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1. consumed data contains the command byte the command byte appears before the digital analog and function output data in the output data image If the overall number of digital points of the same image is not 8 unused bits are present between the digital and analog or function data area The start of analog data on an even or uneven byte depends on the I O modules that are connected to the bus coupler When starting on an odd byte analog data in the master scanner could comprise two words If the analog data is to start on an even byte the Pad I O optional I O fill function can be enabled In this way analog and function data start on an even byte boundary This function can be enabled by an EDS file or by sending an explicit message The Pad I O option is enabled by default 7523 _en_00 onlinecomponents com THE ONLINE DISTRIBUTOR OF ELECTRONIC COMPONENTS IL DN BK DI8 DO4 PAC PHOENIX CONTACT 12 THE ONLINE DISTRIBUTOR OF ELECTRONIC COMPONENTS IL DN BK DI8 DO4 PAC Example I O Data Table Memory Image The example consists of the following I O modules Inline terminal with 2 digital inputs DI 2 For further informati he or further information on the I O data table Inline terminal with an analog output AO 1 please refer to the UM EN IL DN BK DI8 DO4 PAC user manual Inline terminal with 2 digital outputs DO 2 Inline terminal with 4 digital inputs DI 4 Inline terminal with
2. oo oo og oojoojoojoojagjoojagoa Bit 7 lt 0 it7 2 WE OCO OOOO OOOO OO OOOO OOOO Byte 4 Analog input 1 low byte 1 Counter word 0 low byte PE PE PE PE PE pe PE PE PE PE JIX JX ZX Bit 15 lt 8 _ Bit 15 lt 8 Byte 5 Analog input 1 high byte 1 Counter word 0 high byte Bit 7 4 0 Bt7 SF Byte 6 Analog input 2 low byte 2 Counter word 1 low byte Bit 15 4 8 Bit 15 4 8 Byte 7 Analog input 2 high byte 2 Counter word 1 high byte Bit7 4 0 Byte 8 Counter word 0 low byte Bit 15 4 8 Byte 9 Counter word 0 high byte Bit7 4 0 Byte 10 Counter word 1 low byte Bit 15 4 8 Byte 11 Counter word 1 high byte 75240011 Figure 7 Typical I O data table 7523 _en_00 PHOENIX CONTACT 13 10 Diagnostics Diagnostic Indicators LEDs For the diagnostic indicators please refer to section Local Diagnostic and Status Indicators on page 6 Diagnostic Objects a The diagnostic information is available via mapped attributes from the Configuration Object Class Code 100jec 64 hex In the pre setting the Inline diagnostic data Inline status word is available to the user The diagnostic data starts in byte 0 of the data field input area and comprises 2 bytes see Figure 7 For further information on diagnostics please refer to the UM EN IL DN BK DI8 DO4 PAC user manual For standard mapping the first byte contains the Inline error code and the seco
3. All interfaces 2 kV Criterion B Supply cables DC 0 5 kV 1 kV symmetrical asymmetrical fieldbus cable shield 1 kV Criterion A Test voltage 10 V Class A Information on latest approvals can be found on the Internet at www download phoenixcontact com or www eshop phoenixcontact com 7523 _en_00 PHOENIX CONTACT 5 onlinecomponents com THE ONLINE DISTRIBUTOR OF ELECTRONIC COMPONENTS IL DN BK DI8 DO4 PAC 4 Local Diagnostic and Status Indicators DeviceNet PWR Figure 1 Displays on the bus coupler LED Color _ Meaning State Description of the LED States PWR DeviceNet UL Green Ur ogic 24 V bus coupler supply 7 5 logic voltage is present Uj oaic OFF 24 V bus coupler supply 7 5 logic voltage is not present Green _ Usegment 24 V supply of the segment circuit Useqment is present 24 V supply of the segment circuit is not present Green Unain 24 V supply of the main circuit Umain is present 24 V supply of the main circuit is not present Green Network MR Y J Network status red status Green ON Device is online and has established a connection Group 2 devices are assigned to a master Device has finished the duplicate MAC ID test but has not established Green flashing Device online connections not established Red ON Error preventing communication with the network e g bus is offline or duplicate MAC ID connections to other nodes Group 2 devices are not assigned to a mast
