VAMP 50, VAMP 51, VAMP 52, VAMP 55. Protection relays with native IEC and arc flash protection
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- Vincent Lucas
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1 VAMP 50, VAMP 51, VAMP 52, VAMP 55 Protection relays with native EC and arc flash protection
2 VAMP 50 series protection relays VAMP 50 family low and mid range relay series with EC The VAMP 50 series protection relay family is based on proven technology concepts developed in close cooperation with customers. User-friendliness describe VAMP products, the feature which receives a good grade in our customer satisfaction reports day after day. The VAMP 50 over current and earth fault protection relay has been developed to cover basic protection needs for OEMs, utilities and industrial applications. Thanks to its cost-effective and flexible design, the VAMP 50 will provide an excellent alternative for various protection applications. The VAMP 51 offers enhanced control functionality such as auto-reclose, VAMP 52 combines additional protection functions for feeders, motors, and with directional earth fault requirements. Designed to be extremely fast, the exchange of arc flash fault data between a sensor and arc module can result in trip activation in less then 14 ms Robust and flexible hardware Modular design with versatile hardware expansion for communication, arc protection and D/DO extension Designed for demanding industrial conditions Withdrawable and slim fit models available Common technology to gain volume benefits Powerful CPU supporting native EC Utilisation of other Vamp platform accessories mproved safety with economical and fast arc flash protection (optional) High user friendliness and functionality Common firmware platform with VAMP 200 Series Active functions visible for the operator only Standard USB connection (type B) for the setting tool Modern Human Machine nterface (HM) Large and clear LCD display Single line diagram mimic with control, indication and live measurements Programmable function keys and LEDs Standard USB front port (Type B) 2
3 Ease of use User-friendliness has always been a feature of Vamp products, and the VAMP 50 series is no exception. A great deal of effort has gone into the design of the operational aspects of the new products. The rapid device configuration and download via the dedicated VAMPSET setting tool raises usability to a new level. Unicode support allows the menu view and setting tool translation to various international languages including for example Russian and Chinese. The informative human machine interface provides all of the required information to the user with support of customized legend texts. VAMP 50 family HM interface Navigation push buttons Function buttons with User configurable legend texts CB control Protection setting group selection Freely programmable 128 x 64 LCD dot matrix display Single line diagram and freely assignable analogue values Unicode language support Local port USB interface Programmable LEDs User configurable legend texts 12 LEDs, 2 fixed (power, error) and 8 freely programmable (2 for push buttons) The template for user legend texts is a part of the product documentation. The texts printed on the transparency film allow customization of the relay. The optional D/DO, arc connection and communication modules can be added to the basic relay later on in order to extend the functionality of the relay during it s life time. Two optional module slots Extends the functionality of the relay Remote port, RS485, RS232 & Ethernet (RJ-45 or fiber) Arc, D/DO 3
