10Gb/s DWDM XFP 80km Transceiver RDXX0SZR Rev A.0, 12/02/2010 RDXX0SZR DWDM XFP Transceiver Product...

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RoHS Compliant Rev A.0, 12/02/2010 1 Features RoHS compliant 10Gb/s optical links Compliant with XFP MSA Support multi protocol from 9.9Gb/s to 11.3Gb/s Transmission distance of 80km over single mode fiber DWDM EML laser transmitter LC duplex connector 2-wire interface for management and diagnostic monitor Hot pluggable 30 pin connector XFI electrical interface with AC coupling Power supply voltages : +3.3V, +5V Power dissipation: <3.5W Three optional operating temperature ranges : Option ST : 0°C to 70°C Option ET : -5°C to 85°C Option IT : -40°C to 85°C Applications SONET OC-192 LR-2 / SDH L-64.2a 10GBASE-ZR/ZW Ethernet 80km 10G FC G.709 OUT-2 Description OE Solutions’ XFP transceivers are designed to be compatible with the XFP 30pin Multi-Source Agreement (MSA). The high performance cooled 1550nm EML transmitter and high sensitivity APD receiver provide superior performance for SONET/SDH and Ethernet applications up to 80km optical links. Advanced Digital Diagnostics functions are available via the 2-wire serial bus specified in the XFP MSA. The transmitter and receiver features ac-coupled differential data inputs and outputs, and an LVTTL for Tx disable input and Tx fault output. Software TX disable is also implemented. The receiver features differential ac-coupled data outputs and LVTTL for LOS (Loss of Signal) output. 10Gb/s DWDM XFP 80km Transceiver RDXX0SZR

Transcript of 10Gb/s DWDM XFP 80km Transceiver RDXX0SZR Rev A.0, 12/02/2010 RDXX0SZR DWDM XFP Transceiver Product...

Page 1: 10Gb/s DWDM XFP 80km Transceiver RDXX0SZR Rev A.0, 12/02/2010 RDXX0SZR DWDM XFP Transceiver Product Specifications 1. Absolute Maximum Ratings Parameter Symbol Min. Typ. Max. Unit

RoHS Compliant

Rev A.0, 12/02/2010 1

Features

RoHS compliant

10Gb/s optical links

Compliant with XFP MSA

Support multi protocol from 9.9Gb/s to

11.3Gb/s

Transmission distance of 80km over single

mode fiber

DWDM EML laser transmitter

LC duplex connector

2-wire interface for management and

diagnostic monitor

Hot pluggable 30 pin connector

XFI electrical interface with AC coupling

Power supply voltages : +3.3V, +5V

Power dissipation: <3.5W

Three optional operating temperature ranges :

Option ST : 0°C to 70°C

Option ET : -5°C to 85°C

Option IT : -40°C to 85°C

Applications

SONET OC-192 LR-2 / SDH L-64.2a

10GBASE-ZR/ZW Ethernet

80km 10G FC

G.709 OUT-2

Description

OE Solutions’ XFP transceivers are designed to

be compatible with the XFP 30pin Multi-Source

Agreement (MSA). The high performance cooled

1550nm EML transmitter and high sensitivity

APD receiver provide superior performance for

SONET/SDH and Ethernet applications up to

80km optical links.

Advanced Digital Diagnostics functions are

available via the 2-wire serial bus specified in the

XFP MSA. The transmitter and receiver features

ac-coupled differential data inputs and outputs,

and an LVTTL for Tx disable input and Tx fault

output. Software TX disable is also implemented.

The receiver features differential ac-coupled data

outputs and LVTTL for LOS (Loss of Signal)

output.