4. PAC Type TMSTBP 2 5 5 STF 5 08 GNAU CP IL BKDIO PLSET IB IL SCN 12 ICP IB IL SCN 12 OCP IL CP ZB 6 see CLIPLINE catalog ZB 12 see CLIPLINE catalog NS 35 7 5 PERFORATED NS 35 7 5 UNPERFORATED CLIPFIX 35 5 Type UM EN IL DN BK DI8 DO4 PAC AH IL BK IO LIST ILSYS INST UME THE ONLINE DISTRIBUTOR OF ELECTRONIC COMPONENTS IL DN BK DI8 DO4 PAC Order No 2897211 Order No 2862576 2878599 2727611 2727624 2742683 1051003 0812120 0801733 0801681 3022276 Order No 2910334 9015358 2698737 Pcs Pkt i Pcs Pkt i 10 10 100 10 10 50 Pcs Pkt p PHOENIX CONTACT 2 3 Technical Data General Data Housing dimensions width x height x depth Weight Ambient temperatures operation Ambient temperature storage transport Permissible humidity operation storage transport Permissible air pressure operation storage transport Degree of protection Class of protection Connection data for Inline connectors Connection type Conductor cross section DeviceNet System Data Transmission speed Transmission reliability Maximum transmission distance Protocols Nodes Voltage range of the bus coupler V V Nominal current of the bus coupler V V Bus coupler certification System Limits of Bus Coupler Transmission rate on the local bus Number of I O devices within an Inline system Maximum number of process data Maximum number of PCP devices Maximum powe
5. Supply UL Us Um Connection Connection method Recommended cable lengths Continued Nominal value Tolerance Ripple Permissible range according to EN 61131 2 7523 _en_00 Via power connector for terminal point assignment see page 10 Spring cage terminals 30 m max routing cables through outdoor areas is not admissible Via potential routing 24 V DC 15 20 according to EN 61131 2 5 19 2 V to 30 V PHOENIX CONTACT 3 THE ONLINE DISTRIBUTOR OF ELECTRONIC COMPONENTS IL DN BK DI8 DO4 PAC Common Data for 24 V Supply UL Us Uy Continued Safety equipment Surge voltage polarity reversal Yes suppressor diode parallel to supply voltage NOTE The bus coppler is damaged in the event of overload The 24 V area must be protected externally The power supply unit must be able to supply 4 times the nominal current of the external fuse to ensure that it trips in the event of an error Recommended fuse 4 A medium blow a U 7 5 V and Uana 24 V are generated from U 24 V Current Consumption Power Consumption Current consumption from ULoc c 24 V Current consumption local bus 800 mA load at 7 5 V 0 4 A max Current consumption from Uanatog 24 V 0 5 A max Current consumption from UL ogic total 0 9 A max Current consumption from Us 24 V 8 A max Current consumption from Uj 24 V 8 A max Power dissipation entire device 3 5 W max Digital Outputs Number 4 Connection method for
6. actuators 2 and 3 wire technology Nominal output voltage Ugyt 24 V DC Differential voltage for lhom lt I NY Nominal current lhom per channel 0 5 A Total current 2A Nominal load Ohmic 12 W Lamp 12 W Inductive 12 VA 1 2 H Switching frequency with nominal inductive load 0 5 Hz 1 2 H maximum Response time 1 2 ms typical Overload response Auto restart Response with inductive overload Output may be damaged Reverse voltage protection against short pulses Protected against reverse voltages Resistance to permanently applied reverse voltages Protected against reverse voltages permissible current 2A maximum Response upon power down The output follows the supply voltage without delay Limitation of the voltage induced on circuit interruption 30 0 V approximately Safety equipment Short circuit overload Type of safety equipment Integrated free running circuit in the output chip Maximum output current when switched off 10 pA Error message to the higher level control system Short circuit overload When not loaded a voltage can be measured even at an output that is not set 7523_en_00 PHOENIX CONTACT 4 Digital Inputs Number Connection method for sensors Input design Switching threshold definition Maximum low level voltage Minimum high level voltage Common potentials Nominal input voltage UN Permissible range Nominal input current for UIN Current flow Delay time Permissible cable length to the sensor Use of AC sensors Sa