4 VAMP 50 series protection relays Expanded usability The VAMP 50 protection relay concept has been extended with a number of features that make installation and testing of the relays even more efficient and user-friendly. The withdrawable technology is optional for the VAMP 50 series of current measuring relays. VAMP 50W a withdrawable unit with ring-lug connectors One of the latest VAMP 50 features is the withdrawable VAMP 50W relay version that can safely be removed from its frame for testing. Releasing and unlocking of the fixing handle automatically short-circuits the current transformers and isolates the tripping contacts, thus making installation, testing, and maintenance of the protection relay more flexible. The withdrawable technology is optional for all VAMP 50 series current-based protection relays. t also allows the use of ring-lug connectors for relay inputs. The rin-lug connectors are supported with VAMP 50W design VAMP 50S compact design for limited space Vamp 50 default model The VAMP 50 series is now also available as the VAMP 50S, which includes a more compact casing than the basic design. The VAMP 50S is an ideal choice for ring main unit switchgears and other applications where a flat relay is required. n the VAMP 50S, the same protection, measurement and control functions and communication interfaces are supported as in the basic 50 series of relays. The VAMP 50S is an ideal choice for applications where a flat relay is required Vamp 50S 4
5 Communication Vamp is a communication expert with a wide experience in interfacing with different system integrators and SCADA suppliers RTUs, PLCs, gateways etc. using many different protocols. Flexible adaptation of the communication protocols together with powerful and easy to use software tools are the key of successful integration. VAMP 50 series and the VAMPSET tool provide access to practically any power system information you may need. Native EC VAMP 50 Communication protocols EC EC Modbus TCP Modbus RTU Profibus DP DNP 3.0 SPA-bus communication EC DeviceNet Human-Machine-Communication, display Human-Machine-Communication, PC The EC protocol can be used to read or write static data or to receive events sent spontaneously from the relay. n addition, the interface allows peer-to-peer communication between the relays, called GOOSE communication. The EC interface is configured with familiar, user-friendly VAMPSET software. The EC datamodel, data-sets, report control blocks and the Goose communication are configured according to the requirements of the system configuration. VAMPSET is also used to produce CD files, which may be needed for the substation RTU configuration. The VAMP 50 series contains native implementation, which means that the EC functionality is embedded in the software. 5
6 VAMP 50 series protection relays VAMPSET Setting and Configuration Tool VAMPSET is a user-friendly, free-of-charge relay management software for setting, parameterising and con figuring of VAMP relays. Via the VAMPSET software, relay parameters, configurations and recorded relay data can be uploaded/downloaded between the operator s PC and the VAMP relays. Supporting the COMTRADE format VAMPSET also incorporates tools for analyzing relay events, waveforms and trends from disturbance recordings caprured by the relays, e.g. during a network fault situation. A standard USB cable connects a PC running the VAMPSET software to the front port of the VAMP 50 series relays. The VAMPSET software also supports TCP/P communication via an optional communication port. Featuring true multi-language support the software runs on Windows 7/Vista/XP/2000/NT and Windows 98/95 without any need for configuration of the PC. The VAMPSET software is future-proof, supporting future updates and new VAMP products. As a regular feature of the VAMP relays standard COMTRADE type disturbance recording files can be uploaded for subsequent evaluation of any network event recorded. The USB connection is much faster than serial communication. Standard USB communication cable can be used. The phase sequences for currents and voltages can be read on-line from the clear and explicit phasor diagram screen for easy commissioning of the relay 6
