UNIVERGE SV8300. Configuration Guide Series R8.0. ISSUE 8 December, 2012 NEC Product Management NEC Corporation of America

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1 8300 Series R8.0 ISSUE 8 NEC Product Management NEC Corporation of America

2 LIABILITY DISCLAIMER NEC Corporation of America reserves the right to change the specifications, functions, or features, at any time, without notice. NEC Corporation of America has prepared this document for use by its employees and customers. The information contained herein is the property of NEC Corporation of America and shall not be reproduced without prior written approval from NEC Corporation of America The UNIVERGE SV8300 has been developed to provide information on the UNIVERGE SV8300. The information provided has been compiled from a variety of available documentation and has been consolidated into a single manual. Information concerning questions not covered in this guide, corrections and/or comments are most welcome and should be sent to: NEC Corporation of America UNIVERGE SV8300 Product Management 6555 North State Highway 161 Irving, TX Copyright 2012 NEC Corporation of America Printed in the U.S.A

3 UNIVERGE SV8300 TABLE OF CONTENTS 1. INTRODUCTION... 4 Highlights of the SV8300: SYSTEM CONFIGURATION System Configuration CHASSIS AND BATTERY BOX U Chassis U CP Chassis (Dual CPU Chassis) U Chassis Battery Box CIRCUIT CARDS General Common Control Blades Line/Trunk and Application Blades INSTALLATION TYPE Floor Mounting Installation Wall Mounting Installation inch Rack Mounting Installation Desktop Mounting Installation Floor Mounting / Desktop Mounting Installation with Stand CABLING Inter-Chassis Connection CSI Synchronization Cable Connection AC Cord Connection Battery Cable Connection Desk Console Connection PC Pro Connection SMDR / Hotel Printer / MCI /PMS Connection Alarm Display Connection TAS Equipment Connection External Paging Connection External Music Source Connection IP Connection LICENSE SYSTEM CAPACITY Traffic Capacity System Port Capacity RELIABILITY AND AVAILABILITY Mean Time Between Failures (MTBF) Appendix 1: Cable Length of Terminals CONTENT Page i

4 LIST OF FIGURES Page Figure 1-1 Simplified View of SV8300 System Connectivity... 4 Figure 1-2 SV8300 CPU Blade Configuration... 6 Figure 1-3 SV8300 Dual CPU System... 7 Figure 1-4 SV8300 Failover Mode... 8 Figure 2-1 Example of System Configuration (IP-oriented System)... 9 Figure 2-2 Example of System Configuration (TDM-oriented System) Figure 3-1 1U Chassis (Front View) Figure 3-2 1U Chassis (Rear View) Figure 3-3 2U CP Chassis (Front View) Figure 3-4 2U CP Chassis (Rear View) Figure 3-5 2U Chassis (Front View) Figure 3-6 2U Chassis (Rear View) Figure 4-1 Location of Common Control Blades (1U Chassis) Figure 4-2 Location of Common Control Blades (2U CP Chassis) Figure 4-3 Location of Legacy Line/Trunk and Application Blades (2U Chassis) Figure 5-1 Floor Mounting Installation Figure 5-2 Wall Mounting Installation Figure inch Rack Mounting Installation Figure 5-4 Desktop Mounting Installation Figure 5-5 Floor Mounting / Desktop Mounting Installation with Stand Figure 6-1 Inter-Chassis Connection Figure 6-2 CSI Synchronization Cable Connection Figure 6-3 CSI Synchronization Cable Connection Figure 6-4 AC Cord Connection Figure 6-5 Built-in Cable Connection Figure 6-6 External Battery Connection (45 minutes backup) Figure 6-7 External Battery Connection (3 hours backup) Figure 6-8 External Battery Connection w/o Battery Box Figure 6-9 Desk Console Connection Figure 6-10 PC Pro Direct Connection Figure 6-11 PC Pro Remote Connection (via internal modem of PZ-VM21) Figure 6-12 PC Pro Remote Connection (via external modem) Figure 6-13 SMDR / Hotel Printer / MCI Direct Connection Figure 6-14 SMDR / MCI Connection (via external modem) Figure 6-15 Alarm Display Connection Figure 6-16 TAS Equipment Connection Figure 6-17 External Paging Connection Figure 6-18 External Music Source Connection - Built-in MOH Port Figure 6-19 External Music Source Connection - Paging Adapter Figure 6-20 IP Connection (IP System or Multi-UNIT configuration) Figure 6-21 IP Connection (TDM System or 1-UNIT configuration) Figure 6-22 Internal Chassis Connection (2U CP Chassis) Figure 6-23 Failover CPU Configuration Figure 6-24 Normal Mode Operation (Failover CPU) Figure 6-25 Failover Mode Operation (Failover CPU) CONTENT Page ii

5 LIST OF TABLES Page Table 3-1 Specifications of 1U Chassis Table 3-2 Chassis and its Related Equipment Table 3-3 Specifications of 2U CP Chassis Table 3-4 2U CP Chassis and its Related Equipment Table 3-5 Specifications of 2U Chassis Table 3-6 Chassis and its Related Equipment Table 3-7 Specifications of Battery Box Table 3-8 Battery Box and its Related Equipment Table 4-1 Common Control Boards Table 4-2 Legacy Line/Trunk and Application Blades Table 4-2 Legacy Line/Trunk and Application Blades Table 4-3 Board Power Factor Table 4-4 Terminal Power Factor Table 4-5 VoIP-DB Channels Required in Each Call Connection Table 4-6 Calculation Method of VoIP-DB (Recommended) Table 4-7 SIP Converter Channels Required in Each Call Connection Table 5-1 Hardware for Floor Mounting Installation Table 5-2 Hardware for Wall Mounting Installation Table 5-3 Hardware for 19-inch Rack Mounting Installation Table 5-4 Hardware for Desktop Mounting Installation Table 5-5 Hardware for Flooring Mount / Desktop Mounting Installation with Stand Table 6-1 CSI Synchronization Cable Table 6-2 AC Cord Connection Table 6-3 Built-in Battery Cable Table 6-4 External Battery Connection w/o Battery Box Table 6-5 Battery Capacity of External Battery w/o Battery Box Table 6-6 PC Pro Connection Cable Table 6-7 PC Pro Remote Connection Cable (via external modem) Table 6-8 SMDR / Hotel Printer / MCI Direct Connection Cable Table 6-9 SMDR / MCI Connection Cable (via external modem) Table 6-10 NIC Port Setting by Application Table 6-11 Network Requirements for inter-unit/remote-unit connections Table 7-1 License Table 7-2: Required Licenses Table 7-3: Other Required Licenses Table 7-4 Required System Port Capacity Licenses Table 8-1 MTBF, FIT, and Maximum Power Consumption CONTENT Page iii

6 1. INTRODUCTION SV8300 is a full-featured IP based communications system providing a rich feature set of existing NEAX2000 IPS, with pure Voice over IP (VoIP) communications, across corporate Local and Wide Area Networks (LAN and WAN). DT700 series telephones are designed to provide a converged infrastructure at the desktop, with a 10/100BASE-TX connection to the LAN and built-in hub for a PC connection to the telephone itself. The SV8300 can provide peer-to-peer connections between DT700 series telephones with voice compression, offering existing Dterm IP telephone features with enhanced user interface. On the WAN side, the system can provide peer-to-peer connections over IP networks with the voice compression, on a CCIS basis (CCIS over IP) or Remote UNIT (Remote UNIT over IP). Besides, the SV8300 can provide legacy line/trunk interfaces to support the existing Time Division Multiplexing (TDM) based infrastructure, such as analog telephones, digital telephones (DT300 series), analog networks, and digital networks (T1, ISDN etc.). The legacy line/trunk blades can be accommodated in 2U Chassis. At maximum configuration, the system can provide 1,536 ports in standalone configuration, 2,048 ports in Remote UNIT network configuration. Communications between legacy stations / trunks and IP stations / networks are made via VoIP-DB, which converts packet-based voice data to TDM-based voice data, and vice versa. Both peer-to-peer connections and TDM-based connections are controlled by CPU blade. The CPU incorporates a built-in Device Registration Server (DRS) and a single interface point of IP connection to IP telephone, PC Pro, and OAI / ACD servers. SLT DT300 series SV8300 (Main Site) Trunk PSTN SV8300 (Remote Site) PCPro (via RS-232C) IP Network SW-HUB Router WLAN Controller / AP Standard SIP Terminal DT700 series D term SP30 / SP350 PCPro (via LAN) OAI Server DT700 series Remote UNIT over IP with Survivability WiFi Handset MH240 D term IP (series i) DT700 series PC Figure 1-1 Simplified View of SV8300 System Connectivity 1. INTRODUCTION Page 4

