VAMP 96 and VAMP 260. Measuring and monitoring units. Measuring and monitoring
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1 Measuring and monitoring 0 VAMP and VAMP 0 Measuring and monitoring units VAMP and VAMP 0 metering devices are designed for remote or stand- alone monitoring of industrial and utility applications where energy consumption and billing shall be monitored by cost centers or individual feeder. Demand and power factor control, equipment monitoring, alarms for preventive maintenance and disturbance capturing are standard features in VAMP and VAMP 0. USTOMR BNFITS As a member of VAMP protection relay family these meters come with an extensive communication capabilities. Intelligent measuring and monitoring units The VAMP meters come with an extensive selection of pre-configured data screens and measurements that you can use or customize to fit your metering requirements. Demand and Power Factor ontrol Avoid penalties with automated load shedding, scheduling, peak shaving or capacitor bank control. quipment Monitoring and ontrol Improve process yields and extend equipment life. xtensive analog and digital I/O enables system monitoring and control. Power quality and Disturbance Analysis apturing abnormal disturbances in power quality like harmonics, voltage interruptions, voltage sags/swells and unbalancing. Preventative Maintenance Set up alarms to warn of pending problems in advance. xtensive communication and SADA connectivity I 0, I 00--0, I 00--0, Modbus TP, Profibus DP, DNP.0, DNP TP, SPA, MBus (VAMP ).
2 Measuring and monitoring VAMP, VAMP 0 0 Quick selection table A RIGHT PRODUT FOR VRY APPLIATION Operational segment Application T and VT input connection Auxiliary supply range VAMP VAMP 0 Industrial and utility substations Power, energy, power quality metering, event handling and I/O unit for SADA and process automation Metering core 00 0 V ac 00 0 V dc or 0 V dc Industrial and utility substations Power, energy, power quality metering, event handling, control, alarming, temperature monitoring and I/O unit for SADA and process automation Metering or protection core V dc or 0 V dc / ac Number of digital inputs Number of RTD inputs - Optionally - Number of heavy trip contacts Number of alarm contacts Number of ma outputs - Number of solid state outputs pc NO Product overview VAMP MASURING AND MONITORING UNIT The VAMP is a modern basic multimeter used as a stand alone meter in industrial low and medium voltage power distribution distribution panels. This meter can be connected to SADA or energy management system in order to provide required measurements, alarms, condition data, events to the operator using various communication protocols. VAMP shall be connected to measurement core of the current and voltage transformers Typical application of VAMP is to measure energy by production cost centers and to show energy savings. VAMP is a basic multimeter used either stand-alone or part of monitoring / SADA system VAMP 0 POWR MONITORING UNIT The VAMP 0 is designed for a heavy duty industrial applications where the environmental and disturbance conditions are demanding. This power monitoring unit can be connected to the protection cores of the current and voltage transformers as the design of the unit is equal to the requirements used in protection relays. Having six digital inputs, two circuit breaker controlling, four alarming duty contacts and four analogue ( ma ) outputs this unit is unique in the market. A VAMP 0 is a unique high accurate meter as it can be connected to either protection or measurement core of the current transformers.
3 Measuring and monitoring VAMP, VAMP 0 0 ommunication VARIOUS OMMUNIATION ALTRNATIVS TO OUR DMAND As VAMP and VAMP 0 are members of VAMP protection relay family the meters benefit of the communication protocols widely used in other VAMP devices. The metering and control devices are often interfaced with Profibus DP, MODBUS TP, Modbus RTU or SPA communication in industrial applications. Utilities request I 0, I 00--0, I 00--0, DNP.0 and SPA protocols. In addition to this, the VAMP has a MBus protocol in order to support connectivity with the Automatic Meter Management (AMM) systems. VAMPST setting and configuration tool VAMPST is a user-friendly, free-of-charge relay management software for setting parameters and configuring VAMP relays. Via the VAMPST software, relay parameters, configurations and recorded data can be exchanged between P and VAMP relays. Supporting the OMTRAD format, VAMPST also incorporates tools for analysing relay events, waveforms and trends from data recorded by the relays, e.g. during a network fault situation. Using a standard serial cable the P running VAMPST connects to the front port of the VAMP relays. The VAMPST software also supports TP/ IP communication via an optional port. Featuring true multi-language support the software runs on Windows / Vista / XP / 000 / NT and Windows / without any need for configuration of the P. VAMP relays support standard OMTRAD type disturbance recording files which can be uploaded/downloaded for evaluation of any network event recorded. The phase sequences for currents and voltages can be read online from the clear and explicit phasor diagram screen for easy commissioning of the relay.
