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Quidway S5300 Series Ethernet Switches V100R005C01 Hardware Description Issue 01 Date 2011-01-30 HUAWEI TECHNOLOGIES CO., LTD.

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Page 1: Hardware Description - lantel.hulantel.hu/l/lantel.hu/files/Huawei/S5300/Download/Quidway S5300... · Quidway S5300 Series Ethernet Switches V100R005C01 Hardware Description Issue

Quidway S5300 Series Ethernet SwitchesV100R005C01

Hardware Description

Issue 01

Date 2011-01-30

HUAWEI TECHNOLOGIES CO., LTD.

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Copyright © Huawei Technologies Co., Ltd. 2011. All rights reserved.No part of this document may be reproduced or transmitted in any form or by any means without prior writtenconsent of Huawei Technologies Co., Ltd. Trademarks and Permissions

and other Huawei trademarks are trademarks of Huawei Technologies Co., Ltd.All other trademarks and trade names mentioned in this document are the property of their respective holders. NoticeThe purchased products, services and features are stipulated by the contract made between Huawei and thecustomer. All or part of the products, services and features described in this document may not be within thepurchase scope or the usage scope. Unless otherwise specified in the contract, all statements, information,and recommendations in this document are provided "AS IS" without warranties, guarantees or representationsof any kind, either express or implied.

The information in this document is subject to change without notice. Every effort has been made in thepreparation of this document to ensure accuracy of the contents, but all statements, information, andrecommendations in this document do not constitute the warranty of any kind, express or implied.

Huawei Technologies Co., Ltd.Address: Huawei Industrial Base

Bantian, LonggangShenzhen 518129People's Republic of China

Website: http://www.huawei.com

Email: [email protected]

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About This Document

Intended AudienceThis document provides an overall description of the S5300, details about each chassis and board,cables available to the device, and lists of components.

This document describes hardware features of the S5300, which helps intended readers obtaindetailed information about each chassis, board, and cable, and rapidly locate specific informationthrough lists of components.

This document is intended for:

l Network planning engineersl Hardware installation engineersl Commissioning engineersl On-site maintenance engineersl System maintenance engineers

Symbol ConventionsThe symbols that may be found in this document are defined as follows.

Symbol Description

DANGERIndicates a hazard with a high level of risk, which if notavoided, will result in death or serious injury.

WARNINGIndicates a hazard with a medium or low level of risk, whichif not avoided, could result in minor or moderate injury.

CAUTIONIndicates a potentially hazardous situation, which if notavoided, could result in equipment damage, data loss,performance degradation, or unexpected results.

TIP Indicates a tip that may help you solve a problem or savetime.

NOTE Provides additional information to emphasize or supplementimportant points of the main text.

Quidway S5300 Series Ethernet SwitchesHardware Description About This Document

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Change HistoryUpdates between document issues are cumulative. Therefore, the latest document issue containsall updates made in previous issues.

Changes in Issue 01 (2011-01-30)Initial commercial release.

About This DocumentQuidway S5300 Series Ethernet Switches

Hardware Description

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Contents

About This Document...................................................................................................................iii

1 Overview of the S5300...............................................................................................................1-11.1 Introduction.....................................................................................................................................................1-2

1.1.1 Positioning..............................................................................................................................................1-21.1.2 Product Characteristics...........................................................................................................................1-2

1.2 Device Models and Naming Rules..................................................................................................................1-31.3 Device Structure..............................................................................................................................................1-61.4 ESD Jack.......................................................................................................................................................1-101.5 System Configuration....................................................................................................................................1-101.6 Physical Specifications..................................................................................................................................1-11

2 Power Supply Unit.....................................................................................................................2-12.1 Power Supply Configuration...........................................................................................................................2-22.2 Power Supply Unit Working Mode.................................................................................................................2-3

2.2.1 Working Mode of DC Power Supply Units...........................................................................................2-32.2.2 Working Mode of Non-PoE AC Power Supply Units...........................................................................2-42.2.3 Working Mode of PoE AC Power Supply Units....................................................................................2-4

2.3 DC Power Supply Units..................................................................................................................................2-52.3.1 Function Overview.................................................................................................................................2-52.3.2 Panel.......................................................................................................................................................2-52.3.3 Technical Specifications........................................................................................................................2-6

2.4 AC Power Supply Units..................................................................................................................................2-72.4.1 Function Overview.................................................................................................................................2-72.4.2 Panel.......................................................................................................................................................2-82.4.3 Technical Specifications........................................................................................................................2-9

2.5 AC PoE Power Supply Units..........................................................................................................................2-92.5.1 Function Overview.................................................................................................................................2-92.5.2 Panel.....................................................................................................................................................2-102.5.3 Technical Specifications......................................................................................................................2-11

3 Heat Dissipation System..........................................................................................................3-13.1 Heat Dissipation Mode....................................................................................................................................3-23.2 Fan Module.....................................................................................................................................................3-3

4 Interface Cards............................................................................................................................4-1

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4.1 Introduction.....................................................................................................................................................4-24.1.1 Interface Card Types..............................................................................................................................4-24.1.2 Interface Numbering.............................................................................................................................. 4-3

4.2 E2XX-2-Port 10GE XFP Optical Interface Card............................................................................................4-44.2.1 Functions and Applications....................................................................................................................4-44.2.2 Panel.......................................................................................................................................................4-54.2.3 Interfaces................................................................................................................................................4-54.2.4 Interface Attributes.................................................................................................................................4-64.2.5 Technical Specifications........................................................................................................................ 4-6

4.3 E2XY-2-Port 10GE SFP+ Optical Interface Card.......................................................................................... 4-64.3.1 Functions and Applications....................................................................................................................4-74.3.2 Panel.......................................................................................................................................................4-74.3.3 Interfaces................................................................................................................................................4-74.3.4 Interface Attributes.................................................................................................................................4-84.3.5 Technical Specifications........................................................................................................................ 4-8

4.4 E4GF/E4GFA-4-Port GE Optical Interface Card........................................................................................... 4-84.4.1 Functions and Applications....................................................................................................................4-94.4.2 Panel.......................................................................................................................................................4-94.4.3 Interfaces..............................................................................................................................................4-114.4.4 Interface Attributes...............................................................................................................................4-114.4.5 Technical Specifications......................................................................................................................4-12

4.5 E4XY-4-Port 10GE SFP+ Optical Interface Card........................................................................................4-124.5.1 Functions and Applications..................................................................................................................4-124.5.2 Panel.....................................................................................................................................................4-134.5.3 Interfaces..............................................................................................................................................4-134.5.4 Interface Attributes...............................................................................................................................4-144.5.5 Technical Specifications......................................................................................................................4-14

4.6 ETPC-Stack Rear Card..................................................................................................................................4-144.6.1 Functions and Applications..................................................................................................................4-154.6.2 Appearance...........................................................................................................................................4-154.6.3 Interfaces..............................................................................................................................................4-154.6.4 Technical Specifications......................................................................................................................4-16

4.7 ETPB-Extended Rear Card...........................................................................................................................4-164.7.1 Functions and Applications..................................................................................................................4-164.7.2 Appearance...........................................................................................................................................4-174.7.3 Technical Specifications......................................................................................................................4-17

5 Cables...........................................................................................................................................5-15.1 DC Power Cables............................................................................................................................................5-25.2 AC Power Cables............................................................................................................................................5-35.3 Ground Cables.................................................................................................................................................5-55.4 Console Cables................................................................................................................................................5-65.5 Network Cables...............................................................................................................................................5-7

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5.6 Optical Fibers................................................................................................................................................5-105.7 Stack Cables..................................................................................................................................................5-14

6 List of Indicators.........................................................................................................................6-16.1 Indicators on the Front Panel..........................................................................................................................6-26.2 Fan Indicators................................................................................................................................................6-106.3 Power Indicators............................................................................................................................................6-11

7 List of Optical Modules............................................................................................................7-17.1 SFP Optical Module (FE) Attributes...............................................................................................................7-27.2 ESFP Optical Module (FE) Attributes............................................................................................................7-27.3 ESFP Optical Module (GE) Attributes............................................................................................................7-37.4 ESFP CWDM-SFP Optical Module................................................................................................................7-47.5 XFP Optical Module (10GE) Attributes.........................................................................................................7-57.6 SFP+ Optical Module (10GE) Attributes........................................................................................................7-5

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Figures

Figure 1-1 Naming rules.......................................................................................................................................1-5Figure 1-2 ESD jack...........................................................................................................................................1-10Figure 2-1 Working mode of DC power supply units..........................................................................................2-4Figure 2-2 Working mode of non-PoE AC power supply units...........................................................................2-4Figure 2-3 Working mode of PoE AC power supply units..................................................................................2-5Figure 2-4 Appearance of the DC power supply unit...........................................................................................2-6Figure 2-5 Appearance of the AC power supply unit...........................................................................................2-8Figure 2-6 Appearance of the 250 W AC PoE power supply unit.....................................................................2-10Figure 2-7 Appearance of the 500 W AC PoE power supply unit.....................................................................2-10Figure 3-1 Fan module appearance...................................................................................................................... 3-4Figure 4-1 Appearance of the E2XX....................................................................................................................4-5Figure 4-2 Appearance of the E2XY....................................................................................................................4-7Figure 4-3 Appearance of the E4GF..................................................................................................................4-10Figure 4-4 Appearance of the E4GFA................................................................................................................4-10Figure 4-5 Appearance of the E4XY..................................................................................................................4-13Figure 4-6 Appearance of the ETPC..................................................................................................................4-15Figure 4-7 Appearance of the ETPB..................................................................................................................4-17Figure 5-1 -48 V DC power return wire...............................................................................................................5-2Figure 5-2 -48 V DC power cable........................................................................................................................5-3Figure 5-3 Appearance of an AC power cable.....................................................................................................5-4Figure 5-4 Appearance of a ground cable............................................................................................................ 5-5Figure 5-5 Structure of a console cable................................................................................................................5-6Figure 5-6 Appearance of a network cable...........................................................................................................5-8Figure 5-7 Structure of a network cable...............................................................................................................5-8Figure 5-8 Single mode fiber with LC/PC connectors.......................................................................................5-12Figure 5-9 Single mode fiber with SC/PC connectors.......................................................................................5-12Figure 5-10 Multimode fiber with LC/PC connectors.......................................................................................5-13Figure 5-11 Structure of a stack cable................................................................................................................5-15Figure 6-1 S5324TP-SI indicators........................................................................................................................6-2Figure 6-2 S5328C-EI indicators......................................................................................................................... 6-3Figure 6-3 S5328C-PWR-SI indicators................................................................................................................6-6