7 Highlights of the SV8300: Pure IP System capable TDM configuration The SV8300 supports both pure IP switching (peer-to-peer connections) and Time Division Switching. The pure IP switching is provided for communications between IP stations and for CCIS / Remote UNIT connections with other SV8300 (CCIS over IP or Remote UNIT over IP) / SV8500 (CCIS over IP). On the other hand, the TDM switching is provided for communications between legacy stations/trunks. Connection between IP network and legacy network is made via VoIP-DB on the CPU blade, which converts packet-based voice data to TDM-based voice data, and vice versa. Powerful CPU Blade with Built-in Functionalities The CPU blade of SV8300 is a heart of pure IP connections and TDM-based connections. The CPU blade employs an Intel Celeron M 600MHz Processor. With this processing power and DSP technology, it integrates the following functions, which are provided by additional cards in the previous NEAX2000 IPS. These functions are managed with software license. - DTMF receivers - Caller ID receivers - Caller ID senders - MF / MFC senders / receivers - Conference trunks - - VM-DB (Note 1) VoIP-DB DB = Daughter Board In addition, by means of today's advanced LSI technology, size of the CPU Blade is minimized, Maintenance port (Fast Ethernet) is built in, and VoIP-DB which has VoIP port (Gigabit Ethernet) is mountable without additional slots in the Chassis. The Maintenance port is linked with LAN / WAN for inter-work with PC Pro, OAI, SMDR, PMS, SNMP, and the VoIP port is linked with LAN / WAN for control signaling and voice signaling (RTP) for IP stations, PCPro, OAI, SMDR, PMS, SNMP, etc. Note 1: The following features are available with the optional board (VM-21 DB). - Modem (V.34) - Speech Synthesis (English/Japanese/Korean/Chinese) (SV83 VOICE DATA CF (SS/VRS) required) - VRS (120 sec. x 16 messages) (SV83 VOICE DATA CF (SS/VRS) required) 1. INTRODUCTION Page 5

8 Optional VoIPDB Physical port not required Built-in functions: DTMF receivers DTMF senders Caller ID receivers Caller ID senders MF/MFC senders /receivers Conference trunk Main Engine Board DSP TDSW DTMF Sender DTMF Receiver DTG CID Receiver CID Sender MF Receiver MF Sender CFT Optional Board VoIP DSP NIC 2 CPU Optional Board CF Lower Layer BUS Control SW NIC 1 Serial USB RTP (VoIP) Signaling PC Pro, etc Gigabit Ethernet 10/100M Ethernet PC Pro, Printer, SMDR etc USB port (Not used) Optional Board (VMDB) (Note) Figure 1-2 SV8300 CPU Blade Configuration Note 1: The following features are available with the optional board (VM-21 DB). - Modem (V.34) - Speech Synthesis (English/Japanese/Korean/Chinese) (SV83 VOICE DATA CF (SS/VRS) required) - VRS (120 sec. x 16 messages) (SV83 VOICE DATA CF (SS/VRS) required) High Density Legacy Line/Trunk Blades Major legacy line/trunk blades used in SV8300 are provided with main board + daughter board architecture. When the main board is only mounted in an initial supply, line/trunk interfaces can be easily expanded by adding the daughter board. The maximum number of circuits for the line/trunk blades is 16/8 circuits with daughter board, respectively. This allows the physical system size to be compact. Universal Blade Slot (2U Chassis) 2U Chassis is used for legacy line/trunk blades. One 2U Chassis provides 6 universal blade slots. Also, these blade slots can be used for application blades without complicated limitation. Large System Capacity SV8300 provides maximum 2,048 ports in standalone configuration or Remote UNIT network configuration 1,536 ports for extension lines (DT700 series, DT300 series, SLT etc.) and 512 ports for trunks (SIP Trunk, ISDN, COT etc.). 1. INTRODUCTION Page 6

9 Easy Installation (Front Cabling and Enhanced O&M Tool) Cable connectors (RJ-45 or RJ-61) are located on the front panel of each chassis and blade. It increases efficiency of the cabling work. Also, PC Pro provides enhanced user interface. Quick Setup tool provides easy setup (system data programming) for a basic system configuration in shorter time. Remote UNIT over IP with Survivability SV8300 can provide Remote UNIT configuration, main site, and remote site(s) through IP network. The main site controls call processing and service features access for station users located in both main site and remote site(s). When the remote site cannot be connected with main site due to IP network failure or main site failure, the remote site initializes the system and re-starts operation by its own CPU (survival mode). In the survival mode, almost service features are provided to the station users accommodated in the remote site. When IP network / main site are recovered, the remote site can be restored to normal mode with system initialization by manual operation or automatically (Selectable by system data setting). Dual CPU System SV8300 can provide a Dual CPU System with two CPU blades. One CPU runs as active and another runs as standby. The CPU with redundancy enables the SV8300 to uplift the system reliability. The system employs cold standby system. When a failure is detected in the active CPU, standby CPU restarts initialization and changes into active CPU. This feature is supported in UNIT01 to UNIT04. Unit01 Unit02 Unit03 Unit04 Dual CPU (Act/Standby) Unit05 50 (Remote Unit) IP NW Figure 1-3 SV8300 Dual CPU System 1. INTRODUCTION Page 7

10 Failover Mode Support SV8300 supports Failover mode with Secondary UNIT that consisted of 1U Chassis. A Secondary UNIT is prepared as a standby unit in Remote UNIT over IP system, and the Secondary UNIT automatically takes over UNIT01 operation in the event of IP network disconnection/cpu or power failure in UNIT01. This feature enables the system to continue the operation as a single system. This feature employs cold standby processing that will reset the system at the changeover from Primary UNIT (Main UNIT) to Secondary UNIT. Figure 1-4 SV8300 Failover Mode 1. INTRODUCTION Page 8

11 2. SYSTEM CONFIGURATION 2.1 System Configuration SV8300 consists of 1U/2U CP Chassis and 2U Chassis depending on the system configuration. 1U/2U CP Chassis mounts a CPU blade, BUS Interface Blade, Power Supply Unit (PSU), and Cooling FAN. 2U Chassis mounts various Legacy Line/Trunk Blades, Application Blades, BUS Interface Blade, PSU, and Cooling FAN. The CPU blade in 1U/2U CP Chassis can control maximum three (3) 2U Chassis; the configuration is called UNIT. And SV8300 can configure maximum four (4) -UNIT. Figure 2-1 and Figure 2-2 show examples of maximum system configuration for IP-oriented system and TDM-oriented system, respectively. Max 1024 IP Terminals for Single CPU Configuration Note: Max 1536 IP Terminals in Multi CPU configuration Figure 2-1 Example of System Configuration (IP-oriented System) 2. SYSTEM CONFIGURATION Page 9

12 Figure 2-2 Example of System Configuration (TDM-oriented System) 2. SYSTEM CONFIGURATION Page 10

13 3. CHASSIS AND BATTERY BOX There are three types of Chassis, 1U Chassis, 2U CP Chassis, and 2U Chassis. The 1U Chassis mounts CPU blade, BUS Interface Blade, Power Supply Unit (PSU), Cooling FAN, and optional short-term backup batteries. The 1U Chassis is used on single mode CPU configuration. The 2U CP Chassis (Dual CPU Chassis) mounts the CPU blades, BUS Interface Blade, Power Supply Unit (PSU), Cooling FAN, and optional short-term backup batteries. The 2U CP Chassis is used in UNIT on Dual CPU configuration. The 2U Chassis has six (6) universal blade slots for Legacy Line/Trunk Blades (Analog Line Circuit (LC), Digital Line Circuit (DLC), Central Office Trunk (COT), ISDN PRI Trunk (PRT), etc.) and Application Blades. It also houses BUS Interface Blade, PSU, Cooling FAN, and optional short-term backup batteries. Instead of the built-in batteries, optional Battery Box is available for long-term backup batteries U Chassis Figure 3-1 1U Chassis (Front View) Built-in Batteries (inside of cover) FAN unit (inside of cover) BATT Connector (inside of cover) AC Connector Frame Ground (FG) Terminal Figure 3-2 1U Chassis (Rear View) 3. CHASSIS AND BATTERY BOX Page 11

