Instruction Manual for SENECA models including: R203-E Network Analyzers, R203-E, Network Analyzers, Analyzers

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R203-E | Анализаторы сети - ModBUS серии S203 | SENECA

R203 OPC UA | Sistemi di Energy Management - R203 | SENECA


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mi00614-5-en
INSTALLATION MANUAL
R203 Series
PRELIMINARY WARNINGS
The word WARNING preceded by the symbol indicates conditions or actions that put the user's safety at risk. The word ATTENTION preceded by the symbol indicates conditions or actions that might damage the instrument or the connected equipment. The warranty shall become null and void in the event of improper use or tampering with the module or devices supplied by the manufacturer as necessary for its correct operation, and if the instructions contained in this manual are not followed.
WARNING: The full content of this manual must be read before any operation. The module must only be used by qualified electricians. Specific documentation is available using the QR-CODE shown on page 1. The module must be repaired and damaged parts replaced by the Manufacturer. The product is sensitive to electrostatic discharges. Take appropriate measures during any operation. Electrical and electronic waste disposal (applicable in the European Union and other countries with recycling). The symbol on the product or its packaging shows the product must be surrendered to a collection centre authorized to recycle electrical and electronic waste.

R203 DOCUMENTATION

SENECA s.r.l.; Via Austria, 26 ­ 35127 ­ PADOVA ­ ITALY; Tel. +39.049.8705359 - Fax +39.049.8706287
CONTACT INFORMATION

Technical support

supporto@seneca.it

Product information

commerciale@seneca.it

This document is the property of SENECA srl. Copies and reproduction are prohibited unless authorised. The content of this document corresponds to the described products and technologies. Stated data may be modified or supplemented for technical and/or sales purposes.

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MODULE LAYOUT

106.6 mm

32.2 mm

90.0 mm

Weight: 170 g; Enclosure: UL94-V0 self-extinguishing PC/ABS material, black.

SIGNALS VIA LED ON FRONT PANEL

LED DO1
DO2
DI1
DI2
DATA LOGGER
STS (Only R-203-2)
STS (Only R-203-2-P)
STS (Only R-203-2-E)
WIRING ERROR
RX TX ETH TRF (Yellow) ETH LNK (Green)

STATUS On Off On Off On Off On Off ON
Flashing Off On
Flashing Off On
Flashing On
Flashing Flashing
Off On Flashing Flashing Flashing Flashing

LED meaning Output 01 activated Output 01 deactivated Output 02 activated Output 02 deactivated Input 01 activated Input 01 deactivated Input 02 activated Input 02 deactivated Data Logger function enabled LOG sending error Data Logger function disabled Set IP address (powered module) Waiting for the IP address from the DHCP (powered module) No IP address set
IP address set Active Profinet communication Set IP address (powered module) Ethernet/IP communication active
Wiring error Correct wiring RS485 connection anomaly Reception of data packet completed on RS485 Transmission of data packet completed on RS485 Packet transit on Ethernet port Ethernet port connected

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TECHNICAL SPECIFICATIONS

CERTIFICATIONS

ETH1

ETH2

ETH1

ETH2

KEY:

INSULATION

ANALOG INPUT

ANALOG OUTPUT
DIGITAL I/O

ANALOG INPUT

ANALOG OUTPUT
DIGITAL I/O

PWR

RS485

PWR

RS485

*: Rated withstand voltage

R203-2-H

R203-2-L

Temperature: ENVIRONMENTAL Humidity:
CONDITIONS Storage temperature: Degree of protection:

-25°C ÷ +65°C 30% ÷ 90% non condensing. -30°C÷ + 85°C IP20

ASSEMBLY DIN rail 35mm IEC EN60715, wall or panel with screws.

CONNECTIONS Screw terminals 5 mm, 7.5 mm and 3.5 mm pitch (RS485), cable with section <2.5 mm2

POWER SUPPLY

Voltage: 90 ÷ 264Vac @ 50 ÷ 60Hz, max absorption: 2.5W / 4VA (only R203-2-H) Voltage: 10 ÷ 30Vdc, max absorption: 2.5W / 4VA (only R203-2-L)

COMMUNICATION RS485: Baud rate: 1200 ÷ 115200 baud (for further information see the user manual).

PORTS

Ethernet ports 2 (model R203-2); 1 (model R203-1)

VOLTAGE INPUT

Voltage

Up to 600 Vac, frequency 45 ÷ 65Hz Minimum voltage 5 V (F.S. 150 Vac); 20 V (F.S. 600 Vac)

ANALOGUE INPUT TA / TA
(mV)

Current input Base prec. (*)

Current input for TA: 1 ÷ 5A full scale. Voltage input (mV) for TA with voltage or Rogowski output: up to 250 mV.
Network frequency: 50 ÷ 60 Hz. Voltmeter: 0.2% Ammeter: 0.2%, wattmeter: 0.5%

(*) See the user manual for the error limits.

