MU181600A Optical Transceiver (XFP) MU181601A Optical Transceiver (SFP) Operation Manual

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1 MU181600A Optical Transceiver (XFP) MU181601A Optical Transceiver (SFP) Operation Manual Seventh Edition For safety and warning information, please read this manual before attempting to use the equipment. Additional safety and warning information is provided in the MP1800A Signal Quality Analyzer Installation Guide and the MT1810A 4 Slot Chassis Installation Guide. Please also refer to one of these documents before using the equipment. Keep this manual with the equipment. ANRITSU CORPORATION Document No.: M-W2754AE-7.0

2 Safety Symbols To prevent the risk of personal injury or loss related to equipment malfunction, Anritsu Corporation uses the following safety symbols to indicate safety-related information. Ensure that you clearly understand the meanings of the symbols BEFORE using the equipment. Some or all of the following symbols may be used on all Anritsu equipment. In addition, there may be other labels attached to products that are not shown in the diagrams in this manual. Symbols used in manual DANGER This indicates a very dangerous procedure that could result in serious injury or death if not performed properly. WARNING CAUTION This indicates a hazardous procedure that could result in serious injury or death if not performed properly. This indicates a hazardous procedure or danger that could result in light-to-severe injury, or loss related to equipment malfunction, if proper precautions are not taken. Safety Symbols Used on Equipment and in Manual The following safety symbols are used inside or on the equipment near operation locations to provide information about safety items and operation precautions. Ensure that you clearly understand the meanings of the symbols and take the necessary precautions BEFORE using the equipment. This indicates a prohibited operation. The prohibited operation is indicated symbolically in or near the barred circle. This indicates an obligatory safety precaution. The obligatory operation is indicated symbolically in or near the circle. This indicates a warning or caution. The contents are indicated symbolically in or near the triangle. This indicates a note. The contents are described in the box. These indicate that the marked part should be recycled. MU181600A Optical Transceiver (XFP) MU181601A Optical Transceiver (SFP) Operation Manual 27 November 2006 (First Edition) 20 June 2013 (Seventh Edition) Copyright , ANRITSU CORPORATION. All rights reserved. No part of this manual may be reproduced without the prior written permission of the publisher. The contents of this manual may be changed without prior notice. Printed in Japan ii

3 For Safety 1. Laser radiation warning WARNING NEVER look directly into the cable connector on the equipment nor into the end of a cable connected to the equipment. There is a risk of injury if laser radiation enters the eye. The Laser Safety label is attached to the equipment for safety use as indicated in "Laser Safety" later in this section. Class 1 indicates the danger degree of the laser radiation specified below according to IEC :2007. Class 1: Lasers that are safe under reasonably foreseeable conditions of operation, including the use of optical instruments for intrabeam viewing. CAUTION Use of controls or adjustments or performance of procedures other than those specified herein may result in hazardous radiation exposure. The use of optical instruments with this product will increase eye hazard. iii

4 For Safety Laser Safety The laser in this equipment is classified as Class 1 according to the IEC :2007 standard. Table 1 Laser Safety Classifications Based on IEC :2007 Model Name Recommende d Module Model Name or Option Model Name/Part Name Class Max. Optical Output Power (mw) *1 Pulse Width (s)/ Repetition Rate Emitted Wavelength (nm) Beam Divergence (deg) Laser Aperture G0174A 850 nm XFP module CW Fig. 1, [1] MU181600A G0175A 1310 nm XFP module CW Fig. 1, [1] G0176A 1550 nm XFP module CW Fig. 1, [1] G0177A 850 nm SFP module CW Fig. 2, [1] MU181601A G0178A 1310 nm SFP module CW Fig. 2, [1] G0179A 1550 nm SFP module CW Fig. 2, [1] *1: Indicates the possible optical output power when each and every reasonably foreseeable single-fault condition is included. iv

5 For Safety Table 2 Incorporated Laser Specification Model Name Recommended Module Model Name or Option Model Name/Part Name Max. Optical Output Power (mw) *1 Pulse Width (s)/rep-etition Rate Emitted Wavelength (nm) Beam Divergence (deg) MU181600A MU181601A G0174A 850 nm XFP module G0175A 1310 nm XFP module G0176A 1550 nm XFP module G0177A 850 nm SFP module G0178A 1310 nm SFP module G0179A 1550 nm SFP module 0.78 CW CW CW CW CW CW *1: Indicates the possible optical output power when each and every reasonably foreseeable single-fault condition is included. v

6 For Safety Table 3 Labels on Product Type Label Affixed to: Model Name 1 Explanation Fig. 1, A Fig. 2, A MU181600A MU181601A 2 Explanation Fig. 3, A Fig. 4, A MP1800A MT1810A 3 Certification Fig. 3, B Fig. 4, B MP1800A MT1810A 4 Identification Fig. 3, C Fig. 4, C MP1800A MT1810A vi

7 For Safety Laser Radiation Markings [1] A Fig. 1 Front Panel of MU181600A Module [1] A Fig. 2 Front Panel of MU181601A Module vii

8 For Safety Laser Radiation Markings A C B Fig. 3 MP1800A Exterior viii

9 For Safety Laser Radiation Markings C B A Fig. 4 MT1810A Exterior ix

10 For Safety CAUTION Lifetime of Parts The life span of certain parts used in this instrument is determined by the operating time or the power-on time. Due consideration should be given to the life spans of these parts when performing continuous operation over an extended period. The safety of the instrument cannot be guaranteed if component parts are used beyond their life spans. These parts must be replaced at the customer's expense even if within the guaranteed period described in Warranty at the beginning of this manual. For details on life-span, refer to the corresponding section in this manual. For 30-pin multipole connector for XFP module: See Section 1.3 Specifications. For 20-pin multipole connector for SFP module: See Section 1.3 Specifications. x

11 Equipment Certificate Anritsu Corporation certifies that this equipment was tested before shipment using calibrated measuring instruments with direct traceability to public testing organizations recognized by national research laboratories, including the National Institute of Advanced Industrial Science and Technology, and the National Institute of Information and Communications Technology, and was found to meet the published specifications. Anritsu Warranty Anritsu Corporation will repair this equipment free-of-charge if a malfunction occurs within one year after shipment due to a manufacturing fault. However, software fixes will be made in accordance with the separate Software End-User License Agreement. Moreover, Anritsu Corporation will deem this warranty void when: The fault is outside the scope of the warranty conditions separately described in the operation manual. The fault is due to mishandling, misuse, or unauthorized modification or repair of the equipment by the customer. The fault is due to severe usage clearly exceeding normal usage. The fault is due to improper or insufficient maintenance by the customer. The fault is due to natural disaster, including fire, wind, flooding, earthquake, lightning strike, or volcanic ash, etc. The fault is due to damage caused by acts of destruction, including civil disturbance, riot, or war, etc. The fault is due to explosion, accident, or breakdown of any other machinery, facility, or plant, etc. The fault is due to use of non-specified peripheral or applied equipment or parts, or consumables, etc. The fault is due to use of a non-specified power supply or in a non-specified installation location. The fault is due to use in unusual environments (Note). The fault is due to activities or ingress of living organisms, such as insects, spiders, fungus, pollen, or seeds. In addition, this warranty is valid only for the original equipment purchaser. It is not transferable if the equipment is resold. Anritsu Corporation shall assume no liability for injury or financial loss of the customer due to the use of or a failure to be able to use this equipment. xi

