Westermo Lynx L110 F2G EX, L210 F2G EX Industrial Ethernet switch User Guide
Below you will find brief information for Industrial Ethernet switch Lynx L110 F2G EX, Industrial Ethernet switch Lynx L210 F2G EX. These industrial Ethernet switches are designed for harsh environments and offer multi-rate SFP solutions for 100 Mbit or Gigabit networks. They feature FRNT (Fast Recovery of Network Topology) technology for quick re-configuration in case of link or hardware failures, making them ideal for safety-critical applications such as tunnels, traffic signal control, and railway systems. The switches support QoS (Quality of Service) features and BIDI transceivers for limited fiber core applications.
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User Guide
6643-22601
WeOS
Lynx
L110 F2G EX / L210 F2G EX
Industrial Ethernet
10-port Switch
www.westermo.com
Safety
!
Warning
Do not open connected unit. Hazardous voltage may occur within this unit when connected to power supply.
Note that this unit can be connected to two different power sources.
When this unit is operated at an ambient temperature above +55°C (+131°F), the External Surface of Equipment may exceed Touch Temperature Limit according to EN/IEC/UL 60950-1.
To reduce the risk of fire, use only No. 26 AWG or larger telecommunication line cord.
For more information see General safety 100-5001.
Software tools
Related software tools are available in the folder software tools under technical support on the Westermo website.
Legal information
The contents of this document are provided “as is”. Except as required by applicable law, no warranties of any kind, either express or implied, including, but not limited to, the implied warranties of merchantability and fitness for a particular purpose, are made in relation to the accuracy and reliability or contents of this document. Westermo reserves the right to revise this document or withdraw it at any time without prior notice.
Under no circumstances shall Westermo be responsible for any loss of data or income or any special, incidental, and consequential or indirect damages howsoever caused.
More information about Westermo can be found at the following Internet address:
http://www.westermo.com
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ATEX certification
ATEX certification number
Baseefa12ATEX0119X
Standards
EN 60079-0:2012, EN 60079-15:2010, EN 60079-28:2007
Certification code
Ex nA [op is T4] IIC T3 Gc (–40°C ≤ Ta ≤ +70°C)
ATEX code
II 3G
Specific Conditions of Use
The equipment must be installed in an area of not more than pollution degree 2 in accordance with IEC/EN 60664-1, and in an enclosure that provides a minimum degree of protection of at least IP54 and complies with the relevant requirements of EN 60079-0 and EN 60079-15.
All external connections to the equipment and, where applicable, the SFP modules must not be inserted or removed unless either the area in which the equipment is installed is known to be non-hazardous, or the circuits connected have been de-energized.
The network cables once installed must be properly fixated by the use of cable ties or similar to reduce the risk of accidently withdrawing the plugs.
Equipment input parameters
Power Connector: +DC1, +DC2 & –COM
Working Voltage Range = 24 V to 48 VDC.
I/O Connector: ‘Status +’ & ‘Status –’ and ‘Digital in +’ and ‘Digital in –’
Maximum I/P Voltage = 60 VDC.