7 Arc flash protection Whether the time-grading or blocking based protection coordination principle is used, the traditional protection systems may not provide fast enough protection of substation faults. Further, high-impedance type of earth-faults may cause prolonged operation times of earth-fault relays leading to the significant release of the arcing energy. These facts pose a considerable risk to human beings and economical assets. By applying a modern, high-speed arc protection system the damage may be considerably reduced. Such an arc protection system is an optional feature incorporatable in all current measuring VAMP relays. The VAMP relays measure the fault current. f the arc protection option is selected the relays also monitor light via arc sensor channels monitoring the whole switchgear. Should an arcing fault occur in the switchgear the arc protection system provides an extremely fast tripping for the circuit breaker. The fault will be prevented from spreading and quickly isolated, which may save human lives and valuable economical assets. Arc flash protection, incorporating continuous self supervision for the sensors, is optional in VAMP 50 series current measuring relays. CB Cable Cable CB Arc flash protection integrated in VAMP relays enables substation level, ultra-fast arc protection. The system uses protection relay hardware and separate arc sensors. Any possible arc flash fault in the cable compartment is selectively cleared by the feeder protection relay where as the fault in the circuit breaker or bus bar compartment is tripped by the incoming circuit breaker. The exact location of the arc flash will be detected by the arc flash and relay protection system. CB Cable L (CB, BB) L (CB, BB) BB Traditional protection relay systems do not provide fast enough protection in an arc-fault situations. Arc point sensors Point sensor VA1DA-x 1) (surface) Point sensor VA1EH-x 1) (pipe) 1) x represents cable length (m) 7
8 VAMP 50 series protection relays Measurements and condition monitoring The VAMP 50 series offers a complete set of measurement functions to replace the conventional metering functions of switchgear and and controlgear installations. The measurement functions cover phase, line and residual currents, current unbalance, system frequency and harmonics from phase currents. Condition monitoring continuously monitors trip circuits, breaker wear and current transformers. Type of measurement EC Symbol Protection function/measurement Feeder protection Primary current 3 Three-phase current n n n n l 0 Zero sequence current n n n n 2 Current unbalance n n n n L Average and maximum demand current n n n n Primary voltage U One/ three-phase and line voltage n1 n1 n3 U 0 Zero sequence voltage n n n U 2 / U 1 Relative voltage unbalance n Frequency f System frequency n n n n n Power P, Q, S Active, reactive, apparent power )1 n n Energy E+, E-, Eq+, Eq- Active and reactive energy )1 n n Harmonics 2nd to 15th and THD of phase currents n n n n Voltage sags / swells U Voltage sags / swells n Analog ma output, 1 channel AO Any measured or calculated value, freely scalable n n n n n Control Digital inputs Number of digital inputs (max) Output relays Number of trip relays (max) Number of control relays (max) Object status indication Single line diagram, 8 objects n n n n n Local and remote control Number of controllable objects nterlocking and logic Configurable n n n n n VAMP 50 VAMP 51 VAMP 52 VAMP 52 Motor protection VAMP 55 Special applications 1) Based on single phase measurement Condition monitoring Trip circuit TCS Trip Circuit Supervision n n n n n TCS Trip Circuit Supervision with D for T5 (optional) n n n n n CT Supervision CT Supervision n n n n VT Supervision VT Supervision/Fuse failure supervision n CB Wear Breaker wear n n n n nput /Output options The VAMP 50 series host various optional modules in order to up-grade the relay functionality from the basic protection unit to a more advanced protection relay. VAMP 50 VAMP 51 VAMP 52 VAMP 55 Analog inputs 3 x 3 x 3 x 1 x o 1 x o 1 x o, 1 x U 4 x U Digital inputs 2 (7) 2 (7) 2 (7) 2 (7) Trip relays 4 (5) 4 (5) 4 (5) 4 (5) Control relays ma output Option Option Option Option Arc protection Option Option Option - Front port USB USB USB USB Optional rear port External RTD input module RS 485/RS 232/ Fibre/Ethernet RS 485/RS 232/ Fibre/Ethernet RS 485/RS 232/ Fibre/Ethernet RS 485/RS 232/ Fibre/Ethernet Option Option Option Option 8
