I/A Series Hardware DIN Rail Mounted Fieldbus Module Baseplate

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PSS 1H-X 4 I/A Series Hardware DIN Rail ounted ieldbus odule aseplate The DIN rail mounted ieldbus odule baseplate provides a convenient, secure facility for the mounting of DIN rail mounted ieldbus odules (s) and ieldbus Communications odules (Cs). Its eight mounting positions can accommodate up to eight s or a combination of s and Cs.The baseplate also provides the necessary connectors for redundant power, redundant module ieldbus, and termination cables. PLUG-IN ODULES The DIN rail mounted s accommodated by the baseplate are compact, plug-in modular assemblies used to interface field devices with the host control station. The Cs, having the same form factor as the s, perform signal interface functions. or example, C10Es are used to interface the Ethernet trunk ieldbus with the bps module ieldbus, and Cs are used for fiber optic communications extensions between baseplates. The s and Cs plug onto the baseplate by means of their two, 48-pin connectors, and each is fastened in place by two screws. ASEPLATE OUNTING The baseplate is available in two basic mounting configurations horizontal DIN rail mount or vertical DIN rail mount. Either of these configurations can be employed internal to, or external to an enclosure; however, in all cases the DIN rail must be amply supported, whether by means of metal braces, a backplate, or a supporting wall. Product Specifications

No. 0 1 3 aseplate I. D. 1 O O O O aseplate I. D. No. 1 0 1 O O 3 O O ieldbus Tx Ethernet Tx 10 bps Coaxial Ethernet to bps ieldbus P0914Y Left odule P0914Z User Defined ieldbus Tx Ethernet Tx 10 bps Coaxial Ethernet to bps ieldbus P0914Y Right odule aseplate I. D. No. 1 0 1 O 3 O O O aseplate I. D. 4 Input, 0-0mA No. 1 4 Output, 0-0mA 0 1 O O 3 O O 4 Input, 0-0mA 4 Output, 0-0mA 4 Input, 0-0mA 4 Output, 0-0mA 4 Input, 0-0mA 4 Output, 0-0mA PSS 1H-X 4 Page NOTE CE compliance requires the use of a metal enclosure and oxboro s power distribution unit. In addition to DIN rail mounting of the baseplate, a mounting kit is available for mounting the baseplate horizontally in a standard, 483 mm (19 in) rack. The kit provides a 5.4 mm (1 in) mounting depth, to meet clearance requirements at the front of the 19-inch rack. ASEPLATE IPLEENTATI A grouping of up to four baseplates per C (pair) can be connected together, for mounting of up to 3 modules (30 s and Cs). ultiple groups of baseplates can be connected to the Ethernet trunk ieldbus, either directly (via Ethernet connectors) or through one or more multiport fiber optic converters (hubs). (Refer to PSS 1H-W1 3 for information on the various DIN rail mounted subsystem communication topologies). odule ieldbus interconnection between baseplates is made by shielded twisted-pair cable for local configurations and/or by fiber optic cable for remote configurations. Using fiber optic topologies (refer to PSS 1H-W1 3), baseplates can be separated up to 10 km (6. mi). igure 1 shows baseplate implementation using only shielded twisted-pair cable connections. This configuration is used when the four (maximum) baseplates are mounted in the same general location. Using shielded twisted-pair cable, the baseplates can be interconnected up to 60 m (196 ft) total cable distance. Shielded twisted-pair cables are available in lengths of 0.5 m (10 in), 1 m (3.3 ft), 3 m (9.9 ft), 5 m (16.5 ft), 10 m (33 ft), 0 m (66 ft), 30 m (99 ft) and 60 m (198 ft), allowing placement of the baseplates (up to four in a group) in one or more enclosures. igure shows how baseplate implementation can be extended using fiber optic cabling. In this configuration, up to three module ieldbus segments can be fiber optic, allowing the baseplates to be dispersed over a wider area. The Cs provide three different fiber optic cabling distances between baseplates: km (1.4 mi), 4 km (.48 mi), or 10 km (6. mi). Refer to PSS 1H-Y3 3 for additional information on baseplate implementation using this configuration. igure 3 shows the key elements of a typical baseplate. ASEPLATE (1 O 4) TERINATOR ODULE IELDUS (SHIELDED TWISTED-PAIR CALE) 01 01 01 01 C10E Communication C10E Communication 03 03 03 03 03 03 03 03 C Identification TERINATOR 0 0 0 0 0 0 04 04 04 04 NOTES: 1. AXIU ASEPLATE QUANTITY IS OUR, PER CALE DROP.. AXIU TOTAL CALE RUN O ALL ODULE IELDUS CALES IS 60 m (198 ft). igure 1. aseplate Connections (Example) Using Shielded Twisted-Pair Cabling

