Hirschmann RSPL 20, RSPL30 User Manual

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Technical support
https://hirschmann-support.belden.eu.com
Installation Industrial Ethernet Rail Switch Power Lite
RSPL 20/30
Page 2
The naming of copyrighted trademarks in this manual, even when not specially indicated, should not be taken to mean that these names may be considered as free in the sense of the trademark and tradename protection law and hence that they may be freely used by anyone.
© 2013 Hirschmann Automation and Control GmbH
Manuals and software are protected by copyright. All rights reserved. The copying, reproduction, translation, conversion into any electronic medium or machine scannable form is not permitted, either in whole or in part. An exception is the preparation of a backup copy of the software for your own use. For devices with embedded software, the end-user license agreement on the enclosed CD/DVD applies.
The performance features described here are binding only if they have been expressly agreed when the contract was made. This document was produced by Hirschmann Automation and Control GmbH according to the best of the company's knowledge. Hirschmann reserves the right to change the contents of this document without prior notice. Hirschmann can give no guarantee in respect of the correctness or accuracy of the information in this document.
Hirschmann can accept no responsibility for damages, resulting from the use of the network components or the associated operating software. In addition, we refer to the conditions of use specified in the license contract.
You can get the latest version of this manual on the Internet at the Hirschmann product site (www.hirschmann.com).
Printed in Germany Hirschmann Automation and Control GmbH Stuttgarter Str. 45-51 72654 Neckartenzlingen Germany Tel.: +49 1805 141538
Installation RSPL 20/30 040 016-001-04-0213 - 19.02.2013
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Contents
Safety instructions 5
About this manual 12
Key 12
1 Device description 13
1.1 General device description 13
1.2 Device name and product code 14
1.3 Combination options 17
1.4 Device views 18
1.4.1 Front view 18
1.4.2 Rear view 20
1.5 Power supply 20
1.5.1 Operating voltage type M9 20
1.5.2 Operating voltage type CC 20
1.6 Ethernet ports 21
1.6.1 Gigabit combo port (optional) 21
1.6.2 10/100 Mbit/s twisted pair connection 22
1.6.3 100 Mbit/s F/O connection 22
1.7 Display elements 23
1.7.1 Device state 23
1.7.2 Port state 24
1.8 Management interfaces 24
1.8.1 V.24 interface (external management) 24
1.8.2 SD card interface 25
1.9 Signal contact 26
2 Device installation 27
2.1 Unpacking and checking 27
2.2 Installing the SD card (optional) 27
2.3 Installing the device and grounding 28
2.3.1 Mounting on the DIN rail 28
2.3.2 Grounding 29
2.4 Installing the SFP transceivers (optional) 29
2.5 Connecting the terminal blocks 30
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2.6 Mounting the terminal blocks and switching on the supply voltage 33
2.7 Connecting the data lines 33
2.7.1 Gigabit combo port (optional) 33
2.7.2 100 Mbit/s F/O connection 34
2.7.3 10/100 Mbit/s twisted pair connection 34
2.8 Insert data in label area 34
3 Basic set-up 35
4 Monitoring the ambient air temperature 36
5 Maintenance and service 37
6Disassembly 38
6.1 Disassembling the device 38
6.2 Removing the SFP transceivers 39
7 Technical data 40
A Further Support 52
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Safety instructions
Certified usage
Only use the device for application cases that are described in the Hirschmann product information, including this manual. Only operate the device according to the technical specifications.
Supply voltage
Note: The supply voltage is only connected with the chassis via protective elements.
Only for device variants with operating voltage type M9:
For the supply voltage to be connected, make sure the following requirements are met:
The power supply conforms to overvoltage category I or II.The voltage supply has an easily accessible disconnecting device
(e.g. a switch or a plug). This disconnecting device is clearly identified so that in the case of an emergency, it is clear which disconnecting device belongs to which line.
The lines to be connected are voltage-free.Supply with DC voltage:
A fuse suitable for DC voltage is located in the plus conductor of the power supply. A fuse is also located in the minus conductor, if this is not grounded. Regarding the properties of this fuse: See “General technical data”
on page 40.
Supply with AC voltage:
A fuse is located in the outer conductor of the power supply. A fuse is also located in the neutral conductor, if this is not grounded. Regarding the properties of this fuse: See “General technical data”
on page 40.
AC voltage Supply: the wire diameter for the input supply line is at
least 0.75 mm² (North America: AWG18).
DC voltage Supply: the wire diameter for the input supply line is at
least 1 mm² (North America: AWG16).
WARNING
ELECTRIC SHOCK
Ground the device before connecting the power supply. Only connect a supply voltage as described in the data plate of your device.
Failure to follow these instructions can result in death, serious injury, or equipment damage.
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The cross-section of the protective conductor cable is the same
size as or bigger than the cross-section of the voltage supply cables.
The connection cables used are permitted for the specified
temperature range.
Relevant for North America:
The power supply lines are made up of copper wire (75 °C).
Only for device variants with operating voltage type CC:
For every supply voltage to be connected, make sure the following requirements are met:
The power supply corresponds to Class 2.The power supply conforms to overvoltage category I or II.The voltage supply has an easily accessible disconnecting device
(e.g. a switch or a plug). This disconnecting device is clearly identified so that in the case of an emergency, it is clear which disconnecting device belongs to which line.
The lines to be connected are voltage-free.A fuse suitable for DC voltage is located in the plus conductor of the
power supply. A fuse is also located in the minus conductor, if this is not grounded. Regarding the properties of this fuse: See “General technical data”
on page 40.
The wire diameter for the input supply line is at least 1 mm² (North
America: AWG16).
The connection cables used are permitted for the specified
temperature range.
Relevant for North America:
The power supply lines are made up of copper wire (75 °C).
WARNING
ELECTRIC SHOCK
Only start connecting the supply voltage if all the above mentioned requirements are fulfilled.
Failure to follow these instructions can result in death, serious injury, or equipment damage.
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Make sure that the electrical installation meets local or nationally
applicable safety regulations.
Use undamaged parts.The device does not contain any service components. Internal fuses
are only triggered if there is a fault in the device. If the device is not functioning correctly, or if it is damaged, switch off the voltage supply and return the device to the plant for inspection.
Connect the protective conductor with the ground screw before you
set up the other connections. When removing the connections, you remove the protective conductor last.
For supply voltages with protective conductor connections: first
connect the protective conductor before connecting the lines for the supply voltages.
Only switch on the supply voltage for the device when the following
prerequisites are fulfilled:
The housing is closedThe terminal blocks are wired correctlyThe terminal blocks for the voltage supply are connected
Shielded ground
The shielded ground wire of the twisted pairs lines is connected to the front panel as a conductor. Beware of possible short circuits when connecting a cable section with
conductive shield braiding.
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Housing
Only technicians authorized by the manufacturer are permitted to open the housing.