9 Protection stages Type of fault EEE Device No. EC Symbol Protection function/measurement Overcurrent fault User-friendliness is also a built-in feature of protection stages, where setting views are graphically displayed in the relay and VAMPSET HM. Disabled protection stages are hidden from the menu in order to display only the necessary information. Protection stages come with two setting groups to enable automatic transfer from main setting to alternative setting. This change can be universal for the entire relay or protection function based. The relay has a large number of standard inverse curves to adopt various protection requirements. Unique protection curves can be applied for protection applications where standard EC or EEE Feeder protection curves do not provide required protection selectivity. 50/51 Three-phase non-directional overcurrent, low-set stage, definite or inverse time n n n n 50/51 l Three-phase non-directional overcurrent, high-set stage, definite time n n n n 50/51 l Three-phase non-directional overcurrent, high-set stage, definite time n n n n VAMP 50 VAMP 51 VAMP 52 VAMP 52 Motor protection VAMP 55 Special applications Earth-fault 50N/51N l 0 / SEF Non-directional earth-fault, low-set stage, sensitive, definite or inverse time n n n n 50N/51N l 0 Non-directional earth-fault, high-set stage, definite time n n n n 50N/51N l 0 Non-directional earth-fault,high-set stage, definite time n n n n 50N/51N l 0 Non-directional earth-fault, high-set stage, definite time n n n n 67N l 0 int Directional transient intermittent earth-fault protection n n 67N or 50N/51N l 0j / SEF Directional or non dir. earth-fault, low-set stage, sensitive, definite or inverse time n n 67N or 50N/51N l 0j Directional or non dir. earth-fault, high-set stage, definite or inverse time n n 59N U 0 Zero sequence voltage, low-set stage n n n 59N U 0 Zero sequence voltage, high-set stage n n n Overload 49M T n 49F T Three-phase thermal overload (feeders & cables) n n n Voltage * = number of voltage channels 59 U One-/three-phase overvoltage, low-set stage n1 * n1 * n3 * 59 U One-/three-phase overvoltage, high-set stage n1 * n1 * n3 * 59 U One-/three-phaseovervoltage, high-set stage n1 * n1 * n3 * 24 U / f Volts/hertz overexcitation protection n 27 U< One-/three-phase undervoltage, low-set stage n1 * n1 * n3 * 27 U<< One-/three-phase undervoltage, high-set stage n1 * n1 * n3 * 27 U<<< One-/three-phaseundervoltage, instantaneous stage n1 * n1 * n3 * 27P U 1 <, U 1 << Positive sequence undervoltage n 47 U 2 Negative sequence overvoltage (pgr stage) n Arc flash protection 50ARC/50NARC Arc / Arc 01 / Arc 02 Electrical arc flash protection stage, point sensors, optional n n n n Other functions 79 O -- Auto-reclosure n n 68 nrush and cold load detection n n n n 46 2 / 1 Current unbalance protection (in feeder mode) n n n 46 2 Phase unbalance protection n 47 2 Phase sequence / incorrect phase sequence protection n 48 ST Stall protection n 37 3< Loss of load / under current protection n n 86 Latched trip n n n n n 66 N Frequent start protection n 51F2 f2 Second harmonic O/C stage n n n n 50BF CBFP Circuit breaker failure protection n n n n n 81 f <, f << Frequency protection n 81L f<, f<< Underfrequency protection n 25 df/dv Synchrocheck n 99 8 Programmable stages n n n n DR Disturbance recorder n n n n n 9