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Tables

Table 1-1 Device models......................................................................................................................................1-3Table 1-2 S5300C front views..............................................................................................................................1-6Table 1-3 S5300C rear views............................................................................................................................... 1-8Table 1-4 S5300TP front views............................................................................................................................1-8Table 1-5 S5300TP rear views............................................................................................................................. 1-9Table 1-6 System configuration.........................................................................................................................1-10Table 1-7 Physical specifications.......................................................................................................................1-11Table 2-1 Description of the 150 W DC power indicators...................................................................................2-6Table 2-2 Technical specifications of the DC power supply unit........................................................................ 2-7Table 2-3 Description of the 150 W AC power indicators...................................................................................2-8Table 2-4 Technical specifications of the AC power supply unit........................................................................ 2-9Table 2-5 Description of the AC PoE power indicators.....................................................................................2-10Table 2-6 Technical specifications of the AC PoE power supply unit...............................................................2-11Table 3-1 S5300 heat dissipation modes..............................................................................................................3-2Table 3-2 Fan indicator description......................................................................................................................3-4Table 3-3 Fan module technical specifications.................................................................................................... 3-4Table 4-1 List of the interface cards supported by the S5300..............................................................................4-2Table 4-2 Interface numbering rules.................................................................................................................... 4-4Table 4-3 Description of indicators on the E2XX................................................................................................4-5Table 4-4 Types and functions of interfaces on the E2XX.................................................................................. 4-5Table 4-5 Attributes of 10GE optical interfaces (10G Base-X)...........................................................................4-6Table 4-6 Technical specifications of the E2XX..................................................................................................4-6Table 4-7 Description of indicators on the E2XY................................................................................................4-7Table 4-8 Types and functions of interfaces on the E2XY.................................................................................. 4-8Table 4-9 Attributes of 10GE optical interfaces (10G Base-X)...........................................................................4-8Table 4-10 Technical specifications of the E2XY................................................................................................4-8Table 4-11 Description of indicators on the E4GF/E4GFA...............................................................................4-11Table 4-12 Types and functions of interfaces on the E4GF/E4GFA.................................................................4-11Table 4-13 Attributes of GE optical interfaces (1000M Base-X).......................................................................4-11Table 4-14 Technical specifications of the E4GF/E4GFA.................................................................................4-12Table 4-15 Description of indicators on the E4XY............................................................................................4-13Table 4-16 Types and functions of interfaces on the E4XY..............................................................................4-14Table 4-17 Attributes of 10GE optical interfaces (10G Base-X).......................................................................4-14

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Table 4-18 Technical specifications of the E4XY..............................................................................................4-14Table 4-19 Types and functions of interfaces on the ETPC...............................................................................4-16Table 4-20 Technical specifications of the ETPC..............................................................................................4-16Table 4-21 Technical specifications of the ETPB..............................................................................................4-17Table 5-1 Specifications of the DC power cables................................................................................................5-3Table 5-2 Specifications of an AC power cable...................................................................................................5-4Table 5-3 Specifications of a ground cable..........................................................................................................5-5Table 5-4 Pin assignments of a console cable......................................................................................................5-7Table 5-5 Specifications of a console cable.........................................................................................................5-7Table 5-6 Pin assignments of a straight through cable.........................................................................................5-9Table 5-7 Pin assignments of a crossover cable...................................................................................................5-9Table 5-8 Specifications of a network cable.......................................................................................................5-10Table 5-9 Optical fiber classification.................................................................................................................5-11Table 5-10 Pin assignments of an optical fiber..................................................................................................5-13Table 5-11 Fiber selection criterion....................................................................................................................5-13Table 5-12 Common optical connectors.............................................................................................................5-14Table 5-13 Specifications of a stack cable.........................................................................................................5-15Table 6-1 Description of S5324TP-SI indicators.................................................................................................6-2Table 6-2 Description of S5328C-EII indicators..................................................................................................6-4Table 6-3 Description of indicators in different modes........................................................................................6-5Table 6-4 Description of S5328C-PWR-SI indicators.........................................................................................6-7Table 6-5 Description of indicators in different modes........................................................................................6-9Table 6-6 Fan indicator description....................................................................................................................6-11Table 6-7 Description of the 150 W DC power indicators.................................................................................6-11Table 6-8 Description of the 150 W AC power indicators.................................................................................6-12Table 6-9 Description of the AC PoE power indicators.....................................................................................6-12Table 7-1 SFP optical module (FE) attributes......................................................................................................7-2Table 7-2 ESFP optical module (FE) attributes....................................................................................................7-2Table 7-3 ESFP optical module (GE) attributes...................................................................................................7-3Table 7-4 ESFP CWDM-SFP optical module attributes......................................................................................7-4Table 7-5 XFP optical module (10GE) attributes.................................................................................................7-5Table 7-6 SFP+ optical module (10GE) attributes...............................................................................................7-5

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1 Overview of the S5300

About This Chapter

1.1 IntroductionThis section describes the characteristics of the S5300.

1.2 Device Models and Naming RulesThis section describes device models and naming rules of the S5300.

1.3 Device StructureThis section describes the structure of the S5300.

1.4 ESD JackThis section describes the functions of the ESD jack on the S5300.

1.5 System Configuration

1.6 Physical Specifications

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1.1 IntroductionThis section describes the characteristics of the S5300.

1.1.1 Positioning

1.1.2 Product Characteristics

1.1.1 Positioning

WARNINGThe Quidway S5300 Ethernet switches are class A products. Customers should take preventativemeasures as the operating devices may cause radio interference.

The Quidway S5300 switch (S5300 for short) is a Metropolitan Area Network (MAN) accessdevice that provides access and data transport functions. The S5300 is developed by Huawei tomeet the requirements for reliable access, aggregation, and high-quality transmission of multipleservices on the MAN . The S5300 functions as the access device or aggregation device of theMAN. The S5300 provides large capacity, high port density, and cost-effective packetforwarding capabilities. The S5300 also provides multi-service access capabilities, excellentextensibility, quality of service (QoS) guarantee, powerful multicast replication, and carrier-class security, and can be used to build high-reliability ring topologies.

1.1.2 Product Characteristics

Energy-Saving DesignThe S5300 saves energy in the following ways:

l It uses low noise fans that adjust their speed automatically, reducing system noise and fanpower consumption.

l The interface chip switches to the power saving mode when an interface is idle, whichmeans that no peer device is connected to the interface.

l It uses advanced highly-integrated and energy-saving chips. With the help of the intelligentdevice management system, the chips improve system performance and also reduce systempower consumption.

Advanced Surge Protection TechniqueThe S5300 uses the Huawei patented built-in surge protection technique. This technique protectsdevices against lightning in terrible weather and increases device security.

Convenient PoE Power SupplyThe S5300 has the Power over Ethernet (PoE) function. It provides centralized power supplyfor IP phones, wireless access points (APs), portable device chargers, POS machines, cameras,and data collectors by using twisted pairs.

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Complying with IEEE 802.3af and IEEE 802.3at, the PoE-enabled S5300 is able to remotelyprovide power for the devices of different vendors. IEEE 802.3at delivers a maximum of 30 Wpower. This allows IEEE 802.3at to support IP video phones, dualband WiFi APs, IP cameras,multi-function STBs, and RFIDs, and simplifies the network.

The S5300 has the ability to control power supply based on time range, which effectivelymanages network devices, reduces power consumption, and lowers the OPEX.

1.2 Device Models and Naming RulesThis section describes device models and naming rules of the S5300.

Device ModelsTo meet diverse customer requirements, the S5300 provides a variety of models. Table 1-1 liststhese device models.

You can select a device model as required.

Table 1-1 Device models

ProductSeries

Model Maximum Number of Interfaces

S5300C

S5328C-EI 28There are twenty-four 10/100/1000BASE-T Ethernetinterfaces and four interfaces on the front card.

S5328C-EI-24S 28There are twenty-four 100/1000BASE-X Ethernetoptical interfaces, four GE combo interfaces(10/100/1000BASE-T+100/1000BASE-X, usedtogether with the last four Ethernet interfaces), andfour interfaces on the front card.

S5352C-EI 52There are forty-eight 10/100/1000BASE-T Ethernetinterfaces and four interfaces on the front card.

S5328C-PWR-EI 28There are twenty-four 10/100/1000BASE-T Ethernetinterfaces and four interfaces on the front card.

S5352C-PWR-EI 52There are forty-eight 10/100/1000BASE-T Ethernetinterfaces and four interfaces on the front card.

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ProductSeries

Model Maximum Number of Interfaces

S5328C-SI 28There are twenty-four 10/100/1000BASE-T Ethernetinterfaces, four GE combo interfaces(10/100/1000BASE-T+100/1000BASE-X, usedtogether with the last four Ethernet interfaces), andfour interfaces on the front card.

S5352C-SI 52There are forty-eight 10/100/1000BASE-T Ethernetinterfaces and four interfaces on the front card.

S5328C-PWR-SI 28There are twenty-four 10/100/1000BASE-T Ethernetinterfaces, four GE combo interfaces(10/100/1000BASE-T+100/1000BASE-X, usedtogether with the last four Ethernet interfaces), andfour interfaces on the front card.

S5352C-PWR-SI 52There are forty-eight 10/100/1000BASE-T Ethernetinterfaces and four interfaces on the front card.

S5300TP

S5324TP-SI 24There are twenty-four 10/100/1000BASE-T Ethernetinterfaces and four GE combo interfaces(10/100/1000BASE-T+100/1000BASE-X, usedtogether with the last four Ethernet interfaces).

S5348TP-SI 48There are forty-eight 10/100/1000BASE-T Ethernetinterfaces and four GE combo interfaces(10/100/1000BASE-T+100/1000BASE-X, usedtogether with the last four Ethernet interfaces).

S5324TP-PWR-SI 24There are twenty-four 10/100/1000BASE-T Ethernetinterfaces and four GE combo interfaces(10/100/1000BASE-T+100/1000BASE-X, usedtogether with the last four Ethernet interfaces).

S5348TP-PWR-SI 48There are forty-eight 10/100/1000BASE-T Ethernetinterfaces and four GE combo interfaces(10/100/1000BASE-T+100/1000BASE-X, usedtogether with the last four Ethernet interfaces).

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Naming RulesThe following are the naming rules of the S5348TP-PWR-SI and S5328C-EI-24S.

Figure 1-1 Naming rules

Quidway S5348TP-PWR-SIA B C D E F G

Quidway S5328C-EI-24S

HD E G

Identifier

Description

A Product brand.

B Switch.

C Product series. "53" indicates the S5300 series.

D Maximum number of interfaces.NOTE

The number of interfaces on an S5300 can be 24, 28, 48, or 52, depending on the device model.

E Uplink interface type:l C: A device supports interface cards. There can be two or four uplink interfaces

on an interface card.l TP: A device has combo interfaces supporting optical and electrical interfaces.

F The S5300 supports Power over Ethernet (PoE).NOTE

If this letter is not displayed, PoE is not supported.

G Software version type:l EI: enhanced version, supporting enhanced featuresl SI: standard version, supporting basic features

H Downlink interface type. The value 24S indicates that 24 downlink interfaces of theS5328C-EI-24S are optical interfaces.NOTE

If this letter is not displayed, all downlink interfaces are electrical interfaces.

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1.3 Device StructureThis section describes the structure of the S5300.

The S5300 Ethernet switches adopt an integrated hardware platform. An S5300 consists of thechassis, power supply unit, fan, switch control unit (SCU), and interface card. The width of anS5300 complies with industry standards, and the S5300 can be installed in an IEC297 cabinetor an ETSI cabinet.

The S5300 switches include S5300C and S5300TP.

NOTE

The S5300 is 1 U (1 U = 44.45 mm) high.

l The dimensions of S5324TP-SI are 442.0 mm x 220.0 mm x 43.6 mm (width x depth x height).

l The dimensions of an S5300 switch except S5324TP-SI are 442.0 mm x 420.0 mm x 43.6 mm (widthx depth x height).

S5300C AppearancesTable 1-2 shows the front views of S5300C.

Table 1-2 S5300C front views

Model Image

S5328C-EI-24S

1 2 5 6 7

S5328C-EI 3 5 6 7

S5328C-PWR-EI

3 5 6 7

S5328C-SI 3 2 5 6 78

S5328C-PWR-SI

5 6 73 2 8

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Model Image

S5352C-EI 4 5 6 7

S5352C-PWR-EI

4 5 6 7

S5352C-SI 4 5 6 78

S5352C-PWR-SI

4 5 6 78

1. Twenty-four100/1000BASE-XEthernet opticalinterfaces

2. Four GE combointerfaces(10/100/1000BASE-T+100/1000BASE-X, used together withthe last four Ethernetinterfaces)

3. Twenty-four10/100/1000BASE-TEthernet interfaces

4. Forty-eight10/100/1000BASE-TEthernet interfaces

5. One consoleinterface

6. One managementinterface

7. Front card slot 8. One USB interface

NOTEBy default, a combo interface works as an optical interface. It can be configured as an electrical interfaceby commands.