WARNING
ELECTRIC SHOCK
Never insert sharp objects (small screwdrivers, wires, etc.) into the inside of the device. Never insert sharp objects (small screwdrivers, wires, etc.) into the connection terminals for the supply voltage or the signal contact, and do not touch the terminals!
Failure to follow these instructions can result in death, serious injury, or equipment damage.
WARNING
FIRE HAZARD
Install the device in a fire protected enclosure according to EN 60950-1.
Failure to follow these instructions can result in death, serious injury, or equipment damage.
WARNING
Only for device variants with operating voltage type M9:
ELECTRIC SHOCK
Only install this device in a switch cabinet or in an operating site with limited access, to which only maintenance staff have access.
Failure to follow these instructions can result in death, serious injury, or equipment damage.
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The device is grounded by the separate ground screw on the front panel. Make sure that the electrical installation meets local or nationally
applicable safety regulations.
Keep the ventilation slits free to ensure good air circulation.Make sure there is at least 10 cm of space in front of the ventilation
slits of the housing.
Install the device in the vertical position.
Environment
Operate the device at the specified surrounding air temperature (temperature of the surrounding air at a distance of up to 1.97 in (5 cm) from the device) and relative air humidity specified in the technical data. When you are selecting the installation location, make sure you
observe the climatic threshold values specified in the technical data.
Use the device in an environment within the pollution degree specified
in the technical data.
Qualification requirements for personnel
Qualified personnel as understood in this manual and the warning signs, are persons who are familiar with the setup, assembly, startup, and operation of this product and are appropriately qualified for their job. This includes, for example, those persons who have been:
trained or directed or authorized to switch on and off, to ground and to
label power circuits and devices or systems in accordance with current safety engineering standards;
trained or directed in the care and use of appropriate safety equipment
in accordance with the current standards of safety engineering;
trained in providing first aid.
General safety instructions
This device is operated by electricity. You must follow precisely the prescribed safety requirements for the voltage connections in this document. See “Supply voltage” on page 5.
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Non-observance of these safety instructions can cause material damage and/or injuries. Only appropriately qualified personnel should work on this device or in
its vicinity. The personnel must be thoroughly familiar with all the warnings and maintenance procedures outlined in this operating manual.
The proper and safe operation of this device depends on proper
handling during transportation, proper storage and assembly, and conscientious operation and maintenance procedures.
Never start operation with damaged components.Only use the devices in accordance with this manual. In particular,
observe all warnings and safety-related information.
Any work that may be required on the electrical installation may only
be carried out by personnel trained for this purpose.
Note: LED or LASER components in compliance with IEC 60825-1 (2007): CLASS 1 LASER PRODUCT CLASS 1 LED PRODUCT
National and international safety regulations
Make sure that the electrical installation meets local or nationally
applicable safety regulations.
CE marking
The labeled devices comply with the regulations contained in the following European directive(s):
In accordance with the above-named EU directive(s), the EU conformity declaration will be at the disposal of the relevant authorities at the following address:
Device variant Directive
All variants 2004/108/EG (EMV)
Directive of the European Parliament and the council for standardizing the regulations of member states with regard to electromagnetic compatibility.
2011/65/EU (RoHS) Directive of the European Parliament and of the Council on the restriction of the use of certain hazardous substances in electrical and electronic equipment.
Only for device variants with operating voltage type M9:
2006/95/EC Directive of the European Parliament and the council for standardizing the regulations of member states with regard to electrical equipment to be used within specific voltage ranges.
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Hirschmann Automation and Control GmbH Stuttgarter Str. 45-51 72654 Neckartenzlingen Germany Tel.: +49 1805 141538
The product can be used in the industrial sector.
Interference immunity: EN 61000-6-2Emitted interference: EN 55022Reliability: EN 60950-1
You will find more information on norms and standards here:
“Technical data” on page 40
Warning! This is a class A device. This device can cause interference in living areas, and in this case the operator may be required to take appropriate measures.
Note: The assembly guidelines provided in these instructions must be strictly adhered to in order to observe the EMC threshold values.
FCC note
This device complies with part 15 of the FCC rules. Operation is subject to the following two conditions: (1) this device may not cause harmful interference; (2) this device must accept any interference received, including interference that may cause undesired operation. Appropriate testing has established that this device fulfills the requirements of a class A digital device in line with part 15 of the FCC regulations. These requirements are designed to provide sufficient protection against interference when the device is being used in a business environment. The device creates and uses high frequencies and can also radiate high frequencies, and if it is not installed and used in accordance with this operating manual, it can cause radio transmission interference. The use of this device in a living area can also cause interference, and in this case the user is obliged to cover the costs of removing the interference.
Recycling note
After usage, this device must be disposed of properly as electronic waste, in accordance with the current disposal regulations of your county, state, and country.
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About this manual
The “Installation” user manual contains a device description, safety instructions, a description of the display, and the other information that you need to install the device. The following manuals are available as PDF files on the CD/DVD supplied:
Installation user manualBasic Configuration user manualRedundancy Configuration user manualReference manual for the graphical user interfaceCommand Line Interface user manual
The Industrial HiVision Network Management Software provides you with additional options for smooth configuration and monitoring:
Simultaneous configuration of multiple devicesGraphical user interface with network layoutAuto-topology discoveryEvent logEvent handlingClient/server structureBrowser interfaceActiveX control for SCADA integrationSNMP/OPC gateway.
Key
The symbols used in this manual have the following meanings:
Listing
Work step
Subheading
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1 Device description
1.1 General device description
You can choose from between a wide range of variants. You have the option to set up your device individually based on different criteria:
Number of portsTransmission speedTypes of connectorsTemperature rangeVoltage rangeCertifications
The RSPL 20/30 devices are designed for the special requirements of industrial automation. They meet the relevant industry standards, provide very high operational reliability, even under extreme conditions, and also provide long-term reliability and flexibility.
The devices allow you to set up switched industrial Ethernet networks that conform to the IEEE 802.3 standard.
The devices work without a fan. The devices are mounted very quickly by snapping them onto the DIN rail.
You have the option to choose various media to connect terminal devices and other infrastructure components:
twisted pair cablemultimode F/Osinglemode F/O
The redundancy concept allows the network to be reconfigured quickly.
There are convenient options for managing the device. Administer your devices via:
a Web browserSSHTelnetHiDiscovery (Software for putting the device into operation)management software (such as Industrial HiVision)a V.24 interface (locally on the device)
The devices provide you with a large range of functions, which the manuals for the operating software inform you about. You will find these manuals as PDF files on the enclosed CD/DVD, or you can download them from the Internet on the Hirschmann product pages (www.hirschmann.com).
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The Hirschmann network components help you ensure continuous communication across all levels of the company.
1.2 Device name and product code
The device name corresponds to the product code. The product code is made up of characteristics with defined positions. The characteristic values stand for specific product properties.