10 VAMP 50 series protection relays VAMP 50 and 51 overcurrent & earth fault relays VAMP 50 is a basic protection relay used for LV and MV feeders in industrial and utility applications as well as for back-up protection. Limited amount of protection functions make this unit cost efficient, user friendly and simple to use. The hardware design allow easy addition of integrated optional modules like arc sensor interface, extension of D / DO channels and various communication module adapters. n VAMP 51, the autorecloser function extends the protection application to overhead line feeder protection in substation or secondary substation systems where the network is low-impedance or rigidly earthed. Programable stages enables the user to configure new protection elements and create new triggering conditions in the disturbance recorder. Typical application / VAMP 50 BB n addition to the default model, VAMP 50 series relays are also available as a slim fit (S) and withdrawable (W) version. CB Cable 3 50 / 51 3 VAMP 50 49F T 46R 2/ 1 3 o 3 50N/51N 50BF CBFP 68 f2 0, NARC Arc 0 50ARC Arc 74TC TCS 86 Lockout Typical application / VAMP 51, feeder mode with auto-reclose BB CB + Cable 3 50 / 51 3 VAMP 51 49F T 46R 2/ 1 3 o 3 50N/51N 50BF CBFP 68 f2 0, 02 0, 02 D 50NARC 79 8 pgr Arc 01 O 1 50ARC Arc 74TC TCS 86 Lockout 10
11 VAMP 50/VAMP 51 connection diagram L1 L2 L X2:1 X2:2 ~ VAMP 50 / VAMP 51 Protection functions Front Comm. option / 51 50N/51N 68 Remote VAMP 255 X1:1 X1:2 L1 X1:3 X1:4 L2 X1:5 X1:6 L3 X1:7 X1:8 0 5A 1A X1:9 /O extension module X6:1 X6:2 X6:3 X6:4 X6:5 X6:6 X6:7 X6:8 Arc option or D / DO module R 2/ 1 49F T 0, 02 0, 02 50BF CBFP 50ARC Arc 50NARC Arc 01 f2 74TC TCS 86 Lockout Additional protection functions/ VAMP Auto Reclose 8 pgr T1 X3:17 X3:16 X3:15 T2 X3:14 X3:13 T3 T4 X3:12 X3:11 X3:10 C 1 X3:7 X3:9 X3:8 F X3:18 X3: Blocking and output matrix ma out option X3:20 X3:3 D1 - X3:4 D1+ X3:5 D2 - D ma X3:1 AO+ X3:2 AO - X3:6 D2+ Arc option module 1 Arc option X6:1 BO+ X6:2 BO- X6:3 B+ X6:4 B- X6:5 L1+ X6:6 L1- X6:7 L2+ X6:8 L2- B/O L /O extension module D / DO module X6:1 X6:2 X6:3 D3 X6:4 C omm X6:5 D4 X6:6 D5 X6:7 C omm X6:8 Di6 D D T5 Arc module 1 has two arc sensor interfaces and connectivity from/to other relays via B/O channel. The operatiing time for arc flash fault trip is 15 ms. 11
12 VAMP 50 series protection relays VAMP 52 feeder and motor protection relay VAMP 52 is a multi-function protection relay used for LV and MV feeders in industrial or utility applications. Extensive thermal protection functions make this relay optimal for low and medium sized asynchronous motors. Directional earth fault protection in association with an auto-recloser makes this relay cost effective for feeder protection applications where automatic fault clearance is needed. This relay is flexible, user friendly and simple to use. The hardware design allows easy addition of integrated optional modules like arc sensor interface, extension of D / DO channels and various communication module adapters. Typical applications Feeder mode with auto-reclose Motor mode BB BB CB + CB + Cable 3 Uo, UL or U o 50 / N/51N 0, NARC Arc 0 50ARC Arc 79 O 1 8 pgr 50BF CBFP VAMP 52 49F T 67N N U 0 U 0 74TC TCS 46R 2/ 1 68 f2 67NT 0T 59 (1 1U 1U 1U 27 (1 1 U< 1U<< 1U<<< 86 Lockout Cable M RTD VO 12A_ 3 Uo, UL or U D Fiber or RS485 o 50 / N/51N 0, NARC Arc 0 50ARC Arc 37 3< 8 pgr 50BF CBFP VAMP 52 49M T N N U 0 U 0 66 N 74TC TCS 68 f2 67NT 0T 59 (1 1U 1U 1U 27 (1 1 U< 1U<< 1U<<< st 86 Lockout 1) Alternative to Uo protection 12
