General Specifications

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1 General Specifications GS 32P06Q10-01EN Models S2NN70D, S2NN60D, S2CB60 N-IO field enclosure (System Models: S2ZN70D, S2ZN60D) GENERAL This General Specifications (GS) covers the hardware specifications of an N-IO field enclosure. The N-IO field enclosure S2NN70D [System model (*1): S2ZN70D] is a standardized remote I/O enclosure for outdoor use, which provides the accessories including field power supply units with optimized design. The N-IO field enclosure consists of two components, one is a dedicated enclosure with field wiring terminal blocks and the other is a base unit with an N-IO node including field power supply units. It is possible to order the enclosure (S2CB60) and the base unit (S2NN60D) [System model (*1): S2ZN60D] individually. In the individual orders, the base unit can be shipped separately from the enclosure. Then this enables the user to install the base unit into the enclosure at a suitable timing. This is defined as Flexible installation. The flexible installation allows a project to perform the acceptance test using the base unit at factory in parallel with field wiring work to the enclosure at the customer site. And the flexible installation minimizes the exposure of the base unit to the harsh environment such as dust, water, and electromagnetic noise by keeping the base unit in the warehouse during field wiring work to the enclosure. Note: Acquiring explosion proof certificates is in process. *1: For the system model, refer to SYSTEM MODEL in this document. Figure N-IO field enclosure F01E.ai Yokogawa Electric Corporation , Nakacho, Musashino-shi, Tokyo, Japan GS 32P06Q10-01EN Copyright Jan (YK) 2nd Edition Feb. 13, 2018 (YK)

2 2 HARDWARE CONFIGURATION S2NN70D (N-IO field enclosure) Field wiring terminal block Cable duct Grounding bar for shield lines N-IO I/O unit (*1) Splicing box Enclosure Field power supply Node interface unit Circuit protector Power input terminal Protective conductor terminal IO base unit NIU base unit N-IO field enclosure base unit F02E.ai *1: I/O module is can be selected by the option codes. Figure S2NN70D configuration

3 3 S2NN60D (N-IO field enclosure base unit) N-IO I/O unit (*1) Field power supply Node interface unit Circuit protector IO base unit NIU base unit F03E.ai *1: I/O module is can be selected by the option codes. Figure S2NN60D configuration

4 4 S2CB60 (Enclosure for S2NN60D) Pad eye Door Field wiring terminal block Cable duct Grounding bar for shield lines Splicing box Terminal block Power input terminal Protective conductor terminal Cable entry Document holder F04E.ai Figure S2CB60 configuration

5 5 STANDARD SPECIFICATIONS Number of channels Power consumption Withstanding voltage Item Max. 64 ch universal I/O Max VA (100 V system) Max VA (220 V system) Specifications Between input/output and system: 500 V AC for 1 minute Weight (when the base unit is mounted) Enclosure specification Connection (*1) Splicing box specification Approx. 120 kg 800 mm (W) x 1200 mm (H) x 380 mm (D) (excluding protrusions) External dimensions 835 mm (W) x 1330 mm (H) x 380 mm (D) (max. external dimensions) Enclosure weight Approx. 85 kg Material SUS316L Plate thickness 2 mm Surface treatment No coating, hairline finishing Right hinge: Single swing Door Lock mechanism: Available (5 locations at the front of the door) Stay mechanism: Available Document holder Available inside the door Ingress protection IP66, NEMA Type 4X Plate type: Plate without drill pattern Plate with cable gland hole Cable entry Plate with sealing module Number and diameter of incoming cables: (*2) Breather drain Available Installation method Wall mount type (M10 x 4 screws) (*3) Lifting lug Padeye (2 locations at the top of the enclosure) Power Grounding Field signal Communication Optical fiber type Power input terminal: M5 screw terminal connection Power supply method: Dual or single power supply (*4) Protective conductor terminal: M10 bolt terminal connection Signal line: Spring clamp terminal Push-in terminal Shield line: Pressure clamp terminal In case of optical ESB bus (Connect a cable to splicing box.) Uplink: 1 port/ LC (compliant with IEC ), or Fusion splicing Downlink: 1 port / LC (compliant with IEC ), or Fusion splicing Quartz single-mode optical fiber Lead-in trunk cable outer diameter Max. φ16 mm (*5) Number of lead-in trunk cables Max. 4 Optical adaptor connector type Number of optical adaptor cores LC (compliant with IEC ), or Fusion splicing 16 (2 cores x 8 pairs) *1: A cable must be prepared separately. For details, refer to the TI N-IO field enclosure Installation Guidance (TI 30A30A10-01EN). *2: Refer to Cable entry. *3: The mounting surface shall be flat and vertical and the mounting support shall be capable of withstanding a load of approx. 4 times the product weight or more. *4: Single power supply is set at the time of delivery. Dual power supply can be set by removing the short bar of the power input terminal. *5: When the outer diameter is 15 mm or less, adjust the outer diameter to 15 to 21 mm using the cable diameter-adjusting rubber to prevent rotation in the cable clamp portion in the splicing box.

