02 JGB-10SNAA1 JGB-10SYAA1 Wavelength Data Rate Standards Conformance 100-M5-SN-I 850 nm 1062 ...

Page 4

... JGB-10SNAA1 JGB-10LNAA1 JGB-10SYAA1 JGB-10LYAA1 Fibre Channel GBIC Block Diagram Optical Fiber Input Photoreceiver Fiber Output Laser Transmit Section The input differential, serial data stream enters the AC Modulation section of the laser driver circuitry where it modulates a semiconductor laser. The DC Drive maintains the laser at the correct preset power level. In addi- tion, there are safety circuits in the DC Drive that will shut off the laser if a fault is detected ...

Page 5

... The serial clock (SCL) and the serial data (SDA) lines appear the host system upon initial power up. GBIC.1063 03/06/02 MOD_DEF (2) Pin Expected Connections to GBIC MOD_DEF Pins Interface JGB-10SNAA1 JGB-10LNAA1 JGB-10SYAA1 JGB-10LYAA1 Fibre Channel GBIC Interpretation by Host Shortwave GBIC Longwave GBIC GBIC with Serial ID MOD_DEF(0) SCL MOD_DEF(1) SDA MOD_DEF(2) Host ...

Page 6

... JGB-10SNAA1 JGB-10LNAA1 JGB-10SYAA1 JGB-10LYAA1 Fibre Channel GBIC Rx_DAT The incoming optical signal is converted and repowered coupled differential PECL serial data stream. Rx_LOS The Receive Loss of Signal line is high (a logical one) when there is no incoming light from the companion transceiver. (More accurately, this line indicates that the level of light is below that required to guarantee cor- rect operation of the link ...

Page 7

... Power On Initialization Timings Tx_Disable De-asserted V > 4.75V CC Tx_Fault Tx_Disable Optical Transmit Signal t_init <300ms GBIC.1063 03/06/02 JGB-10SNAA1 JGB-10SYAA1 Fibre Channel GBIC Timing of Tx_Disable function t_reset >10 s Tx_Disable Transmitter optical signal t_off <10 s Tx_Disable Asserted V > 4.75V SS ...

Page 8

... JGB-10SNAA1 JGB-10LNAA1 JGB-10SYAA1 JGB-10LYAA1 Fibre Channel GBIC Resetting a Fault (Tx_Fault) Resetting the Tx_Fault output by toggling the Tx_Disable input permits the GBIC to attempt to power on the laser following a fault condition. Continuous resetting and repowering of the laser under a hard fault condition could cause a series of optical pulses with sufficient energy to violate laser safety standards. To alleviate this possibility, the GBIC will turn off the laser and lock the Tx_Fault line high if a second fault is detected within the laser powering on ...

Page 9

... Use an optical power meter to check the optical power level. If the average optical power is within specification (> -17 dBm for short- wave devices), then the GBIC might be faulty. GBIC.1063 03/06/02 JGB-10SNAA1 JGB-10LNAA1 JGB-10SYAA1 JGB-10LYAA1 Fibre Channel GBIC ...

Page 10

... JGB-10SNAA1 JGB-10LNAA1 JGB-10SYAA1 JGB-10LYAA1 Fibre Channel GBIC Serial Module Definition Protocol (Serial ID) The GBICs with Serial ID have identifying informa- tion stored in a Serial ID EEPROM. To read the serial data from the serial ID module, the following must occur (refer to Serial ID Figures 1, 2, and 3 throughout these steps): 1 ...

Page 11

... SDA IN SDA OUT GBIC.1063 03/06/02 The data line is normally high. It will remain high until an Acknowledge or a Stop command is sent example data word. (9A in this example) t HIGH t t LOW LOW t HD.DAT JGB-10SNAA1 JGB-10LNAA1 JGB-10SYAA1 JGB-10LYAA1 Fibre Channel GBIC SU.STO t SU.DAT t BUF Page ...

Page 12

... JGB-10SNAA1 JGB-10LNAA1 JGB-10SYAA1 JGB-10LYAA1 Fibre Channel GBIC Absolute Maximum Ratings Parameter Storage Temperature Relative Humidity–Storage Ambient Operating Temperature Relative Humidity Operating Supply Voltage TTL DC Input Voltage 1. Stresses listed may be applied one at a time without causing permanent damage. Functionality at or above the values listed is not implied ...

