MiCOM P14x. Feeder Management Relay. Technical Data Sheet P14x/EN TDS/De6. Software Version 44 Hardware Suffix J

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1 MiCOM P14x Feeder Management Relay Software Version 44 Hardware Suffix J Technical Data Sheet P14x/EN TDS/De6 This Document Should be Read Alongside the Technical Manual

2 PROTECTION MiCOM P14x Feeder Management Relays MiCOM P14x feeder management relays provide an integrated solution for the complete protection, control and monitoring of overhead lines and underground cables from distribution to transmission voltage levels. P141, P142, P143 The wide range of auxiliary functions provides the user with sufficient information to efficiently maintain the power system and its components including circuit breakers, CTs, VTs, etc. A customizable, friendly, multilingual user interface and programmable graphical scheme logic allows for simple and flexible applications on any network. With optional High Speed High Break contacts, the high break performance ensures no burnout of contacts during normal operation or situations such as breaker failure, or defective CB auxiliary contacts. The need for external electromechanical trip relays can be reduced/removed by transferring the high rating and durability duties into the MiCOM device thus giving further application and cost benefits. Customer Benefits 1A & 5A in same relay Wide auxiliary supply voltage range Option of multiple communication protocol and interfaces, including IEC User customisable menu text Connecting the relay to virtually any kind of Substation Automation System or SCADA is made possible by the wide range of updated communication protocols, including IEC A range of hardware interfaces are available for easy integration into any new or legacy system. AREVA T&D

3 PROTECTION FUNCTIONS OVERVIEW IEC P141 P142 P143 50/51/67 OcpPTOC/RDIR Directional / nondirectional, instantaneous / time delayed phase overcurrent (6 stage) 50N/51N/67N EfdPTOC/EfmPTOC Directional / nondirectional, instantaneous / time delayed, measured earth fault (4 stage) 67N SenEftPTOC Sensitive directional earthfault (SEF/ I Cosφ I Sinφ) (4 stage) 67W SenEftPTOC Wattmetric earthfault YN Neutral admittance protection 64 SenRefPDIF Restricted earthfault Blocked overcurrent Selective overcurrent Cold load pickup 51V Voltage controlled overcurrent 46 NgcPTOC Directional / nondirectional negative sequence overcurrent 49 ThmPTTR RMS thermal overload (single / dual time constant) 37P / 37N Phase and neutral undercurrent 27 VtpPhsPTUV Under voltage (2 stage) 59 VtpPhsPTOV Over voltage (2 stage) 59N VtpResPTOV Residual over voltage (Neutral displacement) (2 stage) 47 NgvPTOV Negative sequence overvoltage 81U PTUF Under frequency (9 stage) Advanced 81O PTOF Over frequency (9 stage) Advanced 81R PFRC Rate of Change of Freq. Prot. (9 stage) Advanced) 81RF Frequency supervised rate of change of frequency (9 stage) Advanced 81RAV Average rate of change of frequency (9 stage) Advanced Freq. based load restoration (9 stage) Advanced Rate of change of voltage protection (2 stage) BC Broken conductor (open jumper) 50BF RBRF Circuit breaker failure VTS Voltage transformer supervision (1, 2 & 3 phase fuse failure detection) CTS Current transformer supervision 49SR Silicon rectifier overload protection 79 RREC 4 shot three pole auto reclose 25 RSYN Check synchronising 2 nd Harm Block 2 nd Harmonic Blocking 32R/32L/32O Phase segregated power Sensitive power OptGGIO Digital inputs (maximum) * RlyGGIO Output relays (maximum) (Hi Break Hi speed option available)* Front communication port (RS232) Rear communication port (RS485/Optic/Ethernet) * Second rear communication port (RS232/RS485) * Option Option Option Time synchronisation port Option Option Option (IRIG B modulated/unmodulated) * InterMiCOM teleprotection for direct relay relay Option Option Option communication EIA (RS) 232 for MODEM links upto 19.2kbit/sec * It may not be possible to get all in one particular model, refer data sheet for model selection 2>3 Your search for a single box feeder management relay ends with MiCOM P14x

4 APPLICATION The MiCOM P14x range is suitable for all applications where overcurrent protection is required. It is suitable for solidly earthed, impedance earthed, Petersen coil earthed and isolated systems. First application shows a parallel transformer protection where the P141 replaces many of the discrete protection elements normally associated with the LV side of the transformer. The protection includes nondirectional and directional phase overcurrent and earth fault, restricted earth fault and circuit breaker failure protection. The second application shows a P143 protecting a plain feeder using phase overcurrent, sensitive earth fault, negative sequence overcurrent, thermal protection and breaker failure protection. The integral autorecloser with check synchronising can be configured to grade with downstream reclosers. Figure 2a: Typical parallel transformer application P143 51P 51N BF BC P141 51P 51N 67P 67N 64N BF M Typical applications of P14x MANAGEMENT FUNCTIONS In addition to the wide range of protection functions listed in the table, all relays in the P14x range are provided with the following measurement, control, monitoring, post fault analysis and selfdiagnostic functions. > Measurement of all instantaneous & integrated values > Circuit breaker control, status & condition monitoring. > Trip circuit and coil supervision > 4 alternative setting groups > Control inputs > Fault locator > Programmable scheme logic > Programmable allocation of digital inputs and outputs > Sequence of event recording > Comprehensive disturbance recording (waveform capture) > User configurable LEDs > Local and remote communication ports > Multiple communication protocol and interface options > Time synchronisation > Fully customisable menu texts > Multi level password protection > Powerup diagnostics and continuous selfmonitoring of relay > User friendly setting and analysis software > Read Only Mode > Enhanced opto input time stamping > Enhanced Check Sync. feature IEC nd Remote comm. port Remote comm. port Local Communication Fault records Disturbance Record Self monitoring Measurements X 50/51 V ref 50N/ 51N 67/ 67N 67N/67W /64 51V P/ 37N YN 49SR CTS I V I E sen 27/ 59 81U/81O 59N 47 50BF /81R VTS PSL LEDs Y Binary Input / output always available optional Feeder management P14x FUNCTIONAL OVERVIEW (Description of ANSI code nos. see Protection Function Overview)