4 Measuring and monitoring VAMP, VAMP 0 0 Functionality t Measurement and monitoring functions Power quality Logging, mathematical functions ommunication Hardware Symbol IL,IL, IL I I ILav Io Urms,Urms,Urms UL,UL,UL ULrms,ULrms,ULrms Phasors U U U/U Uo Function urrent, min demand Positive sequence current Negative sequence current Average demand current, min, max Neutral current Phase to phase RMS voltage, min, max Phase to ground voltage Phase to ground RMS voltage, min, max Phasor diagram of IL, IL, IL, UL, UL, UL, U, U, U, Uo, Io Positive sequence voltage Negative sequence voltage Relative voltage unbalance Residual voltage P, Pda, PL, PL, PL Active fundamental power, 0...0min demand, per phase Prms Prms Active RMS power, 0...0min demand Active RMS power, total, min, max, 0...0min demand Q, Qda, QL, QL, QL Reactive fundamental power, min demand, per phase Qrms Qrms Reactive RMS power, 0...0min demand Reactive RMS power, total, min, max, 0...0min demand S, Sda, SL, SL, SL Apparent fundamental power, 0...0min demand, per phase Srms PF, PFda, PFL, PFL, PFL os Tan Apparent RMS power, total, min, max, min demand Power factor, per phase PQ-diagram osine phii Tan phii F, fda System frequency, min demand +, - q+, q- THD of IL,IL,IL H of IL,IL,IL THD of U H of U Rh Active energy, imported / exported Reactive energy, imported / exported nergy dose Number of energy pulse outputs Total harmonic distortion of phase currents Harmonics of phase currents up to th Total harmonic distortion of phase to phase or phase to ground voltages Harmonics of phase to phase or phase to ground voltages up to th Sag and swell Voltage interruptions Running hour counter >, < omparison User s logic Alarm channels AND, AND+OR, T, INVAND, INVOR, OR, OR+AND, RS, RS_D, XOR, delays Number of day / week timers I I 0 Modbus RTU / TP Profibus DP SPA DNP.0 / DNP TP Modbus RTU slave Number of phase current T inputs, protection core Number of phase current T inputs, measurement core Number of residual current T inputs, measurement core Number of voltage inputs Number of digital inputs Number of heavy duty trip outputs Number of alarm outputs + Number of ma outputs Number of RTD inputs Number of optional RTD inputs - VAMP VAMP 0
5 Measuring and monitoring VAMP, VAMP 0 0 onnection diagrams L L L VAMP 0 ONNTION DIAGRAM L L L P P X P P VAMP 0 X VAMP 0 X X X X VAMP 0 VAMP 0 VAMP 0 is connected to phase voltages in a 00 V network VAMP 0 is connected to line voltages in a 00 V network 0kV R VAMP ONNTION DIAGRAM 0/0.kV XB: XB: XA: Uaux N ~ VAMP Measurement functions Local Remote X XA: XA: XA: U U U V A Hz X N L L L VA W var P.F cosfii tanfii X: X: X: X: IL IL Wh varh THD X: X: IL U&I harmonics Relay out General digital inputs XB: DI XB: DI XB: DI XB: +V DI XA: XA: nergy pulse output VAMP_LVON_
6 Power rror om Alarm Trip A B Trip A B Trip A B Measuring and monitoring VAMP, VAMP 0 0 Dimensional drawings VAMP 0 PANL MOUNTING mm in a b VAMP OK OK VAMP Power rror om Alarm Trip A B OK SMI-FLUSH VAMP 00 SRIS Raising frame A B Fixing bracket VYX0 0 mm /. mm/. Standard for 00 series VYX0 0 mm /. mm/. Standard for 00 series VYX 00 mm /. 0 mm/. x VYX needed 0. > 0 0. VAMP Power rror om VAMP Power Alarm OK rror om Alarm OK Semi-flush B A Panel mounting
7 Measuring and monitoring VAMP, VAMP 0 0 mm in VAMP PANL MOUNTING,0, POWR POWR,0.0 VY0A POWR VY0A, m -0 m. a b X a POWR b VY0A XA b > 0 0. X mm in SMI-FLUSH MOUNTING 0,0. VY0A VY0A POWR,. 0,.,0 0. VY0A,0 0. X mm in POWR VY0A,.0 mm in,0. X POWR X 0,0. XA,0.0 X,0.,0. 0,0. ø, 0. X B Unit VAMP g and Monitoring Measurin POWR R R POW POW VY0A MM ALAR ALAR 0,0.,0. VY0A VY0A m -0 m. > 0 0. POWR. b,0.,0. 0,0 a X A VY0 VY0,0 0. mm in 0,0.,. 0,.,0 0. X,.0,.,0. POWR 0,0. X X A VY0. VY0 POWR POWR,0.,0. 0,0. X B,0.,0. 0,0.