14 Table 3-1 Specifications of 1U Chassis Item Dimensions (W x D x H) Weight Input Power Slot Operating Conditions Cooling Specification 430mm (16.9 inch) x 400mm (15.7 inch) x 43mm (1.7 inch) Approx. 5.0 Kg (176.4 oz) (when all slots occupied, however, no built-in battery included) AC 100V 240V (Automatically adjusted) BUS Slot + CPU Slots Ambient Temperature: 0 40 degree centigrade (When the ambient temperature will exceed the value during the holiday or the night, an air conditioner is required.) Relative Humidity: 20-90% (non-condensing) Cooling by FAN In addition, short-term (about 10 minutes) backup battery can be mounted in each Chassis. 2 x 12V-0.8AH batteries are available for 1U Chassis. Table 3-2 Chassis and its Related Equipment Description CHS1U-AC(US) PZ-PW146 (1U) AC Cord (UJ) CHS1U Fan Box Set CHS Blank Slot Cover Kit (BUS) CHS1U INT BATT KIT CHS1U BATT MTG KIT-A CHS1U BATT CABLE INT CHS1U BATT SET Feature CHS1U-AC(US) includes: - 19 inch 1U Chassis - PZ-PW146 (1U) Power Supply - AC Cord (UJ) - CHS Blank Slot Cover for BUS (PZ-BS10) - IC, FCC, Manufacturing Labels Power Supply Unit for 1U Chassis AC Power Cable for US Fan box set for 1U Chassis Blank Slot Cover CHS1U INT BATT KIT includes: - CHS1U BATT MTG KIT-A - CHS1U BATT CA INT - CHS1U BATT SET Battery Mounting Unit for 1U Chassis Internal Battery cable for 1U chassis Internal Battery Set: (Qty 2) 12V 0.8Ah SLA Battery with Typo/Amp connector 3. CHASSIS AND BATTERY BOX Page 12

15 3.2 2U CP Chassis (Dual CPU Chassis) Slot for #0 CPU Slot for #1 CPU SLOT SLOT Slot for BUS Interface Blade Connection with 2U Chassis Power Supply Unit (PSU) Figure 3-3 2U CP Chassis (Front View) Built-in Batteries (inside of cover) FAN unit (inside of cover) BATT Connector (inside of cover) AC Connector Frame Ground (FG) Terminal Figure 3-4 2U CP Chassis (Rear View) Table 3-3 Specifications of 2U CP Chassis Item Dimensions (W x D x H) Weight Input Power Slot Operating Conditions Cooling Specification 430mm (16.9 inch) x 400mm (15.7 inch) x 88mm (3.5 inch) Approx. 7.4 Kg (261.0 oz) (when all slots occupied, however, no built-in battery included) AC 100V 240 V (Automatically adjusted) BUS Slot + 2 CPU Slots Ambient Temperature: 0 40 degree centigrade (When the ambient temperature will exceed the value during the holiday or the night, an air conditioner is required.) Relative Humidity: 20-90% (non-condensing) Cooling by FAN 3. CHASSIS AND BATTERY BOX Page 13

16 In addition, short-term (about 10 minutes) backup batteries can be mounted in a Chassis. 4 x 12V-0.8AH batteries are available for the 2U CP Chassis. Table 3-4 2U CP Chassis and its Related Equipment SN1764 CYGME Description CHS BLANK SLOT COVER KIT(BUS) CHS2U(D) FAN BOX SET MPS7101 NP battery (GS Yuasa) or equivalent CHS2U(D) BATT MTG KIT CHS2U(D) INT BATT SET Feature 2U CP Chassis (BWB / PSU / FAN included) Blank slot cover for BUS slot FAN Unit for 2U CP Chassis (for Maintenance) Power Supply Unit (PSU) for 2U CP Chassis / 2U Chassis (for Maintenance) Short-term built-in battery for 2U CP Chassis (Provided locally) 12V-0.8AH JST SVH-12T-P1.1 connectors 4 x NP batteries required per 2U CP Chassis Short-term built-in battery mount kit for 2U CP Chassis Including; 1 x Battery mount kit w/ JST connector board 1 x DUAL CPU BATT CA INT-A Battery Cable (350mm (1.1ft.)) Internal Battery Set includes: Battery Lead Acid, 12V 0.8Ah JST conn - (Qty 2) CHSGW Small BATT Set LBR CHSGW Small BATT Set OVR Box 5.50W x 4.50D x 5.0H single wall Foam Cup 5.5W x 4.5D x 1.0H (Qty 2) - Foam Insert 0.8 ah battery 3. CHASSIS AND BATTERY BOX Page 14

17 3.3 2U Chassis Figure 3-5 2U Chassis (Front View) Built-in Batteries (inside of cover) FAN unit (inside of cover) BATT Connector (inside of cover) Figure 3-6 2U Chassis (Rear View) AC Connector Frame Ground (FG) Terminal Table 3-5 Specifications of 2U Chassis Item Dimensions (W x D x H) Weight Input Power Slot Operating Conditions Cooling Specification 430mm (16.0 inch) x 400mm (15.7 inch) x 88mm (3.5 inch) Approx. 8.2 Kg (when all slots occupied, however, no built-in battery included) AC 100V 240V (Automatically adjusted) BUS Slot + 6 Option Slots Ambient Temperature: 0 40 centigrade (When the ambient temperature will exceed the value during the holiday or the night, an air conditioner is required.) Relative Humidity: 20-90% (non-condensing) Cooling by FAN 3. CHASSIS AND BATTERY BOX Page 15

18 In addition, short-term (about 10 minutes) backup batteries can be mounted in each Chassis. 2 x 12V-2.3AH batteries are available for 2U Chassis. Table 3-6 Chassis and its Related Equipment CHS2U-US MPS7101 AC Cord (UJ) Description CHS2U Fan Box Set CHS2U Blank Slot Cover Kit CHS Blank Slot Cover Kit (BUS) CHS2U INT BATT KIT CHS2U BATT MTG KIT CHS2U BATT CA INT CHS2U INT BATT SET CHS1U/CHS2U EXT BATT KIT CHS LARGE BATT BOX CHS LARGE BATT SET Feature CHS2U-US includes: - 19 inch 2U chassis - MPS7101 Power Supply - AC Cord (UJ) - CHS Blank Slot Cover for BUS (PZ-BS11) - Blank Slot Cover set Power Supply for 2U/2U CP Chassis AC Power Cable for US Fan box set for 2U Chassis Blank Slot Cover Set Blank BUS Cover CHS2U INT BATT KIT includes: - CHS2U BATT MTG KIT - CHS2U BATT CA INT - CHS2U INT BATT SET Battery Mounting Unit for 2U chassis Internal Battery cable for 2U chassis Internal Battery Set: (Qty 2) 12V 2.3Ah SLA Battery with Faston 187 terminal CHS1U/CHS2U EXT BATT KIT includes: - CHS LARGE BATT BOX - CHS LARGE EXT BATT SET Long term battery box for CHS1U or CHS2U Chassis Long Term Battery Set: (Qty 3) 12V 7Ah SLA Battery with Faston 187 terminals 3. CHASSIS AND BATTERY BOX Page 16

19 3.4 Battery Box Instead of the short-term backup battery built-in each 1U/2U CP/2U Chassis, external Battery Box is available for long-term (45 minutes - 3 hours) backup batteries. Table 3-7 Specifications of Battery Box Item Dimensions (W x D x H) Weight Battery Tray Specification 430mm (16.8 inch) x 364mm (14.3 inch) x 132mm (5.2 inch) Approx. 10 Kg (when no battery included) 3 sets of 2 x batteries mounted Table 3-8 Battery Box and its Related Equipment Description CHS2U INT BATT SET CHS1U/CHS2U EXT BATT KIT CHS LARGE BATT BOX CHS LARGE BATT SET CHS2U(D) INT BATT SET Feature Internal Battery Set: (Qty 2) 12V 2.3Ah SLA Battery with Faston 187 terminal CHS1U/CHS2U EXT BATT KIT includes: - CHS LARGE BATT BOX - CHS LARGE EXT BATT SET Long term battery box for CHS1U or CHS2U/2U CP Chassis Long Term Battery Set: (Qty 3) 12V 7Ah SLA Battery with Faston 187 terminals Internal Battery Set includes: - Battery Lead Acid, 12V 0.8Ah JST conn - (Qty 2) - CHSGW Small BATT Set LBR - CHSGW Small BATT Set OVR - Box 5.50W x 4.50D x 5.0H single wall - Foam Cup 5.5W x 4.5D x 1.0H (Qty 2) - Foam Insert 0.8 ah battery 3. CHASSIS AND BATTERY BOX Page 17

