Shark MP200 Installation & Operation Manual

Shark MP200 Installation & Operation Manual

Multi-point high-density multifunction power & energy meter
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V.1.07
November 5, 2018

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Summary of Contents for Shark MP200

  • Page 1 V.1.07 November 5, 2018...
  • Page 2 This page intentionally left blank.
  • Page 3 Electro Industries/GaugeTech. © 2018 Electro Industries/GaugeTech Shark® is a registered trademark of Electro Industries/GaugeTech. The distinctive shapes, styles, and overall appearances of all Shark® devices are trademarks of Electro Industries/GaugeTech. Communicator EXT and V-Switch are trademarks of Electro Industries/GaugeTech.
  • Page 4: Electro Industries/Gaugetech Electro Industries/Gaugetech Doc # E166703

    This page intentionally left blank. Electro Industries/GaugeTech Electro Industries/GaugeTech E166703 The Leader In Power Monitoring and Smart Grid Solutions The Leader In Power Monitoring and Smart Grid Solutions...
  • Page 5: Product Warranty

    This warranty does not apply to defects resulting from unauthorized modification, misuse, or use for any reason other than electrical power monitoring. The MP200 unit is not a user-serviceable product. THIS WARRANTY IS IN LIEU OF ALL OTHER WARRANTIES, EXPRESSED OR IMPLIED, INCLUDING ANY IMPLIED WARRANTY OF MERCHANTABIL- ITY OR FITNESS FOR A PARTICULAR PURPOSE.
  • Page 6: Use Of Product For Protection

    Veuillez consulter le chapitre 4 pour des informations importantes relatives à l’instal- lation et branchement du compteur. The following safety symbols are used on the MP200 unit itself: Les symboles de sécurité suivante peuvent être utilisés sur le compteur même: This symbol alerts you to the presence of high voltage, which can cause dangerous electrical shock.
  • Page 7: About Electro Industries/Gaugetech (Eig)

    This symbol indicates the field wiring terminal that must be connected to earth ground before operating the MP200 unit, which protects against electrical shock in case of a fault condition. Ce symbole indique que la borne de pose des canalisations in-situ qui doit être branchée dans la mise à...
  • Page 8: Revision History

    Revision History The following table lists revision information for this manual, Doc #E166703, the ® Shark Series MP200 Metering System Installation and Operation Manual. Version Number Revision Date Summary of Changes V.1.01 5/1/2013 First release V.1.02 7/3/2013 Optional display added V.1.03...
  • Page 9: Table Of Contents

    1-12 1.4: Harmonic Distortion 1-14 1.5: Power Quality 1-17 2: MP200 Metering System Overview and Specifications 2.1: Shark® Series MP200 Metering System Overview 2.1.1: Voltage and Current Inputs 2.1.2: Ordering Information Electro Industries/GaugeTech Electro Industries/GaugeTech E166703 TOC-1 The Leader In Power Monitoring and Smart Grid Solutions...
  • Page 10 4.4: Voltage Fuses 4.6: Electrical Connection Diagrams 4.7: Removing the MP200 Unit From Service/Reinstalling the MP200 Unit 4-16 4.7.1: Removing the MP200 Unit Using the EI SB-6TC Shorting Block 4-17 4.7.1.1: Reinstalling the MP200 Unit Using the EI SB-6TC Shorting Block 4-20 4.7.2: Removing the MP200 Unit Using a Shorting Block...
  • Page 11 Table of Contents 4.7.2.1: Reinstalling the MP200 Unit Using a Shorting Block Other than the EI SB-6TC 4-21 5: Communicating with the Meter 5.1: MP200 Metering System Communication 5.1.1: RS485 / Ethernet or WiFi (Com 1) 5.1.2: RS485 Communication 5.1.2.1: Using the Unicom 2500 5.1.3: USB Port (Com 2)
  • Page 12 Table of Contents 8.1: Overview 8.2: Factory Default Settings 8.2.1: Modbus/TCP to RTU Bridge Setup Default Settings 8.3: Configure Network Module 8.3.1: Configuration Requirements 8.3.2: Configuring the Ethernet Adapter 8.3.3: Detailed Configuration Parameters 8.3.4: Setup Details 8.4: Network Module Hardware Initialization 8-14 9: Data Logging 9.1: Overview...
  • Page 13 B: Modbus Map Overview B.1: Introduction B.2: Modbus Register Map Sections B.3: Data Formats B.4: Floating Point Values B.5: Important Note Concerning the MP200 Unit's Modbus Map B.5.1: Hex Representation B.5.2: Decimal Representation B.6: Modbus Register Maps and Retrieving Logs...
  • Page 14 Table of Contents E: Retrieving Logs Using the MP200 Metering System's Modbus Map E.1: Overview E.2: Data Formats E.3: MP200 Metering System Logs E.4: Block Definitions E.5: Log Retrieval E-14 E.5.1: Auto-Increment E-14 E.5.2: Modbus Function Code 0x23 E-15 E.5.3: Log Retrieval Procedure E-17 E.5.4: Log Retrieval Example...
  • Page 15: 1: Three-Phase Power Measurement

    1: Three-Phase Power Measurement 1: Three-Phase Power Measurement This introduction to three-phase power and power measurement is intended to provide only a brief overview of the subject. The professional meter engineer or meter technician should refer to more advanced documents such as the EEI Handbook for Electricity Metering and the application standards for more in-depth and technical coverage of the subject.
  • Page 16 1: Three-Phase Power Measurement Phase 3 Phase 1 Phase 2 Figure 1.1: Three-phase Wye Winding The three voltages are separated by 120 electrically. Under balanced load conditions the currents are also separated by 120 . However, unbalanced loads and other conditions can cause the currents to depart from the ideal 120 separation.
  • Page 17 1: Three-Phase Power Measurement The phasor diagram shows the 120 angular separation between the phase voltages. The phase-to-phase voltage in a balanced three-phase wye system is 1.732 times the phase-to-neutral voltage. The center point of the wye is tied together and is typically grounded.
  • Page 18: 2: Delta Connection

    1: Three-Phase Power Measurement 1.1.2: Delta Connection Delta-connected services may be fed with either three wires or four wires. In a three- phase delta service the load windings are connected from phase-to-phase rather than from phase-to-ground. Figure 1.3 shows the physical load connections for a delta service.
  • Page 19 1: Three-Phase Power Measurement Figure 1.4: Phasor Diagram, Three-Phase Voltages and Currents, Delta-Connected Another common delta connection is the four-wire, grounded delta used for lighting loads. In this connection the center point of one winding is grounded. On a 120/240 volt, four-wire, grounded delta service the phase-to-ground voltage would be 120 volts on two phases and 208 volts on the third phase.
  • Page 20: 3: Blondel's Theorem And Three Phase Measurement

    1: Three-Phase Power Measurement 1.1.3: Blondel’s Theorem and Three Phase Measurement In 1893 an engineer and mathematician named Andre E. Blondel set forth the first scientific basis for polyphase metering. His theorem states: If energy is supplied to any system of conductors through N wires, the total power in the system is given by the algebraic sum of the readings of N wattmeters so arranged that each of the N wires contains one current coil, the corresponding potential coil being connected between that wire and some common point.
  • Page 21 1: Three-Phase Power Measurement Some digital meters measure the individual phase power values one phase at a time. This means the meter samples the voltage and current on one phase and calculates a power value. Then it samples the second phase and calculates the power for the sec- ond phase.
  • Page 22: Power, Energy And Demand

    1: Three-Phase Power Measurement the four wires if they are connected by a common node. In the circuit of Figure 1.6 we must measure the power flow in three wires. This will require three voltage coils and three current coils (a three-element meter). Similar figures and conclusions could be reached for other circuit configurations involving Delta-connected loads.
  • Page 23 1: Three-Phase Power Measurement specified that the load is constant over that minute, we can convert the power reading to an equivalent consumed energy reading by multiplying the power reading times 1/ 60 (converting the time base from minutes to hours). Time (minutes) Figure 1.7: Power Use over Time Electro Industries/GaugeTech...
  • Page 24 1: Three-Phase Power Measurement Time Accumulated Power Energy Interval Energy (kW) (kWh) (minute) (kWh) 0.50 0.50 0.83 1.33 0.67 2.00 0.92 2.92 1.00 3.92 1.00 4.92 1.17 6.09 1.17 7.26 1.00 8.26 1.17 9.43 1.33 10.76 0.83 12.42 0.83 12.42 1.17 13.59 1.33...
  • Page 25 1: Three-Phase Power Measurement 59.68 kWh. The same process is applied to calculate the 15-minute demand value. The demand value associated with the example load is 59.68 kWh/hr or 59.68 kWd. Note that the peak instantaneous value of power is 80 kW, significantly more than the demand value.
  • Page 26: Reactive Energy And Power Factor

    1: Three-Phase Power Measurement 1.3: Reactive Energy and Power Factor The real power and energy measurements discussed in the previous section relate to the quantities that are most used in electrical systems. But it is often not sufficient to only measure real power and energy. Reactive power is a critical component of the total power picture because almost all real-life applications have an impact on reac- tive power.
  • Page 27 1: Three-Phase Power Measurement leads the voltage the load is requiring real power (watts) but is delivering reactive power (VARs) back into the system; that is VARs are flowing in the opposite direction of the real power flow. Reactive power (VARs) is required in all power systems. Any equipment that uses magnetization to operate requires VARs.
  • Page 28: Harmonic Distortion

    1: Three-Phase Power Measurement where  is the angle between the voltage and the current (see Fig. 1.9). In applications where the voltage and current are not distorted, the Total Power Fac- tor will equal the Displacement Power Factor. But if harmonic distortion is present, the two power factors will not be equal.
  • Page 29 1: Three-Phase Power Measurement 1500 1000 –500 –1000 –1500 Figure 1.11: Distorted Current Waveform The distortion observed in Figure 1.11 can be modeled as the sum of several sinusoi- dal waveforms of frequencies that are multiples of the fundamental 60 Hz frequency. This modeling is performed by mathematically disassembling the distorted waveform into a collection of higher frequency waveforms.
  • Page 30 1: Three-Phase Power Measurement The waveforms shown in Figure 1.12 are not smoothed but do provide an indication of the impact of combining multiple harmonic frequencies together. When harmonics are present it is important to remember that these quantities are operating at higher frequencies.
  • Page 31: Power Quality

