SE-330 SERIES (NEW REVISION) IEC INTERFACE

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1 Tel: SE-330 SERIES (NEW REVISION) IEC INTERFACE Revision 0-C Copyright 2018 Littelfuse Startco Lt. All rights reserve. Document Number: PM-1206-EN

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3 Page ii SECTION TABLE OF CONTENTS PAGE TABLE LIST OF TABLES PAGE 1 General Configuration Software Network Configuration Ethernet Ports IP Settings SNTP Settings IEC Clients IEC Configuration Server Configuration Report Control Blocks Data Sets GOOSE Settings GOOSE Control Blocks GOOSE Network Inputs MMS Data Moel Device Information LLN Report Control Blocks Default Datasets GOOSE Control Blocks Physical Device LPHD Metering UIRMMXU Groun Fault GFPTOC Resistor Fault RFPTOV Comman CMDGGIO Event Recor RECGGIO Specifications Appenix A SE-330 Series (New Revision) IEC Interface Revision History Default IP Settings Server Configuration Parameters RCB Report Conitions RCB Optional Fiels GOOSE Network Input Status Values LLN0 Logical Noe Data LPHD Logical Noe Data Metering UIRMMXU Groun Fault GFPTOC Resistor Fault RFPTOV Comman CMDGGIO Event Recor RECGGIO DISCLAIMER Specifications are subject to change without notice. Littelfuse Startco is not liable for contingent or consequential amages, or for expenses sustaine as a result of incorrect application, incorrect ajustment, or a malfunction. FIGURE LIST OF FIGURES PAGE 1 SE-MON330 Communications Settings Top View of SE-330 (SE-330-X6-XX) with Dual RJ-45 Ethernet Network Communications Top View of SE-330 (SE-330-X7-XX) with Single Fiber SC an Single RJ-45 Ethernet Network Communications Top View of SE-330 (SE-330-X8-XX) with Dual Fiber SC Ethernet Network Communications SE-MON330 IEC Server Configuration Tab SE-MON330 IEC Report Control Block (RCB) Configuration Tab SE-MON330 IEC Data Sets Tab SE-MON330 IEC Data Set Properties Winow SE-MON330 IEC GOOSE Tab... 10

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5 Page 1 1. GENERAL This manual escribes the features of the SE-330, SE-330AU, an SE-330HV IEC interface. Unless otherwise inicate, SE-330 refers to all three monitor series in general. The optional IEC interface inclues Manufacturing Message Specification (MMS) an Generic Object Oriente Substation Events (GOOSE) elements. MMS Buffere an Unbuffere Report Control Blocks are supporte with user-efinable Data Sets. Two GOOSE Control Blocks an 16 GOOSE Network Inputs are available to provie high spee peer-to-peer signaling. Three harware configuration options are available to provie reunant network connections: Dual RJ45, Dual Fiber SC, an Single RJ45/Single Fiber SC. The IEC interface is configure using the SE-MON330 configuration software (version 3.2 or later). Mobus/TCP is inclue to support configuration of the SE-330 over the network. For more information on the Mobus/TCP interface, refer to the SE-330 Series Mobus/TCP manual. 1.1 CONFIGURATION SOFTWARE The IP, SNTP an IEC settings are configure using SE-MON330 through the front-panel USB interface. To ownloa SE-MON330, please visit For information on how to connect SE-MON330 to the SE-330, please refer to the SE- MON330 help file foun in the Help Contents menu. 2. NETWORK CONFIGURATION IP an SNTP settings are configure on the SE-MON330 Details Page tab as shown in Fig ETHERNET PORTS Two Ethernet interface types are available for the SE-330: 10/100 BASE-Tx full/half uplex Auto-MDIX RJ Mbps fiber SC Three combinations of these interface types are available: Dual RJ45 Dual Fiber SC Single RJ45 / Single Fiber SC See Figs. 2, 3, an 4. TABLE 1. DEFAULT IP SETTINGS INTERFACE 1 IP Aress Subnet Mask Gateway INTERFACE 2 IP Aress Subnet Mask Gateway For troubleshooting network connections, the SE-330 supports ICMP ping requests. Note: Ensure that each port is configure with a unique IP aress even if not use. 2.3 SNTP SETTINGS When connecte to the SE-330 with SE-MON330, the SNTP Settings can be foun in the Details Page tab in the SNTP Parameter section. SNTP Enable, NTP Server IP Aress, Poll Perio, an Timeout can be configure. Enable the SNTP Client an set the NTP Server IP Aress to the aress of the system NTP Server to synchronize the SE-330 to the system time. For troubleshooting connection problems with the NTP Server, monitor the SNTP Client status. The status inicates problems such as NTP Server not foun, NTP Server not running, an timeout. The Poll Perio is the time between queries to the NTP server. The efault value is 60 s, which is typically sufficient to maintain time synchronization to 1 ms accuracy, but it can be configure for perios as low as 1 s. The Timeout is the maximum time that the SNTP Client will wait for a response from the NTP Server. The efault value is 5 s, an the minimum time is 1 s. If a request fails, no change is mae to the SE-330 internal clock. 2.4 IEC CLIENTS The SE-330 IEC interface supports a total of four simultaneous client connections. Client connection requests are accepte in the orer they are receive an are available on either network interface. 2.2 IP SETTINGS When connecte to the SE-330 with SE-MON330, the IP settings can be foun in the Details Page tab in the Network Parameter section. The IP aress, subnet mask an gateway can be configure for each network interface. Default values for these settings are liste in Table 1.

