Westermo RFIR-227-F4G-T7G-DC, RFIR-127-F4G-T7G-AC, RFIR-219-F4G-T7G-DC, RFIR-219-F4G-T7G-AC, RFIR-227-F4G-T7G-AC User Manual

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Industrial Routing Switch
www.westermo.com
©
Westermo Teleindustri AB
User Guide
6641-22810
RedFox
SERIES
WeOS
Status-
Status+
Digital In-
Digital In+
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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
Software tools
Related software tools are available in the folder software tools under technical support on the Westermo website.
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Safety
Before installation:
Read this manual completely and gather all information on the unit. Make sure that you understand it fully. Check that your application does not exceed the safe operating specifications for this unit. This unit should only be installed by qualified personnel. This unit should be built-in to an apparatus cabinet, or similar, where access is restricted to service personnel only. The power supply wiring must be sufficiently fused, and if necessary it must be possible to disconnect manually from the power supply. Ensure compliance to national installation regulations. This unit uses convection cooling. To avoid obstructing the airflow around the unit, follow the spacing recommendations (see Cooling section).
Before powering-up, a protective earthing conductor must be connected to the protective earthing terminal and have a cross-sectional area of at least 1.5 mm².
Before mounting, using or removing this unit:
Warning! Do not open connected unit. Hazardous voltage may occur within this unit when connected to power supply. Prevent access to hazardous voltage by disconnecting the unit from power supply.
Caution: Double pole/neutral fusing (AC models only)
Class 1 Laser Product. Do not look directly into fibre optical fibre port or
any connected fibre, although this unit is designed to meet the Class 1 Laser regulations. Complies with 21 CFR 1040.10 and 1040.11.
Caution: To reduce the risk of fire, use only No. 26 (e.g. 24 AWG) UL listed or CSA certified Telecommunication Line Cord.
Care recommendations
Follow the care recommendations below to maintain full operation of unit and to fulfil the warranty obligations. This unit must not be operating with removed covers or lids. Do not attempt to disassemble the unit. There are no user serviceable parts inside. Do not drop, knock or shake the unit, rough handling above the specification may cause damage to internal circuit boards. Do not use harsh chemicals, cleaning solvents or strong detergents to clean the unit. Do not paint the unit. Paint can clog the unit and prevent proper operation. Do not expose the unit to any kind of liquids (rain, beverages, etc). The unit is not waterproof. Keep the unit within the specified humidity levels. Do not use or store the unit in dusty, dirty areas, connectors as well as other mechanical part may be damaged. If the unit is not working properly, contact the place of purchase, nearest Westermo distributor office or Westermo Tech support. Fibre connectors are supplied with plugs to avoid contamination inside the optical port. As soon as no optical fibre is mounted on the connector, e.g. for storage, service or transportation, the plug should be applied.
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Note. Fibre Optic Handling
Fibre optic equipment needs special treatment. It is very sensitive to dust and dirt. If the fibre will be disconnected from the unit the protective hood on the transmitter/receiver must be connected. The protective hood must be kept on during transportation. The fibre optic cable must also be handle the same way.
If these recommendations are not followed the warranty might be jeopardized.
Cleaning of the optical connectors
In the event of contamination, the optical connectors should only be cleaned by the use of recommended cleaning fluids and correct cleaning equipment.
Recommended cleaning fluids:
• Methyl-, ethyl-, isopropyl- or isobutyl-alcohol
• Hexane
• Naphtha
Maintenance
No maintenance is required, as long as the unit is used as intended within the specified conditions.
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Agency approvals and standards compliance
Art.no Model Type Approval/compliance
3641-4020 3641-4030 3641-4005 3641-4015 3641-4025 3641-4035
RFIR-127-F4G-T7G-DC RFIR-127-F4G-T7G-AC RFIR-219-F4G-T7G-DC RFIR-219-F4G-T7G-AC RFIR-227-F4G-T7G-DC RFIR-227-F4G-T7G-AC
EMC EN 50121-4, Railway applications –
Electromagnetic compatibility – Emission and immunity of the signalling and telecommunications apparatus
EN 55022, Information technology equipment – Radio disturbance characteristics – Limits and methods of measurement
EN 55024, Information technology equipment – Immunity characteristics Limits and methods of measurement
EN 61000-6-1, Electromagnetic compatibility – Immunity for residential environments
EN 61000-6-2, Electromagnetic compatibility – Immunity for industrial environments
EN 61000-6-4, Electromagnetic compatibility – Emission for industrial environments
IEC 62236-4, Railway signalling and
telecommunications apparatus Safety UL/IEC/EN 60950-1, IT equipment Marine DNV GL rules for classification – Ships and
offshore units
DNV GL rules for classification
Type Temperature Humidity Vibration EMC Enclosure
RFIR-xxx-F4G-T7G-AC C B A A A/IP40
RFIR-xxx-F4G-T7G-DC D B A B A/IP40
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.
EN 55022 Notice:
This is a class A product. In a domestic environment this product may cause radio interference in which case the user may be required to take adequate measures.