    1: Three-Phase Power Measurement Typically a waveform capture will be one or two cycles in duration and can be viewed as the actual waveform, as a spectral view of the harmonic content, or a tabular view showing the magnitude and phase shift of each harmonic value. Data collected with waveform capture is typically not saved to memory.
  • Page 32 1: Three-Phase Power Measurement Cause Disturbance Type Source Impulse transient Transient voltage disturbance, Lightning sub-cycle duration Electrostatic discharge Load switching Capacitor switching Oscillatory Transient voltage, sub-cycle Line/cable switching transient with decay duration Capacitor switching Load switching Sag/swell RMS voltage, multiple cycle Remote system faults duration Interruptions...
  • Page 33: 2: Mp200 Metering System Overview And Specifications

    The MP200 unit can be ordered as either an MP200-Y for three phase Wye/Delta sys- tems or as an MP200-S for single phase systems. The MP200 unit is designed to be a cost-effective instrument for high density metering. It is important to note that for this design to function properly, all loads must be powered from a common voltage (or three phase voltage) set.
  • Page 34 The MP200 metering system offers up to 32 MegaBytes of non-volatile memory for per-circuit Energy usage trending. The MP200 unit provides you with up to 5 logs: two historical logs, a log of limit alarms, a log of I/O changes, and a sequence of events log.
  • Page 35: 1: Voltage And Current Inputs

    PT ratio needed. Current Inputs The MP200 unit can be ordered with either a 5 A or a 1 A secondary for current mea- surements. Depending on the MP200 metering system model, there are either 8 three phase current inputs, or 24 single phase current inputs.
  • Page 36: 2: Ordering Information

    *See Section 2.1.3 for more information and instructions on obtaining a V-Switch key. Example: MP200-Y-60-10-V2-X (MP200 metering system with three phase circuit configuration, 60 Hz Frequency, 10 A Secondary, V-2 V-Switch key, and RS485-only communication.) NOTE on Frequency: It is important to specify the frequency to insure the highest possible calibration accuracy from the factory.
  • Page 37 MP200-Y and MP200-S circuit configurations, based on a 15 minute logging interval. Note that both MP200-Y and MP200-S units have Historical Log 1; Historical Log 2 is used for MP200-Y units, only; and Historical Log 3 is used for MP200-S units, only.
  • Page 38 The V-Switch key is enabled and the MP200 unit resets. NOTE: For more details on the MP200 unit’s software configuration, refer to Chapter 10 in the Communicator EXT 4.0 and MeterManager EXT Software User Manual. You can download this manual at: http://www.electroind.com/dl_page_software-downloads.html...
  • Page 39: 4: Measured Values

    2: MP200 Metering System Overview and Specifications 2.1.4: Measured Values The MP200 metering system provides the following measured values, all in real time instantaneous. As the following tables show, some values are also available in aver- age, maximum and minimum.
  • Page 40 2: MP200 Metering System Overview and Specifications Table 2: Three Phase Circuit Configuration Measured Values Instantaneous Voltage L-N Voltage L-L Current per Phase Current Neutral (see NOTE, below) Watt(A,B,C,Tot.) VAR (A,B,C,Tot.) VA (A,B,C,Tot.) PF (A,B,C,Tot.) +Watt-Hour (A,B,C,Tot.) -Watt-Hour (A,B,C,Tot.) Watt-Hour Net +VAR-Hour (A,B,C,Tot.)
  • Page 41: 5: Utility Peak Demand

    2: MP200 Metering System Overview and Specifications 2.1.5: Utility Peak Demand The MP200 metering system provides user-configured Block (Fixed) window or Rolling window Demand modes. This feature lets you set up a customized Demand profile. Block window Demand mode records the average demand for time intervals you define (usually 5, 15 or 30 minutes).
  • Page 42: Specifications

    2: MP200 Metering System Overview and Specifications 2.2: Specifications Power Supply Range: Universal, 90-300 V AC @50/60 Hz or 150 V DC Power Consumption: 18 VA, 12 W, Maximum Voltage Inputs (Measurement Category III) (For Accuracy specifications, see Section 2.4.)
  • Page 43 2: MP200 Metering System Overview and Specifications Current Inputs (For Accuracy specifications, see Section 2.4.) Class 10: 5 A Nominal, 10 A Maximum Class 2: 1 A Nominal, 2 A Maximum Burden: 0.005 VA Per Input Max at 11 A Pickup Current: 0.1% of Nominal...
  • Page 44 2: MP200 Metering System Overview and Specifications Wh Pulses Red LED light pulses through top cover (see Section 6.2 for Kh values): Peak Spectral wavelength: 574nm Output timing: 3600 ] - Not a scaled value – alues IR LED Light Pulses...
  • Page 45 4. Energy pulse output LED for meter testing: there are 8 pulses, one for each of the three phase loads of the MP200-Y; for the MP200-S, the test pulses are shared, with one pulse for every three loads (see Chapter 6 for more details and instruc- tions for using the Test pulses).
  • Page 46 2: MP200 Metering System Overview and Specifications Optional: Ethernet/WiFi port (Com 1) 802.11b Wireless or RJ45 Connection 10/100BaseT Ethernet Com Specifications RS485 Ports (Com 1 and Com3): RS485 Transceiver; meets or exceeds EIA/TIA-485 Standard Type: Two-wire, half duplex Min. input impedance: 96 kΩ...
  • Page 47 2: MP200 Metering System Overview and Specifications Switching rate max.: 10/s Mechanical life: 5 x 10 switching operations Electrical life: switching operations at rated current Breakdown voltage: AC 1000 V between open contacts Isolation: AC 3000 V / 5000 V surge system...
  • Page 48: Compliance

    2: MP200 Metering System Overview and Specifications 2.3: Compliance • UL listing: UL61010-1, CAN/CSA C22.2 No. 61010-1, UL file number E250818 • IEC 62053-22 (0.5% Class) • ANSI C12.20 (0.5% Accuracy) • ANSI (IEEE) C37.90.1 Surge Withstand • ANSI C62.41 (Burst) •...
  • Page 49: Accuracy

    For unbalanced voltage inputs where at least one crosses the 150 V auto-scale threshold (for example, 120 V/120 V/208 V system), degrade accuracy by additional 0.4%. The MP200 metering system’s accuracy meets the IEC 62053-22 and ANSI C12.20 Accuracy Standards for 0.5% Class Energy meters. Electro Industries/GaugeTech...
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  • Page 51: 3: Mechanical Installation And Maintenance

    3: Mechanical Installation and Maintenance 3: Mechanical Installation and Maintenance 3.1: MP200 Unit Dimensions NOTE: The drawings shown below and on the next page give you the MP200 unit dimensions in inches and millimeters [mm shown in brackets]. Tolerance is +/- 0.1” [.25 cm].
  • Page 52: Mounting The Mp200 Unit

    Figure 3.2: MP200 Unit Side Dimensions 3.2: Mounting the MP200 Unit The MP200 unit is designed to mount against any firm, flat surface. Use a #8 screw in each of the four slots on the flange to ensure that the MP200 unit is installed securely.
  • Page 53: Cleaning The Mp200 Unit

    MP200 avant d'entreprendre la procédure de nettoyage. 1. Wipe the MP200 unit with a dry cloth. If stains or other material cannot be removed with a dry cloth, slightly moisten a cloth with a consumer window cleaner and use this to remove the stains or other material.
  • Page 54 3: Mechanical Installation and Maintenance This page intentionally left blank. Electro Industries/GaugeTech Electro Industries/GaugeTech E166703 The Leader In Power Monitoring and Smart Grid Solutions The Leader In Power Monitoring and Smart Grid Solutions...
  • Page 55: 4: Electrical Installation

    Do not use the MP200 unit for applications where failure of the MP200 unit may cause harm or death. Do not use the MP200 unit for any application where there may be a risk of fire. All MP200 unit terminals should be inaccessible after installation.
  • Page 56 EIG recommends the use of fuses for voltage leads and power supply, and shorting blocks to prevent hazardous voltage conditions or damage to CTs, if the MP200 unit needs to be removed from service. One side of the CT must be grounded.
  • Page 57 EIG recommande d'utiliser les fusibles pour les fils de tension et alimentations élec- triques, ainsi que des coupe-circuits pour prévenir les tensions dangereuses ou endommagements de transformateur de courant si l'unité MP200 doit être enlevée du service. Un côté du transformateur de courant doit être mis à terre.
  • Page 58: Ground Connections

    L'ÉQUIPEMENT ET A LA PORTÉE DE L'OPÉRATEUR. L'INTERRUPTEUR DOIT AVOIR LA MENTION DÉBRANCHEMENT DE L'APPAREIL POUR L'ÉQUIPEMENT. 4.2: Ground Connections The MP200 unit’s Ground terminal should be connected directly to the installation’s protective earth ground. Use AWG# 12/2.5 mm wire for this connection. See the fig- ure below.
  • Page 59: Voltage And Power Supply Connections

    4: Electrical Installation 4.3: Voltage and Power Supply Connections Voltage inputs are connected to the bottom of the MP200 unit via wire connectors. The connectors accommodate AWG# 12 -26/ (0.129 - 3.31) mm Earth Ground Voltage Power Supply Inputs Inputs Figure 4.2: MP200 Unit Connections...
  • Page 60 The cables to the current inputs shall be rated for a minimum of 600 V AC and 10 A (14 AWG copper cable, cross sectional area of 2.08mm Mount the current transformers (CTs) as close as possible to the MP200 unit’s meters. The following table illustrates the maximum recommended distances for various CT sizes, assuming the connection is via 14 AWG copper cable.
  • Page 61 Figure 4.3: EI SB-6TC Shorting Block (Good for 1 set of three phase CTs) Figure 4.4: EI SB-6TC Shorting Block Wiring Diagram It is important to maintain the polarity of the CT circuit when connecting to the MP200 unit’s meters. If the polarity is reversed, the meters will not provide accurate read-...
  • Page 62: Electrical Connection Diagrams