aseplate I. D. No. 0 1 3 1 O O O O aseplate I. D. No. 1 0 1 O O 3 O O 1 O aseplate I. D. No. 1 0 1 O O 3 O O ieldbus Tx Ethernet Tx 10 bps Coaxial Ethernet to bps ieldbus P0914Y ieldbus Tx iber Tx bps iber Optic ieldbus Extender P0914YZ Tx Left odule P0914Z User Defined ieldbus Tx Ethernet Tx 10 bps Coaxial Ethernet to bps ieldbus P0914Y Right odule ieldbus Tx iber Tx bps iber Optic ieldbus Extender P0914YZ Tx ieldbus Tx iber Tx aseplate I. D. bps iber Optic No. 1 ieldbus Extender 0 P0914YZ 1 O O 3 O O No. 0 1 3 Tx aseplate I. D. 1 O O O O ieldbus Tx iber Tx bps iber Optic ieldbus Extender P0914YZ Tx 4 Input, 0-0mA 4 Output, 0-0mA 4 Input, 0-0mA 4 Output, 0-0mA 4 Input, 0-0mA 4 Output, 0-0mA 4 Input, 0-0mA 4 Output, 0-0mA PSS 1H-X 4 Page 3 ASEPLATE (1 O 4) TERINATOR (1 O 4) ODULE IELDUS (SHIELDED TWISTED-PAIR CALE) 01 01 01 01 01 01 C10E Communication C10E Communication C Communication (up to km) C Communication (up to km) 03 03 03 03 C Identification ODULE IELDUS (IER OPTIC CALE PAIR) 0 0 0 0 C Communication (up to km) C Communication (up to km) 04 04 04 04 NOTES: 1. AXIU ASEPLATE QUANTITY IS OUR.. THE IER OPTIC EXTENSI CAN E ETWEEN ANY TWO ASEPLATES, WITH UP TO THREE EXTENSIS PER ASEPLATE GROUPING. 3. OR AXIU IER OPTIC CALING DISTANCES, REER TO PSS 1H-W1 3. igure. aseplate Connections (Example) Using Shielded Twisted-Pair and iber Optic Cabling ODULE IELDUS ODULE IELDUS POWER (PRIARY) POWER (SECDARY) ieldbus Tx Ethernet Tx ieldbus Tx Ethernet Tx C10E Communication 10 bps Coaxial Ethernet to bps ieldbus P0914Y C10E Communication 10 bps Coaxial Ethernet to bps ieldbus P0914Y C Identification Left odule Right odule P0914Z User Defined ASEPLATE I.D. SWITCHES I/O CNECTORS LETTERUG SETS C IDENTIICATI ASSELY igure 3. aseplate Details

