R3-NL1 LONWORKS INTERFACE MODULE BEFORE USE... INSTALLATION POINTS OF CAUTION INSTRUCTION MANUAL. R3-nL1 MODEL

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1 INSTRUCTION MANUAL LONWORKS INTERFACE MODULE (analog I/O points, discrete I/O 8 points) MODEL R-nL R-NL BEFORE USE... Thank you for choosing M-System. Before use, please check contents of the package you received as outlined below. If you have any problems or questions with the product, please contact M-System s Sales Office or representatives. PACKAGE INCLUDES: Network interface module...() Neuron ID label...() MODEL NO. Confirm that the model number described on the product is exactly what you ordered. INSTALLATION Use the Installation Base Model R-BS, or Model R-BSW for free I/O address capability. Before mounting the Network Interface Module onto the base, be sure to configure the module as explained below. DATA ALLOCATION The setting determines the data area size assigned to each I/O module mounted on the base. NETWORK SLOTS ON THE BASE I/O I/O I/O n INSTRUCTION MANUAL This manual describes necessary points of caution when you use this product, including installation, connection and basic maintenance procedures. POINTS OF CAUTION POWER INPUT RATINGS Operational range & power consumption: Check the powerrating for the unit on the specification label. Rating 00 0V AC: 8 V, 7 Hz, approx. 0VA Rating 00 0V AC: 70 V, 7 Hz, approx. 0VA Rating V DC: V ±0%, approx. W HOT INSERTION/REMOVAL OF MODULES It is possible to replace the module with the power is supplied. Be sure to replace it when the module is not communicating with a host, as it is possible to affect the system. However, replacing multiple modules at once may greatly change line voltage levels. We recommend that you replace them one by one. With Model R-BS base, mount the I/O Modules from the left end (I/O ) to the right in order that the Network Module assigns data areas from I/O. Network Module(s) and Power Module are mounted basically at the right end though technically they could be mounted in any position. With Model R-BSW base, there is no limitation in mounting positions as I/O address can be assigned freely to each module using rotary switches equipped on the base. ENVIRONMENT Indoor use When heavy dust or metal particles are present in the air, install the unit inside proper housing with sufficient ventilation. Do not install the unit where it is subjected to continuous vibration. Do not subject the unit to physical impact. Environmental temperature must be within -0 to + C ( to F) with relative humidity within 0 to 90% RH in order to ensure adequate life span and operation. WIRING Do not install cables close to noise sources (relay drive cable, high frequency line, etc.). Do not bind these cables together with those in which noises are present. Do not install them in the same duct. AND... The unit is designed to function as soon as power is supplied, however, a warm up for 0 minutes is required for satisfying complete performance described in the data sheet. --, Minamitsumori, Nishinari-ku, Osaka 7-00 JAPAN Phone: +8()9-80 Fax: +8() info@m-system.co.jp EM-87 Rev. P. / 8

2 R-nL COMPONENT IDENTIFICATION FRONT VIEW SIDE VIEW ONLINE LED RUN LED SERVICE LED ERR LED Configuration Jack Euro Type Connector Terminal SERVICE SW RESET SW Functions & Data Allocation Setting SW ON SW 8 7 ON SW 8 7 ON ONLINE & SERVICE INDICATOR LED ONLINE indicator: Red LED ON: Off-line or no network information (decommissioned) Flashing in approx. 0. Hz: On-line (ready to communicate network variables) Flashing in approx. Hz for 0 sec: Wink message received SERVICE indicator: Green LED OFF: Normal operations Flashing in approx. 0. Hz: No network information ON: Internal program error SIDE DIP SW (*) Factory setting. Data Allocation: SW, SW Data Allocation Type* must be assigned to each I/O module position to specify how many data areas (four types) are to be occupied by each. Two bits from SW and SW are assigned to each position, and data areas can be specified from the module No. through 8. Setting for No. 9 and later modules is identical to No. 8. SW ASSIGNMENT MODULE NO. SW- SW- SW- SW- SW- SW- SW-7 SW-8 SW- SW- SW- SW- SW- SW- 7 SW-7 SW-8 8 SW SETTTING DATA ALLOCATION OFF OFF ON OFF OFF ON 8 ON ON * Refer to the specifications of the related series for the Data Allocation Type of I/O modules. Dual Communication: SW- When two network modules are mounted, one must be Main (OFF) network and the other must be Sub (ON) network. For single communication, the network module must always be set to Main (OFF). DUAL COMMUNICATION SW MAIN (*) SUB SW- OFF ON Input Error Data: SW- Hold: When the communication from an input module is lost due to the input module error, the network module holds the signal and stands by until the communication recovers. Set to 0 : When the communication from an input module is lost due to the input module error, the network module outputs 0. INPUT ERROR DATA SW HOLD (*) SET 0 SW- OFF ON LED Function: SW- Functions assigned to the front RUN and ERR LEDs can be selected. SW- LED RUN ERR OFF (*) Green when normal Green when abnormal ON Red when receiving Red when transmitting Note: Be sure to set unused SW- to OFF. CONFIGURABLE ITEMS PC Configurator Software (model: RCON) configures the following: Communication failure detection time I/O modules scaling (Refer to PC Configurator Software Users Manual (model: RCON) for details) --, Minamitsumori, Nishinari-ku, Osaka 7-00 JAPAN Phone: +8()9-80 Fax: +8() info@m-system.co.jp EM-87 Rev. P. / 8