10Gb/s DWDM XFP 80km Transceiver

RDXX0SZR

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1. Absolute Maximum Ratings

Parameter Symbol Min. Typ. Max. Unit Notes

Absolute Supply Voltage Vcc3_max 0 - 3.6 V -

Vcc5_max 0 - 6.0 V -

Operating Case Temperature Top -40 - 85 °C 1,2

Operating Relative Humidity RHop 5 - 90 % 3

Storage and TransportationTemperature Tst -40 - 85 °C 3

Storage and Transportation

Relative Humidity

5 - 95 % 3

Notes: 1. Measured on bottom side front center of XFP modu-le 2. There are three options of operating maximum temperature:

Option ST: standard temperature from 0oC to 70

oC,

Option ET: extended temperature from -5oC to 85

oC, and

Option IT: extended temperature from -40oC to 85

oC

3. Non-condensing

2. General Operating Conditions

Parameter Symbol Min. Typ. Max. Unit Notes

Bit Rate B 9.9 10.3 11.3 Gb/s -

Maximum Transmission Distance Dmax 80 - - km -

Operating Voltage Vcc3 3.13 - 3.47 V -

Vcc5 4.75 - 5.25 V -

Power Supply Current ICC3 - 200 480 mA -

Power Supply Current ICC5 - - 420 mA 1

Total Power Consumption - - 3.5 W -

ESD (High speed pins) - - 500 V 2

Notes : 1. Supplies TEC, Current draw depends on Temperature 2. Human body model per JEDEC JESD22-A114-B, compliant with INF-8077i Rev. 4.5 August 31, 2005

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3. Electrical Specifications

3.1 Module Electrical Specifications (Over Operating Case Temperature and Power Supply Range)

Parameter Symbol Min. Typ. Max. Unit Notes

XFP Interrupt, Mod_NR Vol 0.0 - 0.4 V -

Voh Vcc3-0.5 - Vcc3+0.3 V 1

P_Down/RST Vil -0.3 - 0.8 V -

Vih 2.0 - Vcc3+0.3 V -

Interrupt Assert Delay Interrupt_on - - 200 ms -

Interrupt Negate Delay Interrupt_off - - 500 µs -

Mod_NR Assert / Negate Delay - - - 1 ms -

P-Down/Reset Assert delay - 100 - - µs 2

P-Down/Reset De-assert delay - 5 - - s 2

Note : 1. Vcc3 is the voltage of host board 2. Power down mode.

3.2 Transmitter Electrical Specifications (Over Operating Case Temperature and Power Supply Range)

Electrical Characteristics

Parameter Symbol Min. Typ. Max. Unit Notes

Differential Input Impedance Rin 80 100 120 Ω -

Differential Data Input Swing Vin,pp 120 - 1000 mVp-p -

Tx Disable Voltage Vd 2.0 - Vcc3+0.3 V 1

Tx Enable Voltage Ven 0 - 0.8 V -

Tx Disable Assert Time T_off - - 1 ms -

Tx Enable Assert Time T_on - - 5 s -

Initialization Time T_start - - 60 s -

Note : 1. Vcc3 is the voltage of host board

3.3. Receiver Electrical Specifications (Over Operating Case Temperature and Power Supply Range)

Electrical Characteristics

Parameter Symbol Min. Typ. Max. Unit Notes

Data Rate B 9.9 10.3 11.3 GBd -

Differential Output Impedance Rout 80 100 120 Ω -

Differential Data Output Swing Vout 340 - 850 mVp-p -

Data Output Rise/Fall Time tr/tf - - 45 ps -

LOS Output High Voltage Vlosh Vcc3-0.5 - Vcc3+0.3 V 1

LOS Output Low Voltage Vlosl 0 - 0.4 V -

LOS Assert/Deassert Time Delay T_los on/off - - 100/10 µs/ms -

Note : 1. Vcc3 is the voltage of host board

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4. Optical Specifications

4.1 Transmitter Optical Specifications (Over Operating Case Temperature and Power Supply Range)

Optical Characteristics

Parameter Symbol Min. Typ. Max. Unit Notes

Laser Safety Class Class 1 according to IEC60825 -

Optical Wavelength λ 1529 - 1562 nm -

Average Optical

Output Power

BOL Pout -1 - +3 dBm 1

EOL -2 - +3

Optical Power Overshoot Pov - - 1 dB 2

Optical power of OFF transmitter Pout-off - - -40 dBm -

Spectral Width ∆λ -8 - 8 GHz 3

Optical Output Power Variation

(with respect to BOL Tc=25°C,

and nominal power supply)

