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 Product Specification RoHS-6 Compliant 10Gb/s 1550nm Single Mode Datacom X2 ZR Transponder FTLX1841E2
PRODUCT FEATURES Hot pluggable X2 MSA form factor Total power consumption: 4.0 W maximum RoHS-6 compliant (lead-free) Temperature range 0C to 70C Transmission distance of 80 km Cooled 1550nm EML SC connector, single mode fiber Full duplex transmission mode Digital Optics Monitoring (DOM) Power supply: +5.0 V, +3.3 V, Adaptable Power Supply (APS: +1.2 V) XAUI electrical interface 4 x 3.125 Gb/s Ethernet (FTLX1841E2) Management and control via MDIO 2-wire bus 70-pin connector Separated signal/chassis ground Mid Pak module variance for front panel mounting De-latch mechanism with low extraction force
APPLICATIONS 10 Gb/s Ethernet transmission systems for 80km Extended Range (ZR)
PRODUCT SELECTION Part Number Applications FTLX1841E2 10G Ethernet
(c) Finisar Corporation - August 2008 Rev. D1
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FTLX1841 Product Specification - August 2008
I. Pin Descriptions
Signal Name Level I/O Management and Monitoring Ports MDIO Open Drain I/O MDC PRTAD4 PRTAD3 PRTAD2 PRTAD1 PRTAD0 LASI 1.2 V CMOS 1.2 V CMOS 1.2 V CMOS 1.2 V CMOS 1.2 V CMOS 1.2 V CMOS Open Drain I 1 I I I I O Pin No. 17 18 19 20 21 22 23 9 Description Management Data I/O. Requires external 10 - 22 k pull-up to the APS on host. Management Data Clock Input Port Address Input bit 4 Port Address Input bit 3 Port Address Input bit 2 Port Address Input bit 1 Port Address Input bit 0 Link Alarm Status Interrupt Output. Open Drain Compatible Output with 10 - 20 k pull-up on host. Logic high = Normal Operation Logic low = Status Flag Triggered Reset Input. Open Drain Compatible Input with 22 k pull-up to APS internal to transponder. Logic high = Normal Operation Logic low = RESET Vendor Specific Pins. Leave unconnected when not used. TX ON/OFF Input. Open Drain Compatible Input with 22 k pull-up to APS internal to transponder. Logic high = Transmitter On Logic low = Transmitter Off Pulled low inside transponder through a 1 k resistor to Ground Reserved For Future Use Reserved For Future Use Module XAUI Input Lane 3- Module XAUI Input Lane 3+ Module XAUI Input Lane 2- Module XAUI Input Lane 2+ Module XAUI Input Lane 1- Module XAUI Input Lane 1+ Module XAUI Input Lane 0- Module XAUI Input Lane 0+
RESET
Open Drain
I
10
Vendor Specific TX ON/OFF Open Drain I
11,15,16,24 12
MOD DETECT Transmit Functions Reserved Reserved TX LANE 3- AC-coupled, TX LANE 3+ Internally biased differential TX LANE 2- XAUI TX LANE 2+ TX LANE 1- TX LANE 1+ TX LANE 0- TX LANE 0+
O I I I I I I I I I I
14 68 67 65 64 62 61 59 58 56 55
(c) Finisar Corporation - August 2008 Rev. D1
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FTLX1841 Product Specification - August 2008
Receive Functions Reserved Reserved RX LANE 0+ AC-coupled, RX LANE 0- Internally biased differential RX LANE 1+ XAUI RX LANE 1- RX LANE 2+ RX LANE 2- RX LANE 3+ RX LANE 3- DC Power GND
O O O O O O O O O O
38 39 41 42 44 45 47 48 50 51 1, 2, 3, 33, 34, 35, 36, 37, 40, 43, 46, 49, 52, 53, 54, 57, 60, 63, 66, 69, 70 7, 8, 28, 29 27 25
Reserved For Future Use Reserved For Future Use Module XAUI Output Lane 0+ Module XAUI Output Lane 0- Module XAUI Output Lane 1+ Module XAUI Output Lane 1- Module XAUI Output Lane 2+ Module XAUI Output Lane 2- Module XAUI Output Lane 3+ Module XAUI Output Lane 3- Ground connection for signal ground on the module
0 V DC
APS APS SENSE APS SET 3.3 V 5.0 V Reserved Reserved
+1.2 V +1.2 V
+3.3 V DC +5.0 V DC
5, 6, 30, 31 4, 32 26 13
Input from Adaptive Power Supply APS Sense Output. Connected to the APS input inside transponder. Feedback input from APS. Connected to GND through a 1180 resistor inside the transponder. DC Power Input, +3.3 V DC, Nominal DC Power Input, +5.0 V DC, Nominal Reserved for APD. Reserved.