ROGOWSKI ANALOGUE
INPUT (100 mV/kA)

Class / base prec. (*)
Rogowski supplied by Seneca

Network frequency: 50 ÷ 60 Hz. Voltmeter: 0.5% Ammeter: 0.5%, wattmeter: 1%
· 100 mV correspond to 1000 A @ 50 Hz (sinusoidal) · 120 mV correspond to 1000 A @ 60 Hz (sinusoidal) Maximum measurable current: 2500A @50Hz, 2000A @60Hz Precision after calibration: ± 1 % (see chapter "Rogowski sensor") Linearity: ± 0.2 %

(*) Accuracy is guaranteed in the ranges: Cos > 0.5; Vrms: 40 ÷ 600 Vac; Irms: 5 - 100% Rogowski current (error due to external Rogowski sensors excluded). See the user manual for the error limits.

ANALOGUE OUTPUT

Voltage: Current: Transmission error: Response time: Temperature drift:

0÷ 10Vdc, minimum load resistance: 2k 0 ÷ 20 mA, max. load resistance: 500 0.1% of maximum field 1 s (10% ÷ 90%) 100 ppm/K

DIGITAL INPUT

For the technical specifications, see the electrical connection diagrams on page 5

DIGITAL OUTPUT

For the technical specifications, see the electrical connection diagrams on page 5

COUNTERS Number of counters: 2 at 32 bit, maximum speed: 5 KHz

INSTALLATION Category I (up to 600 V) in a direct connection (only R203-2-H) CATEGORY Category I (up to 300 V) in a direct connection (only R203-2-L)

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CAUTION
This is a Class A product. In a residential environment this equipment may cause radio interference. In this case, the user may have to take adequate countermeasures.
ROGOWSKI SENSOR
The Rogowski sensor is a ring-shaped device designed for measuring AC, impulsive or complex waveforms. For its correct use: - wrap the ring on the conductor so that the arrow symbol on the ring points in the same direction as the current in the conductor - make sure the connections are made correctly - for a more precise measurement, the conductor wire must be placed in a central position with respect to the ring - for a correct measurement, calibrate the Rogowski sensor by writing the calibration coefficient in the corresponding Modbus register (see the user manual). Example: if the sensor is supplied with a characteristic of 90 mV / 1000 A, on the calibration register corresponding to the phase in which the Rogowski sensor is applied, the value to be set is: 1000/ (90 · 10) = 1.11 NOTE ON ACCURACY: The product has a nominal accuracy of 0.5%. The total accuracy is the sum between the accuracy of the device and the accuracy of the Rogowski sensor connected to it.

direction of the current in the conductor

PHASE CONDUCTOR CABLE
CLOSING HOOK AND SYMBOL OF THE CURRENT DIRECTION

1

2

3

1 CONDUCTOR (+) 2 CONDUCTOR (-) 3 SCREEN (if any)

U+ I+ -
DIP - SWITCH SETTINGS
WARNING
The DIP-switch settings are read only at boot time. At each change, perform a restart. For use and settings via DIP-SWITCH, see the user manual available on the website on the web page dedicated to the product.

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ELECTRICAL CONNECTIONS
SUPPLY R203-2-H
40 41
NOT CONNECTED

The power supply is connected to terminals 40 and 41. The supply voltage must be:
90 ÷ 264 Vac, 50 ÷ 60 Hz It is advisable to insert a 1 A slow-blow fuse

SUPPLY R203-2- L
+ 40 - 41
NOT CONNECTED

RS485

B 23 A 24 GND 25

ANALOGUE OUTPUT

10

Voltage

11

12

10

Applied current

11

12

10

Supply current external

11 12

DIGITAL OUTPUT DO1 13 DO2 14 C1 15

DIGITAL INPUT
DI1 16 DI2 17 C2 18

The power supply is connected to terminals 40 and 41. The supply voltage must be: 10 ÷ 30Vdc. It is advisable to insert a 1 A slow-blow fuse
There is no isolation between RS485 and analogue output

+ V
A +
+

The device provides a voltage output (0 ÷ 10 Vdc) or programmable active or passive current (0 ÷ 20 mA). For the electrical connections, screened cables are recommended. There is no isolation between RS485 and retransmitted output. It is necessary to program the outputs to use them correctly.

LOAD

I

The device has two digital outputs.

LOAD

LOAD

* Capacity: Imax = 50 mA Vmax = 28V. See the user manual
V EXT for the functions.

*: Reversible polarity.

* V EXT

The device is equipped with two digital inputs that can be activated with voltage from 12 to 24 V. See the user manual for the functions. *: Reversible polarity.

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ELECTRICAL CONNECTIONS

CAUTION

The installation of this appliance must only be carried out by qualified personnel. Check that the device plate data (measurement voltage, auxiliary power supply voltage, measurement current, frequency) match the actual data of the network to which the instrument is connected. In the wiring, strictly observe the insertion diagram; inaccuracy in the connections inevitably causes false measurements or damage to the instrument. Once the instrument is connected, complete the installation with the device configuration. The earth connection of the secondary of CTs with current, voltage or rogowski output is possible on the negative terminal.
In the case of rogowski sensors, the screen must always be connected to the negative terminal.
Current measurement is only possible using current transformers. It is advisable to insert a slow-blow 1 A fuse as indicated in the diagrams below.