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SFP option approved transceivers
SFP Transceivers, 100 Mbit
1100-0131 MLC2, Multimode, LC-Connector, 2 km, 1310 nm
1100-0132 SLC20, Singlemode, LC-Connector, 20 km, 1310 nm
1100-0133 SLC40, Singlemode, LC-Connector, 40 km, 1310 nm
1100-0134 SLC80, Singlemode, LC-Connector, 80 km, 1550 nm
1100-0140 SLC120, Singlemode, LC-Connector, 120 km, 1550 nm
BiDi Transceivers, 100 Mbit
1100-0145 SLC15-BiDi-A, Singlemode, BiDi, 20 km, 1310 nm TX, 1550 nm RX
1100-0146 SLC15-BiDi-B, Singlemode, BiDi, 20 km, 1550 nm TX, 1310 nm RX
1100-0152 MLC2-BiDi-A, Multimode, BiDi, 2 km, 1310 nm TX, 1550 nm RX
1100-0153 MLC2-BiDi-B, Multimode, BiDi, 2 km, 1550 nm TX, 1310 nm RX
SFP Transceivers, 1 Gbit
1100-0144 GMLC550-SX, Multimode, LC-Connector, 550 m, 850 nm, SX
1100-0147 GMLC2-SX+, Multimode, LC-Connector, 2 km, 1310 nm, SX+
1100-0141 GSLC10-LX, Singlemode, LC-Connector, 10 km, 1310 nm, LX
1100-0142 GSLC50-XD, Singlemode, LC-Connector, 50 km, 1550 nm, XD
1100-0143 GSLC80-ZX, Singlemode, LC-Connector, 80 km, 1550 nm, ZX
1100-0171 GSLC110-EZX, Singlemode, LC-Connector, 110 km, 1550 nm, EZX
BiDi Transceiver, 1 Gbit
1100-0156 GSLC20-BiDi-A, Singlemode, BiDi, 20 km, 1310 nm TX, 1490 nm RX
1100-0157 GSLC20-BiDi-B, Singlemode, BiDi, 20 km, 1490 nm TX, 1310 nm RX
Copper Transceiver, 1 Gbit
1100-0148 GC100, Copper, RJ45, 100 m, 1000BaseT
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ATEX-Zertifizierung
ATEX-Zulassungsnummer
Baseefa12ATEX0119X
Standards
EN 60079-0:2012, EN 60079-15:2010, EN 60079-28:2007
Zertifizierungscode
Ex nA [op ist T4] IIC T3 Gc (–40 °C ≤ Ta ≤ +70 °C)
ATEX-Code
II 3G
Spezifische Einsatzbedingungen
Die Geräte müssen in einem Bereich welcher einem maximalen Verschmutzungsgrad der
Stufe 2 gemäß IEC/EN 60664-1 entspricht und in einem Gehäuse, das einen Schutzgrad von mindestens IP54 bietet und die relevanten Anforderungen von N 60079-0 und EN
60079-15 erfüllt, installiert werden.
Alle äußeren Anschlüsse des Gerätes und auch die SFP-Module dürfen nur dann verbunden oder getrennt werden, wenn entweder der Bereich, in dem das Gerät installiert ist, nachweislich ungefährlich ist, oder die verbundenen Stromkreise spannungsfrei sind.
Die Netzwerkkabel müssen nach der Installation mithilfe von Kabelbindern oder
ähnlichem Material ordnungsgemäß befestigt werden, um ein versehentliches Abziehen der Stecker zu verhindern.
Eingangsparameter der Geräte
Stromversorgung: +DC1, +DC2 & –COM
Betriebsspannungsbereich = 24 V to 48 VDC.
I/O-Anschluss: ‘Status +’ & ‘Status –’ und ‘Digital in +’ und ‘Digital in –’
Maximale I/P-Spannung = 60 VDC.
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Für SFP-Option zugelassene Transceiver
SFP-Transceiver, 100 Mbit
1100-0131 MLC2, Multimode, LC-Anschluss, 2 km, 1310 nm
1100-0132 SLC20, Singlemode, LC-Anschluss, 20 km, 1310 nm
1100-0133 SLC40, Singlemode, LC-Anschluss, 40 km, 1310 nm
1100-0134 SLC80, Singlemode, LC-Anschluss, 80 km, 1550 nm
1100-0140 SLC120, Singlemode, LC-Anschluss, 120 km, 1550 nm
BiDi-Transceiver, 100 Mbit
1100-0145 SLC15-BiDi-A, Singlemode, BiDi, 20 km, 1310 nm TX, 1550 nm RX
1100-0146 SLC15-BiDi-B, Singlemode, BiDi, 20 km, 1550 nm TX, 1310 nm RX
1100-0152 MLC2-BiDi-A, Multimode, BiDi, 2 km, 1310 nm TX, 1550 nm RX
1100-0153 MLC2-BiDi-B, Multimode, BiDi, 2 km, 1550 nm TX, 1310 nm RX
SFP-Transceiver, 1 Gbit
1100-0144 GMLC550-SX, Multimode, LC-Anschluss, 550 m, 850 nm, SX