(c) Finisar Corporation - August 2008 Rev. D1
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FTLX1841 Product Specification - August 2008
Electrical Pad Layout
Fig 1-X2 Transponder Electrical Pad Layout
II. Absolute Maximum Ratings
Parameter Storage Ambient Temperature1) Operating Case Temperature1) Supply Voltage +5.0 V Supply Voltage +3.3 V Supply Voltage APS Static Discharge Voltage, All Pins2) Peak Receive Optical Power Average Receive Optical Power
Notes: 1) 2) Non-condensing. HBM.
Symbol TS TC V5 V3 Vaps STd RxP peak RxP max
Limit Values min. max. -20 85 0 70 0 6 0 4 0 1.5 500 -1 -1
Unit C C V V V V dBm dBm
Exceeding any one of these values may permanently destroy the device.
(c) Finisar Corporation - August 2008 Rev. D1
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FTLX1841 Product Specification - August 2008
III. Electrical Characteristics Recommended Operating Conditions
Parameter Operating Case Temperature1) Transponder Total Power Consumption Supply Voltage +5.0 V Supply Current +5.0 V Supply Voltage +3.3 V Supply Current +3.3 V Supply Voltage APS Supply Current APS
1)
Symbol TC P VCC5 ICC5 VCC3 ICC3 VCC aps ICC aps
min. 0 4.75 3.14 1.152
Values typ.
max. 70 4 5.25 500 3.47 1000 1.248 1200
Unit C W V mA V mA V mA
5.0 3.3 1.2
Worst case thermal location, see Figure 2. See also Environmental Performance.
Electrical DC Characteristics
(VCC5 = 4.75 V to 5.25 V, VCC3 = 3.14 V to 3.47 V, VCC aps = 1.152 V to 1.248 V, TC = 0C to 70C) Values typ.
Parameter Symbol min. 1.2 V CMOS (1.8 V CMOS Compatible1)) I/O DC Characteristics (PRTAD; LASI; RESET; TX_ONOFF) External Pull-up Resistor for Open Drain Rpullup 10 Output High Voltage2) Voh 1 Output Low Voltage2) Vol Input High Voltage Vih 0.84 Input Low Voltage Vil Input Pull-down Current3) Ipd 20 XAUI I/O DC Characteristics (TXLANE[0..3]; RXLANE[0..3]) Differential Input Amplitude (pk-pk) 4) Vin_xaui Differential Output Amplitude (pk-pk) 4) Vout_xaui MDIO I/O DC Characteristics (MDIO; MDC) Output Low Voltage5) Output Low Current Input High Voltage Input Low Voltage Pull-up Supply Voltage Input Capacitance Load Capacitance External Pull-up Resistance
1) 2) 3) 4) 5)
max. 22 0.15 1.5 0.36 120 2500 1600 0.2 4 1.5 0.36 1.248 10 470
Unit k V V V V A mV mV V mA V V V pF pF
200 800 -0.3 0.84 -0.3 1.152 200
VOL IOL VIH VIL VPU CIN CLOAD RLOAD
1.2
For 1.8 V CMOS Voh = 1.65 V min., Vol = 0.15 V max., Vih = 1.17 V min., Vil = 0.63 V max. Rpull-up = 10 k to 1.8 V. Vin = 1.8 V. AC coupled. IOL = 100 A.