Page 13

... GBIC.1063 03/06/02 from host to GBIC Symbol elec-xmit TJ elec-xmt 3.8 k Symbol elec-rcv TJ elec-rcv Rx_V +Rx_DAT -Rx_DAT 10 nF Rx_Gnd JGB-10SNAA1 JGB-10LNAA1 JGB-10SYAA1 JGB-10LYAA1 Fibre Channel GBIC Min Max Units Notes 400 2000 mV 113 ps 235 ps 100 350 Min Max Units Notes 800 1600 mV 339 ...

Page 14

... JGB-10SNAA1 JGB-10LNAA1 JGB-10SYAA1 JGB-10LYAA1 Fibre Channel GBIC Control Electrical Interface Parameter Voltage Levels TTL Outpu) TTL Input Serial ID SCL and SDA lines Timing Characteristics Tx_Disable (assert time) Tx_Disable (de-assert time) Tx_Disable (time to start reset) Initialization Time (Tx_Fault) Tx_Fault Assert Delay Rx_LOS Assert Delay Rx_LOS De-Assert Delay 1 ...

Page 15

... Deterministic Jitter Receiver Specifications Operating Wavelength Opitical Modulation Amplitude Return Loss of Receiver Rx_LOS Assert Level Rx_LOS De-Assert (negate) Level Rx_LOS Hysteresis Please see Notes for Short Wavelength Optical Characteristics on page 16. GBIC.1063 03/06/02 JGB-10SNAA1 JGB-10SYAA1 Symbol Min Typical 830 C PT -10.0 OMA 0.156 ...

Page 16

... JGB-10SNAA1 JGB-10LNAA1 JGB-10SYAA1 JGB-10LYAA1 Fibre Channel GBIC Notes for Short Wavelength Optical Characteristics 1. Launched optical power is measured at the end of a two meter section of a 50/125 m fiber for the shortwave GBICs, and a 9/125 m fiber for the longwave GBICs. The maximum and minimum of the allowed range of average transmitter power coupled into the fiber are worst case values to account for manufacturing variances, drift due to temperature variations, and aging effects ...

Page 17

... Optical Rise/Fall Time Receiver Specifications Operating Wavelength Optical Modulation Amplitude Return Loss of Receiver Rx_LOS Assert Level Rx_LOS De-Assert (negate) Level Rx_LOS Hysteresis Please see Notes for Long Wavelength Optical Characteristics on page 18. GBIC.1063 03/06/02 JGB-10SNAA1 JGB-10SYAA1 Symbol Min Typical 1290 C PT -9.5 OMA 175 ...

Page 18

... JGB-10SNAA1 JGB-10LNAA1 JGB-10SYAA1 JGB-10LYAA1 Fibre Channel GBIC Notes for Long Wavelength Optical Characteristics 1. Launched optical power is measured at the end of a two meter section of a 50/125 m fiber for the shortwave GBICs and a 9/125 m fiber for the longwave GBICs). The maximum and minimum of the allowed range of average transmitter power coupled into the fiber are worst case values to account for manufacturing variances, drift due to temperature variations, and aging effects ...

Page 19

... The optical interface connector dimensionally conforms to the industry standard SC type connector documented in JIS-5973. A dual keyed SC receptacle serves to align the optical transmission fiber mechanically to the shortwave GBICs. See Duplex SC Receptacle on page 26 for a drawing of the duplex SC receptacle that is part of the shortwave GBICs. GBIC.1063 03/06/02 JGB-10SNAA1 JGB-10SYAA1 Symbol Min Typical ...

Page 20

... JGB-10SNAA1 JGB-10LNAA1 JGB-10SYAA1 JGB-10LYAA1 Fibre Channel GBIC Thermal Characteristics Airflow (lfm) 0 100 200 300 1. To meet the specified operating temperature, the ambient temperature of the air moving over the shortwave GBICs, and also the longwave GBICs should not exceed these values. Reliability Projections ...

Page 21

... The check codes contained within the identification data are one byte codes that can be used to verify that the data in previous addresses is valid. CCID check code is the lower eight bits of the sum of the contents of bytes 0-62. CCEX check code is the lower eight bits of the sum of the contents of bytes 64-94. GBIC.1063 03/06/02 JGB-10SNAA1 JGB-10LNAA1 JGB-10SYAA1 JGB-10LYAA1 Fibre Channel GBIC ...