6 6 Flexible installation Base units can be shipped separately from the enclosure and installed into the enclosure at a suitable timing. This allows a project to perform the acceptance test using the base unit at factory in parallel with field wiring work to the enclosure at the customer site. And this minimizes the exposure of the base unit to the harsh environment such as dust, water, and electromagnetic noise by keeping the base unit in the warehouse during field wiring work to the enclosure. Optical ESB bus interface function This function allows for communicating with the upper-level field control unit and N-IO node. It also allows for communicating with the lower-level N-IO node. Uplink: 1 port /N-ESB bus module (Optical ESB bus) Downlink: 1 port /N-ESB bus module (Optical ESB bus) Splicing box This is installed in the enclosure as standard. Connect the optical fiber cable of the optical ESB bus from outside to the splicing box. House keeping (HK) function Monitors the temperature in the enclosure and the system power and field power output. Maintenance function The node interface unit (NIU) has a Micro-USB maintenance port for maintenance. The setting of the node address is possible with a NIU Node Number Setting tool. (*1) *1: NIU Node Number Setting Tool is included in the ProSafe-RS R4 software media. Nameplate (Option) When the option of /NMPL1 or /NMPL2 is selected, the nameplate is attached to the enclosure surface with screws. /NMPL1 is the nameplate for a single-line character string, and /NMPL2 is the nameplate for two-line character strings. Character string can be specified at the time of ordering. Background color: White Character color: Black (Laser engraving) Character type: Alphanumeric character and hyphen Character height: 20 mm (In case of /NMPL1 ), 30 mm (In case of /NMPL2 ) Number of characters: 10 characters per line (In case of /NMPL1 ), 17 characters per line (In case of /NMPL2 ) Number of lines: 1 or 2

7 7 INSTALLATION ENVIRONMENT SPECIFICATIONS Ambient temperature (*1) Ambient humidity Ambient temperature change rate Power supply Withstanding voltage Insulation resistance Grounding Item Normal operation In transport/storage 40 to 85 ºC Normal operation In transport/storage Normal operation In transport/storage Voltage range Frequency Distortion factor Peak value Instantaneous power failure Between power input terminal and protective conductor terminal Between power input terminal and protective conductor terminal 40 to 55 ºC (Base unit: 40 to 70 ºC) 5 to 100 %RH (no condensation) 5 to 95 %RH (no condensation) Within ±10 ºC/h Within ±20 ºC/h 100 to 120 V AC ±10 % 220 to 240 V AC ±10 % 50/60 ±3 Hz 10 % or less 128 V or larger (100 V system) 258 V or larger (220 V system) Specification 20 ms or lower (when receiving rated AC voltage) 1500 V AC for 1 minute 20 MΩ/ 500 V DC Shock (*2) Transport shock Horizontal 48 m/s 2 or less Noise Altitude Electric field Magnetic field Static electricity Apply the grounding system which is defined by the rules and standards of the country or the region. 10 V/m or less (80 MHz to 1.0 GHz) 3 V/m or less (1.4 to 2.0 GHz) 1 V/m or less (2.0 to 2.7 GHz) 30 A/m or less (AC), 400 A/m or less (DC) 4 kv or less (contact discharge) 8 kv or less (aerial discharge) 2000 m or less *1: Avoid direct sunlight. For outdoor installation, protect the enclosure against direct sunlight with a sun shield. *2: When transporting the enclosure in a truck, use a truck equipped with an air cushion between the truck bed and body. Also, when loading, load the enclosure horizontally and keep it in a horizontal position. N-IO SYSTEM SPECIFICATIONS The following shows the N-IO products used in the N-IO field enclosure. For details, refer to the GS of each product. For the specifications related to the N-IO system, refer to ProSafe-RS Safety Instrumented System Overview (for Vnet/IP) (GS 32P01B10-01EN). Category Part numbers Description GS No. S2MMM843-SS1030 Analog digital I/O module (16-channel, Isolated) GS 32P06K30-01EN I/O modules S2MDV843-0S1030 Digital I/O module (16-channel, Isolated) GS 32P06K31-01EN Node units S2NN30D (*1) Node Interface Unit (for N-IO) GS 32P06F20-01EN Base plates S2BN1D Base plate with disconnecting terminal (for N-IO, 16-channel) GS 32P06K20-01EN Dummy covers S2DCV02-0 Dummy cover (for N-IO IO module) GS 32P06K20-01EN *1: Specify the appropriate code in according to the suffix codes of the N-IO field enclosure.

