Energy Management Solutions

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1 Energy Management Solutions

2 Power Generation and Transmission Facilities You can provide solution in your Power transmission project with Klea Energy Analyser and Systemon Software Shopping Malls and Chain MarketsIndustrial Zones With ETOR Gateway and Systemon software, you can read and invoice electric, naturel gas and water meters as a submetering application automatically. With Rapidus, you can always keep your facility s reactive energy under control and never pay unexpected penalties. With Klea and Ecras you can monitor, save and analyze energy consumptions. You can make saving decisions. Factories With Rapidus you can monitor your reactive energy remotely and you do not make unnecessary service and never pay unexpected penalties. With Klea and Ecras you can monitor, save and analyze energy consumptions. You can save expenses and decrease your carbon emission. Power Distribution Facilities You can monitor, record and analyze your energy parameters and quality. You can minimize loss and leakage in your system. With Rapidus you can keep your reactive energy consumption under control and you can monitor all energy parameters with its advanced power measurement features.

3 KLEA Energy Analyzer

4 Moduler design No connector cables No fixing screws State of the art technology Easy mounting on panels connection to system

5 Data Collection Platform All forms of energy can be collected by one KLEA. Digital I/O is standart in KLEA. Plus 5 I/O is optional. User can collect data from gas, water and/or pressure meters. Production quantity can be collected by a limit switch or a dry contact coming from a proximity sensor. User can calculate total consumption of all forms of energy and calculate energy cost per product. Water Meter Gas Meter Quantity Counting KLEA Distribution Panel MOBDUS TCP/IP ETOR Dual Source Energy Measurement Generators produces much more expensive energy compared to utility supply. Klea has generator input and it is activated once generator is on. Users can set Tariff to measure genset usage as a power supply and this brings users to identify the exact cost of the energy. Utility Genset KLEA TCP/IP LOAD ETOR NETWORK MOBDUS RS 485

6 T 13 7 T 11 T MultiTariff Energy Measurement In addition to Tariff, Tariff 1 is splitted into three with adjustable start & end times for each subtariff. User can use these subtariffs in order to measure energy consumption for different shifts in a facility. Tariff 11, 1 and 13 values are also saved in nonvolatile memory. User can read these values from the screen remotely Modbus communication. Demand Management User can adjust demand period between 1 to 60 minutes. Klea keeps demand for I, P,Q, and, S for each phase. Klea monitors P, Q, S and I values and gets the average values of 4 parameters for each demand period. Klea logs the maximum value of the average values in a month. Klea keeps 4 months demand logs for 4 parameters with time stamp. P, Q, S and I values are measured for each phase and sum. Data Logging Klea measures Klea logs Klea logs Klea logs 1 MB Memory 68 different energy parameters. 80 days hourly 40 days daily 36 months monthly real time measurements of 68 parameters. 4 months demand values. 50 recent alarms with time stamp.

7 5 A 100 A 1 sec. Surge Withstand 100 A/1 sec Klea current inputs can withstand surges upto 100 A for 1 second. In medium voltage applications, current transformers may generate peak currents in secondary windings. These peak values may reach upto 100 A and as a result of this current inputs of the analyzer may burn out and create an open circuit for secondary connections of the CT. This may result with an explosion on CT since secondary side is open circuited. Signal Waveform Monitoring Klea s high sampling rate enables the user to monitor a real time signal waveform. Klea s sampling rate per period is 51. User can monitor the effects of harmonics on the system from this screen. Programmable Analog Outputs Klea can be used as an energy transducer in substation automation projects. Some models have either or 4 programmable analog outputs and user can set any measured parameter to be disclosed with any of the output channel.