12 Note: For the purpose of this Warranty, "unusual environments" means use: In places of direct sunlight In dusty places Outdoors In liquids, such as water, oil, or organic solvents, and medical fluids, or places where these liquids may adhere In salty air or in places where chemically active gases (SO 2, H 2 S, Cl 2, NH 3, NO 2, or HCl, etc.) are present In places where high-intensity static electric charges or electromagnetic fields are present In places where abnormal power voltages (high or low) or instantaneous power failures occur In places where condensation occurs In the presence of lubricating oil mists In places at an altitude of more than 2,000 m In the presence of frequent vibration or mechanical shock, such as in cars, ships, or airplanes Anritsu Corporation Contact In the event of this equipment malfunctions, contact an Anritsu Service and Sales office. Contact information can be found on the last page of the printed version of this manual, and is available in a separate file on the CD version. xii

13 Notes On Export Management This product and its manuals may require an Export License/Approval by the Government of the product's country of origin for re-export from your country. Before re-exporting the product or manuals, please contact us to confirm whether they are export-controlled items or not. When you dispose of export-controlled items, the products/manuals need to be broken/shredded so as not to be unlawfully used for military purpose. xiii

14 Software End-User License Agreement (EULA) Please read this Software End-User License Agreement (hereafter this EULA) carefully before using (includes executing, copying, registering, etc.) this software (includes programs, databases, scenarios, etc., used to operate, set, etc., Anritsu electronic equipment). By reading this EULA and using this software, you are agreeing to be bound by the terms of its contents and Anritsu Corporation (hereafter Anritsu) hereby grants you the right to use this Software with the Anritsu-specified equipment (hereafter Equipment) for the purposes set out in this EULA. 1. Grant of License and Limitations 1. Regardless of whether this Software was purchased from or provided free-of-charge by Anritsu, you agree not to rent, lease, lend, or otherwise distribute this Software to third parties and further agree not to disassemble, recompile, reverse engineer, modify, or create derivative works of this Software. 2. You may make one copy of this Software for backup purposes only. 3. You are not permitted to reverse engineer this software. 4. This EULA allows you to install one copy of this Software on one piece of Equipment. 2. Disclaimers To the extent not prohibited by law, in no event shall Anritsu be liable for personal injury, or any incidental, special, indirect or consequential damages whatsoever, including, without limitation, damages for loss of profits, loss of data, business interruption or any other commercial damages or losses, arising out of or related to your use or inability to use this Software. 3. Limitation of Liability a. If a fault (bug) is discovered in this Software, preventing operation as described in the operation manual or specifications whether or not the customer uses this software as described in the manual, Anritsu shall at its own discretion, fix the bug, or exchange the software, or suggest a workaround, free-of-charge. However, notwithstanding the above, the following items shall be excluded from repair and warranty. i) If this Software is deemed to be used for purposes not described in the operation manual or specifications. ii) If this Software is used in conjunction with other non-anritsu-approved software. iii) Recovery of lost or damaged data. iv) If this Software or the Equipment has been modified, repaired, or otherwise altered without Anritsu's prior approval. v) For any other reasons out of Anritsu's direct control and responsibility, such as but not limited to, natural disasters, software virus infections, etc. b. Expenses incurred for transport, hotel, daily allowance, etc., for on-site repairs by Anritsu engineers necessitated by the above faults shall be borne by you. c. The warranty period for faults listed in article 3a above covered by this EULA shall be either 6 months from the date of purchase of this Software or 30 days after the date of repair, whichever is longer. xiv

15 4. Export Restrictions You may not use or otherwise export or re-export directly or indirectly this Software except as authorized by Japanese and United States law. In particular, this software may not be exported or re-exported (a) into any Japanese or US embargoed countries or (b) to anyone on the Japanese or US Treasury Department's list of Specially Designated Nationals or the US Department of Commerce Denied Persons List or Entity List. By using this Software, you warrant that you are not located in any such country or on any such list. You also agree that you will not use this Software for any purposes prohibited by Japanese and US law, including, without limitation, the development, design and manufacture or production of missiles or nuclear, chemical or biological weapons of mass destruction. 5. Termination Anritsu shall deem this EULA terminated if you violate any conditions described herein. This EULA shall also be terminated if the conditions herein cannot be continued for any good reason, such as violation of copyrights, patents, or other laws and ordinances. 6. Reparations If Anritsu suffers any loss, financial or otherwise, due to your violation of the terms of this EULA, Anritsu shall have the right to seek proportional damages from you. 7. Responsibility after Termination Upon termination of this EULA in accordance with item 5, you shall cease all use of this Software immediately and shall as directed by Anritsu either destroy or return this Software and any backup copies, full or partial, to Anritsu. 8. Dispute Resolution If matters of dispute or items not covered by this EULA arise, they shall be resolved by negotiations in good faith between you and Anritsu. 9. Court of Jurisdiction This EULA shall be interpreted in accordance with Japanese law and any disputes that cannot be resolved by negotiation described in Article 8 shall be settled by the Japanese courts. xv

16 CE Conformity Marking Anritsu affixes the CE Conformity marking on the following product(s) in accordance with the Council Directive 93/68/EEC to indicate that they conform to the EMC and LVD directive of the European Union (EU). CE marking 1. Product Model Plug-in Units: MU181600A Optical Transceiver (XFP) MU181601A Optical Transceiver (SFP) 2. Applied Directive and Standards When the MU181600A Optical Transceiver (XFP) or MU181601A Optical Transceiver (SFP) is installed in the MP1800A or MT1810A, the applied directive and standards of this unit conform to those of the MP1800A or MT1810A main frame. PS: About main frame Please contact Anritsu for the latest information on the main frame types that MU181600A or MU181601A can be used with. xvi

