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ioPAC 5500 Hardware User`s Manual
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1. Moxa Americas Toll free 1 888 669 2872 Tel 1 714 528 6777 Fax 1 714 528 6778 Moxa Europe Tel 49 89 3 70 03 99 0 Fax 49 89 3 70 03 99 99 Moxa India Tel 91 80 4172 9088 Fax 91 80 4132 1045 www moxa com su ort Moxa China Shanghai office Toll free 800 820 5036 Tel 86 21 5258 9955 Fax 86 21 5258 5505 Moxa Asia Pacific Tel 886 2 8919 1230 Fax 886 2 8919 1231 Table of Contents di AmtFOA U ETO i at that l 1 OVEFVIEW iet tata ia eat ee ee a tac nceansusugaaicucuseencwuncuaicuenuerseqnencuuaautecss i 2 Packaqe Checklist ada LA E E EEE ELA E MEDEA te PORE OR gr 1 2 Zi A a aa ERA ER ka nkit ata tkikiatiiktiiktti kt tikk ik ztataki E E 2 1 Basi Installatio a iii ii e ila ian 2 2 DIN Ral Installatlon Procedu re ai iri ku i dd 2 2 COMPGUPING the POW Cl ada A A da 2 3 Power of the loPACE Controller i rara iia T 2 3 Grounding tie 1OPA G agli ile 2 3 Installing a MicroSD Gard ii i l err si aa 2 4 Merlin je 2 5 Connecting to the NetWork sii ie ii rr ic cie 2 5 Ethernet torri mm ea tie a i i SiSES 2 5 A iii 2 6 Connectina Oa Sellal DEV Ceser EEE E e aa EEE EEE SEENA 2 6 Setial Console DeEDUG POTT e ei EEEE EEEE EENET EEEREN e EET vira 2 7 aj A a a a a des 2 8 3 JTOPAGC 5500 Hardware Introduction i a ia 3 1 Appedtrance ana DINENSIONS ale rai tear iaia 3 2 Appedtam tt a i ia 3 2 Big Q Otc Te a aaa 3 3 Hardware Block Dlagrams aaa a ai d EEEREN Ai 3 3 IOPAG 5500 RFU Controller Block Die g ta
2. Ready Blinking Green System is booting up Red System error firmware upgrade or reset procedure underway ra Red Factory reset triggered PR nie Green The CPU is executing PRDK OFF The CPU has stopped is not executing PRDK IEC Version Red System I O services error ee LAN1 LAN2 Ethernet Green 100Mb Connection Amber 10Mb Blinking data transmitting Off disconnected Serial Green Transmitting data Tx Connection Amber Receiving data Rx Communication Off disconnected Link Cellular Green ISP IP retrieved meson lomiorammens Cellular Signal 1 amp 2 8 3 ON RSSI gt 24 1 8 2 ON 18 lt RSSI lt 24 1 ON Only 12 lt RSSI lt 18 Off No Signal RSSI lt 12 DIn DIOn Digital Input Green Channel ON or counter signal in pulse signal Output Indicator output scan rate 1 second Off Channel OFF or No Counter Pulse Signal AIn Analog Input Green Channel Enabled Indicator Red Burn out amp wire off when 4 20 mA current mode ioPAC 5500 Hardware ioPAC 5500 Hardware Introduction Svstem LEDs PWR Power LED The Power PWR LED indicates the status of the svstem power When the svstem is on this LED will turn green and when the svstem power is off this LED will be off RDV Readv LED The Ready RDY LED indicates the status of the system s kernel When the LED is green the system kernel is readv When the LED is green and blinking the svstem s kernel is booting up When the Readv
3. isis pesarese EN 3 3 ProductHardwate Specification 3 5 Product Selection GUia ei G i ios 3 5 Product Speciticatio i ie insiet at 3 5 IOPAG 5500 LEDIndicatorsastnia iaia 3 8 SySteMELEDS mcr a i 3 9 Communication LEDS airada a 3 9 A oa ee ital le ail alal alal iate 3 9 User Defined LEDS EDT and LEDA cina a e a EEN 3 9 JEG 6113 3 Compliant LEDS R7S and ERR aerae rR hire E ic tll tial Nl eal int edt unre one aS 3 9 TOLEDO SS ocios iaia tenere atta A RR E 3 9 Fdgi mae lela mou kel Maan eee bicicleta 3 10 TAWEG 61 1351 5 Models sc brcrirstirorissa bres bres Ero Dr lar rsa Deol israele 3 10 EPE BE MO A lS i a an ers 3 10 Togale Switch Factory Reset PROCESS ii d a ba 3 10 Pin assighiment and l O WIFINg gude arrasar rara 3 10 PINASSIGNMEnE i i dada dada dada dada ii iio 3 10 Digital INputi A O 3 11 Di ital A E 3 11 ANIOGHIRPUE Wo de 3 11 Analog ay ob heed Corrente i 3 11 1 Introduction The following topics are covered in this chapter O Overview O Package Checklist ioPAC 5500 Hardware Introduction Overview The ioPAC 5500 standalone controllers use an ARM9 based industrial grade CPU for the main svstem with ARM Cortex M4 based CPUs for the I O channels The USB bus between the controller CPU and module CPUs transmits data at up to 200 Mbps and the dual CPU architecture supports a 2 kHz analog input sampling rate and millisecond timestamps The ioPAC 5500 supports C C and IEC 61131 3 programming rail lev