8 Accuracy Class (0,s) Function Symbol Function Function Performance Class According to IEC Measuring Range Other Complementary Characteristics P Total active power 0, 10 % I b I I max 0,5 Ind to 0,8 Cap Q V Total reactive power 1 5 % I b I I max 0,5 Ind to 0,5 Cap S A Total apparent power 0, 10 % I b I I max 0,5 Ind to 0,8 Cap E A Total active energy 0, 0 to IEC 6053 Class 0.S E RV Total reactive energy 0 to IEC Class f Frequency 0, Hz I Phase current 0, 0 % I b I I max I Nc Neutral current 0,5 0 % I b I I max U Voltage 0, U min U U max P FA Power factor 0,5 0,5 Ind to 0,8 Cap THDV Total harmonic distortion voltage 1 0 % to 0 % THDI Total harmonic distortion current 1 0 % to 100 % Other Features Graphical LCD Language Support Harmonics Measurement upto 51 Advanced Alarm Settings Real Time Clock

9 General Graphical LCD 6 buttons Password Protection Supply Voltage AC Supply Voltage DC Current Transformer Ratio Voltage Transformer Ratio Connection Type Measurement in Quadrants Networks Accuracy Class Voltage Accuracy Class Current Accuracy Class Active Energy Number of Measurement in a period Power Consumption Power Quality Measurements Harmonics / current and voltage THDVoltage in % THDCurrent in % Phasor Diagram Data Logging Average, Minimum, Maximum Values Alarms Time Stamp Demand Voltage Measurement Input Overvoltage Category Measured Range LN Measured Range LL Measured Frequency Range Power Consumption Sampling Freq.between 4565 Hz Current Measurement Input Rated Current Measurement Range Overvoltage Category Measurement Surge Voltage Power Consumption Peak current for 1 sec Sampling Freq.between 4565 Hz Input Outputs Relay Outputs Max. Switching Current Max. Switching Voltage Max. Switching Power Digital Inputs Minimum Counting Frequency Input Present or Not Digital Outputs Switching Voltage Range Minimum Switching Frequency Isolation Level Analog Outputs Range of Outputs 05 V, 010 V, 55 V, 1010V, 00 ma, 40 ma Isolation Mechanical Properties Weight Protection Class Assembly Type Dimensions Cable Cross Sections Supply Voltage, Current, Relay Outputs Stranded: Solid: Digital I/O, RS 485 Ambient Conditions Operating Temperature Storage Temperature Relative Humidity (no condensation) Communication and Others Modbus RTU Battery Real Time Clock Standarts in Compliance Safety requirements for electrical equipment for measurement, control, and laboratory use Stranded: Solid: KLEA 30P V AC V DC A A 3P4W, 3P3W Aron 4 TT, TN, IT < 3VA Upto 51st 1300 Vrms 500 Vrms 4565 Hz <0.1 VA 5,6 khz 6A 0.016A kv <0. VA 100 A 5,6 khz 10 A 50 VAC 150 VA 100 Hz, 10 ms Dry Contact 530 VDC 0 Hz, 50 ms 3750 Vrms 0 0,404 kg IP 40 front, IP 0 rear Panel Mount W96xH96xD7,5 mm 14AWG 4mm 1 AWG x1.5 mm x16 AWG 1,5 mm 16AWG 1.5 mm 16 AWG x0.75 mm x18 AWG 0 C. +60 C.. 30 C. +80 C.. 95% 300 VAC CAT II acc. to IEC KLEA 370P V AC V DC A A 3P4W, 3P3W Aron 4 TT, TN, IT < 3VA Upto 51st 1300 Vrms 500 Vrms 4565 Hz <0.1 VA 5,6 khz 6A 0.016A kv <0. VA 100 A 5,6 khz 10 A 50 VAC 150 VA Hz, 10 ms Dry Contact VDC 0 Hz, 50 ms 3750 Vrms 0 0,48 kg IP 40 front, IP 0 rear Panel Mount W96xH96xD7,5 mm 14AWG 4mm 1 AWG x1.5 mm x16 AWG 1,5 mm 16AWG 1.5 mm 16 AWG x0.75 mm x18 AWG 0 C. +60 C.. 30 C. +80 C.. 95% 300 VAC CAT II acc. to IEC KLEA 3P V AC V DC A A 3P4W, 3P3W Aron 4 TT, TN, IT < 3VA Upto 51st 1300 Vrms 500 Vrms 4565 Hz <0.1 VA 5,6 khz 6A 0.016A kv <0. VA 100 A 5,6 khz 10 A 50 VAC 150 VA 100 Hz, 10 ms Dry Contact 530 VDC 0 Hz, 50 ms 3750 Vrms Isolated 0,48 kg IP 40 front, IP 0 rear Panel Mount W96xH96xD7,5 mm 14AWG 4mm 1 AWG x1.5 mm x16 AWG 1,5 mm 16AWG 1.5 mm 16 AWG x0.75 mm x18 AWG 0 C. +60 C.. 30 C. +80 C.. 95% 300 VAC CAT II acc. to IEC KLEA 34P V AC V DC A A 3P4W, 3P3W Aron 4 TT, TN, IT < 3VA Upto 51st 1300 Vrms 500 Vrms 4565 Hz <0.1 VA 5,6 khz 6A 0.016A kv <0. VA 100 A 5,6 khz 10 A 50 VAC 150 VA 100 Hz, 10 ms Dry Contact 530 VDC 0 Hz, 50 ms 3750 Vrms 4 Nonisolated 0,48 kg IP 40 front, IP 0 rear Panel Mount W96xH96xD7,5 mm 14AWG 4mm 1 AWG x1.5 mm x16 AWG 1,5 mm 16AWG 1.5 mm 16 AWG x0.75 mm x18 AWG 0 C. +60 C.. 30 C. +80 C.. 95% 300 VAC CAT II acc. to IEC EMC Electrostatic discharge immunity test EMC Radiated, radiofrequency, electromagnetic field immunity test EN EN EN EN EN EN EN EN EMC Electrical fast transient/burst immunity test EMC Surge immunity test EMC Immunity to conducted disturbances, induced by radiofrequency fields EMC Power frequency magnetic field immunity test EMC Voltage dips, short interruptions and voltage variations immunity tests Industrial, scientific and medical equipment Radiofrequency disturbance characteristics Limits and methods of measurement EN EN EN EN EN EN 55011/A1:010 EN EN EN EN EN EN 55011/A1:010 EN EN EN EN EN EN 55011/A1:010 EN EN EN EN EN EN 55011/A1:010

