FL MC 2000E (SM40) LC

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IEC 61850 fiber optic converter with LC fiber optic connection (1310 nm) to convert 100Base-Tx to single- or multi-mode fiber glass Data sheet 3205_en_C 1 Description PHOENIX CONTACT 2014-04-04 2 Features The FL MC 2000E LC and FL MC 2000E SM40 LC provide a high level of immunity to interference and long transmission range in industrial applications by converting the 100Base-Tx Ethernet interface to fiber optics (100 Mbps according to FX standard). The converters are specifically for use in electrical power substations (IEC 61850 and IEEE 1613 applications). The RJ45 port offers an auto crossing function, which means it is not necessary to make a distinction between 1:1 and crossover cables. The FL MC 2000E (SM40) LC converters offer the following features: 100Base-Tx -40 C to 75 C operating range Auto crossing simplifies cabling Link fault pass through Individual LEDs at each port indicate communication activity and data rate Redundant power supply capable with local (LED) and remote (dry contact) alarms to indicate failure of one or both power supplies LC duplex connection Mounts on NS 35 DIN rails Make sure you always use the latest documentation. It can be downloaded at phoenixcontact.com. This data sheet is valid for all products listed on the following page:

3 Ordering data Products Description Type Order No. Pcs. / Pkt. Fiber optic converter, LC connection (1310 nm), for converting 100Base-Tx to multi-mode fiberglass, for IEC 61850-3 and IEEE 1613 applications Fiber optic converter, LC connection (1310 nm), for converting 100Base-Tx to single-mode fiberglass, for IEC 61850-3 and IEEE 1613 applications FL MC 2000E LC 2891056 1 FL MC 2000E SM40 LC 2891156 1 Accessories Description Type Order No. Pcs. / Pkt. Universal end clamp E/NS 35 N 0800886 50 Patch cable, CAT 5, pre-assembled, 0.3 m long FL CAT5 PATCH 0,3 2832250 10 Patch cable, CAT 5, pre-assembled, 0.5 m long FL CAT5 PATCH 0,5 2832263 10 Patch cable, CAT 5, pre-assembled, 1.0 m long FL CAT5 PATCH 1,0 2832276 10 Patch cable, CAT 5, pre-assembled, 1.5 m long FL CAT5 PATCH 1,5 2832221 10 Patch cable, CAT 5, pre-assembled, 2.0 m long FL CAT5 PATCH 2,0 2832289 10 Patch cable, CAT 5, pre-assembled, 3.0 m long FL CAT5 PATCH 3,0 2832292 10 Patch cable, CAT 5, pre-assembled, 5.0 m long FL CAT5 PATCH 5,0 2832580 10 Patch cable, CAT 5, pre-assembled, 7.5 m long FL CAT5 PATCH 7,5 2832616 10 Patch cable, CAT 5, pre-assembled, 10.0 m long FL CAT5 PATCH 10 2832629 10 4 Technical data General data Function Converter, Ethernet 100Base-Tx to fiber optic; conforms to standard IEEE 802.3 Housing dimensions (width x height x depth) 30 x 130 x 100 mm Weight, without connectors 315 g Operating temperature -40 C 75 C Storage temperature -40 C 85 C Degree of protection IP20, DIN 40050, IEC 60529 Protection class Class 3 VDE 0106; IEC 60536 Humidity (operation and storage) 5% to 95%, no condensation Air pressure (operation) 86 kpa 108 kpa, 1500 m above sea level Air pressure (storage) 66 kpa 108 kpa, 3500 m above sea level Mounting NS 35 (EN 60715) Preferred mounting position Perpendicular to a standard mounting rail Connection to protective earth ground Snapped onto a grounded mounting rail Latency 700 ns Supply voltage (U S ) Connection type Removable, screw-clamp connector Wire size (solid/stranded/awg) 0.2 2.5 mm² / 0.2 2.5 mm² / 24 12 AWG Recommended PE wire size 2.5 mm 2 Nominal power supply 24 V DC, 48 V DC Permissible ripple 3.6 V pp within the permissible voltage range Permissible voltage range 12 V DC 57 V DC Current consumption, maximum 440 ma @ 24 V DC Inrush current 9.84 A (200 µs) Test voltage 5 kv DC for one minute Protection against polarity reversal Present 3205_en_C PHOENIX CONTACT 2