(c) Finisar Corporation - August 2008 Rev. D1
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FTLX1841 Product Specification - August 2008
Electrical AC Characteristics
(VCC5 = 4.75 V to 5.25 V, VCC3 = 3.14 V to 3.47 V, VCC aps = 1.152 V to 1.248 V, TC = 0C to 70C) Values Parameter Symbol Unit min. typ. max. XAUI Input AC Characteristics (TXLANE[0..3]) Baud Rate RXAUIIN Gbit/s Ethernet 3.125 Baud Rate Tolerance RTOLXAUI -100 100 ppm Differential Input Impedance ZINXAUI 80 100 120 Differential Return Loss1) |S11| 10 dB Input Differential Skew2) tSKEWIN 75 ps Jitter Amplitude Tolerance3) JXAUITOL 0.65 UIp-p XAUI Output AC Characteristics (RXLANE[0..3]) Baud Rate RXAUIOUT Gbit/s Ethernet 3.125 Baud Rate Variation RXAUIVAR -100 100 ppm XAUI Eye Mask (far-end) According to IEEE 802.3ae Output Differential Skew tSKEWOUT 15 ps Output Differential Impedance ZOUTXAUI 80 100 120 Differential Output Return Loss1) |S22| 10 dB Total Jitter4) TJXAUI 0.35 UI Deterministic Jitter4) DJXAUI 0.37 UI Power-On Reset AC Characteristics Power-On Reset and TX_ONOFF According to XENPAK MSA Issue 3.0, 2002-9-18 Characteristics MDIO I/O AC Characteristics (MDIO; MDC) MDIO Data Hold Time tHOLD 10 ns MDIO Data Setup Time tSU 10 ns Delay from MDC Rising Edge to tDELAY 300 ns MDIO Data Change MDC Clock Rate MAX 2.5 MHz
1) 2) 3) 4)
100 MHz to 2.5 GHz. At crossing point. Per IEEE Std 802.3ae. At near-end, No pre-equalization, 1 UI = 320 ps.
(c) Finisar Corporation - August 2008 Rev. D1
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FTLX1841 Product Specification - August 2008
IV. Optical Characteristics
(VCC5 = 4.75 V to 5.25 V, VCC3 = 3.14 V to 3.47 V, VCC aps = 1.152 V to 1.248 V, TC = 0C to 70C) Parameter Transmitter Average Launch Power Center Wavelength Range Side Mode Suppression Ratio Extinction Ratio Relative Intensity Noise12OMA Eye Mask Definition Receiver Average Receiver Power1) Receiver Overload Path Penalty at 1600 ps/nm @ 10.3Gb/s Receiver Damage Power Threshold Receiver Reflectance Center Wavelength Range
1)
Symbol PO-Avg C-Tx SMSR ER RIN PIN PIN-max DP PIN-dmg REFRX C-RX
min. 0 1530 30 9
Values typ.
max. +4 1565 -128
Unit dBm nm dB dB dB/Hz dBm dBm dB dBm dB nm
Per IEEE 802.3ae -24 -7 -1 1260 -27 1565 -7 3
Average Receiver Power (min) is defined at BER 1E-12 with PRBS31 or 10GbE source.