17 C-Tick Conformity Marking Anritsu affixes the C-Tick marking on the following product(s) in accordance with the regulation to indicate that they conform to the EMC framework of Australia/New Zealand. C-Tick marking 1. Product Model Plug-in Units: MU181600A Optical Transceiver (XFP) MU181601A Optical Transceiver (SFP) 2. Applied Directive and Standards When the MU181600A Optical Transceiver (XFP) or MU181601A Optical Transceiver (SFP) is installed in the MP1800A or MT1810A, the applied directive and standards of this unit conform to those of the MP1800A or MT1810A main frame. PS: About main frame Please contact Anritsu for the latest information on the main frame types that MU181600A or MT1810A can be used with. xvii

18 xviii

19 About This Manual A testing system combining an MP1800A Signal Quality Analyzer or MT1810A 4-Slot Chassis mainframe, module(s), and control software is called a Signal Quality Analyzer Series. The operation manuals of the Signal Quality Analyzer Series consist of separate documents for the installation guide, the mainframe, remote control operation, module(s), and control software, as shown below. Installation Guide Configuration of Signal Quality Analyzer Series Operation Manual indicates this document. Installation guide, from module installation to the start of use. The Installation Guide varies depending on the main frame used. Main Frame Operation Manual Describes basic operations of the main frame. The Main Frame Operation Manual varies depending on the main frame used. Remote Control Operation Manual Describes remote control using the GPIB interface and LAN interface. Module Operation Manual Operation manual for the module. The Module Operation Manual varies depending on the module(s) used. MU181600A Optical Transceiver (XFP) MU181601A Optical Transceiver (SFP) Operation Manual Describes the configuration, operation methods, and maintenance methods for the MU181600A and MU181601A. Control Software Operation Manual Operation manual of the software that controls the Signal Quality Analyzer Series. I

20 Table of Contents For Safety... About This Manual... iii I Section 1 Overview Product Overview Product Composition Specifications Section 2 Preparation before Use Installation to Signal Quality Analyzer How to Operate Application Preventing Damage Inserting/Removing XFP/SFP Modules While Power Is On Section 3 Panel Layout and Connectors Panel Layout Inter-Module Connection Optical Fiber Cables Connection Section 4 Configuration of Setup Dialog Box Configuration of Entire Setup Dialog Box Operation Windows Operating Laser Section 5 Use Example Measurement Example Using MU181600A Measurement Example Using MU181601A II

21 Section 6 Performance Tests Overview Devices Required for Performance Tests Performance Test Items Section 7 Maintenance Daily Maintenance Cleaning Optical Connector and Optical Adapter Cautions on Storage Transportation Calibration Disposal Section 8 Troubleshooting Problems Discovered during XFP/SFP Module Replacement Problems Discovered during use of MU181600A/ MU181601A Appendix... App-1 Appendix A Performance Test Result Sheet... A-2 Appendix B List of Initial Setting Items... B-2 III

22 IV.

23 Section 1 Overview This section provides an overview and the specifications of the MU181600A Optical Transceiver (XFP) (hereinafter, referred to as MU181600A ) and the MU181601A Optical Transceiver (SFP) (hereinafter, referred to as MU181601A ). 1.1 Product Overview Product Composition Standard composition Application parts Specifications Specifications for MU181600A Specifications for MU181601A

24 Section 1 Overview 1.1 Product Overview The MU181600A and the MU181601A are modules that can be built into a Signal Quality Analyzer Series mainframe. These transceivers convert digital electric signals input from an external device into optical signals. They also convert input optical signals into digital electric signals and output the converted electrical signals. The MU181600A and MU181601A are therefore useful for research, development, and production of various types of digital communication equipment and digital communication modules and devices. 1-2

25 1.2 Product Composition 1.2 Product Composition Standard composition Item Model name/symbol Tables and show the items standardly included with the MU181600A and MU181601A, respectively. Table Standard composition of MU181600A Product name Q ty Remarks Main unit MU181600A Optical transceiver (XFP) 1 Z0897A MP1800A Manual CD 1 CD-ROM version J1355A Semirigid cable 1 For connection of 1/64 clock output and 1/64 clock input J0541A 10 db fixed attenuator 2 MU181020A-002 and Accessory MU181600A For connection of TD+/TD J0541E 6 db fixed attenuator 2 MU181020A-001 and MU181600A For connection of TD+/TD Z0918A MX180000A Software CD 1 CD-ROM version Table Standard composition of MU181601A Item Model name/symbol Product name Q ty Remarks Main unit MU181601A Optical transceiver (SFP) 1 Z0897A MP1800A Manual CD 1 CD-ROM version Accessory J0541E 6 db fixed attenuator 1 MU181020A-002 and MU181601A For connection of TD+/TD Z0918A MX180000A Software CD 1 CD-ROM version 1-3

26 Section 1 Overview Application parts Tables and show the application parts for the MU181600A and MU181601A, respectively. All application parts are sold separately. Table Application parts for MU181600A Model name/symbol Product Q ty Remarks G0174A 850 nm XFP module (9.95 to Applicable fiber: Multi-mode fiber Gbit/s) G0175A 1310 nm XFP module (9.95 to Applicable fiber: Single mode fiber Gbit/s) G0176A 1550 nm XFP module (9.95 to Gbit/s) 1 Applicable fiber: Single mode fiber J1342A Coaxial cable, 0.8 m 1 SMA at both ends, for inter-module connection Table Application parts for MU181601A Model name/symbol Product Q ty Remarks G0177A 850 nm SFP module (1.062 to Applicable fiber: Multi-mode fiber Gbit/s) G0178A 1310 nm SFP module (0.155 to Applicable fiber: Single mode fiber Gbit/s) G0179A 1550 nm SFP module (0.155 to 2.67 Gbit/s) 1 Applicable fiber: Single mode fiber J1343A Coaxial cable, 1 m 1 SMA at both ends, for inter-module connection 1-4

27 1.2 Product Composition Table shows the common application parts for the MU181600A and MU181601A. All common application parts are sold separately. Table Common application parts for MU181600A and MU181601A Model name/symbol Product Q ty Remarks J1344A LC/PC-LC/PC-1M-SM 1 Single mode fiber LC at both ends, 1 m J1139A FC/PC-LC/PC-1M-SM 1 Single mode fiber FC at one end, LC at one end, 1 m J1345A SC/PC-LC/PC-1M-SM 1 Single mode fiber SC at one end, LC at one end, 1 m J1346A LC/PC-LC/PC-1M-GI (62.5/125) 1 Multi-mode fiber LC at both end, 1 m J1347A FC/PC-LC/PC-1M-GI (62.5/125) 1 Multi-mode fiber FC at one end, LC at one end, 1 m J1348A SC/PC-LC/PC-1M-GI (62.5/125) 1 Multi-mode fiber SC at one end, LC at one end, 1 m J1137 Terminator 1 50 SMA W2754AE MU181600A Optical Transceiver (XFP)/ 1 Printed version MU181601A Optical Transceiver (SFP) Operation Manual Z0282 Ferrule cleaner 1 CLETOP type Z0283 Replacement reels for ferrule cleaner 1 6/pack Z0284 Adapter cleaner 1 Stick type (200/set) 1-5