4. mA 4 to 20 MA wire off Historical Data Buffering 60KB per channel 120 second data buffer at 250 Hz Accuracv 10 1 FSR 25 C 0 3 FSR 40 and 75 C Sampling Rate e All channels 2000 samples sec e Per channel 250 samples sec Input Impedance 2M ohms min Built in Resistor for Current Input 120 ohms min Digital Input Sensor Type Wet Contact NPN or PNP Dry Contact I O Mode DI or Event Counter Dry Contact e On short to GND e Off open Wet Contact NPN DI to GND e On 0 to 3 VDC e Off 10 to 30 VDC PNP DI to GND e Off 0 to 3 VDC e On 10 to 30 VDC Common Type 4 points per COM Counter Frequency 1 kHz Digital Filtering Time Interval Software selectable by 0 5 ms Digital Output Type Sink I O Mode DO or Pulse Output Pulse Output Frequency 1 kHz Over voltage Protection 45 VDC Over current Protection 2 6 A 4 channels 650 mA Over temperature Shutdown 175 C typical 150 C min Current Rating 200 mA per channel ioPAC 5500 Hardware ioPAC 5500 Hardware Introduction Software Characteristics Automation Languages C C IEC 61131 3 Protocols Modbus TCP Modbus RTU Master Power Requirements Power Input 24 VDC nominal 9 to 48 VDC Physical Characteristics Housing Aluminum Dimensions 90 05 x 135 x 105 4 mm 3 55 x 5 32 x 4 15 in Weight e oPAC 5542 HSPA Series 1100 g e oPAC 5542 Series 1000 g Mounting DIN Rail mounting standard wall mounti
5. serial console gives users a convenient wav of connecting to the RTU controllers This method is particularly useful when using the computer for the first time The serial console is also effective for connecting the Moxa RTU controllers when you do not know target network settings and IP addresses Step 1 To use the serial console remove the cover from the front top panel first Console Port for the ioPAC Series P2 onsole Step 2 Attach the 4 pin serial console cable to the console port The following diagram shows the 4 pin serial connector and pin connections Pin Assignment for the Serial Console Port Pin Definition Parity None Data bits BI We recommend using Moxa PComm Terminal Emulator to connect to the serial console The following steps describe how to connect the console 1 Download Moxa PComm Lite from the Moxa website www moxa com or copy it from the following folder on the Documentation and Software CD Software utility PComm Install Moxa PComm Lite to the host Windows PC Run PComm Lite Terminal Emulator from Start gt Programs gt PComm Lite Ver 1 x gt Terminal Emulator 4 Click Profile gt Open e PComm Terminal Emulator Profile Port Manager Help Open al ejtal Br 528 FEI 2 7 ioPAC 5500 Hardware Installation 5 Specifv which COM port is connecting to the Moxa RTU and use the following configuration settings 115200 8 none 1 Property xi Communication Par
6. AC 5500 on a DIN Rail follow below steps NOTE A wall mount kit can be purchased separatelv STEP 1 Insert the top of the DIN rail into the slot just below the stiff metal spring STEP 2 The DIN rail attachment unit will snap into place as shown to the right Removing the ioPAC 5500 from a DIN Rail To remove the ioLogik unit from the DIN rail simply reverse Steps 1 and 2 above ioPAC 5500 Hardware Installation Configuring the Power Powering on the ioPAC Controller The ioPAC controller can receive power from a 9 to 48 VDC power Input power is applied to the positive V1 V2 and negative V1 V2 terminals on the connector e When the input voltage is below the minimum recommended voltage