20 4. CIRCUIT CARDS 4.1 General The SV8300 has the following three types of circuit boards. Most of the circuit boards are commonly used for the SV8300 and SV8100. Common Control Blades CPU Blade - PZ-VM21 DB - VoIP-DB BUS Interface Blade Legacy Line/Trunk Blades Analog Line Circuit (LC) Digital Line Circuit (DLC) Central Office Trunk (COT) ISDN PRI Trunk (PRT), etc. Application Blades In-skin Server Blade In-skin UMS Blade In-skin Router Blade In-skin HUB Blade, etc. 4. CIRCUIT CARDS Page 18

21 4.2 Common Control Blades Most of the Common Control Blades are mounted in 1U Chassis/2U CP Chassis as follows. 1U Chassis Maintenance Port VoIP Port (w/ VoIPDB) CF Card Slot for VMDB RS Port x 2 BUS Interface Blade (for 1U/2U CP Chassis) CPU Blade Reset Switch FAN Power Supply Unit (PSU) Built-in Batteries CPU Blade VMDB (16ch) VoIPDB (64 or 128ch) Figure 4-1 Location of Common Control Blades (1U Chassis) 4. CIRCUIT CARDS Page 19

22 2U CP Chassis Maintenance Port VoIP Port (w/ VoIPDB) CF Card Slot for VMDB RS Port x 2 Reset Switch BUS Interface Blade (for 1U/2U CP Chassis) CPU Blade (#0 CPU) CPU Blade (#1 CPU) Power Supply Unit (PSU) FAN Built-in Batteries CPU Blade VMDB (16ch) VoIPDB (64 or 128ch) Figure 4-2 Location of Common Control Blades (2U CP Chassis) Note: On Dual CPU configuration, there are the following limitations for the configuration. RS-232C ports, Relay port and EX IN / EX OUT port on either #0 CPU or #1 CPU can be used. #0 CPU and #1 CPU should be configured the same, like mounting of VoIP-DB, VMDB, and Compact Flash Card if required. There are two types of BUS Interface Blades. One is mounted in 1U Chassis/2U CP Chassis, and another is mounted in 2U Chassis. 4. CIRCUIT CARDS Page 20

23 Major specifications and functionality of the CPU Blade are shown below: Central Processor DSP: Function Intel Celeron-M DDR SDRAM Flash ROM Backup SRAM CPU Blade 600MHz 256MB 64MB 4MB Tone Generation DTMF Sender / Receiver MF / MFC Sender / Receiver Caller ID Sender / Receiver Time Switch Control Conference Trunk 3- / 4- Party Conference 16 Circuits Music On Hold 8 Melodies (Note 1) Mini Jack 1 Port for External Music Source for MOH (Note 2) Ethernet Interface Serial Interface Modem Interface 10/100 BASE-TX x 1 port (Maintenance Port) 10/100/1000 BASE-T x 1 port (VoIP Port (w/voip-db)) RS232C (RJ-45) x 2 ports (for PC Pro, SMDR, or MCI) VM-21 with V.34 Modem PLO Function Built-in SMDR (via RS-232C or LAN) Built-in MCI (via RS-232C) Built-in PMS (via RS-232C or LAN) Built-in VRS (w/o voice compression) x 8 circuits (max. 30 sec. per message) or VRS x 16 circuits (max. 120sec./message) w/ VM-21 DB and SV83 VOICE DATA CF(SS/VRS) DK x 2 circuits (relay drive only) FTP-based MP Program Download from PC Pro (on-line mode / off-line mode) DSP: Digital Signal Processor DTMF: Dual Tone Multi Frequency PLO: Phase Lock Oscillator Note 1: In case of Dterm IP (series i) / DT700 series, synthesized melody is provided built in to the phone itself. Note 2: In case of Dterm IP (series i), synthesized melody is provided built in to the phone itself. 4. CIRCUIT CARDS Page 21

24 Table 4-1 Common Control Boards Description Feature Daughter Board CC-CP01 CC-CP31 CPU blade for SV8300 Commonly used for single/dual mode CPU configuration CPU blade for SV8300 (Especially used for 1U Chassis in UNIT02-50) PZ-VM21 PZ-64IPLC-A PZ-128IPLC-A PZ-64IPLC-A PZ-128IPLC-A PZ-VM21 VMDB with V.34 Modem None SV83 VOICE DATA CF (SS/VRS) PZ-64IPLC-A PZ-128IPLC-A PZ-BS10 PZ-BS11 Compact Flash 512MB of VMDB for the following features: - Speech Synthesis feature (English, Japanese, Korean and Chinese) - VRS (120sec. x 16 messages) 64ch VoIP Daughter Board 128ch VoIP Daughter Board (Note) (These boards are available from R5 version) BUS Interface Blade for 1U Chassis BUS Interface Blade for 2U Chassis (1 x BUS cable attached) None None None Note: When the payload size is set to 10ms on PZ-128IPLC-A, only 64 VoIP channels are available 4. CIRCUIT CARDS Page 22

25 4.3 Line/Trunk and Application Blades The Legacy Line/Trunk Blades and the Application Blades are mounted in 2U Chassis. Figure 4-3 Location of Legacy Line/Trunk and Application Blades (2U Chassis) 4. CIRCUIT CARDS Page 23

26 The Table shows Legacy Line/Trunk Blades and the Application Blades available. Table 4-2 Legacy Line/Trunk and Application Blades Category Description Feature Daughter Board CD-8DLCA 8L Digital Line Circuit Blade PZ-8DLCB DLC PZ-8DLCB 8L Digital Line Circuit Daughter Board None CD-16DLCA 16L Digital Line Circuit Blade None CD-4LCA 4L Analog Line (SLT) Circuit Blade with MW and Caller ID (Note) PZ-4LCA PZ-8LCA LC CD-8LCA PZ-4LCA 8L Analog Line (SLT) Circuit Blade with MW and Caller ID (Note) 4L Analog Line (SLT) Circuit Daughter Board with MW and Caller ID (Note) PZ-4LCA PZ-8LCA None PZ-8LCA 8L Analog Line (SLT) Circuit Daughter Board with MW and Caller ID (Note) None COT CD-4COTB 4L Central Office Trunk Blade (Loop/Ground Start) with Caller ID (Bellcore) (Power failure transfer circuit x 2 included) (Note) PZ-4COTF PZ-4COTF 4L Central Office Trunk Daughter Board (Loop/Ground-start) with Caller ID (Bellcore) (Note) None BRT / ILC CD-2BRIA PZ-2BRIA 2L ISDN BRI Trunk / 2L ISDN Line Circuit Blade 2L ISDN BRI Trunk / 2L ISDN Line Circuit Daughter Board PZ-2BRIA None Note 1: MW (Message Waiting) supports High Voltage method only; Caller ID (for Single Line Telephone) supports Bellcore-FSK and ETSI-FSK. Note 2: Caller ID *from Analog Trunk supports Bellcore-FSK and ETSI-DTMF. Note 3: For the line/trunk blades capable of main board + daughter architecture, even of only the main board is mounted on the 2U Chassis, the following number of physical is forcibly assigned for the SLOT mounted. It is not changes by adding the daughter board. DLC: 16 (e.g. CD-16DLC: 16, CD-8DLCA + PZ-DLCB: 16) LC: 16 COT: 8 BRT/ILC: 8 Note 4: The preinstalled firmware should be updated to the DTI firmware by executing the blade firmware update. 4. CIRCUIT CARDS Page 24