13 2 2 st 0 0 0T f VAMP 52 connection diagram L1 L2 L3 1 - X2: 1 X2: 2 ~ VAMP 52 Protection functions Front Comm. option / N/51N, 0 27 U< Remote U 0 X1: 1 X1: 2 X1: 3 X1: 4 X1: 5 X1: 6 X1: 7 X1:8 X1: 9 X1:10 X1: 11 X6: 1 X6: 2 X6: 3 X6: 4 X6: 5 X6: 6 X6: 7 X6: 8 L1 L2 L3 0 5A 1A U /U / U 0 L 1 12 /O extension module Arc option or D / DO module R 2/ N 37 3< 67N Autorecloser matrix, 0 67NT 59N U U T U U U 79 Auto Reclose U<< U<<< 50BF CBFP 50ARC Arc 50NARC Arc 01 74TC TCS 86 Lockout Blocking and output matrix T1 X3:17 X3:16 T2 X3:15 T3 T4 X3:14 X3:13 X3:12 X3: 11 X3:10 C1 X3: 7 F X3:18 ma out option X3: 9 X3: 8 X3:19 X3: X3:3 D1 - X3:4 D1+ X3:5 D2 - X3:6 D2+ D ma UL1 X1:11 X1:10 When the voltage transformer is connected to transform the phase to ground voltage, the voltage measuring mode shall be 1LN Arc option module 1 Arc option X6:1 BO+ X6:2 BO- X6:3 B+ X6:4 B- X6:5 L1+ X6:6 L1- X6:7 L2+ X6:8 L2- B/O L /O extension module D / DO module X6:1 T5 X6:2 X6:3 D3 D X6:4 Comm X6:5 D4 X6:6 D5 D X6:7 Comm X6:8 Di6 Arc option module 2 U12 Should the voltage transformer connection be phase to phase the voltage measuring mode is selected 1LL RJ-45 RJ-45 X6:1 L1+ X6:2 L1- X6:3 L2+ X6:4 L2- X6:5 L3+ X6:6 L3- L X1:11 X1:10 13
14 VAMP 50 series protection relays VAMP 55 voltage protection relay The VAMP 55 is a multi-function relay suitable for voltage and frequency protection for both utility and industrial applications and also for synchrocheck applications. The relay is equipped with 4 voltage inputs that can be configured with any of the available predefined voltage mode setups. 3LN+LLy / LNy = phase voltage and synchrocheck 3LN + Uo = Line to neutral and zero sequence voltage The VAMP 55 relay is also available as a slim fit (S) version. Typical application Cable CB BB VT VT 59 VAMP P 3U 3U< U 1< 3U 3U<< U 1<< 3U 59N 3U<<< 47 U 2 U 2 VAMP 59 line differential relay Uo Uo 81H/81L f< f<< 25 f, v 8 pgr 50BF CBFP 81L f< f<< 74TC TCS 81R df/dt 86 Lockout The VAMP 50 series is supplemented by VAMP 59 designed for the protection of medium voltage overhead lines and cables. Versatile firmware enables this relay to be used in applications with in-zone transformers as well. The relay includes back-up protection functions for basic overcurrent and earth fault functions with three pole auto reclosing. The characteristics of VAMP 59 are expalained in detail in its own product brochure or at 14
15 VAMP 55 connection diagram VAMP 55 VAMP 55 is applied in 3LN+LLy mode. The phase voltage (line to neutral) is measured from the bus bar and the realy calculates phase-to-phase and zero sequence voltage. The U 4 voltage channel is used for synchrocheck in the feeder side. * 3LN+LLy /O extension module D / DO module X6:1 X6:2 X6:3 D3 X6:4 Comm X6:5 D4 X6:6 D5 X6:7 Comm X6:8 Di6 D D T5 15
16 VAMP 50 series protection relays Order Codes VAMP 5 - Relay type 0 = Overcurrent & earth fault relay 1 = Overcurrent & earth fault relay 2 = Feeder and motor protection relay 5 = Voltage protection relay Default model Slim fit model (S) Withdrawable model (W) Note: * Communication modules for withdrawable model ** Option available only with communication module 1: B and L!! Supply voltage has to be 110 Vac/dc or more. Check out our website for "DualPortEthernetnterface_AppNote_006". VAMP 50, VAMP 51 or VAMP 52: VAMP 55: Relay type Relay type = Default = Default S = Slim fit S = Slim fit W = Withdrawable model Phase current inputs [A] 3 = 5 A Earth-fault current input [A] A = 1 A / 5 A B = 0.2 A / 1 A Supply Voltage [V] A = Vac/dc B = Vdc ma output option A = None B = ma output D nominal activation voltage 1 = 24 Vdc / 110 Vac 2 = 110 Vdc / 220Vac 3 = 220 Vdc Optional /O extension modules A = None B = Digital /O; 4 x D, 1 x DO C = Arc Protection; 2xSensor, BO Optional communication module 1 A = None D = Plastic/Plastic serial fibre interface E = Glass/Glass serial fibre interface F = Rx Plastic/Tx Glass serial fibre interface G = Rx Glass/Tx Plastic serial fibre interface K = RJ-45 10Mbps ethernet interface inc. EC P = Profibus interface R = 2 x ST 100Mbps ethernet fibre interface inc. EC 61850!! S = 2 x RJ Mbps ethernet interface inc. EC T = RS 485 interface (4-wire) + RJ-45 10Mbs ethernet interface inc. EC * U = RS 485 interface (4-wire) + LC 100Mbs ethernet fibre interface inc. EC * V = RS 232 interface + RJ-45 10Mbs ethernet