PSS 1H-X 4 Page 4 ODULE IDENTIICATI aseplate-mounted s and Cs (C10E or C10Ef) are identified to the system software by means of a unique, 6-character string called a letterbug. The letterbug string for a particular or C (C10E or C10Ef) is established from three factors: Setting of physical letterbug set(s) for the C(s) on the first baseplate in the group of up to four. The number of the baseplate (0-3) in the group of up to four, as set by means of the pair of baseplate I.D. switches on each baseplate (see igure 3). The physical position (1-8) of the module on the baseplate. igure 4 shows examples of how the s and Cs assume unique letterbug addresses in accordance with these three factors. As shown in this figure, physical letterbug sets are user-installed for the Cs (up to two) on the first baseplate of the grouping. The first four characters in these letterbug sets are user-assigned, and are unique for all modules in the baseplate grouping. The fifth character reflects the setting of the baseplate I.D. switches (0 for the first baseplate), and the sixth character reflects the position (theoretically 0 for Cs) on the baseplate. (Note the last two characters in the C letterbug set(s) are always zero, and that both letterbug sets for a redundant C pair must be identical.) The letterbugs for all s mounted in the baseplate grouping are not physically installed, but are derived (and reported to system software) from the three factors mentioned previously. Accordingly, each in the baseplate grouping has the same unique first four characters (user-assigned for the Cs), each has a fifth character derived from the baseplate number (0-3), and each has a sixth character derived from the physical position (1-8) of the on the baseplate. RO CTROL PROCESSOR 60 REDUNDANT 10ASE ETHERNET TRUNK IELDUS (SEE NOTES) TO NEXT EQUIPENT GROUPING (I APPLICALE) ASEPLATE I.D. (EHIND IRST ) SET TO 0 C C ASEPLATE I.D. (EHIND IRST ) SET TO 0 C C EXAPLE: LETTERUG = NA0 C IDENTIIER N A 0 0 N A 0 0 EXAPLE: LETTERUG = LR0 C IDENTIIER L R 0 0 L R 0 0 SEE NOTES PHYSICAL LETTERUG SETS () SEE NOTES PHYSICAL LETTERUG SETS () ASEPLATE I.D. (EHIND IRST ) SET TO 1 ASEPLATE I.D. (EHIND IRST ) SET TO 1 EXAPLE: LETTERUG = NA13 TO NEXT ASEPLATE (UP TO 4, TOTAL) EXAPLE: LETTERUG = LR13 TO NEXT ASEPLATE (UP TO 4, TOTAL) ASEPLATE GROUP 1 ASEPLATE GROUP NOTES: 1. THE LETTERUG ASSIGNENT CVENTI IS THE SAE REGARDLESS O NETWORK (ETHERNET TRUNK IELDUS) TOPOLOGY, OR ASEPLATE INTERCNECTI (ODULE IELDUS) TOPOLOGY.. TOPOLOGIES SHOWN ARE COAXIAL LY (N-IER OPTIC CALING). OR EXAPLES O IER OPTIC NETWORK TOPOLOGIES, REER TO PSS 1H-W1 3. igure 4. Examples of aseplate Letterbug Assignments

PSS 1H-X 4 Page 5 ODULE PLACEENT AND REOVAL The following rules must be observed with regard to placement of modules (Cs or s) on the baseplate. (Refer to PSS 1H-W1 3 for the various communication topologies used with the baseplates.) Non-redundant s Non-redundant s can be placed in any available positions. Redundant s On the horizontal baseplate, redundant s are placed in adjacent odd/even paired positions working from right to left. On the vertical baseplate, redundant s may be placed in any adjacent odd/even paired positions. C10E or C10Ef These modules are used only on the first baseplate (in a group of up to four). On the horizontal baseplate, these modules are placed in positions 7 and 8; on the vertical baseplate, the modules are placed in the first two positions (1 and ). If a single (non-redundant) C10E or C10Ef module is to be installed, it must be installed in position 7 on the horizontal baseplate, or position 1 on the vertical baseplate. [The slot next to it (to the right of it) must remain empty.] C/4/10 These modules are placed in the first one or two positions, or the last one or two positions on the baseplate. If a single (nonredundant) C/4/10 module is installed, the slot next to it (position and/or position 8) may be used for installation. Cs and s can be easily removed/replaced from the baseplate without removing field device termination cabling, power, or communications cabling.

PSS 1H-X 4 Page 6 Process I/O Communications NUER O ASEPLATES Up to 4 per Ethernet trunk cable drop, or up to 4 per drop from a multiport fiber optic converter (hub) ODULE IELDUS SHIELDED TWISTED-PAIR CALING Cable Lengths 0.5 m (10 in), 1 m (3.3 ft), 3 m (9.9 ft), 5 m (16.5 ft), 10 m (33 ft), 0 m (66 ft), 30 m (99 ft) and 60 m (198 ft) Overall odule ieldbus Cable Length 60 m (198 ft) total allowable cable length ODULE IELDUS IER OPTIC CALING Implementation Requires use of Cs (see PSS 1H-Y3 3) Distance km (1.4 miles), 4 km (.8 miles), or 10 km (6. miles) per fiber optic cable run depending on module selected. Total Distance Total fiber optic cable run in a configuration using a series of fiber optic runs cannot exceed 10 km (6. miles). Power Requirements INPUT VOLTAGE RANGE (REDUNDANT) 4 V dc +15%, -10% Regulatory Compliance ELECTROAGNETIC COPATIILITY (EC) European EC Directive 89/336/EEC EN 50081- Emission standard EN 5008- Immunity standard IEC 61000-4- ESD Immunity Contact 4 kv, air 8 kv IEC 61000-4-3 Radiated ield Immunity 10 V/m at 80 to 1000 Hz IEC 61000-4-4 Electrical ast Transient/burst Immunity kv UNCTIAL SPECIICATIS Regulatory Compliance (Cont.) ELECTROAGNETIC COPATIILITY (EC) (CT.) IEC 61000-4-5 Surge Immunity kv IEC 61000-4-6 Immunity to Conducted Disturbances 10 V IEC 61000-4-8 Power requency agnetic ield Immunity 30 A/m IEC 61000-4-11 Voltage Dips, Short Interruptions and Voltage Variations Immunity IEC 364-1 Insulation coordination for equipment within low-voltage systems, overvoltage category 1 PRODUCT SAETY European Low Voltage Directive 73/3/EEC PRODUCT CERTIICATI Underwriters Laboratories (US and Canadian Certification) UL/UL-C listed as suitable for use in Class I, Groups A-D, Division, temperature code T4 enclosure based systems. Conditions of use are as specified in the DIN Rail ounted Subsystem User s Guide (0400A). CENELEC (DEKO) CENELEC certified EEx na IIC T4 for use in CENELEC certified Zone enclosure based systems. Conditions of use are as specified in the DIN Rail ounted Subsystem User s Guide (0400A). EUROPEAN UNI COPLIANCE eets all applicable European Union directives including the Explosive Atmospheres (ATEX) directive 94/9/EC, and bears the CE mark. NOTE CE compliance requires the use of a metal enclosure and oxboro s power distribution unit.