6 Page 2 FIGURE 1. SE-MON330 Communications Settings. FIGURE 2. Top View of SE-330 (SE-330-X6-XX) with Dual RJ-45 Ethernet Network Communications.

7 Page 3 FIGURE 3. Top View of SE-330 (SE-330-X7-XX) with Single Fiber SC an Single RJ-45 Ethernet Network Communications. FIGURE 4. Top View of SE-330 (SE-330-X8-XX) with Dual Fiber SC Ethernet Network Communications.

8 Page 4 3. IEC CONFIGURATION The SE-330 IEC interface can be configure with SE-MON330. The configuration can be loae from an SE-330 or from an ICD configuration file that has been generate in an IEC system esign tool. When the IEC configuration is reay in SE-MON330, it can be written to the SE-330 or to an ICD file. IEC settings are visible in the IEC tab of SE-MON330 when it is connecte to an SE-330 with the optional IEC interface. When SE-MON330 is first connecte, the IEC fiels are empty. The configuration can be loae from the SE-330 by clicking Loa From SE330 or from an ICD file by clicking Loa From ICD File. The configuration can then be moifie an written to the SE-330 by clicking Write to SE330, or to an ICD file by clicking Write to ICD File. After writing the configuration to the SE-330, cycle SE- 330 control power for the settings to take effect. 3.1 SERVER CONFIGURATION The IEC server settings are configure through the IEC Server tab in SE-MON330 as shown in Fig. 5. The configuration inclues the parameters liste in Table 2. FIGURE 5. SE-MON330 IEC Server Configuration Tab. PARAMETER TABLE 2. SERVER CONFIGURATION PARAMETERS DESCRIPTION IED Name The user-efinable name of the SE-330 on the IEC interface. Limite to 32 characters only. Check this option to use the upper aresses incluing AE Qualifier, Application ID, Presentation Check Upper Aresses Selector, Session Selector an Transport Selector in aition to IP Aress an TCP port for connection valiation. If unchecke, only the IP Aress an TCP port will be use to valiate the connection. AP ID ACSE Application ID. Integer value between 0 an AE Qualifier OSI ACSE. AE Qualifier. Integer value between 0 an Presentation Selector OSI-PSEL. Presentation Selector. Integer value between 0 an Session Selector OSI-SSEL. Session Selector. Integer value between 0 an Transport Selector OSI-TSEL. Transport Selector. Integer value between 0 an Keep Alive The TCP Keep Alive perio in secons. The time it takes to etect a lost connection. Two Access Points Check this option to recor both network interfaces to the ICD file.