5 PHASE OVERCURRENT Six independent stages are available for each phase overcurrent element. Each stage may be selected as nondirectional or directional (forward/reverse). All stages have definite time delayed characteristics, three of the stages may also be independently set to one of ten IDMT curves (IEC and IEEE). The IDMT stages have a programmable reset timer for grading electromechanical, to reduce autoreclose dead times and to reduce clearance times where intermittent faults occur. The phase fault directional elements are internally polarised by quadrature phasephase voltages, and will make a correct directional decision down to: 0.5V (Vn = V) or 2.0V (Vn = V). A synchronous polarising signal is maintained for 3.2s after voltage collapse to ensure that the instantaneous and time delayed overcurrent elements operate correctly for closeup three phase faults. STANDARD EARTH FAULT There are two standard earth fault elements, each with four independent stages. > The first element operates from measured quantities: Earth fault current which is directly measured using a separate CT, or Residual connection of the three line CTs > The second standard earth fault element operates from a residual current that is derived internally from the summation of the three phase currents. All earth fault elements have the same directionality and IDMT characteristics as the phase overcurrent element. Both earth fault elements may be enabled at the same time providing directional earth fault protection and backup standby earth fault protection in the same device. The directionality of the earth fault elements is provided by either residual voltage or negative sequence voltage. SENSITIVE EARTH FAULT A core balance CT should be used to drive the sensitive earth fault function. The directionality of the sensitive earth fault element is provided by the residual voltage. WATTMETRIC As an alternative to the directional earthfault characteristic a directional I cos φ characteristic can be used for Petersen coil earth fault protection using the sensitive earth fault input. A directional I sin φ characteristic is also available for protection of insulated feeders. BLOCKED OVER CURRENT Each stage of overcurrent and earth fault protection can be blocked by an optically isolated input. This enables overcurrent and earth fault protection to integrate into a blocked overcurrent busbar protection scheme. COLD LOAD PICKUP LOGIC Cold load pickup temporarily raises the overcurrent settings following closure of the circuit breaker, allowing the protection settings to be set closer to the load profile. RESTRICTED EARTH FAULT The restricted earth fault protection provided for protection of transformer winding against earth faults may be configured as either high impedance or low impedance biased differential. IEC/UK curves TMS = 1 Choice of IDMT characteristics IEEE/US curves TD = REF biased differential characteristics Operating time (s) Operating time (s) 10 UK LTI I DIFF Operate K1 0% to 20% 1 IEC SI RECT IEC VI 1 IEEE MI IEEE VI US CO2 I s1 K1 K2 Restrain K2 0% to 150% I I s to 1. 0In s to 1. 5In Current (Multiples of Is) IEC EI Current (Multiples of Is) US CO8 IEEE EI 100 I s2 I BIAS 4>5 Features carefully designed to protect any type of system

6 2 nd HARMONIC BLOCKING The 2 ND Harmonic Blocking detects high inrush current inflows that occur when transformers or machines are connected. The function will block the Phase over current, Earth fault, Sensitive Earth fault and Negative sequence over current. VOLTAGE CONTROLLED OVERCURRENT Voltage controlled overcurrent provides backup protection for remote phase faults whilst remaining insensitive to load. NEGATIVE SEQUENCE OVERCURRENT Negative sequence overcurrent protection can be set as either nondirectional or directional (forward/reverse), and can operate for remote phasephase and phase earth faults even with deltastar transformers present. RMS THERMAL OVERLOAD Thermal overload protection provides both alarm and trip stages. The thermal element may be set with either a single time constant characteristic for the protection of cables or dry transformers, or a dual time constant characteristic to protect oil filled transformers. In the event of loss of auxiliary supply, the thermal state is stored in nonvolatile memory. UNDER/OVERVOLTAGE & RATE OF CHANGE OF VOLTAGE Under/over voltage protection may be configured to operate from either phasephase or phaseneutral quantities. Two independent stages with definite time elements are available, one of the stages can also be configured to an inverse characteristic. Two stages of rate of change of voltage protection elements are also available, which are independently settable. RESIDUAL OVERVOLTAGE Residual overvoltage protection is available for detecting earth faults in high impedance earthed or isolated systems. The neutral voltage is derived from the three phase voltage inputs. Two independent measuring elements with definite time characteristics are available, one of the elements can also be configured to have an inverse characteristic. FREQUENCY Nine stages each of over frequency, under frequency, rate of change of frequency, frequency supervised rate of change of frequency, average rate of change of frequency, frequency based load shedding during severe system disturbances. BROKEN CONDUCTOR The broken conductor protection detects unbalanced conditions caused by broken conductors, maloperation of single phase of switchgear or by single phasing conditions. It operates on the ratio of I2 to I1. PHASE SEGREGATED POWER Two stages of power protection are provided and each stage can be independently configured to operate as Over power or Under Power and Forward or Reverse direction. The relays provide a standard 3 phase power protection element and also a single phase power protection element. SENSITIVE POWER Two stages of sensitive power protection are provided and these can be independently selected as reverse power, over power, low forward power or disabled depending upon the operating condition. VOLTAGE TRANSFORMER SUPERVISION Voltage transformer supervision is provided to detect loss of one, two or three VT signals, providing indication and inhibition of voltage dependent protection elements. An optically isolated input may also be configured to initiate the voltage transformer supervision alarm and blocking when used with MCBs or other external forms of voltage transformer supervision. CURRENT TRANSFORMER SUPERVISION Current transformer supervision is provided to detect loss of phase CT signals and inhibit the operation of current dependent protection elements. PROGRAMMABLE SCHEME LOGIC Programmable scheme logic allows the user to customize the protection and control functions. It is also used to programme the functionality of the optically isolated inputs, relay outputs and LED indications.the programmable scheme logic comprises of gate logic and general purpose timers.the gate logic includes OR, AND and majority gate functions, with the ability to invert the inputs and outputs, and provide feedback.the programmable scheme logic is configured using the graphical MiCOM S1 Studio PC based support software. Programmable scheme logic editor (MiCOM S1 Studio)

7 CIRCUIT BREAKER FAILURE PROTECTION Two stage circuit breaker failure protection may be used for tripping upstream circuit breakers and retripping of the local circuit breaker if required. The circuit breaker failure logic may also be initiated externally from other protection devices if required. CIRCUIT BREAKER CONTROL Circuit breaker control is available from the front panel user interface, optically isolated inputs and remotely via the substation communications. AUTORECLOSE WITH CHECK SYNCHRONISING The P142 and P143 provide threepole multishot autoreclose. The user may select a single, two, three or four shot autoreclose cycle, with independently settable dead times and reclaim time. Autoreclose can be initiated from the internal protection elements or from external protection via an opto input. Advanced features include live line working and sequence coordination (coordination with downstream reclosing equipment). The P143 also includes check synchronisation. MEASUREMENT AND RECORDING FACILITIES The P14x series is capable of measuring and storing the values of a wide range of quantities. All events, fault and disturbance records are time tagged to a resolution of 1ms using an internal real time clock. An optional IRIGB port is also provided for accurate time synchronization. A lithium battery provides backup for the real time clock and all records in the event of auxiliary supply failure. This battery is supervised and easily replaced from the front of the relay. MEASUREMENTS The measurements provided, which may be viewed in primary or secondary values, can be accessed by the backlit liquid crystal display, or the communications ports. A wide range of instantaneous and integrated parameters are available. The list includes measured signals like phase currents and voltages and computed signals like Power, frequency, energy, etc. Phase currents and phase to neutral voltages are available in true rms and fundamental quantities. Phase notation is user definable using the MiCOM S1 text editor. FAULT LOCATION A fault location algorithm provides distance to fault in miles, kilometres, ohms or percentage of line length EVENT RECORDS Up to 512 timetagged event records are stored in battery backed memory, and can be extracted using the communication ports or viewed on the front panel display. DISTURBANCE RECORDS The internal disturbance recorder has 8 analogue channels, 32 digital and 1 time channel. Approximately 50 records of 0.5 s duration can be stored. All channels and the trigger source are user configurable. Disturbance records can be extracted from the relay via the remote communications and saved in the COMTRADE format. These records may be examined using MiCOM S1 or any suitable software program. TRIP CIRCUIT SUPERVISION Supervision of the trip circuit in both circuit breaker open and closed states can be realised using the optically isolated inputs and programmable scheme logic. Disturbance record viewed in MiCOM S1 Studio 6>7