3 R-nL TERMINAL CONNECTIONS Connect the unit as in the diagram below. DIMENSIONS mm (inch) 7. (.08) 09 (.9) POSITIONING GUIDE 0 (.) M SCREW. (.) TERMINAL COVER CONNECTION DIAGRAM WIRING INSTRUCTIONS LONWORKS RUN + RUN CONTACT OUTPUT RUN * POWER INPUT U (+) V ( ) * FG BUS CONNECTOR INTERNAL BUS INTERNAL POWER M SCREW TERMINAL (power input, RUN contact output) Torque: 0.N m SOLDERLESS TERMINAL mm (inch) Refer to the drawing below for recommended ring tongue terminal size. Spade tongue type is also applicable. Solderless terminals with insulation sleeve do not fit. Applicable wire size: 0.7 to.mm (AWG9 ) Recommended manufacturer: Japan Solderless Terminal MFG. Co.,Ltd., Nichifu Co.,ltd. (.) max. min. (.). (.) dia. CONFIGURATION JACK JACK * Not provided with No Power Supply type module. Caution: FG terminal is NOT a protective conductor terminal. max. (.) (.7) max. EURO CONNECTOR TERMINAL (LONWORKS) Wire size: 0..mm (AWG ) Stripped length: 7mm COMMUNICATION CABLE CONNECTIONS HOST PC R-NLx R-NLx LON LON LON Terminator --, Minamitsumori, Nishinari-ku, Osaka 7-00 JAPAN Phone: +8()9-80 Fax: +8() info@m-system.co.jp EM-87 Rev. P. / 8

4 I/O COMBINATIONS R-nL A dedicated Device File for each I/O device depending upon I/O combinations is required to set up the R-NL using an integration tool such as LonMaker. On-line download is available for Device Image files at Functional Blocks usable for respective files are not identical to all. Refer to the table below. ANALOG INPUT / OUTPUT NO. of DATA DEVICE IMAGE INPUT OUTPUT (APB FILE) USABLE FUNCTIONAL BLOCKS 0 RNL 0.APB NodeObjet, GetValue [0... ] (Can be defined from 0 to ) RNL 0.APB NodeObjet, GetValue [0... ], SetValue [0... ] 8 8 RNL 0.APB NodeObjet, GetValue [0... 7], SetValue [0... 7] RNL 0.APB NodeObjet, GetValue [0... ], SetValue [0... ] 0 RNL 0.APB NodeObjet, SetValue [0... ] DISCRETE INPUT / OUTPUT NO. of DATA DEVICE IMAGE INPUT OUTPUT (APB FILE) USABLE FUNCTIONAL BLOCKS 0 8 RNL 0.APB NodeObjet, RDo [0... ] (One () block can handle contacts.) 8 0 RNL_7_0.APB NodeObjet, RDi [0... ] FUNCTIONAL BLOCKS NODE OBJECT NodeObject NVO nvostatus SNVT_obj_status NVI nvirequest SNVT_obj_request NVO nvofiledirectory SNVT_address NVO nvocommerr SNVT_count Number of internal communication errors NVO nvocardstate Each module status NVO nvocarderr Each module's error status Configuration Properties cpmaxsendtime : SCPTmaxSendTime cpminsendtime : SCPTminSendTime Input data sending intervals Input data minimum sending intervals --, Minamitsumori, Nishinari-ku, Osaka 7-00 JAPAN Phone: +8()9-80 Fax: +8() info@m-system.co.jp EM-87 Rev. P. / 8