7. to 7 are used to set the device address MAC ID Here DIP switch 1 SW1 is the most significant digit of the MAC ID MSB Most Significant Bit and DIP switch 7 SW7 is the least significant digit of the MAC ID LSB Least Significant Bit 6 2 Valid MAC ID settings are in the range from 0 to 63 Switch the power off and back on to accept the address changes 7523 _en_00 onlinecomponents com THE ONLINE DISTRIBUTOR OF ELECTRONIC COMPONENTS IL DN BK DI8 DO4 PAC 6 3 Baud Rate Settings Using DIP Switches 8 and 9 Baud The DeviceNet transmission speed is set via DIP switches 8 SW8 and 9 SW9 The following table shows the switch settings for different baud rates swe Sws BaudRate ON Can be adjusted using the sofware OFF soka Ooo on 250kbaud oS orr 125kbaud SSS Switch the voltage on and off to accept baud rate changes oN oN OFF il Configuration of DIP Switch 10 With DIP switch 10 the I O configuration mode of the bus coupler is set ON enables the bus coupler to auto configure the I O modules during the next power up Auto Cfg With OFF the bus coupler retains the last valid I O module configuration Saved For further information on the configuration please refer to section Configuration of the Bus Coupler Using the DIP Switches on page 11 Restoring Factory Default Settings Switch off the voltage supply Set DIP switches 1 to 7 to the ON position Connect the power
8. 2 analog inputs Al 2 Inline terminal with 4 digital outputs DO 4 Inline counter terminal CNT Figure 7 shows a typical memory image for mixed I O module configurations There are a total number of 11 input bytes including the Inline status word and a total number of 7 output bytes Inline supply terminals z I O Data Tables As seen by the master IL DN BK DI8 DO4 PAC a Onboard DI2 AO1 amp DO2DI4 Al2 amp DO4 CNT DO4 DIB NWN NNN WR WR IN Input Data Output Data Bit 7 lt _ 0__ Bit 7 4 0 er Byteo Status word low byte Bit 1 BKO BiT BLO B 3 Bit2 Bit1 BRO 00 OLO O 4 Oo 4 E ber a Byte 1 Status word high byte ee eee ae ee cal S Hh C CI E 7 A eal 7 2 11 211 211 2 1 2 1 211 21 112 1 2 1 2 Bit 7 lt _______ _ 0 Bit 7 lt ___ _ 0 ee mm Coloojoolooloodlooloolooloojcoloolooloo Byte 2 Analog output low byte O18 OOJOOJOOCJOC OCJOO JOCJOC OO CC OC OO OO 3 fe ooloojoclaclocioaiaclocloajaaiaclacioo a U i m m Colocolooloolooloooojooloojcoloolooloo Byte 3 Used Useal Bit 3 Bit 2 Bit 1 Bit O Bit Bit 0 Analog output high byte o OO OCIOOJOO OC OCJOO OO OCJ OO CO OO OO OO ae 0 Oy fly 0 00
9. IL DN BK DI8 DO4 PAC Inline Bus Coupler for DeviceNet With 8 Digital Inputs and 4 Digital Outputs AUTOMATION Data Sheet 7523 _en_00 PHOENIX CONTACT 1 The IL DN BK DI8 DO4 PAC bus coupler is the interface between the DeviceNet and the Inline installation system Description With the help of a bus coupler 63 Inline terminals can be connected at any position within an existing DeviceNet system The bus coupler and the Inline terminals together build a station with 63 local bus devices Here the inputs and outputs of the bus coupler together form the first local bus device Module Features DeviceNet connection via TWIN COMBICON connector DIP switch to set the DeviceNet address Supported DeviceNet addresses 0 to 63 Device description using EDS file 8 digital inputs 4 digital outputs Diagnostic and status indicators Automatic baud rate identification in the local bus 500 kbps or 2 Mbps page 2 Make sure you always use the latest documentation A conversion table is available on the Internet at THE ONLINE DISTRIBUTOR OF ELECTRONIC COMPONENTS 11 2007 Connection of up to 63 I O modules Can be installed in the field without software for automatic configuration of the station Digital inputs with latch function Stored latched diagnostic data Reservation of I O memory area for future expansions possible no hardware required Supported Inline mod