    CTs are facing when clamped around the conductors. EIG recommande fortement d'utiliser les blocs de court-circuit pour permettre le retrait de l'unité MP200 d'un circuit sous tension, si nécessaire (voir Section 4.7 pour les instructions). EIG recommande l'aide d'un bloc de court-circuit triphasé pour chaque charge en trois phases.
  • Page 63 NOTES: • All CTs must have one side grounded to reduce shock hazard. • You must order the MP200-Y unit for the three phase operation. • EIG highly recommends using shorting blocks like the EI SB-6TC so that the meter can be removed from service while the CT is energized.
  • Page 64 NOTES: • All CTs must have one side grounded to reduce shock hazard. • You must order the MP200-Y unit for the three phase operation. • EIG highly recommends using shorting blocks like the EI SB-6TC so that the meter can be removed from service while the CT is energized.
  • Page 65 NOTES: • All CTs must have one side grounded to reduce shock hazard. • You must order the MP200-Y unit for the three phase operation. • EIG highly recommends using shorting blocks like the EI SB-6TC so that the meter can be removed from service while the CT is energized.
  • Page 66 NOTES: • All CTs must have one side grounded to reduce shock hazard. • You must order the MP200-S unit for single phase 2-wire operation. • EIG highly recommends using shorting blocks like the EI SB-6TC so that the meter can be removed from service while the CT is energized.
  • Page 67 NOTES: • All CTs must have one side grounded to reduce shock hazard. • You must order the MP200-Y unit for this operation. • EIG highly recommends using shorting blocks like the EI SB-6TC so that the meter can be removed from service while the CT is energized.
  • Page 68 NOTES: • All CTs must have one side grounded to reduce shock hazard. • You must order the MP200-S unit for single phase operation. • EIG highly recommends using shorting blocks like the EI SB-6TC so that the meter can be removed from service while the CT is energized.
  • Page 69 CT terminals. AVERTISSEMENT! • Avant de tenter un travail sur l'unité MP200 ou sur les composants associés, toutes les alimentations doivent être enlevées et tous les circuits mis hors tension. Vérifiez le statut de mise hors tension de tous les circuits avec l'équipement de mesure por-...
  • Page 70 4.7.1: Removing the MP200 Unit Using the EI SB-6TC Shorting Block NOTE: This procedure uses the EI SB-6TC shorting block. For shorting blocks other than that, see the instructions in 4.7.2: Removing the MP200 Unit Using a Shorting Block Other than the EI SB-6TC, on page 4-19.
  • Page 71 4: Electrical Installation 5. Remove one of the brass shorting screws from the plastic base and place it through the brass shorting bar over one of the grounded terminals and tighten (max torque of 16.2 in-lb, 1.8 N-m). a. Verify that, when tightened, the screw head is in full contact with the brass bar. HORTING CREW TTACHED TO...
  • Page 72 9. If necessary, repeat steps 4 through 8a until all CTs are shorted. Figure 4.7: EI SB-6TC with All CTs Shorted Properly 10. Mark or record the location of the current input wires on the MP200 unit. 11. Disconnect all current input wires from the MP200 unit.
  • Page 73: Shorting Block

    1. Place the MP200 unit in the desired location over the mounting holes. 2. Insert and tighten all 4 mounting screws. 3. Connect the Ground wire to the stud on the MP200 unit and tighten the nut to 8.8 in-lb (1 N-m) (see Figure 4.2: MP200 Unit Connections, on page 4-5).
  • Page 74: 1: Reinstalling The Mp200 Unit Using A Shorting Block

    1. Place the MP200 unit in the desired location over the mounting holes. 2. Insert and tighten all 4 mounting screws. 3. Connect the Ground wire to the stud on the MP200 unit and tighten the nut to 8.8 in-lb (1 N-m) (see Figure 4.2: MP200 Unit Connections, on page 4-5).
  • Page 75: 5: Communicating With The Meter

    The first port, Com 1, is an RS485 port speaking Modbus ASCII or Modbus RTU. This port also has an optional Ethernet/WiFi that supports both RJ45 and wireless Ethernet and that uses Modbus TCP protocol. The MP200 unit has a switch that enables either the standard RS485 or optional Ethernet for Port 1.
  • Page 76: 1: Rs485 / Ethernet Or Wifi (Com 1)

    (Com 3), on page 5-7. 5.1.2: RS485 Communication RS485 allows you to connect one or multiple MP200 units to a PC or other device, at either a local or remote site. All RS485 connections are viable for up to 4000 feet (1219.20 meters).
  • Page 77 5: Communicating with the Meter NOTES: For All RS485 Connections: • Use a shielded twisted pair cable and ground the shield, preferably at one location only. • Establish point-to-point configurations for each device on an RS485 bus: connect (+) terminals to (+) terminals; connect (-) terminals to (-) terminals. •...
  • Page 78 5: Communicating with the Meter Figure 5.4 shows a representation of an RS485 Daisy Chain connection. Refer to 5.1.2.1: Using the Unicom 2500, on page 5-5 for details on RS485 connection for the Unicom 2500. Master device Last Slave device N Slave device 2 Slave device 1 Twisted pair, shielded (SH) cable...
  • Page 79: 1: Using The Unicom 2500

    5.1.2.1: Using the Unicom 2500 The Unicom 2500 provides RS485/RS232 and Fiber Optic/RS232 conversion. In doing so it allows an MP200 unit with RS485 communication to communicate with a PC. See the Unicom 2500 Installation and Operation Manual for additional information. You can order the Unicom 2500 and the recommended communication cable for it from EIG’s webstore: www.electroind.com/store.
  • Page 80: 3: Usb Port (Com 2)

    Figure 5.7: Unicom 2500 Settings the Unicom 2500’s settings. The Unicom’s baud rate must match the baud rate of the MP200 unit’s RS485 port: you set the baud rate by turning the screw to point at the rate you want.
  • Page 81: 4: Rs485/Display Port (Com 3)

    5: Communicating with the Meter Host port as a virtual serial port compatible with the MP200 unit's USB device port. See Appendix A for instructions on installing the driver. The MP200 unit’s USB port settings are: Address: 1 Protocol: Modbus ASCII...
  • Page 82: Mp200 Metering System Communication And Programming Overview

    To use Com 3, connect the communication wires of the supplied RS485 cable to the MP200 unit’s Com 3 port - see Figure 5.9. Set the port’s baud rate to 9600, address to 1, protocol to Modbus RTU or Modbus ASCII and mode to Slave using the communica- tion software.
  • Page 83 5: Communicating with the Meter 3. You can connect to the MP200 unit using RS485, Ethernet, or the USB port (for Ethernet connection, the Ethernet/WiFi option must be installed). See the screens below. RS485 connection connection Ethernet connection Electro Industries/GaugeTech...
  • Page 84 • On Time: the date and time the meter was last powered on. 5. Click the Profile icon in the Title Bar. 6. You will see the MP200 metering system’s Device Profile screen. The menu on the left side of the screen lets you navigate between Settings screens (see screens on next page).
  • Page 85 5: Communicating with the Meter Tree Menu MP200 Unit with Three Phase Configuration - MP200-Y MP200 Unit with Three Phase Configuration - MP200-Y: 2 CT Delta Electro Industries/GaugeTech Electro Industries/GaugeTech Electro Industries/GaugeTech E166703 5-11 The Leader In Power Monitoring and Smart Grid Solutions...
  • Page 86 5: Communicating with the Meter MP200 Unit with Single Phase Configuration - MP200-S NOTE: See 5.2.1.1: Additional MP200 Unit Device Profile Settings, on page 5-15, for instructions on using the screens shown above and on the previous page. Electro Industries/GaugeTech...
  • Page 87 5: Communicating with the Meter 7. Click Communications. You will see the screen shown below. Use this screen to enter communication settings for the MP200 unit's communications ports. Valid Communication Settings are as follows: COM 1: RS485/ Ethernet/WIFI (optional) Address: 1-247...
  • Page 88 5: Communicating with the Meter NOTE: The USB port settings are fixed, i.e., they cannot be changed. COM 3: RS485/Display Port Address: 1-247 Protocol: Modbus RTU/ASCII Baud Rate: 9600, 19200, 38400, 57600 Response Delay: 0-750ms NOTE: Click the (1)Default to Ethernet or (2)Default to Display button to set either the (1)Ethernet settings for COM1 or (2)Display settings for COM3, to their default values.
  • Page 89: 1: Additional Mp200 Unit Device Profile Settings

