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 Data Sheet
10Gb/s EA Modulator and DFB Laser with GPO RF Connector EML10ZCA
The Bookham EML10 Laser has an electro-absorption modulator monolithically integrated with a conventional Distributed Feedback Multi Quantum Well (MQW) laser. This allows the modulation voltage to be applied to the modulator section whilst the laser section operates CW allowing extremely low wavelength chirping. Specifically designed for use in STM-64/OC-192 TDM applications over 40km, with low dispersion penalty at 9.953Gb/s, (<2dB). A high extinction ratio of 10dB. This device is available in a hermetic 7-pin ceramic butterfly package with SMP/GPO connector for modulation input. The EML10 includes an optical isolator, monitor photodiode, thermistor and thermo-electric cooler. Features: * High output power * Low modulation voltage * Long haul performance with negligible dispersion penalty * Single 50 low voltage drive modulation input * Integral thermo-electric cooler with precision NTC temperature control * Hermetically sealed 7-pin butterfly package with optical isolator * High extinction ratio >10dB * RoHS compliant Applications: * Suitable for use: * In SONET & SDH applications (~ 9.95Gb/s) * With MetroCorTM and standard SMF-28TM fiber 40km applications
MetroCorTM and SMF-28TM are registered trademarks of Corning Incorporated
1
Data Sheet
Characteristics
Tcase = 25C, Tlaser = 25C unless otherwise stated
Parameter CW Laser Threshold current Threshold power Operating current SOL Operating current EOL Laser forward voltage Peak wavelength Wavelength drift vs life time Side mode suppression ratio (SMSR) @ Iop Spectral width @ Iop Optical Modulator Modulator drive voltage Bias voltage for `on' level Fibre output power Case temperature tracking error S21 Optical bandwidth S11 return loss (0 GHz to 7 GHz) S11 return loss (7 GHz to 10 GHz) Optical rise/fall time Dynamic optical extinction ratio OC192/SDH64 mask margin Dispersion penalty (RX power penalty) 20 to 80%, Notes Notes Notes Notes
[1] [3] [1] [3]
Conditions
Min
Typ
Max
Unit
5
20 0.001
35 1 90 100
mA uW mA mA V nm pm dB
@Iop @Iop If=80mA @ 25C, CW
50
80
1.2 1530
2 1563 100
15 years typical life
-100 36 45 0.27
-20dBr, Note
[2]
0.2
0.3
nm
2 -0.7 Note
[1]
2.8 0 0.5 +/-0.1 12.5 -15 -10 -8 -5 30 2 0.5
Vpp V dBm dB GHz dB
-1 -0.5 8
Tcase = -20 to +70 C
15 10 15
20 11 25 0.5
ps dB %
[1] [3] [1] [4]
1.7
dB
2
Data Sheet
Characteristics (continued)
Parameter Photodiode Monitor Monitor diode bias voltage Monitor diode current Dark current Capacitance Note
[1]
Conditions
Min
Typ
Max
Unit
1 @Iop 0.2
5 0.85 0.001
10 1.5 0.1 15
V mA uA pF
Thermo Electric Cooler System Thermistor resistance @ Tsub=25degC Thermistor Steinhart-Hart coefficient C1 Thermistor Steinhart-Hart coefficient C2 Thermistor Steinhart-Hart coefficient C3 Thermistor B constant Thermistor current Laser submount temperature TEC current (EOL) TEC voltage (EOL) TEC power dissipation Other Optical isolation Fibre Length Tcase = -20 to +70 C 25 0.8 30 1.2 dB m 0/50k 3539 1 20 9.5 10 1.03E-03 2.39E-04 1.56E-07 3575 10 25 3611 100 35 1.3 2.5 3.3 uA C A V W 10.5 k
Notes:
[1] Applied modulation is 9.95328Gb/s, 2^23-1 PRBS NRZ data sequence. [2] Linewidth is measured using 0.06nm resolution bandwidth. [3] Optical eye parameters measured with a Communications Analyser with Agilent plug-in module 86106B (or equivalent). Optical 0/1 crossing typically 50%. [4] Fiber characteristics are derived from the following equation;
S0 04 D() = -- ( - -- ) ps/(nm2.km) 4 3
Where So = 0.092 ps/(nm2.km) and l0 = 1302nm. Receiver sensitivity measured at a BER of 1e-10. RX OSNR > 35dB, optimised RX CDR phase adjust and 50% CDR slice level.
3
Data Sheet
Absolute Maximum Ratings
Tcase = 25C unless otherwise stated
The table below provides maximum and/or minimum values of critical parameters which will not permanently damage the device, but for which the operating specification may not hold. Parameter Operating temperature Storage temperature Lead soldering time Fiber bend radius Axial force on fiber Laser forward current Laser reverse voltage Modulator forward voltage Modulator reverse voltage Monitor diode reverse voltage Photodiode forward current TEC voltage TEC current ESD Note
[5]
Conditions
Min -20 -40
Typ
Max 70 85 10
Unit C C s mm
T=260C 20
5 CW @ 30C 150 2 1 -5 1 20 1 2.5 1.4 500
N mA V V V V mA V A V
Note: [5] In accordance with Telcordia TR-NWT-000870, ESD class 3, human body model.
Optical Systems Performance
Optical Eye Diagram Dispersion Penalty Plots
Test conditions: 9.95328Gb/s 2^23-1 PRBS NRZ data.
Test conditions: 9.95328Gb/s 2^23-1 PRBS NRZ data.
Applications Support
The following documents are available to support customers using this product: Document Title Performance Comparison of commercially available RF drivers for the Bookham EML11. Document Referrence AN0140
4
Optical component evaluation platforms are available for all Bookham optical components. Contact your regional sales representative for further information.