CONNECTIONS FOR ROGOWSKI SENSORS

SINGLE-PHASE (with load sharing)

THREE-PHASE: 4 wires

Volt. Input

Volt. Input

N L3 L2 L1 +U +I - +U +I - +U +I 43 44 45 46 47 48 49 50 51 52 53 54 55

N L3 L2 L1 +U +I - +U +I - +U +I 43 44 45 46 47 48 49 50 51 52 53 54 55

L1 N

L1
L2 N L3

THREE-PHASE: 3 wires Volt. Input

N L3 L2 L1 +U +I - +U +I - +U +I -

*

43 44 45 46 47 48 49 50 51 52 53 54 55

L1
L2 L3

CONNECTIONS FOR CURRENT OUTPUT TA
SINGLE-PHASE (with load sharing)
Volt. Input

N L3 L2 L1 +U +I - +U +I - +U +I -

43 44 45 46 47 48 49 50 51 52 53 54 55

S1/k

S1/k

S1/k

L1

P1/k

P1/k

N

P1/k

CAUTION
The inputs for the Rogowski sensors are of the non-inverting type. For the electrical connections, refer to the Rogowski sensor manual.
* Optional

THREE-PHASE: 4 wires
Volt. Input

N L3 L2 L1 +U +I - +U +I - +U +I -

43 44 45 46 47 48 49 50 51 52 53 54 55

S1/k

S1/k

S1/k

L1
L2 N L3

P1/k P1/k P1/k

THREE-PHASE: 3 wires

Volt. Input

N L3 L2 L1 +U +I - +U +I - +U +I -

*

43 44 45 46 47 48 49 50 51 52 53 54 55

S1/k

S1/k

S1/k

L1

L2

P1/k

L3

P1/k

P1/k

* Optional

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CONNECTIONS FOR VOLTAGE OUTPUT TA (mV)

SINGLE-PHASE (with load sharing)

THREE-PHASE: 4 wires

Volt. Input

Volt. Input

N V3 V2 V1 +U +I - +U +I - +U +I -

43 44 45 46 47 48 49 50 51 52 53 54 55

S1/k

S1/k

S1/k

L1
P1/k

P1/k

N

P1/k

N L3 L2 L1 +U +I - +U +I - +U +I -

43 44 45 46 47 48 49 50 51 52 53 54 55

S1/k

S1/k

S1/k

L1
L2 N L3

P1/k P1/k P1/k

THREE-PHASE: 3 wires

Volt. Input

*

N L3 L2 L1 +U +I - +U +I - +U +I 43 44 45 46 47 48 49 50 51 52 53 54 55

S1/k

S1/k

S1/k

L1
P1/k
L2

L3

P1/k

P1/k

* Optional

CONNECTIONS FOR ARON INSERTION

Volt. Input

N L3 L2 L1 +U +I - +U +I - +U +I -

43 44 45 46 47 48 49 50 51 52 53 54 55

S1/k

S1/k

L1

L2

P1/k

L3
P1/k

The same circuit diagram can be applied for connections of Rogowski sensors and CTs with mV outputs.

The Aron insertion link is usable from Firmware revision 1030 for model R203 and Firmware revision 1024 for model R203-P.
ATTENTION Grounding via terminal 43 is forbidden, otherwise the system to which the instrument is connected will be damaged.

TV CONNECTIONS
SINGLE-PHASE

N L1 43 46

THREE-PHASE: 4 wires
N L3 L2 L1
43 44 45 46

L1

L1 N

L2

L3

THREE-PHASE: 3 wires
L3 L2 L1 44 45 46

L1
L2 L3

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FACTORY IP ADDRESS
The default module IP address is static: 192. 168. 90. 101 In the R-203-X-P version, the module is supplied without an IP address (0.0.0).
WEB SERVER
To access the Web Server with the factory IP address above, use the following credentials: Username: admin; Password: admin
CAUTION DO NOT USE DEVICES WITH THE SAME IP ADDRESS IN THE SAME ETHERNET NETWORK.
ETHERNET CONNECTION RULES
For the Ethernet cabling between the devices, the use of the shielded CAT5 or CAT5e cable is required.
DAISY-CHAIN ETHERNET CONNECTION
CAUTION
IT IS NOT ALLOWED TO CREATE LOOPS WITH ETHERNET CABLES Using the daisy-chain connection it is not necessary to use switches to connect the devices. The following examples show the correct connections.

MODULE 1 MODULE 2 MODULE 3

MODULE 1 MODULE 2 MODULE 3

There must be no loops in the Ethernet cabling, otherwise the communication will not work. The modules and switches must be connected eliminating any loops. The following examples show the incorrect connections.

LOOP

LOOP

MODULE 1

MODULE 1 MODULE 2 MODULE 3

The LAN fault-bypass function allows you to keep the connection between the two Ethernet ports of the device ON, in the event of a power failure. If a device turns off, the chain is not interrupted and the devices downstream of the switched-off one will still be accessible. This function has a limited duration: the connection remains active for a few days, typically 4.
The fault-bypass function requires that the sum of the lengths of the two cables connected to the switched off module is less than 100m.

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