    5: Communicating with the Meter 5.2.1.1: Additional MP200 Unit Device Profile Settings CT, PT Ratios and System Hookup Electro Industries/GaugeTech Electro Industries/GaugeTech Electro Industries/GaugeTech E166703 5-15 The Leader In Power Monitoring and Smart Grid Solutions The Leader In Power Monitoring and Smart Grid Solutions...
  • Page 90 5: Communicating with the Meter Note that the settings you see on the screen depend on your MP200 unit’s circuit con- figuration. The top screen on the previous page is for an MP200 unit with the three phase Wye circuit configuration; the bottom screen is for an MP200 unit with the three phase 2 CT Delta circuit configuration, and the screen on this page is for an MP200 unit with the single phase circuit configuration.
  • Page 91 5: Communicating with the Meter CT Denominator (Secondary): 5 or 1 Amp, depending on the MP200 unit’s ordered option. This field is display only - it cannot be changed. Example Settings: For a system that has 14400V primary with a 120V secondary line to neutral (PT Ratio...
  • Page 92 5: Communicating with the Meter Energy Decimal Places: 0 - 6 Energy Scale: unit; kilo (K); Mega (M) Example: a reading for Digits: 8; Decimals: 3; Scale: K would be formatted as 00123.456k Power Settings Apparent Power (VA) Calculation Method: Arithmetic Sum; Vector Sum Power Direction: View as Load;...
  • Page 93 5: Communicating with the Meter System Settings Electro Industries/GaugeTech Electro Industries/GaugeTech Electro Industries/GaugeTech E166703 5-19 The Leader In Power Monitoring and Smart Grid Solutions The Leader In Power Monitoring and Smart Grid Solutions The Leader In Power Monitoring and Smart Grid Solutions...
  • Page 94 5: Communicating with the Meter Note that the settings you see on the System Settings screen depend on your MP200 unit’s circuit configuration. The top screen on the previous page is for an MP200 unit with the three phase circuit configuration, either Wye or Delta. That configuration has eight meters.
  • Page 95 For example, if you have a shopping mall with 8 stores, each having a three phase system that is attached to the MP200-Y, you can name the meters Store 1 - Store 8, to identify each meter with its store. Then when you look at the polling screens or logging screens, you can easily identify each store’s data, without needing to...
  • Page 96 Limits log or Limits polling screen. You can also use limits to trigger relays. The current settings for limits are shown in the screen. You can set and configure up to eight limits for the MP200 unit. To set up a limit: 1. Select a limit by double-clicking on the Assigned Channel field.
  • Page 97 Select Item to use for Limit This screen lets you configure the limits. The settings you can make depend on your MP200 unit’s configuration: • For a three phase configuration, you can set up limits from the Readings group’s items for all meters or any individual meter (select from the Meter pull-down menu).
  • Page 98 5: Communicating with the Meter The items you can select for Reading limits for individual meters are: Current, Watts, VAR, VA, and PF. The Demand group (select from the Group pull-down menu) can only have limits set for individual meters (not All Meters). The items you can select for Demand limits are: Current, +Watts, +VAR, -Watts, -VAR, VA, +PF, and -PF.
  • Page 99 5: Communicating with the Meter • Above and Below Return Hysteresis: the point at which the reading goes back within limit (see figure below) Examples: Above Setpoint = 110%; Below Setpoint = 90% (Out of Limit above 132V);(Out of Limit below 108V) Above Return Hysteresis = 105%;...
  • Page 100 5: Communicating with the Meter Time Settings Use this setting to enable or disable Daylight Savings Time for the MP200 unit and to set the beginning and ending times for Daylight Savings Time. From the Tree Menu, click General Settings>Time Settings.
  • Page 101 5: Communicating with the Meter NOTE: Refer to Chapter 10 in the Communicator EXT 4.0 and MeterManager EXT Software User Manual. You can download this manual at: https://electroind.com/product-info/communicator-ext-software-application/ Electro Industries/GaugeTech Electro Industries/GaugeTech Electro Industries/GaugeTech E166703 5-27 The Leader In Power Monitoring and Smart Grid Solutions The Leader In Power Monitoring and Smart Grid Solutions The Leader In Power Monitoring and Smart Grid Solutions...
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  • Page 103: 6: Using The Mp200 Metering System's Watt-Hour Test Pulses

    The MP200 unit has 8 Watt-hour test pulses. These pulses are located at the top of the MP200 unit. Each test pulse is set up to provide a visible red LED output that is proportional to the energy of each of the meters, as follows: •...
  • Page 104: 1: Examples

    6: Using the Watt-Hour Test Pulses 6.2.1: Examples For the MP200-Y unit, use the test pulse assigned to each meter. For example, to verify meter 1, you would measure the pulses from test pulse 1. See the figure below. Test...
  • Page 105 2 and 3 Figure 6.2: Meter 1 and Test Pulse 1 for MP200-S Unit: NO LOAD on Meters 2 and 3 If you want to measure meter 2, make sure that meters 1 and 3 have no load; and if you want to measure meter 3, make sure that meters 1 and 2 have no load.
  • Page 106: 2: Kh Testing Procedure

    The defined unit of energy is given as Kh (Pulse Constant) times "1 kilowatt-hour." The Pulse Constants are given in Table 6.1 and are printed on the MP200 unit’s serial number label next to "Kh-TV<150V" and "Kh-TV>150V."...
  • Page 107 5. Connect the three phase current inputs to the current terminals associated with the test pulse LED being monitored. There must be no other current inputs connected. 6. Energize the Standard and the MP200 unit. To assure accuracy, both must be on for a minimum of 30 minutes.
  • Page 108 LED being monitored. Make sure that no other current inputs (refer to Table 6.2) are connected. 6. Energize the Standard and the MP200 unit. To assure accuracy, both must be on for a minimum of 30 minutes. 7. Energize the sources and wait for the outputs to stabilize before starting the test.
  • Page 109 20. Repeat 5 through 19 until all current inputs and test pulses have been tested. 21. De-energize all circuits and remove power from the Standard, sources, and the MP200 unit. 22. Disconnect all connections from the MP200 unit. Electro Industries/GaugeTech Electro Industries/GaugeTech...
  • Page 110 6: Using the Watt-Hour Test Pulses This page intentionally left blank. Electro Industries/GaugeTech Electro Industries/GaugeTech E166703 The Leader In Power Monitoring and Smart Grid Solutions The Leader In Power Monitoring and Smart Grid Solutions...
  • Page 111: 7: Using The Mp200 Metering System's I/O

    7: Using the MP200 CPU’s I/O 7: Using the MP200 Metering System’s I/O 7.1: Overview The MP200 unit has an embedded relay outputs/digital inputs board. Connections Figure 7.1: Location of I/O Board 7.2: Digital Output (Relay Contact) / Digital Input Board...
  • Page 112: 1: Wiring Diagram

    7: Using the MP200 CPU’s I/O 7.2.1: Wiring Diagram Inputs (1,2,3,4) NO (1,2) Status Input C (1,2) Wet contacts Loop Common (C) NC (1,2) Control Output (Relay Contacts) Inputs (1,2,3,4) Status Input Dry contacts Common (C) Figure 7.2: Relay Contact (4) / Status Input (2) I/O Wiring External Connection: AWG#12-26/ (0.08 -2.5) mm...
  • Page 113: 8: Using Ethernet Communication (Rj45 And Wifi)

    Com 1 via either WiFi (Wireless) or RJ45 connections. • The MP200 unit’s WiFi connection lets you set it up for use in a LAN (Local Area Net- work), using standard WiFi base stations. Then you can access the MP200 unit to perform functions directly through any computer on your LAN: the MP200 unit does not need to be directly connected (wired) to these computers for it to be accessed.
  • Page 114: Factory Default Settings

    8: Using Ethernet Communication If you are using RJ45 Ethernet, connect the Ethernet cable to the MP200 unit as shown in Figure 8.2. Connect Ethernet Cable Here Figure 8.2: RJ45 Ethernet Connection Configuration for both WiFi and RJ45 connections is easily accomplished through your PC using Telnet connections.
  • Page 115: 1: Modbus/Tcp To Rtu Bridge Setup Default Settings

    8: Using Ethernet Communication 8.2.1: Modbus/TCP to RTU Bridge Setup Default Settings 1) Network/IP Settings: Network Mode........Wired Only IP Address........10.0.0.1 Default Gateway......--- not set --- Netmask.........255.255.255.0 2) Serial & Mode Settings: Protocol...........Modbus/RTU,Slave<s> attached Serial Interface.........57600,8,N,1,RS232,CH1 3) Modem/Configurable Pin Settings: CP0..! Defaults <In> Wired CP1..! GPIO <In>...
  • Page 116: Configure Network Module

    Select Command or parameter set (1..7) to change: 8.3: Configure Network Module These procedures explain how to set up the MP200 unit on the Network Module. Only one person at a time can be logged into the network port. This eliminates the possibility of several people trying to configure the Ethernet interface simultaneously.
  • Page 117: 2: Configuring The Ethernet Adapter

    8: Using Ethernet Communication with the MP200 unit's Network Module, using the instructions in 8.3.2: Configuring the Ethernet Adapter, on page 8-5. • If you have multiple Ethernet adapters (network cards) installed on your computer, you must choose, configure and use the correct one to access the Network Module.
  • Page 118 8: Using Ethernet Communication 2. Right click on the Local Area Network connection you will be using to connect to the MP200 unit, and select Properties from the pull-down menu. You will see a screen similar to the one shown below.
  • Page 119 8: Using Ethernet Communication 4. Click the Use the Following IP Address radio button. The screen changes to allow you to enter the IP Address and Subnet Mask. a. Enter 10.0.0.2 in the IP Address field. b. Enter 255.255.255.0 in the Subnet Mask field. 3.
  • Page 120: 3: Detailed Configuration Parameters

    Certain parameters must be configured before the Ethernet interface can function on a network. The following procedure can be locally or remotely configured. Use a Telnet connection to configure the MP200 unit over the network. The Ethernet interface's configuration is stored in meter memory and is retained without power.
  • Page 121: 4: Setup Details

    WLAN Settings Detail (6) (The settings shown are recommended by EIG for use with the MP200 metering system. You will only be able to access these settings if you have set Network Mode to “1” (to select Wireless mode) in the Network IP Settings Detail, shown previously.)
  • Page 122 8: Using Ethernet Communication Topology: 0=Infrastructure, 1=Ad-Hoc <1> ? 0 Network Name: EIG_SHARKS Security suite: 0=none, 1=WEP, 2=WPA, 3=WPA2/802.11i <0> ? Enter the number of the encryption method are using, e.g., 3 for WPA2/802.11i. • If you select “1” (WEP), you will see the following settings: Authentication 0=open/none, 1=shared <0>...
  • Page 123 8: Using Ethernet Communication 2. Click the Generate Keys button. Your Hexadecimal WEP Keys display. PASSPHRASE TO HEXADECIMAL WEP KEYS The passphrase 1009egbcke001306ab produces the following keys: 64-BIT (40-BIT KEYS) 1. AA43FB768D 2. 637D8DB9CE 3. AFDE50AF61 4. 0c35E73E25 128-BIT (104-BIT) KEY 041D7773D8B2C1D97BE9531DC 3.
  • Page 124 8: Using Ethernet Communication Enter Key: (The maximum length of the passphrase is 63 characters. EIG rec- ommends using a passphrase of 20 characters or more for maximum security.) Encryption: 0=TKIP, 1=TKIP+WEP <0> ? Set the type to the minimum required security level.
  • Page 125 8: Using Ethernet Communication wise (unicast) encryption. For example, for CCMP+TKIP, CCMP is the pairwise encryption and TKIP is the group encryption. CCMP is the default for WPA2.) TX Data rate: 0=fixed, 1=auto fallback <1>? 1 TX Data rate: 0=1, 1=2, 2=5.5, 3=11, 4=18, 5=24, 6=36, 7=54 Mbps <7>? Enter data transmission rate, e.g., 7 for 54Mbps.
  • Page 126: Network Module Hardware Initialization