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Safety control drawing
Position
Direction/ description
Input/Output values
Status+ IO / Status + Uin = 60 VDC max
Status-- IO / Status – Iin = 80 mA max
Digital In+ IO / Digital in + Uin = 60 VDC max
Digital In- IO / Digital in – Iin = 2.9 mA max
Position
Direction/ description
Output values
1 In / VBUS
U = 5 VDC max I = 100 mA max
2 In/out / D–
3 In/out / D+
4 Not connected
5 Functional earth
Degree of protection: IP 40
Ambient temperature: –40 °C to +70 °C (DC), –40 °C to +55 °C (AC)
Position
Direction/ description
Input/output values
1 In/out / BI_DA+
Per port: U = ± 1 V (4V/us) I = ± 20 mA
Data rate: 10/100/1000 Mbit/s
2 In/out / BI_DA–
3 In/out / BI_DB+
4 In/out / BI_DC+
5
In/out / BI_DC–
6 In/out / BI_DB–
7 In/out / BI_DD+
8 In/out / BI_DD–
Shield Functional earth
Galvanically isolated via signal transformers and capacitively isolated to GND/Functional earth through a 2kV 1000pF capacitor. See user manual for proven transient protection.
Status-
Status+
Digital In-
Digital In+
Position
Direction/ description
Output values
1 Out / VBUS
U
out
= 5 VDC max
I
out
= 500 mA max
2 In/out / D–
3 In/out / D+
4 GND
Shield Functional earth
Direction/ description
Input values
In / +DC1
Uin = (16 – 60) VDC Iin = 2.0 A@16 VDC* PIn = 32 W@16 VDC*
In / +DC2
In / COM
In / COM
DC Power supply AC Power supply
Direction/ description
Input values
In / P
Uin = (100–240) VAC, 50–60 Hz Iin = 360 mA@100 VAC**
In / N
In / NC
In /
+DC1
+DC2
COM
COM
DC
* RFIR-227-T7G-F4G-DC ** RFIR-227-T7G-F4G-AC
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1
5
6
7
8
2
3
4
Safety control drawing
Position Direction* / description Input/output values
Rx In / Receive port
Max 5 dBm
Tx Out / Transmit port
Position Direction* / description Input/output values
1 In/out / BI_DA+
Per port: U = ± 1 V (4V/us) I = ± 20 mA
Data rate: 100/1000 Mbit/s
2 In/out / BI_DA–
3 In/out / BI_DB+
4 In/out / BI_DC+
5 In/out / BI_DC–
6 In/out / BI_DB–
7 In/out / BI_DD+
8 In/out / BI_DD–
Shield Functional earth
Galvanically isolated via signal transformers and capacitively isolated to functional earth through a 2kV 1000pF capacitor. See user manual for proven transient protection.
* Direction relative this unit!
1
5
6
7
8
2
3
4
Position Direction* / description Input/output values
1 In/out / TD+
Per port: U = ± 1 V (4V/us) I = ± 20 mA
Data rate: 10/100 Mbit/s
2 In/out / TD–
3 In/out / RD+
4 Not connected
5
Not connected
6 In/out / RD–
7 Not connected
8 Not connected
Shield Functional earth
Galvanically isolated via signal transformers and capacitively isolated to functional earth through a 2kV 1000pF capacitor. See user manual for proven transient protection.
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Declaration of Conformity
Westermo Teleindustri AB
Declaration of Conformity
Org.nr/
Postadress/Postal address
Tel.
Telefax
Postgiro
Bankgiro
Corp. identity number Registered office
S-640 40 Stora Sundby 016-428000 016-428001 52 72 79-4 5671-5550 556361-2604 Eskilstuna
Sweden Int+46 16428000 Int+46 16428001
The manufacturer Westermo Teleindustri AB SE-640 40 Stora Sundby, Sweden
Herewith declares that the product(s)
Type of product Models1 Industrial Ethernet Switch for 19 inch Rack mounting
RFIR-x19-F4G-T7G-DC, RFIR-x27-F4G-T7G-DC RFIR-x19-F4G-T7G-AC, RFIR-x27-F4G-T7G-AC
is in conformity with the following EU directive(s).
No Short name 2014/30/EU Electromagnetic Compatibility (EMC)
2011/65/EU Restriction of the use of certain hazardous substances in electrical and electronic equipment
(RoHS)
2014/35/EU Low Voltage Directive (LVD)
1
Model Differences: x = 1 or 2 and indicates Software Class
References of standards applied for this EU declaration of conformity.
No Title Issue EN 50121-4 Railway applications – Electromagnetic compatibility – Emission and
immunity of the signalling and telecommunications apparatus
2015
EN 55022 Information technology equipment – Radio disturbance characteristics –
Limits and methods of measurement
2010
EN 55024 Information technology equipment – Immunity characteristics
Limits and methods of measurement
2010
EN 61000-6-1 Electromagnetic compatibility – Immunity for residential environments 2007 EN 61000-6-2 Electromagnetic compatibility – Immunity for industrial environments 2005
EN 61000-6-4 Electromagnetic compatibility – Emission for industrial environments 2007
+A1:2011
EN 50581 Technical documentation for the assessment of electrical and electronic
products with respect to the restriction of hazardous substances
2012
EN 60950-1 Information technology equipment - Safety - Part 1: General
requirements
2006 +A11: 2009 +A1: 2010 +A12: 2011 +A2: 2013
The last two digits of the year in which the CE marking was affixed: 16
Pierre Öberg Technical Manager 22
nd
March 2016
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