∆ Pout -1 - +1 dB -

Side Mode Suppression Ratio SMSR 30 - - dB 4

Wavelength

Deviation

BOL ∆λT -50 - +50 pm 5

EOL ∆λa -100 - +100 pm

Optical Return Loss RL 24 - - dB -

Optical Extinction Ratio (Unfiltered) ER 9.0 - - dB -

Optical Rise/Fall Time (20%-80%) Tr, Tf - - 35 ps -

Output Jitter - - - - 6

Notes: 1. Average power measured at output 2. Defined as Peak power – Steady-state power (in dBm) when Tx-dis is de-asserted or when the module is hot plugged with Tx_dis in low state (Tx enabled). 3. Full spectral width (RBW=0.1nm) measured 15dB down from the maximum of center wavelength peak under full modulation condition 4. Ratio of the average output power in the dominant longitudinal mode to the power in the most significant side mode peak under full modulation condition 5. Deviation related to the ITU standardized wavelength. The EOL value is met as soon as the output average power is above 10% of the steady-state power. 6. The jitter performance meets Telcodia GR-253-Core and ITU-T Recommendations G.783, G813, G825 and G82511 with ITU-T 0.172(04/2005) for the measurement methods and the measurement equipment.

Laser Safety: All transceivers in this datasheet are Class I Laser products per FDA/CDRH and IEC-60825 standards. They must be operated under specified operating conditions.

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4. ITU Channel and Wavelength Guide

ITU Channel Frequency

(THz)

Wavelength

(nm) ITU Channel

Frequency

(THz)

Wavelength

(nm)

20 192.0 1561.42 41 194.1 1544.53

21 192.1 1560.61 42 194.2 1543.73

22 192.2 1559.79 43 194.3 1542.94

23 192.3 1558.98 44 194.4 1542.14

24 192.4 1558.17 45 194.5 1541.35

25 192.5 1557.36 46 194.6 1540.56

26 192.6 1556.56 47 194.7 1539.77

27 192.7 1555.75 48 194.8 1538.98

28 192.8 1554.94 49 194.9 1538.19

29 192.9 1554.13 50 195.0 1537.40

30 193.0 1553.33 51 195.1 1536.61

31 193.1 1552.52 52 195.2 1535.82

32 193.2 1551.72 53 195.3 1535.04

33 193.3 1550.92 54 195.4 1534.25

34 193.4 1550.12 55 195.5 1533.47

35 193.5 1549.32 56 195.6 1532.68

36 193.6 1548.51 57 195.7 1531.90

37 193.7 1547.72 58 195.8 1531.12

38 193.8 1546.92 59 195.9 1530.33

39 193.9 1546.12 60 196.0 1529.55

40 194.0 1545.32

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4.2. Receiver Optical Specifications (Over Operating Case Temperature and Power Supply Range)

Optical Characteristics

Parameter Symbol Min. Typ. Max. Unit Notes

Optical Wavelength λ 1528 1563 nm -

Maximum Input Power Pol -6.0 - - dBm -

Receiver Reflectance - - - -27 dB -

LOS Assert LOS_A -35 - - dBm -

LOS De-assert LOS_D - - -27 dBm -

LOS Hysteresis - - 2 5 dB -

Application with FEC

Parameter/ Test Conditions Dispersion Min. Typ. Max. Unit

Power Sensitivity at λ DWDM

1. No ASE noise (or OSNR 0.1nm > 30dB)

2. Data Rate: up to 11.3176Gb/s

3.BER=1x10-4

0ps/nm - - -27 dBm

1300ps/nm - - -25 dBm

1600ps/nm - - -23 dBm

Application without FEC

Parameter/ Test Conditions Dispersion Min. Typ. Max. Unit

Power Sensitivity at λ DWDM

1. No ASE noise (or OSNR 0.1nm > 30dB)

2. Data Rate: up to 10.3125Gb/s

3.BER=1x10-12

0ps/nm - - -24 dBm

1300ps/nm - - -22 dBm

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5. Pin Descriptions

XFP Transceiver Electrical Pad Layout

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Pin Descriptions (continued)