8 Measuring and monitoring VAMP, VAMP 0 0 Typical applications VAMP 0 Remote ontrol enter nergy Management System VAMP 0 VAMP 0 power monitoring unit applied for monitoring of power and energy at industrial power distribution. nergy pulses drive nergy Management System whereas the alarms and load information goes via the serial communication to the ontrol enter. The ma outputs control analogue meters of the switchgear. VAMP 0 Serial communication nergy pulses VAMP nergy Management System 0/0kV 0kV Modbus, Profibus DP, TP/IP I Vamp I Vamp U U VAMP VAMP 0/0.kV 0/0.kV VAMP is a basic metering and control device used for measuring power and energy of production cost centers in industrial applications. The same meter can be used by the utilities for detecting consumed energy per feeder.
9 Measuring and monitoring VAMP, VAMP 0 Order odes VAMP VAMP 0 V A V 0 - Nominal current [A] = A / A Nominal Voltage [V] = V Frequency [Hz] = 0/0 Hz Supply voltage [V] A = Vac/dc B =.. Vdc G =.. Vdc Optional hardware A = None O = L 00 Mbps ethernet fiber interface inc. I 0 and M-bus P = RJ- 00 Mbps ethernet interface inc. I 0 and M-bus Optional hardware A = Version firmware * B = Standard firmware * Only optional hardware, A available Nominal current [A] = A = A Nominal Voltage [V] = V Frequency [Hz] = Standard relay Supply voltage [V] A = 0.. Vac/dc B =.. Vdc Optional hardware (communication port ) A = None B = Plastic/Plastic serial fibre interface = Profibus interface D = RS interface (-wire) = Glass/Glass serial fibre interface F = Rx Plastic/Tx Glass serial fibre interface G = Rx Glass/Tx Plastic serial fibre interface H = RJ- 0Mbps ethernet interface M = RJ- 0Mbps ethernet inc. I 0 O = L 00 Mbps ethernet fibre interface inc. I 0 P = RJ- 00Mbps ethernet interface inc. I 0 R = x L 00 Mbps ethernet fibre interface inc. I 0 S = x RJ- 00 Mbps ethernet interface inc. I 0 Analog Outputs & firmware = None, standard firmware F = pcs, standard firmware Accessories Order code Description Note VAMP VAMP 0 VAMP 0 VA Gi xternal thernet Interface Module VPA G Profibus Interface Module VS00PP Fiber optic Interface Module VS00 RS Interface Module VS00 RS Interface Module, xt I/O interface VS00 RS Interface Module, xt I/O interface VS00 xternal DeviceNet interface module VIO AB RTD Module, pcs RTD inputs, RS ommunication (-0 Vac/dc) VIO A RTD/mA Module, pcs RTD inputs, PT, ma inputs/outputs, RS, RS and Optical Tx/Rx ommunication ( Vdc) VIO AD RTD/mA Module, pcs RTD inputs, PT, ma inputs/outputs, RS, RS and Optical Tx/Rx ommunication (-0 Vac/dc) VX00- RS programming cable (Vampset, VA Gi) able length m VX0- Interface cable to VPA G (Profibus module) able length m VX0- Back panel programming cable able length m VX00- Interface cable to VA Gi (thernet module) able length m VX00-M TTL/RS converter cable (PL, VA Gi) able length m VX00-F TTL/RS converter cable (VPA G) able length m VAM D xternal LD module Disables rear local communication VYX0 Raising Frame for 00-serie Height 0 mm VYX0 Raising Frame for 00-serie Height 0 mm VYX Raising Frame for 00-serie Height 00 mm V00WAF V00 wall assembly frame VYX0 Raising frame for Vamp and WimoP0
10 Measuring and monitoring VAMP, VAMP 0 0 Technical data, tests and environmental conditions Measuring circuitry VAMP VAMP 0 Rated current In A or A A or A - urrent measuring range x In 0 - x In - Thermal withstand, x In (continuously) x In (continuously) 0 x In (for 0 s) 00 x In (for s) - Burden < 0. VA (In = A) < 0. VA (In = A) < 0. VA (In = A) < 0. VA (In = A) Rated voltage Un 0 V 0-0 V (configurable) - Voltage measuring range 0 V 0 V - ontinuous voltage withstand V V - Burden < 0.V A < 0.V A Rated frequency fn Hz Hz - Frequency measuring range Hz Hz Terminal Block: - Solid or stranded wire Max. wire dimension:, mm (- AWG) Max. wire dimension: mm (0- AWG) Auxiliary voltage Rated voltage Uaux Type A (standard) Type B (option) Type A (standard) Type B (option) 00 0 V ac/dc V dc 00-0 V dc 0 V dc 0/0/0/0 V ac/dc 0 - V ac/dc V dc /0/0//0 V dc Power consumption W (normal conditions) < W (normal conditions) < W (output relays activated) Max. permitted interruption time < 0 ms (0 V dc) - V dc 00-0 V dc Terminal Block: - Phoenix MVSTBW or equivalent Max. wire dimension:. mm (- AWG) Max. wire dimension:. mm (- AWG) Digital inputs Number of inputs Operation time s (step 0.0 s) s (step 0.0 s) Polarity NO (normal open) or N (normal closed) NO (normal open) or N (normal closed) Inaccuracy: - Operate time +/- % +/- % Internal operating voltage V dc V dc urrent drain when active (max.) Approx. ma Approx. 