1100-0147 GMLC2-SX+, Multimode, LC-Anschluss, 2 km, 1310 nm, SX+
1100-0141 GSLC10-LX, Singlemode, LC-Anschluss, 10 km, 1310 nm, LX
1100-0142 GSLC50-XD, Singlemode, LC-Anschluss, 50 km, 1550 nm, XD
1100-0143 GSLC80-ZX, Singlemode, LC-Anschluss, 80 km, 1550 nm, ZX
1100-0171 GSLC110-EZX, Singlemode, LC-Anschluss, 110 km, 1550 nm, EZX
BiDi-Transceiver, 1 Gbit
1100-0156 GSLC20-BiDi-A, Singlemode, BiDi, 20 km, 1310 nm TX, 1490 nm RX
1100-0157 GSLC20-BiDi-B, Singlemode, BiDi, 20 km, 1490 nm TX, 1310 nm RX
Kupfer-Transceiver, 1 Gbit
1100-0148 GC100, Kupfer, RJ45, 100 m, 1000BaseT
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Certification ATEX
Numéro de certification ATEX
Baseefa12ATEX0119X
Normes
EN 60079-0:2012, EN 60079-15:2010, EN 60079-28:2007
Code de certification
Ex nA [op is T4] IIC T3 Gc (–40°C ≤ Ta ≤ +70°C)
Code ATEX
II 3G
Conditions spéciales d'utilisation
L'équipement doit être installé dans une zone où le degré de pollution ne dépasse pas le degré 2 conformément à l'IEC/EN 60664-1, et dans un boîtier qui fournit un niveau de protection au moins égal à IP54 et conforme aux exigences applicables à EN 60079-0 et
EN 60079-15
Toutes les connexions externes à l'équipement et, le cas échéant, les modules SFP ne doivent pas être insérés ou retirés sauf si la zone dans laquelle l'équipement est installé est reconnue comme non dangereuse, ou si les circuits raccordés sont hors-tension.
Une fois les câbles réseau installés, ils doivent être correctement fixé grâce à des attaches de câbles ou autre élément semblable afin de réduire le risque de débranchement accidentel.
Paramètres d'entrée des équipements
Connecteur d'alimentation : +DC1, +DC2 & –COM
Double entrée d'alimentation 24 V à 48 VCC
Connecteur E/S : « Statut + » et « Statut – » et « Entrée digitale + » et « Entrée digitale – »
Tension maximale I/P = 60 VCC.
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Transmetteurs optionnels SFP certifiés
Transmetteurs SFP, 100 Mbit
1100-0131 MLC2, multimode, connecteur LC, 2 km, 1310 nm
1100-0132 SLC20, monomode, connecteur LC, 20 km, 1310 nm
1100-0133 SLC40, monomode, connecteur LC, 40 km, 1310 nm
1100-0134 SLC80, monomode, connecteur LC, 80 km, 1550 nm
1100-0140 SLC120, monomode, connecteur LC, 120 km, 1550 nm
Transmetteurs Bi-Di, 100 Mbit
1100-0145 SLC15 Bi-Di A, monomode, Bi-Di, 20 km, 1310 nm TX, 1550 nm, RX
1100-0146 SLC15-Bi-Di-B, monomode, Bi-Di, 20 km, 1550 nm TX, 1310 nm RX
1100-0152 MLC2-BiDi-A, multimode, Bi-Di, 2 km, 1310 nm TX, 1550 nm RX
1100-0153 MLC2-BiDi-B, multimode, Bi-Di, 2 km, 1550 nm TX, 1310 nm RX
Transmetteurs SFP, 1 Gbit
1100-0144 GMLC550-SX, multimode, connecteur LC, 550 m, 850 nm, SX
1100-0147 GMLC2-SX+, multimode, connecteur LC, 2 km, 1310 nm, SX+
1100-0141 GSLC10-LX, monomode, connecteur LC, 10 km, 1310 nm, LX
1100-0142 GSLC50-XD, monomode, connecteur LC, 50 km, 1550 nm, XD
1100-0143 SLC80, monomode, connecteur LC, 80 km, 1550 nm, ZX
1100-0171 GSLC110, monomode, connecteur LC, 110 km, 1550 nm, EZX
Transmetteurs Bi-Di, 1 Gbit
1100-0156 GSLC20-BiDi-A, monomode, Bi-Di, 20 km, 1310 nm TX, 1490 nm RX
1100-0157 GSLC20-BiDi-B, monomode, Bi-Di, 20 km, 1490 nm TX, 1310 nm RX
Transmetteurs cuivre, 1 Gbit
1100-0148 GC100, cuivre, RJ45, 100 m, 1000BaseT
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Maintenance
No maintenance is required, as long as the unit is used as intended within the specified conditions.