    8: Using Ethernet Communication 8.4: Network Module Hardware Initialization If you don't know your current Network Module settings, or if the settings are lost, you can use the meter’s Reset button to initialize the hardware with known settings you can then work with. The Reset button is located to the right of the RS485/Ether- net/WiFi switch.
  • Page 127: 9: Data Logging

    The following logs are available for an MP200 unit equipped with V2 and V3. These meters have 2 and 32 MB, respectively, of non-volatile memory for data logging. • Historical logs: Each MP200 unit with V2 or V3 has two historical logs. Log 1 is con- figurable through Communicator EXT software.
  • Page 128 Input board’s output or input status changes. Up to 16,382 events can be logged. • System Events log: In order to protect critical billing information, the MP200 unit records and logs the following information with a timestamp: • Demand resets •...
  • Page 129 9: Data Logging All of the MP200 unit logs can be viewed through the EIG Log Viewer. Refer to Chapter 8 of the Communicator EXT User Manual for additional information and instructions regarding logs and the Log Viewer. See Appendix E for instructions on retrieving logs using the MP200 unit’s Modbus map.
  • Page 130 9: Data Logging This page intentionally left blank. Electro Industries/GaugeTech Electro Industries/GaugeTech Electro Industries/GaugeTech E166703 The Leader In Power Monitoring and Smart Grid Solutions The Leader In Power Monitoring and Smart Grid Solutions The Leader In Power Monitoring and Smart Grid Solutions...
  • Page 131: 10: Using The Optional Display

    10: Using the Optional Display 10.1: Overview This chapter describes the optional display for the MP200 metering unit. The display lets you view meter readings remotely. The display come pre-configured, but you can change the default settings, for example, the IP address, if necessary. There are two available display models: •...
  • Page 132: 1: Contents Of Display Kit

    • Easy communication connection - RJ45 Ethernet and RS485 serial communication options • Display automatically detects communication connection • 65k color touch screen • Pre-programmed MP200-Y and MP200-S readings and status display screens 10.2.1: Contents of Display Kit Figure 10.2: Display Kit Contents (1) Display...
  • Page 133: Mdsn/Mdln Specifications

    10: Using the Optional Display 10.3: MDSN/MDLN Specifications Following are the display specifications and important safety information. 10.3.1: General Specifications Electrical Specifications Display Rated Input Voltage Power In-Rush Voltage Insulation Model Input Voltage Drop Consumption Current Endurance Resistance Voltage Limits MDSN 24 V DC (20.4 to...
  • Page 134 10: Using the Optional Display MDSN MDLN Electrical fast IEC 61000-4-4 IEC 61000-4-4 transient/burst 2 kV Power port 2 kV Power port 1 kV Signal ports 1 kV Signal ports Electrostatic IEC 61000-4-2 IEC 61000-4-2 Discharge Immunity 6 kV Contact discharge 6 kV Contact discharge 8 kV Air discharge 8 kV Air discharge...
  • Page 135: 2: Communication Port Specifications

    10: Using the Optional Display 10.3.2: Communication Port Specifications Serial Interface COM1 Asynchronous Transmission RS232C / RS422 / RS485 Data Length 7 or 8 bits Stop Bit 1 or 2 bits Parity None, odd or even Data Transmission Speed 2,400 to 115.200 kbps, 187,500 bps Connector D-Sub 9 pin (plug) Ethernet Interface...
  • Page 136: 3: Important Safety And Product Usage Information

    10: Using the Optional Display 10.3.3: Important Safety and Product Usage Information Handling the LCD Panel The following characteristics are specific to the LCD unit and are considered normal behavior: • The LCD screen may show unevenness in the brightness of certain images or may appear different when seen from outside the specified viewing angle.
  • Page 137 10: Using the Optional Display AVERTISSEMENT! BLESSURES GRAVES DANS LES YEUX ET SUR LA PEAU Le liquide présent dans le panneau ACL contient des irritants: • Évitez le contact direct avec la peau. • Portez des gants lorsque vous fixez une unité endommagée ou une fuite •...
  • Page 138 10: Using the Optional Display COM 1 Serial Port Warning and Cautions WARNING! DANGER OF ELECTRIC SHOCK! The serial port is not isolated. The SG (signal ground) and the FG (frame ground) terminals are connected inside the unit. When using the SG terminal to connect an external device to the unit: •...
  • Page 139 10: Using the Optional Display Critical systems, Detected Alarms and Handling Requirements Critical detected alarm indicators require independent and redundant protection hard- ware and/or mechanical interlocks. If the display unit for any reason becomes inoper- ative (for example, an inoperative backlight) it may be difficult or impossible to identify an alarm condition.
  • Page 140 10: Using the Optional Display Exigences relatives aux systèmes importants, détections d'alarmes et manutentions Les indicateurs importants d'alarmes détectés exigent un appareil de protection redondant et indépendant ou un verrouillage mécanique. Si l'unité pour toute raison devient inopérante (par exemple, un rétroéclairage lumineux inopérant), il peut être difficile ou impossible d'identifier une situation d'alarme.
  • Page 141: Display Dimensions

    10: Using the Optional Display AVERTISSEMENT! FONCTIONNEMENT ACCIDENTEL DE L'ÉQUI- PEMENT Ne pas utiliser l'unité comme seul appareil de notification pour alarmes critiques, comme une surchauffe ou une surintensité. Le non-respect de ces instructions peut provoquer des blessures graves ou endommagements de l'équipement ou la mort.
  • Page 142 10: Using the Optional Display 3.43mm 30mm 0.13in [1.18in] 15.3mm [0.60in] 117.7mm [4.63in] 17.5mm [0.69in] 163mm [6.41in] 32.8mm [1.29in] Figure 10.4: MDLN Dimensions Electro Industries/GaugeTech Electro Industries/GaugeTech E166703 10-12 The Leader In Power Monitoring and Smart Grid Solutions The Leader In Power Monitoring and Smart Grid Solutions...
  • Page 143 10: Using the Optional Display 30.6mm [1.20in] 9.5mm [0.37in] 118mm 40.1mm [4.64in] [1.57in] Figure 10.5: MDSN/MDLN Back Dimensions Electro Industries/GaugeTech Electro Industries/GaugeTech E166703 10-13 The Leader In Power Monitoring and Smart Grid Solutions The Leader In Power Monitoring and Smart Grid Solutions...
  • Page 144: Display Installation

    10: Using the Optional Display 10.5: Display Installation Mount the unit in an enclosure that provides a clean, dry, and controlled environment (IP65f enclosure or UL508 4x, if indoors). Before installing the display verify that: • The gasket is flat and undamaged. •...
  • Page 145 10: Using the Optional Display torque is 6 Nm/53.10 in-lb. Without the tee option the rotating torque is 2.5 Nm/ 22.12 in-lb. Unit A (mm) A (in.) B (mm) (1) B (in.) (1) B (mm) (2) B (in.) (2) MDSN MDLN 22.50 0.88...
  • Page 146 10: Using the Optional Display 1: Display Module (front) 2: Panel with Cutout 3: Display Installation Nut 4: Anti-Rotation Tee Figure 10.8: Installation Components 2. Insert the display module (along with the tee insert if you are using it) into the panel hole (see Figure 10.8).
  • Page 147 10: Using the Optional Display 4. Insert and push the rear module until it locks into place. NOTE: Install the display module and the rear module as shown in Figure 10.10, below. If either unit is installed incorrectly, the connector may be damaged. Insert and push Free...
  • Page 148: Display Configuration

    • RS485 serial communication through the MP200 unit’s Com 3 serial port • RJ45 Ethernet through the MP200 unit’s optional Ethernet/WiFi on Com 1 Both the MP200 unit and the display need to have specific settings to enable their communication. The display is pre-programmed to communicate with the MP200 metering system’s default IP address and RS485 Com port settings.
  • Page 149: 1: Rs485 Communication Configuration

    10: Using the Optional Display 10.6.1: RS485 Communication Configuration RS485 serial communication is set up between the MP200 unit’s Com 3 and the MDSN/MDLN’s RS485 port. NOTE: See 5.1.2: RS485 Communication, on page 5-2, for general information con- cerning RS485 communication.
  • Page 150 RS485 connection automatically. 4. The display will initialize and then show the first screen, which lists information about the MP200 unit. An example screen is shown below. Continue to 10.7: Dis- play Screens, on page 10-24. Displays the...
  • Page 151: 2: Rj45 Ethernet Configuration

    10: Using the Optional Display 10.6.2: RJ45 Ethernet Configuration Ethernet communication is set up between the MP200 unit’s Com 1 RJ45 port and the MDSN/MDLN’s RJ45 port. Follow this procedure: 1. Set the MP200 unit’s Com1 switch to Ethernet/WiFi. Com 1 Switch Figure 10.12: Com 1 Switch Set to Ethernet/WiFi...
  • Page 152 10: Using the Optional Display b. Make sure the Com1 settings are the same as those shown in the screen below. If they are not, click the Default for Ethernet button to bring these settings into the Com 1 fields. c.
  • Page 153 10: Using the Optional Display 3. Use an Ethernet cable to connect the MP200 unit’s RJ45 port to the MDLN/MDSN display’s RJ45 port, at the bottom of the display. Display’s RJ45 Connection Figure 10.13: RJ45 Connection 4. Plug in the display. The display will show messages as it boots up. You will then see the screen below.
  • Page 154: Display Screens