8 FAULT RECORDS Records of the last 5 faults are stored in battery backed memory. The information provided in the fault record includes: > Indication of faulted phase > Protection operation > Active setting group > Date and time > Fault location > Relay and CB operating time > Currents, voltages and frequency CIRCUIT BREAKER CONDITION MONITORING The circuit breaker condition monitoring features include: > Monitoring the number of breaker trip operations > Recording the sum of the broken current quantity ΣI x, 1,0 x 2,0 > Monitoring the breaker operating time > Fault frequency counter LOCAL AND REMOTE COMMUNICATIONS Two communication ports are available as standard; a rear port providing remote communications and a front port providing local communications. The front RS232 port has been designed for use with MiCOM S1, which fully supports functions within the relay by providing the ability to programme the settings offline, configure the programmable scheme logic, extract and view event, disturbance and fault records, view the measurement information dynamically and perform control functions. The default remote communications are based on RS485 voltage levels. Any of the protocols listed below can be chosen at the time of ordering. > Courier / Kbus > Modbus > IEC (optic interface also available) > DNP 3.0 > IEC (over 100 Mbit/s fiber/copper Ethernet) Information Interfaces IEC is available when the optional Ethernet port is ordered. IEC offers highspeed data exchange, peertopeer communication, reporting, disturbance record extraction and time synchronization. Redundant Ethernet is available in various options (Self healing ring, RSTP and Dual homing star). P14x has 128 virtual inputs with an improved GOOSE performance. An optional second rear courier port is available which may be configured as RS232, RS485 or KBus. DIAGNOSTICS Automatic tests performed including poweron diagnostics and continuous selfmonitoring ensure a high degree of reliability. The results of the selftest functions are stored in battery backed memory. Test features available on the user interface provide examination of input quantities, states of the digital inputs and relay outputs. A local monitor port provides digital outputs, selected from a prescribed list of signals, including the status of protection elements. These test signals can also be viewed using the communication ports and front panel user interface. HARDWARE All models within the MiCOM P14x series include: > A backlit liquid crystal display > 12 LEDs (8 programmable) > An optional IRIGB port > An RS232 port & an RS485 port > An optional RS232/RS485/KBus port > An optional ethernet port for IEC protocol > A download/monitor port > A battery (supervised) > N/O and N/C watchdog contacts > Supervised 48V field voltage > 1A/5A dual rated CTs Expansion cards are available to increase the number of digital inputs and outputs for the P142 and P143. Also, depending on the relay model, up to eight High SpeedHi Break contacts are available as an option. This will protect against burnt contacts due to a stuck breaker or defective breaker auxiliary contact conditions. The optically isolated inputs are independent and may be powered from the 48V field voltage. The relay outputs may be configured as latching or self reset. All CT connections have integral shorting. COMM1 SCADA / substation control interface HMI Full access to all settings, signals and measurands MODEM MODEM COMM2 Remote access by protection engineer Different communication interfaces of P14x PC Local access by protection engineer P14x provides uptodate versatile communication options.

9 Technical Data Mechanical Specifications Design Modular MiCOM Px40 platform relay, P141/142/P14440TE (206mm (8 )) case and P143/P145 (309.6mm (12 )) case. Mounting is front of panel flush mounting, or 19 rack mounted (ordering options). Enclosure Protection Per IEC 60529: 1992 IP 52 Protection (front panel) against dust and dripping water. IP 50 Protection for the rear and sides of the case against dust. IP 10 Product safety protection for the rear due to live connections on the terminal block. Weight Case 40TE: approx. 7.3 kg Case 60TE: approx. 9.2 kg Terminals AC Current and Voltage Measuring Inputs Located on heavy duty (black) terminal block: Threaded M4 terminals, for ring lug connection. CT inputs have integral safety shorting, upon removal of the terminal block. General Input/Output Terminals For power supply, opto inputs, output contacts and COM1 rear communications. Located on general purpose (grey) blocks: Threaded M4 terminals, for ring lug connection. Case Protective Earth Connection Two rear stud connections, threaded M4. Must be earthed (grounded) for safety, minimum earth wire size 2.5mm 2. Front Port Serial PC Interface EIA(RS)232 DTE, 9 pin Dtype female connector. Courier protocol for interface to MiCOM S1 software. Isolation to ELV level. Maximum cable length 15m. Rear Communications Port EIA(RS)485 signal levels, two wire Connections located on general purpose block, M4 screw. For screened twisted pair cable, multidrop, 1000m max. For KBus, IEC , or DNP3 protocol (ordering options). Isolation to SELV level. Optional Second Rear Communications Port EIA(RS)232, 9 pin Dtype female connector, socket SK4. Courier protocol: KBus, EIA(RS)232, or EIA(RS)485 connection. Isolation to SELV level. Optional Rear IRIGB Interface modulated or unmodulated BNC socket Isolation to SELV level. 50 ohm coaxial cable. Optional Rear Fiber Connection for SCADA/DCS BFOC 2.5 (ST )interface for glass fiber, as per IEC nm shorthaul fibers, one Tx and one Rx. For Courier, IEC , DNP3 or MODBUS protocol (ordering options). Optional Rear Ethernet Connection for IEC or DNP3.0 Optional redundant Rear Ethernet Connection (optical) 10BaseT/100BaseTX Communications Interface in accordance with IEEE802.3 and IEC Isolation: 1.5kV Connector type: RJ45 Cable type: Screened Twisted Pair (STP) 100 Base FX Interface Interface in accordance with IEEE802.3 and IEC Wavelength: 1300nm Fiber: multimode 50/125µm or 62.5/125µm Connector style: BFOC 2.5 (ST ) Front Download/Monitor Port EIA(RS)232, 25 pin Dtype female connector. For firmware downloads. Isolation to ELV level. P14x Technical Data Sheet 8 P14x Software Version 0440J