28 Section 1 Overview 1.3 Specifications Specifications for MU181600A Table Module main unit Item Specifications Transmitter data input TD+, TD Receiver data output RD+, RD 1/1 clock input 1/64 clock output 1/64 clock input XFP module connector pin configuration Differential data input level Code Connector Termination Differential data output level Code Connector Termination Input frequency Level Connector Impedance Frequency Level 0.2 to 0.8 Vp-p NRZ SMA 100 Differential (Nominal value) Min. 0.3 Vp-p, Max. 0.9 Vp-p (within the input power range of the recommended XFP module) NRZ SMA 100 Differential (Nominal value) 9.5 to 12.5 GHz 0.25 to 0.8 Vp-p SMA 50 /GND (1/1 clock input frequency)/ Vp-p 0.18 V Rise/fall time ps (20 to 80%) Duty 50 10% Connector SMA Impedance 50 /GND Frequency (Operating bit rate)/64 Level 0.32 to 0.8 Vp-p Rise/fall time 200 to 1250 ps (20 to 80%) Duty 40 to 60% Connector SMA Impedance 50 /GND Pin 1 GND Pin 2 VEE5 Pin 3 Mod_DeSel Pin 4 Interrupt Pin 5 TX_DIS Pin 6 VCC5 Pin 7 GND Pin 8 VCC3 Pin 9 VCC3 Pin 10 SCL Pin 11 SDA Pin 12 Mod_ABS Pin 13 Mod_NR Pin 14 RX_LOS 1-6

29 1.3 Specifications Table Module main unit (continued) XFP module connector pin configuration (Cont d) Status monitor XFP memory control Mechanical performance Item Pin 15 Pin 16 Pin 17 Pin 18 Pin 19 Pin 20 Pin 21 Pin 22 Pin 23 Pin 24 Pin 25 Pin 26 Pin 27 Pin 28 Pin 29 Pin 30 Ready Optical Out Wavelength Tx Err Rx Err Laser fault Tx Unlock LOS CDR Unlock XFP 2 wire interface Dimensions Mass Specifications GND GND RD RD+ GND VCC2 P_Down/RST VCC2 GND REFCLK+ REFCLK GND GND TD TD+ GND Monitors the XFP module installation state. If the XFP module is installed and is in the Operation mode, the LED lights green and the state is displayed on the screen. The LED lights green when the laser of the XFP module is emitted. Displays the wavelength of the recommended XFP module when it is inserted. Monitors Unlock/Laser output errors of Tx PLL. The LED lights red in case of an error. The LED lights red when Rx PLL is unlocked or LOS is detected. Displays the laser output error on the screen. Monitors Unlock of Tx PLL and displays the state on the screen. Monitors the Rx LOS detection state and displays the state on the screen. Monitors the Rx CDR Unlock state and displays the state on the screen. Reads and writes data from/to the XFP internal memory. 234 mm (W) 21 mm (H) 175 mm (D) (Compact-PCI 1 slot) (Protrusion excluded) 1.5 kg or less 1-7

30 Section 1 Overview Table Module main unit (continued) Environmental performance Item Allowable number of insertions/ removals of the XFP connector Operating temperature Storage temperature 100 times Specifications +5 to +40 C (when installed in the mainframe; temperature around equipment) 20 to +60 C (recommended range: +5 to +30 C) CAUTION The allowable number of insertions/removals of the 30-pin multipole connector for the XFP module is 100 times. If the multipole connector is used beyond the allowable number of insertions/removals, performance may deteriorate due to poor contact. Observe the allowable number of insertions/removals when using it. 1-8

31 1.3 Specifications Item Table G0174A Recommended 850 nm XFP module Specifications Input data signal PRBS , mark ratio 1/2 Operating bit rate 9.95 to Gbit/s. The specifications for the transmitter and receiver shown below are defined at Gbit/s. Transmitter Power Min. 4.0 dbm, Max dbm, at the center wavelength of 850 nm. Laser safety Class 1 (IEC : 2007, 21 CFR Laser Safety Notice 50) Center wavelength Min. 840 nm, Max. 860 nm RMS spectral 0.45 nm width Extinction ratio 3.0 db Applicable fiber GI (50/125 m), GI (62.5/125 m) Connector LC/PC Eye mask X1, X2, X3, Y1, Y2, Y3} {0.25, 0.40, 0.45, 0.25, 0.28, 0.40} 1+Y3 Normalized Amplitude 1 1-Y1 1-Y2 0.5 Y2 Y1 0 -Y3 0 X1 X2 X3 1-X3 1-X2 1-X1 1 Receiver Wavelength range Using 7.5 GHz 4 th Bessel filter 840 to 860 nm (design assurance) Normalized Time (Unit Interval) Sensitivity 9.9 dbm (Average, BER 10 12) Maximum input 1.0 dbm (Average, BER 10 12, design assurance) power Applicable fiber GI (50/125 m), GI (62.5/125 m) Connector LC/PC LOS assert level 14.0 dbm 1-9

32 Section 1 Overview Table G0175A Recommended 1310 nm XFP module Item Specifications Input data signal PRBS , mark ratio 1/2 Operating bit rate 9.95 to Gbit/s. The specifications for the transmitter and receiver shown below are defined at Gbit/s. Transmitter Power Min. 6.0 dbm, Max. 1.0 dbm Laser safety Class1 (IEC : 2007, 21 CFR Laser Safety Notice 50) Center Min nm, Max nm wavelength Side-mode 30.0 db suppression ratio Extinction ratio 6.0 db Applicable fiber SM Fiber (ITU-T G.652) Connector LC/PC Eye mask {X1, X2, X3, Y1, Y2, Y3} {0.25, 0.40, 0.45, 0.25, 0.28, 0.40} {X4, Y4} {0.4, 0.25} 1+Y3 Normalized Amplitude 1 1-Y1 1-Y2 0.5 Y2 Y1 0 -Y3 0 X1 X2 X3 1-X3 1-X2 1-X1 1 Normalized Time (Unit Interval) Normalized Amplitude 1+Y4 1 1-Y4 Y4 0 -Y4 0 X4 1-X4 1 Normalized Time (Unit Interval) Using 7.5 GHz 4 th Bessel filter 1-10