Item Characteristic Character
istic value
Description
1 ... 4 Product RSPL Rail Switch Power Lite 5 ... 6 Data rate 20 Switch fast Ethernet
30 Switch with gigabit ports 7 (hyphen) – 8 ... 9 Number:
10
a
/100 Mbit/s ports
08 8 × (10/)100 Mbit/s ports
10 ... 11 Number:
10b/100/1000 Mbit/s ports
00 0 × (10/)100/1000 Mbit/s ports
02 2 × (10/)100/1000 Mbit/s ports
12 ... 14 Configuration of the
uplink ports
2Z6 2 × SFP slot for 100 Mbit/s F/O connection
2O7 2 × (10/)100/1000 Mbit/s combo ports 15 ... 16 Configuration of the
other ports
TT 6 × RJ-45 socket for 10/100 Mbit/s twisted-
pair connection
YT 2 × SFP slot for 100 Mbit/s F/O connection
All others: RJ-45 socket for 10/100 Mbit/s twisted-
pair connection
ZT 4 × RJ-45 socket for 10/100 Mbit/s twisted-
pair connection
4 × SFP slot for 100 Mbit/s F/O connection 17 (hyphen) – 18 Temperature range S Standard +32 °F ... +140 °F (0 °C ...
+60 °C)
T Extended −40 °F ... +158 °F (−40 °C
... +70 °C)
E Extended with
conformal coating
−40 °F ... +158 °F (−40 °C ... +70 °C)
19 ... 20 Operating voltage CC 2 voltage inputs for redundant voltage supply
Rated voltage range DC
24 V ... 48 V Class 2
M9 1 voltage input
Rated voltage range AC
110 V ... 230 V, 50 Hz ... 60 Hz
Rated voltage range DC
110 V ... 250 V
Table 1: Device name and product code
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21 ... 22 Certificates and
declarations
c
Z9 CE, FCC, EN 61131-2, EN 60950-1 Y9 “Z9” + cUL 508, (UL 60950-1) X9 “Z9” + cUL 508, (UL 60950-1), ISA 12.12 Class 1
Div. 2
V9 “Z9” + IEC 61850-3, IEEE 1613
Substation applications
VY “V9” + cUL 508, (UL 60950-1)
Substation applications
VT “V9” + cUL 508, (UL 60950-1), EN 50121-4
Sub-station and railway applications (trackside)
T9 “Z9” + EN 50121-4
Railway applications (trackside)
TY “T9” + cUL 508, (UL 60950-1)
Railway applications (trackside)
23 ... 24 Customization HS Hirschmann Standard
a. Only for twisted pair connections b. Only for twisted pair connections c. Certificates and declarations in brackets are being prepared.
Item Characteristic Character
istic value
Description
Table 1: Device name and product code
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Figure 1: Example of a device name:
RSPL20-08002Z6TT-SCCZ9HS
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1.3 Combination options
Item 1 ... 4 5 ... 6 7 8 ... 9 10 ... 11 12 ... 14 15 ... 16 17 18 19 ... 20 21 ... 22 23 ... 24
Characte ristic
Product Data
rate
Number: 10
a
/100
Mbit/s ports
a. Only for twisted pair connections
Number: 10b/100/1000 Mbit/s ports
b. Only for twisted pair connections
Configuration of the uplink ports
Configura tion of the other ports
Temperature range
Operating voltage
Certificates and declarations
Customization
Charact eristic value
RSPL 20 – 08 00 2Z6 TT; YT – S; T; E CC; M9 Z9; Y9; X9; V9;
VY; VT; T9; TY
HS
30 – 08 02 2O7 YT; ZT – S; T; E CC; M9 Z9; Y9; X9; V9;
VY; VT; T9; TY
HS
Table 2: Combination options of the RSPL 20/30 device variants
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1.4 Device views
1.4.1 Front view
1 LED display elements for device status 2 V.24 interface 3 Uplink ports
2 × SFP slot for 100 Mbit/s F/O connection
4 Other ports
alternatively, depending on device variant
Port configuration of the type: YT
2 × SFP slot for 100 Mbit/s F/O connection 4 × RJ-45 socket for 10/100 Mbit/s twisted-pair
connection
Port configuration of the type: TT
6 × RJ-45 socket for 10/100 Mbit/s twisted-pair
connection
5 Grounding screw 6 Connection for the supply voltage
alternatively, depending on device variant
Operating voltage of the type: CC
2 voltage inputs for redundant voltage supply2-pin terminal block
Operating voltage of the type: M9
1 voltage input3-pin terminal block
7 Connection for the signal contact
Table 3: Front view:
left: Device variants RSPL20.........2Z6YT..CC....
right: Device variants RSPL20.........2Z6TT..M9....
1
2
3
4
7
5
6
1
4
7
6
3
5
2
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1 LED display elements for device status 2 V.24 interface 3 Uplink ports
2 × (10/)100/1000 Mbit/s combo ports
4 Other ports
alternatively, depending on device variant
Port configuration of the type: YT
2 × SFP slot for 100 Mbit/s F/O connection 6 × RJ-45 socket for 10/100 Mbit/s twisted-pair
connection
Port configuration of the type: ZT
4 × SFP slot for 100 Mbit/s F/O connection 4 × RJ-45 socket for 10/100 Mbit/s twisted-pair
connection 5 Grounding screw 6 Connection for the supply voltage
alternatively, depending on device variant
Operating voltage of the type: CC
2 voltage inputs for redundant voltage supply2-pin terminal block
Operating voltage of the type: M9
1 voltage input3-pin terminal block
7 Connection for the signal contact
Table 4: Front view:
left: Device variants RSPL30.........2O7YT..CC....
right: Device variants RSPL30.........2O7ZT..M9....
4
6
5
7
2 3
1
4
5
7
6
2 3
1
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1.4.2 Rear view
1.5 Power supply
1.5.1 Operating voltage type M9
A 3-pin terminal block is available to supply the device.
You will find more information on page 30.
1.5.2 Operating voltage type CC
For the redundant supply of the device, two 2-pin terminal blocks are available.
You will find more information on page 31.
1 Slot for the SD card 2 Knurled screw
1
2
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1.6 Ethernet ports
You can connect terminal devices and other segments on the ports of the device via twisted pair cables or F/O cables.
1.6.1 Gigabit combo port (optional)
You have the option to alternatively connect F/O (via SFP transceivers) or twisted pairs to a combo port. When you are using an SFP transceiver, you get an optical interface. You thus deactivate the corresponding TP interface.
10/100/1000 Mbit/s twisted pair connection
These connections are RJ45 sockets.
10/100/1000 Mbit/s TP ports enable the connection of terminal devices or independent network segments according to the IEEE 802.3 10BASE­T/100BASE-TX/1000BASE-T standard.
These ports support:
Autonegotiation Autopolarity Autocrossing (if autonegotiation is activated)1000 Mbit/s full duplex100 Mbit/s half-duplex mode, 100 Mbit/s full duplex mode10 Mbit/s half-duplex mode, 10 Mbit/s full duplex mode
Delivery state: autonegotiation activated The socket housing is electrically connected to the front panel. The pin assignment corresponds to MDI-X.