8 8 SIGNAL TYPES The following shows the signal types supported by the N-IO field enclosure. AI: Current input (2-wire) 4-20 ma (Support for HART7) I/O signal Isolation Remarks AI: Current input (3-wire or 4-wire) 4-20 ma (Support for HART7) Isolated Isolated The maximum load current per channel is 1 A (*1). To use 3-wire or 4-wire mode, the option of fuse plugs (/FUSE) is necessary. AO: Current output 4-20 ma (Support for HART7) Isolated DI: Dry contact input Isolated DO: Voltage output 24 V (Maximum load current 0.66 A/ 1.3 A/ 2.0 A) *1: Inrush current must be 3.2 A or less. Isolated The maximum load current per channel is 0.66 A. A load current device with 1.3 A of 2.0 A can be connected by using parallel connection with adjacent 2 or 3 channels. To use this function, the option of short bars (/SHB) is necessary. SUPPORT MODULES (SOLD SEPARATELY) The following shows the I/O modules supported by the N-IO field enclosure. For details, refer to the GS of each product. Select support modules in compliance with the restrictions described in the next page. I/O modules Part numbers Description GS No. S2MMM843-SS1030 (*1) Analog digital I/O module (16-channel, module Isolated) GS 32P06K30-01EN S2MDV843-0S1030 (*2) Digital I/O module (16-channels, module Isolated) GS 32P06K31-01EN *1: S2MMM843 Style S2 or later must be used. *2: S2MDV843 Style S2 or later must be used.

9 9 MOUNTING RESTRICTIONS There are following three restrictions for N-IO field enclosure. Restriction on the total output current of I/O functions When using the power supply output of DO function and AI 3/4-wire function, there is a restriction on their total output current depending on the enclosure s ambient temperature. Table Judgement value for the total output current of I/O functions Enclosure s ambient temperature Total output current of DO function and AI 3/4-wire function 50 < Ta 55 ºC 27.5 A or less (per enclosure) Ta 50 ºC 32.0 A or less (per enclosure) Note: Ta: Ambient temperature of the enclosure Restriction in terms of the power supply capacity Obtain the total sum of the power consumption factors per the enclosure (up to 64 channels) from the number of the factors per I/O channel in the following table. The total sum the factors must be 100 or less. Assign the factors of Unused in the table to the unused channels of the I/O modules. The total sum of factors cannot be calculated accurately if a zero factor is assigned to an unused channel. Σ (Factor /CH) 100 (per enclosure) (*1) *1: This corresponds to 55 ch of DO 0.5 A or 32 ch of DO 0.66 A. Table Power consumption factors per I/O channel I/O module function Factor (per CH) Analog input 2-wire 1.39 Analog input 3-wire or 4-wire 1.13 Analog output 1.47 Digital input 1.14 Digital output (Maximum load current 0.5 A) 1.58 Digital output (Maximum load current 0.66 A) 1.97 Unused 0.93 Other restrictions Total output current of DO function and AI 3/4-wire function 8 A (per enclosure) Total number of AO mode channel 8 ch (per base plate) Restrictions on use of digital input function Refer to the GS ProSafe-RS Outline of I/O Modules (for N-IO) (GS 32P06F10-01EN). Restrictions on use of digital output function Refer to the GS ProSafe-RS Outline of I/O Modules (for N-IO) (GS 32P06F10-01EN). For N-IO field enclosure, use the following parameter values when calculating. Parameters: Field power supply voltage V p =Min [V] Voltage drop in the I/O module ΔV3 =1 [V] Resistance values of power supply line at the inside of N-IO field enclosure R p L p = [Ω] Resistance values of signal line at the inside of N-IO field enclosure R b +R c (1 channel single use) R b +R c = [Ω] (2 channels parallel use) R b +R c = [Ω] (3 channels parallel use) R b +R c = [Ω] Resistance values at the inside of base plate R a =0 [Ω], R d =0 [Ω]