Table 1-3 shows the rear views of S5300C.

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Table 1-3 S5300C rear views

Model Image

S5328C-EI-24SS5328C-EIS5328C-SIS5352C-EIS5352C-SI

21 3 4

S5328C-PWR-EIS5328C-PWR-SIS5352C-PWR-EIS5352C-PWR-SI

21 3 4

1. ESD jack 2. Rear card slot 3. Fan module 4. Power supplyunit slot

S5300TP AppearancesTable 1-4 shows the front views of S5300TP.

Table 1-4 S5300TP front views

Model Image

S5324TP-SI-AC

1 37 9 10 4 5 6

S5324TP-SI-DC

1 38 9 10 4 5 6

S5348TP-SI

42 5 6 3

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Model Image

S5324TP-PWR-SI

4 5 631

S5348TP-PWR-SI

42 5 6 3

1. Twenty-four10/100/1000BASE-TEthernet interfaces

2. Forty-eight10/100/1000BASE-TEthernet interfaces

3. Four GE combointerfaces(10/100/1000BASE-T+100/1000BASE-X, used together withthe last four Ethernetinterfaces)

4. One consoleinterface

5. One managementinterface

6. One USB interface 7. AC jack 8. DC jack

9. Switch 10. RPS power jack

NOTEBy default, a combo interface works as an optical interface. It can be configured as an electrical interfaceby commands.

Table 1-5 shows the rear views of S5300TP.

Table 1-5 S5300TP rear views

Model Image

S5324TP-SI

1 2

S5348TP-SI-AC

21 3 4 5 6

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Model Image

S5348TP-SI-DC

21 3 4 5 7

S5324TP-PWR-SIS5348TP-PWR-SI

21 8 9

1. ESD jack 1. Rear card slot 3. RPS power jack 4. Ground screw 5. Switch

6. AC jack 7. DC jack 8. Fan module 9. Power supply unit slot

1.4 ESD JackThis section describes the functions of the ESD jack on the S5300.

The S5300 has an electromagnetic discharge (ESD) jack on the chassis.

When installing the S5300, wear an ESD wrist strap. Connect the ESD wrist strap to the ESDjack on the chassis, as shown in Figure 1-2.

Figure 1-2 ESD jack

1.5 System Configuration

Table 1-6 System configuration

Item Parameter

Processor S5300C-EI: 533 MHzS5300C-SI: 800 MHzS5300TP-SI: 800 MHz

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Item Parameter

Switching capacity l S5324: 48 Gbit/sl S5328: 128 Gbit/s (S5328C-PWR-EI: 88 Gbit/s)l S5348: 96 Gbit/sl S5352: 176 Gbit/s (S5352C-PWR-EI: 136 Gbit/s)

Packet forwardingcapacity

l S5324: 35.71 Mppsl S5328: 65.47 Mppsl S5348: 71.42 Mppsl S5352: 101.19 Mpps

DDR memory 256 MB

Flash Memory 32 MB

1.6 Physical Specifications

Table 1-7 Physical specifications

Item Description

Dimensions (width x depth xheight)

l S5324TP-SI: 442.0 mm x 220.0 mm x 43.6 mml S5328C-EI-24S: 442.0 mm x 420.0 mm x 43.6 mml S5328C-EI: 442.0 mm x 420.0 mm x 43.6 mml S5328C-PWR-EI: 442.0 mm x 420.0 mm x 43.6 mml S5328C-SI: 442.0 mm x 420.0 mm x 43.6 mml S5328C-PWR-SI: 442.0 mm x 420.0 mm x 43.6 mml S5352C-EI: 442.0 mm x 420.0 mm x 43.6 mml S5352C-PWR-EI: 442.0 mm x 420.0 mm x 43.6 mml S5352C-SI: 442.0 mm x 420.0 mm x 43.6 mml S5352C-PWR-SI: 442.0 mm x 420.0 mm x 43.6 mml S5348TP-SI: 442.0 mm x 420.0 mm x 43.6 mml S5324TP-PWR-SI: 442.0 mm x 420.0 mm x 43.6 mml S5348TP-PWR-SI: 442.0 mm x 420.0 mm x 43.6 mm

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Item Description

Maximum power (fullconfiguration)

l S5328C-EI: 60Wl S5352C-EI: 88Wl S5328C-EI-24S: 63Wl S5328C-SI: 56Wl S5352C-SI: 78Wl S5324TP-SI: 40Wl S5348TP-SI: 64Wl S5324TP-PWR-SI: 455 W (Dissipated power: 85 W,

PoE: 370 W)l S5348TP-PWR-SI: 907 W (Dissipated power: 167 W,

PoE: 740 W)l S5328C-PWR-SI: 466 W (Dissipated power: 96 W,

PoE: 370 W)l S5352C-PWR-SI: 917 W (Dissipated power: 177 W,

PoE: 740 W)l S5328C-PWR-EI: 472 W (Dissipated power: 102 W,

PoE: 370 W)l S5352C-PWR-EI: 930 W (Dissipated power: 190 W,

PoE: 740 W)

Weight Fullconfiguration

≤ 8.5 kg

Empty chassis ≤ 5 kg

DC inputvoltage

Rated voltage –48V DC to –60V DC

Maximumvoltage

–36V DC to –72V DC

AC inputvoltage

Rated voltage 100V AC to 240V AC

Maximumvoltage

90V AC to 264V AC

Temperature operatingtemperature

S5300SI, S5300EI: 0°C to 50°C

Storagetemperature

-40°C to 70°C

Relative humidity 10%RH to 90%RH

Altitude S5300SI, S5300EI: 0 m to 2000 m

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2 Power Supply Unit

About This Chapter

This chapter describes the AC and DC power supply units of the S5300.

CAUTIONl Only the power supply units of the same power can be used on an S5300.l Power off the S5300 before removing the power supply units. Do not operate the power

supply units when the S5300 is running.l Before powering off the S5300, shut down all its power supply units.

2.1 Power Supply ConfigurationThis section describes the power supply configuration on the S5300.

2.2 Power Supply Unit Working ModeThis section describes the working mode of S5300 power supply units.

2.3 DC Power Supply UnitsThis section describes the functions, appearance, switch, indicators, and technical specificationsof the S5300 DC power supply unit.

2.4 AC Power Supply UnitsThis section describes the functions, appearance, switch, indicators, and technical specificationsof the S5300 AC power supply unit.

2.5 AC PoE Power Supply UnitsThis section describes the functions, appearance, switch, indicators, and technical specificationsof the S5300 AC PoE power supply unit.

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2.1 Power Supply ConfigurationThis section describes the power supply configuration on the S5300.

PoE Power SupplyThe downlink electrical interfaces of S5300 PoE switches provide PoE power. Each interfaceprovides a maximum of 30 W power and supports a maximum of 100 m power supply distance.The S5300 can transmit both current and data on a pair of signal cables.

PoE power supply units are classified into two types: 500 W current sharing power supply and250 W current sharing power supply.

Power Supply Unit PoE Power Device Power

500 W current sharing powersupply

369.6 W 120 W

250 W current sharing powersupply

123.2 W 120 W

The S5300 PoE switches include:l S5348TP-PWR-SI, S5352C-PWR-SI, and S5352C-PWR-EI:

Each switch provides two power supply unit slots. Each slot accommodates a 500 W or250 W power supply unit. The power supply configurations are shown in the followingtable.

Power Supply Unit PoE Power Maximum Number ofInterfaces

250 W currentsharing powersupply

- 123.2 W l 802.3af: 8l 802.3at: 4

500 W currentsharing powersupply

- 369.6 W l 802.3af: 24l 802.3at: 12

250 W currentsharing powersupply

250 W currentsharing powersupply

246.4 W l 802.3af: 16l 802.3at: 8

500 W currentsharing powersupply

500 W currentsharing powersupply

739.2 W l 802.3af: 48l 802.3at: 24

l S5324TP-PWR-SI, S5328C-PWR-EI, and S5328C-PWR-SI:

Each switch provides two power supply unit slots. Each slot accommodates a 500 W or250 W power supply unit. The power supply configurations are shown in the followingtable.

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Power Supply Unit PoE Power Maximum Number ofInterfaces

250 W currentsharing powersupply

- 123.2 W l 802.3af: 8l 802.3at: 4

500 W currentsharing powersupply

- 369.6 W l 802.3af: 24l 802.3at: 12

250 W currentsharing powersupply

250 W currentsharing powersupply

246.4 W l 802.3af: 16l 802.3at: 8

500 W currentsharing powersupply

500 W currentsharing powersupply

369.6 W l 802.3af: 24l 802.3at: 12

NOTE

Current sharing indicates that the power of two power supply units can be accumulated for powered devices(PDs). The power for the device cannot be accumulated.

When two power supply units are used, they work in redundancy backup mode to provide power for thedevice and in load balancing mode to provide power for PDs.

Non-PoE Power Supply ConfigurationOn a non-PoE switch, one or two power supply units can be configured.

When two power supply units are used, they work in 1:1 backup mode to provide power for thedevice.

NOTE

The power supply units of S5324TP-SI and S5348TP-SI are not hot swappable.

The S5324TP-SI and S5348TP-SI support redundancy power supply (RPS).

2.2 Power Supply Unit Working ModeThis section describes the working mode of S5300 power supply units.

2.2.1 Working Mode of DC Power Supply Units

2.2.2 Working Mode of Non-PoE AC Power Supply Units

2.2.3 Working Mode of PoE AC Power Supply Units

2.2.1 Working Mode of DC Power Supply Units

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Figure 2-1 Working mode of DC power supply units

PWR1

NEG RTN

Motherboard

GND12V

PWR2

NEG RTN

NEG: Power cable RTN: Ground cable GND: Grounding

After the DC power is transmitted to the PWR module, the PWR module outputs 12 V voltage,and then the motherboard provides power for the entire device.

2.2.2 Working Mode of Non-PoE AC Power Supply Units

The working mode of the S5300 non-PoE AC power supply units is shown in Figure 2-2.

Figure 2-2 Working mode of non-PoE AC power supply units

PWR1

L N

Motherboard

GND12V

PGND

PWR2

L N PGND

L: Live line N: Neutral wire PGND: PGND cable GND: Grounding

After the DC power is transmitted to the PWR module, the PWR module outputs 12 V voltage,and then the motherboard provides power for the entire device.

2.2.3 Working Mode of PoE AC Power Supply Units

The working mode of S5300 PoE AC power supply units is shown in Figure 2-3.

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Figure 2-3 Working mode of PoE AC power supply units

PWR1

L N

Motherboard

GND12V

PGND

PWR2

L N PGND

-53V RTN

L: Live line N: Neutral wire PGND: PGND cable GND: Grounding RTN: Ground cable

After the PoE power is transmitted to the PWR module, the PWR module outputs 12 V and -53V voltage, and then the motherboard provides 12 V voltage for the entire device and -53 Vvoltage for the powered devices (PDs).

2.3 DC Power Supply UnitsThis section describes the functions, appearance, switch, indicators, and technical specificationsof the S5300 DC power supply unit.

2.3.1 Function Overview

2.3.2 Panel

2.3.3 Technical Specifications

2.3.1 Function Overview

The 150 W DC power supply unit provides +12 V DC power. It has the following functions:

l EMC filtering, surge protection, and short circuit protection.l Various alarms, for example, the alarm triggered when there is no power input, the alarm

for air breaker status, the alarm for invalid surge protection, and the alarm for undervoltageinput.