Pin Logic Symbol Description Notes

1 - GND Module Ground 1

2 - VEE5 Not required

3 LVTTL-I Mod_DeSel Module De-select; When held low allows module to respond to 2-wire serial

interface

4 LVTTL-O Interrupt Interrupt; Indicates presence of an important condition which can be read over

the 2-wire serial interface 2

5 LVTTL-I TX_DIS Transmitter Disable; Turns off transmitter laser output

6 - VCC5 +5V Power Supply

7 - GND Module Ground 1

8 - VCC3 +3.3V Power Supply

9 - VCC3 +3.3V Power Supply

10 LVTTL-I/O SCL 2-Wire Serial Interface Clock 2

11 LVTTL-I/O SDA 2-Wire Serial Interface Data Line 2

12 LVTTL-O Mod_Abs Indicates Module is not present. Grounded in the Module 2

13 LVTTL-O Mod_NR Module Not Ready; Indicating Module Operational Fault 2

14 LVTTL-O RX_LOS Receiver Loss Of Signal Indicator 2

15 - GND Module Ground 1

16 - GND Module Ground 1

17 CML-O RD- Receiver Inverted Data Output, AC coupled in the module

18 CML-O RD+ Receiver Non-Inverted Data Output, AC coupled in the module

19 - GND Module Ground 1

20 - VCC2 Not required 3

21 LVTTL-I P_Down/RST

Power down; When high, requires the module to limit power consumption to

1.5W or below. 2-Wire serial interface must be functional in the low power

mode.

Reset; The falling edge initiates a complete reset of the module including the 2-

wire serial interface, equivalent to a power cycle.

22 - VCC2 No use 3

23 - GND Module Ground 1

24 PECL-I RefCLK+ Not required

25 PECL-I RefCLK- Not required

26 - GND Module Ground 1

27 - GND Module Ground 1

28 CML-I TD- Transmitter Inverted Data Input, AC coupled in the module

29 CML-I TD+ Transmitter Non-Inverted Data Input, AC coupled in the module

30 - GND Module Ground 1

Notes : 1. Module ground pins Gnd are isolated from the module case and chassis ground within the module.

2. Shall be pulled up with 4.7K-10Kohms to a voltage between 3.15V and 3.45V on the host board.

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6. Outline Drawings

Dimensions are in millimeters

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7. PCB layout and Bezel recommendation

Dimensions are in millimeters

XFP Host Board Mechanical Layout

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PCB layout and Bezel recommendation (continued)

XFP Host Board Mechanical Layout

Recommended Single Sided Bezel Design

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8. SFP+ Block Diagram, Power Supply Information and Host Board Interface

8.1 XFP Block Diagram and Host Board Interface

Note 1: Host board output device circuit in the transmitter side and host board input device circuit in the receiver should be

carefully designed to meet 100ohm differential impedance matching. Also necessary is the dc bias circuit of each

input and output by taking into account of ac coupling of data input ant output of XFP module. For the interface of

host board devices, it is recommended to refer to the device vendor’s data sheet.

TOSA

ROSA

Laser

Post amp.

Module

GND

RD-

RD+

TD+

TD-

Tx Disable

SCL SDA EEPROM

100Ω

Management processor

Zin diff.=

100Ω

Zout = 50Ω

each arm

Pin 5

Pin 29

Pin 28

Pin 1, 7, 15, 16,

19, 23, 26, 27

Pin 10 Pin 11

Pin 17

Pin 18

R= 4.7k ~ 10kΩ SCL. SDA

VCC3

Mod_Abs, Mod_NR

Mod_DeSel, P_Down/RST

R R

R Interrupt, RX_LOS

Pin 10, 11 Pin 12, 13

Pin 4,14

Pin 3, 21 VCC3

VCC5

VEE5

Pin 8, 9

Pin 6

Pin 2 (Not used)

VCC2 Pin 22 (Not used)

RefCLK+/- Pin 24,25 (Not used)

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8.2 Recommended Host Board Supply Filtering Network

9. Digital Diagnostic Monitoring and Serial ID Operation

Serial ID and Map: page A0h

Address HEX Name of Fields Description

0 06 Identifier [06h] XFP

1 00

Signal Conditioner Control Field

[7-4] Data Rate Control

[2] Lineside Loopback

[1] XFI Loopback

[0] Signal Conditioner Control

Signal Conditioner Control Field

Data Rate Control(01[7:4]) = 9.50 Gb/s

[0b] Normal Operation

[0b] Normal Operation

[0b] Normal Asynchronous REFCLK mode

2 varies Temp High Alarm MSB ST: 78 [], ET and IT: 88 []