Interfaces Properties of RJ45 port Total number of RJ45 Ethernet interfaces 1 Connection format RJ45 female Connection medium Twisted-pair cable with a conductor cross section of 0.14 mm 2 to 0.22 mm 2 Cable impedance 100 Transmission speed 100 Mbps Maximum network segment length 100 m Link through Link fault pass through (LFP) MDI/MDIx switchover Automatic (auto MDI/MDIX) Properties of fiber optic port Total number of FO ports 1 Connection format LC Wave length 1310 nm Transmission speed 100 Mbps Transmission length FL MC 2000E LC 8 km with F-G 62.5/125 0.7 db/km F1000 3.3 km with F-G 62.5/125 2.6 db/km F600 9.6 km with F-G 50/125 0.7 db/km F1200 5.3 km with F-G 62.5/125 1.6 db/km F800 2 km with HCS GI fiber with F-GK 200/230 FL MC 2000E SM40 LC 40 km with F-G 9/125.0 0.36 db/km 36 km with F-G 9/125.0 0.36 db/km 29 km with F-G 9/125.0 0.36 db/km Alarm Contacts Voltage, maximum 250 V AC Current carrying capacity, maximum 1 A (including inrush) Mechanical tests Vibration resistance according to IEC 60068-2 Shock test according to IEC 60068-2 Temperature according to IEC 60068-2-32 7 mm 2 9 Hz 20 m/s² 9 200 Hz 15 m/s² 200 500 Hz 300 m/s² 11 ms Conformance IEC 61000-6.2 Developed in accordance to IEC 61850 IEC 61000-4-2 (ESD) Contact: ±6 kv Air: ±8 kv IEC 61000-4-3 (radiated-noise immunity) 10 V/m IEC 61000-4-4 (burst) Ports: ±4 kv DC power: ±2 kv IEC 61000-4-5 (surge) Ports: ±4 kv DC power: ±2 kv IEC 61000-4-6 (conducted noise immunity) Ports: 10 V DC power 10 V IEC 61000-4-8 (noise immunity against magnetic fields) 100 A/m continuous 1000 A/m for 3 s IEC 61000-4-10 (damped oscillatory magnetic field immunity) 30 A/m IEC 61000-4-16 (immunity to conducted common mode disturbances) Ports and DC power: 30 V rms continuous 300 V rms for 1 s (50 Hz) IEC 61000-4-17 (ripple on DC power supply) 10% IEC 61000-4-18 (oscillatory waves) 2.5 kv common mode (100 khz, 1 MHz) 1 kv differential mode (100 khz, 1 MHz) 3205_en_C PHOENIX CONTACT 3

Developed in accordance to IEC 61850 IEC 61000-4-29 (voltage dips and voltage interruptions) EN 55022 (radiated RF emissions) EN 55022 (noise emission) Developed in accordance to IEEE 1613 IEEE C37.90.3 (ESD) IEEE C37.90.2 (RF susceptibility) IEEE C37.90.1 SWC (fast transient) IEEE C37.90.1 SWC (oscillatory) IEEE C37.90 (dielectric power frequency test) IEEE C37.90 (impulse voltage test) IEEE 1613 Clause 9 vibration IEEE 1613 Clause 9 shock Approvals General 30% reduction 0.1 s 60% reduction (dips) 0.1 s 100% interruptions 0.05 s Class A and B Class A and B Contact: ±8 kv Air: ±15 kv Ports: 20 V/m Ports: ±4 kv, 2.5 khz DC power: ±4 kv Ports: ±2.5 kv common mode, 1 MHz DC power: ±2.5 kv common mode, ±2.5 kv differential mode, 1 MHz Ports: 2 kv DC power: 2 kv DC power: 5 kv 30 mm/s 1 150 Hz 250 mm c ROHS WEEE 2002/96/EC 3205_en_C PHOENIX CONTACT 4

5 Dimensions 6 Overview 130 mm 14 mm US1GNDUS2 GND R1 R2 X3 Power and alarm connector X1 US1 US2 100 Link/ ACT Link/ ACT Alarm LEDs RJ45 port X2 MC 2000E FO port Port O ON N OFF CTS 1 2 3 4 5 6 1 2 3 4 5 6 206-6 T132 6 2 3 Switch 1 OFF Enable LFPT X2>Link Alarm 4 5 (Disable) X1>Link Alarm (Disable) ON Disable LFPT X2>Link Alarm (Enable) DIP switch X1>Link Alarm (Enable) 30 mm Figure 2 Connectors and LEDs Figure 1 Depth = 100 mm Housing dimensions 6.1 Diagnostic and status indicators Des. Color Status Meaning US1 and US2 green On Supply voltage (US) in the tolerance range Off Supply voltage (US) too low Alarm red On US1 or US2 is too low or missing Port link failure Off Normal operation 3205_en_C PHOENIX CONTACT 5