10 10 CABLES AND CABLE TERMINATION Refer to the TI N-IO field enclosure Installation Guidance (TI 30A30A10-01EN). CONNECTION SPECIFICATIONS Communication interface Refer to the GS ProSafe-RS Safety Instrumented System Overview Specifications (for Vnet/IP) (GS 32P01B10-01EN). Field interface Field wiring terminal blocks in the enclosure interfaces with the field devices. Terminal arrangement Terminal block Terminal No. 1A 1B 2A 2B 3A 3B 4A 4B 5A 5B 6A 6B 7A 7B 8A 8B 9A 9B 10A 10B 11A 11B 12A 12B 13A 13B 14A 14B 15A 15B 16A 16B Field wiring terminal block Field device 1A 1B 1C 2A 2B 2C 3A 3B 3C 4A 4B 4C 5A 5B 5C 6A 6B 6C 7A 7B 7C 8A 8B 8C 9A 9B 9C 10A 10B 10C 11A 11B 11C 12A 12B 12C 13A 13B 13C 14A 14B 14C 15A 15B 15C 16A 16B 16C Field power crossover wiring Fuse plug Disconnecting switch F05E.ai Figure Part names and terminal numbers of the field wiring terminal block

11 11 Terminal connection specifications Device Signal name I/O signal A 2-wire current input + 3-wire current input + 4-wire current input + Analog input Analog output Digital input Digital output B 2-wire current input 3-wire current input - 4-wire current input - (3-wire power supply -) 4-wire power supply - C NC 3-wire power supply + 4-wire power supply + A Current output + B Current output - C NC A Dry contact input + B Dry contact input - C NC A Voltage output + B Voltage output - C NC NC: Connection not allowed : The terminal is not used. : 1 to 16 Circuit diagram Analog input signal (2-wire current input) A B C Field device + : 1 to 16 F06E.ai Analog input signal (3-wire current input) A B C Field device + /GND 24 V DC : 1 to 16 F07E.ai Note: Insert a fuse plug (option) into the C-terminal slot. Analog input signal (4-wire current input) A B C Field device + GND 24 V DC : 1 to 16 F08E.ai Note: Insert a fuse plug (option) into the C-terminal slot. Analog output signal (current output) A B C + Field device : 1 to 16 F09E.ai

12 12 Digital input signal (dry contact input) A B C + : 1 to 16 F10E.ai Digital output signal (voltage output) A B + Field device : 1 to 16 C F11E.ai Digital output signal (voltage output) 2-channel parallel connection example 1A 1B 1C 2A 2B 2C + Field device Short bar (Blue) Short bar (Red) F12E.ai Note: Short bar is an option. Digital output signal (voltage output) 3-channel parallel connection example 1A 1B 1C 2A 2B 2C 3A 3B 3C + Field device Short bar (Blue) Short bar (Red) F13E.ai Note: Short bar is an option.

13 13 CONNECTING WIRING CHECK ADAPTERS Connect the wiring check adapters to detect disconnected or short-circuited field wiring between the digital input channel and field equipment. These adapters should be connected at the field equipment side. The two types of these adapters are: SCB100: Disconnection detection while accepting an OFF signal If this type of adapter is connected in parallel with a sensor switch, a disconnection occurring while accepting an OFF signal can be detected. SCB110: Short-circuit detection If this type of adapter is connected in series with a sensor switch, a short-circuit in the power line, occurring while accepting an ON signal, or a short-circuit with other channels can be detected. In addition to the above wiring check adapters, input module s diagnostic functions should be able to detect disconnections or short-circuits. Shape of wiring check adapters The following figure shows the shape of the SCB100 and SCB110. Example of connecting wiring check devices F14E.ai Figure External view of SCB100 and SCB110 Field wiring terminal block A Field wiring terminal block A Field wiring terminal block A SCB100 SCB100 B Red Blue SCB110 B Red Blue SCB110 B Detect disconnection when input is OFF Detect short circuit when input is ON Detect disconnection and short circuit : The field equipment switch F15E.ai Figure Connecting wiring check adapters Note: Connect the SCB110 with correct polarity. If it is connected incorrectly, no detection can be made. Note: To detect short-circuits or disconnections in the field wiring effectively, locate the adapters in the vicinity of the field equipment. Also install these adapters in a location out of direct sunlight and sheltered from rain. Note: Be careful not to bend a covered part.