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11. er Red flashing One or more connections are in the timeout state Red green Network access error flashing OFF Device not online The device has not yet finished the duplicate MAC ID test 7523_en_00 PHOENIX CONTACT 6 The device is not supplied with voltage THE ONLINE DISTRIBUTOR OF ELECTRONIC COMPONENTS IL DN BK DI8 DO4 PAC LED Color _ Meaning State Description of the LED States Green Device status Module Diagnostics red Green flashing Device not configured or device configuration not complete or faulty Device in standby mode Red flashing Red green Selftest flashing OFF Nosupply voltage Green Status of the local Inline communication 10 Hz 1 x Green flashing Module meng alarm during startup 2 x Green flashing Green flashing Loop diagnostics e g for connected FLM or AS i modules 20 Hz 3 x Green flashing Module Change alarm during operation Green flashing Configuration error without other error 1 Hz 4 x Green flashing Operation with error data Green flashing Peripheral fault without other errors 2 Hz X x Areen flashing Error of supply voltage The bus coupler only operates with integrated inputs and outputs No other Inline terminals are 5 on Error Peripheral present short circuit or overload at one of the outputs OFF No short circuit or overload at one of the outputs Status ng
12. fety equipment Type of safety equipment Error message to the higher level control system Mechanical Requirements Vibration test sinusoidal vibrations according to IEC 60068 2 6 EN 60068 2 6 Shock test according to IEC 60068 2 27 EN 60068 2 27 THE ONLINE DISTRIBUTOR OF ELECTRONIC COMPONENTS IL DN BK DI8 DO4 PAC 8 2 and 3 wire technology According to EN 61131 2 type 1 UL max lt 5 V Uumin gt 15 V Sensor supply Us ground 24 VDC 30 V lt Uj lt 30 V DC 3 mA typical Limited to a 3 mA maximum 1 2 ms typical 100 m AC sensors in the voltage range lt Uy are limited in application Polarity reversal Serial diode for polarity reversal protection Sensor supply not present 5g load 2 hours in each space direction 25 g load for 11 ms half sinusoidal wave 3 shocks in each space direction and orientation Conformance With EMC Directive 89 336 EEC or 2004 108 EG Noise Immunity Test According to EN 61000 6 2 Electrostatic discharge ESD EN 61000 4 2 IEC 61000 4 2 Electromagnetic fields EN 61000 4 3 IEC 61000 4 3 Fast transients burst EN 61000 4 4 IEC 61000 4 4 Surge voltage EN 61000 4 5 IEC 61000 4 5 Conducted interference EN 61000 4 6 IEC 61000 4 6 Noise Emission Test According to EN 61000 6 4 Noise emission of housing EN 55011 Approvals Criterion B 6 kV contact discharge 8 kV air discharge Criterion A Field strength 10 V m Criterion A All interfaces 1 kV Criterion B
13. he next power up and ensures that the same active configuration is used on the next power up For further information on the configuration options please refer to the UM EN IL DN BK DI8 DO4 PAC user manual PHOENIX CONTACT 11 9 Explanations Regarding the I O Memory Mapping For further information on the I O memory mapping please refer to the UM EN IL DN BK DI8 DO4 PAC user manual The Inline status word that is contained in the produced data per default can be mapped in the memory image In addition to the Inline status word the input memory image can contain input data for digital and analog input modules as well as for function modules The control byte which is not included by default is mapped to the output memory image In addition to the control byte the output memory image can contain output data for digital and analog output devices as well as function modules The I O mapping order is determined by the type and position of the I O module The modules next to the bus coupler are mapped first First the digital points are mapped then the analog channels and function modules are mapped independent of their physical position within the Inline station The analog channels are mapped before the function data words If the produced data contain diagnostic status data such as the Inline status word this data type is shown in the input image before the digital data analog data or function input data If the