9 Page 5 FIGURE 6. SE-MON330 IEC Report Control Block (RCB) Configuration Tab.

10 Page REPORT CONTROL BLOCKS The IEC interface inclues four Buffere Report Control Blocks (RCB) an four Unbuffere Report Control Blocks. To configure the RCB s, select the IEC RCB tab in SE-MON330 as shown in Fig. 6. RCB s are use for ata reporting to clients. Changes mae to the RCB configuration through SE-MON330 become the efault settings. The RCB can be enable or isable through the IEC interface. The Data Set to be reporte by the RCB is selecte in the Data Set fiel. Fixe or user-efine Data Sets can be selecte. See Section 3.3. The Report ID is a text escription of the RCB an has a maximum size of 64 characters. The Config Revision allows the user to maintain control of the configuration revision. In a commissione system, if the RCB configuration changes, the Config Revision shoul be incremente. For buffere RCB s, the Buffering Time can be configure. The efault time is 1,000 ms. The minimum time is 0 ms, an the maximum is limite only by the 64 kb buffer memory. The RCB can be configure to generate a report at specific intervals by setting the Integrity Perio to a value other than 0 ms an enabling the Integrity Triggering Option. RCB s can be configure to generate ata reports uner the conitions liste in Table 3. Optional report contents can be configure in the Option fiels section. The optional fiels are liste in Table 4. CONDITION Data Change Quality Change Data Upate Integrity General Interrogation FIELD Sequence Number Report Timestamp Reason for Inclusion Data Set Name Data Reference Buffer Overflow Entry ID Configuration Revision TABLE 3. RCB REPORT CONDITIONS DESCRIPTION The report is sent when any of the Data Attributes of the Data Set associate with the RCB have change. The report is sent when the Quality of any of the Data Attributes in the RCB s Data Set have change. The report is sent when any of the Data Attributes are upate. Data may not change. Timestamp will be upate. The report is sent at regular intervals. The client can request the present ata values at any time. TABLE 4. RCB OPTIONAL FIELDS DESCRIPTION The integer sequence number. Incremente after each transmission of the report starting with 0 for the first report sent after the RCB is enable. Timestamp of the report at the time of transmission. Not necessarily the same as the timestamp of the ata within the report. The trigger conition that cause the report to be sent. The name of the Data Set inclue in the report. The ata reference for the ata inclue in the report. Inicates a buffer overflow occurre. Only available in Buffere RCB s. The ID of the report. Only available in Buffere RCB s. The revision of the RCB configuration.

11 Page SETS Data Sets are use to group elements of the MMS ata moel for use in RCB s an GOOSE Control Blocks (GCB). Data Sets are viewe an eite using SE-MON330 in the IEC Data Sets tab as shown in Fig. 7. The IEC interface inclues three fixe Data Sets, an 29 user-efinable Data Sets. The three fixe Data Sets are: LLN0$DS1_Measurement Data NGR Voltage NGR Impeance Groun-Fault Current Meter Values LLN0$DS2_Recor Data Event Recor Data for all events that are recore by the SE-330 LLN0$DS3_GOOSE Groun-Fault Start Groun-Fault Operate Resistor-Fault Start Resistor-Fault Operate Remote Trip Status The GCB s are configure to use the LLNO$DS3 GOOSE Data Set. Refer to Section for more information on the GCB s. For a etaile escription of the fixe Data Sets, refer to Section User-efine Data Sets can be ae through SE- MON330. To a a Data Set open the Data Sets tab an click the + button. This will open the Data Set Properties winow as shown in Fig. 8. In the Data Set Properties winow, assign the Data Set to a Logical Noe, give the Data Set a unique name an choose ata elements to inclue in the Data Set. Data elements are chosen from the ata-moel tree on the left, an can be ae to the list on the right by clicking the arrow buttons. Up to 30 ata elements can be ae. Only ata elements with a functional constraint of ST or MX can be inclue in a Data Set. When a ata element has been ae to the list on the right, it can be move up or own in the list with the up an own arrow buttons, or remove from the list with the X button. FIGURE 7. SE-MON330 IEC Data Sets Tab.