the io PAC V2 will turn off V2 e The ioPAC has reverse protection and power input over voltage protection L allowing it to resist a maximum voltage of 60 V and the ioPAC s power input over current fuse protection specification is 5 A at 25 C V1 V1 After connecting the Moxa ioPAC controller to the power supply it will take 30 to 60 seconds for the operating system to boot up The green Ready LED will not turn on until the operating system is ready ATTENTION N This product is intended to be supplied bv a Listed Power Unit with output marked LPS and rated for 9 48 VDC minimum requirements For railwav rolling stock applications these devices must be supplied bv a galvanic isolated power supplv with design
7. IOPAC 5500 Hardware User s Manual First Edition July 2014 www moxa com product MOXA O 2014 Moxa Inc All rights reserved IOPAC 5500 Hardware User s Manual The software described in this manual is furnished under a license agreement and may be used only in accordance with the terms of that agreement Copyright Notice Trademarks 2014 Moxa Inc All rights reserved The MOXA logo is a registered trademark of Moxa Inc All other trademarks or registered marks in this manual belong to their respective manufacturers Disclaimer Information in this document is subject to change without notice and does not represent a commitment on the part of Moxa Moxa provides this document as is without warranty of any kind either expressed or implied including but not limited to its particular purpose Moxa reserves the right to make improvements and or changes to this manual or to the products and or the programs described in this manual at any time Information provided in this manual is intended to be accurate and reliable However Moxa assumes no responsibility for its use or for any infringements on the rights of third parties that may result from its use This product might include unintentional technical or typographical errors Changes are periodically made to the information herein to correct such errors and these changes are incorporated into new editions of the publication Technical Support Contact Information
8. RDV LED is red there is either a svstem error or the svstem is being reset to factorv defaults When the Readv LED is red and blinking the device s factorv default mode has been triggered Communication LEDs Pi and P2 The ioPAC controller comes with two serial connections P1 and P2 represent the status of each serial connection When the LED is green the oPAC is transmitting data Tx When the the LED is amber the ioPAC is receiving data Rx When the LED is blinking randomiv data is either being transmitted or received For example if P1 is blinking and is green the ioPAC is transmitting data When the LED is off the serial connection is disconnected LAN1 and LAN2 The ioPAC controller comes with two Ethernet ports with the LAN1 and LAN2 LEDs used to represent the status of the two connections When the LED is green data is transmitting at 100 Mbps When the LED is amber data is transmitting at 10 Mbps When the LED is blinking data is being transmitted When the LED is off there is no Ethernet connection or the Ethernet connection has been disconnected Cellular The ioPAC 5542 HSPA RTU controller supports a cellular HSPA communications The Link LED can detect the communication status and the cellular signal can detect the signal strength of the cellular connection User Defined LEDs LED1 and LED2 The ioPAC controller allows the user to custom configure these two LEDs through the software interface Refer to t