14 14 CABLE ENTRY Plate without drill pattern A hole for passing a cable through is not pre-drilled. The user drills a hole for passing a cable through to suit the application before use. A hole for breather drain is also not pre-drilled. Drill a hole (φ26 mm) for breather drain and install the supplied breather drain to the plate. Front Figure Plate without drill pattern (Plate thickness: 3 mm) Notes for drilling a hole 30 mm from the edge of the plate is prohibition area for drilling. This plate is connected to the grounding bar in the enclosure with a cable at the time of delivery. Disconnect the cable before drilling a hole and connect it again after finishing with drilling. At that time, it should be confirmed by using the calibrated equipment that the resistance value between the grounding stud of the plate and the protective conductor terminal of the grounding bar is lower than 0.1 Ω. F16E.ai GS 32P06Q10-01EN Feb. 13,

15 15 Plate for cable gland A hole for passing a cable through is pre-drilled. Use a commercially available cable gland to connect the cable to the plate. Select an appropriate cable gland yourself. The breather drain is pre-mounted. When the option of /SEAL is selected, hole seals are attached to all holes at the time of delivery. Replace them with cable glands before use. For signal cable Ø21 For signal cable deployment area For communication cable Ø21 Breather drain For optical ESB bus cable deployment area Front For functional grounding cable Ø21 For protective grounding cable Ø21 Selecting cable glands Size: For power cable: M32 For communication/ signal/ grounding cables: M20 Grounding stud For power/grounding cable deployment area For power cable Ø33 Figure Plate for cable gland (Plate thickness: 3 mm) Example of cable glands: For power cable: CMP TMCX100SS (Diameter of incoming cables: mm) For communication/ signal/ grounding cables: CMP TMCX050SS Diameter of incoming cables: mm) Note: To maintain IP66 of the enclosure, use cable glands compliant with IP66 and attach them appropriately. Note: To maintain NEMA Type 4X of the enclosure, use cable glands compliant with NEMA Type 4X and attach them appropriately. F17E.ai

16 16 Plate for sealing module The plate uses a sealing system of Roxtec for multi-cable transit (MCT). A frame is pre-mounted on the plate. Connect the cable to the plate using the supplied sealing module. The breather drain is pre-mounted. For signal cable deployment area Breather drain For optical ESB bus cable deployment area Front For signal cable For power cable Grounding stud For communication cable For power/grounding cable deployment area F18E.ai Figure Plate for sealing module (Plate thickness: 3 mm) Roxtec s sealing system frame For power / communication cable: SFX 60 x 60 type x 2 (4 pcs of RM 30 BG B Ex or 9 pcs of RM 20 BG B Ex can be installed in one frame.) For signal cable: HD 32 type x 2 (32 pcs of CX 20 x 40 BG can be installed in one frame.) Roxtec s sealing module (Accessory) SFX 1x1 Series Cable outside Description Yokogawa Part number Roxtec Part number Product name Remarks diameter φ B1014JZ RM 30 BG B Ex 10.0 to 25.0 mm For power cable Module B1013JZ RM 20 BG B Ex 4.0 to 14.0 mm For communication cable HD 32 BG Ex Series Description Yokogawa Part number Roxtec Part number Product name Cable outside diameter φ Remarks Module B1018JZ CX 20x40 BG 4.0 to 15.5 mm For signal cable

17 50 <<Contents>> <<Index>> 17 EXTERNAL DIMENSIONS S2NN70D (Also applies to S2CB60) R17.5 Unit: mm 35 4-Ø Nameplate 60º Key lock M10 Protective conductor terminal In case of plate without drill pattern F19E.ai Nominal tolerances : Nominal tolerance is ± 0.8 mm for the dimensions of 0.5 mm or more and 120 mm or less, and the combined nominal tolerance is ± 1.5 mm. The nominal tolerance is in accordance with JEM 1459 for the dimensions over 120 mm.