3 varies Temp High Alarm LSB

4 varies Temp Low Alarm MSB ST: -13 [], ET and IT: -43 []

5 varies Temp Low Alarm LSB

6 varies Temp High Warning MSB ST: 75 [], ET and IT: 85 []

7 varies Temp High Warning LSB

8 varies Temp Low Warning MSB ST: -10 [], ET and IT: -40 []

9 varies Temp Low Warning LSB

10-17 00 Reserved A/D Flag Thresholds(10-17)

18 FF Bias High Alarm MSB 131 [mA]

19 DC Bias High Alarm LSB

20 3A Bias Low Alarm MSB 30 [mA]

21 98 Bias Low Alarm LSB

22 EC Bias High Warning MSB 121 [mA]

23 54 Bias High Warning LSB

24 44 Bias Low Warning MSB 35 [mA]

25 5C Bias Low Warning LSB

26 9B TX Power High Alarm MSB 6.0 [dBm]

27 83 TX Power High Alarm LSB

28 0C TX Power Low Alarm MSB -5.0 [dBm]

29 5A TX Power Low Alarm LSB

4.7µH

4.7µH

0.1µF

0.1µ 22µF 0.1µF

VCC3

XFP Module

Vcc3

Vcc5

HOST BOARD

22µF 0.1µF

VCC5

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30 62 TX Power High Warning MSB 4.0 [dBm]

31 1F TX Power High Warning LSB

32 13 TX Power Low Warning MSB -3.0 [dBm]

33 94 TX Power Low Warning LSB

34 0C RX Power High Alarm MSB -5.0 [dBm]

35 5A RX Power High Alarm LSB

36 00 RX Power Low Alarm MSB -27.0 [dBm]

37 14 RX Power Low Alarm LSB

38 07 RX Power High Warning MSB -7 [dBm]

39 CB RX Power High Warning LSB

40 00 RX Power Low Warning MSB -25 [dBm]

41 20 RX Power Low Warning LSB

42 3C AUX 1 High Alarm MSB (Laser Temp) 60 []

43 00 AUX 1 High Alarm LSB (Laser Temp)

44 0A AUX 1 Low Alarm MSB (Laser Temp) 10 []

45 00 AUX 1 Low Alarm LSB (Laser Temp)

46 32 AUX 1 High Warning MSB (Laser Temp) 50 []

47 00 AUX 1 High Warning LSB (Laser Temp)

48 14 AUX 1 Low Warning MSB (Laser Temp) 20 []

49 00 AUX 1 Low Warning LSB (Laser Temp)

50 D6 AUX 2 High Alarm MSB (Power Supply) 5.5 [V]

51 D8 AUX 2 High Alarm LSB (Power Supply)

52 AF AUX 2 Low Alarm MSB (Power Supply) 4.5[V]

53 C8 AUX 2 Low Alarm LSB (Power Supply)

54 CF AUX 2 High Warning MSB (Power Supply) 5.3[V]

55 08 AUX 2 High Warning LSB (Power Supply)

56 B7 AUX 2 Low Warning MSB (Power Supply) 4.7[V]

57 98 AUX 2 Low Warning LSB (Power Supply)

58 00

VPS Fields

[7-4] Lowest Voltage Supported

with an Operational LV Regulator

[3-0] Voltage Supplied on the VCC2 Pins

Not Supported

59 00

VPS Fields

[7-4] Voltage Supported

with a Bypassed Regulator

[0] Regulator bypass mode

Not Supported

60-69 00

70 00 Acceptable BER Not Supported

71 00 Actual BER Not Supported

72 00 Wavelength Set MSB(72-73) Not Supported

73 00

74 00 Wavelength Error LSB(74-75) Not Supported

75 00

76 80 Amplitude Adjustment 0.00 [%]

77 00 Phase Adjustment Not Supported

78 00 Reserved(78-79)

79 00

80 xx

Latched Interrupt Flag Fields(80)