    Depending on your system config- uration, you will see either the screen on the left (MP200-Y with 8 three phase cir- cuits/meters) or the one on the screen on the right (MP200-S with 24 single phase circuits/meters).
  • Page 155 Next button or the Down arrow. The caption underneath the screen tells you whether it is for the MP200-Y unit’s three phase configuration or the MP200-S unit’s single phase configuration. Some screens are shared by both MP200 unit con- figurations.
  • Page 156 10: Using the Optional Display Three Phase VAR per Phase screen (Wye configuration only, not Delta configuration) Three Phase VA per Phase screen (Wye configuration only, not Delta configuration) Single Phase KW, KVAR, KVA screen Electro Industries/GaugeTech Electro Industries/GaugeTech E166703 10-26 The Leader In Power Monitoring and Smart Grid Solutions The Leader In Power Monitoring and Smart Grid Solutions...
  • Page 157 10: Using the Optional Display Three Phase Volts Line to Neutral screen (Wye configuration only, not Delta configuration) Three Phase Volts Line to Line screen Three Phase Amperes per Phase screen Electro Industries/GaugeTech Electro Industries/GaugeTech E166703 10-27 The Leader In Power Monitoring and Smart Grid Solutions The Leader In Power Monitoring and Smart Grid Solutions...
  • Page 158 10: Using the Optional Display Three Phase Frequency screen Single Phase Volt, Ampere, Frequency screen 2 CT Delta Phasor screen Single Phase Phasor screen Three Phase Phasor screen Touch the Options button to display the following screen. Electro Industries/GaugeTech Electro Industries/GaugeTech E166703 10-28 The Leader In Power Monitoring and Smart Grid Solutions...
  • Page 159 10: Using the Optional Display Phasor Options Screen Touch the buttons to change the Display Angle and/or Rotation. Touch the Default button to return to the original settings. Click OK to redisplay the Phasor Diagram screen. Electro Industries/GaugeTech Electro Industries/GaugeTech E166703 10-29 The Leader In Power Monitoring and Smart Grid Solutions...
  • Page 160 10: Using the Optional Display Pulse Inputs screen Touch the down arrow to display the following screen. Relay Outputs screen This is the last Readings screen. From here you can: • Touch the Back button to begin at the first screen of readings for the meter. •...
  • Page 161 Touch the Down arrow to see the screen shown below, which displays the settings for the MP200 unit’s Com 2. Com 2 Settings for MP200 Unit Touch the Down arrow to see the following, which displays the settings for the MP200 unit’s Com 3. Electro Industries/GaugeTech...
  • Page 162 Com 3 Settings for MP200 Unit Touch the Down arrow to see the screen shown below, which displays information about the MP200 unit: hookup, run state, battery state, whether logging is enabled, and firmware version. CPU Main Unit Information screen Touch the Down arrow to see the following screen, which displays information about the display: firmware version and active connection.
  • Page 163 10: Using the Optional Display Display Information screen This is the last Settings screen. From here you can: • Touch the Offline button to access Offline mode (described in 10.8: Offline Mode, on page 10-38). • Touch Alarms to see the Alarm/Limits screens (described next). •...
  • Page 164 10: Using the Optional Display Alarms/Limits Screens Out of Limit Alarm screen When you touch Alarm you will see the Out of Limits screen, which displays the first four limits. Touch the down button to display limits 5-8, shown below. Out of Limit Alarm screen #2 Touch the Down button to display the screen shown below, which gives you the status of the I/O card’s inputs.
  • Page 165 10: Using the Optional Display Option Card Status Inputs screen Touch the Down arrow to display the following screen, which displays the status of the I/O card’s relays. Option Card Relay Status screen This is the last Alarms/Limits screen. From here you can: •...
  • Page 166 When you touch the Resets button you see the screen shown above. Touch either Reset option to reset either the Max/Min Demand and/or Max/Min Volt- age and Frequency for all of the meters in the MP200 unit. Touch the Down arrow to display the following screen.
  • Page 167 10: Using the Optional Display Touch the button to reset Max/Min Demand for the current meter. This is the meter you selected from the Home screen. Touch the Reset button to perform the reset. Password screen If a password has been set for Reset, this screen will be displayed after you select one of the Reset options.
  • Page 168: Offline Mode

    (Cancel). NOTE: In this manual we only describe in detail the Offline screen’s whose settings you may need to change when working with the MP200 metering system. Main Unit tab Touch the Main Unit tab to access the following setting: •...
  • Page 169 10: Using the Optional Display • Window Settings • System Area • Ethernet (see 10.8.2: Setting Communication through Offline Mode, on page 10- 41, for information on this setting) • Logic • Extended • Remote Viewer To access a setting, touch its button. Other screens will display that will let you make changes to the settings.
  • Page 170: 1: Making Selections And Entering Information In Offline Mode

    10: Using the Optional Display 10.8.1: Making Selections and Entering Information in Offline Mode The Offline screens operate in the same touch-screen mode as the display’s other screens: touch the buttons you want to select. For certain settings you may need to enter letters and/or numbers.
  • Page 171: 2: Setting Communication Through Offline Mode

    If the display is not able to communicate with the MP200 metering system (for exam- ple, if you have changed the default IP address of the MP200 unit), you will see an error message similar to the one shown below, at the bottom of the display screen.
  • Page 172 10: Using the Optional Display 3. From the Offline Home screen, touch the Peripheral tab. Touch this tab 4. From the Peripheral menu, touch the Device/PLC Settings button. Touch this button 5. What you do now depends on your communication connection. •...
  • Page 173 Touch this button e.Touch the Save Changes and Exit button. The display should begin to communicate with the MP200 unit as shown in 10.6.1: RS485 Communica- tion Configuration, on page 10-19. • If you are connecting via Ethernet:...
  • Page 174 Make sure the fields are the same as this c. Click the Device tab. Enter the MP200 unit’s IP address (when you touch the IP address field, a numeric window opens - see 10.8.1: Making Selec- tions and Entering Information in Offline Mode, on page 10-40). The other settings should be the same as shown below.
  • Page 175 IP address here Touch this button f. You will see the screen shown below. This is where you enter the display’s gateway IP address if the display and MP200 unit are not on the same sub- Electro Industries/GaugeTech Electro Industries/GaugeTech...
  • Page 176 Touch this button h. Touch the Save Changes and Exit button. The display will begin to communicate with the MP200 unit as shown in 10.6.2: RJ45 Ethernet Con- figuration, on page 10-21. Electro Industries/GaugeTech...
  • Page 177: Maintenance

    10: Using the Optional Display 10.9: Maintenance Cleaning the Display CAUTION: EQUIPMENT DAMAGE • Power off the unit before cleaning it. • Do not use hard or pointed objects to operate the touch panel, since it can damage the panel surface. •...
  • Page 178: Compliance Standards

    10: Using the Optional Display 10.10: Compliance and Standards • ANSI/UL 61010-1 / ANSI/UL 61010-2-201 for Programmable Controllers • CSA C22.2 no. 142 for Industrial Control Equipment • IEC 61010-1/IEC 610010-2-201 for Programmable Controllers • ANSI/ISA 12.12.01 and CSA C22.2 no. 213 for Electrical Equipment for Use in Class I, Division 2 Groups A, B, C and D Hazardous (classified) Locations Hazardous Sub- stances •...
  • Page 179: A: Installing The Usb Virtual Com Port

    As mentioned in Chapter 5, EIG provides a driver (for operating systems earlier than Windows® 7) that lets you configure the MP200 unit's USB port as a Virtual Serial port. The driver is on the CD that came with your meter. Follow the instructions in this chapter to install the driver and connect to the meter's Virtual port.
  • Page 180: A.3: Connecting To The Virtual Port

    A: Installing the USB Virtual COM Port 6. Plug a USB cable into your PC and the MP200 unit's USB port. You will see pop-up message windows telling you that new hardware has been found and that it is installed and ready to use.
  • Page 181: B: Modbus Map Overview

    B: Modbus Map Overview B: Modbus Map Overview B.1: Introduction The Modbus map for the MP200 metering system gives details and information about its possible readings and its programming. The MP200 unit can be programmed using Communicator EXT software. For a programming overview, see Section 5.2. For fur- ther details see the Communicator EXT 4.0 and MeterManager EXT Software User...
  • Page 182: B.4: Floating Point Values

    B: Modbus Map Overview SINT32/UINT32: 32-bit signed/unsigned integer spanning 2 registers - the lower-addressed register is the high order half FLOAT: 32-bit IEEE floating point number spanning 2 registers - the lower-addressed register is the high order half (i.e., contains the exponent) B.4: Floating Point Values Floating Point Values are represented in the following format: Register...
  • Page 183: B.5: Important Note Concerning The Mp200 Unit's Modbus Map

    • Exponent = the whole number before the decimal point. • Mantissa = the positive fraction after the decimal point. B.5: Important Note Concerning the MP200 Unit's Modbus Map In depicting Modbus registers (Addresses), the MP200 unit's Modbus map uses Hold- ing Registers only. B.5.1: Hex Representation The representation shown in the table below is used by developers of Modbus drivers and libraries, SEL 2020/2030 programmers and Firmware Developers.
  • Page 184: B.5.2: Decimal Representation

    MP200 Unit Serial Number In order to retrieve the MP200 unit’s serial number, enter 40009 into the SCADA UI as the starting register, and 8 as the number of registers. • In order to work with SCADA and Driver packages that use the 40001 to 49999 method for requesting holding registers, take 40000 and add the value of the regis- ter (Address) in the decimal column of the Modbus map.
  • Page 185: B.6: Modbus Register Maps And Retrieving Logs