100/1000 Mbit/s F/O connection
These ports are SFP slots.
Figure Pin Function
1BI_DB+ 2BI_DB− 3BI_DA+ 4BI_DD+ 5BI_DD− 6BI_DA− 7BI_DC+ 8BI_DC−
Table 5: Pin assignment of a 10/100/1000 Mbit/s TP interface in MDI-X mode,
RJ45 socket
1 2 3 4 5 6 7 8
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100/1000 Mbit/s F/O ports enable the connection of terminal devices or independent network segments according to the IEEE 802.3 100BASE­FX/1000BASE-SX/1000BASE-LX standard. These ports support:
1000 Mbit/s full duplex100 Mbit/s half-duplex mode, 100 Mbit/s full duplex mode
State on delivery:
100 Mbit/s full duplex when using a Fast Ethernet SFP transceiver1000 Mbit/s full duplex when using a Gigabit Ethernet SFP transceiver
1.6.2 10/100 Mbit/s twisted pair connection
These connections are RJ45 sockets. 10/100 Mbit/s TP ports enable the connection of terminal devices or independent network segments according to the IEEE 802.3 10BASE­T/100BASE-TX standard. These ports support:
Autonegotiation Autopolarity Autocrossing (if autonegotiation is activated)100 Mbit/s half-duplex mode, 100 Mbit/s full duplex mode10 Mbit/s half-duplex mode, 10 Mbit/s full duplex mode
Delivery state: autonegotiation activated The socket housing is electrically connected to the front panel.
1.6.3 100 Mbit/s F/O connection
These ports are SFP slots. 100 MBit/s F/O ports enable the connection of terminal devices or independent network segments in compliance with the IEEE 802.3 100BASE-FX standard. These ports support:
100 Mbit/s half-duplex mode, 100 Mbit/s full duplex mode
Default setting: Full duplex
Figure Pin Operation
1+2 One line pair: receiver path 3+6 One line pair: sender path 4,5,7,8 —
Table 6: Pin assignment of a TP/TX interface in MDI-X mode, RJ45 socket
1 2 3 4 5 6 7 8
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1.7 Display elements
After the operating voltage is set up, the software starts and initializes itself. Afterwards, the device performs a self-test. During this process, various LEDs light up.
1.7.1 Device state
These LEDs provide information about conditions which affect the operation of the whole device.
LED Display Color Activity Meaning
Power Power supply — None The supply voltage is too low.
Yellow Lights up Device variants with redundant voltage
supply: The supply voltages 1 or 2 are on.
flashes 4 times a period
Software update is running. Maintain the voltage supply.
Green Lights up Device variants with redundant voltage
supply: The supply voltages 1 and 2 are on.
Device variants with simple voltage supply: The supply voltage is on.
Status Device Status — None Device is starting and/or is not ready for
operation.
Green Lights up Device is ready for operation.
Characteristics can be configured.
Red Lights up Device is ready for operation.
The Device detects and displays the system monitoring results when at least one unussual event occurs.
Flashes 1 time a period
The boot parameters used when the device has been started differ from the boot parameters saved. Start the device again.
flashes 4 times a period
Device has detected a multiple IP address.
RM Redundancy
Manager
— None No redundancy configured Green Lights up Redundancy exists
Flashes 1 time a period
Device is reporting an incorrect configuration of the RM function.
Yellow Lights up No redundancy exists
ACA Storage medium
ACA31
— None The storage medium ACA is not inserted. Green Lights up The storage medium ACA is inserted.
Flashes 3 times a period
The device allows read and write access.
Yellow Lights up The storage medium ACA is out of order.
Status
RM
ACA
Power
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1.7.2 Port state
These LEDs display port-related information. During the boot phase, they indicate the status of the boot process. The LEDs are directly located on the ports.
1.8 Management interfaces
1.8.1 V.24 interface (external management)
Note: The location on the device is described on page 18 “Front view”.
A serial interface is provided on the RJ11 socket (V.24 interface) for the local connection of an external management station (VT100 terminal or PC with corresponding terminal emulation). This enables a connection to the Command Line Interface (CLI) and the system monitor to be made.
The socket housing is electrically connected to the front panel of the device. The V.24 interface is electrically insulated from the supply voltage.
Display Color Activity Meaning
Link status — None The device detects an invalid or missing
connection.
Green Lights up The device detects a valid connection.
Flashes 1 time a period The port is switched to stand-by. Flashes 3 times a period The port is disabled.
Yellow Lights up Device detects a non-supported SFP
transceiver or a non- supported data rate. Flashing The device is sending and/or receiving data. Flashes 1 time a period The device detects at least one
unauthorized MAC address (Port Security
Violation).
VT 100 terminal settings
Speed 9,600 Baud Data 8 bit Stopbit 1 bit Handshake off Parity none
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Figure 2: Pin assignment of the V.24 interface and the DB9 connector
Note: You will find the order number for the terminal cable, which is supplied separately, in the Technical Data chapter (see page 49).
1.8.2 SD card interface
Note: The location on the device is described on page 20 “Rear view”. On the front of the device there is an LED display that informs you about the status of the interface.
The SD card interface allows you to connect the AutoConfiguration Adapter ACA31 storage medium. This is used for saving/loading the configuration data and diagnostic information, and for loading the software. See “Accessories” on page 49.
Mode Pin No. Description Type
a
a. S - voltage supply
I - input O - output, uses push-pull driver PP - I/O, uses push-pull driver
Description
SD 1 CD/DAT3 I/O/PP Card detection / data line (bit 3)
2 CMD PP Command / reply 3 VSS1 S Supply voltage (ground) 4 VDD S Supply voltage 5 CLK I Clock input 6 VSS2 S Supply voltage (ground) 7 DAT0 I/O/PP Data line (bit 0) 8 DAT1 I/O/PP Data line (bit 1) 9 DAT2 I/O/PP Data line (bit 2)
Table 7: Pin connection of SD card
1
1
8
5
6
2 3
5
1 2 3 4 5 6
CTS n.c. TX GND RX RTS
RJ11
DB9
RJ11
DB9
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1.9 Signal contact
Figure 3: Signal contact: 2-pin terminal block with screw locking
The signal contact is a potential-free relay contact. The device allows you to perform remote diagnosis via the signal contact. In the process, the device signals events such as a line interruption. When an event occurs, the device opens the relay contact and interrupts the closed circuit. The management setting specifies which events switch a contact. You can also use the management to switch the signal contact manually and thus control external devices.
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2 Device installation
The devices have been developed for practical application in a harsh industrial environment. On delivery, the device is ready for operation.
The following steps should be performed to install and configure a switch:
Unpacking and checkingInstalling the SD card (optional)Installing the device and groundingInstalling the SFP transceivers (optional)Connecting the terminal blocksMounting the terminal blocks and switching on the supply voltageConnecting the data linesInsert data in label area
2.1 Unpacking and checking
Check whether the contents of the package are complete (see page 49
“Scope of delivery”).