33 1.3 Specifications Table G0175A Recommended 1310 nm XFP module (continued) Item Specifications Receiver Wavelength 1290 to 1330 nm (design assurance) range Sensitivity 13.4 dbm (Average, BER 10 12) Maximum input 0.5 dbm (Average, BER design assurance) power Applicable fiber SM Fiber (ITU-T G.652) Connector LC/PC LOS assert level 20.0 dbm 1-11

34 Section 1 Overview Table G0176A Recommended 1550 nm XFP module Item Specifications Input data signal PRBS , mark ratio 1/2 Operating bit rate 9.95 to Gbit/s. The specifications for the transmitter and receiver shown below are defined at Gbit/s. Transmitter Power Min. 1.0 dbm, Max dbm Laser safety Class1 (IEC : 2007, 21 CFR Laser Safety Notice 50) Center Min nm, Max nm wavelength Side-mode 30.0 db suppression ratio Extinction ratio 8.2 db Applicable fiber SM Fiber (ITU-T G.652) Connector LC/PC Eye mask {X1, X2, X3, Y1, Y2, Y3} {0.25, 0.40, 0.45, 0.25, 0.28, 0.40} {X4, Y4} {0.4, 0.25} 1+Y3 Normalized Amplitude 1 1-Y1 1-Y2 0.5 Y2 Y1 0 -Y3 0 X1 X2 X3 1-X3 1-X2 1-X1 1 Normalized Time (Unit Interval) Normalized Amplitude 1+Y4 1 1-Y4 Y4 0 -Y4 0 X4 1-X4 1 Normalized Time (Unit Interval) Using 7.5 GHz 4 th Bessel filter 1-12

35 1.3 Specifications Table G0176A Recommended 1550 nm XFP module (continued) Item Specifications Receiver Wavelength 1530 to 1565 nm (design assurance) range Sensitivity 15.8 dbm (Average, BER 10 12) Maximum input 1.0 dbm (Average, BER 10 12, design assurance) power Applicable fiber SM Fiber (ITU-T G.652) Connector LC/PC LOS assert level 20.0 dbm 1-13

36 Section 1 Overview Specifications for MU181601A 1-14 Transmitter data input TD+, TD Receiver data output RD+, RD SFP module connector pin configuration Status monitor Item Single end input level Code Connector Termination Single end output level Code Connector Termination Pin 1 Pin 2 Pin 3 Table Module main unit 0.25 to 0.6 Vp-p Specifications NRZ SMA 50 /GND (Nominal value) Min Vp-p, Max. 1.0 Vp-p (within the input power range of the recommended SFP module) NRZ SMA 50 /GND (Nominal value) VeeT (Transmitter Ground) TX Fault (Transmitter Fault Indication) TX Disable (Transmitter Disable) Pin 4 MOD-DEF2 (Module Definition 2) Pin 5 MOD-DEF1 (Module Definition 1) Pin 6 MOD-DEF0 (Module Definition 0) Pin 7 Rate Select (Select between full or reduced receiver bandwidth) Pin 8 LOS (Loss of Signal) Pin 9 VeeR (Receiver Ground) Pin 10 VeeR (Receiver Ground) Pin 11 VeeR (Receiver Ground) Pin 12 RD (Inv. Received Data Out) Pin 13 RD+ (Received Data Out) Pin 14 VeeR (Receiver Ground) Pin 15 VccR (Receiver Power) Pin 16 VccT (Transmitter Power) Pin 17 VeeT (Transmitter Ground) Pin 18 TD+ (Transmit Data In) Pin 19 TD (Inv. Transmit Data In) Pin 20 VeeT (Transmitter Ground) Ready Monitors the SFP module installation state. If the SFP module is installed, the LED lights green and the state is displayed on the screen. Wavelength Displays the wavelength of the recommended SFP module when it is inserted. Optical Out The LED lights green when the laser of the SFP module is emitted. Tx Err Monitors laser output errors. The LED lights red in case of an error. Rx Err The LED lights red when LOS is detected. Laser fault Displays the laser output error on the screen.

37 1.3 Specifications Table Module main unit (continued) Status monitor (Cont d) SFP memory control Mechanical performance Environmental performance Item LOS SFP 2 wire interface Dimensions Weight Allowable number of insertions/ removals of the SFP connector Operating temperature Storage temperature Specifications Monitors the Rx LOS detection state and displays the state on the screen. Reads and writes data from/to the SFP internal memory. 234 mm (W) 21 mm (H) 175 mm (D) (Compact-PCI 1 slot) (Protrusion excluded) 1.5 kg or less 100 times +5 to +40 C (when installed in the main frame; temperature around equipment) 20 to +60 C CAUTION The allowable number of insertions/removals of the 20-pin multipole connector for the SFP module is 100 times. If the multipole connector is used beyond the allowable number of insertions/removals, performance may deteriorate due to poor contact. Observe the allowable number of insertions/removals when using it. 1-15

38 Section 1 Overview Item Table G0177A Recommended 850 nm SFP module Specifications Input data signal PRBS , mark ratio 1/2 Operating bit rate to 4.25 Gbit/s. The specifications for the transmitter and receiver shown below are defined at 4.25 Gbit/s. Rate Select Available Transmitter Power Min. 9.0 dbm, Max. 2.5 dbm Laser safety Class1 (IEC : 2007, 21 CFR Laser Safety Notice 50) Center Min. 830 nm, Max. 860 nm wavelength RMS spectral 0.85 nm width OMA 247 W Applicable fiber GI (50/125 m), GI (62.5/125 m) Connector LC/PC Eye mask {X1, X2, Y1, Y2} {0.22, 0.4, 0.2, 0.3} Normalized Amplitude 1+Y2 1 1-Y1 0.5 Y1 0 -Y1 0 X1 X2 1-X2 1-X1 1 Normalized Time (Unit Interval) Receiver Wavelength range Using 3.19 GHz 4 th Bessel filter 830 to 860 nm (design assurance) Sensitivity 15.0 dbm (Average, BER 10 12) Maximum input 0.0 dbm (Average, BER 10 12, design assurance) power Applicable fiber GI (50/125 m), GI (62.5/125 m) Connector LC/PC LOS assert level 20.0 dbm 1-16