    B.6: Modbus Register Maps and Retrieving Logs • Appendix C contains the MP200-Y unit’s Modbus map. • Appendix D contains the MP200-S unit’s Modbus map. • Appendix E contains instructions on retrieving MP200 unit logs via the Modbus map. Electro Industries/GaugeTech Electro Industries/GaugeTech...
  • Page 186 B: Modbus Map Overview This page intentionally left blank. Electro Industries/GaugeTech Electro Industries/GaugeTech E166703 Electro Industries/GaugeTech The Leader In Power Monitoring and Smart Grid Solutions The Leader In Power Monitoring and Smart Grid Solutions The Leader In Power Monitoring and Smart Grid Solutions...
  • Page 187 C: MP200-Y (Three Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Comments # Reg Resolution Fixed Data Section Identification Block read-only -------m vvvvvvvv -----ccc -- ffffff Electro Industries/GaugeTech Doc# E166703 The Leader In Power Monitoring and Smart Grid Solutions...
  • Page 188 C: MP200-Y (Three Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Comments # Reg Resolution CPU Data Section Primary Voltage Readings Block read-only Primary Readings Block Meter 1 read-only Electro Industries/GaugeTech Doc# E166703 The Leader In Power Monitoring and Smart Grid Solutions...
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  • Page 315 C: MP200-Y (Three Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Comments # Reg Resolution Card Identification and Configuration Block (Note 13) (Relay/Digital IO Card) read-only eeeeeeee cccccccc Electro Industries/GaugeTech Doc# E166703 C-129 The Leader In Power Monitoring and Smart Grid Solutions...
  • Page 316 C: MP200-Y (Three Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Comments # Reg Resolution Data and Control Block -- Digital I/O Relay Card Overlay (Note 14) read-only except as indicated 44443333 22221111 -------- --ab- -------- -----...
  • Page 317 C: MP200-Y (Three Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Comments # Reg Resolution Accumulators Block read-only Commands Section (Note 4) Resets Block (Note 9) write-only Electro Industries/GaugeTech Doc# E166703 C-131 The Leader In Power Monitoring and Smart Grid Solutions...
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  • Page 321 C: MP200-Y (Three Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Comments # Reg Resolution -------- urpdywfa ----dddd -ppp- ----dddd -ppp- ----dddd -ppp- Electro Industries/GaugeTech Doc# E166703 C-135 The Leader In Power Monitoring and Smart Grid Solutions...
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  • Page 323 C: MP200-Y (Three Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Comments # Reg Resolution Log Setups Block write only in PS update mode eeeeeeee ssssssss 00000000 hgfedcba Settings Registers for Digital I/O Relay Card First Overlay...
  • Page 324 C: MP200-Y (Three Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Comments # Reg Resolution 44443333 22221111 44443333 22221111 Electro Industries/GaugeTech Doc# E166703 C-138 The Leader In Power Monitoring and Smart Grid Solutions...
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  • Page 329 D: MP200-S (Single Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Resolution Comments # Reg Fixed Data Section Identification Block read-only 0000 - 0007 1 - 8 CPU Name ASCII 16 char none 0008 - 000F 9 - 16...
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  • Page 355 D: MP200-S (Single Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Resolution Comments # Reg (Cont’d) Primary Demand Block read-only Electro Industries/GaugeTech Doc# E166703 D-27 The Leader In Power Monitoring and Smart Grid Solutions...
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  • Page 367 D: MP200-S (Single Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Resolution Comments # Reg Phase Angle Block (voltage) Phase Angle Block read-only Electro Industries/GaugeTech Doc# E166703 D-39 The Leader In Power Monitoring and Smart Grid Solutions...
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  • Page 369 D: MP200-S (Single Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Resolution Comments # Reg Status Block read-only none mmmpch-- bffee-cc 87654321 87654321 Electro Industries/GaugeTech Doc# E166703 D-41 The Leader In Power Monitoring and Smart Grid Solutions...
  • Page 370 D: MP200-S (Single Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Resolution Comments # Reg Short term Primary Minimum Block read-only Primary Minimum Block (Voltage) read-only Primary Minimum Block read-only Electro Industries/GaugeTech Doc# E166703 D-42 The Leader In Power Monitoring and Smart Grid Solutions...
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  • Page 382 D: MP200-S (Single Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Resolution Comments # Reg Primary Minimum Timestamp Block read-only Primary Minimum Timestamp Block read-only Electro Industries/GaugeTech Doc# E166703 D-54 The Leader In Power Monitoring and Smart Grid Solutions...
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  • Page 394 D: MP200-S (Single Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Resolution Comments # Reg Short term Primary Maximum Block read-only Primary Maximum Block (Voltage and frequency) read-only Electro Industries/GaugeTech Doc# E166703 D-66 The Leader In Power Monitoring and Smart Grid Solutions...
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  • Page 406 D: MP200-S (Single Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Resolution Comments # Reg Primary maximum Timestamp Block read-only Primary maximum Timestamp Block read-only Electro Industries/GaugeTech Doc# E166703 D-78 The Leader In Power Monitoring and Smart Grid Solutions...
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  • Page 435 D: MP200-S (Single Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Resolution Comments # Reg (Cont’d) Card Identification and Configuration Block (Note 13) (IO Interface Board) read-only eeeeeeee cccccccc Electro Industries/GaugeTech Doc# E166703 D-107 The Leader In Power Monitoring and Smart Grid Solutions...
  • Page 436 D: MP200-S (Single Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Resolution Comments # Reg Card Identification and Configuration Block (Note 13) (Relay/Digital IO Card) read-only eeeeeeee cccccccc Data and Control Block -- Digital I/O Relay Card Overlay (Note 14)
  • Page 437 D: MP200-S (Single Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Resolution Comments # Reg -------- --ab--cd -------- ------21 -------- ------21 Accumulators Block read-only Electro Industries/GaugeTech Doc# E166703 D-109 The Leader In Power Monitoring and Smart Grid Solutions...
  • Page 438 D: MP200-S (Single Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Resolution Comments # Reg Commands Section (Note 4) Resets Block (Note 9) write-only Electro Industries/GaugeTech Doc# E166703 D-110 The Leader In Power Monitoring and Smart Grid Solutions...
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  • Page 440 D: MP200-S (Single Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Resolution Comments # Reg Priviledged Commands Block conditional write Electro Industries/GaugeTech Doc# E166703 D-112 The Leader In Power Monitoring and Smart Grid Solutions...
  • Page 441 D: MP200-S (Single Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Resolution Comments # Reg Encryption Block read/write Programmable Settings Section Basic Setups Block write only in PS update mode none none none none none none none...
  • Page 442 D: MP200-S (Single Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Resolution Comments # Reg none none none none none none none none none none none none none none none none none none -------- ----hhhh --iiiiii b----sss...
  • Page 443 D: MP200-S (Single Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Resolution Comments # Reg hhhhhwww -dddmmmm -------- urpdywfa ----dddd -ppp-bbb ----dddd -ppp-bbb ----dddd -ppp-bbb Electro Industries/GaugeTech Doc# E166703 D-115 The Leader In Power Monitoring and Smart Grid Solutions...
  • Page 444 D: MP200-S (Single Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Resolution Comments # Reg Electro Industries/GaugeTech Doc# E166703 D-116 The Leader In Power Monitoring and Smart Grid Solutions...
  • Page 445 D: MP200-S (Single Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Resolution Comments # Reg Log Setups Block write only in PS update mode eeeeeeee ssssssss 00000000 hgfedcba Electro Industries/GaugeTech Doc# E166703 D-117 The Leader In Power Monitoring and Smart Grid Solutions...
  • Page 446 D: MP200-S (Single Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Resolution Comments # Reg Settings Registers for Digital I/O Relay Card First Overlay write only in PS update mode 44443333 22221111 7D00 - 7D00 32001 - 32001 Input#1 - 4 bindings &...
  • Page 447 D: MP200-S (Single Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Resolution Comments # Reg 7D21 - 7D21 32034 - 32034 Input Accumulators Scaling UINT16 bit-mapped 44443333 22221111 4 bits per input or output accumulator The nibble informs what should be the scaling of the accumulator 0=no- scaling, 1=0.1, 2=0.01, 3= 1m,...
  • Page 448 D: MP200-S (Single Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Resolution Comments # Reg 7E21 7E21 32290 32290 Input#3 Accumulator Kt UINT16 bit-mapped ddVVVVVV VVVVVVVV (Cont’d) 7E22 7E22 32291 32291 Input#4 Accumulator Kt UINT16 bit-mapped ddVVVVVV VVVVVVVV...
  • Page 449 D: MP200-S (Single Phase) Modbus Map Modbus Address Decimal Description Format Range Units or Resolution Comments # Reg ssssssss nnnnnnnn nnnnnnnn nnnnnnnn Log Status Block read only System Log Status Block Historical Log 1 Status Block Historical Log 2 Status Block...
  • Page 450 D: MP200-S (Single Phase) Modbus Map Data Formats Notes Electro Industries/GaugeTech Doc# E166703 D-122 The Leader In Power Monitoring and Smart Grid Solutions...
  • Page 451 D: MP200-S (Single Phase) Modbus Map Electro Industries/GaugeTech Doc# E166703 D-123 The Leader In Power Monitoring and Smart Grid Solutions...
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  • Page 453: E: Retrieving Logs Using The Mp200 Metering System's Modbus Map

    This appendix describes the log interface system of the MP200 unit from a programming point of view. It is intended for programmers implementing indepen- dent drivers for log retrieval from the MP200 unit. It describes the meaning of the MP200's Modbus Registers related to log retrieval and conversion, and details the procedure for retrieving a log's records.
  • Page 454: E.2: Data Formats

    0x1F 0x3F 0x3F The high bits of each time stamp byte are used as flags to record MP200 unit state information at the time of the time stamp. These bits should be masked out, unless needed. E.3: MP200 Metering System Logs The MP200 unit has 6 logs: System Event, Alarm (Limits), 3 Historical, and I/O Change.
  • Page 455 E: Retrieving Logs The Alarm Log Record uses 16 bytes, 10 bytes of which are available when the log is retrieved. Byte Value timestamp direction limit# Value% The limit # byte is broken into a type and an ID. Value type Limit ID 3.
  • Page 456: E.4: Block Definitions

    State E.4: Block Definitions This section describes the Modbus Registers involved in retrieving and interpreting an MP200 unit Log. Other sections refer to certain 'values' contained in this section. See the corresponding value in this section for details. NOTES: • “Register” is the Modbus Register Address in 0-based Hexadecimal notation. To convert it to 1-based decimal notation, convert from hex16 to decimal10 and add 1.
  • Page 457 E: Retrieving Logs Block Size: 192 registers per log (384 bytes) The Historical Log programmable settings are comprised of 3 blocks, one for each log. Each is identical to the others, so only Historical Log 1 is described here. All register addresses in this section are given as the Historical Log 1 address (0x7917).
  • Page 458 E: Retrieving Logs 0x20 30 minute 0x40 60 minute 0x80 End of Interval (EOI) Pulse* * Setting the interval to EOI causes a record to be logged whenever an EOI pulse event is generated. This is most commonly used in conjunction with the Digital I/O Option Cards.
  • Page 459 Bitmap: A collection of bit flags Signed Integer: A 2's Complement integer Float: An IEEE floating point Energy: Special Signed Integer, where the value is adjusted by the energy settings in the MP200 unit's Programmable Settings. Unsigned Integer Signed Integer 0.1 scale: Special Signed Integer, where the value is divided by 10 to give a 0.1...
  • Page 460 E: Retrieving Logs NOTE: The sum of all descriptor sizes must equal the number of bytes in the data portion of the Historical Log record. Log Status Block: The Log Status Block describes the current status of the log in question. There is one header block for each of the logs.
  • Page 461 E: Retrieving Logs • Records Used: The number of records stored in the log. This number will equal the Max Records when the log has filled. This value will be set to 1 when the log is reset. The data type is an unsigned integer from 1 - 2^32. NOTE: The first record in every log before it has rolled over is a "dummy"...
  • Page 462 The header is used to program the particular data the MP200 unit presents when a log window is requested. The window is a sliding block of data that can be used to access any record in the specified log.
  • Page 463 E: Retrieving Logs Log Retrieval Header: The Log Retrieval Header is used to program the log to be retrieved, the record(s) of that log to be accessed, and other settings concerning the log retrieval. Registers: 0xC34F - 0xC350 Size: 2 registers Bytes Value Type...
  • Page 464 E: Retrieving Logs Enable: This value sets if a log retrieval session is engaged (locked for retrieval) or disengaged (unlocked, read for another to engage). Write this value with 1(enable) to begin log retrieval. Write this value with 0(disable) to end log retrieval. Disable Enable •...
  • Page 465 • Number of Repeats: Specifies the number of repeats to use for the Modbus Func- tion Code 0x23 (35). Since the MP200 unit must pre-build the response to each log window request, this value must be set once, and each request must use the same repeat count.
  • Page 466: E.5: Log Retrieval