Agency approvals and standards compliance
Type
EMC
Safety
Marine
Ex
Approval / Compliance
EN 61000-6-1, Immunity residential environments
EN 61000-6-2, Immunity industrial environments
EN 61000-6-4, Emission industrial environments
EN 50121-4, Railway signalling and telecommunications apparatus
IEC 62236-4, Railway signalling and telecommunications apparatus
UL/IEC/EN 60950-1, IT equipment
DNV GL rules for classification – Ships and offshore units
EN 60079-0, EN 60079-15 and EN 60079-28
FCC Part 15.105
Notice:
This equipment has been tested and found to comply with the limits for a Class A digital device, pursuant to Part 15 of the FCC Rules.
These limits are designed to provide reasonable protection against harmful interference when the equipment is operated in a commercial environment. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with the instruction manual, may cause harmful interference to radio communications. Operation of this equipment in a residential area is likely to cause harmful interference in which case the user will be required to correct the interference at his own expense.
Corrosive environment
Notice:
This product has been successfully tested in a corrosion test according to
IEC 60068-2-60, method 3. This means that the product meets the requirements to be placed in an environment classified as ISA-S71.04 class G3.
Note! If the product is placed in a corrosive environment, it is important that all un-used connector sockets are protected with a suitable plug in order to avoid corrosion attacks on the gold plated pins in connectors.
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Declaration of Conformity
Westermo Teleindustri AB
The manufacturer
Declaration of Conformity
Westermo Teleindustri AB
SE-640 40 Stora Sundby, Sweden
Herewith declares that the product(s)
Type of product
Ethernet switch
Model 1
Lynx is in conformity with the following EU directive(s).
No
2014/30/EU
Short name
Electromagnetic Compatibility (EMC)
2014/35/EU
2011/65/EU
2014/34/EU
Lx10-F2G-EXy
Low Voltage Directive (LVD)
Restriction of the use of certain hazardous substances in electrical and electronic equipment
(RoHS)
Equipment Explosive Atmospheres (ATEX)
References of standards applied for this EU declaration of conformity.
No
EN 61000-6-1
EN 61000-6-2
Title
Electromagnetic compatibility – Immunity for residential
Issue
2007 environments
Electromagnetic compatibility – Immunity for industrial environments 2005
EN 61000-6-4
EN 50121-4
EN 60950-1
EN 60079-0
Electromagnetic compatibility – Emission for industrial environments 2007
Railway applications - Electromagnetic compatibility
Emission and immunity of the signalling and telecommunications apparatus
Information technology equipment - Safety - Part 1: General requirements
Explosive atmospheres Equipment – General requirements
2006
2006
+A11: 2009
+A1: 2010
+A12: 2011
2012
2010 EN 60079-15
EN 60079-28
EN 50581
Electrical apparatus for explosive gas atmospheres – Construction, test and marking of type of protection “n”
Explosive atmospheres - Protection of equipment and transmission systems using optical radiation
Technical documentation for the assessment of electrical and electronic products with respect to the restriction of hazardous substances
The last two digits of the year in which the CE marking was affixed:
2007
2012
16
Pierre Öberg
Technical Manager
22 nd
March 2016
1
Model Differences: x = 1 or 2 and indicates Software Class, y = optional and may indicate customer specific models.
Postadress/Postal address
S-640 40 Stora Sundby
Tel.