5 R-nL ANALOG INPUT FUNCTIONAL BLOCKS (GetValue [0] through []) GetValue [X] nvoval SNVT_lev_percent or SNVT_temp or Configuration Properties cpnvodefvalue cpnvomaxrnge cpnvominrnge cpnvosnddelta cpnvotype : (identical to nvoval) : (identical to nvoval) Default value at the startup Span (full-scale) value : (identical to nvoval) Zero value : (identical to nvoval) Value deviation to be sent : SCPTnvType Network variable type, etc. ANALOG OUTPUT FUNCTIONAL BLOCKS (SetValue [0] through []) SetValue [X] nvival SNVT_lev_percent or Configuration Properties cpnvidefvalue cpnvimaxrnge cpnviminrnge cpnvitype : (identical to nvival) : (identical to nvival) Default value at the startup Span (full-scale) value : (identical to nvival) Zero value : SCPTnvType Network variable type, etc. DISCRETE INPUT FUNCTIONAL BLOCKS (RDi [0] through []) RDi [X] nvodich0 : nvodich SNVT_switch nvodistate --, Minamitsumori, Nishinari-ku, Osaka 7-00 JAPAN Phone: +8()9-80 Fax: +8() info@m-system.co.jp EM-87 Rev. P. / 8

6 R-nL DISCRETE OUTPUT FUNCTIONAL BLOCKS (RDo [0] through []) RDo [X] nvidoch0 : nvidoch SNVT_switch nvodostate NodeObject FUNCTIONAL BLOCKS NETWORK VARIABLE nvirequest nvostatus SNVT_obj_request {Usable RQ RQ_NORMAL RQ_REPORT_MASK RQ_UPDATE_STATUS} Used for integration tools such as LonMaker. Used for integration tools such as LonMaker. nvirequest RQ_NORMAL 0 is set at nvostatus. nvirequest RQ_REPORT_MASK report_mask bit is set at nvostatus. nvirequest RQ_UPDATE_STATUE 0 is set at nvostatus. is set at invalid_id when any value other than the above three types is set at nvirequest. nvofiledirectory SNVT_address Used for integration tools such as LonMaker. nvocommerr SNVT_count {0-} {0} Counted in internal communication errors. Reset to 0 after the count has reached. nvocardstatus nvocarderr {0 or } {0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0} {0 or } {0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0} Indicates that I/O modules are mounted in each slot. Bit 0 through bit are applied for slot through. 0 : Not mounted : Mounted Indicates error status for each module/slot. Bit 0 through bit are applied for slot through. 0 : Normal : Error CONFIGURATION PROPERTY cpmaxsendtime cpminsendtime SCPTmaxSendTime {0.0-.} {0.0} SCPTminSendTime {0.0-.} {0.0} Sending time intervals of nvoval [0 ] Network variables are sent out in this time intervals even when there is no change in input signals. Minimum sending time intervals of nvoval [0 ] This minimum time intervals is maintained even when the input signals changes faster than it. --, Minamitsumori, Nishinari-ku, Osaka 7-00 JAPAN Phone: +8()9-80 Fax: +8() info@m-system.co.jp EM-87 Rev. P. / 8