18 M4 Unit: mm 1370 [Mounting dimensions] In case of plate with cable gland hole 648±1 In case of plate with sealing module 4-M10 Unit: mm F20E.ai 1235±1 Nominal tolerances : Nominal tolerance is ± 0.8 mm for the dimensions of 0.5 mm or more and 120 mm or less, and the combined nominal tolerance is ± 1.5 mm. The nominal tolerance is in accordance with JEM 1459 for the dimensions over 120 mm. F21E.ai

19 19 S2NN60D Unit:mm IO base unit NIU base unit F22E.ai Nominal tolerances : Nominal tolerance is ± 0.8 mm for the dimensions of 0.5 mm or more and 120 mm or less, and the combined nominal tolerance is ± 1.5 mm. The nominal tolerance is in accordance with JEM 1459 for the dimensions over 120 mm.

20 20 MODEL AND SUFFIX CODES N-IO field enclosure Description Model S2NN70D N-IO field enclosure -4 Dual-redundant power supply, dual-redundant communication V or V AC input Q With 40 A field power supply 1 Optical ESB bus (0-5 km) for uplink 2 Optical ESB bus (5-50 km) for uplink N No downlink (*1) 1 Optical ESB bus (0-5 km) for downlink 2 Optical ESB bus (5-50 km) for downlink A B Plate without drill pattern Plate with cable gland hole Suffix codes C Plate with sealing module 2 For spring clamp terminal 3 For push-in terminal 0 With no explosion protection 2 With temperature (-40 to 55 ºC) 1 Always 1 Option codes /MDV0D With digital I/O module x8 [Model: S2MDV843-0S1030] (dual with no explosion protection) /MMM0D With analog digital I/O module x8 [Model: S2MMM843-SS1030] (dual with no explosion protection) /FUSE Fuse (2 A) for field signal (*2) /SHB Short bar for field terminal (*3) /NMPL1 /NMPL2 Enclosure name plate 1 line Enclosure name plate 2 line /SEAL Hole seal for cable gland (*4) *1: In case of no downlink, N-ESB interface is installed as downlink. But can t use it. *2: Fuse (2 A) for field signal [Part No.: S9417FE] x 64. *3: Short bar (red) [Part No.: S9415FE] x32, Short bar (blue) [Part No.: S9416FE] x 32. *4: It can be selectable when suffix code Plate with cable gland hole. With hole seal for M20 [Part No.: B1036HZ] x 70, with hole seal for M32 [Part No.: B1037HZ] x 2. GS 32P06Q10-01EN Feb. 13,

21 21 N-IO field enclosure base unit Description Model S2NN60D N-IO field enclosure base unit -4 Dual-redundant power supply, dual-redundant communication V or V AC input Q With 40 A field power supply 1 Optical ESB bus (0-5 km) for uplink 2 Optical ESB bus (5-50 km) for uplink Suffix codes N No downlink (*1) 1 Optical ESB bus (0-5 km) for downlink 2 Optical ESB bus (5-50 km) for downlink 0 With no explosion protection 2 With temperature (-40 to 70 ºC) With digital I/O module x 8 /MDV0D Option [Model: S2MDV843-0S1030] (dual with no explosion protection) codes With analog digital I/O module x 8 /MMM0D [Model: S2MMM843-SS1030] (dual with no explosion protection) *1: In case of no downlink, N-ESB interface is installed as downlink. But can t use it. Enclosure for S2NN60D Model S2CB60 Enclosure for S2NN60D -A Plate without drill pattern -B Plate with cable gland hole -C Plate with sealing module 2 For spring clamp terminal 3 For push-in terminal 0 With no explosion protection Description Suffix codes 2 With temperature (-40 to 55 ºC) 1 Always 1 /FUSE Fuse (2 A) for field signal (*1) Option codes /SHB Short bar for field terminal (*2) /NMPL1 Enclosure name plate 1 line /NMPL2 Enclosure name plate 2 line /SEAL Hole seal for cable gland (*3) Note: These products are subject to the Export Administration Regulations (EAR) by the United States Department of Commerce, Bureau of Industry and Security (BIS). It is not possible to export and reexport these products to North Korea and Syria. *1: Fuse (2 A) for field signal [Part No.: S9417FE] x 64. *2: Short bar (red) [Part No.: S9415FE] x 32, Short bar (blue) [Part No.: S9416FE] x 32. *3: It can be selectable when suffix code Plate with cable gland hole. With hole seal for M20 [Part No.: B1036HZ] x70, with hole seal for M32 [Part No.: B1037HZ] x 2. GS 32P06Q10-01EN Feb. 13,