12 Page 8 FIGURE 8. SE-MON330 IEC Data Set Properties Winow.

13 Page GOOSE SETTINGS IEC GOOSE is use to provie network trip an alarm signaling in place of or in aition to traitional relay connections. The GOOSE configuration is viewe an eite in the IEC GOOSE tab as shown in Fig. 9. GCB s are configure to publish GOOSE ata on the system network. GOOSE Network Inputs are configure to subscribe to GOOSE ata that is available on the system network GOOSE CONTROL BLOCKS To support the reunant network interfaces on the SE-330, two GCB s are available. The GCB s can be inepenently enable an can be configure to transmit on one or both network interfaces. Both GCB s transmit the LLN0$DS3_GOOSE Data Set, which inclues the Groun-Fault Start, Groun-Fault Operate, Resistor-Fault Start, Resistor-Fault Operate an Remote Trip status. These ata elements support network signaling of all SE-330 trip conitions. The GCB s are configure inepenently with options for the Destination MAC aress, VLAN settings, Application ID, GOOSE ID, Test flag, an Network Interface. The Configuration Revision is not configurable an is fixe at 1. The Destination MAC aress, Application ID an GOOSE ID are use to uniquely ientify the source of the GOOSE ata. Each of these values is assigne by the system esigner in consieration of all GOOSE publishers an subscribers on the network. The 48-bit MAC aress is typically marke as a multicast aress by setting the least significant bit of the most significant byte to 1. The Application ID can be any integer value between 1 an The GOOSE ID is a user-efinable text ientifier. It can contain alpha-numeric characters an unerscores an has a maximum length of 64 characters. VLAN ID an VLAN Priority configure Virtual LAN routing of GOOSE messages through the network. VLAN parameters are assigne by the system esigner in consieration of all other traffic on the system network. To isable VLAN support, set the VLAN ID an VLAN Priority to 0. The GCB can be configure to assert the Test flag which informs subscribers to treat the GOOSE ata as a test. How test ata is hanle in the subscriber is epenent on the specific evice, but test ata will typically not be use in a trip ecision. The Network Interface can be set to Interface 1, Interface 2 or Interface 1 an 2. When set to Interface 1 an 2, ientical GOOSE messages are transmitte simultaneously on both SE-330 network interfaces. The reception of uplicate GOOSE messages by a subscriber can cause unefine behavior, so the reunant network topology must be consiere when configuring the GCB s. When connecte to a subscriber with reunant network interfaces through a fully reunant network, there is no anger of uplicate GOOSE messages being receive on either of the subscriber s network interfaces. In this case, a single GCB can be configure to transmit messages on Interface 1 an 2. This configuration can be supporte in the subscriber by configuring two Network Inputs, one for each network interface. When connecte to a subscriber with reunant network interfaces through a network on which the GOOSE messages can cross to either sie of the network an be receive on both network interfaces of the subscriber, the GCB configuration epens on the behavior of the subscriber. In this case, two GCB s can be configure with unique GOOSE configurations to be transmitte on ifferent network interfaces GOOSE NETWORK INPUTS Up to 16 GOOSE Network Inputs are supporte. The Network Inputs rive the Remote Trip function within the SE-330. Network Input parameters must be configure to match the esire GOOSE message. The Destination MAC aress, Application ID, Config Revision, an GOOSE ID must all match the corresponing fiels in the GOOSE message. The Network Inputs require a Boolean ata attribute. The Boolean ata attribute can be receive as a single Boolean value, or as a member of a Boolean bit-string. Configure the Data Inex to the inex of the esire Boolean value in the GOOSE message. The first ata element is inex 0. If the value is a Boolean bit-string, configure the Bit Inex to the inex of the esire bit within the bit-string starting with inex 0, otherwise set Bit Inex to 0. The Boolean ata can be inverte before it is use in the trip ecision by setting Inverte to Yes. For troubleshooting Network Input configurations, the status of each Network Input can be viewe in the IEC GOOSE tab uner NI Status. The Network Input status values are liste in Table 5. The Network Input is colore green when the receive value will not cause a Remote Trip, re when the receive value will cause a Remote Trip, an yellow when the receive value will be ignore ue to the Network Input configuration.