14. icators of the outputs Yellow Output 1 yoo ud ON Output active Output 4 Output not active Error Peripheral fault present short circuit or overload of the sensor supply OFF Mo short circuit or overload of the sensor supply Yellow Input 1 to o os neil of the inputs it O Tint at OFF inputnotactve 7523_en_00 PHOENIX CONTACT T 5 Circuit Diagram OWOOOEYO DeviceNet DN Interface Figure 2 Circuit diagram of the bus coupler Key Protocol chip Microprocessor Protocol chip Optocoupler Supply unit with electrical isolation AS EAE PNP transistor 7523 _en_00 onlinecomponents com THE ONLINE DISTRIBUTOR OF ELECTRONIC COMPONENTS IL DN BK DI8 DO4 PAC Local bus Ut Una U HESS 75231002 Gray circuit diagram areas represent the electrically isolated areas A DeviceNet interface Logic B Inline Interface C I O devices PHOENIX CONTACT 8 6 Setting the Address and the Baud Rate Configure the hardware on the module using the 10 pos DIP switch This switch can be used to set the DeviceNet address and the baud rate The functions of the individual switches are listed in the following tables She PHCGNIX CONTACT IL DN BK DI8 DO4 PAC Order No 2897211 HW FW xx xxx 75230006 Figure 3 Module DIP switches 6 1 Address Setting Using DIP Switches 1 to 7 MAC ID DIP switches 1
15. including branches see Figure 8 For a DeviceNet trunk line the required metal film termination resistor has a value of 121 Ohm with a tolerance of 1 and a power dissipation of 0 25 W Termination resistors are not supplied as standard with the bus coupler Termination resistor 121 W Tap Ey Multiple node daisy chain Figure 8 Typical DeviceNet bus topology Maximum Cable Length Baud Rate DIP Switch Settings for Baud Rate 500 m 25kbaud B80FF 90FF_ soom wom em 250kbaud 80FF 9ON 500kbaud 80N 9 OFF 7523_en_00 lt q Trunk length varies depending on data rate e of the Trunk ane Maximum drop length oo 6 m 20 ft ee ees aa apa a 75240008 Look of the Branch 100 m PHOENIX CONTACT GmbH amp Co KG 32823 Blomberg Germany Phone 49 0 5235 3 00 16 PHOENIX CONTACT P O Box 4100 Harrisburg PA 17111 0100 USA Phone 717 944 1300 www phoenixconta
16. nd byte contains the number of the first erroneous I O module in the Inline station Inline Status Byte 0 Bit 7 Free Bit 6 Outputs set in the DeviceNet error states Bit 5 Module connection error Bit 4 Configuration error peripheral configuration not possible Bit 3 Module change error Bit 2 Supply error Bit 1 I O error Bit O CRC error Inline Status Byte 1 The device number in this byte stands for the position in the Inline station where the error or the warning occurred The positions are enumerated and start at IL DN BK DI8 DO4 PAC with 1 The numbering increments in physical order from left to right up to 64 This is the maximum number of devices that can be connected to an Inline station 63 I O devices and 1 bus coupler 7523 _en_00 onlinecomponents com THE ONLINE DISTRIBUTOR OF ELECTRONIC COMPONENTS IL DN BK DI8 DO4 PAC 11 Inline Fault Control System Fault Response Mode Fault response mode is a configurable setting that will control the behavior of the outputs of an Inline station if one of the following three errors occurs Module change error bit 3 in Inline status word Configuration error bit 4 in the Inline status word Module connection error bit 5 in Inline status word The bus coupler has the ability to run in the fault response modes 0 to 3 The mode can be set by sending an explicit message or by selecting the mode in the fault response parameter in the EDS file Fa
17. nes in the network depends on the line type and or the baud rate The maximum cable length in the network according to the data rate is listed in the table below For further details on cable lengths in the network in relation to the current supply please refer to the DeviceNet specification Trunk Line The trunk line is used to connect the individual devices and branches and thus forms a network see Figure 8 The trunk line is used if no branches are required If branches are required taps must be installed at the connection point for Termination resistor pa Trunk cabl runk cable a in Zero drop tee Drop cable m F EA Fe onlinecomponents com THE ONLINE DISTRIBUTOR OF ELECTRONIC COMPONENTS IL DN BK DI8 DO4 PAC the branch line and trunk line The maximum number of devices in the DeviceNet network is limited to 64 Branch Line A branch line is used to connect devices in the branches to the trunk line see Figure 8 They are connected using a network tap A branch line is usually thinner and more flexible than a trunk line and has a lower current carrying Capacity Termination Resistors To reduce undesired reflections and to ensure stable communication termination resistors must be installed at the extreme ends of the trunk line