10 Dimensions (mm) Wiring Diagrams 3 Phase Connection With Neutral (3P4W) 3 Phase Connection No Neutral (3P3W) 3 Phase No Neutral Aron Connection

11 Ecras Electronic Multimeter

12 Moduler design No connector cables No fixing screws State of the art technology Easy mounting on panels connection to system

13 Instanteneous Measurement Each phase VLN and its averages. Each phase VLL and its averages. Each phase I and its sum. Neutral Current Each phase active power(p) and its sum. Each phase reactive power(q) and its sum. Each phase apparent power(s) and its sum. Each phase power factor(pf) and its average. Frequency Data Logging Ecras measures 30 different energy parameters. Ecras logs min and max values of the measured parameters Ecras logs demand values for I, Q, P and S. Alarms Low limit, High Limit, Hysterysis and Delay Values can be set from the Alarm Menu for the below parameters: VLN, V LL, I, IN, PF and F Phase sequence Absence of Voltage and Current Can be detected by Ecras and indicates each alarm by blinking leds on its front panel. User can activate two output relays by assigning them individually to any alarm. Surge Withstand 100 A/1 sec 5 A 100 A 1 sec. Ecras current inputs can withstand surges upto 100 A for 1 second. In case of a current rise in the secondary winding of the current transformer, current inputs of the multimeter should withstand to these peak values. If not, current transformer may explode due to open circuit in the secondary winding. This may result with shutdown of the measurement system.