39 1.3 Specifications Table G0178A Recommended 1310 nm SFP module Item Specifications Input data signal PRBS , mark ratio 1/2 Operating bit rate to 2.67 Gbit/s. The specifications for the transmitter and receiver shown below are defined at Gbit/s. Rate Select Transmitter Power Laser safety Center wavelength Side-mode suppression ratio Extinction ratio Applicable fiber Connector Unavailable Min. 5.0 dbm, Max. 0.0 dbm Class1 (IEC : 2007, 21 CFR Laser Safety Notice 50) Min nm, Max nm 30.0 db 8.2 db SM Fiber (ITU-T G.652) LC/PC Eye mask {X1, Y1 } {0.4, 0.25} Normalized Amplitude 1+Y1 1 1-Y1 Y1 0 -Y1 0 X1 1-X1 1 Normalized Time (Unit Interval) Receiver Wavelength range Using GHz 4 th Bessel filter 1270 to 1360 nm (design assurance) Sensitivity 18.0 dbm (Average, BER 10 12) Maximum input 0.0 dbm (Average, BER 10 12, design assurance) power Applicable fiber SM Fiber (ITU-T G.652) Connector LC/PC LOS assert level 18.0 dbm 1-17

40 Section 1 Overview Table G0179A Recommended 1550 nm SFP module Item Specifications Input data signal PRBS , mark ratio 1/2 Operating bit rate to 2.67 Gbit/s. The specifications for the transmitter and receiver shown below are defined at Gbit/s. Rate Select Transmitter Power Laser safety Center wavelength Side-mode suppression ratio Extinction ratio Applicable fiber Connector Unavailable Min. 5.0 dbm, Max. 0.0 dbm Class1 (IEC : 2007, 21 CFR Laser Safety Notice 50) Min nm, Max nm 30.0 db 8.2 db SM Fiber (ITU-T G.652) LC/PC Eye mask {X1, Y1} {0.4, 0.25} Normalized Amplitude 1+Y1 1 1-Y1 Y1 0 -Y1 0 X1 1-X1 1 Normalized Time (Unit Interval) Receiver Wavelength range Using GHz 4 th Bessel filter 1430 to 1580 nm (design assurance) Sensitivity 18.0 dbm (Average, BER 10 12) Maximum input 0.0 dbm (Average, BER 10 12, design assurance) power Applicable fiber SM Fiber (ITU-T G.652) Connector LC/PC LOS assert level 18.0 dbm 1-18.

41 Section 2 Preparation before Use This section describes preparations required before using the MU181600A and MU181601A. 2.1 Installation to Signal Quality Analyzer How to Operate Application Preventing Damage Inserting/Removing XFP/SFP Modules While Power Is On

42 Section 2 Preparation before Use 2.1 Installation to Signal Quality Analyzer 2.2 How to Operate Application For information on how to install the MU181600A/MU181601A to the Signal Quality Analyzer and how to turn on the power, refer to Section 2 Preparation before Use in the Signal Quality Analyzer Series Installation Guide. The modules connected to the Signal Quality Analyzer are controlled by operating the MX180000A Signal Quality Analyzer Control Software (hereinafter, referred to as MX180000A ). For information on how to start up, shut down, and operate the MX180000A, refer to the MX180000A Signal Quality Analyzer Control Software Operation Manual. 2-2

43 2.3 Preventing Damage 2.3 Preventing Damage Be sure to observe the rating voltage ranges when connecting input and output of the MU181600A/MU181601A. Otherwise, the MU181600A/MU181601A may become damaged. CAUTION 1. When signals are input to the MU181600A/MU181601A, avoid excessive voltage beyond the rating. Otherwise, the circuit may be damaged. 2. Use a 50 Ω/GND terminator at the output. Never feed any current to the output. 3. As a countermeasure against static electricity, ground other devices to be connected (including experimental circuits) with ground wires before connecting the I/O connector. 4. The outer conductor and core of the coaxial cable may become charged as a capacitor. Use metal like a copper wire to discharge electricity between the outer conductor and core before use. 5. Never open the MU181600A/MU181601A. If you open it and sufficient performance cannot be obtained, we may decline to repair the MU181600A/MU181601A. 6. To protect the MU181600A/MU181601A from electrostatic discharge failure, a conductive sheet should be placed onto the workbench, and the operator should wear an electrostatic discharge wrist strap. Connect the ground connection end of the wrist strap to the conductive sheet or to the ground terminal of the mainframe. 2-3

44 Section 2 Preparation before Use 2.4 Inserting/Removing XFP/SFP Modules While Power Is On Follow the procedure below when inserting/removing the XFP/SFP module to/from the MU181600A/MU181601A while power is on. 1. Turn off the optical output of the XFP/SFP module, and disconnect the signal input to the input connectors. 2. Remove the optical fiber cable from the XFP/SFP module. 3. When removing the XFP/SFP module, unlock the handle of the XFP/SFP module, and then pull it out. 4. When inserting the XFP/SFP module, lift the handle of the XFP/SFP module, and insert it fully along the insertion slot as it is stored in the XFP module. 5. Connect the optical fiber cable applicable to the inserted XFP/SFP module. 6. When the XFP module is inserted/removed with power on, the Power Down parameter is set to Standby (low power consumption mode). Switch it to Operation (normal operation mode), referring to Section Operation window for MU181600A. 2-4

45 2.4 Inserting/Removing XFP/SFP Modules While Power Is On MU181600A XFP module MU181601A SFP module Fig Connecting XFP/SFP module 2-5

46 Section 2 Preparation before Use CAUTION 1. When inserting the XFP/SFP module, make sure that the eject knob of the XFP/SFP module is retracted. If the eject knob protrudes during insertion, the XFP/SFP module may not be installed successfully. 2. Insert the anti-dust plug into the removed XFP/SFP module. Otherwise, dust may accumulate at the optical input/output opening of the XFP/SFP module, causing failure. 3. The XFP/SFP module is sensitive to electrostatic discharge (ESD). To prevent ESD, touch a grounded metal object to discharge static electricity charged in the body, before handling the module. 4. Wipe off any stains on the ferrule, according to Section 7.2 Cleaning Optical Connector and Optical Adapter. 5. A laser beam may be output from the optical output opening of the XFP/SFP module when the fiber cable is not connected. Do not look into the optical output opening. 6. Do not install or remove the XFP/SFP module with the fiber cable inserted into the XFP/SFP module. The optical input/output opening and fiber cable connector may become damaged. 7. Do not touch the connectors on the back of the XFP/SFP module by hand. It may cause the XFP/SFP module to fail 8. The operation is not guaranteed if an XFP/SFP module that is not recommended by Anritsu is inserted. Be sure to use a recommended one. For the information about the recommended modules, see the Anritsu Web site ( MP1800). 2-6.