    (window). To improve the speed of retrieval, the index can be automatically incremented each time the buffer is read. In the MP200 unit, when the last register in the data window is read, the record index is incremented by the Records per Window.
  • Page 467: E.5.2: Modbus Function Code 0X23

    E: Retrieving Logs E.5.2: Modbus Function Code 0x23 QUERY Field Name Example (Hex) Slave Address Function Starting Address Hi Starting Address Lo # Points Hi # Points Lo Repeat Count RESPONSE Field Name Example (Hex) Slave Address Function # Bytes Hi # Bytes Lo Data Function Code 0x23 is a user defined Modbus function code, which has a format simi-...
  • Page 468 • In the MP200 unit repeat counts are limited to 8 times for Modbus RTU, and 4 times for Modbus ASCII. The response for Function Code 0x23 is the same as for Function Code 0x03, with the data blocks in sequence.
  • Page 469: E.5.3: Log Retrieval Procedure

    E: Retrieving Logs E.5.3: Log Retrieval Procedure The following procedure documents how to retrieve a single log from the oldest record to the newest record, using the "normal" record type (see Scope). All logs are retrieved using the same method. See E.5.4: Log Retrieval Example, on page E-20, for an example retrieval.
  • Page 470 Write the Records per window, the Number of repeats (1), and Record Index (0) [0xC350, 3 registers]. This step tells the MP200 unit what data to return in the window. 2. Retrieve the records: a. Read the record index and window: read the record index, and the data window [0xC351, 125 registers].
  • Page 471 • If the record index does not match the expected record index, then go to step 1d (Write the retrieval information), where the record index will be the same as the expected record index. This will tell the MP200 unit to repeat the records you were expecting.
  • Page 472: E.5.4: Log Retrieval Example

    • Retrieval is starting at Record Index 0 (oldest record). • Protocol used is Modbus ASCII. The checksum is left off for simplicity. • The MP200 unit is at device address 1. • No new records are recorded to the log during the log retrieval process.
  • Page 473 E: Retrieving Logs 1. Read [0xC747, 16 registers], Historical Log 1 Header Block. Send: 0103 C747 0010 Command: Register Address: 0xC747 # Registers: --------------------------------------------------- Receive: 010320 00000100 00000064 0012 0000 0C0717101511 0C0718101511*** 0000000000000000 Data: Max Records: 0x100 = 256 records maximum. Num Records: 0x64 = 100 records currently logged.
  • Page 474 E: Retrieving Logs Enable: 1 (Engage log) Scope: 0 (Normal Mode) --------------------------------------------------- Receive: 0106C34F0180 (echo) NOTE: This engages the log for use on this COM Port, and latches the oldest record as record index 0. 3. Read [0xC747, 16 registers], Availability is 0. Send: 0103 C747 0010 Command:...
  • Page 475 • As noted above, we compute the records per window as 246\18 = 13.66, which is rounded to 13 records per window. This allows the minimum number of requests to be made to the MP200 unit, which increases retrieval speed. Electro Industries/GaugeTech...
  • Page 476 0x0C0717101511, = July 23, 2012, 16:21:17 Data: This record is the "filler" record. It is used by the MP200 unit so that there is never 0 records. It should be ignored. It can be identified by the data being all 0xFF.
  • Page 477 • Note the filler record. When a log is reset (cleared) in the MP200 unit, the MP200 unit always adds a first "filler" record, so that there is always at least 1 record in the log.
  • Page 478 E: Retrieving Logs Data: Window Status: 0 (ignore) Record Index: 0x0D = 13, start at the 14th record. ---------------------------------------------------- Receive: 0110C3510002 (command ok) NOTES: • This step manually sets the record index, and is primarily used when an out-of- order record index is returned on a read (step 6). •...
  • Page 479 E: Retrieving Logs • If the number of remaining records (#records - current index) is less than the Records per Window, then the next window is the last, and contains less than a full window of records. Make records per window equal to remaining records (#records-current index).
  • Page 480 E: Retrieving Logs 13. Write 0x0000 -> [0xC34F, 1 register], disengage the log. Send: 0106 C34F 0000 Command: Register Address: 0xC34F # Registers: 1 (Write Single Register Command) Data: Log Number: 0 (ignore) Enable: 0 (Disengage log) Scope: 0 (ignore) ---------------------------------------------------- Receive: 0106C34F0000 (echo)
  • Page 481: E.5.5: Log Record Interpretation

    • Event: Event within a group. • Modifier: Additional information about the event, such as number of sectors or log number. • Channel: The port of the MP200 unit that caused the event. Firmware COM 1 (RS485/Ethernet/WiFi) COM 2 (USB) COM 3 (RS485) Param 1-4: These are defined for each event (see following table).
  • Page 482 E: Retrieving Logs NOTE: The System Log Record is 20 bytes, consisting of the Record Header (12 bytes) and Payload (8 bytes). The Timestamp (6 bytes) is in the header. Typically, software will retrieve only the timestamp and payload, yielding a 14-byte record. The table below shows all defined payloads.
  • Page 483 E: Retrieving Logs 0xFF 0xFF 0xFF 0xFF Programma- ble Settings Changed 0xFF 0xFF 0xFF 0xFF Measurement Stopped Boot Activity FW version Exit to Boot Error Report- ing & Recovery log # 0xFF 0xFF 0xFF 0xFF Log Babbling Detected log # # records discarded time in seconds Babbling Log...
  • Page 484 • The flash job queue is flushed (and log records are lost) in the unlikely event that the queue runs out of space. • A "babbling log" is one that is saving records faster than the MP200 unit can handle long term. When babbling is detected, the log is frozen and no records are appended until babbling ceases.
  • Page 485 E: Retrieving Logs • acc_typ# values 0 = output accumulators 1 = input accumulators • id_mm# values 0xFF = Reset all min. max. values voltage and frequency reset 2-9 = Meters 1-8 Demand resets, respectively, in three phase configuration 1-33 = Meters 1-24 Demand resets, respectively, in single phase configuration •...
  • Page 486 • Identifier: The first modbus register of the value that is being watched by this limit. While any modbus register is valid, only values that can have a Full Scale will be used by the MP200 unit. • Above Setpoint: The percent of the Full Scale above which the value for this limit will be considered "out.”...
  • Page 487 E: Retrieving Logs • Valid in the range of -200.0% to +200.0% • Stored as an integer with 0.1 resolution. (Multiply % by 10 to get the integer, divide integer by 10 to get %. For example, 105.2% = 1052.) •...
  • Page 488 • There are a few special conditions related to limits: • When the MP200 unit powers up, it detects limits from scratch. This means that multiple "out of limit" records can be in sequence with no "into limit" records.
  • Page 489 Data: The Historical Log Record data is 2 x N bytes, which contains snapshots of the values of the associated registers at the time the record was taken. Since the MP200 unit uses specific registers to log, with no knowledge of the data it contains, the Pro- grammable Settings need to be used to interpret the data in the record.
  • Page 490 Digital Inputs are recorded, even if they are not so configured. E.6: Examples Log Retrieval Section: send: 01 03 75 51 00 08 - MP200 Unit Designation recv: 01 03 10 4D 79 43 50 55 20 20 20 20 20 20 20 20 20 20 20 DE send:...
  • Page 491 E: Retrieving Logs send: 01 03 C3 4F 00 01 - Log Retrieval header recv: 01 03 02 FF FF FC send: 01 06 C3 4F 01 80 - Engage the log recv: 01 06 C3 4F 01 80 66 send: 01 03 C7 47 00 10 - Historical Log 1 status block recv:...
  • Page 492 E: Retrieving Logs 0D 1D 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 0D 01 17 0D 20 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 0D 01 17 0D 21 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 0D 01 17 0D 22 00 00 00 00 00 00 00 00 00 00 00 00 00 00...
  • Page 493 E: Retrieving Logs 01 17 0D 27 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 0D 01 17 0D 28 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 0D 01 17 0D 29 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 0D 01 17 0D 2A 00 00 00 00 00 00 00 06 00 00 0D...
  • Page 494 E: Retrieving Logs Sample Historical Log 1 Record: Historical Log 1 Record and Programmable Settings 14 0D 01 17 0D 16 15 00 14 0D 01 17 0D 24 00 00 22 00 00 00 0E 00 00 00 00 00 00 00 00 00 |07| 00 DF 7F 05 00 00 00 00 00 00 00 00 00 00 00 00 00 |37| 00 00 00 |01| 00 00 00 00 00 00 00 00 00 00 00 00 00 00..
  • Page 495 E: Retrieving Logs F1 03 0A 04 (SINT 2 byte)Voltage C-A F3 03 0A 04 (SINT 2 byte)Frequency Sample Record 0D 01 18 0B 18 00|42 EF ED AB|42 EF ED 41|42 EF EC 39|00 00 00 00|00 00 00 00|00 00 00 00|42 70 00 7D|..
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