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 Aug. 20, 2007
SFF GEPON PX20 ONU Transceiver FTM-9412P-F20F(D)G
(IEEE 802.3ahTM-2004 1000BASE-PX20-U)
Members of FlexonTM Family
Standard
Compliant with SFF MSA Compliant with IEEE Std 802.3ahTM -2004 1000BASE-PX20-U Compliant with FCC 47 CFR Part 15, Class B Compliant with FDA 21 CFR 1040.10 and 1040.11, Class I
Features Description
Single fiber bi-directional data links with symmetric 1.25Gbps upstream and 1.25Gbps downstream Integrated with micro-optics WDM filter for dual wavelength Tx/Rx operation at 1310/1490nm 1310nm burst-mode transmitter with FP laser 1490nm continuous-mode receiver with PIN-TIA and optional 1550nm optical signal rejection 0 to 70 operating temperature 2x 5 SFF package with SC/UPC pigtail Single 3.3V power supply LVPECL/CML interface LVTTL transmitter burst-mode control LVTTL receiver signal-detected indication Low EMI and excellent ESD protection Class I laser safety standard IEC-60825 compliant RoHS compliance compatible data input/output FTM-9412P-F20FG/F20FDG is Optical Network Unit (ONU) for IEEE802.3ahTM-2004 1000BASE-PX20-U application The transceiver is the high performance module for 1.25Gbps data link in single fiber by using 1310nm burst-mode transmitter and 1490nm continuous-mode receiver with optional 1550nm optical signal rejection. The transmitter section uses a multiple quantum well 1310nm FP laser and is Classlaser compliant product according to international safety standard IEC-60825. The receiver section uses an integrated 1490nm PIN and preamplifier mounted in an optical header and limiting post-amplifier IC. The optical burst output can be enabled by a LVTTL logic high-level input of TX_BRST. Signal Detected (SD) output is provided to indicate the detection of an input optical signal of receiver. Gigabit Ethernet Passive Optical Networks (GEPON) - ONU side Gigabit Ethernet Point-to-Point Bi-directional Transmission Media Converts for Fiber-In-The-Loop (FITL)
Applications
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Page 1 of 12
SFF GEPON PX20 ONU Transceiver IEEE802.3ahTM 1000BASE-PX20
Aug. 20, 2007
Regulatory Compliance
The transceivers have been tested according to American and European product safety and electromagnetic compatibility regulations (See Table 1). For further information regarding regulatory certification, please refer to FlexonTM regulatory specification and safety guidelines, or contact with Fiberxon, Inc. America sales office listed at the end of documentation. Table 1 - Regulatory Compliance
Feature Electrostatic Discharge (ESD) to the Electrical Pins Electromagnetic Interference (EMI) Immunity Laser Eye Safety Component Recognition RoHS MIL-STD-883E Method 3015.7 FCC Part 15 Class B EN55022 Class B (CISPR 22B) VCCI Class B IEC 61000-4-3 FDA 21CFR 1040.10 and 1040.11 EN60950, EN (IEC) 60825-1,2 UL and CSA 2002/95/EC 4.1&4.2 Compliant with standards Compliant with Class I laser product Compliant with standards Compliant with standards Compliant with standards Standard Performance Class (>500 V)
Absolute Maximum Ratings
Absolute Maximum Ratings are those values, beyond which, some damages may occur to the devices. Exposure to conditions above the Absolute Maximum Ratings listed in Table 2 may negatively impact the reliability of the products. Table 2 - Absolute Maximum Ratings
Parameter Storage Ambient Temperature Operating Case Temperature Operating Humidity Power Supply Voltage Input Voltage Receiver Damaged Threshold Soldering Temperature Bending Radius Pigtail Fiber Contact Temperature 30 85 Symbol TSTG TC HOPR VCC Min. -40 0 5 0 GND 2 380/10 240/10 Max. 85 70 95 4 Vcc Unit C C % V V dBm C/s C/s mm C 1 2 Note
Note 1: Only for soldering by iron Note 2: Only for wave soldering
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Page 2 of 12
SFF GEPON PX20 ONU Transceiver IEEE802.3ahTM 1000BASE-PX20
Aug. 20, 2007
Recommended Operating Conditions
Table 3 - Recommended Operating Conditions Parameter
Power Supply Voltage Operating Ambient Temperature Operating Humidity Data Rate Data Rate Drift -100
Symbol
VCC TOPR HOPR
Min.
3.13 0 5
Typ.
3.3
Max.