10 Ratings AC Measuring Inputs Nominal frequency: 50 and 60 Hz (settable) Operating range: 45 to 65Hz Phase rotation: ABC AC Current Nominal current (In): 1 and 5 A dual rated. (1A and 5A inputs use different transformer tap Connections, check correct terminals are wired). Nominal burden per phase: < 0.15 VA at In Thermal withstand: continuous 4 In for 10s: 30 In for 1s; 100 In Linear to 64 In (nonoffset AC current). AC Voltage Nominal voltage (Vn): 100 to 120 V or 380 to 480V phasephase (min. 196 Vac, max. 560 Vac). Nominal burden per phase: < 0.02 VA at Vn. Thermal withstand: continuous 2 Vn for 10s: 2.6 Vn Power Supply Auxiliary Voltage (Vx) Three ordering options: (i) Vx: 24 to 48 Vdc (ii) Vx: 48 to 110 Vdc, and 40 to 100Vac (rms) (iii) Vx: 110 to 250 Vdc, and 100 to 240Vac (rms) Operating Range (i) 19 to 65V (dc only for this variant) (ii) 37 to 150V (dc), 32 to 110V (ac) (iii) 87 to 300V (dc), 80 to 265V (ac) With a tolerable ac ripple of up to 12% for a dc supply, per IEC : Nominal Burden Quiescent burden: 11W. (Extra 1.25W when fitted with second rear Courier) Additions for energized binary inputs/outputs: Per opto input: 0.09W (24 to 54V), 0.12W (110/125V), 0.19W (220/120V). Per energized output relay: 0.13W Power Supply Interruption Per IEC : 1979 The relay will withstand a 20ms interruption in the DC auxiliary supply, without deenergizing. Per IEC : 1994 The relay will withstand a 20ms interruption in an AC auxiliary supply, without deenergizing. Battery Backup Front panel mounted Type ½ AA, 3.6V (SAFT advanced battery reference LS14250) Battery life (assuming relay energized for 90% time) >10 years Field Voltage Output Regulated 48Vdc Current limited at 112mA maximum output Digital ( Opto ) Inputs Universal opto inputs with programmable voltage thresholds (24/27, 30/34, 48/54, 110/125, 220/250V). May be energized from the 48V field voltage, or the external battery supply. Rated nominal voltage: 24 to 250Vdc Operating range: 19 to 265Vdc Withstand: 300Vdc, 300Vrms. Peak current of opto input when energized is 3.5mA (0300V) Nominal pickup and reset thresholds: Nominal battery 24/27: 60 80% DO/PU (logic 0) <16.2 (logic 1) >19.2 Nominal battery 24/27: 50 70% DO/PU (logic 0) <12.0 (logic 1) >16.8 Nominal battery 30/34: 60 80% DO/PU (logic 0) <20.4 (logic 1) >24.0 Nominal battery 30/34: 50 70% DO/PU (logic 0) <15.0 (logic 1) >21.0 Nominal battery 48/54: 60 80% DO/PU (logic 0) <32.4 (logic 1) >38.4 Nominal battery 48/54: 50 70% DO/PU (logic 0) <24.0 (logic 1) >33.6 Nominal battery 110/125: 60 80% DO/PU (logic 0) <75.0 (logic 1) >88.0 Nominal battery 110/125: 50 70% DO/PU (logic 0) <55.0 (logic 1) >77.0 Nominal battery 220/250: 60 80% DO/PU (logic 0) <150.0 (logic 1) >176.0 Nominal battery 220/250: 50 70% DO/PU (logic 0) <110 (logic 1) >154 Recognition time: <2ms with long filter removed, <12ms with half cycle ac immunity filter on Powerup Time Time to power up < 11s. P14x Technical Data Sheet 9 P14x Software Version 0440J

11 Output Contacts Standard Contacts General purpose relay outputs for signaling, tripping and alarming: Continuous Carry Ratings (Not Switched): Maximum continuous current: 10A (UL: 8A) Short duration withstand carry: 30A for 3s 250A for 30ms Rated voltage: 300 V Make & Break Capacity: DC: 50W resistive DC: 62.5W inductive (L/R = 50ms) AC: 2500VA resistive (cos φ = unity) AC: 2500VA inductive (cos φ = 0.7) Make, Carry: 30A for 3 secs, dc resistive, 10,000 operations (subject to the above limits of make/break capacity and rated voltage) Make, Carry & Break: 30A for 200ms, ac resistive, 2,000 operations (subject to the above limits of make/break capacity & rated voltage) 4A for 1.5 secs, dc resistive, 10,000 operations (subject to the above limits of make/break capacity & rated voltage) 0.5A for 1 sec, dc inductive, 10,000 operations (subject to the above limits of make/break capacity & rated voltage) 10A for 1.5 secs, ac resistive/inductive, 10,000 operations (subject to the above limits of make/break capacity & rated voltage) Durability: Loaded contact: operations minimum Unloaded contact: operations minimum Operate Time Less than 5ms Reset Time Less than 5ms High Break Contacts (Model D Only) Continuous Carry Ratings (Not Switched): Maximum continuous current: 10A Short duration withstand carry: 30A for 3s 250A for 30ms Rated voltage: 300 V Make & Break Capacity: DC: 7500W resistive DC: 2500W inductive (L/R = 50ms) Make, Carry: 30A for 3 secs, dc resistive, 10,000 operations (subject to the above limits of make/break capacity & rated voltage) Make, Carry & Break: 30A for 3 secs, dc resistive, 5,000 operations (subject to the above limits of make/break capacity & rated voltage) 30A for 200 ms, dc resistive, 10,000 operations (subject to the above limits of make/break capacity & rated voltage) 10A (*), dc inductive, 10,000 operations (subject to the above limits of make/break capacity & rated voltage) *Typical for repetitive shots 2 minutes idle for thermal dissipation Voltage Current L/R No. of Shots in 1 sec 65V 10A 40ms 5 150V 10A 40ms 4 250V 10A 40ms 2 250V 10A 20ms 4 MOV protection: Max Voltage 330V dc Durability: Loaded contact: operations minimum Unloaded contact: operations minimum Operate Time: Less than 0.2ms Reset Time: Less than 8ms Watchdog Contacts Nonprogrammable contacts for relay healthy/relay fail indication: Breaking capacity: DC: 30W resistive DC: 15W inductive (L/R = 40ms) AC: 375VA inductive (cos φ = 0.7) P14x Technical Data Sheet 10 P14x Software Version 0440J