[7] L-Temp High Alarm

[6] L-Temp Low Alarm

[3] L-TX Bias High Alarm

[2] L-TX Bias Low Alarm

[1] L-TX Power High Alarm

Varies

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[0] L-TX Power Low Alarm

81 xx

Latched Interrupt Flag Fields(81)

[7] L-RX Power High Alarm

[6] L-RX Power Low Alarm

[5] L-AUX 1 High Alarm

[4] L-AUX 1 Low Alarm

[3] L-AUX 2 High Alarm

[2] L-AUX 2 Low Alarm

Varies

82 xx

Latched Interrupt Flag Fields(82)

[7] L-Temp High Warning

[6] L-Temp Low Warning

[3] L-TX Bias High Warning

[2] L-TX Bias Low Warning

[1] L-TX Power High Warning

[0] L-TX Power Low Warning

Varies

83 xx

Latched Interrupt Flag Fields(83)

[7] L-RX Power High Warning

[6] L-RX Power Low Warning

[5] L-AUX 1 High Warning

[4] L-AUX 1 Low Warning

[3] L-AUX 2 High Warning

[2] L-AUX 2 Low Warning

Varies

84 xx

Latched Interrupt Flag Fields(84)

[7] L-TX_NR

[6] L-TX_Fault

[5] L-TX CDR

[4] L-RX_NR

[3] L-RX_LOS

[2] L-RX CDR

[1] L-MOD_NR

[0] L-Reset

Varies

85 xx

Latched Interrupt Flag Fields(85)

[7] L-APD Supply Fault

[6] L-TEC Fault

[5] L-Wavelength Unlocked

Varies

86 xx

Latched Interrupt Flag Fields(86)

[7] L-VCC5 High Alarm

[6] L-VCC5 Low Alarm

[5] L-VCC3 High Alarm

[4] L-VCC3 Low Alarm

[3] L-VCC2 High Alarm

[2] L-VCC2 Low Alarm

[1] L-Vee5 High Alarm

[0] L-Vee5 Low Alarm

Varies

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87 xx

Latched Interrupt Flag Fields(87)

[7] L-VCC5 High Warning

[6] L-VCC5 Low Warning

[5] L-VCC3 High Warning

[4] L-VCC3 Low Warning

[3] L-VCC2 High Warning

[2] L-VCC2 Low Warning

[1] L-Vee5 High Warning

[0] L-Vee5 Low Warning

Varies

88 00

Interrupt Masking Bits(88)

[7] M-Temp High Alarm

[6] M-Temp Low Alarm

[3] M-TX Bias High Alarm

[2] M-TX Bias Low Alarm

[1] M-TX Power High Alarm

[0] M-TX Power Low Alarm

Varies

89 00

Interrupt Masking Bits(89)

[7] M-RX Power High Alarm

[6] M-RX Power Low Alarm

[5] M-AUX 1 High Alarm

[4] M-AUX 1 Low Alarm

[3] M-AUX 2 High Alarm

[2] M-AUX 2 Low Alarm

Varies

90 00

Interrupt Masking Bits(90)

[7] M-Temp High Warning

[6] M-Temp Low Warning

[3] M-TX Bias High Warning

[2] M-TX Bias Low Warning

[1] M-TX Pow.High Warning

[0] M-TX Pow.Low Warning

Varies

91 00

Interrupt Masking Bits(91)

[7] M-RX Pow.High Warning

[6] M-RX Pow.Low Warning

[5] M-AUX 1 High Warning

[4] M-AUX 1 Low Warning

[3] M-AUX 2 High Warning

[2] M-AUX 2 Low Warning

Varies

92 00

Interrupt Masking Bits(92)

[7] M-TX_NR

[6] M-TX_Fault

[5] M-TX CDR not Locked

[4] M-RX_NR

[3] M-RX_LOS

[2] M-RX CDR not Locked

[1] M-MOD_NR

[0] M-Reset Complete

Varies

93 00

Interrupt Masking Bits(93)

[7] M-APD Supply Fault

[6] M-TEC Fault

[5] M-Wavelength Unlocked

Varies

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RDXX0SZR DWDM XFP Transceiver Product Specifications

94 00

Interrupt Masking Bits(94)