Check the individual parts for transport damage.
2.2 Installing the SD card (optional)
Note: The location on the device is described on page 20 “Rear view”. Only use the AutoConfiguration Adapter ACA31 storage medium. See “Accessories” on page 49.
Deactivate the write protection on the SD card.Push the SD card into the slot with the serration facing downwards.Tighten the knurled screw to ensure that the SD card does not fall out.
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2.3 Installing the device and grounding
2.3.1 Mounting on the DIN rail
Figure 4: Mounting on the DIN rail
Note: Make sure there is at least 10 cm of space above and below the device.
WARNING
FIRE HAZARD
Install the device in a fire protected enclosure according to EN 60950-1.
Failure to follow these instructions can result in death, serious injury, or equipment damage.
WARNING
Only for device variants with operating voltage type M9:
ELECTRIC SHOCK
Only install this device in a switch cabinet or in an operating site with limited access, to which only maintenance staff have access.
Failure to follow these instructions can result in death, serious injury, or equipment damage.
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Note: The shield ground wire of the twisted pair lines is connected to the front panel as a conductor.
Mount the device on a 35 mm DIN rail in accordance with DIN EN 60175.Attach the upper snap-in guide of the device into the DIN rail and press
the device down against the DIN rail until it snaps into place.
2.3.2 Grounding
The housing is grounded via the separate ground screw on the bottom left of the front panel. The device variants with operating voltage type M9 have a protective grounding. The device variants with operating voltage type CC have a function grounding.
Connect the grounding to the ground screw of the device.
Note: For safety reasons, make sure you only connect the ground wire before you set up the other connections.
2.4 Installing the SFP transceivers (optional)
Figure 5: Fast Ethernet / Gigabit Ethernet Fiberoptic SFP Transceiver
Before attaching an SFP transceiver, first remove the protective cap over
the socket.
Push the SFP transceiver with the lock closed into the socket until you
hear it latch in.
Note: Only use Hirschmann SFP transceivers (see page 49 “Accessories”).
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2.5 Connecting the terminal blocks
Note: The supply voltage is only connected with the chassis via protective elements.
Operating voltage type M9
Figure 6: Operating voltage type M9: 3-pin terminal block with screw locking
WARNING
ELECTRIC SHOCK
Only connect a supply voltage as described in the data plate of your device. Never insert sharp objects (small screwdrivers, wires, etc.) into the connection terminals for the supply voltage or the signal contact, and do not touch the terminals!
Failure to follow these instructions can result in death, serious injury, or equipment damage.
Type of the voltages that can be connected
Size of the supply voltage Connections
DC voltage Rated voltage range DC
110 V ... 250 V Voltage range DC incl. maximum tolerances 88 V ... 320 V
+/L Plus terminal of the supply voltage
−/N Minus terminal of the supply voltage
Protective conductor
AC voltage Rated voltage range AC
110 V ... 230 V, 50 Hz ... 60 Hz Voltage range AC incl. maximum tolerances 88 V ... 265 V, 47 Hz ... 63 Hz
+/L Outer conductor
−/N Neutral conductor Protective conductor
Table 8: Operating voltage type M9: Type and size of the supply voltage,
connections
N
L
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To connect supply voltage, perform the following steps: Ensure the required conditions for connecting the supply voltage are
observed (see page 5 “Supply voltage”).
Remove the power connector from the device.Connect the protective conductor to the protective conductor terminal.Connect the lines for the supply voltage to the terminals +/L and −/N.
Operating voltage type CC
You have the option to supply the supply voltage redundantly, with no load distribution. Both inputs are separate from one another.
Figure 7: Operating voltage type CC: 2-pin terminal block with screw locking
WARNING
ELECTRIC SHOCK
Only start connecting the supply voltage if all the above mentioned requirements are fulfilled.
See “Supply voltage” on page 5.
Only install this device in a switch cabinet or in an operating site with limited access, to which only maintenance staff have access.
Failure to follow these instructions can result in death, serious injury, or equipment damage.
Type of the voltages that can be connected
Size of the supply voltage Connections
DC voltage Rated voltage range DC
24 V ... 48 V Class 2 Voltage range DC incl. maximum tolerances 18 V ... 60 V Class 2
+ Plus terminal of the supply voltage
− Minus terminal of the supply voltage
Table 9: Operating voltage type CC: Type and size of the supply voltage,
connections
−
+
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For every supply voltage to be connected, perform the following steps: Ensure the required conditions for connecting the supply voltage are
observed (see page 5 “Supply voltage”).
Remove the power connector from the device.Connect the lines for the supply voltage to the + and − terminals.
Note: With non-redundant supply of the mains voltage, the device reports a power failure. You can prevent this message by applying the supply voltage via both inputs, or by changing the configuration in the Management.
Signal contact
For the signal contact to be connected, make sure the following requirements are met:
The lines to be connected are voltage-free.The connected voltage is limited by a current limitation device or a
fuse. Observe the electrical threshold values for signal contact (see on
page 40 “General technical data”).
Connect the signal contact lines to the terminal block.
WARNING
ELECTRIC SHOCK
Only start connecting the supply voltage if all the above mentioned requirements are fulfilled.
See “Supply voltage” on page 5.
Failure to follow these instructions can result in death, serious injury, or equipment damage.
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2.6 Mounting the terminal blocks and switching on the supply voltage
Note: Relevant for North America: The torque for tightening the supply voltage terminal block on the device is
0.51 Nm (4.5 lb in).
The torque for tightening the signal contact/terminal block on the device is 3lbin (0.34Nm).
Use screws to secure the connecters to the device.Switch on the supply voltage.
2.7 Connecting the data lines
Note: In general, you should adhere to the following recommendations for data cable connections in environments with high electrical interference levels:
Keep the length of the data cables as short as possible. Use optical
cables for the data transmission between the buildings.
When using copper cables, make sure there is a sufficient gap between
the power supply cables and the data cables if they are laid over a long distance. Ideally, install the cables in separate cable channels.
Use shielded cables.
Note: Make sure that you only connect optical ports of the same type with each other, e.g. single-mode ports with single-mode ports.
2.7.1 Gigabit combo port (optional)
You have the option to alternatively connect F/O (via SFP transceivers) or twisted pairs to a combo port. When you are using an SFP transceiver, you get an optical interface. You thus deactivate the corresponding TP interface.
WARNING
ELECTRIC SHOCK
Ground the device before connecting the power supply.
Failure to follow these instructions can result in death, serious injury, or equipment damage.
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10/100/1000 Mbit/s twisted pair connection
You will find more information on page 21.
Install the data lines according to your requirements.
100/1000 Mbit/s F/O connection
You will find more information on page 21.
Install the data lines according to your requirements.