3.47 70 95
Unit
V C % Gbit/s PPM
Notes
3.35% 1
1.25 +100
Note 1: When ambient temperature is above 60C, airflow at rate higher than 1m/sec is required
Optical and Electrical Characteristics
Table 4 - Transmitter Optical and Electrical Characteristics (0C Parameter Optical Center Wavelength Optical Spectrum Width (RMS) Average Launch Power Average Launch Power-OFF Transmitter Extinction Ratio Rise/Fall Time (20%-80%) Burst Turn On Time Burst Turn Off Time Burst Enable Duration Burst Disable Duration RIN15OMA Optical Return Loss Tolerance Transmitter Reflectance Transmitter and Dispersion Penalty Optical Eye Diagram Data Input Differential Swing Input Differential Impedance Common-Mode Input Voltage Power Supply Current Transmitter Burst Control Voltage - Low Transmitter Burst Control Voltage - High VIN ZIN VCM ICC_TX VBURST, L VBURST, H 0 2.0 TDP 200 90 VCC-1.49 100 VCC-1.32 Symbol C POUT POFF ER TR/TF TBURST_ON TBURST_OFF TEN_DUR TDIS_DUR 600 100 -115 15 -10 2 Compliant With IEEE Std 802.3ahTM-2004 1600 110 VCC- VIN/4 200 0.8 VCC mV V mA V V 9 8 9 260 30 30 0 Min. 1276 Typ. Max. 1356 2.8 4 -45 Unit nm nm dBm dBm dB ps ns ns ns ns dB/Hz dB dB dB 5 2,6 7 4 1 2 2,3 Note
Note 1: Launched into 9/125um Single Mode Fiber. Note 2: Measured with PRBS 27-1 test pattern @1.25 Gbit/s. Note 3: Measured with the Bessel-Thompson filter OFF. Note 4: Refer to Timing Parameter Definition in Burst Mode Sequence. Note 5: Maximum sensitivity penalty due to transmitter and dispersion effect through 20km of SMF optical fiber. Note 6: Transmitter eye mask definition is {0.22UI, 0.375UI, 0.20UI, 0.20UI, 0.30UI}.
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SFF GEPON PX20 ONU Transceiver IEEE802.3ahTM 1000BASE-PX20
Aug. 20, 2007
Note 7: Compatible with LVPECL/CML input (See Recommended Interface Circuit and Table 6 - Electrical Input/Output Coupling Mode) Note 8: Only for FTM-9412P-F20FD Note 9: TX_BRST (See Pin Function Definitions) Table 5 - Receiver Optical and Electrical Characteristics (0C Parameter Operating Wavelength Sensitivity Saturation Signal-Detected Assert Level Signal-Detected Deassert Level Signal-Detected Hysteresis Receiver Reflectance WDM Filter Isolation Power Supply Current Data Output Differential Swing Signal-Detected Voltage - Low Signal-Detected Voltage - High Signal-Detected Assert Time Signal-Detected Deassert Time
7
Symbol PSEN PSAT PSDA PSDD PSDA- PSDD ISO (1550) ISO (1650) ICC_RX VOUT VSD, L VSD, H TASS TDAS
Min. 1480 -3
Typ. 1490
Max. 1500 -27.5 -28
Unit nm dBm dBm dBm dBm dBm dB dB dB
Notes
1 2 3
-39 0.5 38 35 140 400 0 2.0 1600 0.8 VCC 100 100
-12
6 -12
mA mV V V s s 4 5
Note 1: Measured with a PRBS 2 -1 test pattern @1.25Gbit/s and ER=9dB, BER =10 . Note 2: An increase in optical power above the specified level will cause the Signal Detect output to switch from a low state to a high state. Note 3: A decrease in optical power below the specified level will cause the Signal Detect output to switch from a high state to a low state. Note 4: LVPECL output, AC coupled internally, guaranteed in the full range of input optical power (-3dBm to -28dBm)(See Recommended Interface Circuit) Note 5: SD (See Pin Function Definitions)
Table 6 - Electrical Input/Output Coupling Mode
P/N FTM-9412P-F20FG FTM-9412P-F20FDG Input (TD+/TD-) Internal AC Coupling Internal DC Coupling Output (RD+/RD-) Internal AC Coupling Internal AC Coupling
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Page 4 of 12
SFF GEPON PX20 ONU Transceiver IEEE802.3ahTM 1000BASE-PX20
Aug. 20, 2007
TX_BRST
T EN_DUR
T DIS_DUR
TD+ TD-
Optical Power Output
Average Power <=-45dBm
ER for CM operation
TBURST_ON
ER and Average Power within 15% CM operation
TBURST_OFF
Burst On Condition
Burst Off Condition
Figure 1 Timing Parameter Definition in Burst Mode Sequence
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Page 5 of 12
SFF GEPON PX20 ONU Transceiver IEEE802.3ahTM 1000BASE-PX20
Aug. 20, 2007
Recommended Interface Circuit
Figure 2 shows the recommended interface scheme for FTM-9412P-F20FG.