9. ace 2 a Insert the SIM card into the slot or b Remove the SIM card from the slot Connecting to the Network Ethernet Communication Connections to the LAN port are made through an RJ45 connector on the module The wiring and pin connections for these connectors are described in separate sections below e TCP IP Settings Dual Speed Functionality The io PAC 5500 s Ethernet ports auto negotiate with the connected devices and then use the fastest data transmission rate supported by both devices The following table shows the TCP IP parameters supported by the LAN port Default values are set when a Factory Reset is performed on the controller Subnet Mask Default 255 255 255 0 Subnet Mask Default 255 255 255 0 Default 0 0 0 0 Default 0 0 0 0 IP Address is the IP address of the controller Subnet Mask determines the subnet on which the controller is located Gatewav determines how vour controller communicates with devices outside its subnet Enter the IP address of the gatewav The IP address subnet mask and gatewav are static contact vour network administrator to obtain these addresses for the controller RJ45 Ethernet Connector The ideal maximum cable length of a 10 100BaseT connection is 100 m 350 feet but the actual limit could be longer or shorter depending on the amount of electrical noise in the environment To minimize the amount of noise Ethernet cables should not run parallel to power cables or ot
10. ameter Terminal File Transfer Captoring Protocol ISerial Data bits E Parity None Stop bits 1 Flow control f RISICTS TT DTR DSR TT XON XOFF RTS state ON C OFF e ON OFF 6 Click on the Terminal tab and configure the Terminal Type to VT100 Click OK to proceed AA A Communication Parameter Terminal File Transfer Capturing Terminal type FT100 B Local echo send Enter key as CR LF l Receive CE translation No Changed LF translation fio Changed W Enable auto line wrap 7 The serial console will be displayed on the terminal screen E C0M1 115200 None 8 1 YT100 lm raoti oxa ff Batterv The ioPAC RTU controller is equipped with one built in rechargeable VL2020 3V batterv for the SRAM and one 3V rechargeable batterv model number VL 1220 for the Real Time Clock RTC e Rechargeable battery VL2020 for SRAM gt Sustains at least 1 week without power supply gt Capacity 20 mAh gt Typical consumption O 25 C 4 yA gt 5 year warranty e Rechargeable battery VL 1220 for RTC Sustains power for at least 1 week without power supply gt Capacity 7 mAh gt Typical consumption O 25 C 2 yA gt 5 year warranty 2 8 ioPAC 5500 Hardware Installation Caution Do NOT attempt to replace the batterv Contact vour local dealer for replacement assistance 3 IOPAC 5500 Hardware Introduction This chapt
11. atures industrial grade wide temperature microSD cards are required Cellular for the ioPAC 5542 HSPA Series Network e Quad band GSM GPRS EDGE 850 900 1800 1900 MHz e Five band UMTS HSPA 800 850 AWS 1900 2100 MHz Internet HSPA e Up to 5 76 Mbps upload speed e Up to 14 4 Mbps download speed UMTS Up to 384 kbps upload download speed EDGE Class 12 Up to 237 kbps upload download speed GPPRS Class 12 Up to 85 6 kbps upload download speed SMS Point to Point Text PDU mode SIM Control Voltage 3 1 8 V Ethernet Interface LAN 2 x 10 100 Mbps 2 MACs IPs RJ45 Protection 1 5 kV magnetic isolation Serial Communication Interface e 2 RS 232 422 485 ports software selectable DB9 male e 1 RS 232 debug port 4 pin connector Serial Line Protection 15 kV ESD for all signals ioPAC 5500 Hardware ioPAC 5500 Hardware Introduction Serial Communication Parameters Paritv None Even Odd Data Bits 7 8 Stop Bits 1 2 Flow Control RTS CTS XON XOFF Baudrate 300 bps to 921 6 kbps Serial Signals RS 232 TxD RxD DTR DSR RTS CTS DCD GND RI RS 422 Tx Ix Rx Rx GND RS 485 4w Tx Tx Rx Rx GND RS 485 2w Data Data GND Inputs and Outputs Analog Inputs 8 channels Digital Inputs 8 channels Configurable DIOs 8 channels Isolation 3k VDC or 2k Vrms Analog Input Type Differential Input Resolution 16 bits I O Mode Voltage Current Input Range 0 to 10 VDC 10 to 10 VDC 0 to 20