14 Ecras Product Selection Chart General Seven Segment Display 4 buttons Password Protection Supply Voltage AC Supply Voltage DC Current Transformer Ratio Voltage Transformer Ratio Connection Type Measurement in Quadrants Networks Accuracy Class Voltage Accuracy Class Current Accuracy Class Active Energy Number of Measurement in a period Measurement Accuracy Power Consumption Power Quality Measurements Harmonics / current and voltage THDVoltage in % THDCurrent in % Phasor Diagram Data Logging Average, Minimum, Maximum Values Alarms Time Stamp Demand Voltage Measurement Input Overvoltage Category Measured Range LN Measured Range LL Measured Frequency Range Power Consumption Sampling Freq.between 4565 Hz Current Measurement Input Rated Current Measurement Range Overvoltage Category Measurement Surge Voltage Power Consumption Peak current for 1 sec Sampling Freq.between 4565 Hz Input Outputs Alarm Relay Outputs Max. Switching Current Max. Switching Voltage Max. Switching Power Mechanical Properties Weight Protection Class Assembly Type Dimensions Cable Cross Sections Supply Voltage, Current, Relay Outputs Stranded: Solid: Digital I/O, RS 485 Stranded: Solid: Ambient Conditions Operating Temperature Storage Temperature Relative Humidity (no condensation) Communication and Others Modbus RTU Battery Real Time Clock Standarts in Compliance Safety requirements for electrical equipment for measurement, control, and laboratory use EMC Electrostatic discharge immunity test EMC Radiated, radiofrequency, electromagnetic field immunity test EMC Electrical fast transient/burst immunity test EMC Surge immunity test EMC Immunity to conducted disturbances, induced by radiofrequency fields EMC Power frequency magnetic field immunity test EMC Voltage dips, short interruptions and voltage variations immunity tests Industrial, scientific and medical equipment Radiofrequency disturbance characteristics Limits and methods of measurement ECRAS V AC V DC A A 3P4W, 3P3W 4 TT, TN, IT digit < 6VA Vrms 500 Vrms 4565 Hz <0.1 VA 5,6 khz 6A 0.015,5A kv <0. VA 100 A 5,6 khz 0 0,91 kg IP 40 front, IP 0 rear Panel Mount W96xH96xD7,5 mm 14AWG 4mm 1 AWG x1.5 mm x16 AWG 1,5 mm 16AWG 1.5 mm 16 AWG x0.75 mm x18 AWG 0 C. +60 C.. 30 C. +80 C.. 95% 300 VAC CAT II acc. to IEC EN EN EN EN EN EN EN EN 55011/A1: ECRAS ALARM V AC V DC A A 3P4W, 3P3W 4 TT, TN, IT digit < 6VA Vrms 500 Vrms 4565 Hz <0.1 VA 5,6 khz 6A 0.015,5A kv <0. VA 100 A 5,6 khz 10 A 50 VAC 150 VA 0,9 kg IP 40 front, IP 0 rear Panel Mount W96xH96xD7,5 mm 14AWG 4mm 1 AWG x1.5 mm x16 AWG 1,5 mm 16AWG 1.5 mm 16 AWG x0.75 mm x18 AWG 0 C. +60 C.. 30 C. +80 C.. 95% 300 VAC CAT II acc. to IEC EN EN EN EN EN EN EN EN 55011/A1:010

15 Dimensions (mm) Wiring Diagrams Star Connection (with neutral) Delta Connection (no neutral) Measuring Current Measuring Voltage Measuring Current Measuring Voltage

16 Rapidus Power Factor Controller

17 Moduler design No connector cables No fixing screws State of the art technology Easy mounting on panels connection to system

18 Dynamic Capacitor Monitoring DCM is a supreme function in Rapidus which enables the user to make proactive maintenance for compensation cabinets. DCM tracks the real time KVAR values of each capacitor and uses the measured KVAR value in compensation calculations. If a contactor is broken or a capacitor is out of order, DCM will detect it within 1 or days and activate the alarm for user. DCM has 3,4% accuracy. This information is valid for 3 shift operating facilities. Initial Values Alarm Level Setup Contactors C1 C C3 C4 Alarm Level %0 5 kvar 10 kvar 10 kvar 0 kvar After a certain time Alarm screen indicates the status of 3rd and 4rd steps MOBDUS RS 485 Remotely monitor actual kvar values of each step in addition to DCM alarms Pro active maintenance Highly sensitive compensation due to realtime kvar measurements of the steps Contactors C1 C C3 C4 Alarm Level %0 3 kvar 3 kvar 1 kvar 0 kvar Means capacitor should be changed Means capacitor is out of order or contactor is out of order or cable connection problem or fuse blown