27 The Table shows Legacy Line/Trunk Blades and the Application Blades available. Table 4-3 Legacy Line/Trunk and Application Blades Category Description Feature Daughter Board PRT / DTI / CCT Analog Trunk CD-PRTA ISDN PRI Trunk (23B+D) / T1 DTI / QSIG Trunk Blade (Note) None CD-CCTA CCIS Interface (24ch) Blade None CD-4DIOPA 4L Direct Inward Dialing Trunk / Long Line Circuit Blade None CD-4ODTA 4L E&M-2W/4W Trunk Blade None CD-RTB In-skin Router Blade None CD-ETIA 8-port in-skin HUB Blade PoE (802.3af) supported None APL CD-VM00 In-skin Server / In-skin UMS Blade None CD-PVAA Conference Bridge Blade None CD-SVRU Application Blade In-Skin UCB None Note 1: MW (Message Waiting) supports High Voltage method only; Caller ID (for Single Line Telephone) supports Bellcore-FSK and ETSI-FSK. Note 2: Caller ID *from Analog Trunk supports Bellcore-FSK and ETSI-DTMF. Note 3: For the line/trunk blades capable of main board + daughter architecture, even of only the main board is mounted on the 2U Chassis, the following number of physical is forcibly assigned for the SLOT mounted. It is not changes by adding the daughter board. DLC: 16 (e.g. CD-16DLC: 16, CD-8DLCA + PZ-DLCB: 16) LC: 16 COT: 8 BRT/ILC: 8 Note 4: The preinstalled firmware should be updated to the DTI firmware by executing the blade firmware update. 4. CIRCUIT CARDS Page 25

28 Conditions for Equipment Calculation 1. Limitation of Power Capacity There are two types of power factors, Board Power Factor and Terminal Power Factors. Each power factor has upper limit in each 2U Chassis and total has to be within the limitation. Table 4-4 Board Power Factor Board Power Factor (Total has to be 7 or less in each 2U Chassis) Blade Type Power Factor per blade In-skin Router Blade (CD-RTB) 2 In-skin HUB Blade (CD-ETIA) 2 In-skin UMS/Server Blade (CD-VM00) 2 Conference Bridge Blade (CD-PVAA) 1 Applcation Blade (CD-SVRU) 2 Table 4-5 Terminal Power Factor SLT Terminal Power Factor (Total has to be 80 or less in each 2U Chassis) Power Factor Terminal Type per Terminal Standard (-27V) 0.8 Long Line (-48V) 2 DT310 (2/6/12-button) 0.8 DT330 (12/24/32-button) 0.8 DT300 Series DT330 (DESI-less) 0.8 DT330 (12-button) w/psa 2 DT330 (12-button) w/bch 3 DSS Console 2 Analog Power Failure Adapter (PSA) 1.2 Analog Port Adapter w/ringer (APR) 2 DT300 Option Ancillary Device Adapter (ADA) 2 Bluetooth HUB Adapter (BHA) 2 Bluetooth Cordless Adapter (BCH) 2 Line Key Unit (8/12/16-button) 0 Desk Console (w/ AC Adapter 0 (Continued on next page) 4. CIRCUIT CARDS Page 26

29 DT700 Series (PoE from CD-ETIA) Terminal Power Factor (Total has to be 80 or less in each 2U Chassis) Power Factor Terminal Type per Terminal DT710 (2/6-button) 4 DT730 (12/24/32-button) 4 DT730 (DESI-less) 4 DT730 (12-button) w/psa 4 DT730G (12/24-button) 4 DT750 (32-button) 6 Ancillary Device Adapter (ADA) 2 Dterm Series i 2/4/8/16/32-button 0.8 DSS Console 1 Dterm Series i Option Analog Port Adapter w/o Ringer (APA) 1 Analog Port Adapter w/ Ringer (APR) 1 Ancillary Device Adapter (ADA) 1 ZT 4.5 Paging Adapter 2 4. CIRCUIT CARDS Page 27

30 2. VoIP daughter board (VoIP-DB) There are two types of VoIP-DBs, PZ-64IPLC-A, and PZ-128IPLC-A. The following table shows the VoIP-DB channels required in each call connection. Table 4-6 VoIP-DB Channels Required in Each Call Connection UA=UNIT A, UB=UNIT B UNIT A (A=1-50) (Note 1) TDM Line (Note 5) D term IP DT700 Series Standard SIP Terminal SIP Trunk (Note 2) P2P CCIS (Note 2) UNIT A (A=1-50) (Note 1) UNIT B (B=2-50) (Note 1) TDM Line UA: None UA: 1ch UA: 1ch UA: 1ch UA: 1ch UA: 1ch D term IP UA: 1ch UA: None UA: None UA: 2ch UA: 2ch UA: None DT700 series Standard SIP Terminal SIP Trunk (Note 2) P2P CCIS (Note 2) TDM Line (Note 5) D term IP DT700 series Standard SIP Terminal UA: 1ch UA: None (Note 4) UA: 1ch UA: 2ch UA: 2ch UA: None UA: 2ch UA: 2ch UA: 0ch/2ch (Note 3) UA: 2ch UA: None (Note 4) UA: 2ch UA: 1ch UA: 2ch UA: 2ch UA: 2ch UA: 2ch UA: 2ch UA: 1ch UA: None UA: None UA: 2ch UA: 2ch UA: None UA: 1ch UB: 1ch UA: 1ch UB: None UA: 1ch UB: None UA: 1ch UB: 2ch UA: None UB: 1ch UA: None UB: None UA: None UB: None (Note 4) UA: None UB: 2ch UA: None UB: 1ch UA: None UB: None UA: None UB: None UA: None UB: 2ch UA: 2ch UB: 1ch UA: 2ch UB: None UA: 2ch UB: None UA: 0ch/2ch UB: 0ch/2ch (Note 3) UA: 2ch UB: 1ch UA: 2ch UB: None UA: 2ch UB: None UA: 2ch UB: 2ch UA: 2ch UB: 1ch UA: None UB: None UA: None UB: None (Note 4) UA: None UB: 2ch Note 1: UNIT A is not same as UNIT B. Note 2: They are accommodated in UNIT 01 only. Note 3: Resource channel of each UNIT is different according to the connection. Call via VoIPDB : 2ch Call via Peer-to-Peer connection: 0ch Note 4: One channel of each UNIT is assigned for sending DTMF signal in each connection. Note 5: When using an External Hold Tone, voice channels of VoIPDB are used as same as TDM line. To simplify selection of the VoIP-DBs, the PZ-128IPLC-A is supplied in the system packages for the main site (UNIT 1). UNITs 2 through 50 have packages with each VoIP-DB. The following calculation method is recommended. Table 4-7 Calculation Method of VoIP-DB (Recommended) 324 ports or less (1-UNIT) TDM System --- IP (+ TDM) System PZ-128IPLC-A x 1 Standalone More than 324 ports (2-UNIT or more) PZ-128IPLC-A x 1 per UNIT Remote UNIT Network Main site PZ-128IPLC-A x 1 per UNIT Remote site PZ-64IPLC-A x 1 or PZ-128IPLC-A x 1 4. CIRCUIT CARDS Page 28

31 3. SIP Converter When Standard SIP Terminals are accommodated in SV8300, SIP Converters should be assigned to each UNIT to accommodate Standard SIP Terminals. One SIP Converter has three channels. The SIP Converters can be assigned maximum 32 per unit and maximum 128 per system. The following table shows the SIP Converter channels required in each call connection. Table 4-8 SIP Converter Channels Required in Each Call Connection UNIT A (A=1-50) (Note 1) UA=UNIT A, UB=UNIT B TDM Line D term IP DT700 series Standard SIP Terminal SIP Trunk (Note 2) P2P CCIS (Note 2) TDM Line None None None UA: 1ch None None D term IP None None None UA: 1ch None None UNIT A( A=1-50) (Note 1) DT700 series None None None UA: 1ch None None Standard SIP Terminal SIP Trunk (Note 2) UA:1ch UA: 1ch UA:1ch UA: 2ch UA: 1ch UA: 1ch None None None UA: 1ch None None P2P CCIS (Note 2) None None None UA: 1ch None None TDM Line None None None UA: 1ch None None UNIT B (B=2-50) (Note 1) D term IP None None None UA: 1ch None None DT700 series None None None UA: 1ch None None Standard SIP Terminal UB: 1ch UB:1ch UB: 1ch UA: 1ch UB: 1ch UB: 1ch UB: 1ch Note 1: UNIT A is not same as UNIT B. Note 2: They are accommodated in UNIT 01 only. 4. CIRCUIT CARDS Page 29