interface inc. EC * X = RS 232 interface + LC 100Mbs ethernet fibre interface inc. EC * B = RS 485 interface (4-wire) with option for module 2 L = RS232 interface with option for module 2 Optional communication module 2 A = None B = RG-B time syncronisation input ** C = RTD interface (Glass fibre) ** E = RJ Mbps ethernet interface inc. EC ** G = LC 100 Mbps ethernet fibre interface inc. EC ** PCP coating = Default Nominal voltage [V] 4 = V (default size) X = none Supply Voltage [V] A = Vac/dc B = Vdc ma output option A = None B = ma output D nominal activation voltage 1 = 24 Vdc / 110 Vac 2 = 110 Vdc / 220Vac 3 = 220 Vdc Optional /O extension modules A = None B = Digital /O; 4 x D, 1 x DO Optional communication module 1 A = None D = Plastic/Plastic serial fibre interface E = Glass/Glass serial fibre interface F = Rx Plastic/Tx Glass serial fibre interface G = Rx Glass/Tx Plastic serial fibre interface K = RJ-45 10Mbps ethernet interface inc. EC P = Profibus interface R = 2 x ST 100Mbps ethernet fibre interface inc. EC 61850!! S = 2 x RJ Mbps ethernet interface inc. EC B = RS 485 interface (4-wire) with option for module 2 L = RS232 interface with option for module 2 Optional communication module 2 A = None B = RG-B time syncronisation input ** C = RTD interface (Glass fibre) ** E = RJ Mbps ethernet interface inc. EC ** G = LC 100 Mbps ethernet fibre interface inc. EC ** PCP coating = Default 16
17 Accessories Order code Description Note VX052-3 USB programming cable (Vampset) Cable length 3 m VX054-3 nterface cable to VPA 3 CG (Profibus module) for RS 232 Cable length 3 m VSE001 Fiber optic nterface Module VO 12 AA RTD Module, 12pcs RTD inputs, Optical Tx Communication ( Vac/dc) VO 12 AB RTD Module, 12pcs RTD inputs, RS 485 Communication ( Vac/dc) VO 12 AC RTD/mA Module, 12pcs RTD inputs, PTC, ma inputs/outputs, RS232, RS485 and Optical Tx/Rx Communication (24 Vdc) VO 12 AD RTD/mA Module, 12pcs RTD inputs, PTC, ma inputs/outputs, RS232, RS485 and Optical Tx/Rx Communication ( Vac/dc) VA1DA-6 Arc sensor Cable length 6 m VA1DA-20 Arc sensor Cable length 20 m V50WAF V50 wall assembly frame Available option-cards possible to be ordered separately: 5VCM 232+ET Ethernet interface (10Mbps RJ45) 5VCM EC interface (10Mbps RJ45) 5VCM VCM 485+F 5VCM 485+ET 5VCM VCM 485+R 5VCM 485+LC 5VCM 485+L6 5VCM VCM 232+F 5VCM 232+ET2 5VCM VCM 232+R 5VCM 232+LC 5VCM 232+L6 RS 485 interface (4-wire) RS 485 -and RTD fibre optic interface (Glass fibre) RS 485 -and ethernet interface (10Mbps) RS 485 -and EC interface (10Mbps) RS 485 interface with time synchronization input (RG-B) RS 485 -and ethernet fibre interface (100Mbps) RS 485 -and EC ethernet fibre interface (100Mbps) RS 232 interface RS 232 -and RTD fibre optic interface (Glass fibre) RS 232 -and ethernet interface (10Mbps RJ45) RS 232 -and EC interface (10Mbps RJ45) RS 232 interface with time synchronization input (RG-B) RS 232 -and ethernet fibre interface (100Mbps LC) RS 232 -and EC ethernet fibre interface (100Mbps LC) 5VCM PP 5VCM GG 5VCM PG 5VCM GP 5VOM Arc+B 5VOM4D1DO Plastic/Plastic serial fibre interface Glass/Glass serial fibre interface Rx Plastic/Tx Glass serial fibre interface Rx Glass/Tx Plastic serial fibre interface ARC option card (2S+B) Digital nput/output option card Dimensional drawings Default model VAMP 50 A C D F Panel mounting technique H B E J VAMP 50 Cut-out panel Default model A B C D E F H J Millimetres nches
18 VAMP 50 series protection relays Dimensional drawings Withdrawable model VAMP 50W A C D F B E 1 H VAMP 50W Cut-out panel Withdrawable A B C D E F H J Millimetres nches J VAMP 50S Cut-out panel Slim fit size A B C D E F H J Millimetres nches Slim fit model VAMP 50S A C D F VAMP 50S c i F1 F2 B E Panel mounting technique H VAMP 50S J F1 F2 18