19 Capacitor/Reactor1P/3P Rapidus can be connected to either single or three phase capacitors or reactors. Rapidus can be used in Data Centers or Mining Areas where the load is frequently capacitive. Rapidus can be used with a selection of capacitors and reactors in single or three phase connections. Mono Phase 3 Phase Reactor 1 Phase Reactor 3 Phase Capacitor Capacitor 3 Phase Capacitor Fig. A Fig. B V1 V V3 N V1 V V3 N Advanced Learning Function L3 K3 L K L1 K1 V1 V V3 N K3 L3 L K K1 L1 V1 V3 V N Rapidus can learn the connections and capacitor or reactor values. If there is a fault in the CT or VT connections, Rapidus detects the fault and corrects it. It shows the fault on the screen. Correct connection Wrong connection Advanced Learning Function Rapidus detects the wrong connections after learning mode is activated. Connections are displayed on the screen. Rapidus don't take misconnections into consideration and operates as if all connections are properly made as shown in Fig A. Rapidus learns all step values regardless they are capacitor or reactor.

20 Rapidus = PFC + Energy Analyzer In standart compensation cabinets, there are always a multimeter or analyzer to be associated with a power factor controller. Rapidus, as a twoinone device meets both requirements of the industry. User can reduce the cost of analyzer, wiring and labor by choosing Rapidus. Saving On Extra multimeter / analyzer cost Wiring cost Labor cost Rapidus as an Energy Analyzer Rapidus can measure and monitor the following parameters : All electrical parameters Min, Max and Average Values for Hour, Day and Month Harmonics upto 51 st Demand Phasor Diagram Data Logging Rapidus measures Rapidus logs Rapidus logs Rapidus logs 1 MB Memory 68 different energy parameters. 80 days hourly 40 days daily 36 months monthly real time measurements of 68 parameters. demand values for P. Q, S, I 50 recent alarms with time stamp.

21 Surge Withstand 100 A/1 sec Rapidus current inputs can withstand surges upto 100 A for 1 second. In case of a current rise in the secondary winding of the current transformer, current inputs of the PFC should withstand to these peak values. If not, current transformer may explode due to open circuit in the secondary winding. This may result with shutdown of the compensation system and compensation penalty for the enduser. 5 A 100 A 1 sec. Accuracy Class (0,s) Function Symbol Function Function Performance Class According to IEC Measuring Range Other Complementary Characteristics P Total active power 0, 10 % I b I I max 0,5 Ind to 0,8 Cap Q V Total reactive power 1 5 % I b I I max 0,5 Ind to 0,5 Cap S A Total apparent power 0, 10 % I b I I max 0,5 Ind to 0,8 Cap E A Total active energy 0, 0 to IEC 6053 Class 0.S E RV Total reactive energy 0 to IEC Class f Frequency 0, Hz I Phase current 0, 0 % I b I I max I Nc Neutral current 0,5 0 % I b I I max U Voltage 0, U min U U max P FA Power factor 0,5 0,5 Ind to 0,8 Cap THDV Total harmonic distortion voltage 1 0 % to 0 % THDI Total harmonic distortion current 1 0 % to 100 % Other Features Graphical LCD Language Support Harmonics Measurement upto 51 Advanced Alarm Settings Real Time Clock