14 Page 10 FIGURE 9. SE-MON330 IEC GOOSE Tab. The Network Inputs are combine in a logical OR operation to rive the Remote Trip function within the SE Disable Network Inputs an Network Inputs with a status other than OK are not inclue in the trip ecision. The Boolean equation for the trip status of each Network Input is shown in Equation 3.1: Equation 3.2 is the Boolean equation for the combination of the Network Inputs in the Remote Trip ecision:

15 Page 11 STATUS OK No Data Ol Ba Type Test Nees Commissioning TABLE 5. GOOSE NETWORK INPUT STATUS VALUES DESCRIPTION The GOOSE messages are being receive within the Time To Live perio or the Network Input is isable. No GOOSE messages matching the Network Input configuration are being receive. GOOSE messages have been receive in the past, but they are no longer being receive. The Data Attribute specifie in the Data Inex fiel is not a Boolean bit-string value. The Test flag is set on the GOOSE messages. The Nees Commissioning flag is set on the GOOSE messages.

16 Page MMS MODEL The SE-330 IEC interface inclues a single logical evice that contains multiple logical noes. The logical noes are escribe in this section. 4.1 DEVICE INFORMATION LLN0 The LLN0 Logical Noe contains evice information as liste in Table REPORT CONTROL BLOCKS The LLN0 Logical Noe contains four buffere an four unbuffere RCB s. RCB s can be configure with SE-MON330 or through the IEC interface. Buffere RCB s are name brcb01, brcb02, brcb03, an brcb04, an unbuffere RCB s are name urcb01, urcb02, urcb03, an urcb04. NAME TYPE NAME TABLE 6. LLN0 LOGICAL NODE TYPE DESCRIPTION Mo INC stval INT8 Moe for whole logical evice (status only): 1 ON 2 Blocke 3 Test 4 Test-blocke 5 OFF Beh INS stval INT8 Behaviour reflecting moe for whole logical evice: 1 ON 2 Blocke 3 Test 4 Test-blocke 5 OFF Health INS stval INT8 The Health value reports the most severe error conition for all Logical Noes in the Logical Device: 1 OK No Problems, Normal Operation 2 Warning Minor Problems, but in Safe Operation Moe - SD Car Full 3 Alarm Severe Problem, No Operation Possible - ADC Error - NVRAM Error - FLASH Error - Harware Fault - CT Error - Calibration Error - Firmware Fault NamPlt LPL venor swrev configrev lns Venor name: Littelfuse Inc. Firmware Version Description: SE-330 Neutral Grouning Resistor Monitor Configuration Revision Logical Device Name Space IEC : 2003