47 Section 3 Panel Layout and Connectors This section describes the panels and connectors of the MU181600A and the MU181601A. 3.1 Panel Layout Panel layout of MU181600A Panel layout of MU181601A Inter-Module Connection Optical Fiber Cables Connection

48 Section 3 Panel Layout and Connectors 3.1 Panel Layout Panel layout of MU181600A [1] [2] [4] [3] [5] [6] [7] [8] [9] [10] Fig Panel of MU181600A Table Name and Function of Each Part on MU181600A panel No. Name Description [1] Data Input TD+, TD [2] Data Output RD+, RD- Connector to input electric signals to the XFP module (as an optical transmitter) Connector to output electric signals from the XFP module (as an optical receiver) [3] XFP Module Slot XFP module insertion slot The corresponding XFP module (see Section Application parts ) is installed. Refer to Section 2.4 Inserting/Removing XFP/SFP Modules While Power On for how to install the XFP module. [4] Optical Output (LED) Indicates that the XFP module is emitting an optical signal. This LED lights green when the optical signal is emitting. [5] 1/1 Clock Input Connector to input the 1/1 clock that is used to generate the reference clock for the XFP module. The input 1/1 clock is divided by 64, and is output from the 1/64 Clock Output connector. [6] 1/64 Clock Output Connector to output the 64-divided clocks. [7] 1/64 Clock Input Connector to input the reference clock that is used for XFP module s operations. Input a clock generated by dividing the 1/1 clock by 64 (operating data rate). [8] Ready (LED) Indicates that the XFP module is installed. This LED lights green when the XFP module is installed and is ready for operation. [9] Tx Err (LED) Indicates that there is an abnormality with the XFP transmitter. This LED lights red when the XFP transmitter detects a laser error or when the XFP transmitter PLL is in the Unlock state. [10] Rx Err (LED) Indicates that there is an abnormality with the XFP receiver. This LED lights red when the XFP receiver detects LOS or when the receiver PLL is Unlocked. 3-2

49 3.1 Panel Layout Panel layout of MU181601A [1] [2] [4] [3] [5] [6] [7] Fig Front panel of MU181601A Table Name and Function of Each Part on MU181601A panel No. Name Description [1] Data Input TD+, TD [2] Data Output RD+, RD- Connector to input electric signals to the SFP module (as an optical transmitter) Connect a terminator (J1137) to either input end when using a single end interface. Connector to output electric signals from the SFP module (as an optical receiver) Connect a terminator (J1137) to either input end when using a single end interface. [3] SFP Module Slot SFP module insertion slot The corresponding SFP module is installed. Refer to Section 2.4 Inserting/Removing XFP/SFP Modules While Power Is On for how to install the SFP module. [4] Optical Output (LED) Indicates that the SFP module is emitting an optical signal. This LED lights green when the optical signal is emitting. [5] Ready (LED) Indicates that the SFP module is installed. This LED lights green when the SFP module is installed and is ready for operation. [6] Tx Err (LED) Indicates that there is an abnormality with the SFP transmitter. This LED lights red when the SFP module detects a laser error. [7] Rx Err (LED) Indicates that there is an abnormality with the SFP receiver. This LED lights red when the SFP receiver detects LOS. 3-3

50 Section 3 Panel Layout and Connectors 3.2 Inter-Module Connection A connection example between the MU181600A, MU181000A 12.5 GHz Synthesizer (hereinafter, referred to as MU181000A ), and MU181020A 12.5 Gbit/s PPG (hereinafter, referred to as MU181020A ) that are installed into a mainframe is shown below. Note: Avoid static electricity when handling the devices. The inter-module level interface may not match, depending on the options installed in the MU181020A. In this case, connect the accessory attenuators between the modules to satisfy the input standard level. The following table shows the combinations of options in which an attenuator is required. Connect an attenuator by following the procedure below. Figure shows a connection example. Table Attenuators required for connection MU181600A TD+/TD MU181601A TD+/TD Only MU181020A-001 is installed Connect a 6 db attenuator. Only MU181020A-002 is installed Connect a 10 db attenuator. Connect a 6 db attenuator. 1. Connect the 3-pin power cord of the mainframe to the power receptacle. Be sure to use the 3-pin power cord supplied with the mainframe and a 3-pin receptacle. 2. Connect the Clock Output connector of the MU181000A and the Ext. Clock Input connector of the MU181020A, using a coaxial cable. 3. Connect the TD+ connector of the MU181600A and the Data Output connector of the MU181020A, using a coaxial cable. If an attenuator is required (see Table 3.2-1), connect the accessory attenuator to the TD+ connector of the MU181600A. 4. Connect the TD connector of the MU181600A and the XData Output connector of the MU181020A, using a coaxial cable. If an attenuator is required (see Table 3.2-1), connect the accessory attenuator to the TD connector of the MU181600A. 5. Connect the Clock Output connector of the MU181020A and the 1/1 Clock Input connector of the MU181600A, using a coaxial cable. 6. Connect the 1/64 Clock Output connector and 1/64 Clock Input connector of the MU181600A, using a coaxial cable. 3-4

51 3.2 Inter-Module Connection MU181000A MU181020A MU181600A Fig An example of inter-module connection CAUTION If an excessive voltage is applied to the input connector, the protective circuit may be damaged. Avoid any input beyond the rating. If there is any possibility of the rating being exceeded, check that the input signal is within the rating before connection. To prevent damage due to static electricity charged inside the coaxial cable, ground the core of the coaxial cable in contact to discharge it before connection. 3-5

52 Section 3 Panel Layout and Connectors 3.3 Optical Fiber Cables Connection Connect the optical fiber cable after inserting XFP/SFP module in MU181600A/MU181601A. Table Optical input/output connectors of XFP/SFP module Plug-In Module Model Name MU181600A MU181601A Recommended Module Model Name/Part Name Optical output connector Optical input connector G0174A 850 nm XFP module [1] [2] G0175A 1310 nm XFP module [1] [2] G0176A 1550 nm XFP module [1] [2] G0177A 850 nm SFP module [3] [4] G0178A 1310 nm SFP module [3] [4] G0179A 1550 nm SFP module [3] [4] Optical input/output connectors of XFP/SFP module refer to Fig [1] [2] [3] [4] Fig Optical input/output connectors of XFP/SFP module Before connecting the fiber, be sure to clean the connector end surface. 3-6.