22 Rapidus Product Selection Chart General Graphical LCD 6 buttons Password Protection Measurement Type Supply Voltage AC Supply Voltage DC Day/Night Input Number of Steps Current Transformer Ratio Voltage Transformer Ratio Connection Type Type of Switching Target cosq Accuracy Class Voltage Accuracy Class Current Accuracy Class Active Energy Number of Measurement in a period Power Consumption Power Quality Measurements Harmonics / current and voltage THDVoltage in % THDCurrent in % Phasor Diagram Data Logging Average, Minimum, Maximum Values Alarms Time Stamp Voltage Measurement Input (Supply and Measurement Inputs are the same node) Overvoltage Category Measured Range LN Measured Range LL Measured Frequency Range Power Consumption Sampling Freq.between 4565 Hz Current Measurement Input Rated Current Measurement Range Overvoltage Category Measurement Surge Voltage Power Consumption Peak current for 1 sec Sampling Freq.between 4565 Hz Input Outputs Relay Outputs Max. Switching Current Max. Switching Voltage Max. Switching Power for a Single Relay Alarm Relay Outputs Max. Switching Current Max. Switching Voltage Max. Switching Power GEN Input Input range Mechanical Properties Weight Protection Class Assembly Type Dimensions Cable Cross Sections Voltage, Current, All Relay Outputs, Gen Input Stranded: Solid: RAPIDUS 31RE 3 Phase 957 V AC 957 V AC 8565 V AC 11 Selectable A A 3P4W Relay 0,801,00 Inductive or Capacitive < 10VA Upto 51st I 957 Vrms Vrms 4565 Hz <0.1 VA 5,6 khz 6A 0.016A kv <0. VA 100 A 5,6 khz 1 A 50 VAC 150 VA 4 A 50 VAC 1000 VA VAC 0,670 kg IP 40 front, IP 0 rear Panel Mount W144xH144xD78,5 mm 14AWG 4mm 1 AWG x1.5 mm x16 AWG RAPIDUS 3RE 3 Phase 957 V AC 957 V AC 8565 V AC 14 Selectable A A 3P4W Relay 0,801,00 Inductive or Capacitive < 10VA Upto 51st I 957 Vrms Vrms 4565 Hz <0.1 VA 5,6 khz 6A 0.016A kv <0. VA 100 A 5,6 khz 4 A 50 VAC 150 VA 4 A 50 VAC 1000 VA VAC 0,765 kg IP 40 front, IP 0 rear Panel Mount W144xH144xD78,5 mm 14AWG 4mm 1 AWG x1.5 mm x16 AWG RAPIDUS 11R 1 Phase 957 V AC 957 V AC 8565 V AC 11 Selectable A A 3P4W Relay 0,801,00 Inductive or Capacitive < 10VA Upto 51st I 957 Vrms Vrms 4565 Hz <0.1 VA 5,6 khz 6A 0.016A kv <0. VA 100 A 5,6 khz 1 A 50 VAC 150 VA 4 A 50 VAC 1000 VA VAC 0,653 kg IP 40 front, IP 0 rear Panel Mount W144xH144xD78,5 mm 14AWG 4mm 1 AWG x1.5 mm x16 AWG RAPIDUS 1R 1 Phase 957 V AC 957 V AC 8565 V AC 14 Selectable A A 3P4W Relay 0,801,00 Inductive or Capacitive < 10VA Upto 51st I 957 Vrms Vrms 4565 Hz <0.1 VA 5,6 khz 6A 0.016A kv <0. VA 100 A 5,6 khz 4 A 50 VAC 150 VA 4 A 50 VAC 1000 VA VAC 0,750 kg IP 40 front, IP 0 rear Panel Mount W144xH144xD78,5 mm 14AWG 4mm 1 AWG x1.5 mm x16 AWG RAPIDUS 18R 1 Phase 957 V AC 957 V AC 8565 V AC 18 Selectable A A 3P4W Relay 0,801,00 Inductive or Capacitive < 10VA Upto 51st I 957 Vrms Vrms 4565 Hz <0.1 VA 5,6 khz 6A 0.016A kv <0. VA 100 A 5,6 khz 8 A 50 VAC 150 VA 4 A 50 VAC 1000 VA VAC 0,415 kg IP 40 front, IP 0 rear Panel Mount W96xH96xD7,5 mm 14AWG 4mm 1 AWG x1.5 mm x16 AWG RS 485 Stranded: Solid: Ambient Conditions Operating Temperature Storage Temperature Relative Humidity (no condensation) Communication and Others Modbus RTU Battery Real Time Clock Standarts in Compliance Safety requirements for electrical equipment for measurement, control, and laboratory use 1,5 mm 16AWG 1.5 mm 16 AWG x0.75 mm x18 AWG 0 C. +60 C.. 30 C. +80 C.. 95% 300 VAC CAT III acc. to IEC ,5 mm 16AWG 1.5 mm 16 AWG x0.75 mm x18 AWG 0 C. +60 C.. 30 C. +80 C.. 95% 300 VAC CAT III acc. to IEC ,5 mm 16AWG 1.5 mm 16 AWG x0.75 mm x18 AWG 0 C. +60 C.. 30 C. +80 C.. 95% 300 VAC CAT III acc. to IEC ,5 mm 16AWG 1.5 mm 16 AWG x0.75 mm x18 AWG 0 C. +60 C.. 30 C. +80 C.. 95% 300 VAC CAT III acc. to IEC ,5 mm 16AWG 1.5 mm 16 AWG x0.75 mm x18 AWG 0 C. +60 C.. 30 C. +80 C.. 95% 300 VAC CAT III acc. to IEC