12 IRIGB 12X Interface (Modulated) External clock synchronization per IRIG standard 20098, format B12X. Input impedance 6kΩ at 1000Hz Modulation ratio: 3:1 to 6:1 Input signal, peakpeak: 200mV to 20V IRIGB 00X Interface (Unmodulated) External clock synchronization per IRIG standard 20098, format B00X. Input signal TTL level Input impedance at dc 10kΩ Environmental Conditions Ambient Temperature Range Per IEC : 1988 Operating temperature range: 25 C to 55 C (or 13 F to 131 F). Storage and transit: 25 C to 70 C (or 13 F to 158 F). Ambient Humidity Range Per IEC : 1969: 56 days at 93% relative humidity and 40 C Per IEC : 1980: Damp heat cyclic, six (12 12) hour cycles, 93% RH, 25 to 55 C Also, between all terminals of independent circuits. 1kV rms AC for 1 minute, across open watchdog contacts. 1kV rms AC for 1 minute, across open contacts of changeover output relays. (ii) Per ANSI/IEEE C (reaffirmed 1994): 1.5 kv rms AC for 1 minute, across open contacts of changeover output relays. Impulse Voltage Withstand Test Per IEC : 2005 Front time: 1.2 µs, Time to halfvalue: 50 µs, Peak value: 5 kv, 0.5J Between all terminals, and all terminals and case earth. Electromagnetic Compatibility (EMC) 1 MHz Burst High Frequency Disturbance Test Per IEC : 1988, Class III, Commonmode test voltage: 2.5 kv, Differential test voltage: 1.0 kv, Test duration: 2s, Source impedance: 200Ω EIA(RS)232 ports excepted. Corrosive Environments Per IEC : 1995, Part 2, Test Ke, Method (class) 3 Industrial corrosive environment/poor environmental control, mixed gas flow test. Industrial corrosive environment 21 days at 75% relative humidity and 30 C exposure to elevated concentrations of H 2 S, NO 2, Cl 2, SO 2 Type Tests Insulation Per IEC : 2005 Insulation resistance > 100MΩ at 500Vdc (Using only electronic/brushless insulation tester). Creepage Distances and Clearances Per EN : 2001 Pollution degree 2, Overvoltage category III, Impulse test voltage 5 kv. High Voltage (Dielectric) Withstand EIA(RS)232 ports excepted. (i) Per IEC : 2005, 2 kv rms AC, 1 minute: Between all case terminals connected together, and the case earth. 100kHz Damped Oscillatory Test Per EN : 2007: Level 3 Common mode test voltage: 2.5kV Differential mode test voltage: 1kV Immunity to Electrostatic Discharge Per IEC : 1996, Class 4, 15kV discharge in air to user interface, display, and exposed metalwork. Per IEC : 1996, Class 3, 8kV discharge in air to all communication ports. 6kV point contact discharge to any part of the front of the product. Electrical Fast Transient or Burst Requirements Per IEC : Test severity Class III and IV: Amplitude: 2 kv, burst frequency 5kHz (Class III), Amplitude: 4 kv, burst frequency 2.5kHz (Class IV). Applied directly to auxiliary supply, and applied to all other inputs. EIA(RS)232 ports excepted. P14x Technical Data Sheet 11 P14x Software Version 0440J

13 Surge Withstand Capability IEEE/ANSI C :2002: 4kV fast transient and 2.5kV oscillatory applied common mode and differential mode to opto inputs (filtered), output relays, CTs, VTs, power supply, field voltage. 4kV fast transient and 2.5kV oscillatory applied common mode to communications, IRIG B. Surge Immunity Test EIA(RS)232 ports excepted. Per IEC : 2005 Level 4, Time to halfvalue: 1.2/50 µs, Amplitude: 4kV between all groups and case earth, Amplitude: 2kV between terminals of each group. Immunity to Radiated Electromagnetic Energy Per IEC : 2000, Class III: Test field strength, frequency band 80 to 1000 MHz: 10 V/m, Test using AM: 1 khz / 80%, Spot tests at 80, 160, 450, 900 MHz Per IEEE/ANSI C : 1995: 25MHz to 1000MHz, zero and 100% square wave modulated. Field strength of 35V/m. Radiated Immunity from Digital Communications Per EN : 2002, Level 4: Test field strength, frequency band 800 to 960 MHz, and 1.4 to 2.0 GHz: 30 V/m, Test using AM: 1 khz / 80%. Radiated Immunity from Digital Radio Telephones Per ENV 50204: V/m, 900MHz and 1.89GHz. Immunity to Conducted Disturbances Induced by Radio Frequency Fields Per IEC : 1996, Level 3, Disturbing test voltage: 10 V Power Frequency Magnetic Field Immunity Per IEC : 1994, Level 5, 100A/m applied continuously, 1000A/m applied for 3s. Per IEC : 1993, Level 5, 1000A/m applied in all planes. Per IEC : 1993, Level 5, 100A/m applied in all planes at 100kHz/1MHz with a burst duration of 2s. Conducted Emissions Per EN 55022: 1998: Class A: MHz, 79dBμV (quasi peak) 66dBμV (average) MHz, 73dBμV (quasi peak) 60dBμV (average). Radiated Emissions Per EN 55022: 1998: Class A: MHz, 40dBμV/m at 10m measurement distance 230 1GHz, 47dBμV/m at 10m measurement distance. EU Directives EMC Compliance Per 89/336/EEC: Compliance to the European Commission Directive on EMC is claimed via the Technical Construction File route. Product Specific Standards were used to establish conformity: EN50263: 2000 Product Safety Per 2006/95/EC: Compliance to the European Commission Low Voltage Directive. (LVD) is demonstrated using a Technical File. A product specific standard was used to establish conformity. EN : 2005 R&TTE Compliance Radio and Telecommunications Terminal Equipment (R&TTE) directive 99/5/EC. Compliance demonstrated by compliance to both the EMC directive and the Low voltage directive, down to zero volts. Applicable to rear communications ports. ATEX Compliance ATEX Potentially Explosive Atmospheres directive 94/9/EC, for equipment. The equipment is compliant with Article 1(2) of European directive 94/9/EC. It is approved for operation outside an ATEX hazardous area. It is however approved for connection to Increased Safety, Ex e, motors with rated ATEX protection, Equipment Category 2, to ensure their safe operation in gas Zones 1 and 2 hazardous areas. CAUTION Equipment with this marking is not itself suitable for operation within a potentially explosive atmosphere. P14x Technical Data Sheet 12 P14x Software Version 0440J

14 Compliance demonstrated by Notified Body certificates of compliance. II (2) G Mechanical Robustness Vibration Test Per IEC : 1996 Response Class 2 Endurance Class 2 Shock and Bump Per IEC : 1995 Shock response Class 2 Shock withstand Class 1 Bump Class 1 Seismic Test Per IEC : 1995 Class 2 P14x Third Party Compliances Underwriters Laboratory (UL) File Number: E Issue Date: (Complies with Canadian and US requirements). Energy Networks Association (ENA) Certificate Number: 101 Issue 3 Assessment Date: Type (s): P141, P142, P143 & P145 P14x Technical Data Sheet 13 P14x Software Version 0440J