2.7.2 100 Mbit/s F/O connection
You will find more information on page 22.
Install the data lines according to your requirements.
2.7.3 10/100 Mbit/s twisted pair connection
You will find more information on page 22.
Install the data lines according to your requirements.
2.8 Insert data in label area
The information field for the IP address on the front of the device helps you to structure your network installation clearly.
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3 Basic set-up
The IP parameters must be entered when the device is installed for the first time. The device provides the following options for configuring IP addresses:
Entry via V.24 connectionEntry using the HiDiscovery protocol via the application HiDiscovery or
Industrial HiVision
Configuration via BOOTPConfiguration via DHCP (Option 82)AutoConfiguration Adapter
Further information on the basic settings of the device can be found in the user manual on the CD/DVD.
Default settings
IP address: The device looks for the IP address using DHCPManagement password:
user, password: public (read only) admin, password: private (read/write)
V.24 data rate: 9,600 BaudEthernet ports: link status is not evaluated (signal contact)Optical ports: Full duplex
TP ports: Autonegotiation
RSTP (Rapid Spanning Tree) activated
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4 Monitoring the ambient air temperature
Only operate the device up to the specified maximum ambient air temperature.
See “General technical data” on page 40.
The ambient air temperature is the temperature of the air at a distance of 5 cm from the device. It depends on the installation conditions of the device, e.g. the distance from other devices or other objects, and the output of neighboring devices.
The temperature displayed in the CLI and the GUI is the internal temperature of the device. It is higher than the ambient air temperature. The maximum internal temperature of the device named in the technical data is a guideline that indicates to you that the maximum ambient air temperature has possibly been exceeded.
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5 Maintenance and service
When designing this device, Hirschmann was largely able to forego using
parts that are subject to waer and tear. The parts subject to wear are designed to last longer than the lifetime of the product when it is operated properly. Operate this device according to the specifications (see
“Technical data”).
Relays are subject to natural wear. This wear depends on the frequency
of the switching operations. Check the resistance of the closed relay contacts and the switching function depending on the frequency of the switching operations.
Hirschmann is continually working to improve and develop our software.
You should regularly check whether there is a new version of the software that provides you with additional benefits. You will find software information and downloads on the product pages of the Hirschmann website.
Depending on the degree of pollution in the operating environment, check at regular intervals that the ventilation slots in the device are not obstructed.
Note: You will find information about the complaints and returns procedures in the Internet under
http://www.beldensolutions.com/en/Service/Repairs/index.phtml .
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6 Disassembly
6.1 Disassembling the device
Disconnect the data lines.Switch off the supply voltage.Disconnect the terminal blocks.Disconnect the grounding.
Note: For safety reasons, make sure you disconnect the grounding from all connections last.
To remove the device from the DIN rail, press the device downwards and
pull it out from under the DIN rail.
Figure 8: Removal from the DIN rail
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6.2 Removing the SFP transceivers
Pull the SFP transceiver out of the socket by means of the opened lock.
Figure 9: Deinstalling an SFP transceiver
1
2
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7 Technical data
General technical data
Dimensions W × H × D
RSPL 20/30 See “Dimension drawings” on page 42.
Weight RSPL-20-... approx. 1.0 kg
RSPL-30-... approx. 1.2 kg
Power supply Power supply type CC
Nominal voltage DC 24 V ... 48 V Class 2 Voltage range DC incl.
maximum tolerances
18 V ... 60 V Class 2
Connection type 2-pin terminal block Power failure bypass > 10 ms at 20.4 V DC Overload current protection at
input
Non-replaceable fuse
Back-up fuse for each voltage input
Nominal rating: Characteristic:
1A slow blow
Peak inrush current < 4 A
Power supply Power supply type M9
Nominal voltage AC 110 V ... 230 V, 50 Hz ... 60 Hz Voltage range AC incl.
maximum tolerances
88 V ... 265 V, 47 Hz ... 63 Hz
Nominal voltage DC 110 V ... 250 V Voltage range DC incl.
maximum tolerances
88 V ... 320 V
Connection type 3-pin terminal block Power failure bypass > 10 ms at 98 V AC Overload current protection at
input
Non-replaceable fuse
Back-up fuse Nominal rating:
Characteristic:
1 A ... 20 A slow blow
Peak inrush current < 3.5 A
Climatic conditions during operation
Ambient temperature Devices with operating temperature type S
(standard): +32 °F ... +140 °F (0 °C ... +60 °C)
a
Devices with operating temperature type E and type T (extended):
−40 °C ... +70 °C
b
−40 °C ... +85 °C for 16 hours (tested in accordance with IEC 60068-2-2)
c
Maximum inner temperature of device (guideline)
Devices with operating temperature type S (standard): 83 °C
Devices with operating temperature type E and type T (extended): 93 °C
Humidity 5 % ... 95 %
(non-condensing)
Air pressure minimum 700 hPa (+3000 m)
maximum 1060 hPa (−400 m)
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Climatic conditions during storage
Ambient temperature −40 °F ... +185 °F (−40 °C ... +85 °C) Humidity 5 % ... 95 %
(non-condensing)
Air pressure minimum 700 hPa (+3000 m)
maximum 1060 hPa (−400 m)
Signal contact Switching current max. 1 A, SELV
Switching voltage max. 60 V DC or max. 30 V AC, SELV Pollution degree 2 Protection
classes
Laser protection Class 1 in compliance with IEC 60825-1
Degree of protection IP 20
a. Hirschmann recommends to use SFP transceivers with the “EEC” extension. b. Only use SFP transceivers with the “EEC” extension, otherwise the standard temperature
range applies.
c. Only use SFP transceivers with the “EEC” extension, otherwise the standard temperature
range applies.
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Dimension drawings
Figure 10: Dimensions of device variants RSPL20-...
Figure 11: Dimensions of device variants RSPL30-...