32 4. Limitation of Mounting Location ISDN Blade (CD-2BRIA + PZ-2BRIA / CD-PRTA) When CD-2BRIA (BRT) / CD-PRTA (PRT/DTI) blades are mounted in a main site or a standalone system, at least one of the blades has to be mounted in UNIT #1 and the remaining blades can be mounted in any Units. However, if CS Interface (CSI) blades are distributed to multiple Units, all the ISDN blades have to be mounted in UNIT #1. When unrestricted digital channels are required (e.g. G4 FAX), there are limitations as follows: For u-law systems (US): The CD-2BRIA (ILC/BRT) / CD-PRTA (PRT) blades can be mounted in any UNIT. However, - 16 Time Slots are available for the unrestricted digital channels in each 2U Chassis. (The Time Slots available for the unrestricted digital channels can be flexibly assigned in the 2U Chassis.) - Data communication using the unrestricted digital channels is available within each UNIT. (Inter-UNIT connection is not available.) For A-law systems: The CD-2BRIA (ILC/BRT) / CD-PRTA (PRT) blades can be mounted in any UNIT. However, data communication using the unrestricted digital channels is available within each UNIT. (Inter-UNIT connection is not available.) CD-CCTA (CCT) When CD-CCTA blades are mounted in a main site or standalone system, at least one of the blades has to be mounted in Unit #1 and the remaining blades can be mounted in any Unit. However, if CS Interface (CSI) blades are distributed to multiple Units, all the CD-CCTA blades have to be mounted in UNIT #1. CD-8DLCA / CD-16DLCA (DLC) When Desk Consoles are accommodated in the SV8300, the CD-8DLCA / CD-16DLCA blades for the Desk Consoles have to be mounted in the UNIT #1. 4. CIRCUIT CARDS Page 30

33 5. INSTALLATION TYPE To meet the specific needs of the customer s environment, SV8300 provides the various installation methods as follows: Floor Mounting Installation Wall Mounting Installation 19 inch Rack Mounting Installation Desktop Mounting Installation Floor Mounting / Desk Mounting Installation with Stand Note: Condition of Secondary UNIT for Failover mode SV8300 must be installed UNIT by UNIT, in case of floor mounting (w/o stand) / 19-inch rack mounting / desktop mounting, Secondary UNIT (1U Chassis) cannot be installed on the top of another UNIT. When external batteries are required, Secondary UNIT (1U Chassis) cannot be installed on the top of another UNIT. The external batteries must be installed UNIT by UNIT. 5.1 Floor Mounting Installation In Floor Mounting Installation, SV8300 has to be installed UNIT by UNIT. 1U Chassis + 2U Chassis 2U CP Chassis + 2U Chassis CHS2U JOINT BRACKET KIT 2U 2U CHS2U JOINT BRACKET KIT 2U 2U CHS BASE UNIT NEC 2U 1U CHS BASE UNIT 2U 2U CP Floor Floor Figure 5-1 Floor Mounting Installation Table 5-1 Hardware for Floor Mounting Installation Description CHS BASE UNIT CHS2U Joint Bracket Kit Floor Mount Bracket Feature Upper Joint Bracket Kit (2 x Joint Bracket) 5. INSTALLATION TYPE Page 31

34 5.2 Wall Mounting Installation SV8300 can be mounted on the wall as shown below. 1U Chassis + 2U Chassis Maximum of one 1U Chassis and one 2U Chassis can be mounted on the wall. CHS1U/2U WALL MOUNT KIT WALL 2U CP Chassis + 2U Chassis Maximum one 2U CP Chassis and one 2U Chassis can be mounted on the wall, however, they have to be mounted respectively. CHS1U/2U WALL MOUNT KIT WALL Figure 5-2 Wall Mounting Installation Table 5-2 Hardware for Wall Mounting Installation Description CHS1U/2U Wall Mount Kit Feature Wall Mount Kit (2 x Joint Bracket Included) 5. INSTALLATION TYPE Page 32

35 inch Rack Mounting Installation SV8300 can be mounted in the IEC-standard 19-inch Rack Unit by Unit. (IEC: International Electrotechnical Commission) All of Chassis configured Unit have to be installed into a 19-inch rack in series without any vacant space. 1U Chassis CHS1U RACK MOUNT KIT 2U CP Chassis / 2U Chassis CHS2U RACK MOUNT KIT Figure inch Rack Mounting Installation Table 5-3 Hardware for 19-inch Rack Mounting Installation Description CHS1U Rack Mount Kit CHS2U Rack Mount Kit Feature 19-inch Rack Mount Kit for 1U Chassis 19-inch Rack Mount Kit for 2u CP Chassis / 2U Chassis 5. INSTALLATION TYPE Page 33

36 5.4 Desktop Mounting Installation In Desktop Mounting Installation, SV8300 has to be installed Unit by Unit. 1U Chassis + 2U Chassis 2U CP Chassis + 2U Chassis CHS2U JOINT BRACKET KIT 2U 2U CHS2U JOINT BRACKET KIT 2U 2U NEC 2U 1U 2U 2U CP Desk Desk Figure 5-4 Desktop Mounting Installation Table 5-4 Hardware for Desktop Mounting Installation Description CHS2U Joint Bracket Kit Feature Upper Joint Bracket Kit (2 x Joint Bracket) 5. INSTALLATION TYPE Page 34

37 5.5 Floor Mounting / Desktop Mounting Installation with Stand SV8300 can be installed on a floor / desk with vertical stand. In the Floor Mounting / Desktop Mounting Installation with Stand, the SV8300 has to be installed Unit by Unit. 1U Chassis + 2U Chassis 3U Width 5U Width 7U Width U Nx EU C U U Nx EU C U U U Nx EU C Floor Floor Floor 2U CP Chassis + 2U Chassis CHS STAND KIT(S) 2U Width 4U Width 6U Width CHS STAND KIT(S) + CHS2U STAND KIT(EXT) U U U U U U Floor Floor Floor CHS2U STAND KIT(K) CHS2U STAND KIT(K) + CHS2U STAND KIT(EXT) Figure 5-5 Floor Mounting / Desktop Mounting Installation with Stand 5. INSTALLATION TYPE Page 35

38 Note 1: CHS Stand Kit (S) is available for 3U width (1U + 2U) To expand to 5U or 7U with, CHS2U Stand Kit (EXT) is additionally required. The CHS2U Stand Kit (EXT) consists of 2U expansion plate x 2 and joint bracket x U width (1U + 2Ux2): 2U expansion plate x 1 and Joint Bracket x 1 used - 7U width (1U + 2Ux3): 2U expansion plate x 2 and Joint Bracket x 2 used Note 2: CHS2U STAND KIT (K) is available for 2U width (2U CP Chassis). To expand to 4U or 6U width, CHS2U STAND KIT (EXT) is additionally required. The CHS2U STAND KIT (EXT) consists of 2U expansion plate x 2 and joint bracket x U width (2U CP Chassis + 2U Chassis x 1): 2U expansion plate x 1 and Joint Bracket x 1 used - 6U width (2U CP Chassis + 2U Chassis x 2): 2U expansion plate x 2 and Joint Bracket x 2 used Table 5-5 Hardware for Flooring Mount / Desktop Mounting Installation with Stand Description CHS STAND KIT (S) CHS2U STAND KIT (K) CHS STAND KIT (EXT) Vertical Stand Kit (3U width) (1 x Joint Bracket included) Feature Vertical Stand Kit (2U Width) Expansion Plates Kit for Vertical Stand (2 x 2U expansion plate and 2 x Joint Bracket included) 5. INSTALLATION TYPE Page 36

39 6. CABLING The following figures sow internal / external cabling of the SV Inter-Chassis Connection Inter-Chassis Connection inside of a UNIT is made with BUS Cables as shown below. The BUS Cable is attached in BUS Interface Blade for 2U Chassis (PZ-BS11). BUS Cable 1.2m (3.9ft.) SV8300 2U Chassis 03 2U Chassis 02 2U Chassis 01 1U Chassis / 2U CP Chassis Figure 6-1 Inter-Chassis Connection Inter-UNIT connection inside of main site or standalone system is made with LAN Cable, same manner of Remote UNIT over IP. Please refer to IP Connection in this chapter. 6. CABLING Page 37