15 Protection Functions Three Phase Overcurrent Protection Accuracy Additional tolerance X/R ratios: ±5% over X/R 1 90 Overshoot: <30ms Inverse Time Characteristic Accuracy DT Pickup: Setting ±5% Minimum IDMT trip level: 1.05 x setting ±5% Dropoff: 0.95 x setting ±5% IDMT shape: ±5% or 40ms whichever is greater IEEE reset: ±5% or 50ms whichever is greater DT operation: ±2% or 50ms, whichever is greater DT reset: ±5% Directional boundary (RCA ±90%): ±2% hysteresis 2 Characteristic: UK curves IEC US curves: IEEEC Earth/Sensitive Fault Protection Earth Fault 1 DT Pickup: Setting ±5% Minimum IDMT trip level: 1.05 x Setting ±5% Dropoff: 0.95 x Setting ±5% IDMT shape: ±5% or 40ms whichever is greater * IEEE reset: ±5% or 50ms whichever is greater DT operation: ±2% or 50ms whichever is greater DT reset: ±5% Repeatability: 2.5% * Reference conditions TMS = 1, TD = 1 and IN> setting of 1A operating range 220In Earth Fault 2 DT Pickup: Setting ±5% Minimum IDMT Trip level: 1.05 x Setting ±5% Dropoff: 0.95 x Setting ±5% IDMT shape: ±5% or 40ms whichever is greater * IEEE reset: ±10% or 40ms whichever is greater DT operation: ±2% or 50ms whichever is greater DT reset: ±2% or 50ms whichever is greater Repeatability: ±5% * Reference conditions TMS = 1, TD = 1 and IN > setting of 1A, operating range 220In SEF DT Pickup: Setting ±5% Minimum IDMT Trip level: 1.05 x Setting ±5% Dropoff: 0.95 x Setting ±5% IDMT shape: ±5% or 40ms whichever is greater * IEEE reset: ±7.5% or 60ms whichever is greater DT operation: ±2% or 50ms whichever is greater DT reset: ±5% Repeatability: ±5% * Reference conditions TMS = 1, TD = 1 and IN > setting of 100mA, operating range 20In REF Pickup: Setting formula ±5% Dropoff: 0.80 x setting formula ±5% Operating time: <60ms High pick up: Setting ±5% High operating time: <30ms Repeatability: <15% Wattmetric SEF Pickup For P=0W ISEF> ±5% or P> ±5% Drop off: For P>0W (0.95 x ISEF>) ±5% or 0.9 x P> ±5% Boundary accuracy: ±5% with 1 hysteresis Repeatability: 5% SEF Cos(PHI)/ Pickup: Setting ±5% for angles RCA±60 Dropoff: 0.90 x Setting IDMT shape: ±5% or 50ms whichever is greater * IEEE reset: ±7.5% or 60ms whichever is greater DT operation: ±2% or 50ms whichever is greater DT reset: ±5% Repeatability: 2% * Reference conditions TMS = 1, TD = 1 and IN > setting of 100mA, operating range 20In SEF Sin(PHI) Pickup: Setting ±5% for angles from RCA±60 to RCA±90 Dropoff: 0.90 x Setting IDMT shape: ±5% or 50ms whichever is greater * P14x Technical Data Sheet 14 P14x Software Version 0440J

16 IEEE reset: ±7.5% or 60ms whichever is greater DT operation: ±2% or 50ms whichever is greater DT reset: ±5% Repeatability: 2% Reference conditions TMS = 1, TD = 1 and IN > setting of 100mA, operating range 20In Zero Polarizing Operating pickup: ±2% of RCA ±90% Hysteresis: <3 VN > Pickup: Setting ±10% VN > Dropoff: 0.9 x Setting ±10% Negative Polarizing Operating Pickup: ±2% of RCA ±90% Hysteresis: <3 VN 2 > Pickup: Setting ±10% VN 2 > Dropoff: 0.9 x Setting ±10% I2 > Pick up: Setting ±10% I2 > Dropoff: 0.9 x Setting ±10% Negative Sequence Overcurrent Accuracy DT Pickup: Setting ±5% Minimum IDMT trip level: 1.05 x Setting ±5% Dropoff: 0.95 x Setting ±5% IDMT shape: ±5% or 40ms whichever is greater IEEE reset: ±5% or 50ms whichever is greater DT operation: ±2% or 50ms, whichever is greater DT reset: ±5% Directional boundary (RCA ±90%): ±2% hysteresis 2 Characteristic: UK curves IEC US curves: IEEEC Reverse/Low Forward/Over Power Protection Accuracy Pickup: Setting ±10% Reverse/Over Power drop off: 0.95 x Setting ±10% Low forward Power drop off: 1.05xSetting10% Angle variation pickup: Expected pickup angle ±2 degree Angle variation dropoff: Expected dropoff angle ±2.5 degree Operating time: ±2% or 50ms whichever is greater Repeatability: <5% Disengagement time: <50ms treset: ±5% Instantaneous operating time: < 50ms Sensitive Reverse/Low Forward/ Over Power (1 Phase) Accuracy Pickup: Setting ±10% Reverse/Over power Dropoff: 0.9 of setting ±10% Low forward power Dropoff: 1.1 of Setting ±10% Angle variation Pickup: Expected pickup angle ±2 degree Angle variation Dropoff: Expected dropoff angle ±2.5% degree Operating time: ±2% or 50ms whichever is greater Repeatability: <5% Disengagement time: <50ms treset: ±5% Instantaneous operating time: <50ms Under Voltage Protection Accuracy DT Pickup: Setting ±5% IDMT Pickup: Setting ±5% Dropoff: 1.02 x Setting ±5% IDMT shape: ±2% or 50ms whichever is greater DT operation: ±2% or 50ms whichever is greater Reset: <75ms Repeatability: <1% Over Voltage Protection Accuracy DT Pickup: Setting ±5% IDMT Pickup: Setting ±5% Dropoff: 0.98 x Setting ±5% IDMT shape: ±2% or 50ms whichever is greater DT operation: ±2% or 50ms whichever is greater Reset: <75ms Repeatability: <1% P14x Technical Data Sheet 15 P14x Software Version 0440J