53 Section 4 Configuration of Setup Dialog Box This section describes the configuration and the operation methods of the setup dialog box for the MU181600A and MU181601A. 4.1 Configuration of Entire Setup Dialog Box Operation Windows Operation window for MU181600A Operation window for MU181601A Operating Laser

54 Section 4 Configuration of Setup Dialog Box 4.1 Configuration of Entire Setup Dialog Box The configuration of the setup dialog box when the MU181600A/ MU181601A is inserted into a mainframe is shown below. [2] [1] [3] Fig Configuration of entire setup dialog box for MU181600A and MU181601A The setup dialog box consists of three blocks as shown in Fig The following table describes each of the blocks. Table Functions of blocks No. Block Function [1] Menu bar Selects the settings related to the entire device. Refer to the MX180000A Signal Quality Analyzer Control Software Operation Manual for details. [2] Module function buttons Shortcut buttons for the function items specific to the displayed module. Users can customize the pre-defined function buttons according to their own applications. Refer to the MX180000A Signal Quality Analyzer Control Software Operation Manual for details. [3] Operation windows Configures settings specific to each module. 4-2

55 4.2 Operation Windows 4.2 Operation Windows Operation window for MU181600A The operation window for the MU181600A is shown below. Fig Operation window for MU181600A Table Items in operation window for MU181600A Item Optical Output Data Rate Wavelength Power Down Functions Sets the optical output ON/OFF. ON: Optical signals are output from the XFP module. OFF: Optical signal output is stopped. The optical output can also be controlled by the optical output ON/OFF button. Optical signals are output when this setting is ON and the module function button is selected (recessed). Specifies the operating data rate of the XFP module. The operating range varies depending on the installed XFP module. The setting range for the 850 nm XFP module (see Section Application parts ) is from 9.9 to 11.1 Gbit/s. Data Rate setting is not required for either the 1310 nm XFP module or the 1550 nm XFP module. Displays the wavelength of the optical signal output from Optical Output connector. This item is enabled only when an application part XFP module is installed. This button is used to switch between the Standby mode (low power consumption mode) and the Operation mode (normal operation mode) for the XFP module. The current mode name is displayed on the button. The mode is automatically switched to the Standby mode after the XFP module is inserted or removed while power is on. Note that only the Memory Map is enabled during the Standby mode. Also, the Status field on the right is masked in the Standby mode. 4-3

56 Section 4 Configuration of Setup Dialog Box Table Items in operation window for MU181600A (continued) Item Memory Map Status: Ready Tx Status: Laser Fault Tx Status: Unlock Rx Status: LOS Rx Status: CDR Unlock Functions Used to read or write data from/to the XFP module internal memory. Click the Edit button to open the MemoryMap dialog box shown in Fig Indicates that the XFP module is installed. This illuminates green when the XFP module is installed and ready for operation. Indicates the state of the XFP transmitter. This illuminates red when an error is detected in the laser of the XFP module. Indicates the state of the XFP transmitter. This illuminates red when the PLL circuit of the XFP module is unlocked. Illuminates red when the XFP receiver detects Loss of Signal (LOS). Indicates the state of the XFP receiver. This illuminates red when the CDR circuit of the XFP module is unlocked. Fig MemoryMap dialog box Table Items in MemoryMap dialog box Item Page Address Data Fields Read Function Specifies the Table of the lower 128 bytes of the XFP module internal memory. The accessible area of an application part XFP module is two pages of 01 and 02. Displays the address of the XFP module internal memory in hexadecimal format. To write data into the internal memory, select the target address area by double-clicking. The MemoryMapEditor dialog box (see Fig ) is then displayed. Displays the data stored in the corresponding address in hexadecimal format (left) and ASCII format (right). Used to read the current state of the internal memory. When this button is clicked, the content of the Read port in the internal memory is read and updated. 4-4

57 4.2 Operation Windows Fig MemoryMapEditor dialog box Table Items in MemoryMapEditor dialog box Item Input Mode Byte R/O, R/W OK Function Allows the input mode to be selected from this list box. Values can be entered in either binary (BIN) or hexadecimal (HEX) format. Displays the address selected in the MemoryMap dialog box. +0: Indicates the beginning of the selected address. +7: Indicates the end of the selected address. Displays the internal memory type. RO: Read only R/W: Readable/writable WO: Write only The memory type may be set in bit units for some addresses. In this case, the details of the memory type are displayed in the R/W info field. After editing the data as necessary, click [OK] to write the edited data into the internal memory. 4-5

58 Section 4 Configuration of Setup Dialog Box Operation window for MU181601A The operation window for the MU181601A is shown below. Fig Operation window for MU181601A Table Items in operation window for MU181601A Item Optical Output Wavelength Rate Select Memory Map Status: Ready Tx Status: Laser Fault Rx Status: LOS Functions Sets the optical output ON/OFF. ON: Optical signals are output from the SFP module. OFF: Optical signal output is stopped. The optical output can also be controlled by the optical output ON/OFF button. Optical signals are output when this setting is ON and the module function button is selected (recessed). Displays the wavelength of the optical signal output from the Optical Output connector. This item is enabled only when an application part SFP module is installed. Selects the band for the SFP module used. Reduced: Select when using the SFP module at a high operating bit rate. Full: Select when using the SFP module at a low operating bit rate. The application parts G0178A and G0179A SFP modules do not support this function. Used to read or write data from/to the SFP module internal memory. Click [Edit] to open the MemoryMap dialog box shown in Fig Indicates the SFP module installation state. This illuminates green when the SFP module is installed and is ready. Indicates the state of the SFP module. This illuminates red when an error is detected in the laser of the SFP module. Illuminates red when the SFP module detects Loss of Signal (LOS). 4-6

59 4.2 Operation Windows Fig MemoryMap dialog box Table Items in MemoryMap dialog box Item Address (list box) Address (column) Data Fields Read Function Specifies the Table of the SFP module internal memory. Displays the address of the SFP module internal memory in hexadecimal format. To write data into the internal memory, select the target address area by double-clicking it. The MemoryMapEditor dialog box (see Fig ) is displayed. Displays the data stored in the corresponding address in hexadecimal format (left) and ASCII format (right). Used to read the current state of the internal memory. When this button is clicked, the content of the Read port in the internal memory is read and updated. 4-7

60 Section 4 Configuration of Setup Dialog Box Fig MemoryMapEditor dialog box Table Items in MemoryMapEditor dialog box Item Input Mode Byte R/O, R/W OK Function Allows the input mode to be selected from this list box. Values can be entered in binary (BIN) or hexadecimal (HEX) format. Displays the address selected in the MemoryMap dialog box. +0: Indicates the beginning of the selected address. +7: Indicates the end of the selected address. Displays the internal memory type. RO: Read only R/W: Readable/writable WO: Write only The memory type may be set in bit units for some addresses. In this case, the details of the memory type are displayed in the R/W info field. After editing the data as necessary, click [OK] to write the edited data into the internal memory. 4-8

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