016-428000
Telefax
016-428001
Postgiro
52 72 79-4
Bankgiro
5671-5550
Org.nr/
Corp. identity number
556361-2604
Registered office
Eskilstuna
Sweden Int+46 16428000 Int+46 16428001
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Type tests and environmental conditions
Environmental phenomena
ESD
Basic standard
EN 61000-4-2
Description
Enclosure
Test levels
Contact: ±6 kV
Air: ±8 kV
Fast transients
Surge
EN 61000-4-4
EN 61000-4-5
Power port
Signal ports
Earth port
Power port
Signal ports
±2 kV
±2 kV
±1 kV
L-E: ±0.5 kV, 12 Ω, 9 μF
L-L: ±0.5 kV, 2 Ω, 18 μF
L-E: ±2 kV, 42 Ω, 0.5 μF
L-L: ±2 kV, 42 Ω, 0.5 μF
L-E: ±2 kV, 12 Ω, 9 μF
L-L: ±1 kV, 12 Ω, 9 μF
L-E: ±1 kV, 2 Ω
L-E: ±2 kV, 42Ω, 0.5 μF
300 A/m; 0, 16.7, 50 Hz
300 A/m
Power frequency magnetic field EN 61000-4-8
Pulsed magnetic field EN 61000-4-9
Radiated RF immunity EN 61000-4-3
Enclosure
Enclosure
Enclosure
Conducted RF immunity EN 61000-4-6 Power port
Signal ports
Earth port
Enclosure
10 V/m @ (80 – 800) MHz
20 V/m @ (800 – 1000) MHz
10 V/m @ (1400 – 2100) MHz
5 V/m @ (2100 – 2500) MHz
1 V/m @ (2500 – 2700) MHz
1 kHz sine, 80% AM
10 V, 80% AM, 1 kHz; (0.15 – 80) MHz
10 V, 80% AM, 1 kHz; (0.15 – 80) MHz
10 V, 80% AM, 1 kHz; (0.15 – 80) MHz
Class A
Class A
Radiated RF emission
Conducted RF emission
CISPR 16-2-3
ANSI C63.4
(FCC Part 15)
CISPR 16-2-1
ANSI C63.4
(FCC Part 15b)
EN 60950-1
Power port
Signal ports
Class B
Class B
Dielectric strength Power port to all other ports
Signal ports to all other ports
1.5 kVrms, 50 Hz, 1 min
1.5 kVrms, 50 Hz, 1 min
Environmental
Temperatures
Humidity
Altitude
Service life
Reliability prediction (MTBF)
Vibration
Shock
EN 60068-2-1
EN 60068-2-2
EN 60068-2-30
Operating –40 to +70°C (–40 to +158°F)*
Storage and transport –50 to +85°C (–58 to +185°F)
Operating 5 to 95 % relative humidity
Storage and transport 5 to 95 % relative humidity
Operating 2 000 m / 70 kPa
Operating
MIL-HDBK- 217F Operating
IEC 60068-2-6
(sine)
Operating
10 year
630 000 hours
3 – 13.2 Hz: 1mm
13.2 – 100 Hz: 0.7 g
5.5 – 30 Hz: 1.5 g
30 – 50 Hz: 0.42 mm
50 – 500 Hz: 4.2 g**
IEC 60068-2-27
IEC 60068-2-27
Operating
Operating
30 g, 11 ms
100 g, 6 ms**
10 g, 11 ms Bump
Packaging
Enclosure
Dimension W x H x D
With connectors
EN 60950-1 Zinc
Weight
Degree of protection EN 60529 Enclosure
Cooling
* * Refer to “Safety” section.
** Might require Ethernet cables to be fastened close to the unit.
Fire enclosure
52.5 x 100 x 101 mm
52.5 x 119 x 101 mm
0.7 kg
IP 40
Convection
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Description
Lynx is an Industrial switch made for harsh enviroments. The switch can be used in ether
100 Mbit or Gigabit networks due to our multi-rate SFP solution. Lynx can also be used together with our previous Lynx-series of switches. Our unique FRNT
(Fast Recovery of Network Topology) technology is the fastest protocol on the market to re-configure a network in the event of any link or hardware failure. That is why Lynx is used in safety critical applications such as tunnels, traffic signal control and railway systems.
Installations in harsh environments and places with heavy electrical interference require the use of a reliable media. Lynx provides a number of solutions using fibre optic transceivers. Multi- or singlemode transceivers can be used to build point-to-point or redundant ring networks with ranges up to 120 km between each switch. Our BIDI transceiver, which transmits and receives data on a single fibre can be used in applications where the number of fibre cores are limited.