17 Rate of Change of Voltage dv/dt Protection Accuracy for 110V VT Tolerance: 1% or 0.07, whichever is greater Pickup: Setting ± tolerance Dropoff: (Setting 0.07) ± tolerance for positive direction Dropoff: (Setting 0.07) ± tolerance for negative direction Operating [(Avg.cycle*20)60]ms Reset 40ms Neutral Displacement/Residual Voltage Accuracy Pickup: Setting ±5% or 1.05 x Setting ±5% Dropoff: 0.95 x Setting ±5% IDMT shape: ±5% or 65ms whichever is greater DT operation: ±2% or 20ms whichever is greater <55ms Reset: <35ms Repeatability: <10% Underfrequency Protection Accuracy Pickup: Setting ±0.025Hz Dropoff: 1.05 x Setting ±0.025Hz DT operation: ±2% or 50ms whichever is greater * * The operating time will also include a time for the relay to frequency track (20Hz/second) Overfrequency Protection Accuracy Pickup: Setting ±0.025Hz Dropoff: 0.95 x Setting ±0.025Hz DT operation: ±2% or 50ms whichever is greater * * The operating will also include a time for the relay to frequency track (20Hz/ second) Advanced Over/Under Frequency ft Protection [81U/81O] Operating timer: ±2% or 50ms whichever is greater Operating & Reset Time Operating time* (underfrequency): <100ms for Fs/Ff ratios less than 2 <160ms for Fs/Ff ratios less than 6 <230ms otherwise Operating time* (overfrequency): <125ms for Fs/Ff ratios less than 2 <150ms for Fs/Ff ratios less than 30 <200ms otherwise Reset time*: <200ms * Reference conditions: Tested using step changes in frequency with Freq.Av.Cycles setting = 0 and no intentional time delay. Fs/Ff ratios as stated, where: Fs = start frequency frequency setting Ff = frequency setting end frequency Advanced Frequency Supervised Rate of Change of Frequency fdf/dt Protection [81RF] Accuracy Pickup: Setting±10mHz (frequency threshold) Setting ±3% or ±10mHz/s, whichever is greater (df/dt threshold) Dropoff (frequency threshold): Setting 20mHz, ±10mHz (underfrequency) Setting 20mHz, ±10mHz (overfrequency) Dropoff (df/dt threshold, falling frequency): Setting 0.005Hz/s, ±10mHz/s (for settings between 0.01Hz/s and 0.1Hz/s) Setting 0.05Hz/s, ±5% or ±55mHz/s, whichever is greater (for settings greater than 0.1Hz/s) Dropoff (df/dt threshold, rising frequency): Setting 0.005Hz/s, ±10mHz/s (for settings between 0.01Hz/s and 0.1Hz/s) Setting 0.05Hz/s, ±5% or ±55mHz/s, whichever is greater (for settings greater than 0.1Hz/s) Operating & Reset Time Instantaneous operating time: <125ms for Freq.Av.Cycles setting = 0 Reset time: <400ms for df/dt.av.cycles setting = 0 Accuracy Pickup: Setting±10mHz Dropoff: Setting 20mHz, ±10mHz (underfrequency) Setting 20mHz, ±10mHz (overfrequency) P14x Technical Data Sheet 16 P14x Software Version 0440J

18 Advanced Independent Rate of Change of Frequency df/dtt Protection [81R] Accuracy Pickup: Setting ±3% or ±10mHz/s, whichever is greater Dropoff (falling frequency): Setting 0.005Hz/s, ±10mHz/s (for settings between 0.01Hz/s and 0.1Hz/s) Setting 0.05Hz/s, ±5% or ±55mHz/s, whichever is greater (for settings greater than 0.1Hz/s) Dropoff (rising frequency): Setting 0.005Hz/s, ±10mHz/s (for settings between 0.01Hz/s and 0.1Hz/s) Setting 0.05Hz/s, ±5% or ±55mHz/s, whichever is greater (for settings greater than 0.1Hz/s) Operating timer: ±2% or 50ms whichever is greater Operating & Reset Time Operating time*: <200ms for ramps 2x setting or greater <300ms for ramps 1.3x setting or greater Reset time*: <250ms * Reference conditions: Tested with df/dt.av.cycles setting = 0, for df/dt settings greater than 0.1Hz/s (positive or negative, as relevant) and no intentional time delay. Advanced Average Rate of Change of Frequency fdf/dt Protection [81RAV] Accuracy Pickup: Setting±10mHz (frequency threshold) Setting ±0.1Hz/s (Df/Dt threshold)* Dropoff: Setting 20mHz, ±10mHz (falling frequency) Setting 20mHz, ±10mHz (rising frequency) Operating timer: ±2% or 30ms whichever is greater * Reference conditions: To maintain accuracy the minimum time delay setting, Dt, should be: Dt > x Df 0.23 (for Df setting < 1Hz) Dt > x Df 0.47 (for Df setting 1Hz) Operating Time Typically <125ms with Freq.Av.Cycles = 0 Advanced Load Restoration Accuracy Pickup: Setting±10mHz Dropoff: Setting 20mHz, ±10mHz Restoration timer: ±2% or 50ms whichever is greater Holding timer: ±2% or 50ms whichever is greater Broken Conductor Logic Accuracy Pickup: Setting ±2.5% Dropoff: 0.95 x Setting ±2.5% DT operation: ±2% or 40ms whichever is greater Thermal Overload Accuracy Thermal alarm pickup: Calculated trip time ±10% Thermal overload pickup: Calculated trip time ±10% Cooling time accuracy: ±15% of theoretical Repeatability: <5% * Operating time measured with applied current of 20% above thermal setting. Voltage Controlled Overcurrent Accuracy VCO threshold Pickup: Setting ±5% Overcurrent Pickup: (K factor x Setting) ±5% VCO threshold Dropoff: 1.05 x Setting ±5% Overcurrent Dropoff: 0.95 x (K factor x Setting) ±5% Operating time: ±5% or 60ms whichever is greater Repeatability: <5% Cold Load Pickup Setting Accuracy I> Pickup: Setting ±1.5% I> Pickup: Setting ±2.5% IN> Pickup: Setting ±1.5% I> Dropoff: 0.95 x Setting ±1.5% I> Dropoff: 0.95 x Setting ±2.5% IN> Dropoff: 0.95 x Setting ±1.5% DT operation: ±0.5% or 40ms whichever is greater Repeatability: <1% P14x Technical Data Sheet 17 P14x Software Version 0440J