V. General Specifications Optical Interface Standard Specifications
Standard B1.1 SMF B1.3 SMF
Differential Group Delay Maximum (ps) 10 10
Operating Range (meters) 2 to 80,000 2 to 80,000
(c) Finisar Corporation - August 2008 Rev. D1
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FTLX1841 Product Specification - August 2008
Environmental Performance Operating case temperature: Operating humidity: Fibers and Connectors The transponder has SC receptacles for both Tx and Rx. The transponder is designed for single mode SC cables, 0 polished endface (PC). 70-pin Connector The module interface connector is a 70-pin, printed circuit board edge connection with a 0.5 mm pitch. The appropriate mating connector for the customer PCB is a 70-pin SMT, dual row, right angled, edge connector, 0.5 mm pitch (Tyco Electronics part number 1367337-1, Molex part number 74441-0003 or equivalent). Rail and Mechanical Mounting Requirements The X2 rail system required to mount the X2 module is fully defined by the MSA. (Tyco Electronics part number 1367608-1: designed for belly to belly applications; and 1367610-1, designed for single sided board mount to fit into the standard host PCB footprint; or equivalent). For further details please refer to vendor-supplied information. Aqueous Wash Finisar X2 transponders are neither solderable nor aqueous washable and are not intended for these processes. 0C to +70C 0% -95% RH non-condensing
VI. Regulatory Compliance
Feature ESD: Electrostatic Discharge to the Electrical Pins (HBM) Immunity: Against Electrostatic Discharge (ESD) to the Module Receptacle Immunity: Against Radio Frequency Electromagnetic Field Emission: Electromagnetic Interference (EMI) Standard EIA/JESD22-A114-B (MIL-STD 883D Method 3015.7) EN 61000-4-2 IEC 61000-4-2 Comments Class 1a (> 500 V) Discharges ranging from 2 kV to 25 kV to the front end / faceplate / receptacle cause no damage to module (under recommended conditions). With a field strength of 10 V/m, noise frequency ranges from 10 MHz to 2 GHz. No effect on module performance between the specification limits. Noise frequency range: 30 MHz to 40 GHz Radiated emission does not exceed specified limits when measured with module inside a shielding enclosure with a MSA conforming cutout.
EN 61000-4-3 IEC 61000-4-3 FCC 47 CFR Part 15, Class B EN 55022 Class B CISPR 22
(c) Finisar Corporation - August 2008 Rev. D1
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FTLX1841 Product Specification - August 2008
Eye Safety Finisar FTLX1841 transponders are Class 1 Laser Products. They are certified per the following standards:
Feature Laser Eye Safety Laser Eye Safety Electrical Safety Electrical Safety Agency FDA/CDRH TUV Standard CDRH 21 CFR 1040 and Laser Notice 50 EN 60825-1: 1994+A11:1996+A2:2001 IEC 60825-1: 1993+A1:1997+A2:2001 IEC 60825-2: 2000, Edition 2 EN 60950 CLASS 3862.07 CLASS 3862.87 Certificate Number 9210176-77 R 72052602
TUV UL/CSA
R 72052602 1439230
Copies of the referenced certificates will be available at Finisar Corporation upon request.
VII. DOM Parameters
Parameter Transponder Temperature Monitor Accuracy1) Laser Bias Current Monitor Accuracy2) Transmit Power Monitor Accuracy3) Receive Power Monitor Accuracy3)
1) 2) 3)
min. -5 -10 -3 -3
Values typ.
max. +5 +10 +3 +3
Unit C % dB dB
0 to 70C case temperature. need EML range 0 dBm to +4 dBm.
VIII. Mechanical Characteristics
Parameter Module Retention Force (latch strength) Module Insertion Force Module Extraction Force (with kick-out) Module Extraction Force (without kick-out) Pull Sleeve front face color is white.
Symbol min. FRET FIN FEXT-K FEXT
Values typ. 200 40 16 25
Unit max. N N N N
(c) Finisar Corporation - August 2008 Rev. D1
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FTLX1841 Product Specification - August 2008
Package Outline
Figure 2-X2 Mechanical Dimensions
IX. * * *
References 10G Ethernet ZR IEEE 802.3 ae Clause 45 & 47 X2 MSA Issue 2.0b
X.
For More Information
Finisar Corporation 1389 Moffett Park Drive Sunnyvale, CA 94089-1133 Tel. 1-408-548-1000 Fax 1-408-541-6138 sales@finisar.com www.finisar.com
(c) Finisar Corporation - August 2008 Rev. D1
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