6.2 Data transmission LEDs LED Status Meaning LNK/ACT On Indicates an electrical link Flashing Data transmission is in process 100 (RJ45 port only) 7 Installation On Off Port is operating at 100 Mbps No power LNK/ACT LED: ON: indicates an electrical link Flashing: indicates network traffic (at high data rates the blinking is in a constant rate) 3. Once the module has been snapped on properly, check that it is fixed securely on the rail. 7.2 Removal 1. Insert a suitable tool (e.g., screwdriver) into the arresting latch and pull it down. 2. Pull the module slightly away from the mounting surface. 3. Lift the module from the rail. 7.3 Power connection The device is designed for SELV and PELV operation at +24 V DC according to IEC 61140/EN 61140. Only SELV and PELV according to the defined standards may be used for supply purposes. Snapping the device onto a grounded rail connects it to the ground potential. CAUTION: Only qualified personnel may start up and operate this device. Qualified personnel are persons authorized to start up, ground and mark devices, systems and equipment according to the standards of safety technology. NOTE: The FL MC 2000E (SM40) LC module is designed for SELV and PELV operation according to IEC 61140/EN 61140. Install the module on a clean NS 35 rail. To avoid contact resistance use only clean, corrosion-free rails that meet the EN 60715 standard. End clamps can be mounted on both sides of the module to stop the modules from slipping on the rail. Figure 3 Power connections for redundant power supply NOTE: Connect the mounting rail to protective earth ground using a grounding terminal block. The modules are grounded when they are snapped onto the rail. Connect protective earth ground with low impedance. 7.1 Assembly 1. Place the module onto the rail from above. The upper holding keyway must be hooked onto the top edge of the rail. 2. Push the module from the front towards the mounting surface. Figure 4 Power connections for single power supply Reversed polarity may result in incorrect power LED and alarm indications. Use power conductors between 0.2-2.5 mm² (24-12 AWG). Torque connection screws to 0.5-0.6 Nm (5-7 lb-in.). 3205_en_C PHOENIX CONTACT 6

7.4 Alarm contact The FL MC 2000E (SM40) LC provides contacts (R1, R2) for a remote alarm if a failure is detected. The alarm is triggered if one or both power supplies fail. An alarm can be triggered if a port fails. Individual port alarms can be enabled via a DIP switch located on the bottom of the device. The alarm relay is a normally closed type. When there are no faults, the contact is held open. When a fault occurs, the relay is de-energized to close the contact. 8 Configuration A six-position DIP switch on the bottom surface of the FL MC 2000E (SM40) LC allows configuration of operating characteristics. In addition to the remote alarm, failure is also indicated by turning the alarm LED on. 7.5 Ethernet interface Figure 5 DIP switch The FL MC 2000E (SM40) LC has one Ethernet port on the front in RJ45 format to which a twisted-pair cable with an impedance of 100 can be connected. The data transmission speed is 100 Mbps. This port has an auto crossing function: it is not necessary to make a distinction between 1:1 or crossover Ethernet cables. Connect the twisted-pair cable to the RJ45 connector. Ensure the connection is secure by gently pulling it. 7.6 Fiber optic interface WARNING: During operation, do not look directly into transmitter diodes or use visual aids to look into the glass fibers. The infrared light is not visible. NOTE: Do not remove dust protection caps until just before the plug-in connectors are connected. They prevent contamination of the transmit and receive elements. NOTE: Observe the cable manufacturer s technical data when handling the various fiber optic cables. In order for the communication path to be immune to interference, the permissible values for bending radius, tensile force and pressure force must not be exceeded. 8.1 Link fault pass through (DIP 1) Link fault pass through is a function that allows diagnostics from one port to pass through to the other port. The link status of the RJ45 port is always forwarded to the fiber optic port. However, link fault pass through from the fiber optic port to the RJ45 port is selectable (via DIP 1). When link fault pass through is disabled, devices may not be able to detect that the fiber optic network connection is interrupted. The connected device either doesn t know it is not communicating (diagnostics cannot be generated) or it continually attempts to re-establish communication, increasing the network load and application response time. When enabled, a link loss at the fiber optic port is forwarded to the RJ45 port so both ports of the converter are disabled. Link fault pass through should only be used when two media converters are connected in series. DIP 1 can be used to specify whether the network is disabled locally or globally. DIP Position Function 1 ON Local: in the event of a fault, only the interrupted part is disabled. This is useful during startup and in the event of an error. OFF Global: in the event of a fault, the entire connection is disabled. Connect the fiber optic cable to the LC duplex plug-in connector for the transmit and receive channel. Make sure the keying is in the correct position. Ensure the connection is secure by gently pulling it. 3205_en_C PHOENIX CONTACT 7

8.2 Alarm enabling (DIP 5 and 6) The alarm contacts are configurable on a port basis. DIP 5 controls port X2 (fiber optic) and DIP 6 controls port X1 (RJ45). DIP Position Function 5 ON In the event of a fault on the fiber optic port, the Alarm LED lights and the alarm relay is closed, generating a remote alarm. OFF Faults are not monitored on the fiber optic port. 6 ON In the event of a fault on the RJ45 port, the Alarm LED lights and the alarm relay is closed, generating a remote alarm. OFF Faults are not monitored on the RJ45 port. DIP switch positions 3, 4 and 5 are reserved for future use. 3205_en_C PHOENIX CONTACT GmbH & Co. KG 32823 Blomberg Germany 8 www.phoenixcontact.com