NOTEOnly S5328C-EI, S5328C-EI-24S, S5352C-EI, S5328C-SI, and S5352C-SI support the 150 W DC powersupply unit.

2.3.2 Panel

NOTEThe power supply units of S5324TP-SI and S5348TP-SI are integrated on the switch control unit (SCU).They do not support power modules. The functions of the power supply unit switch are the same as thefunctions of the power module switch. The power supply units of S5324TP-SI and S5348TP-SI do nothave the status indicators. For the status and meanings of power indicators, see the PWR indicatordescription in section 6.1 Indicators on the Front Panel.

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Figure 2-4 shows the appearance of the DC power supply unit.

Figure 2-4 Appearance of the DC power supply unit

1 2 3 4

1. Handle 2. Indicator 3. Switch 4. DC jack

Table 2-1 describes the meanings of the indicator.

Table 2-1 Description of the 150 W DC power indicators

Name Status Description

STATUS Off l The input power is out ofrange, for example, noDC input power, DCinput overvoltage, andDC input undervoltage.

l The output power is out ofrange, for example,undervoltage orovertemperature occurs.

Green The DC input power is withinrange.

Blinking green The output power is out ofrange, for example,overvoltage, overcurrent, orshort circuit occurs.

2.3.3 Technical Specifications

Table 2-2 describes the technical specifications of the DC power supply unit.

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Table 2-2 Technical specifications of the DC power supply unit

Item S5328C-EI S5328C-EI-24S

S5328C-SI S5352C-EI S5352C-SI

Dimensions(width xdepth xheight)

100 mm x 220 mm x 43 mm

Weight 0.8 kg

Rated inputvoltage

-48 V DC to -60 V DC

Maximuminput voltage

-36 V DC to -72 V DC

Maximuminput current

6 A

Maximumoutput current

12.5 A

Maximumoutput power

150 W

2.4 AC Power Supply UnitsThis section describes the functions, appearance, switch, indicators, and technical specificationsof the S5300 AC power supply unit.

2.4.1 Function Overview

2.4.2 Panel

2.4.3 Technical Specifications

2.4.1 Function Overview

The AC power supply unit provides the EMC filtering function and protects the device against:

l Output overcurrent

l Output overvoltage

l Output undervoltage

l Input overvoltage

l Input undervoltage

l Overtemperature

l Short circuit

l Lightning

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NOTEOnly S5328C-EI, S5328C-EI-24S, S5352C-EI, S5328C-SI, and S5352C-SI support the 150 W AC powersupply unit.

2.4.2 Panel

Figure 2-5 shows the appearance of the AC power supply unit.

NOTEThe power supply units of S5324TP-SI and S5348TP-SI are integrated on the switch control unit (SCU).They do not support power modules. The functions of the power supply unit switch are the same as thefunctions of the power module switch. The power supply units of S5324TP-SI and S5348TP-SI do nothave the status indicators. For the status and meanings of power indicators, see the PWR indicatordescription in section 6.1 Indicators on the Front Panel.

Figure 2-5 Appearance of the AC power supply unit

1 2 3 4

1. Handle 2. Indicator 3. Switch 4. AC jack

Table 2-3 describes the meanings of the indicator.

Table 2-3 Description of the 150 W AC power indicators

Name Status Description

STATUS Off l The input power is out ofrange, for example, noAC input power, ACinput overvoltage, andAC input undervoltage.

l The output power is out ofrange, for example,undervoltage orovertemperature occurs.

Green The AC input power is withinrange.

Blinking green The output power is out ofrange, for example,overvoltage, overcurrent, orshort circuit occurs.

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2.4.3 Technical Specifications

Table 2-4 describes the technical specifications of the AC power supply unit.

Table 2-4 Technical specifications of the AC power supply unit

Item S5328C-EI S5328C-EI-24S

S5328C-SI S5352C-EI S5352C-SI

Dimensions(width xdepth xheight)

100 mm x 220 mm x 43 mm

Weight 0.8 kg

Rated inputvoltage

100 V AC to 240 V AC, 50 Hz or 60 Hz

Maximuminput voltage

90 V AC to 264 V AC, 47 Hz to 63 Hz

Maximuminput current

3 A

Maximumoutput current

12.5 A

Maximumoutput power

150 W

2.5 AC PoE Power Supply UnitsThis section describes the functions, appearance, switch, indicators, and technical specificationsof the S5300 AC PoE power supply unit.

2.5.1 Function Overview

2.5.2 Panel

2.5.3 Technical Specifications

2.5.1 Function Overview

Power over Ethernet (PoE) refers to power supply over a 10Base-T, 100Base-TX, or 1000Base-T twisted pair cable.

PoE provides power for terminals such as IP phones, access points (APs), portable devicechargers, point-of-sale (POS) machines, cameras, and data collectors. These terminals arepowered when they access the network, so the indoor power supply systems are not required.Complying with IEEE 802.3af and IEEE 802.3at, the PoE S5300 is able to remotely providepower for the devices of different vendors. IEEE 802.3af supports a maximum of 15.4 W powerand IEEE 802.3at supports a maximum of 30 W power.

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The PoE function transmits power together with data to terminals over cables or transmits powerwithout data over idle lines. The S5300 can transmit power together with data at a rate of up to1000 Mbit/s.

2.5.2 Panel

The S5300 supports the 250 W PoE power supply unit, as shown in Figure 2-6, and 500 W PoEpower supply unit, as shown in Figure 2-7. The power fan appearances of the two power supplyunits are different.

Figure 2-6 Appearance of the 250 W AC PoE power supply unit

1 2 3 54

1. Indicator 2. Handle 3. Fan 4. Switch 5. AC jack

Figure 2-7 Appearance of the 500 W AC PoE power supply unit

1 2 3 54

1. Indicator 2. Handle 3. Fan 4. Switch 5. AC jack

Table 2-5 describes the meanings of the indicator.

Table 2-5 Description of the AC PoE power indicators

Name Status Description

INPUT Green The input power is withinrange.

Red The input power is out ofrange, for example:l Undervoltagel Overvoltage

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Name Status Description

Off The power cable is loose orno input AC power isprovided.

OUTPUT Green The AC output power iswithin range.

Red The output power is out ofrange, for example:l Abnormal power fan

operationl Output overvoltagel Output overcurrentl Short circuitl Overtemperature

Off The power cable is loose orno input AC power isprovided.

2.5.3 Technical Specifications

Table 2-6 describes the technical specifications of the AC PoE power supply unit.

Table 2-6 Technical specifications of the AC PoE power supply unit

Item 250 W PoE 500 W PoE

Dimensions (width x depth xheight)

100 mm x 220 mm x 43 mm

Weight 0.8 kg 1 kg

Rated input voltage 100 V AC to 240V AC, 50 Hz or 60 Hz

Maximum input voltage 90 V AC to 264 V AC, 47 Hz to 63 Hz

Maximum input current 4 A to 2 A 7 A to 3.5 A

Maximum output current l 12 V: 10 Al -53.5 V: 2.5 A

l 12 V: 10 Al -53.5 V: 7.11 A

Maximum output power PoE: 130 WTotal: 250 W

PoE: 380 WTotal: 500 W

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3 Heat Dissipation System

About This Chapter

This chapter describes the heat dissipation system of the S5300.

3.1 Heat Dissipation ModeThis section describes the heat dissipation modes of the S5300.

3.2 Fan ModuleThis section describes the appearance and technical specifications of the S5300 fan module.

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3.1 Heat Dissipation ModeThis section describes the heat dissipation modes of the S5300.

The heat dissipation system ensures that the S5300 operates at a normal temperature. Theoperating temperature of the S5300 is the long-term operating temperature in 1.6 PhysicalSpecifications.

The heat dissipation system of the S5300 can be in the following modes:

l Natural heat dissipationl Intelligent heat dissipationl Forcible heat dissipation

Table 3-1 provides the S5300 models corresponding to each heat dissipation mode.

Table 3-1 S5300 heat dissipation modes

HeatDissipation Mode

Model

Naturalheatdissipation

-

Intelligentheatdissipation

l S5324TP-SIl S5348TP-SI

Forcibleheatdissipation

l S5328C-EIl S5328C-EI-24Sl S5352C-EIl S5324TP-PWR-SIl S5348TP-PWR-SIl S5328C-PWR-EIl S5352C-PWR-EIl S5328C-SIl S5352C-SIl S5328C-PWR-SIl S5352C-PWR-SI

NOTE

The fans can work in the intelligent mode or forcible mode.In the intelligent mode, the fans start to operate only when the ambient temperature goes higher than aspecified value.

The following table describes the air circulation through the S5300 chassis.

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No.

Air Circulation Model

1 l S5328C-EI

l S5328C-EI-24S

l S5352C-EI

l S5324TP-PWR-SI

l S5348TP-PWR-SI

l S5328C-PWR-EI

l S5352C-PWR-EI

l S5328C-SI

l S5352C-SI

l S5328C-PWR-SI

l S5352C-PWR-SI

2 l S5324TP-SI

l S5348TP-SI

3.2 Fan ModuleThis section describes the appearance and technical specifications of the S5300 fan module.

AppearanceThe S5300 fan module consists of two fans. The fans can be replaced when the device isoperating. Figure 3-1 shows the appearance of the fan module.

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Figure 3-1 Fan module appearance

1 2 3

1. Captive screw 2. Indicator 3. Handle

Indicator

Table 3-2 describes the fan module indicator of the S5300.

Table 3-2 Fan indicator description

Name Color Description

STATUS Blinking green(1 Hz)

The fan module is operating properly.

Blinking red (1Hz)

The fan module is faulty.

Technical Specifications

Table 3-3 describes the technical specifications of the S5300 fan module.

Table 3-3 Fan module technical specifications

Item Specification

Dimensions (width xdepth x height)

103.0 mm x 99.2 mm x 39.6 mm

Weight 230 g to 270 g

Maximum powerconsumption

12 W

Maximum wind pressure 375 Pa

Maximum wind rate 40 CFM

Maximum noise 60 dB

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Item Specification

Operating voltage 12 V DC

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4 Interface Cards

About This Chapter

This section describes the interface cards supported by the S5300.

4.1 IntroductionThis section provides an overview of the interface cards supported by the S5300, includinginterface card types, relationships between interface cards, and interface numbers.

4.2 E2XX-2-Port 10GE XFP Optical Interface CardThis section describes the functions, appearance, indicators, interfaces, and technicalspecifications of the 2-port 10GE XFP optical interface card.

4.3 E2XY-2-Port 10GE SFP+ Optical Interface CardThis section describes the functions, appearance, indicators, interfaces, and technicalspecifications of the 2-port 10GE SFP+ optical interface card.

4.4 E4GF/E4GFA-4-Port GE Optical Interface CardThis section describes the functions, appearance, indicators, interfaces, and technicalspecifications of the 4-port GE SFP optical interface card.

4.5 E4XY-4-Port 10GE SFP+ Optical Interface CardThis section describes the functions, appearance, indicators, interfaces, and technicalspecifications of the 4-port 10GE SFP+ optical interface card.

4.6 ETPC-Stack Rear CardThis section describes the functions, appearance, indicators, interfaces, and technicalspecifications of the stack card.

4.7 ETPB-Extended Rear CardThis section describes the functions, appearance, indicators, interfaces, and technicalspecifications of the extended rear card.

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4.1 IntroductionThis section provides an overview of the interface cards supported by the S5300, includinginterface card types, relationships between interface cards, and interface numbers.