Real-time properties are implemented in the switch in order to achieve determinism for real time critical applications. Lynx supports QoS (Quality of Service) with four priority queues and strict priority scheduling as well as HoL (Head of Line Blocking
Prevention). All to assure that the data network is deterministic.
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Interface specifications
Power
Operating voltage
Rated current
Rated frequency
Inrush current, I 2 t
Startup current*
Polarity
Redundant power input
Isolation to
Rated: 24 to 48 VDC
Operating: 19 to 60 VDC
240 mA @ 24 VDC
120 mA @ 48 VDC
DC
22.7·10 -3 A 2 s @ 48 VDC
2 x Rated current
Reverse polarity protected
Yes
All other
Connection
Connector size
Detachable screw terminal
0.2 – 2.5 mm 2 (AWG 24 – 12)
Shielded cable Not required
* External supply current capability for proper start-up
Ethernet TX
Electrical specification
Data rate
Duplex
Circuit type
Transmission range
Isolation to
Connection
Shielded cable
Conductive housing
Number of ports
IEEE std 802.3. 2005 Edition
10 Mbit/s, 100 Mbit/s, manual or auto
Full or half, manual or auto
TNV-1
Up to 150 m with CAT5e cable or better*
All other
RJ-45, auto MDI/MDI-X
Not required, except when installed in Railway applications as signalling and telecommunications apparatus and located close to rails.**
Yes
8
* Refer to Safety section.
** To minimise the risk of interference, a shielded cable is recommended when the cable is located inside 3 m boundary or the cable is longer than 30 m and inside 10 m boundary to the rails and connected to this port.
Ethernet SFP pluggable connections (FX or TX)
Electrical specification IEEE std 802.3. 2005 Edition
Data rate 100 Mbit/s or 1000 Mbit/s transceivers supported
Duplex
Transmission range
Connection
Number of ports
Full or Auto, depending on transceiver
Depending on tranceiver
SFP slot holding fibre transceiver or copper transceiver
1 or 2
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I/O / Relay output
Maximum voltage/current
Contact resistance
Isolation to
Connection
Connector size
I/O / Digital input
Maximum voltage/load current
Voltage levels
Isolation to
Connection
Connector size
Console
Electrical specification
Data rate
Data format
Circuit type
Connection
60 VDC / 80 mA
Max 30 Ω
All other
Detachable screw terminal
0.2 – 2.5 mm 2 (AWG 24 – 12)
60 VDC / 2 mA
Logic one: >12V
Logic zero: <1V
All other
Detachable screw terminal
0.2 – 2.5 mm
TTL-level
115.2 kbit/s
2 (AWG 24 – 12)
8 data bits, no parity, 1 stop bit, no flow control
SELV
2.5 mm jack, use only Westermo cable 1211-2027
SFP Transceivers
Supported transceivers
Firmware prior to 4.4.0 accepts Westermo branded transceivers only. From 4.5.0 other transceivers are accepted with a notice and the unit will no longer be UL approved. Temp.specifications are also depending on the used transeivers.
Note: To comply with UL60950-1 only UL recognized SFP transceivers should be used.
Deviations
With copper transceiver 1100-0148 the specified operating temperature on Lynx is 0 to +50ºC (32 to +122°F).
FRNT reconfiguration times can not be guaranteed with copper transceivers.
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Safety control drawing
Location of interface ports and LED’s
LED Indicators (for details see page 13)
Power connection (for details see page 9 and 12)
SFP transceivers
(for details see page 4, 9 and 10)
I/O connection
(for details see page 10 and 12)
Ethernet connection TX (8 ports)
Position Signale Direction Description
No.1
TD+ In/Out Transmitted/Received data
Input/output values
No. 2 TD– In/Out Transmitted/Received data
No. 3 RD+ In/Out Transmitted/Received data
No. 4 – Not Connected
No. 5
No. 6
–
RD–
Not Connected
In/Out Transmitted/Received data
Per port:
U = ± 1 V (4V/μs)
I = ± 20 mA
Data rate:
10/100 Mbit/s
No. 7
No. 8
–
–
Not Connected
Not Connected
Shield Connected to PE
Galvanically isolated via signal transformers and capacitively isolated to
GND/PE through a 2kV 1000pF capacitor.