22 22 SOFTWARE Supported by ProSafe-RS R4.03 and later. STANDARD ACCESSORIES Part name Quantity Remarks Key 1 This is used to unlock and lock the door lock of the enclosure. Cable diameter-adjusting rubber 2 They are used to fix the cable inside the splicing box. Cable tie for cable clamp 8 They are used to fix the cable inside the splicing box. Pigtail cable 16 They are used to relay the cable inside the splicing box. Optical patch cord 4 They are used to connect the splicing box with the node interface unit. Sealing module 1 unit When the plate for sealing module is selected as cable entry. Breather drain 1 Short bar 64 Mounting screw 15 Cable tie Label set 4 (S2NN70D) 11 (S2CB60) 1 (S2NN70D) 1 (S2CB60) It is already attached to the plates for cable entries other than the plate without drill pattern. When the option /SHB of S2NN70D and S2CB60 is selected. They are used to short-circuit the terminals of the field wiring terminal block. These screws are used to fasten the base unit to the enclosure. Screws are already used in S2NN70D. They are used to fix the cable in the enclosure. It is used for identifying the cable passing through the cable entry. Paste it on the cable entry. GS 32P06Q10-01EN Feb. 13,

23 23 SYSTEM MODEL Yokogawa defines the system model for products that provide an intended function by combining multiple selectable system components and declares compliance with the CE Marking for this system model. This compliance system guarantees the compliance with EU legislations in the form in which used and allows you to confirm the compliance with individual system components to EU legislations by the compliance declaration for the system model. As for products such as an N-IO field enclosure, the combination of system components is supposed to be changed (for example, I/O modules are added) after the system is delivered to the customer. The system model based compliance system enables the combination of system components to be changed flexibly while ensuring the compliance with EU legislations. The system model differs from the model used for ordering a product. Use the model for ordering when ordering a product. S2ZN60D / S2ZN70D configuration As for the N-IO field enclosure, system models S2ZN60D and S2ZN70D comply with the CE Marking. The following shows the configuration of the system models. IO base unit assembly (S9391FE) N-IO I/O unit (S2ZN1D) NIU base unit assembly (S9392FE) Node interface unit (S2NN30D) S2ZN60D (Model for ordering S2NN60D) S2ZN70D (Model for ordering S2NN70D) Enclosure (S2CB60) F23E.ai Figure S2ZN60D/S2ZN70D configuration Table System models and system components System model System component S2ZN60D S2ZN1D (*1), S2NN30D, S9391FE (*2), S9392FE (*2) S2ZN70D S2ZN60D, S2CB60, S9417FE (*3), S9393FE (*3), S9415FE (*4), S9416FE (*4), B1036HZ (*5), B1037HZ (*5) *1: For details on the system model S2ZN1D configuration, refer to the GS Base Plate (for N-IO) (GS 32P06K20-01EN). *2: This is not sold by itself. *3: Fuse plug (2 A) [Part No.: S9417FE], Fuse plug (3.15 A) [Part No.: S9393FE]. *4: Short bar (red) [Part No.: S9415FE], Short bar (blue) [Part No.: S9416FE]. *5: Hole seal for M20 [Part No.: B1036HZ], Hole seal for M32 [Part No.: B1037HZ].

24 24 APPLICABLE STANDARDS The N-IO field enclosure complies with the standards in the table below. Category Safety standard (*1) (*2) (*3) EMC standard (*2) Environmental standard NEMA/ IP standard CSA CE Marking Low voltage directive (*6) CE Marking EMC directive (*6) CE Marking RoHS directive (*6) NEMA IP Conformity standards CAN/CSA-C22.2 No CAN/CSA-IEC No CAN/CSA-C22.2 No EN EN EN EN Class A Group 1 (*4) EN EN EN (*5) EN NEMA Type 4X IP66 Note: In relation to the CE Marking, the manufacturer and the authorised representative for ProSafe-RS in the EEA are indicated below: Manufacturer: YOKOGAWA Electric Corporation ( Nakacho, Musashino-shi, Tokyo , Japan.) Authorised representative in the EEA: Yokogawa Europe B.V. (Euroweg 2, 3825 HD Amersfoort, The Netherlands.) *1: For ensuring all the hardware devices to satisfy the safety standards, the dedicated breakers in the power supply distribution board must conform to the following specifications. [CSA] CSA C22.2 No.5 or UL 489 [CE Marking] EN and EN *2: The ground suitable for the power distribution system in the country or region has to be used for protective grounding system. *3: Measurement inputs of this equipment are applied to O (Other). *4: A Class A hardware device is designed for use in the industrial environment. Please use this device in the industrial environment only. *5: The specified limits of voltage drop across wiring must be satisfied to meet this standard. *6: S2ZN60D and S2ZN70D are compliant to the CE Marking.