0 ma urrent drain, average value Terminal block: - Phoenix MVSTBW or equivalent Max. wire dimension:. mm (- AWG) Max. wire dimension:. mm (- AWG) < ma Trip contacts Number of contacts - making contacts Rated voltage - 0 V ac/dc ontinuous carry - A Max. making current - A Breaking capacity, A VA Breaking capacity, D (L/R=0ms) - 0 W ontact material - AgNi 0/0 Terminal Block: - Phoenix MVSTBW or equivalent - Max. wire dimension:. mm (- AWG) Accuracy urrent +/- 0. % of value when I > 0. x In +/- 0. % of In Voltage +/- 0. % of value +/- 0. % Frequency: +/- 0 mhz +/- 0 mhz Active power +/- % of value +/- % of value Reactive power +/- % of value +/- % of value Active energy +/- % of value +/- % of value Reactive energy +/- % of value +/- % of value
11 Measuring and monitoring VAMP, VAMP 0 Alarm contacts VAMP VAMP 0 Number of contacts normally open change-over contact (IF relay) change-over contacts (relays A, A and A)x Rated voltage V ac/dc 0 V ac/dc Max. make current 0 ma A ontinuous carry A A Breaking capacity, A VA ontact material - AgNi 0. goldplated Terminal Block: - Phoenix MVSTBW or equivalent Max. wire dimension:. mm (- AWG) Max. wire dimension:. mm (- AWG) Local serial communication port Number of ports on front and shared with remote on rear panel on front and on rear panel lectrical connection RS RS Data transfer rate kb/s kb/s Remote control connection Number of ports shared with local port on rear panel on rear panel lectrical connection RS (standard) TTL RS (with external module) Plastic fibre connection (with ext. module) Data transfer rate 00 kb/s 00 kb/s Protocols ModBus RTU master ModBus / TP SpaBus, slave I 0 I I Profibus DP (option) MBus DNP or thernet TTL (standard) RS (option) RS (option) Plastic fibre connection (option) ModBus RTU master ModBus / TP SpaBus, slave I 0 I I Profibus DP (option) DNP or thernet Analogue outputs Number of Ports - (Note: common +pole) lectrical connection: - urrent output - Range ma (min & max configurable) - Load - <00 W - Accuracy - <±0mA Isolation test voltage - 00 Vdc Test voltages Insulation test voltage (I 0-) kv, 0 Hz, min kv, 0 Hz, min Surge voltage (I 0-) kv,./0 ms, 0. J kv,./0 ms, 0. J nvironmental conditions Operating temperature - to +0 o -0 to + o Operating temperature (display) 0 to +0 o Transport and storage temperature -0 to +0 o -0 to +0 o Relative humidity < % ( year, average value) < % ( year, average value) < 0 % (0 days per year, no condensation permitted) < 0% (0 days per year, no condensation permitted) asing Degree of protection (I 0) IP0 IP0 / Flush mounted IP Dimensions (W x H x D) x x mm 0 x x mm Material Polyphenylene Oxide mm steel plate Weight 0. kg. kg olor code RAL 0 (asing) / RAL 0 (Back plate) Package Dimensions (W x H x D) 0 x 00 x 0 mm x 0 x mm Weight (relay, package and manual) 0. kg. kg
12 Measuring and monitoring VAMP, VAMP 0 DVI TRAK RORD Schneider lectric s VAMP Range specialises in protection protection relays, arc flash protection and measuring and monitoring units for power systems. VAMP s medium-voltage and subtransmission protection relays are used in numerous 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 manufacturer in arc flash protection worldwide. All VAMP products meet the latest international standards and regulations. Our success is based on competitive standard products, constant development by our designers possessing experience from three protection relay generations, our longterm partnerships, flexibility and h care of the customers. Schneider lectric Industries SAS, rue Joseph Monier S 0 F - 0 Rueil Malmaison edex (France) Tel.: + (0) 0 00 RS Nanterre 0 apital social NRJDN As standards, specifications and designs change from time to time, please ask for confirmation of the information given in this publication. Design: Schneider lectric Industries SAS - WILMA Photos: Schneider lectric Industries SAS Printed: This document has been printed on recycled paper Schneider lectric Industries SAS - All rights reserved
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