12. based on the EN 50155 standard Grounding the ioPAC For most applications it is desirable to ground the svstem bv connecting the svstem s power supplv common wire to the chassis or panel ground The negative V side of the DC power input terminal as well as all I O point terminals labeled GND are connected to chassis ground P1 P2 Console V2 v2 V14 v1 NOTE 1 Use 18 AWG wire for the power ground 2 We highly recommend connecting the ground screw to the power terminal block s ground ioPAC 5500 Hardware Installation Installing a microSD Card The ioPAC is equipped with one slot for a microSD card The card reader slot is located inside the ioPAC device so you will need to unscrew and remove the card cover to install your microSD card When inserting a microSD card remember to keep the front edge of the card facing down Follow these steps to remove or install a microSD card 1 Remove the screw holding the card cover in place ico gt 2 a Insert a microSD card into the microSD card slot or b Remove the microSD card from the microSD card slot 3 Fasten back the screw holding the card cover in place 2 4 ioPAC 5500 Hardware Installation Installing a SIM card ioPAC 5542 HSPA controller supports cellular network function user can unscrew and remove the SIM card cover to insert the SIM card Follow these steps to remove or install a SIM card 1 Remove the screw holding the card cover in pl
13. el surge and ESD protection a 40 to 75 C 30 to 75 C for HSPA models operating temperature range UL cUL Class 1 Division 2 and ATEX Zone 2 certifications two 10 100 Mbps Ethernet ports with two MACs Port Trunking ready and two 3 in 1 serial ports With Moxa s Active OPC Server and DA Center the ioPAC 5500 series provides a comprehensive solution for data acquisition and control applications in harsh environments Package Checklist IOPAC 5500 The ioPAC 5500 ships with the following items e ioPAC 5500 controller e Serial console cable C C models only e Documentation and software CD Optional Accessories can be purchased separately e WK 51 01 Wallmount kit This chapter includes instructions on how to install the ioPAC 5500 The following topics are covered in this chapter O Basic Installation gt DIN Rail Installation Procedure O Configuring the Power gt Powering on the ioPAC Controller gt Grounding the ioPAC O Installing a microSD Card a Installing a SIM card O Connecting to the Network gt Ethernet Communication O Serial Connectivity gt Connecting to a Serial Device gt Serial Console Debug Port O Battery 2 Installation ioPAC 5500 Hardware Installation Basic Installation DIN Rail Installation Procedure Installing the oPAC 5500 on a DIN Rail The DIN rail attachment plate should alreadv be fixed to the back panel of the ioPAC 5500 when vou take it out of the box To install the ioP
14. er introduces the ioPAC 5500 s hardware specifications The following topics are covered in this chapter O Appearance and Dimensions gt Appearance gt Dimensions O Hardware Block Diagrams gt ioPAC 5500 RTU Controller Block Diagram O Product Hardware Specifications gt Product Selection Guide gt Product Specifications O ioPAC 5500 LED Indicators gt System LEDs Communication LEDs Cellular User Defined LEDs LED1 and LED2 IEC 61131 3 Compliant LEDs R S and ERR I O LEDs O The Toggle Switch gt In IEC 61131 3 Models gt In C C Models VV V WV O Toggle Switch Factory Reset Process O Pin assignment and I O wiring guide gt Pin Assignment Digital Input Digital Output Analog Input Voltage Analog Input Current VV V WV ioPAC 5500 Hardware ioPAC 5500 Hardware Introduction Appearance and Dimensions Appearance The following figures depict ioPAC 5500 RTU controller Front View Antenna Connector OBO E I O channels LED Indicator FEFEREEEELISIS Po gee oOo oOo oo fo of fo fo oo QC ca BORO RO BOR OB OF OFOROHOKOROBOSOS MicroSD Slot oggle Switch ioPAC 5542 HSPA Top View LAN2 gt Ground Bolt Nut 3 in 1 Serial Port PI P2 Tarde m Debug Port Power Terminal o Block v2 Lo ioPAC 5500 Hardware Dimensions ti e De LLI Top View ioPAC 5500 Hardware Introduction Unit mm inch 610 8 9 0 35 Les SEL 120 4 72