23 Dimensions (mm) Wiring Diagrams Gen Input Gen Input Rapidus 1 Relays ( )

24 ETOR Ethernet Gateway

25 Product Code Product Name Etor4 Etor Product Description RS 485 to Ethernet bidirectional RS 3 to Ethernet bidirectional Can be operated in server or client mode Supports 6 different user s interrogation at the same time 64 devices can be connected Slimmest gateway in the market DIN Rail mount 17,5 mm ETOR 4 Ethernet MODBUS Converter ETOR series convert between MODBUS and Ethernet protocols and thus allow users to; Control and monitor the serial devices over the Internet or local network (server mode) Control and monitor the devices supporting Ethernetbased protocols via the serial interface (client mode) It supports up to 6 remote connections. ETOR series can be configured via builtin USB port or builtin web server by using an Internet browser. Technical Specifications Supply 1860V AC/DC and USB Reverse Connection Protection Network Features 6 Remote Connections Configuration via Web Interface DHCP (Automatic IP Assignment) ARP Ping blocking Serial Communication Supports Up To 64 Devices Baudrate: 300, 600, 100, 400, 4800, 9600, 1900, 38400, 57600, Stop Bit and Parity Bit Settings USB Configuration via USB Micro USB Connection Interface Supported Protocols MODBUS RTU MODBUS ASCII MODBUS TCP MODBUS RTU via TCP MODBUS ASCII via TCP

26 Protocol Conversions ETOR is capable of performing conversions between the serial and Ethernet data by running in server or client modes. Server Mode When running in the server mode, ETOR converts the MODBUS TCP, MODBUS RTU over TCP and MODBUS ASCII over TCP queries to MODBUS RTU and MODBUS ASCII queries and transmits these queries to the serial devices. It converts the responses it receives to query protocols and transmits them to the querying device (master). Query Side Response Side Physical Port Ethernet Physical Port Serial Protocol MODBUS TCP Protocol MODBUS RTU MODBUS RTU over TCP MODBUS ASCII MODBUS ASCII overtcp Client Mode When running in the client mode, ETOR converts the MODBUS RTU and MODBUS ASCII queries to MODBUS TCP, MODBUS RTU over TCP and MODBUS ASCII over TCP queries and transmits these queries to the remote devices connected to the Internet or the local network. The responses received from the devices, convert the query protocols and transmit them to the querying device (master). Query Side Response Side Physical Port Serial Physical Port Ethernet Protocol MODBUS RTU Protocol MODBUS TCP MODBUS ASCII MODBUS RTU over TCP MODBUS ASCII over TCP

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Rapidus Power Factor Controller

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