17 Page FIXED SETS The LLN0 Logical Noe contains two preefine Data Sets with following contents: Data Set DS1_Measurement UIRMMXU1.A (MX) UIRMMXU1.PhV (MX) UIRMMXU1.Z (MX) Data Set DS2_Recor GFPTOC1.Str (ST) GFPTOC1.Op (ST) RFPTOV1.Str (ST) RFPTOV1.Op (ST) RecGGIO2.AnIn1 (MX) RecGGIO2.AnIn2 (MX) RecGGIO2.AnIn3 (MX) RecGGIO2.In1 (ST) RecGGIO2.In2 (ST) RecGGIO2.In3 (ST) RecGGIO2.In4 (ST) RecGGIO2.In5 (ST) RecGGIO2.In6 (ST) RecGGIO2.In7 (ST) RecGGIO2.In8 (ST) RecGGIO2.In9 (ST) RecGGIO2.In10 (ST) RecGGIO2.In11 (ST) RecGGIO2.In12 (ST) RecGGIO2.In13 (ST) RecGGIO2.In14 (ST) RecGGIO2.In15 (ST) RecGGIO2.In16 (ST) RecGGIO2.In17 (ST) RecGGIO2.In18 (ST) RecGGIO2.In19 (ST) RecGGIO2.In18 (ST) RecGGIO2.In19 (ST) LLN0.Health (ST) LPHD1.PhyHealth (ST) Data Set DS3_GOOSE RFTPOV1.StrVal.general (ST) RFTPOV1.Op.general (ST) GFTPOC1.StrVal.general (ST) GFTPOC1.Op.general (ST) CMDGGIO1.SPCSO.stVal (ST) GOOSE CONTROL BLOCKS The LLN0 Logical Noe contains two GCB s: gcb1 an gcb2. The configuration for gcb1 an gcb2 inclues the DS3_GOOSE Data Set which cannot be change. 4.2 PHYSICAL DEVICE LPHD The LPHD Logical Noe contains the physical evice information as liste in Table 7. TABLE 7. LPHD LOGICAL NODE DESCRIPTION NAME TYPE NAME TYPE PhyNam DPL venor Venor Name: Littelfuse Inc. hwrev The Harware Revision swrev The Firmware Revision sernum The Unit Serial Number moel SE-330 or SE-330AU or SE-330HV PhyHealth INS stval INT8 Physical Device Health: 1 OK No Problems, Normal Operation 2 Warning Minor Problems, but in Safe Operation Moe 3 Alarm Severe Problem, No Operation Possible Proxy SPS stval TRUE = inicates that the LN is a proxy.

18 Page METERING UIRMMXU1 The Metering Logical Noe contains ata objects for the three metere values as liste in Table 8. NAME TYPE NAME Mo INC stval TABLE 8. METERING UIRMMXU1 TYPE INT8 DESCRIPTION Moe for whole logical noe (status only): 1 ON 2 Blocke 3 Test 4 Test-blocke 5 OFF Status-Only ctlmoel Beh INS stval INT8 Behaviour reflecting moe for whole logical noe: 1 ON 2 Blocke 3 Test 4 Test-blocke 5 OFF Health INS stval INT8 Logical Noe Health: 1 OK No Problems, Normal Operation 2 Warning Minor Problems, but in Safe Operation Moe 3 Alarm Severe Problem, No Operation Possible NamPlt LPL venor swrev PhV WYE neut.cval.ma g.f A WYE neut.cval.ma g.f Z WYE neut.cval.ma g.f FLOAT FLOAT FLOAT Venor Name: Littelfuse Inc. Firmware Version Description: Neutral line measurements Neutral grouning resistor voltage in volts. Neutral grouning resistor current in amps. Neutral grouning resistor resistance in ohms.

19 Page GROUND FAULT GFPTOC1 The Groun-Fault Logical Noe contains ata elements that are associate with the groun-fault function of the SE-330 as liste in Table 9. NAME TYPE NAME Mo INC stval TABLE 9. GROUND FAULT GFPTOC1 TYPE INT8 DESCRIPTION Moe for whole logical noe (status only): 1 ON 2 Blocke 3 Test 4 Test-blocke 5 OFF Status-Only ctlmoel Beh INS stval INT8 Behavior reflecting moe for whole logical noe: 1 ON 2 Blocke 3 Test 4 Test-blocke 5 OFF Health INS stval INT8 Logical Noe Health: 1 OK No Problems, Normal Operation 2 Warning Minor Problems, but in Safe Operation Moe 3 Alarm Severe Problem, No Operation Possible NamPlt LPL venor swrev Venor Name: Littelfuse Inc. Firmware Version Description: Io> Str ACD general irgeneral INT8 Start. Groun Fault Conition Detecte. Unknown Op ACT general Operate. Groun Fault trippe. StrVal ASG setmag.f FLOAT GF Trip Level [A] as configure through the front-panel GF Trip Level ial. OpDlTmms ING setval INT32 Operate Delay Time [ms] as configure through the front-panel GF Trip Time ial.