Page 22

... JGB-10SNAA1 JGB-10LNAA1 JGB-10SYAA1 JGB-10LYAA1 Fibre Channel GBIC Serial ID Table 5 Serial ID Data Entries for Shortwave GBICs with Serial ID Data Length Name of Field Address (Bytes) Base ID Fields 0 1 Identifier 1 1 Reserved 2 1 Connector 3-10 8 Transceiver 11 1 Encoding 12 1 BR, Nominal 13-14 2 Reserved Distance Distance ...

Page 23

... Reserved 95 1 CCEX Specific ID Field 96-127 32 Readable GBIC.1063 03/06/02 JGB-10SNAA1 JGB-10SYAA1 Data to be Included in the Field for LW 01h = GBIC 00h 01h = SC Optical Connector 0000000000000000000000000000000000010010000000000000000100000001 = 100-SM-LC-L (Fibre Channel Compliance code for Optical Compatibility) 01h = 8b10b Encoding 0Bh = 100 Mb 1.1 Gb/s 0000h 64h = 100 x 100 single mode fiber ...

Page 24

... JGB-10SNAA1 JGB-10LNAA1 JGB-10SYAA1 JGB-10LYAA1 Fibre Channel GBIC Mechanical Description Mechanical Outline 0.1 10 -0.15 Note: All dimensions are in millimeters. Two optical receptacles are at the end of the module. They are spaced 12.7 mm apart to accept a standard duplex SC connector. Page 27.69 Pin 20 Pin 3.05 30.48 -0.15 1 ...

Page 25

... Right angle receptacle, placed on motherboard for connection of shortwave GBICs parallel to the surface of the backplane as a daughter board Guide system for PCB of thickness 0.062" Guide system for PCB of thickness 0.100" GBIC.1063 03/06/02 Description 0.008 0.008 JGB-10SNAA1 JGB-10LNAA1 JGB-10SYAA1 JGB-10LYAA1 Fibre Channel GBIC Part Number AMP 787646-1 AMP 787653-1 AMP 787663-3 ...

Page 26

... JGB-10SNAA1 JGB-10LNAA1 JGB-10SYAA1 JGB-10LYAA1 Fibre Channel GBIC Duplex SC Receptacle Size to fit ferrule 9 9 Size to fit ferrule 7.4 Note: All dimensions are in millimeters. Page 13.7 Bracket opening shown with aperture divided between ports (2 surfaces) 7.4 4.79 diameter 12.7 Receiver Side 4.79 diameter ...

Page 27

... Host Card Footprint (4X) 2.64 0.05 diameter Note: All dimensions are in millimeters. GBIC.1063 03/06/02 JGB-10SNAA1 JGB-10SYAA1 B 33.27 32.2 7.21 1.09 (4X 0.1 Module Side B 33.4 33. 0.25 JGB-10LNAA1 JGB-10LYAA1 Fibre Channel GBIC C A Page ...

Page 28

... JGB-10SNAA1 JGB-10LNAA1 JGB-10SYAA1 JGB-10LYAA1 Fibre Channel GBIC References Standards 1. American National Standards Institute Inc. (ANSI), T11, Fibre Channel-Physical and Signaling Interface (FC-PI Rev. 10.1). Copies of this document may be purchased from: Global Engineering 15 Inverness Way East Englewood, CO 80112-5704 Phone: (800) 854-7179 or (303) 792-2181 Fax: (303) 792-2192 ...

Page 29

... IBM42S12LNNAA20 Added two 1063MBd, serial ID products: IBM42S10SNYAA20 IBM42S10LNYAA20 Changed to JDS Uniphase specification 03/06/02 New Serial ID data Optical Specifications matched to the Fibre Channel Specification GBIC.1063 03/06/02 JGB-10SNAA1 JGB-10SYAA1 Contents of Modification GBIC-1250N (short wave) GBIC-1250N-LW (long wave) GBIC-1063NS (short wave) GBIC-1063NS-LW (long wave) ...

Page 30

... The user assumes all risks and liability whatsoever in connection with the use of a product or its application. JDS Uniphase reserves the right to change at any time without notice the design, speci- fications, function, fit or form of its products described herein, including withdrawal at any time of a product offered for sale herein ...

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