18. r supply at U 7 5 V Maximum power supply at Uana Maximum power supply at Us Maximum power supply at Um Maximum current consumption of the I O terminals THE ONLINE DISTRIBUTOR OF ELECTRONIC COMPONENTS IL DN BK DI8 DO4 PAC 80 mm x 121 mm x 70 mm 255 g with connectors 25 C to 60 C 25 C to 85 C 10 to 95 according to EN 61131 2 70 kPa to 106 kPa up to 3000 m above sea level IP20 according to IEC 60529 Class 3 in acc with VDE 0106 IEC 60536 Spring cage terminals 0 2 mm to 1 5 mm solid or stranded 24 16 AWG 500 kbps 250 kbps 125 kbps CR check Up to 500 m depends on transmission speed Control and information Common Industrial Protocol with CAN as transport medium 64 max 11V 25V 60 mA ODVA 500 kbps or 2 Mbps automatic detection 63 max Limited by Class Instance maximums Observe the 2 byte status data of the bus coupler 8 0 8 A max 0 5 A max 8 A max total current with Um 8 A max total current with Us See terminal specific data sheet a Observe the current consumption of each device when configuring an Inline station The current consumption is indicated in each terminal specific data sheet The current consumption can differ depending on the individual terminal If the maximum current capacity of a power supply is reached a new power terminal must be used DeviceNet Interface CAN bus connected via TWIN COMBICON connector Common Data for 24 V
19. ssignment of the Input Connector 3 Pome poms ene Points Points Terminal Point Assignment of the Input Connector 4 Terminal Terminal Points Points Us Us For notes on the voltage supplies please refer to the IL SYS INST UM E user manual PHOENIX CONTACT 10 7 3 Connection Example Connect the bus coupler according to Figure 6 PWRDO4 Di4 DI4 1 2 3 4 75230003 Figure 6 Connection example 7523_en_00 onlinecomponents com THE ONLINE DISTRIBUTOR OF ELECTRONIC COMPONENTS IL DN BK DI8 DO4 PAC 8 Configuration of the Bus Coupler Using the DIP Switches Auto configuration using the DIP switches enables the bus coupler to be configured in the field without software This includes the following standard settings The Inline status word is added by the first two bytes within the produced response All digital analog and function modules are added to the produced response and or the consumed request Procedure for Auto Configuration For auto configuration proceed as follows 1 Setthe device address and the baud rate using DIP switches 1 to 9 2 Set DIP switch 10 to ON 3 Switch on the bus coupler DeviceNet supply and U with the required I O modules If the MD and RN LEDs on the bus coupler are permanently on green the I O configuration is saved in the bus coupler s flash memory 4 Set DIP switch 10 to OFF This means that auto configuration is disabled on t
20. supply to the bus coupler This restores the factory default settings PHOENIX CONTACT 9 7 Connection DeviceNet Supply Actuators and Sensors 7 1 Connecting DeviceNet 0 440 ASZ NO 440 ose 440 NO 75230007 Pin assignment of the TWIN COMBICON connector Connect DeviceNet via the TWIN COMBICON connector to the bus coupler For the pin assignment please refer to the following table Pin Color Signal Description 14 21 Red ve 24VDCtory 12 22 White CANH CANHigh 13 23 Blank Dran Shield 14 24 Bue CANL CANLow 15 25 Black v leo Install a termination resistor 121 Q 0 25 W with 1 tolerance within the DeviceNet system at each end of the main cable 7 2 Connection of Supply Actuators and Sensors 01 11 12 11 JGL 21 11 gl 21 314000 41 125i 22 120 22 eT 138 OL 23 13Gb 23 as DA 43 1 4 l 24 14 66 2 4 3 4 J l 44 TO CL YO CL TO Cf 1 2 3 4 75240001 Figure 5 Terminal point assignment of the Inline connectors 7523_en_00 THE ONLINE DISTRIBUTOR OF ELECTRONIC COMPONENTS IL DN BK DI8 DO4 PAC Terminal Point Assignment of the Power Connector 1 Terminal Terminal ooo Points C R e o w 13 GNDU ground FE ground FE Terminal Point Assignment of the Output Connector 2 Terminal Terminal aedis TEN 1 40 OUT1 24 OUT2 FE Terminal Point A