20 Page RESISTOR FAULT RFPTOV1 The Resistor Fault Logical Noe contains ata elements associate with the Neutral Grouning Resistor (NGR) monitoring function of the SE-330. The ata elements are liste in Table 10. NAME TYPE NAME Mo INC stval TABLE 10. RESISTOR FAULT RFPTOV1 TYPE INT8 DESCRIPTION Moe for whole logical noe (status only): 1 ON 2 Blocke 3 Test 4 Test-blocke 5 OFF Status Only ctlmoel Beh INS stval INT8 Behavior reflecting moe for whole logical noe: 1 ON 2 Blocke 3 Test 4 Test-blocke 5 OFF Health INS stval INT8 Logical Noe Health: 1 OK No Problems, Normal Operation 2 Warning Minor Problems, but in Safe Operation Moe 3 Alarm Severe Problem, No Operation Possible NamPlt LPL venor swrev Venor Name: Littelfuse Inc. Firmware Version Description: Uo> Str ACD general irgeneral UINT8 Start. Resistor Fault conition etecte. Unknown Op ACT general Operate. Resistor Fault trippe. StrVal ASG setmag.f FLOAT Resistor Fault trip voltage [V] as configure through the front panel VN Trip Level ial. OpDlTmms ING setval INT32 Operate Delay Time [ms]. Fixe at 12,000 ms.

21 Page COMMAND CMDGGIO0 The CMDGGIO0 Logical Noe is use to issue remote trip an remote reset commans. The ata elements inclue in CMDGGIO0 are liste in Table 11. NAME TYPE NAME Mo INC stval TABLE 11. COMMAND CMDGGIO0 TYPE INT8 DESCRIPTION Moe for whole logical noe (status only): 1 ON 2 Blocke 3 Test 4 Test-blocke 5 OFF Status-Only ctlmoel Beh INS stval INT8 Behavior reflecting moe for whole logical noe: 1 ON 2 Blocke 3 Test 4 Test-blocke 5 OFF Health INS stval INT8 Logical Noe Health: 1 OK No Problems, Normal Operation 2 Warning Minor Problems, but in Safe Operation Moe 3 Alarm Severe Problem, No Operation Possible NamPlt LPL venor swrev SPCSO SPC stval Oper.ctlVal ctlmoel Venor Name: Littelfuse Inc. Firmware Version Description: Remote Trip Comman Remote Trip Status Set to 1 to issue a remote trip comman an to 0 to issue a remote reset comman (irect-with-normal-security).