V EET (7)
+3.3V
2x1 uH 10 uF 0.1uF 10 uF
0.1uF
V CCT (6) V CCR (2) V EER (1)
TX_BRST(8)
FTM-9412P-F20FG
0.1uF
PON_TX_DISABLE
Z=50
TXP
TD+(9)
(Note A)
TXN
2x150
Z=50
TD-(10)
100
BM Laser Driver
GEPON MAC
SerDes
R1
RXN
+3.3V R2
Z=50
RD-(4)
R5
RXP
(Note B)
Z=50
RD+(5)
CM Limiting Amplifier
+3.3V 10K
R3
R4
SD(3)
2x150
PON_LOS
Figure 2 Recommended Interface Circuit (FTM-9412P-F20FG) Note A: Open emitter output internally. Note B: LVPECL output, AC coupled internally. Input stage in SerDes IC is assumed with high impedance and internal bias to Vcc-1.3V R1=R2=R3=R4=N.C, R5=100 Input stage in SerDes IC is assumed without internal bias to Vcc-1.3V R1=R2=82,R3=R4=130,R5=N.C
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Page 6 of 12
SFF GEPON PX20 ONU Transceiver IEEE802.3ahTM 1000BASE-PX20
Aug. 20, 2007
Figure 3 shows the recommended interface scheme for FTM-9412P-F20FDG
V EET(7)
+3.3V
2x1 uH 10uF 0.1uF 10 uF
0.1uF
V CCT (6) V CCR (2) V EER (1)
TX_BRST(8)
FTM-9412P-F20FDG
0.1uF
PON_TX_DISABLE
Z=50
TXP
130
+3.3V 130 TD+(9)
TD-(10)
(Note A)
TXN
Z=50
BM Laser Driver
82
82
GEPON MAC
SerDes
R1
RXN
+3.3V R2
Z=50
RD-(4)
R5
RXP
(Note B)
Z=50
RD+(5)
CM Limiting Amplifier
+3.3V 10K
R3
R4
SD(3)
2x150
PON_LOS
Figure 3 Recommended Interface Circuit (FTM-9412P-F20FDG) Note A: Open emitter output internally. Note B: LVPECL output, AC coupled internally. Input stage in SerDes IC is assumed with high impedance and internal bias to Vcc-1.3V R1=R2=R3=R4=N.C, R5=100 Input stage in SerDes IC is assumed without internal bias to Vcc-1.3V R1=R2=82,R3=R4=130,R5=N.C
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Page 7 of 12
SFF GEPON PX20 ONU Transceiver IEEE802.3ahTM 1000BASE-PX20
Aug. 20, 2007
Pin Definitions
2x5 SFF planform in Figure 4 below shows the pin information of electrical interface and mounting studs. Functions are described in Table 7 with some accompanying notes.
Figure 4 2x5SFF Planform Table 7 - Pin Function Definitions (2x5 SFF)
Pin No. 1 2 3 4 5 6 7 8 9 10 F Name VEER VCCR SD RDRD+ VCCT VEET TX_BRST TD+ TDMS Description Receiver Signal Ground Receiver Power Supply Receiver Signal-Detected Indication Inverted Receiver Data Output Non-inverted Receiver Data Output Transmitter Power Supply Transmitter Signal Ground Transmitter Burst Control Transmitter Non-inverted Data Input Transmitter Inverted Data Input Mounting Studs 3 4 5 1 2 Notes
Note 1: TTL logic output, with internal 10K pull-up resistor. Optical Signal-Detected: High; Optical Signal Loss: Low Note 2: LVPECL logic output, AC coupled internally. (See Recommended Interface Circuit) Note 3: A positive level enable optical signal output under burst mode. (See Timing Parameter Definition in Burst Mode Sequence) Note 4: Compatible with LVPECL/CML input (See Recommended Interface Circuit and Table 6 - Electrical Input/Output Coupling Mode) Note 5: The mounting studs are provided for transceiver mechanical attachment to circuit board. They may also provide an optional connection of the transceiver to the equipment chassis ground. The holes in the circuit board must be tied to chassis ground. It is not recommended that the mounting studs be connected to signal ground.