mm inch
70
2.76
4.52
114,7
6,55
0.26
89,9
3.54
163,6
6.44
107
4.26
163,6
6.44
114,7
4.52 0.26
6,55
70
2.76
mm inch
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EMC and immunity
Stability Standard
applications
a
a. EN 61131-2, CE, FCC – applies to all devices
Railway applications (trackside)
b
b. EN 50121-4 – applies to devices with the certification codes VT, T9, TY
Sub-station applications
c
c. EN 61850-3, IEEE 1613 – applies to devices with the certification codes V9, VY, VT
IEC 60068-2-6, test Fc Vibration — — 2 Hz ... 9 Hz with
3 mm amplitude
5 Hz ... 8.4 Hz with
3.5 mm amplitude
5 Hz ... 8.4 Hz with
3.5 mm amplitude
5 Hz ... 8.4 Hz with
3.5 mm amplitude
8.4 Hz ... 150 Hz with 1 g
8.4 Hz ... 150 Hz with 1 g
9 Hz ... 200 Hz with 1 g
— — 200 Hz ... 500 Hz
with 1.5 g
IEC 60068-2-27, Test Ea Shock 15 g at 11 ms 15 g at 11 ms 15 g at 11 ms
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EMC emitted interference Standard
applications
a
Railway applications (trackside)
b
Sub-station applications
c
Emitted interference
EN 55022 Class A Class A Class A GL Guidelines — — — FCC 47 CFR Part 15 Class A Class A Class A EN 61000-6-4 Fulfilled Fulfilled Fulfilled
Conducted interference
EN 55022 AC and DC supply connections Class A Class A Class A GL Guidelines AC and DC supply connections — — — FCC 47 CFR Part 15 AC and DC supply connections Class A Class A Class A EN 61000-6-4 AC and DC supply connections Fulfilled Fulfilled Fulfilled EN 55022 Telecommunication connections Class A Class A Class A EN 61000-6-4 Telecommunication connections Fulfilled Fulfilled Fulfilled
a. EN 61131-2, CE, FCC – applies to all devices b. EN 50121-4 – applies to devices with the certification codes VT, T9, TY c. EN 61850-3, IEEE 1613 – applies to devices with the certification codes V9, VY, VT
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EMC interference immunity
Standard applications
a
Railway applications (trackside)
b
Sub-station applications
c
Electrostatic discharge
EN 61000-4-2 IEEE C37.90.3
Contact discharge ± 4 kV ± 6 kV ± 8 kV
EN 61000-4-2 IEEE C37.90.3
Air discharge ± 8 kV ± 8 kV ± 15 kV
Electromagnetic field
EN 61000-4-3 80 MHz ... 3000 MHz 10 V/m 20 V/m 10 V/m IEEE 1613 80 MHz ... 1000 MHz — — 35 V/m
Fast transients (burst)
EN 61000-4-4 IEEE C37.90.1
AC/DC supply connection ± 2 kV ± 2 kV ± 4 kV
EN 61000-4-4 IEEE C37.90.1
Data line ±4kV ±4kV ±4kV
Voltage surges - DC supply connection
EN 61000-4-5 line/ground ± 2 kV ± 2 kV ± 2 kV IEEE 1613 line/ground — — ± 5 kV EN 61000-4-5 line/line ± 1 kV ± 1 kV ± 1 kV
Voltage surges - AC supply connection
EN 61000-4-5 line/ground ± 2 kV ± 2 kV ± 4 kV IEEE 1613 line/ground — — ± 5 kV EN 61000-4-5 line/line ± 1 kV ± 1 kV ± 2 kV
Voltage surges - data line
EN 61000-4-5 line/ground ± 1 kV ± 2 kV ± 4 kV
Line-conducted interference voltages
EN 61000-4-6 150 kHz ... 80 MHz 10 V 10 V 10 V
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Damped vibration - AC/DC supply connection
EN 61000-4-12 IEEE C37.90.1
line/ground — — 2.5 kV
EN 61000-4-12 IEEE C37.90.1
line/line — — 1 kV
Damped vibration - data line
EN 61000-4-12 IEEE C37.90.1
line/ground — — 2.5 kV
EN 61000-4-12 line/line — — 1 kV
Impulse-shaped magnetic fields
EN 61000-4-9 — 300 A/m 300 A/m
a. EN 61131-2, CE, FCC – applies to all devices b. EN 50121-4 – applies to devices with the certification codes VT, T9, TY c. EN 61850-3, IEEE 1613 – applies to devices with the certification codes V9, VY, VT
EMC interference immunity
Standard applications
a
Railway applications (trackside)
b
Sub-station applications
c
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Network range
Note: The line lengths specified for the transceivers apply for the respective fiber data (fiber attenuation and BLP/dispersion).
Product code M-SFP-...
Wave length
Fiber System
attenuatio n
Example for F/O line length
a
a. including 3 dB system reserve when compliance with the fiber data is observed
Fiber attenuatio n
BLPb/ dispersion
b. The bandwidth length product cannot be used to calculate the expansion.
-SX/LC... MM 850 nm 50/125 µm 0-7.5 dB 0-550 m 3.0 dB/km 400 MHz·km
-SX/LC... MM 850 nm 62.5/125 µm 0-7.5 dB 0-275 m 3.2 dB/km 200 MHz·km
-MX/LC MM 1310 nm 50/125 µm 0-8 dB 2 km
c
c. Distances of up to 3 km reachable, 1000 MHz*km (1300 nm)
1.0 dB/km 500 MHz·km
-MX/LC MM 1310 nm 62.5/125 µm 0-8 dB 1 km 1.0 dB/km 500 MHz·km
-LX/LC... MM 1310 nm
d
d. With F/O adapter compliant with IEEE 802.3-2002 clause 38 (single-mode fiber offset-launch
mode conditioning patch cord)
50/125 µm 0-10.5 dB 0-550 m 1.0 dB/km 800 MHz·km
-LX/LC... MM 1310 nm
d
62.5/125 µm 0-10.5 dB 0-550 m 1.0 dB/km 500 MHz·km
-LX/LC... SM 1310 nm 9/125 µm 0-10.5 dB 0-20 km
e
e. including 2.5 dB system reserve when compliance with the fiber data is observed
0.4 dB/km 3.5 ps/(nm·km)
-LX+/LC... SM 1310 nm 9/125 µm 5-20 dB 14-42 km 0.4 dB/km 3.5 ps/(nm·km)
-LH/LC... LH 1550 nm 9/125 µm 5-22 dB 23-80 km 0.25 dB/km 19 ps/(nm·km)
-LH+/LC LH 1550 nm 9/125 µm 15-30 dB 71-108 km 0.25 dB/km 19 ps/(nm·km)
-LH+/LC LH 1550 nm 9/125 µm 15-30 dB 71-128 km 0.21 dB/km
(typically)
19 ps/(nm·km)
Table 10: Fiber port 1000BASE-FX (SFP fiber optic Gigabit Ethernet Transceiver)
Product code M-SFP­BIDI...
Wave length TX
Wave length RX
Fiber System
attenuat ion
Example for F/O line length
a
a. including 3 dB system reserve when compliance with the fiber data is observed
Fiber attenuati on
Dispersion
Type A LX/LC EEC
SM 1310 nm 1550 nm 9/125 µm 0-11 dB 0-20 km 0.4 dB/km 3.5 ps/(nm·km)
Type B LX/LC EEC
SM 1550 nm 1310 nm 9/125 µm 0-11 dB 0-20 km 0.25
dB/km
19 ps/(nm·km)
Type A LH/LC EEC
LH 1490 nm 1590 nm 9/125 µm 5-24 dB 23-80 km 0.25
dB/km
19 ps/(nm·km)
Type B LH/LC EEC
LH 1590 nm 1490 nm 9/125 µm 5-24 dB 23-80 km 0.25
dB/km
19 ps/(nm·km)
Table 11: F/O port (bidirectional Gigabit Ethernet SFP Transceiver)
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MM = Multimode, SM = Singlemode, LH = Singlemode Longhaul
Product code M-FAST­SFP-...