22 Page EVENT RECORD RECGGIO2 The RECGGIO1 Logical Noe provies access to the SE-330 s event recor log. The ata elements inclue in the RECGGIO1 Logical Noe are liste in Table 12. Event recors are reaable from the RECGGIO1 Logical Noe. A BRCB or URCB can be use to sen NAME TYPE NAME Mo INC stval TABLE 12. EVENT RECORD RECGGIO2 TYPE INT8 reports for new event recors as they are generate. A BRCB will also sen reports for all event recors recore since the last power cycle or since the report buffer was last cleare. Event recors that were ae to the SE-330 s internal event recor list before the most recent power cycle are not accessible through the IEC interface. DESCRIPTION Moe for whole logical noe (status only): 1 ON 2 Blocke 3 Test 4 Test-blocke 5 OFF Status-Only ctlmoel Beh INS stval INT8 Behavior reflecting moe for whole logical noe: 1 ON 2 Blocke 3 Test 4 Test-blocke 5 OFF Health INS stval INT8 Logical Noe Health: 1 OK No Problems, Normal Operation 2 Warning Minor Problems, but in Safe Operation Moe 3 Alarm Severe Problem, No Operation Possible NamPlt LPL venor swrev AnIn1 MV mag.f AnIn2 MV mag.f AnIn3 MV mag.f In1 SPS stval In2 SPS stval In3 SPS stval In4 SPS stval In5 SPS stval In6 SPS stval In7 SPS stval In8 SPS stval FLOAT FLOAT FLOAT Venor Name: Littelfuse Inc. Firmware Version Description: Recore Values NGR voltage from event in volts. Description: Recore NGR Voltage NGR current from event in amps. Description: Recore NGR Current NGR resistance change from event in ohms. Description: Recore NGR Resistance Groun Fault Trippe Description: Recore value of Groun Fault Trip from trip fiel status Resistor Fault Trippe Description: Recore value of Resistor Fault Trip from trip fiel status Calibration Error Trippe Description: Recore value of Calibration Error Trip from trip fiel status ADC Error Trippe Description: Recore value of ADC Error from trip fiel status NGR Voltage Fault Trippe Description: Recore value of NGR Voltage Fault Trip from trip fiel status NVRam Error Trippe Description: Recore value of NVRAM Error Trip from trip fiel status Firmware Error Trippe Description: Recore value of Firmware Error Trip from trip fiel status Remote Trippe Description: Recore value of Remote Trip from trip fiel status

23 Page 19 NAME TYPE NAME In9 SPS stval In10 SPS stval In11 SPS stval In12 SPS stval In13 SPS stval In14 SPS stval In15 SPS stval In16 SPS stval In17 SPS stval In18 SPS stval In19 SPS stval TYPE DESCRIPTION Harware Error Trippe Description: Recore value of Harware Error Trip from trip fiel status Groun Fault Exists Description: Recore value of Groun Fault from setpoint status Resistor Fault Exists Description: Recore value of Resistor Fault from setpoint status Calibration Exists Description: Recore value of Calibration Error from setpoint status ADC Error Exists Description: Recore value of ADC Error from setpoint status NGR Voltage Fault Exists Description: Recore value of NGR Voltage Fault from setpoint status NVRam Error Exists Description: Recore value of NVRam Fault from setpoint status CT Error Exists Description: Recore value of CT Error from setpoint status CT Error Trippe Description: Recore value of CT Error Trip from setpoint status SD Car Full Error Exists Description: Recore value of SD Car full from setpoint status Flash Memory Error Exists Description: Recore value of Flash Memory Error from setpoint status NOTES: Data Attribute Types: INT8 8-bit integer value (0-255). Variable length ASCII string, maximum 255 characters. FLOAT Floating point value, precision matches IEEE-754 single. Boolean (TRUE or FALSE). 5. SPECIFICATIONS Protocol... IEC Ports... 2 IP Aresses... 1 per port Number of Connections... 4 total Connectors... Copper an/or fiber, refer to Figs. 1, 2, an 3 an orering information in the prouct manual Fiber: Connector... SC Cable... SC Multimoe Length... 2,000 m (6,561 ) per segment Interface BASE-Fx Center Wavelength nm Operating Wavelength to 1380 nm Copper: Connector... RJ45 Cable... CAT5 Length m (328 ) Interface... 10BASE-T, 100BASE-Tx

24 Page 20 APPENDIX A SE-330 SERIES (NEW REVISION) IEC INTERFACE REVISION HISTORY MANUAL RELEASE DATE MANUAL REVISION December 11, 2017 June 9, 2014 March 4, 2014 MANUAL REVISION HISTORY REVISION 0-C SECTION 2 Note ae. SECTION 5 Specifications upate. REVISION 0-B SECTION 2 Upate Fig. 1. SECTION 3 Upate Figs. 5, 6, 7, 8, an 9. SECTION 4 Attribute CtlMoel ae. Attribute ae. APPENDIX A Upate Revision History. REVISION 0-A Initial release. 0-C B A

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