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Page 8 of 12
SFF GEPON PX20 ONU Transceiver IEEE802.3ahTM 1000BASE-PX20
Aug. 20, 2007
Mechanical Design Diagram
The form factor is 2x5 SFF with pigtail fiber. The pigtail fiber has a length 1000 - 1600mm and 30mm minimum bending radius. The fiber connector type is SC/UPC. The mechanical design diagram is shown in Figure 5. (Dimension in mm)
Figure 5 Mechanical Design Diagram (2x5 SFF)
Table 8 - Pigtail Fibre Characteristics
Parameter Mode Field Diameter Cladding Diameter Jacket Diameter Bending Radius of Pigtail Fiber Tension Force on Pigtail Fiber Pigtail Fiber Length Optical Return Loss (UPC type) -1310nm 1000 50 30 1 1600 Min. Typical 9 125 0.9 Max. Unit m m mm mm Kg mm dB
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Page 9 of 12
SFF GEPON PX20 ONU Transceiver IEEE802.3ahTM 1000BASE-PX20
Aug. 20, 2007
Ordering Information
Part No. FTM-9412P-F20FG FTM-9412P-F20FDG Product Description 1310nm(TX)/1490nm(RX), SC/UPC Pigtailed 2x5 SFF for GE-PON ONU 20km application, with 1550nm optical signal blocked, 0C ~ 70C, Tx AC Coupling, Rx AC Coupling, RoHS compliance 1310nm(TX)/1490nm(RX), SC/UPC Pigtailed 2x5 SFF for GE-PON ONU 20km application, with 1550nm optical signal blocked, 0C ~ 70C, Tx DC Coupling, Rx AC Coupling, RoHS compliance
Related Documents
For further information, please refer to the following documents: IEEE Std 802.3ahTM-2004
Obtaining Document
You can visit our website: http://www.fiberxon.com/ Or contact with Fiberxon, Inc. America Sales Office listed at the end of documentation to get the latest documents.
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Page 10 of 12
SFF GEPON PX20 ONU Transceiver IEEE802.3ahTM 1000BASE-PX20
Aug. 20, 2007
Revision History
Reversion Pre 1a Initiate Zachary Lu Review Johnny Yang Approve Peter Tang FTM-9412P-F20F (Doc No. DS3493006-1a) Revised datasheet 1.Add new P/Ns: FTM-9412P-F20FD, 2.Improve Burst Turn On Time and Burst Turn Off Time specification from 64ns(Max.) to Pre 2a Johnny Yang Peter Tang Peter Tang 30ns(Max.) in Table 4, Page 3 3.Update the transmitter part Central Wavelength from 1304~ 1320nm to 1300~1325nm. (Doc No. DS3493006-2a) Revised datasheet 1. 2. 3. 4. 5. 6. 7. Update P/N FTM-9412P-F20F to FTM-9412P-F20FG; Update P/N FTM-9412P-F20FD to FTM-9412P-F20FDG; 1c Jacob Cai Gary Chen Peter Tang Update photo in cover page; Update Table 1 for RoHS regulation; Update soldering temperature information in Table 2; Update Figure 5; Update datasheet template. Aug. 20, 2007 2005-11-17 Subject Initial datasheet Only including 2005-1-27 Release Date
(Doc No. DS3493006-1c)
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Page 11 of 12
SFF GEPON PX20 ONU Transceiver IEEE802.3ahTM 1000BASE-PX20
Aug. 20, 2007
(c) Copyright Fiberxon Inc. 2007 All Rights Reserved. All information contained in this document is subject to change without notice. The products described in this document are NOT intended for use in implantation or other life support applications where malfunction may result in injury or death to persons. The information contained in this document does not affect or change Fiberxon's product specifications or warranties. Nothing in this document shall operate as an express or implied license or indemnity under the intellectual property rights of Fiberxon or third parties. All information contained in this document was obtained in specific environments, and is presented as an illustration. The results obtained in other operating environment may vary. THE INFORMATION CONTAINED IN THIS DOCUMENT IS PROVIDED ON AN "AS IS" BASIS. In no event will Fiberxon be liable for damages arising directly from any use of the information contained in this document. Contact U.S.A. Headquarters: 5201 Great America Parkway, Suite 340 Santa Clara, CA 95054 U. S. A. Tel: 408-562-6288 Fax: 408-562-6289 Or visit our website: http://www.fiberxon.com/
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Page 12 of 12


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