40 6.2 CSI Synchronization Cable Connection When CS Interface (CSI) blades are distributed to multiple Units in a main site or a standalone system, all of the Units have to be connected UNIT by UNIT with CSI Synchronization Cable. (When CSI blades are mounted in a UNIT in a main site or a standalone system, this connection is not necessary.) The connection is required in addition to Inter-UNIT connection described in IP Connection. UNIT01 SV8300 (Main Site / Standalone) UNIT02 (No CD-4CSIB-A mounted) UNIT03 UNIT04 (No CD-4CSIB-A mounted) EX OUT EX IN EX IN EX IN EXP SYC CA-A EX OUT EX OUT CD-4CSIB-A Figure 6-2 CSI Synchronization Cable Connection (Single mode CPU configuration) Note: On Dual CPU configuration for UNIT 01 only, EX OUT / EX IN port on either #0 CPU or #1 CPU in UNIT 01 can be used. Figure 6-3 CSI Synchronization Cable Connection (Dual mode CPU configuration) Note: On Dual CPU configuration for UNIT 01 to 04, CSI blades must be mounted within UNIT and all the Units must be connected Unit by Unit with CSI Synchronization Cable. 6. CABLING Page 38

41 Table 6-1 CSI Synchronization Cable Description Feature EXP SYC-3 CA-A CSI Synchronization Cable, 3.0m 6. CABLING Page 39

42 6.3 AC Cord Connection SV8300 AC CORD (xx) 2U Chassis 2U Chassis 2U Chassis 1U Chassis / 2U CP Chassis Figure 6-4 AC Cord Connection Table 6-2 AC Cord Connection Description IP3NE-3KSU-B1 AC CABLE Feature AC Power Cable 6. CABLING Page 40

43 6.4 Battery Cable Connection (1) Built-in Battery Cable Connection 1U Chassis 2U CP Chassis BATT Connector (inside of cover) Power Supply Unit (PSU) CHS1U BATT CA INT or CHS1U CA INT-A BATT Connector (inside of cover) Power Supply Unit (PSU) DUAL CPU BATT CA INT-A 2 x PE12V0.8 batteries or 2 x NP batteries (Local Supply) 4 x NP batteries (Local Supply) 2U Chassis BATT Connector (inside of cover) Power Supply Unit (PSU) CHS2U BATT CA INT 2 x NP batteries (Local Supply) Figure 6-5 Built-in Cable Connection 6. CABLING Page 41

44 Table 6-3 Built-in Battery Cable Description CHS1U BATT CA INT DUAL CPU BATT CA INT-A CHS2U BATT CA INT Feature Battery Cable for short-term built-in batteries (with Tyco connectors) for 1U Chassis Including: - 1 x Cable (270mm) Cable from 1U Chassis to batteries Battery Cable for short-term built-in batteries for 2U CP Chassis. Included in CHS2U (D) BATT MTG KIT Battery Cable for short-term built-in battery for 2U/2U CP Chassis Including: - 1 x Cable A (480mm) Cable from 2U Chassis to batteries (JST Faston tab 187 connectors) - 1 x Cable B (80mm) Cable between batteries (JST Faston tab 187 connectors) 6. CABLING Page 42

45 (2) External Battery Cable Connection w/battery Box When CHS LARGE BATT BOX is used, there are two types of the external battery cable connections as shown below. The battery cables are attached in the CHS LARGE BATT BOX. Only Flooring Mounting Installation is available. The external batteries must be installed UNIT by UNIT (The secondary UNIT is included) 45 minutes backup SV8300 BATT Connector 2U Chassis (Rear side) 2U Chassis 2U Chassis 1U Chassis / 2U CP Chassis CHS LARGE BATT BOX Cables between Chassis and BATT BOX are included in BATT BOX (4pcs per BATT BOX) 1U Chassis / 2U CP Chassis 2U Chassis 01 2U Chassis 02 2U Chassis 03 CHS LARGE BATT BOX CON CON CON CON CON2 CON3 CON4 CON5 Terminal unit CON1 CON4 Fuse Unit CON1 CON2 CON3 CON CON CON + - FML1270 (Local Supply) + - FML1270 (Local Supply) + - FML1270 (Local Supply) + - FML1270 (Local Supply) + - FML1270 (Local Supply) + - FML1270 (Local Supply) Figure 6-6 External Battery Connection (45 minutes backup) 6. CABLING Page 43

46 3 hours backup SV8300 BATT Connector 2U Chassis (Rear side) 2U Chassis 2U Chassis 1U Chassis / 2U CP Chassis CHS LARGE BATT BOX 01 CHS LARGE BATT BOX 02 CHS LARGE BATT BOX 03 CHS LARGE BATT BOX 04 1U Chassis / 2U CP Chassis CHS LARGE BATT BOX CON CON2 CON3 CON4 CON5 Terminal unit CON1 CON4 Fuse Unit CON1 CON2 CON3 CON CON CON V-7AH (Local Supply) V-7AH (Local Supply) V-7AH (Local Supply) V-7AH (Local Supply) V-7AH (Local Supply) V-7AH (Local Supply) Figure 6-7 External Battery Connection (3 hours backup) 6. CABLING Page 44

47 (3) External Battery Cable Connection w/o Battery Box When external batteries are required, the external batteries must be installed UNIT by UNIT (The secondary UNIT is included) 2U Chassis SV8300 BATT Connector (Rear side) 2U Chassis 2U Chassis CHS BATT CA EXT-A 1U Chassis / 2U CP Chassis - 12V V V V + External Batteries (Local Supply) Terminal unit (Local Supply) Inter-Battery Cables and Cables between Terminal Block and Battery (Local Supply) Figure 6-8 External Battery Connection w/o Battery Box Table 6-4 External Battery Connection w/o Battery Box Description CHS BATT CA EXT-A Feature External Battery Cable (1 per Chassis) Including: - 1 x Cable (400mm) Chassis - Terminal Unit Table 6-5 Battery Capacity of External Battery w/o Battery Box Configuration Battery Capacity (Number of Batteries) Number of CHS BATT CA EXT-A 1U/2U CP 1 24AH (12V-24AH x 2 pcs) 1U/2U CP + 2U 2 1U/2U CP + 2Ux2 3 48AH (12V-24AH x 4 pcs) 1U/2U CP + 2Ux CABLING Page 45

48 6.5 Desk Console Connection SV8300 (UNIT #1) DLC (RJ-61) MDF Desk Console w/ AC Adapter Installation Cable (Local supply) Figure 6-9 Desk Console Connection Note: Desk Consoles can be accommodated in the SV8300 with the following limitations. 1) The following models of the Desk Consoles can be accommodated. SN716 DESK CON A-C 2) The DLC blade and the Desk Console have to be updated to the following firmware (F/W) versions. DLC Blade F/W: ver. 2.3 or higher SN716 DESK CON A-C F/W: ver. 7A or higher 3) The DLC blades for the Desk Consoles have to be mounted in the UNIT#1. 4) Maximum 2 x Desk Consoles can be accommodated in a DLC blade. DT300, Dterm IP (series - E/i), and DSS Console can be accommodated in the DLC blade together. 5) Maximum 8 x Desk Consoles can be accommodated in a system. 6) AC Adapters are mandatory required for the Desk Consoles. 6. CABLING Page 46

49 6.6 PC Pro Connection (1) PC Pro Direct Connection Figure 6-10 PC Pro Direct Connection Note 1: RS-232C x 2 ports in Unit #1are available. The RS-232C ports are commonly used for PC Pro / SMDR / MCI connection and so on. Note 2: On Dual CPU configuration, RS-232C ports on either #0 or #1 in UNIT 01 can be used. Table 6-6 PC Pro Connection Cable Description RS CONSOLE CA-A Feature PC Pro Connection Cable 6.6 ft (2.0m) (2) PC Pro Remote Connection (via internal modem of PZ-VM21) Figure 6-11 PC Pro Remote Connection (via internal modem of PZ-VM21) Note: Internal modem and COT/PRT/BRT in Unit #1 is available for the PC Pro remote connection. 6. CABLING Page 47

50 (3) PC Pro Remote Connection (via external modem) Figure 6-12 PC Pro Remote Connection (via external modem) Note 1: RS-232C x 2 ports in Unit #1are available. The RS-232C ports are commonly used for PC Pro / SMDR / MCI connection and so on. Note 2: Connection from PC Pro is only available. Note 3: On Dual CPU configuration, RS-232C ports on either #0 or #1 in UNIT 01 can be used. Table 6-7 PC Pro Remote Connection Cable (via external modem) Description RS NORM-4S CA-F Feature RS-232C Cable (normal) 13.1 ft. (4.0m) (inch screw, Male) 6. CABLING Page 48