4.1.1 Interface Card Types

4.1.2 Interface Numbering

4.1.1 Interface Card Types

Table 4-1 lists the interface cards supported by the S5300.

Table 4-1 List of the interface cards supported by the S5300

Interface CardType

Name Supported Device Model

Front card E2XX-2-port 10GEXFP optical interfacecard

l S5328C-EIl S5352C-EIl S5328C-EI-24Sl S5328C-SIl S5352C-SIl S5328C-PWR-SIl S5352C-PWR-SIl S5328C-PWR-EIl S5352C-PWR-EI

E2XX-2-port 10GESFP+ opticalinterface card

E4XY-4-port 10GESFP+ opticalinterface card

l S5328C-EIl S5352C-EIl S5328C-EI-24Sl S5328C-SIl S5352C-SIl S5328C-PWR-SIl S5352C-PWR-SI

E4GFA-4-port GEoptical interface card

S5300SI

E4GF-4-port GEoptical interface card

S5300EI

Rear card ETPC-stack rear card l S5300EIl S5300SI

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Interface CardType

Name Supported Device Model

ETPB-extended rearcard

l S5328C-EIl S5352C-EIl S5328C-EI-24Sl S5328C-SIl S5352C-SIl S5328C-PWR-SIl S5352C-PWR-SIl S5328C-PWR-EIl S5352C-PWR-EI

NOTEInterface cards on the S5300C series are not hot swappable.

4.1.2 Interface Numbering

On the S5300, interfaces are numbered in the format of slot ID/subcard ID/interface sequencenumber.

l Slot IDThe slot ID specifies the ID of the slot where a card resides. The S5300 supports only onecard that integrates the control, switching, and service functions, so the slot ID is always0.

l Subcard IDThe S5300 supports only one front card, so the subcard ID is 0 or 1.The value 1 indicates an interface on a front card. The value 0 indicates an interface on thedevice.

l Interface sequence numberThe interface sequence number indicates the number of each interface on a card as shownin Table 4-2.

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Table 4-2 Interface numbering rules

Number ofRowsforInterfaces

Diagram for Interface Numbering Description

1

1 2 3 4

There is only one row ofinterfaces on theinterface card. Theseinterfaces are numberedfrom left to right startingwith 1.

2

1 3 5 7 9 11

2 4 6 8 10 12 There are two rows ofinterfaces on theinterface card. Theseinterfaces are numberedfrom bottom to top andleft to right starting with1.

If an interface does not reside on a front card and is the fifth interface from left to right and topto bottom, the interface is named Ethernet 0/0/5. If the stacking function is enabled and the stackID is 1, the interface is named Ethernet 1/0/5.

If an interface resides on a front card and is the third interface from left to right, the interface isnamed Ethernet 0/1/3. If the stacking function is enabled and the stack ID is 1, the interface isnamed Ethernet 1/1/3.

4.2 E2XX-2-Port 10GE XFP Optical Interface CardThis section describes the functions, appearance, indicators, interfaces, and technicalspecifications of the 2-port 10GE XFP optical interface card.

4.2.1 Functions and Applications

4.2.2 Panel

4.2.3 Interfaces

4.2.4 Interface Attributes

4.2.5 Technical Specifications

4.2.1 Functions and Applications

FunctionsThe E2XX provides two 10GE XFP optical interfaces to implement data access and line-speedswitching.

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ApplicationsThe E2XX can be inserted into the front card slot of the S5328C-EI, S5352C-EI, S5328C-EI-24S,S5328C-SI, S5352C-SI, S5328C-PWR-SI, S5352C-PWR-SI, S5328C-PWR-EI, or S5352C-PWR-EI.

The cost of a 10GE interface is higher than that of other interfaces, so it is used as an uplinkaggregation interface on high-bandwidth and high-speed Metropolitan Area Networks (MANs)or backbone networks. When an enterprise user needs the high-quality triple-play service, theE2XX provides access interfaces for downlink devices or networks. The E2XX uses fibers astransmission media and supports up to 80 km transmission distance. Different transmissiondistances can be supported by changing XFP optical modules.

4.2.2 Panel

Figure 4-1 shows the appearance of the E2XX.

Figure 4-1 Appearance of the E2XX

Table 4-3 describes the meanings of indicators on the E2XX.

Table 4-3 Description of indicators on the E2XX

Indicator Color Description

ACT/LNK Green-yellow If the indicator is blinking, data is beingtransmitted or received.

If the indicator is steady on, a link has beenconnected.

4.2.3 Interfaces

Table 4-4 describes the types and functions of interfaces on the E2XX.

Table 4-4 Types and functions of interfaces on the E2XX

Type Quantity Description

10G BASE-SR/LRoptical interface

2 The E2XX provides two 10 Gbit/s opticalinterfaces to transmit and receive Ethernetservices at 10 Gbit/s.

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4.2.4 Interface Attributes

Table 4-5 describes the attributes of 10GE optical interfaces.

Table 4-5 Attributes of 10GE optical interfaces (10G Base-X)

Attribute Description

Connector type LC/PC

Optical interfaceattribute

Depending on the XFP optical module (for details, see section 7.5 XFPOptical Module (10GE) Attributes)

Standardscompliance

IEEE 802.3ae

Frame format Ethernet_II, Ethernet_SAP, or Ethernet_SNAP

Network layerprotocol

IP

4.2.5 Technical Specifications

Table 4-6 describes the technical specifications of the E2XX.

Table 4-6 Technical specifications of the E2XX

Parameter Description

Dimensions 200.0 mm x 69.0 mm x 22.0 mm (depth x width x height)

Powerconsumption

11 W

Weight 0.2 kg

4.3 E2XY-2-Port 10GE SFP+ Optical Interface CardThis section describes the functions, appearance, indicators, interfaces, and technicalspecifications of the 2-port 10GE SFP+ optical interface card.

4.3.1 Functions and Applications

4.3.2 Panel

4.3.3 Interfaces

4.3.4 Interface Attributes

4.3.5 Technical Specifications

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4.3.1 Functions and Applications

FunctionsThe E2XY provides two 10GE SFP+ optical interfaces to implement data access and line-speedswitching.

ApplicationsThe E2XY can be inserted into the front card slot of the S5328C-EI, S5352C-EI, S5328C-EI-24S,S5328C-SI, S5352C-SI, S5328C-PWR-SI, S5352C-PWR-SI, S5328C-PWR-EI, or S5352C-PWR-EI.

The cost of a 10GE interface is higher than that of other interfaces, so it is used as an uplinkaggregation interface on high-bandwidth and high-speed Metropolitan Area Networks (MANs)or backbone networks. When an enterprise user needs the high-quality triple-play service, theE2XY provides access interfaces for downlink devices or networks. The E2XY uses fibers astransmission media and supports up to 40 km transmission distance. Different transmissiondistances can be supported by changing SFP+ optical modules.

4.3.2 Panel

Figure 4-2 shows the appearance of the E2XY.

Figure 4-2 Appearance of the E2XY

Table 4-7 describes the meanings of indicators on the E2XY.

Table 4-7 Description of indicators on the E2XY

Indicator Color Description

ACT/LNK Green-yellow If the indicator is blinking, data is beingtransmitted or received.

If the indicator is steady on, a link has beenconnected.

4.3.3 Interfaces

Table 4-8 describes the types and functions of interfaces on the E2XY.

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Table 4-8 Types and functions of interfaces on the E2XY

Type Quantity Description

10G BASE-X opticalinterface

2 The E2XY provides two 10 Gbit/s opticalinterfaces to transmit and receive Ethernetservices at 10 Gbit/s.

4.3.4 Interface Attributes

Table 4-9 describes the attributes of 10GE optical interfaces.

Table 4-9 Attributes of 10GE optical interfaces (10G Base-X)

Attribute Description

Connector type LC/PC

Optical interfaceattribute

Depending on the SFP+ optical module (for details, see section 7.5 XFPOptical Module (10GE) Attributes)

Standardscompliance

IEEE 802.3ae

Frame format Ethernet_II, Ethernet_SAP, or Ethernet_SNAP

Network layerprotocol

IP

4.3.5 Technical Specifications

Table 4-10 describes the technical specifications of the E2XY.

Table 4-10 Technical specifications of the E2XY

Parameter Description

Dimensions 200.0 mm x 69.0 mm x 22.0 mm (depth x width x height)

Powerconsumption

6.5 W

Weight 0.2 kg

4.4 E4GF/E4GFA-4-Port GE Optical Interface CardThis section describes the functions, appearance, indicators, interfaces, and technicalspecifications of the 4-port GE SFP optical interface card.

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4.4.1 Functions and Applications

4.4.2 Panel

4.4.3 Interfaces

4.4.4 Interface Attributes

4.4.5 Technical Specifications

4.4.1 Functions and Applications

FunctionsThe E4GF/E4GFA provides four GE SFP optical interfaces to implement data access and line-speed switching.

Applications

CAUTIONThe E4GF cannot work on the S5300SI and the E4GFA cannot work on the S5300EI.The E4GF/E4GFA front card should be used together with the ETPB extended rear card;otherwise, only two interfaces of the front card can work.

The E4GF can be inserted into the front card slot of the S5328C-EI, S5352C-EI, S5328C-EI-24S,S5328C-PWR-EI, or S5352C-PWR-EI.

The E4GFA can be inserted into the front card slot of the S5328C-SI, S5352C-SI, S5328C-PWR-SI, or S5352C-PWR-SI.

The cost of a GE interface is higher than that of other interfaces, so it is used as an uplinkaggregation interface on high-bandwidth and high-speed Metropolitan Area Networks (MANs)or backbone networks. When an enterprise user needs the high-quality triple-play service, theE4GF/E4GFA provides access interfaces for downlink devices or networks. The E4GF/E4GFAuses fibers as transmission media and supports up to 100 km transmission distance. Differenttransmission distances can be supported by changing ESPF optical modules.

4.4.2 Panel

Figure 4-3 shows the appearance of the E4GF (applicable to the S5300EI).

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Figure 4-3 Appearance of the E4GF

Figure 4-4 shows the appearance of the E4GFA (applicable to the S5300SI).

Figure 4-4 Appearance of the E4GFA

1. Front panel label 2. Silkscreen and card label 3. Cooling fin

Differences between the E4GF and E4GFA are as follows:

l The labels on the front panels are different. The front panel label of the E4GF is CX22E4GF,and the front panel label of the E4GFA is CX22E4GFA.

l The silkscreens and bar codes on the front cards are different, as shown in Figure 4-3 andFigure 4-4. The silkscreens show the card types and versions. The silkscreen of the E4GF

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is CX22E4GF VER.A, and the silkscreen of the E4GFA is CX22E4GFA VER.A. The cardlabels show the card types. The label of the E4GF is CX22E4GF, and the label of the E4GFAis CX22E4GFA.

l The card appearances are different. The E4GF has the cooling fins, as shown in Figure4-3, whereas the E4GFA does not, as shown in Figure 4-4.

Table 4-11 describes the meanings of indicators on the E4GF.

Table 4-11 Description of indicators on the E4GF/E4GFA

Indicator Color Description

ACT/LNK Green-yellow If the indicator is blinking, data is beingtransmitted or received.

If the indicator is steady on, a link has beenconnected.

4.4.3 Interfaces

Table 4-12 describes the types and functions of interfaces on the E4GF/E4GFA.

Table 4-12 Types and functions of interfaces on the E4GF/E4GFA

Type Quantity Description

1000M BASE-X opticalinterface

4 The E4GF or E4GFA provides four 1000 Mbit/soptical interfaces to transmit and receive Ethernetservices at 1000 Mbit/s.

4.4.4 Interface Attributes

Table 4-13 describes the optical interface attributes.