19 Main technical data Auxiliary voltage Voltage range Measuring circuity V ac / dc (option A) V dc (option B) 1A/5A - Current measuring range x N Rated neutral current 0N 1 A or 5 A (optionally 0.2 A or 1 A) - Current measuring range x N Thermal withstand 4 x N (continuous) 100 x N (for 1 s) Rated frequency f N 50 / 60 Hz (45 65 Hz) /O Digital inputs (external voltage) 2 pcs (7 option) - Selectable nominal voltage (threshold) 24 / 110 / 220 V ac / dc Trip contacts 4 pcs (5 option) Disturbance tests Standard & Test class / level Test value Emission EN / EC Conducted EN class A / EC MHz - Emitted EN class A / EC / CSPR MHz mmunity EN / EC Mhz damped oscillatory wave EC ±2.5kVp CM, ±1kVp DM - Static discharge (ESD) EN class V / EC kv contact, 15 kv air - Fast transients (EFT) EN class V / EC class A ±4 kv / (±2 kv signal ports), 5/50 ns, 5 khz - Surge EN class / EC kv, 1.2/50 ms, CM 1 kv, 1.2/50 ms, DM - Conducted HF field EN class / EC MHz, 10 Vemf - Emitted HF field EN class / EC MHz, 10 V/m - Voltage interruptions EN / EC %/1s, 60%/0.1s, 100%/0.05s - Voltage alternative component EN / EC % of operating voltage (DC) / 10min - Voltage dips and short interruptions EN %/10ms, 100%/10ms, 60%/100ms 95%/5000ms - Power-frequency magnetic field EN A/m (continuous), 1000A/m / 1-3s - Pulse magnetic field EN A/m, 1.2/50 ms Electrical safety tests Standard & Test class / level Test value - mpulse voltage withstand EN , class 5 kv, 1.2/50 ms, 0.5 J - Dielectric test EN , class 2 kv, 50 Hz - nsulation resistance EN Protective bonding resistance EN Power supply burden EC Mechanical tests Standard & Test class / level Test value Device in operation - Vibrations EC , class / EC , Fc 1Gn, 10Hz 150 HZ - Shocks EC , class / EC , Ea 10Gn/11ms Device de-energized - Vibrations EC , class / EC , Fc 2Gn, 10Hz 150 HZ - Shocks EC , class / EC , Ea 30Gn/11ms - Bump EC , class / EC , Ea 20Gn/16ms Environmental conditions Standard & Test class / level Test value Device in operation - Dry heat EN / EC , Bd +65 C - Cold EN / EC , Ad -40 C - Damp heat, cyclic EN / EC , Db From +25 C to +40 C, From 93% RH to 98% RH, 6 days - Damp heat, static EN / EC , Cab +40 C, 93% RH, 10 days - Flowing mixed gas corrosion test, method 2 EC , Ke +25 C, 75% RH,10 ppb H 2 S, 200 ppb NO 2, 10 ppb CL 2 - Flowing mixed gas corrosion test, method 4 EC , Ke +25 C, 75% RH, 10 ppb H 2 S, 200 ppb NO 2, 10 ppb CL 2, 200 ppb SO 2 Device in storage - Dry heat - Cold EN / EC , Bb EN / EC , Ad +75 C -40 C Casing Degree of protection (EC 60529) P54 Dimensions (W x H x D) 130 x 170 x 210 mm Material 1 mm steel plate Weight 2.0 kg Colour code RAL 7032 (Casing) / RAL 7035 (Back plate) Package Dimensions (W x H x D) Weight (Terminal, Package and Manual) 320 x 215 x 175 mm 3.0 kg 19
20 We keep electricity running With its headquarters in Finland, Vamp Ltd specialises in protection relays, arc flash protection and measuring and monitoring units for power systems. Vamp s medium-voltage and sub-transmission protection relays are used in a number of applications, from overhead line feeders and substations to power plants and industrial power system. Their unique integrated arc flash fault protection functionality enhances the safety of both people and property and has made Vamp a leading brand in arc flash protection worldwide. Vamp is a member of Schneider Electric, a global specialist in energy management. Our success is based on competitive standard products, constant development by our designers possessing experience from three protection relay generations, our long-term partnerships, flexibility and 24 hour care of the customers. Our organization has been audited and found to be in accordance with the requirements of the SO 9001 management system. Vamp Ltd P.O.Box 810 F VAASA Finland Visiting address: Vaasa Airport Park Yrittäjänkatu 15 Vaasa, Finland Tel: Fax: vamp@vamp.fi We reserve the rights to product alterations without prior notice. Copyright Vamp Ltd. All trademarks are the property of their respective holders. VB50.EN008
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