25 25 ORDERING INFORMATION Specify the following at the time of ordering. For the supplementary explanation of IDENTIFICATION NO. OF JUNCTION BOX and COMPONENT NO. (FOR JB), refer to the Supplementary explanation for ordering information. Ordering information for S2NN70D Model, suffix codes, and option codes DOMAIN NO., STATION NO., COMPONENT NO., and NODE NO. (*1) IDENTIFICATION NO. OF JUNCTION BOX COMPONENT NO. (FOR JB) LETTERS ON NAMEPLATE (*2) LETTERS ON NAMEPLATE (1ST LINE) (*3) LETTERS ON NAMEPLATE (2ND LINE) (*3) Ordering information for S2NN60D Model, suffix codes, and option codes DOMAIN NO., STATION NO., COMPONENT NO., and NODE NO. (*1) IDENTIFICATION NO. OF JUNCTION BOX COMPONENT NO. (FOR JB) Ordering information for S2CB60 Model, suffix codes, and option codes IDENTIFICATION NO. OF JUNCTION BOX COMPONENT NO. (FOR JB) LETTERS ON NAMEPLATE (*2) LETTERS ON NAMEPLATE (1ST LINE) (*3) LETTERS ON NAMEPLATE (2ND LINE) (*3) *1: These ordering information are for the node interface unit and the base plate which are the components of the base unit. The label on which DOMAIN NO., STATION NO., COMPONENT NO., and NODE NO. are printed is affixed to the node interface unit. The label on which NODE NO. and UNIT NO. are printed is affixed to the base plate. UNIT NO. is the fixed value of 1 to 4, so it is unnecessary to specify UNIT NO. when ordering. *2: When the option code / NMPL1 is selected, specify the letters to be engraved on nameplate. When the blank (without engraving) is required, enter *BLANK. *3: When the option code / NMPL2 is selected, specify the letters to be engraved on nameplate. When the blank (without engraving) is required, enter *BLANK. [Supplementary explanation for ordering information] IDENTIFICATION NO. OF JUNCTION BOX IDENTIFICATION NO. OF JUNCTION BOX is a character string of up to 17 alphanumeric characters. A label with the character string which is specified at the time of ordering is affixed to the position shown in the figure below. The following two applications are assumed for this label. Application 1: Identify the combination when assembling the enclosure and base unit. When an enclosure and base unit are ordered individually, these will be assembled at the customer site. At the time, by using the label of IDENTIFICATION NO. OF JUNCTION BOX affixed to each enclosure and base unit as a marker, these can be assembled in the correct combination. In this case, it is recommended to set the same character string on the label of the enclosure and the one of base unit. Application 2: Identify the hardware individuals For identifying the hardware individuals, the label of IDENTIFICATION NO. OF JUNCTION BOX can be used for displaying the character string for hardware s ID. At the time, it is recommended to set the same ID string with the one that is displayed on the nameplate of the enclosure s surface. As an operation of the nameplate in the existing system, there are many examples of displaying the ID string on the first line of the name plate and the explanatory notes on the second line.

26 26 COMPONENT NO. (FOR JB) COMPONENT NO. (FOR JB) is a character string of up to 4 alphanumeric characters. A label with the character string which is specified at the time of ordering is affixed to the position shown in the figure below. The applications for this label is same as the one of IDENTIFICATION NO. OF JUNCTION BOX. Please select the label of IDENTIFICATION NO. OF JUNCTION BOX or the one of COMPONENT NO. (FOR JB) depending on the required number of character strings. Label for COMPONET NO. (FOR JB) (*1) IO base unit NIU base unit Label for IDENTIFICATION NO. OF JUNCTION BOX (*1) Label for COMPONET NO. (FOR JB) (*2) Label for IDENTIFICATION NO. OF JUNCTION BOX (*2) *1: When ordering S2NN60D, it will be affixed. *2: When ordering S2CB60 or S2NN70D, it will be affixed. Figure Affixed position of labels TRADEMARK ProSafe, CENTUM, PRM, STARDOM, FAST/TOOLS, Exaopc, FieldMate and Vnet/IP are either registered trademarks or trademarks of Yokogawa Electric Corporation. Other company and product names appearing in this document are registered trademarks or trademarks of their respective holders. F24E.ai Subject to change without notice.

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