Table 4-13 Attributes of GE optical interfaces (1000M Base-X)

Attribute Description

Connector type LC/PC

Optical interfaceattribute

Depending on the optical module (for details, see section 7.3 ESFPOptical Module (GE) Attributes and section 7.4 ESFP CWDM-SFPOptical Module)

Standardscompliance

IEEE 802.3Z

Frame format Ethernet_II, Ethernet_SAP, or Ethernet_SNAP

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Attribute Description

Network layerprotocol

IP

4.4.5 Technical Specifications

Table 4-14 describes the technical specifications of the E4GF/E4GFA.

Table 4-14 Technical specifications of the E4GF/E4GFA

Parameter Description

Dimensions 200.0 mm x 69.0 mm x 22.0 mm (depth x width x height)

Powerconsumption

6 W for the E4GF4.5 W for the E4GFA

Weight 0.2 kg

4.5 E4XY-4-Port 10GE SFP+ Optical Interface CardThis section describes the functions, appearance, indicators, interfaces, and technicalspecifications of the 4-port 10GE SFP+ optical interface card.

4.5.1 Functions and Applications

4.5.2 Panel

4.5.3 Interfaces

4.5.4 Interface Attributes

4.5.5 Technical Specifications

4.5.1 Functions and Applications

FunctionsThe E4XY provides four 10GE SFP+ optical interfaces to implement data access and line-speedswitching.

ApplicationsThe E4XY can be inserted into the front card slot of the S5328C-SI, S5352C-S, S5328C-PWR-SI, S5352C-PWR-SI, S5328C-EI, S5352C-EI, or S5328C-EI-24S.

The cost of a 10GE interface is higher than that of other interfaces, so it is used as an uplinkaggregation interface on high-bandwidth and high-speed Metropolitan Area Networks (MANs)

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or backbone networks. When an enterprise user needs the high-quality triple-play service, theE4XY provides access interfaces for downlink devices or networks. The E4XY uses fibers astransmission media and supports up to 40 km transmission distance. Different transmissiondistances can be supported by changing SFP+ optical modules.

CAUTIONThe E4XY front card should be used together with the ETPB extended rear card; otherwise, onlytwo interfaces of the front card can work.

4.5.2 Panel

Figure 4-5 shows the appearance of the E4XY.

Figure 4-5 Appearance of the E4XY

Table 4-15 describes the meanings of indicators on the E4XY.

Table 4-15 Description of indicators on the E4XY

Indicator Color Description

ACT/LNK Green-yellow If the indicator is blinking, data is beingtransmitted or received.

If the indicator is steady on, a link has beenconnected.

4.5.3 Interfaces

Table 4-16 describes the types and functions of interfaces on the E4XY.

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Table 4-16 Types and functions of interfaces on the E4XY

Type Quantity Description

10G BASE-X opticalinterface

4 The E4XY provides four 10 Gbit/s opticalinterfaces to transmit and receive Ethernetservices at 10 Gbit/s.

4.5.4 Interface Attributes

Table 4-17 describes the attributes of 10GE optical interfaces.

Table 4-17 Attributes of 10GE optical interfaces (10G Base-X)

Attribute Description

Connector type LC/PC

Optical interfaceattribute

Depending on the SFP+ optical module (for details, see section 7.5 XFPOptical Module (10GE) Attributes)

Standardscompliance

IEEE 802.3ae

Frame format Ethernet_II, Ethernet_SAP, or Ethernet_SNAP

Network layerprotocol

IP

4.5.5 Technical Specifications

Table 4-18 describes the technical specifications of the E4XY.

Table 4-18 Technical specifications of the E4XY

Parameter Description

Dimensions 200.0 mm x 69.0 mm x 22.0 mm (depth x width x height)

Powerconsumption

13 W

Weight 0.3 kg

4.6 ETPC-Stack Rear CardThis section describes the functions, appearance, indicators, interfaces, and technicalspecifications of the stack card.

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4.6.1 Functions and Applications

4.6.2 Appearance

4.6.3 Interfaces

4.6.4 Technical Specifications

4.6.1 Functions and Applications

FunctionsThe ETPC provides two 12 Gbit/s electrical interfaces to implement data access and line-speedswitching.

Stacking is a technology that connects multiple switches by using the ETPC to function as alogical device. The S5300 supports a maximum of nine switches in a stack system.

ApplicationsThe ETPC can be inserted into the S5324TP-SI, S5348TP-SI, S5328C-EI, S5352C-EI, S5328C-EI-24S, S5328C-SI, S5352C-SI, S5324TP-PWR-SI, S5348TP-PWR-SI, S5328C-PWR-SI,S5352C-PWR-SI, S5328C-PWR-EI, or S5352C-PWR-EI for stacking.

CAUTIONThe following requirements must be met to implement stacking:l All the member switches belong to the same series. The EI series and SI series cannot form

a stack.l All the member switches are connected by using stack cables and stack modules.l The stack rear card cannot be used together with the E4GF/E4GFA or E4XY front card.

4.6.2 Appearance

Figure 4-6 shows the appearance of the ETPC.

Figure 4-6 Appearance of the ETPC

4.6.3 Interfaces

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Table 4-19 describes the types and functions of interfaces on the ETPC.

Table 4-19 Types and functions of interfaces on the ETPC

Type Quantity Description

PCI-E electrical interface 2 The ETPC provides two 12 Gbit/s electricalinterfaces to transmit and receive services.

4.6.4 Technical Specifications

Table 4-20 describes the technical specifications of the ETPC.

Table 4-20 Technical specifications of the ETPC

Parameter Description

Dimensions 200.0 mm x 69.0 mm x 22.0 mm (depth x width x height)

Powerconsumption

0.5 W

Weight 0.2 kg

4.7 ETPB-Extended Rear CardThis section describes the functions, appearance, indicators, interfaces, and technicalspecifications of the extended rear card.

4.7.1 Functions and Applications

4.7.2 Appearance

4.7.3 Technical Specifications

4.7.1 Functions and Applications

Functions

The ETPB extended rear card must be used together with the E4GF/E4GFA or E4XY front cardto provide four SFP GE interfaces or SFP+ 10GE interfaces.

Applications

The ETPB can be inserted into the S5328C-EI, S5352C-EI, S5328C-EI-24S, S5328C-SI,S5352C-SI, S5328C-PWR-SI, S5352C-PWR-SI, S5328C-PWR-EI, or S5352C-PWR-EI forinterface extension.

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CAUTIONThe E4GF/E4GFA or E4XY front card must be used together with the ETPB extended rear card.

4.7.2 Appearance

Figure 4-7 shows the appearance of the ETPB.

Figure 4-7 Appearance of the ETPB

4.7.3 Technical Specifications

Table 4-21 describes the technical specifications of the ETPB.

Table 4-21 Technical specifications of the ETPB

Parameter Description

Dimensions 200.0 mm x 69.0 mm x 22.0 mm (depth x width x height)

Powerconsumption

0.1 W

Weight 0.2 kg

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5 Cables

About This Chapter

5.1 DC Power CablesA DC power cable transmits DC power to the switch.

5.2 AC Power CablesAn AC power cable transmits AC power to the switch.

5.3 Ground CablesA ground cable protects the device from lightning strike and electromagnetic interference.

5.4 Console CablesA console cable is used to debug or maintain a local S5300.

5.5 Network CablesA network cable subtends devices, enables a device to communication with other networkdevices, and allows users to locally or remotely maintain the device.

5.6 Optical FibersAn optical fiber connects the optical interface of a device to an upstream device or opticalnetwork terminal.

5.7 Stack CablesThis section describes the structure and technical specifications of a stack cable.

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5.1 DC Power CablesA DC power cable transmits DC power to the switch.

ApplicationsA DC power cable connects the following two interfaces:

l Input power jack on the chassisl Output power interface on an external power system

NOTEA black -48 V DC power return wire (RTN) is connected to the RTN(+) end of the DC power supply. Ablue -48 V DC power cable is connected to the NEG(-) end of the DC power supply.

Appearance and StructureThe black -48 V DC power return wire and the blue -48 V DC power cable are shown in Figure5-1 and Figure 5-2.

Figure 5-1 -48 V DC power return wire

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Figure 5-2 -48 V DC power cable

Specifications

The technical specifications of a -48 V DC power return wire and a -48 V DC power cable arethe same, as described in Table 5-1.

Table 5-1 Specifications of the DC power cables

Item Description

Cable type Power cable

Color Blue for -48 V DC power cable and black for -48 V DC powerreturn wire

Connector 1 OT

Connector 2 Cord end terminal

Impedance 4.95 Ω/km

Conductor cross-sectionalarea

1.2 mm2

5.2 AC Power CablesAn AC power cable transmits AC power to the switch.

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Applications

An AC power cable connects the following:

l AC input power jack on the chassis

l Mains supply

Appearance

Figure 5-3 shows the appearance of an AC power cable.

Figure 5-3 Appearance of an AC power cable

SpecificationsNOTE

The AC power cables used in different countries and regions may have different specifications. Thefollowing are the specifications of the international standard AC power cable.

Table 5-2 lists the specifications of an AC power cable.

Table 5-2 Specifications of an AC power cable

Item Description

Cable type External power cable

Function 250 V AC/10 A complying with international standard

Connector 1 PI-straight-male

Connector 2 C13-straight-female

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Item Description

Cable type l 227 IEC 53 (RVV)-300 V/500 Vl Rated voltage: 300 V/500 Vl Standards compliance: 227 IEC 53 (RVV)

Conductor cross-sectionalarea

3 x 1.0 mm2

Fireproof level GB18380.1

5.3 Ground CablesA ground cable protects the device from lightning strike and electromagnetic interference.

ApplicationsA ground cable connects the chassis to the ground.

AppearanceFigure 5-4 shows the appearance of a ground cable.

Figure 5-4 Appearance of a ground cable

SpecificationsTable 5-3 lists the specifications of a ground cable.

Table 5-3 Specifications of a ground cable

Item Description

Cable type Power cable

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Item Description

Color Green-yellow

Connector type (X1/X2) OT/OT naked crimping terminal

Gauge 10 AWG (cross-sectional area ≈ 5.2 mm2)

Cable type l Standards compliance: UL1015l Length: 0.3 m

Maximum current 50.0 A

Fireproof level VW-1, CSA FT1

5.4 Console CablesA console cable is used to debug or maintain a local S5300.

ApplicationsA console cable connects the console port of the S5300 to the serial port of an operation terminalto transmit configuration data. A shielded cable or an unshielded cable can be used accordingto the onsite situation.

A console cable connects the S5300 and terminal as follows:

l The 8-pin RJ45 connector is inserted into the S5300 console port.l The DB9 connector is inserted into the terminal serial port.

Appearance and StructureFigure 5-5 shows the structure of a console cable.

Figure 5-5 Structure of a console cable

Pin AssignmentsTable 5-4 describes the pin assignments of a console cable.

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Table 5-4 Pin assignments of a console cable

Connector X2 (RJ45) Direction X1 (DB9) Signal

Pinassignment

1 ---> 8 Clear to Send (CTS)

2 ---> 6 Data Set Ready (DSR)

3 ---> 2 Receive Data (RXD)

4 — 5 GND

5 — 5 GND

6 <--- 3 Transmit Data (TXD)

7 <--- 4 Data Terminal Ready (DTR)

8 <--- 7 Request to Send (RTS)

SpecificationsTable 5-5 lists the specifications of a console cable.