[7] M-VCC5 High Alarm

[6] M-VCC5 Low Alarm

[5] M-VCC3 High Alarm

[4] M-VCC3 Low Alarm

[3] M-VCC2 High Alarm

[2] M-VCC2 Low Alarm

[1] M-Vee5 High Alarm

[0] M-Vee5 Low Alarm

Varies

95 00

Interrupt Masking Bits(95)

[7] M-VCC5 High Warning

[6] M-VCC5 Low Warning

[5] M-VCC3 High Warning

[4] M-VCC3 Low Warning

[3] M-VCC2 High Warning

[2] M-VCC2 Low Warning

[1] M-Vee5 High Warning

[0] M-Vee5 Low Warning

Varies

96 xx Case Temperature MSB (Module Temp) Varies

97 xx Case Temperature LSB (Module Temp) Varies

98-99 00 Reserved(98-99)

100 xx TX Bias MSB Varies

101 xx TX Bias LSB Varies

102 xx TX Power MSB Varies

103 xx TX Power LSB Varies

104 xx RX Power MSB Varies

105 xx RX Power LSB Varies

106 xx LD Temp monitor MSB Varies

107 xx LD Temp monitor LSB Varies

108 xx Vcc(+5.0V) Supply Voltage MSB Varies

109 xx Vcc(+5.0V) Supply Voltage LSB Varies

110 xx

Control/Status Bits

[7] TX Disable State

[6] Soft TX Disable

[5] MOD_NR State

[4] P_Down State

[3] Soft P_Down

[2] Interrupt

[1] RX_LOS

[0] Data_Not_Ready

Varies

111 xx

Control/Status Bits

[7] TX_NR State

[6] TX_Fault

[5] TX_CDR

[4] RX_NR

[3] RX_CDR

Varies

112-117 00

118 00 Pcket Error Checking

[0] Error Checking [0b] Disable Packet Error Checking

119-126 00

127 01 Table Select

128 06 Identifier [06h] XFP

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RDXX0SZR DWDM XFP Transceiver Product Specifications

129 98 Extended Identifier

[10b] Power Level 3 Module (3.5W max.power

dissipation.)

[0] Module with CDR function

[1] TX Ref Clock Input Not Required

[1] CLEI code present in Table 02h

130 07 Connector [07h] LC

131 00 Gigabit Ethernet Compliance

132 00 Gigabit Fibre Channel Compliance

133 00 Gigabit Copper Links

134 00 Lower Speed Links

135 00 SONET/SDH Codes -Interconnect

136 00 SONET/SDH Codes Short Haul

137 42 SONET/SDH Codes Long Haul L-64.2a, WDM

138 00 SONET/SDH Codes Very Long Haul

139 10 Encoding [4] NRZ

140 64 BR,MINIMUM 9.950 [Gbits/s]

141 6F BR,MAXIMUM 11.300 [Gbits/s]

142 50 LENGTH (Km) 80 [Km]

143 00 LENGTH (EXT. 50 uM MULTIMODE FIBER) 0 [m]

144 00 LENGTH (50 uM MULTIMODE FIBER) 0 [m]

145 00 LENGTH (62.5 uM MULTIMODE FIBER) 0 [m]

146 00 LENGTH (COPPER) 0 [m]

147 76 Device Technology

[0111b] 1550 nm EML

[0b] Transmitter not Tunable

[1b] APD detector

[1b] Cooled transmitter

[0b] No wavelength control

148 4F

VENDOR NAME(148-163)

O (OE SOLUTION )

149 45 E

150 20

151 53 S

152 4F O

153 4C L

154 55 U

155 54 T

156 49 I

157 4F O

158 4E N

159 53 S

160-163 20

164 F8 CDR Support

[7] CDR support for 9.95 Gb/s

[6] CDR support for 10.3 Gb/s

[5] CDR support for 10.5 Gb/s

[4] CDR support for 10.7 Gb/s

[3] CDR support for 11.1 Gb/s

165 00

VENDOR OUI(165-167)

00

166 19 19

167 3A 3A

168 52 VENDOR PN(168-183) R (RDXX0SZR-xxx)

169 44 D

170 58 X

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RDXX0SZR DWDM XFP Transceiver Product Specifications