Data Sheet
Outline Drawing
Connections
Pin # 1 2 3 4
Notes:
Laser cathode is case ground. SMP/GPO center is EA modulation(-). Pin 1 is nearest the fiber tail.
Pin # Thermistor Thermistor Laser bias (+) Anode BFM Anode 5 6 7 BFM Cathode Cooler (+) Cooler (-)
5
Data Sheet
Deliverable Data
The following data file is provided using an Electronic Data Exchange (EDE) process, a paper copy will also be provided with each module. (Tlaser = 25C, Tcase = 25C unless otherwise specified) Parameter On level modulation Modulator Drive Voltage (pk-pk) CW Laser Threshold Current CW Laser Operating Current Monitor Photocurrent Peak Wavelength Mean Modulated Optical Power
Note: [6] Bookham Test Conditions, 9.95328Gb/s, 2^23-1 PRBS NRZ DATA.
Symbol VO VMOD ITH IOP IM LPK PO
Condition
Format Value Value
Unit V V mA mA mA nm dBm
CW, VMOD=VO CW Note Note Note
[6] [6] [6]
Value Value Value Value Value
6
Data Sheet
Reliability
Bookham has a corporate policy for continuous improvement, to provide optical components with superior quality in terms of opto-electronic performance and operational life and reliability. The Bookham EML10 and EML11 Integrated Electro-absorption laser products use a ridge waveguide structure for the laser and modulator, which provides superior reliability compared to buried heterostructures. It has been subjected to a stringent reliability assurance program, the conclusions of which confirm product reliability exceed the generic requirements of Telcordia GR-468 CORE. More than 965,000 device-hours of data under accelerated life test conditions have been analysed, which for the purpose of characterising random failure rate, is equivalent to 28,300,000 device hours at 25C operating temperature [7]. Electro-optic parameters for a 15 year service life at operating temperature of 25C have been estimated. The estimated delta over life for specific device parameters is shown in the table below.
Parameter EA - Extinction rate ER Laser threshold current Laser efficiency Laser current for constant output power Laser power at constant current (100 mA)
Maximum allowed change 0.5 dB 10 % 10 % 10 % 10 %
Change over 15 years @ 25 C Mean (std. deviation) -0.03 dB (0.2 dB) 0.01 % (0.3 %) -0.2 % (0.4 %) 0.2 % (0.4 %) -0.2 % (0.4 %)
The reliability failure rate statistics are summarized in the table below. The results are reported for the operation of the device against a laser bias of 100 mA drive current. The resultant low MTTF [8], essentially demonstrating minimal component wear out over the rated 15-year lifetime of the component [7].
Parameter Median life (ML) at 25C (standard deviation of the natural logarithms of the TTFs) (mean of the natural logarithms of the TTFs) Maximum wear-out failure rate Average wear-out failure rate over 15 years life Wear-out thermal activation energy Random failure rate at 25C at 60% confidence Random failure rate activation energy
Notes:
Value 528(1) 0.64 6.27 0 0 0.5 33 0.35
Units Years
FITs FITs eV FITs eV
[7] Refer to QR1524, qualification report for the Bookham 10Gb/s Electro-Absorption Modulated Laser. [8] Bookham Technology's policy is to derive random failure rates from actual field data.
7
Data Sheet
RoHS Compliance
Bookham is fully committed to environment protection and sustainable development and has set in place a comprehensive program for removing polluting and hazardous substances from all of its products. The relevant evidence of RoHS compliance is held as part of our controlled documentation for each of our compliant products. RoHS compliance parts are available to order, please refer to the ordering information section for further details.
Ordering Information: EML10ZCA [Connector Type] J28 = SC/PC J34 = FC/PC J57 = LC J59 = MU
Example EML10ZCA-J28 is an EA laser with GPO RF connector with SC/PC fiber connector for 40km reach applications.
Contact Information
North America Bookham Worldwide Headquarters
2584 Junction Ave. San Jose CA 95134 USA * Tel: +1 408 919 1500 * Fax: +1 408 919 6083
Europe Paignton Office
Brixham Road Paignton Devon TQ4 7BE United Kingdom * Tel: +44 (0) 1803 66 2000 * Fax: +44 (0) 1803 66 2801
Asia Shenzhen Office
2 Phoenix Road Futian Free Trade Zone Shenzhen 518038 China * Tel: +86 755 33305888 * Fax: +86 755 33305805 +86 755 33305807
Important Notice Performance figures, data and any illustrative material provided in this data sheet are typical and must be specifically confirmed in writing by Bookham before they become applicable to any particular order or contract. In accordance with the Bookham policy of continuous improvement specifications may change without notice. The publication of information in this data sheet does not imply freedom from patent or other protective rights of Bookham or others. Further details are available from any Bookham sales representative.
www.bookham.com sales@bookham.com
DANGER
INVISIBLE LASER RADIATION - AVOID DIRECT EXPOSURE TO BEAM
INVISIBLE LASER RADIATION DO NOT VIEW DIRECTLY WITH OPTICAL INSTRUMENTS CLASS 1M LASER PRODUCT
OUTPUT POWER 43 mW WAVELENGTH >1520 nm CLASS III b LASER PRODUCT
REFERENCE IEC 60825-1 Edition 1.2
THIS PRODUCT COMPLIES WITH 21CFR 1040.10
ISO14001:1996 EMS 504193 TL9000 Rev 3.0 (ISO9001:2000) FM15040
Caution - use of controls or adjustments or performance of procedures other than those specified herein may result in hazardous radiation exposure.
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BH12939 Rev 2.0 January 2007. (c)Bookham 2005. Bookham is a registered trademark of Bookham Inc.


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