19 Negative Sequence Overvoltage Protection Accuracy Pickup: Setting ±5% Dropoff: 0.95 x Setting ±5% DT operation: ±2% or 50ms whichever is greater Repeatability: <5% Admittance, Conductance and Susceptance Accuracy YN, BN and BN measurements: ±5% YN, BN, BN Pickup: Setting ±5% YN, BN, BN Dropoff: >0.85 x Setting Operating time: Start <100ms Trip Setting ±2% or 50 ms Operating boundary: ±2 VN: Setting ±5% Selective Overcurrent Protection Accuracy Fast block operation: <25ms Fast block reset: <30ms Time delay: Setting ±2% or 20ms whichever is greater Voltage Transformer Supervision Accuracy Fast block operation: <25ms Fast block reset: <30ms Time delay: Setting ±2% or 20ms whichever is greater Current Transformer Supervision Accuracy In> Pickup: Setting ±5% VN< Pickup: Setting ±5% In> Dropoff: 0.9 x Setting ±5% VN< Dropoff: (1.05 x Setting ±5% or 1V whichever is greater Time delay operation: Setting ±2% or 20ms whichever is greater CTS block operation: <1 cycle CTS reset: <35ms Programmable Scheme Logic Accuracy Output conditioner timer: Setting ±2% or 50ms whichever is greater Dwell conditioner timer: Setting ±2% or 50ms whichever is greater Pulse conditioner timer: Setting ±2% or 50ms whichever is greater Measurements and Recording Facilities Measurements Current: In Accuracy: ±1.0% of reading Voltage: Vn Accuracy: ±1.0% of reading Power (W): 0.2 2Vn In Accuracy: ±5.0% of reading at unity power factor Reactive Power (Vars): 0.2 2Vn, In Accuracy: ±5.0% of reading at zero power factor Apparent Power (VA): 0.2 2Vn In Accuracy: ±5% of reading Energy (Wh): 0.2 2Vn 0.2 3In Accuracy: ±5% of reading at zero power factor Energy (Varh): 0.2 2Vn 0.2 3In Accuracy: ±5% of reading at zero power factor Phase accuracy: ±0.5 Accuracy: ±0.5% Frequency: 45 65Hz Accuracy: ±0.025Hz Performance Year 2000: Compliant Real time clock accuracy: <±2% seconds/day Modulation ratio: 1/3 or 1/6 Input signal peakpeak amplitude: 200mV 20V Input impedance at 1000Hz: 6000Ω External clock synchronization: Conforms to IRIG standard 20098, format B IRIGB and Real Time Clock Accuracy (for modulated and unmodulated versions) Real time clock accuracy: < ±2 seconds/day P14x Technical Data Sheet 18 P14x Software Version 0440J

20 Disturbance Records Accuracy Magnitude and relative phases: ±5% of applied quantities Duration: ±2% Trigger position: ±2% (minimum Trigger 100ms) Line length: kn ** Line impedance (100/110V): 0.1/In 250/In Ý Line impedance (380/480V): 0.4/In 1000/In Ý Line angle: KZN residual: KZN res. angle: Plant Supervision Receiver Optical Characteristics (TA = 0 C to 70 C, VCC = 4.75 V to 5.25 V) Parameter Sym Min. Typ. Max. Unit Input Optical Power Minimum at Window Edge Input Optical Power Minimum at Eye Center Input Optical Power Maximum PIN Min. (W) PIN Min. (C) PIN Max Note: The 10BaseFL connection will no longer be supported as IEC does not specify this interface dbm avg. Bm avg. dbm avg. Accuracy Timers: ±2% or 20ms whichever is greater Broken current accuracy: ±5% Timer Accuracy Timers: ±2% or 40ms whichever is greater Reset time: <30ms Undercurrent Accuracy Pickup: ±10% or 25mA whichever is greater Operating time: <20ms Reset: <25ms IEC Ethernet Data 100 Base FX Interface Transmitter Optical Characteristics (TA = 0 C to 70 C, VCC = 4.75 V to 5.25 V) Parameter Sym Min. Typ. Max Unit Output Optical Power BOL 62.5/125 µm, NA = Fiber EOL PO dbm avg. Output Optical Power BOL 50/125 µm, NA = 0.20 Fiber EOL PO dbm avg. Optical Extinction Ratio % db Output Optical Power at Logic 0 State PO ( 0 ) 45 dbm avg BOL Beginning of life EOL End of life P14x Technical Data Sheet 19 P14x Software Version 0440J

21 Settings, Measurements and Records List Settings List Global Settings (System Data) Language: English/French/German/Spanish Frequency: 50/60Hz Circuit Breaker Control (CB Control) CB Control by: Disabled Local Remote LocalRemote Opto Optolocal OptoRemote OptoRemlocal Close Pulse Time: s Trip Pulse Time: s Man Close t max: s Man Close Delay: s CB Healthy Time: s Check Sync. Time: s Reset Lockout by: User Interface/CB Close Man Close RstDly: s CB Status Input: None 52A 52B 52A & 52B Date and Time IRIGB Sync: Battery Alarm: LocalTime Enable: LocalTime Offset: DST Enable: DST Offset: DST Start: DST Start Day: DST Start Month: Mins: DST End: DST End Day: Disabled/Enabled Disabled/Enabled Disabled/Fixed/Flexible 720 min 720min Disabled/Enabled 30min 60min First/Second/Third/ Fourth/Last Sun/Mon/Tues/Wed/ Thurs/Fri/Sat Jan/Feb/Mar/Apr/May/ Jun/Jul/Aug/Sept/Oct/ Nov/Dec DST Start 0min 1425min First/Second/Third/ Fourth/Last Sun/Mon/Tues/Wed/ Thurs/Fri/Sat DST End Month: DST End Mins: RP1 Time Zone: RP2 Time Zone: Tunnel Time Zone: Jan/Feb/Mar/Apr/ May/ Jun/Jul/Aug/Sept/Oct/ Nov/Dec 0min 1425min UTC/Local UTC/Local UTC/Local Configuration Setting Group: Select via Menu Select via Opto Active Settings: Group 1/2/3/4 Setting Group 1: Disabled/Enabled Setting Group 2: Disabled/Enabled Setting Group 3: Disabled/Enabled Setting Group 4: Disabled/Enabled System Config: Invisible/Visible Overcurrent: Disabled/Enabled Negative Sequence O/C: Disabled/Enabled Broken Conductor: Disabled/Enabled Earth Fault 1: Disabled/Enabled Earth Fault 2: Disabled/Enabled SEF/REF 1 Prot: Disabled/Enabled Residual O/V NVD: Disabled/Enabled Thermal Overload: Disabled/Enabled Neg. Sequence O/V: Disabled/Enabled Cold Load Pickup: Disabled/Enabled Selective Logic: Disabled/Enabled Admit. Protection: Disabled/Enabled Power Protection: Disabled/Enabled Volt Protection: Disabled/Enabled Freq. Protection: Disabled/Enabled CB Fail: Disabled/Enabled Supervision: Disabled/Enabled Fault Locator: Disabled/Enabled System Checks 2 : Disabled/Enabled AutoReclose 3 : Disabled/Enabled Input Labels: Invisible/Visible Output Labels: Invisible/Visible Adv. Freq. Prot n: Disabled/Enabled CT & VT Ratios: Invisible/Visible Record Control: Invisible/Visible Disturb Recorder: Invisible/Visible Measure t Setup: Invisible/Visible Comms Settings: Invisible/Visible Commission Tests: Invisible/Visible Setting Values: Primary/Secondary Control Inputs: Invisible/Visible Ctrl I/P Config: Invisible/Visible Ctrl I/P Labels: Invisible/Visible Direct Access: Disabled/Enabled InterMiCOM: Disabled/Enabled Function Key 4 : Invisible/Visible RP1 Read Only: Disabled/Enabled RP2 Read Only: Disabled/Enabled NIC Read Only: Disabled/Enabled LCD Contrast: (Factory preset) P14x Technical Data Sheet 20 P14x Software Version 0440J

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