PSS 1H-X 4 Page 7 Operating TEPERATURE -0 to +70 C (-4 to +158 ) RELATIVE HUIDITY 5 to 95% (noncondensing) ALTITUDE -300 to +3,000 m (-1,000 to +10,000 ft) ENVIRENTAL SPECIICATIS(a) Storage TEPERATURE -40 to +70 C (-40 to +158 ) RELATIVE HUIDITY 5 to 95% (noncondensing) ALTITUDE -300 to +1,000 m (-1,000 to +40,000 ft) Contamination (Non-Enclosure ounted) Class G3 (Harsh) as defined in ISA Standard S71.04 Contamination (Enclosure ounted) Class G3 (Harsh) as defined in ISA Standard S71.04. Pollution degree as defined in IEC 664-1. (a) The environmental limits of the baseplate may be enhanced by the type of enclosure containing the baseplate. [Refer to the applicable Product Specification Sheet (PSS) which describes the specific type of enclosure that is to be used.] ounting DIN RAIL aseplate mounts on a non-isolated, mechanically supported horizontal or vertical DIN rail, which can be internal to, or external to an enclosure. The baseplate attaches to the DIN rail by means of two fasteners. RACK OUNT A mounting kit (P0930AY) is available for horizontal mounting of the baseplate in a standard, 483 mm (19-inch) rack. This kit provides a 5.4 mm (1 inch) mounting depth. PHYSICAL SPECIICATIS Construction ATERIAL AS, inflammability UL94 V0 DIN RAIL ASTENER Chromated Steel, per baseplate Color lack ass (Without odules) 0.91 kg (.0 lb) Rack ounting racket aterial: Steel, Cold-Rolled, 0.0598 mm (16 Gauge)

PSS 1H-X 4 Page 8 DIENSIS NOINAL VERTICAL ASEPLATE mm in RT VIEW TOP VIEW 38 1.5 190 7.5 ODULE CLEARANCE 495 19.5 198 7.8 igure 5. aseplate Dimensions for Vertical DIN Rail ounting

1 O PSS 1H-X 4 Page 9 HORIZTAL ASEPLATE 444 17.5 mm in TOP VIEW 38 1.5 190 7.5 ODULE CLEARANCE RT VIEW CNECTOR CLEARANCE 17 5.0 aseplate I. D. No. 1 0 1 O O 3 O O 198 7.8 igure 6. aseplate Dimensions for Horizontal DIN Rail ounting

PSS 1H-X 4 Page 10

PSS 1H-X 4 Page 11

PSS 1H-X 4 Page 1 The oxboro Company 33 Commercial Street oxboro, assachusetts 0035-099 United States of America http://www.foxboro.com Inside U.S.: 1-508-543-8750 or 1-888-OXORO (1-888-369-676) Outside U.S.: Contact your local oxboro representative. oxboro and I/A Series are registered trademarks of The oxboro Company. Invensys is a trademark of Invensys plc. All other brand names may be trademarks of their respective companies. Copyright 1999-000 The oxboro Company All rights reserved 01 Printed in U.S.A. 0900 An Invensys company