See user manual for proven transient protection.
Cable 1211-2027
Console port
(for details see page 10 and 12)
Bottom view
Connection to console port
The console port can be used to connect to the CLI
(Command Line Interface).
The following steps needs to be taken
1. Connect the serial diagnostic cable to the console port
(use only Westermo cable 1211-2027).
2. Connect cable to your computer (USB port, if drivers are needed they can be downloaded from our Web page).
3. Use a terminal emulator and connect with correct speed and format (115200, 8N1) to the assigned port.
For more information about the CLI, see the WeOS management guide.
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Safety control drawing
Power connection
1
2
3
4
4-position
No. 1
No. 2
No. 3
Product marking
+DC1
+DC2
-COM
Direction
Input
Input
Input
Description
Supply voltage input DC1
Supply voltage input DC2
Common
Input values
U
I in
P
In in
= (19 – 60) VDC
= 240 mA @ 24 VDC
= 5.8 W @ 24 VDC
No. 4 -COM Input Common
Lynx supports redundant power connection. The positive inputs are +DC1 and +DC2, the negative input for both supplies are –COM. Connect the primary voltage (e.g. +24 VDC) to the +DC1 pin and return to one of the
–COM pins on the power input.
I/O connection
4-position
Product marking
Status +
Direction Description Input / Output values
1
2
3
4
No. 1
No. 2
No. 3
Status –
Digital in +
Output Alarm relay (status) contact U in
= 60 VDC max
Output Alarm relay (status) contact I in
= 80 mA max
Input Digital in + U in
= 60 VDC max
No. 4 Digital in – Input Digital in – I in
= 2 mA max
The Status output is a potential free, opto-isolated normally closed solid-state relay.
This can be configured to monitor various alarm events within the Lynx unit, see WeOS Management Guide.
An external load in series with an external voltage source is required for proper functionality.
For voltage/current ratings, see Interface Specification section.
Console port
Position Direction* / description Input/output values
No.1 In / out / GND
No. 2 Out / Tx
U = 3.3 VDC max
I = 24 mA max
No. 3 In / Rx
* Direction relative to this unit.
The Digital in is an opto-isolated digital input which can be used to monitor external events. For voltage/current ratings, see Interface
Specification section:
Lynx
1
2
External
Load
V Status
3
4
16
+
V
Digital In
–
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LED indicators
LED
ON
DC1
DC2
FRNT
RSTP
USR1
1 to 10
Status
OFF
Description
Unit has no power.
GREEN All OK, no alarm condition.
RED Alarm condition, or until unit has started up.
(Alarm conditions are configurable, see ''WeOS Management Guide'').
BLINK
OFF
Location indicator ("Here I am!").
Activated when connected to IPConfig Tool, or upon request from Web or CLI.
Unit has no power.
GREEN Power OK on DC1.
RED Power failure on +DC1.
OFF Unit has no power.
GREEN Power OK on DC2.
RED Power failure on +DC2.
OFF FRNT disabled.
GREEN FRNT OK.
RED FRNT Error.
BLINK
OFF
GREEN RSTP enabled.
BLINK Unit elected as RSTP/STP root switch.
OFF
Unit configured as FRNT Focal Point.
RSTP disabled.
GREEN
RED
Configurable, see WeOS Management Guide.
OFF No Link.
GREEN Link established.
GREEN
FLASH
Data traffic indication.
YELLOW Port alarm and no link. Or if FRNT or RSTP mode, port is blocked.
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Mounting
This unit should be mounted on 35 mm DIN-rail, which is horizontally mounted inside an apparatus cabinet or similar. It is recommended that the DIN-rail is connected to ground.
Snap on mounting, see figure.
Mounting Lynx with integrated DIN-clip:
Removal
Removing Lynx with integrated DIN-clip:
Press down the support at the back of the unit using a screwdriver. See figure.
Cooling
This unit uses convection cooling.