7 R-nL GetValue [x] FUNCTIONAL BLOCKS NETWORK VARIABLE nvoval SNVT_lev_percent {-.8 through.80} {Depends on cpnvodefvalue} {0 OFF (input open) ON (input shorted)} SNVT_temp {-7.0 through 00.7} Data acquired from assigned channels. Set SNVT_lev_percent for the input types other than discrete or temperature. Change the network variable type according to the input type if necessary. ConfigurationProperty value must be re-read after the network variable type is changed. Use ResyncCP on the LonMaker. For descrete inputs, change the network variable type to SNVT_ state using integration tools such as LonMaker. Bit 0 through bit of nvoval are applied for ch. through ch.. For temperature inputs, change the network variable type to SNVT_temp using integration tools such as LonMaker. CONFIGURATION PROPERTY cpnvotype cpnvomaxrnge cpnvominrnge cpsenddelta SCPTnvType {SNVT_lev_percent SNVT_temp} {SNVT_lev_percent} Identical to nvoval { (Identical to nvoval) } {00.0} Identical to nvoval { (Identical to nvoval) } {0.0} Identical to nvoval { (Identical to nvoval) } {0.0} nvoval type (Use integration tools such as LonMaker to change types.) nvoval value at 00% input Invalid when nvoval type is either or SNVT_temp. nvoval value at 0% input Invalid when nvoval type is either or SNVT_temp. Network variables are sent out when its deviation exceeds the set value. Invalid when nvoval type is. SetValue [x] FUNCTIONAL BLOCKS NETWORK VARIABLE nvival SNVT_lev_percent {-.8 through.80} {0} {0 OFF (output open) ON (output shorted)} Outputs data set to assigned channels. Set SNVT_lev_percent for the input types other than discrete. Change the network variable type according to the output type if necessary. ConfigurationProperty value must be re-read after the network variable type is changed. Use ResyncCP on the LonMaker. For descrete outputs, change the network variable type to SNVT_ state using integration tools such as LonMaker. Bit 0 through bit of nvival are applied for ch. through ch.. CONFIGURATION PROPERTY cpnvitype cpnvimaxrnge cpnviminrnge SCPTnvType {SNVT_lev_percent } {SNVT_lev_percent} Identical to nvival { (Identical to nvival) } {00.0} Identical to nvival { (Identical to nvival) } {0.0} nvival type (Use integration tools such as LonMaker to change types.) nvival value at 00% output Invalid when nvival type is. nvival value at 0% output Invalid when nvival type is. --, Minamitsumori, Nishinari-ku, Osaka 7-00 JAPAN Phone: +8()9-80 Fax: +8() info@m-system.co.jp EM-87 Rev. P. 7 / 8

8 R-nL RDi [X] FUNCTIONAL BLOCKS NETWORK VARIABLE nvodich0 through nvodich nvodistate SNVT_switch {0 or } {0} {0 or } {0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0} Data acquired from discrete input channels. nvodich0 through nvodich are assigned respectively to channels through. Indicates contact status for each module/slot. Bit 0 through bit are applied for channels through. RDo [X] FUNCTIONAL BLOCKS CONFIGURATION PROPERTY nvidoch0 through nvidoch nvodostate SNVT_switch {0 or } {0} {0 or } {0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0} Outputs data set to discrete output channels. nvidoch0 through nvidoch are assigned respectively to channels through. Indicates contact status for each module/slot. Bit 0 through bit are applied for channels through. TRANSMISSION DATA ASSIGNMENTS The DIP SW located at the side of the module specifies each I/O module s data allocation (occupied data area). Data are assigned in turn from Slot, in order of Functional Blocks (Input or GetValue/RDi first, followed by Output or SetValue/RDo). The st output must be the st transmitted data in the slot next to the one with the last input data. [Example ] [Example ] Data Area Module GetValue [0 ] Module GetValue [ 7] Module SetValue [0] Module SetValue [] Module SetValue [] Module SetValue [] Module 7 SetValue [] Module 8 SetValue [] Module 9 SetValue [] Module 0 SetValue [7] Data Area Module GetValue [0] Module GetValue [ ] Module GetValue [ 7] The th data, Slot is invalid. Module SetValue [0] Module SetValue [ ] Module SetValue [ 7] The th data, Slot is invalid. When the data consist of only inputs or outputs, data for the total of Functional Blocks (GetValue [0 ] or RDi [0 ], or SetValue [0 ] or RDo [0 ]) are assigned to each module position from Slot. --, Minamitsumori, Nishinari-ku, Osaka 7-00 JAPAN Phone: +8()9-80 Fax: +8() info@m-system.co.jp EM-87 Rev. P. 8 / 8

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