171 58 X

172 30 0

173 53 S

174 5A Z

175 52 R

176 2D -

177 TBD TBD

178 TBD TBD

179 TBD TBD

180-183 20

184 31 VENDOR REV(184-185) 1 (1 )

185 20

186 79 LASER WAVELENGTH(186-187) 1550.00 [nm](to be modified)

187 18

188 00 WAVELENGTH TOLERANCE(188-189) 0.236 [nm]

189 2F

190 xx MAXIMUM CASE TEMPERATURE xx=(46h for ST, 55h for ET and IT)

191 xx Check code for addresses 120 to 190 Varies

192 AF Maximum Power Dissipation 3500 mW

193 1E Maximum Total Power

Dissipation in Power Down Mode 300 mW

194 95

[7-4] Maximum current required

by +5V Supply.

[3-0] Maximum current required

by +3.3V Supply.

420 mA

480 mA

195 00

[7-4] Maximum current required

by +1.8V Supply.

[3-0] Maximum current required

by -5.2V Supply

0 mA

0 mA

196-211 xx VENDOR SN(196-211) Varies

212-219 xx Date Code(212-219) Varies

220 00

Diagnostic Monitoring Type

[4] Module Respond to FEC BER

[3] Received power measurement type

221 60

Enhanced Options

[7] Module Supports Optional VPS

[6] Soft TX_DISABLE

[5] Soft P_down

[4] Supports VPS LV regulator mode

[3] Supports VPS bypassed regulator Mode

[2] Active FEC control functions

[1] Wavelength tunability

[0] Optional CMU Support Mode

[6] Optional Soft TX_DISABLE implemented

[5] Optional Soft P_down

222 46

Auxiliary A/D Types

[7-4] Aux A/D Input 1

[3-0] Aux A/D Input 2

[0100b] Laser Temperature

[0110b] +5.0V Supply Voltage

223 xx Check code for addresses 192 to 222 Varies

224-255 FF VENDOR SPECIFIC ID FIELD(224-255) TBD

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RDXX0SZR DWDM XFP Transceiver Product Specifications

10. Digital Diagnostics Monitor Accuracy

Parameter Accuracy Range

Temperature +/- 3 oC -40 to 102 (

oC)

Voltage +/- 3% 0 to Vcc (V)

Tx bias Current +/- 10% 0 to 120 (mA)

Tx power +/- 2dB -2 to +3 (dBm)

Rx Power +/- 2dB -26 to -6 (dBm)

TEC Current +/- 60mA -1200 to 1200 (mA)

TEC Temperature 1 +/- 0.25

oC 20 to 70 (

oC)

Note 1: Relative Accuracy. Absolute accuracy is +/- 3 oC

11. Regulatory Compliance

RDXX0SZR comply with international Electromagnetic Compatibility (EMC) and international safety

requirements and standards. EMC performance is dependent on the overall system design. The RDXX0SZR is

lead-free and RoHS-compliant per Directive 2002/95/EC of the European Parliament and of the Council of 27

January 2003 on the restriction of the use of certain hazardous substances in electrical and electronic equipment.

12. Ordering Information

Model Name OES P/C Operating Case Temperature

Latch Color

Application Distance

RDXX0SZR-Sxx Dxx02 0oC to 70oC White SONET/SDH & 10G GbE 80km

RDXX0SZR-Exx TBD -5oC to 85oC White SONET/SDH & 10G GbE 80km

RDXX0SZR-Ixx Dxx04 -40oC to 85oC White SONET/SDH & 10G GbE 80km

Notice: This data sheet is subject to change at any time without notice.

13. Revision History

Date Rev. # Description Author(s)

12/01/2010 A.0 Initial Release JSYU/KSP

Contact Information:

OE Solutions Co. Ltd. (Korea) Techno Park, 958-3, Daechon-Dong, Buk-Gu, Gwangju, Korea, 500-470. Tel: +82-62-602-7813, Fax: +82-62-602-7639, www.oesolution.com.

OE Solutions America, Inc. 560 Sylvan Avenue, 1

st Floor, Englewood Cliffs, NJ 07632

Tel: 201-568-1188 Fax:201-568-1177Tel: +1-201-224-2377, Fax: 1-949-272-3200