To avoid obstructing the airflow around the unit, use the following spacing rules. Minimum spacing 25 mm
(1.0 inch) above / below and 10 mm
(0.4 inches) left / right the unit.
Spacing is recommended for the use of unit in full operating temperature range and service life.
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10mm 10mm
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Getting Started
This product runs Westermo Operating System (WeOS) which provides several management tools that can be used for configuration of the unit.
• IPConfig tool
This is a custom Westermo tool used for discovery of attached Westermo units.
• Web
Configuration of the unit using the web browser.
• CLI
Configuration of the unit via the Command Line Interface.
Username: admin
Password: westermo
If the computer is located in the same subnet as the switch you can easily use a web browser to configure the unit. Within the web you can configure most of the available functions.
For advanced network settings and more diagnostic information, please use the CLI.
Detailed documentation is available in the chapter ”The Command Line Management
Tool ” in the WeOS management guide.
Factory default IP address: 192.168.2.200
Netmask:
Gateway:
255.255.255.0
Disabled
Note! If you are not sure about the subnet – consult your network administrator.
Configuration
Configure the unit via Web browser
The unit can easily be configured via a Web browser.
Open the link http://192.168.2.200 in your web browser, and you will be prompted with a Login screen, where the default settings for Username and Password are:
Username: admin
Password: westermo
Once you have logged in, you can use the extensive integrated help function describing all configuration options. Two common task when configuring a new switch is to assign appropriate IP settings, and to change the password of the admin account.
The password can be up to 64 characters long, and should consist of printable ASCII characters (ASCII 33-126); 'Space' is not a valid password character.
Note! Version of IP Config tool must be 10.3.0 or higher.
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Referring documents
Type
Management Guide
Description
Westermo OS management guide
Document number
6101-3201
Factory default on L110 EX / L210 EX
It is possible to set the unit to factory default settings by using two straight standard
Ethernet RJ-45 cables.
1. Power off the switch and disconnect all Ethernet cables (copper and fibre).
2. Connect one Ethernet cable between Ethernet ports 3 and 10, and the other between
Ethernet ports 6 and 7.
The ports need to be connected directly by an Ethernet cable, i.e., not via a hub or switch. Use a straight cable – not a cross-over cable – when connecting the ports.
3. Power on the unit.
4. Wait for the unit to start up. Control that the ON LED is flashing red.
The ON LED flashing indicates that the unit is now ready to be reset to factory default.
You now have the choice to go ahead with the factory reset, or to skip factory reset and boot as normal.
• Go ahead with factory reset:
Acknowledge that you wish to conduct the factory reset by unplugging the
Ethernet cables. The ON LED will stop flashing.
This initiates the factory reset process*, and after approximately 1 minute the unit will restart with factory default settings. When the switch has booted up, the ON
LED will show a green light, and is now ready to use.
• Skip the factory reset:
To skip the factory reset process, just wait for approximately 30 seconds
(after the ON LED starts flashing RED) without unplugging the Ethernet cables.
The switch will conduct a normal boot with the existing settings.
* Note Do not power off the unit while the factory reset process is in progress.
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Dimensions
Measurements are stated in millimeters.
52 ±1
96 ±1
92 ±1
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Westermo • SE-640 40 Stora Sundby, Sweden
Tel +46 16 42 80 00 Fax +46 16 42 80 01
E-mail: [email protected] www.westermo.com
Sales Units
Westermo Data Communications
China [email protected] www.cn.westermo.com
France [email protected] www.westermo.fr
Germany [email protected] www.westermo.de
North America [email protected] www.westermo.com
Singapore [email protected] www.westermo.com
Sweden
[email protected] www.westermo.se
United Kingdom [email protected] www.westermo.co.uk
Other Offices
For complete contact information, please visit our website at www.westermo.com/contact or scan the QR code
REV.C 6643-22601 2016-05 Westermo Teleindustri AB, Sweden
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Key Features
- Multi-rate SFP solution for 100 Mbit or Gigabit networks
- FRNT (Fast Recovery of Network Topology) technology
- Suitable for safety-critical applications
- Supports QoS (Quality of Service)
- BIDI transceivers for limited fiber core applications
- Convection cooling
- DIN-rail mounting