51 6.7 SMDR / Hotel Printer / MCI /PMS Connection (1) SMDR / Hotel Printer / MCI / PMS Direct Connection (via RS-232C) Figure 6-13 SMDR / Hotel Printer / MCI Direct Connection Note 1: RS-232C ports in Unit 01 are available for PC Pro, SMDR, Hotel Printer, MCI, and PMS connections. One the other hand, RS-232C ports in UNIT 02 and UNIT 03 are available for Hotel Printer, MCI, and PMS connections. Note 2: On Dual CPU configuration, RS-232C ports on either #0 or #1 in UNIT can be used. Table 6-8 SMDR / Hotel Printer / MCI Direct Connection Cable Description RS RVS-15S CA-F RS RVS-4S CA-F RS RVS-4S CA-G RS PRT-15S CA-F Feature RS-232C Cable (reverse) 49.2 ft. (15.0m) (inch screw, Male) RS-232C Cable (reverse) 13.1 ft. (4.0m) (inch screw, Male) RS-232C Cable (reverse) 13.1 ft. (4.0m) (inch screw, Female) RS-232C Cable (printer) 49.2 ft. (15.0m) (inch screw, Male) 6. CABLING Page 49

52 (2) SMDR / MCI / PMS Direct Connection (via external modem) Figure 6-14 SMDR / MCI Connection (via external modem) Note 1: RS-232C ports in Unit 01 are available for PC Pro, SMDR, Hotel Printer, MCI, and PMS connections. One the other hand, RS-232C ports in UNIT 02 and UNIT 03 are available for Hotel Printer, MCI, and PMS connections. Note 2: On Dual CPU configuration, RS-232C ports on either #0 or #1 in UNIT can be used. Table 6-9 SMDR / MCI Connection Cable (via external modem) Description RS NORM-4S CA-F Feature RS-232C Cable (normal) 13.1 ft. (4.0m) (inch screw, Male) 6.8 Alarm Display Connection Figure 6-15 Alarm Display Connection Note: On Dual CPU configuration, Relay port on either #0 or #1 in UNIT 01 can be used. 6. CABLING Page 50

53 6.9 TAS Equipment Connection Figure 6-16 TAS Equipment Connection Note: On Dual CPU configuration, Relay port on either #0 or #1 in UNIT 01 can be used External Paging Connection Figure 6-17 External Paging Connection Note: Paging Adapter used is the PGD (2)-U10 ADP 6. CABLING Page 51

54 6.11 External Music Source Connection (1) External Music Source Connection Built-in MOH Port Figure 6-18 External Music Source Connection - Built-in MOH Port Note: On Dual CPU configuration, the external music source needs to be connected to each MOH port on #0 CPU and #1 CPU in UNIT (2) External Music Source Connection Paging Adapter Figure 6-19 External Music Source Connection - Paging Adapter Note: Paging Adapter used is the PGD (2)-U10 ADP 6. CABLING Page 52

55 6.12 IP Connection There are two types of NIC ports in a CPU blade. One is VoIP NIC port on VoIP-DB. It is Gigabit Ethernet port (10BASE-T/100BASE-TX /1000BASE-T), which is mainly used for IP terminals. Another is Maintenance Port on CPU blade. It is Fast Ethernet port (10BASE-T /100BASE-TX), which is mainly used for PC Pro. Only Maintenance Port in UNIT 01 is available during normal operation. The availability of the NIC ports for each application is shown below. Table 6-10 NIC Port Setting by Application Maintenance Port VoIP Port IP Phone (DT700 series, etc.) NA X P2P CCIS Trunk (Note 1) NA X SIP Trunk (Note 1) NA X Remarks SNTP NA X PZ-64IPLC-A or PZ-128IPLC-A is required PC Pro X X Can use both ports at the same time OAI (Note 1) X X Select the port SMDR (Note 1) X X Select the port PMS (Note 1) X X Select the port SNMP (Note 1) X X WLAN Controller / AP - X Inter-UNIT connection - X GET/SET commands from PC: Can use both ports at the same time TRAP command from PBX: Can use a port the default gateway is set Remote-UNIT connection (Note 2) - X Dual CPU Data Synchronization X N/A 2U CP Chassis (UNIT 01) only X: Available, NA: Not available Note 1: Available at main unit (UNIT 01) only Note 2: Including Secondary UNIT connection for Failover Mode When both types of the NIC ports are used at the same time, the following have to be considered. The VoIP and Maintenance ports must be a different subnet. Default gateway can be set to either the VoIP Port or the Maintenance Port, but not both 6. CABLING Page 53

56 SV8300 UNIT01 UNIT02 UNIT03 UNIT04 VoIP LAN Maintenance Port VoIP Port PC Pro Maintenance LAN WLAN Controller / AP D term IP (series i) DT700 series Standard SIP Terminal) SIP Trunk Connection CCIS over IP / Remote UNIT over IP PC Pro SMDR PMS OAI Server 10BASE-T / 100BASE-TX / 1000BASE-T Cable (Local supply) 10BASE-T / 100BASE-TX Cable (Local supply) 10BASE-T / 100BASE-TX or 1000BASE-T Cable (It depends on terminal specification) (Local supply) Figure 6-20 IP Connection (IP System or Multi-UNIT configuration) SV8300 Maintenance Port Maintenance LAN PC Pro SMDR PMS OAI Server 10BASE-T / 100BASE-TX / 1000BASE-T Cable (Local supply) 10BASE-T / 100BASE-TX Cable (Local supply) Figure 6-21 IP Connection (TDM System or 1-UNIT configuration) 6. CABLING Page 54

57 Dual CPU Configuration On Dual CPU configurations, CPU blades mounted in 2U CP Chassis have to be connected each other to synchronize the system data, charging data, license data etc. The following connection methods are available. 2U CP Chassis Direct Connection Maintenance Port Connection via SW-HUB Maintenance Port 10BASE-T / 100BASE-TX Cable (Local supply) SW-HUB 10BASE-T / 100BASE-TX Cable (Local supply) Figure 6-22 Internal Chassis Connection (2U CP Chassis) The closed and bandwidth guaranteed network is preferable, such as IP-VPN (Layer 3 VPN) or Wide Area Ethernet service (Layer 2 VPN). The following table shows the network requirement for the inter-unit connection and the Remote-UNIT connection. Table 6-11 Network Requirements for inter-unit/remote-unit connections Protocol Item Maximum delay time Inter-UNIT connection (between UNIT 01 and UNIT 02-04) TCP/IP transparent Requirement One-way: 100ms, Return-way: 200ms (Recommended) One-way: 120ms, Return-way: 240ms Remote-UNIT connection (Note) (between UNIT 01 and UNIT 05-50) Required bandwidth control 100kbps 50kbps voice Depending on the traffic Note: Including Secondary UNIT connection for Failover Mode 6. CABLING Page 55

58 Failover Configuration When SV8300 Units are installed at remote site, and connected to a SV8300 at main site over IP network, the Main Site system controls and maintains the Remote Units operation as one single system. If a communication failure occurs between the Main Site and Remote Site, the Remote Units are connected to Secondary Unit which controls Remote Units instead of the Main Site under Failover Mode. Failover Definitions: Primary Unit: Unit 01 of Main System Secondary Unit: Can be Unit 05 to 50 (stand-by for Unit 01). CPU module that operates call processing in the event of communication failure between Main and Remote Units. Only one Secondary Unit can be installed in a system. Remote Unit: All Units (Unit 5 to 50) except for Main and Secondary Units Normal Mode: Primary Unit is operating normally as main system. The Secondary Unit is in a status of standby for Main Unit. In this condition, the Secondary Unit does not operate call processing. Failover Mode: Primary Unit fails or is not available; Secondary Unit operates as Primary Unit. The Secondary Unit is in a status of call processing operation for Remote Units. Figure 6-23 Failover CPU Configuration 6. CABLING Page 56

59 Normal Mode Operation: When the Primary Unit works normally, the Secondary Unit is in Normal Mode and it does not operate call processing. In Normal Mode, the Secondary Unit monitors connection status between Remote Units and Secondary Unit itself and copies office data/license data from Primary Unit periodically. Figure 6-24 Normal Mode Operation (Failover CPU) Failover Mode Operation: If a communication failure occurs between the Main Site and Remote Site, Remote Unit automatically resets itself, and sends a connection request to the Secondary Unit. Then Secondary Unit goes to Failover Mode and starts controlling call processing of Remote Unit. In Failover Mode, the system data and license data copied during Normal Mode will be effective. Figure 6-25 Failover Mode Operation (Failover CPU) 6. CABLING Page 57

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