Wave length
Fiber System
attenuatio n
Example for F/O line length
a
a. including 3 dB system reserve when compliance with the fiber data is observed
Fiber attenuation
BLP/ dispersion
-MM/LC... MM 1310 nm 50/125 µm 0-8 dB 0-5 km 1.0 dB/km 800 MHz*km
-MM/LC... MM 1310 nm 62.5/125 µm 0-11 dB 0-4 km 1.0 dB/km 500 MHz*km
-SM/LC... SM 1310 nm 9/125 µm 0-13 dB 0-25 km 0.4 dB/km 3.5 ps/(nm*km)
-SM+/LC... SM 1310 nm 9/125 µm 10-29 dB 25-65 km 0.4 dB/km 3.5 ps/(nm*km)
-LH/LC... SM 1550 nm 9/125 µm 10-29 dB 47-104 km 0.25 dB/km 19 ps/(nm*km)
-LH/LC... SM 1550 nm 9/125 µm 10-29 dB 55-140 km 0.18 dB/km
b
b. with ultra-low-loss optical fiber
18 ps/(nm*km)
Table 12: Fiber port 100BASE-FX (SFP fiber optic Fast Ethernet Transceiver)
TP port
Length of a twisted pair segment max. 100 m/328 ft (for cat5e cable)
Table 13: TP port 10BASE-T / 100BASE-TX / 1000BASE-T
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Power consumption/power output, order numbers
The order numbers correspond to the product codes of the devices.
See “Device name and product code” on page 14.
Scope of delivery
Accessories
Note: Please note that products recommended as accessories may have characteristics that do not fully match those of the corresponding product. This may limit their possible usage in the overall system.
Device name Maximum
power consumption
Power output
RSPL20-08002Z6TT........ 8 W 27 BTU (IT)/h
RSPL20-08002Z6YT........ 10 W 34 BTU (IT)/h
RSPL30-08022O7YT........ 14 W 47 BTU (IT)/h
RSPL30-08022O7ZT........ 16 W 55 BTU (IT)/h
Number Article
1× Device 1 × 2-pin terminal block for signal contact 1 × 3-pin terminal block for supply voltage
(Only for device variants with operating voltage type M9)
2 × 2-pin terminal block for supply voltage
(for device variants with operating voltage type CC only) 1 × Installation user manual 1 × CD/DVD with manual
Name Order number
Terminal cable 943 301-001 AutoConfiguration Adapter ACA 31 942 074-001 For device variants with operating voltage type M9:
3-pin terminal block (50 pieces) for supply voltage
943 845-008
For device variants with operating voltage type CC: 2-pin terminal block (50 pieces) for supply voltage
943 845-009
2-pin terminal block (50 pieces) for signal contact 943 845-010 Power Cord 942 000-001 Network management software Industrial HiVision 943 156-xxx
Gigabit Ethernet SFP transceiver Order number
M-SFP-SX/LC 943 014-001 M-SFP-SX/LC EEC 943 896-001 M-SFP-MX/LC 942 035-001 M-SFP-LX/LC 943 015-001 M-SFP-LX/LC EEC 943 897-001 M-SFP-LX+/LC 942 023-001 M-SFP-LX+/ LC EEC 942 024-001
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Underlying norms and standards
The device generally fulfills the norms and standards named in their current versions.
M-SFP-LH/LC 943 042-001 M-SFP-LH/LC EEC 943 898-001 M-SFP-LH+/LC 943 049-001
Bidirectional Gigabit Ethernet SFP transceiver Order number
M-SFP-BIDI Type A LX/LC EEC 943 974-001 M-SFP-BIDI Type B LX/LC EEC 943 974-002 M-SFP-BIDI Type A LH/LC EEC 943 975-001 M-SFP-BIDI Type B LH/LC EEC 943 975-002 M-SFP-BIDI Bundle LX/LC EEC (type A + B) 943 974-101 M-SFP-BIDI Bundle LH/LC EEC (type A + B) 943 975-101
Fast-Ethernet SFP transceiver Order number
M-FAST SFP-MM/LC 943 865-001 M-FAST SFP-MM/LC EEC 943 945-001 M-FAST SFP-SM/LC 943 866-001 M-FAST SFP-SM/LC EEC 943 946-001 M-FAST SFP-SM+/LC 943 867-001 M-FAST SFP-SM+/LC EEC 943 947-001 M-FAST SFP-LH/LC 943 868-001 M-FAST SFP-LH/LC EEC 943 948-001
Name
EN 61000-6-2 Generic norm – immunity in industrial environments EN 55022 IT equipment – radio interference characteristics EN 61131-2 Programmable logic controllers EN 60950-1 Safety for the installation of IT equipment cUL 60950-1 Safety for Information Technology Equipment FCC 47 CFR Part 15 Code of Federal Regulations cUL 508 Safety for Industrial Control Equipment IEC/EN 61850-3 Communications networks and systems in substations EN 50121-4 Railway applications - EMC - emitted interference and
interference immunity for signal and telecommunication systems
ISA 12.12.01, CSA C22.2 no. 213
Electrical Equipment for Use in Class I and Class II, Div.2 and Class III Hazardous (Classified) Locations
IEEE 1613 Standard Environment and Testing Requirements for
Communication Networking Devices in Electric Power
Substations IEEE 802.1 AB Station and Media Access Control Connectivity Discovery IEEE 802.1 D Media access control (MAC) bridges (includes IEEE 802.1p
Priority and Dynamic Multicast Filtering, GARP, GMRP) IEEE 802.1 Q Virtual Bridged Local Area Networks (VLAN Tagging, GVRP) IEEE 802.3 Ethernet
Table 14: List of norms and standards
Gigabit Ethernet SFP transceiver Order number
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The device has a certification based on a specific standard only if the certification indicator appears on the housing.
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A Further Support
Technical Questions
For technical questions, please contact any Hirschmann dealer in your area or Hirschmann directly.
You will find the addresses of our partners on the Internet at
http://www.hirschmann.com
Contact our support at
https://hirschmann-support.belden.eu.com
You can contact us
in the EMEA region at
Tel.: +49 (0)1805 14-1538E-mail: [email protected]
in the America region at
Tel.: +1 (717) 217-2270E-mail: [email protected]
in the Asia-Pacific region at
Tel.: +65 6854 9860E-mail: [email protected]
Hirschmann Competence Center
The Hirschmann Competence Center is ahead of its competitors:
Consulting incorporates comprehensive technical advice, from system
evaluation through network planning to project planning.
Training offers you an introduction to the basics, product briefing and
user training with certification. The current technology and product training courses can be found at
http://www.hicomcenter.com
Support ranges from the first installation through the standby service
to maintenance concepts.
With the Hirschmann Competence Center, you have decided against making any compromises. Our client-customized package leaves you free to choose the service components you want to use. Internet:
http://www.hicomcenter.com
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