Table 5-5 Specifications of a console cable

Item Description

Connector type l Connector X1: cable connector, D-type, 9-pin, malel Connector X2: network interface connector, RJ45, 8-

pin, 8-bit

Cable type Twisted pair

Color White

Diameter 0.38 mm

Gauge 28 AWG (cross-sectional area ≈ 0.08 mm2)

Pin 8-pin

Fireproof level CM

5.5 Network CablesA network cable subtends devices, enables a device to communication with other networkdevices, and allows users to locally or remotely maintain the device.

ApplicationsA network cable connects a maintenance terminal to the console port on the main control boardfor local or remote maintenance.

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The network cables are classified into straight through cables and crossover cables.

l A straight through cable connects a terminal, such as a computer or switch, to the network.The straight through cable uses two RJ45 connectors, which have the same pinout.

l A crossover cable connects two terminals, such as computers or switches. The crossovercable uses two RJ45 connectors, which have difference pinouts.

Appearance and StructureNOTE

l Generally, a network cable is a standard unshielded network cable that uses RJ45 connectors.

l The appearances of the straight through cable and the crossover cable are the same.

Figure 5-6 shows the appearance of a network cable.

Figure 5-6 Appearance of a network cable

Figure 5-7 shows the appearance of a network cable.

Figure 5-7 Structure of a network cable

Main label

X1 X2

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Pin Assignments

Table 5-6 describes the pin assignments of a straight through cable.

Table 5-6 Pin assignments of a straight through cable

X1 Pin Tip Color X2 Pin

1 White and orange 1

2 Orange 2

3 White and Green 3

4 Blue 4

5 White and Blue 5

6 Green 6

7 White and brown 7

8 Brown 8

Table 5-7 describes the pin assignments of a crossover cable.

Table 5-7 Pin assignments of a crossover cable

X1 Pin Tip Color X2 Pin

1 White and orange 3

2 Orange 6

3 White and Green 1

4 Blue 4

5 White and Blue 5

6 Green 2

7 White and brown 7

8 Brown 8

NOTE

To achieve the optimum electrical transmission performance, ensure that the wires connected to pins 1 and 2and to pins 3 and 6 are twisted pairs.

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SpecificationsTable 5-8 lists the specifications of a network cable.

Table 5-8 Specifications of a network cable

Item Description

Connector type (X1/X2) RJ45 connectors

Cable type Category-3 and category-5 unshielded twisted pairs(UTP-3 and UTP-5) or shielded twisted pairs (STP)

Color Dark gray

Characteristic impedance 100.0 Ω

Diameter 0.510 mm

Breakdown voltage 500.0 V

Impedance 93.8 Ω

Pin 8 pins

Frequency 0 MHz to 100 MHz

Frequency attenuation 22 dB/100 m@100 MHz

Fireproof level CM

Length l Straight through cable: 5 m, 10 m, 20 m, and 30 ml Crossover cable: 5 m and 30 m

5.6 Optical FibersAn optical fiber connects the optical interface of a device to an upstream device or opticalnetwork terminal.

ApplicationsAn optical fiber carries optical signals and transmits them over short distance. An optical fiberconnects the following:

l Optical interface on a boardl Optical distribution frame (ODF) or the optical interface on another device

Table 5-9 lists the classification of optical fibers.

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Table 5-9 Optical fiber classification

No. Purpose Local EndConnector

Remote EndConnector

Mode

1 To connect LPU of thedevice to the ODF

LC/PC FC/PC Single mode,indoor

2 To connect LPUs of twodevices

LC/PC LC/PC Single mode/multimode,indoor

3 To connect LPU of thedevice to another device

LC/PC SC/PC or LC/PC

Single mode/multimode,indoor

AppearanceThe appearances of the single-mode optical fiber and the multimode optical fiber are the same,but their colors are different. The single-mode optical fiber is yellow, and the multi-mode opticalfiber is orange.

CAUTIONWhen connecting or removing the LC/PC optical connector, align the connector with the opticalinterface, and do not rotate the fiber. Pay attention to the following points:l Align the head of the fiber jumper with the optical interface and insert the optical fiber into

the interface gently.l To remove the fiber, press the latch on the connector and pull the fiber out.

Figure 5-8 and Figure 5-9 show the appearances of a single mode fiber.

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Figure 5-8 Single mode fiber with LC/PC connectors

Figure 5-9 Single mode fiber with SC/PC connectors

Figure 5-10 shows the appearance of a multimode fiber.

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Figure 5-10 Multimode fiber with LC/PC connectors

Pin AssignmentsTable 5-10 describes the pin assignments of an optical fiber.

Table 5-10 Pin assignments of an optical fiber

Local End Terminal SignalDirection

Remote End Terminal

Optical interface Tx terminal -> Optical interface Rx terminal

Optical interface Rx terminal <- Optical interface Tx terminal

Fiber Selection CriterionTable 5-11 lists the criteria for selecting optical fibers. Table 5-12 lists common opticalconnectors.

Table 5-11 Fiber selection criterion

Parameter Criterion

Length Survey result

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Parameter Criterion

Single mode ormultimode

Optical module typel The optical transmitting module of the multitransverse mode is

connected to the multimode fiber.l The optical transmitting module of the single-longitudinal mode or

multi-longitudinal mode is connected to the single mode fiber.NOTE

If the optical fiber jumper is used, the connector connected to the device must bethe LC/PC connector, and the connector connected to the remote end must be ofthe same type as the remote end interface.

Connector shape l Cube: SC/PC, LC/PC, and MTRJ/PCl Column: ST/PC and FC/PC

Table 5-12 Common optical connectors

SC/PC optical connectorLC/PC optical connector

FC/PC optical connector MTRJ/PC optical connector

ST/PC optical connector

-

5.7 Stack CablesThis section describes the structure and technical specifications of a stack cable.

Applications

A stack cable of the S5300 is the PCI-E cable, which interconnects the stack interfaces on theETPC card. The S5300s connected with a stack cable form a logical switch to implement packetforwarding.

NOTE

The two ends of a stack cable are covered by the ESD-preventive caps.

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Appearance and StructureFigure 5-11 shows the structure of a stack cable.

Figure 5-11 Structure of a stack cable

SpecificationsTable 5-13 lists the specifications of a stack cable.

Table 5-13 Specifications of a stack cable

Item Description

Connectortype

PCI-E

Cable type 100 cm PCI-E cable

Standardscompliance

PCI-E 8X

Length 1.0 m

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6 List of Indicators

About This Chapter

This chapter describes the status and meanings of the indicators on the S5300, including theindicators for cards, fan module, and power supply units.

6.1 Indicators on the Front PanelThis section describes the indicators on the S5300 front panel.

6.2 Fan IndicatorsThis section describes the fan indicators.

6.3 Power IndicatorsThis section describes the power indicators.

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6.1 Indicators on the Front PanelThis section describes the indicators on the S5300 front panel.

Indicators of a Non-PoE S5300

S5324TP-SI is non-PoE switche, and has a single power supply unit.

NOTE

Only S5348TP-SI and S5324TP-SI have redundancy power supply (RPS) indicators.

Figure 6-1 S5324TP-SI indicators

2

3

45

1

Table 6-1 Description of S5324TP-SI indicators

No. Indicator Identifier Status Description

1 Powerindicator

PWR Off The switch is poweredoff.

Green The switch is poweredon.

Orange The power supply unit isfaulty, and the externalRPS system is started.

2 RPSindicator

RPS Off The RPS is notconnected to the switchor the RPS is faulty.

Green The RPS is connected tothe switch.

3 System statusindicator

SYS Off The system is notoperating.

Green The system is notoperating properly or isstarting.

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No. Indicator Identifier Status Description

Orange The system isperforming self-checkduring startup.

Blinking green The system is operatingproperly.

Red After registering, thesystem does not operateproperly, or a poweralarm, fan alarm, ortemperature alarm isgenerated.

4 Modeindicator

- Off The service interfaceindicator is in the defaultmode (STAT).

Green The service interfaceindicator indicates theinterface speed. After 45seconds, the serviceinterface indicatorautomatically restores tooff.

Red The service interfaceindicator indicates thestack ID. After 45seconds, the serviceinterface indicatorautomatically restores tooff.

Figure 6-2 S5328C-EI indicators

2 3

5

14

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Table 6-2 Description of S5328C-EII indicators

No. Indicator Identifier Status Description

1 Powerindicator

PWR1 Off The power supplyunits are not present,or the power supply isabnormal when asingle power supplyunit is used.

Green The power supply isnormal.

Red l Two power supplyunits are installedproperly, but notswitched on.

l The power supplyunits are switchedoff.

l The power supplyunits are faulty.

2 Powerindicator

PWR2 Off The power supplyunits are not present,or the power supply isabnormal when asingle power supplyunit is used.

Green The power supply isnormal.

Red l Two power supplyunits are installedproperly, but notswitched on.

l The power supplyunits are switchedoff.

l The power supplyunits are faulty.

3 System statusindicator

SYS Off The system is notoperating.

Green The system is notoperating properly oris starting.

Orange The system isperforming self-check during startup.

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No. Indicator Identifier Status Description

Blinking green The system isoperating properly.

Red After registering, thesystem does notoperate properly, or apower alarm, fanalarm, or temperaturealarm is generated.

4 Modeindicator

MODE Off The service interfaceindicator is in thedefault mode(STAT).

Green The service interfaceindicator indicates theinterface speed. After45 seconds, theservice interfaceindicatorautomatically restoresto off.

Red The service interfaceindicator indicates thestack ID. After 45seconds, the serviceinterface indicatorautomatically restoresto off.

As shown in Figure 6-1, the button marked "5" is the mode switching button. When you pressthe mode switching button once, the mode indicator turns green and the related interface indicatorenters the speed state. When you press the mode switching button for a second time, the modeindicator turns red and the related interface indicator represents the stack status. When you pressthe mode switching button for a third time, the mode indicator restores to the default state (off).If you do not press the mode switching button within 45 seconds, the mode indicatorautomatically restores to off. The following table describes the meanings of indicators.

Table 6-3 Description of indicators in different modes

Display Mode Status Description

STAT Off The interface is not connected orhas been shut down.

Green The interface is connected.

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Display Mode Status Description

Blinking green The interface is sending orreceiving data.

Speed Off The interface is not connected orhas been shut down.

Green The interface speed is 10/100Mbit/s.

Blinking green The interface speed is 1000 Mbit/s.

Stack Off The stack ID of the memberswitch is not the number of theinterface in the off state.

Green The device is a not a commandswitch:l If the indicator of an interface

is always on, the number of thisinterface is the stack ID of thedevice.

l If the first nine interfaceindicators of the device arealways on, the stack ID of thedevice is 0.

Blinking green The device is a command switch:l If the indicator of an interface

blinks, the number of thisinterface is the stack ID of thedevice.

l If the first nine interfaceindicators of the device blink,the stack ID of the device is 0.

Indicators of a PoE S5300S5328C-PWR-SI is a PoE switch.

Figure 6-3 S5328C-PWR-SI indicators

2

3

4

5

1

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Table 6-4 Description of S5328C-PWR-SI indicators

No. Indicator Identifier Status Description

1 Powerindicator

PWR1 Off The power supplyunits are not present,or the power supply isabnormal when asingle power supplyunit is used.

Green The power supply isnormal.

Red l Two powersupply units areinstalled properly,but not switchedon.

l The power supplyunits are switchedoff.

l The card powerand PoE powerare abnormal.

Orange If a single powersupply unit isinstalled, the PoEpower is out of range.If two power supplyunits are installed, thecard power or PoEpower is out of range.

2 Powerindicator

PWR2 Off The power supplyunits are not present,or the power supply isabnormal when asingle power supplyunit is used.

Green The power supply isnormal.