21. tributes Fault State and Fault Value for digital and analog outputs This means that every output instance can be configured so that it is set to the pre programmed state and value in the event of a DeviceNet communication error Pre programming is carried out using an explicit message and is saved in the flash memory The states include Hold last state value Switch off lower limit value for analog outputs Switch on upper limit value for analog outputs Specified value analog outputs 7523 _en_00 THE ONLINE DISTRIBUTOR OF ELECTRONIC COMPONENTS IL DN BK DI8 DO4 PAC 12 DeviceNet Class Services and Object Classes For more detailed information please refer to the UM EN IL DN BK DI8 DO4 PAC user manual Supports DeviceNet Class Services dec nex Service Name Get_Attribute_Single Set_Attribute_Single Supports DeviceNet Object Classes Object Type Me pee ey Oot o o8 Digital Input Point Object o9 09 Digital Output Point Objet m oB Analog Output Point Object 102 66 inline Module Objet 1o04 6 cOoSMaskObet 105 69 PCP Special Function Object PHOENIX CONTACT 15 13 Information About Networking DeviceNet has a linear bus topology see Figure 8 Termination resistors are required at each end of the trunk line The branches from the trunk or branch line have a maximum length of 6 m Each branch supports one or more devices The total length of trunk and branch li
22. ule types Digital inputs and outputs Analog inputs and outputs Intelligent function modules DeviceNet Features Faulted node recovery Baud rates 125 kBaud 250 kBaud 500 kBaud I O slave messages Polling Cyclic Change of State COS Bit strobing This data sheet only is valid in connection with the IL SYS INST UM E user manual see Ordering Data on It can be downloaded at www download phoenixcontact com www download phoenixcontact com general 7000_en_00 pdf a a a DO dD O 0c ED o dD ooa Weontaca This data sheet is valid for all products listed on the following page INSPIRING INNOVATIONS 2 Ordering Data Product Description Inline bus coupler for DeviceNet with 8 digital inputs and 4 digital outputs including accessories end plate connector and labeling fields Accessories Description DeviceNet connector Connector set as replacement item Extended double signal connector for inputs 4 signals with 3 wire connection method Extended double signal connector for outputs 4 signals with 3 wire connection method Keying profile Zack marker strip to label the terminals Zack marker strip to label the terminals DIN EN 50022 rail 2 meters End clamp Documentation Description User Manual IL DN BK DI8 DO4 PAC Bus Coupler Application Note I O Modules at Bus Couplers User Manual Automation Terminals of the Inline Product Range 7523 _en_00 Type IL DN BK DI8 DO4
23. ult Response Mode 0 Stop on Fault Default Outputs are turned OFF automatically when a local failure occurs Once the failure s is fixed either a reconfiguration Class 64pex Instance 1 Attribute 7 or a power cycle UL and DeviceNet power needs to occur before the station becomes operational again Fault Response Mode 1 Auto Restart Outputs are turned OFF automatically when a local failure occurs Once failure is fixed the station will begin to update I O automatically Fault Response Mode 2 Set to the error state Go to Fault State Outputs are turned OFF automatically for up to two seconds when a local failure occurs After two seconds the station will attempt to set the outputs to the pre programed DeviceNet fault states The station will not recover its lost I O even after the fault condition has been cleared without a reconfiguration or power cycle UL DeviceNet The default for a preprogrammed fault state is OFF PHOENIX CONTACT 14 Fault Response Mode 3 Continue on Fault Outputs are turned OFF automatically for up to two seconds when a local failure occurs After two seconds the station will continue to update all I O that is still on line The station will not recover its lost I O even after the fault condition is cleared without a reconfiguration or power cycle U DeviceNet DeviceNet Attributes Fault State and Fault Value The bus coupler supports the standard DeviceNet at

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