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No. Indicator Identifier Status Description

Red l Two powersupply units areinstalled properly,but not switchedon.

l The power supplyunits are switchedoff.

l The card powerand PoE powerare abnormal.

Orange If a single powersupply unit isinstalled, the PoEpower is out of range.If two power supplyunits are installed, thecard power or PoEpower is out of range.

3 System statusindicator

SYS Off The system is notoperating.

Green The system is notoperating properly oris starting.

Orange The system isperforming self-check during startup.

Blinking green The system isoperating properly.

Red After registering, thesystem does notoperate properly, or apower alarm, fanalarm, or temperaturealarm is generated.

4 Modeindicator

- Off The service interfaceindicator is in thedefault mode(STAT).

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No. Indicator Identifier Status Description

Green The service interfaceindicator indicatesthe interface speed.After 45 seconds, theservice interfaceindicatorautomaticallyrestores to off.

Orange The service interfaceindicator indicatesthe PoE status. After45 seconds, theservice interfaceindicatorautomaticallyrestores to off.

Red The service interfaceindicator indicatesthe stack ID. After 45seconds, the serviceinterface indicatorautomaticallyrestores to off.

As shown in Figure 6-3, the button marked "5" is the mode switching button. On an S5300, youcan press the mode switching button to switch the display modes of interface indicators. Thestatus of a mode indicator represents the display mode of the related interface indicator. Forexample, the mode indicator of S5328C-PWR-SI is off and the interface indicators are in STATstate by default. When you press the mode switching button once, the mode indicator turns greenand the related interface indicator enters the speed state. When you press the mode switchingbutton for a second time, the mode indicator turns orange and the related interface indicatorrepresents the PoE power status. When you press the mode switching button for a third time,the mode indicator turns red and the related interface indicator represents the stack status. Whenyou press the mode switching button for a fourth time, the mode indicator restores to the defaultstate (off). If you do not press the mode switching button within 45 seconds, the mode indicatorautomatically restores to off.

The following table describes the meanings of indicators.

Table 6-5 Description of indicators in different modes

Display Mode Status Description

STAT Off The interface is not connected orhas been shut down.

Green The interface is connected.

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Display Mode Status Description

Blinking green The interface is sending orreceiving data.

Speed Off The interface is not connected orhas been shut down.

Green The interface speed is 10/100Mbit/s.

Blinking green The interface speed is 1000 Mbit/s.

PoE Off The interface does not provideremote power.

Green The interface is providing remotepower.

Blinking green l The power of the powereddevice (PD) exceeds the powersupply capability of the port orexceeds the threshold.

Stack Off The stack ID of the memberswitch is not the number of theinterface in the off state.

Green The device is a not a commandswitch:l If the indicator of an interface

is always on, the number of thisinterface is the stack ID of thedevice.

l If the first nine interfaceindicators of the device arealways on, the stack ID of thedevice is 0.

Blinking green The device is a command switch:l If the indicator of an interface

blinks, the number of thisinterface is the stack ID of thedevice.

l If the first nine interfaceindicators of the device blink,the stack ID of the device is 0.

6.2 Fan IndicatorsThis section describes the fan indicators.

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Table 6-6 describes the fan indicators.

Table 6-6 Fan indicator description

Name Color Description

STATUS Blinking green(1 Hz)

The fan module is operating properly.

Blinking red (1Hz)

The fan module is faulty.

6.3 Power IndicatorsThis section describes the power indicators.

Non-PoE Power IndicatorsThe non-PoE power indicators are displayed on the panel of the power supply unit through thelamp guide. For the indicator description, see Table 6-7, Table 6-8.

NOTEIf a switch does not have a power supply unit, see section 6.1 Indicators on the Front Panel for the PWRindicator description.

Table 6-7 Description of the 150 W DC power indicators

Name Status Description

STATUS Off l The input power is out ofrange, for example, noDC input power, DCinput overvoltage, andDC input undervoltage.

l The output power is out ofrange, for example,undervoltage orovertemperature occurs.

Green The DC input power is withinrange.

Blinking green The output power is out ofrange, for example,overvoltage, overcurrent, orshort circuit occurs.

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Table 6-8 Description of the 150 W AC power indicators

Name Status Description

STATUS Off l The input power is out ofrange, for example, noAC input power, ACinput overvoltage, andAC input undervoltage.

l The output power is out ofrange, for example,undervoltage orovertemperature occurs.

Green The AC input power is withinrange.

Blinking green The output power is out ofrange, for example,overvoltage, overcurrent, orshort circuit occurs.

AC PoE Power IndicatorsTable 6-9 describes the AC PoE power indicators.

Table 6-9 Description of the AC PoE power indicators

Name Status Description

INPUT Green The input power is withinrange.

Red The input power is out ofrange, for example:l Undervoltagel Overvoltage

Off The power cable is loose orno input AC power isprovided.

OUTPUT Green The AC output power iswithin range.

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Name Status Description

Red The output power is out ofrange, for example:l Abnormal power fan

operationl Output overvoltagel Output overcurrentl Short circuitl Overtemperature

Off The power cable is loose orno input AC power isprovided.

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7 List of Optical Modules

About This Chapter

This section describes the attributes of optical modules supported by the S5300.

7.1 SFP Optical Module (FE) AttributesThis section describes the attributes of an SFP optical module (FE).

7.2 ESFP Optical Module (FE) AttributesThis section describes the attributes of an ESFP optical module (FE).

7.3 ESFP Optical Module (GE) AttributesThis section describes the attributes of an ESFP optical module (GE).

7.4 ESFP CWDM-SFP Optical ModuleThis section describes the attributes of an ESFP CWDM-SFP optical module.

7.5 XFP Optical Module (10GE) AttributesThis section describes the attributes of an XFP optical module (10GE).

7.6 SFP+ Optical Module (10GE) AttributesThis section describes the attributes of an SFP+ optical module (10GE).

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7.1 SFP Optical Module (FE) AttributesThis section describes the attributes of an SFP optical module (FE).

Table 7-1 SFP optical module (FE) attributes

Item Description

Transmissiondistance

2 km

Centerwavelength

1310 nm

Transmittingpower

-19.0 dBm to -14.0 dBm

Receiversensitivity

-30.0 dBm

Overload power -14.0 dBm

Extinction ratio 10 dB

Connector type LC

Fiber type Multi-mode

NOTEThe SFP optical module (FE) is applicable to only the 100M SFP optical interfaces or 100M/1000M SFPoptical interfaces.

7.2 ESFP Optical Module (FE) AttributesThis section describes the attributes of an ESFP optical module (FE).

Table 7-2 ESFP optical module (FE) attributes

Item Description

Transmissiondistance

15 km 15 km(single-modebidirectionalfiber)

15 km(single-modebidirectionalfiber)

40 km 80 km

Centerwavelength

1310 nm Tx: 1310 nmRx: 1550 nm

Tx: 1550 nmRx: 1310 nm

1310 nm 1550 nm

Transmittingpower

-15.0 dBm to-8.0 dBm

-15.0 dBm to-8.0 dBm

-15.0 dBm to-8.0 dBm

-5.0 dBm to0 dBm

-5.0 dBm to0 dBm

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Item Description

Receiversensitivity

-31.0 dBm -32.0 dBm -32.0 dBm -34.0 dBm -34.0 dBm

Overloadpower

-8.0 dBm -8.0 dBm -8.0 dBm -10.0 dBm -10.0 dBm

Extinctionratio

8.2 dB 8.5 dB 8.5 dB 10.0 dB 10.0 dB

Connectortype

LC LC/PC LC/PC LC LC

Fiber type Single-mode

NOTEThe ESFP optical module (FE) is applicable to only the 100M SFP optical interfaces or 100M/1000M SFPoptical interfaces.

7.3 ESFP Optical Module (GE) AttributesThis section describes the attributes of an ESFP optical module (GE).

Table 7-3 ESFP optical module (GE) attributes

Item Description

Transmissiondistance

0.5 km 10 km 10 km(single-modebidirectionalfiber)

10 km(single-modebidirectionalfiber)

40 km 40 km 80 km 100 km

Centerwavelength

850 nm 1310nm

Tx:1310nmRx:1490nm

Tx:1490nmRx:1310nm

1550nm

1310nm

1550nm

1550nm

Transmittingpower

-9.5dBm to-2.5dBm

-9.0dBm to-3.0dBm

-9.0dBm to-3.0dBm

-9.0dBm to-3.0dBm

-5.0dBm to0 dBm

-5.0dBm to0 dBm

-2.0dBm to5.0dBm

0 dBmto 5.0dBm

Receiversensitivity

-17.0dBm

-20.0dBm

-19.5dBm

-19.5dBm

-22.0dBm

-23.0dBm

-22.0dBm

-30.0dBm

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Item Description

Overload power

0 dBm -3.0dBm

-3.0dBm

-3.0dBm

-3.0dBm

-3.0dBm

-3.0dBm

-9.0dBm

Extinction ratio

9.0 dB 9.0 dB 6.0 dB 6.0 dB 8.5 dB 9.0 dB 9.0 dB 8.0 dB

Connector type

LC

Fibertype

Multi-mode

Single-mode

NOTEThe ESFP optical module (GE) is applicable to only the 1000M SFP optical interfaces or 100M/1000MSFP optical interfaces.

7.4 ESFP CWDM-SFP Optical ModuleThis section describes the attributes of an ESFP CWDM-SFP optical module.

Table 7-4 ESFP CWDM-SFP optical module attributes

Item Description

Transmissiondistance

80 km

Centerwavelength

1471nm

1491nm

1511nm

1531nm

1551nm

1571nm

1591nm

1611nm

Transmittingpower

0 dBm to 5.0 dBm

Receiversensitivity

-28.0 dBm

Overload power

-9.0 dBm

Extinction ratio

8.5 dB

Connector type

LC

Fibertype

Single-mode

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NOTEThe ESFP CWDM-SFP optical module is applicable to only the 100M SFP optical interfaces or 1000MSFP optical interfaces or 100M/1000M SFP optical interfaces

7.5 XFP Optical Module (10GE) AttributesThis section describes the attributes of an XFP optical module (10GE).

Table 7-5 XFP optical module (10GE) attributes

Item Description

Transmissiondistance

0.3 km 10 km 40 km 80 km

Centerwavelength

850 nm 1310 nm 1550 nm 1550 nm

Transmittingpower

-7.3 dBm to -1.0dBm

-6.0 dBm to -1.0dBm

-1.0 dBm to 2.0dBm

0 dBm to 4.0dBm

Receiversensitivity

-7.5 dBm -14.4 dBm -15.0 dBm -24.0 dBm

Overload power -1.0 dBm 0.5 dBm -1.0 dBm -7.0 dBm

Extinction ratio 3.0 dB 6.0 dB 8.2 dB 9.0 dB

Connector type LC

Fiber type Multi-mode Single-mode

7.6 SFP+ Optical Module (10GE) AttributesThis section describes the attributes of an SFP+ optical module (10GE).

Table 7-6 SFP+ optical module (10GE) attributes

Item Description

Transmission distance 0.3 km 10 km 40 km

Center wavelength 850 nm 1310 nm 1550 nm

Transmitting power -7.3 dBm to -1.0dBm

-8.2 dBm to 0.5 dBm -4.7 dBm to 4.0 dBm

Receiver sensitivity -11.1 dBm -12.6 dBm -14.1 dBm

Overload power -1.0 dBm 0.5 dBm -1.0 dBm

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Item Description

Extinction ratio 3.0 dB 3.5 dB

Connector type LC

Fiber type Multi-mode Single-mode

NOTEThe SFP+ optical modules (10GE) are applicable to only 10G SFP+ optical interfaces.

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