15. he C C Sample Code Programming Guide for ioPAC RTU Controllers for details IEC 61131 3 Compliant LEDs R S and ERR The ioPAC controller supports IEC 61131 3 compliant Run Stop and Error ERR LEDs for ISaGRAF specific notifications These LEDs are not user configurable I O LEDs The ioPAC 5542 RTU controller has I O LED indicators that directly display the status of I Os on the front panel of the ioPAC 5542 RTU controller ioPAC 5500 Hardware ioPAC 5500 Hardware Introduction The Toggle Switch The toggle switch functions differently depending on the programming language set your ioPAC model is configured for In IEC 61131 3 Models Stop For IEC 61131 3 models the toggle switch is a simple run stop switch for IEC programs Users can enable or disable it through RTUxpress The default Run setting is disabled Reset In C C Models On models that use the C language set the toggle switch is programmable Model 1 giving integrators and end users a switch that can trigger one of two M d 2 operation modes refer to the C C Sample Code Programming Guide ode for io PAC RTU Controllers for details Reset Toggle Switch Factory Reset Process Use the following procedure to reset the ioPAC to the factory defaults Note that when you reset the ioPAC all of your tag definitions software programs and files will be deleted and the service and runtime engine will be restarted 1 When the system is booting up and the RDY LED i
16. her types of cables that generate electrical noise The following diagram and table shows the pin connections for the RJ45 Ethernet connector 2 5 ioPAC 5500 Hardware Installation RJ45 Connector Pin Assignment Tx transmit Tx transmit 12345678 Media Direct Interface Signal Not used Not used Rx receive Not used Port Trunking The ioPAC 5500 RTU controller has a Port Trunking function active backup mode that can convert two LAN port IP addresses into one virtual IP address for easy SCADA integration and Ethernet redundancy In the following diagram both LAN ports on each ioPAC RTU controller are connected to a managed switch on an Ethernet network running SCADA software For more details regarding configuration setup refer to the ioPAC RTU Software User s Manual Port Trunking Mode Balance rr Round Robin Active Backup Fail Over Balance xor E HE Broadcast E IEEE 802 3ad Dynamic Link Aggregation ae Balance tib Adaptive Transmit Load Balancing l Balance alb Adaptive Load Balancing P 10 129 44 2 Single Serial Connectivity Connecting to a Serial Device The ioPAC RTU is equipped with two 3 in 1 serial ports that support RS 232 422 485 making it more convenient to connect field serial devices 4 5 fin rs 232 asazzand4 wire RS 485 2wireRs 485 1 bo om gt ko poo T GND ew GND ioPAC 5500 Hardware Installation Serial Console Debug Port The
17. ng optional Connector Spring type terminal block Environmental Limits Operating Temperature e oPAC 5542 Series 40 to 75 C 40 to 176 F e oPAC 5542 HSPA Series 30 to 75 C 22 to 176 F Storage Temperature 40 to 85 C 40 to 185 F Ambient Relative Humidity 5 to 95 non condensing Altitude Up to 2000 m Note Please contact Moxa if you require products guaranteed to function properly at higher altitudes Standards and Certifications Safety UL 508 NCC Hazardous Location UL cUL Class 1 Division 2 EMI EN 55022 EN 61000 3 2 EN 61000 3 3 FCC Part 15 Subpart B Class A EMS EN 55024 EN 61000 4 2 EN 61000 4 3 EN 61000 4 4 EN 61000 4 5 EN 61000 4 6 EN 61000 4 8 EN 61000 4 11 Shock IEC 60068 2 27 Freefall IEC 60068 2 32 Vibration IEC 60068 2 6 Rail Traffic EN 50121 4 Note Please check Moxa s website for the most up to date certification status Warrantv Warrantv Period 5 vears Details See www moxa com warranty ioPAC 5500 Hardware ioPAC 5500 Hardware Introduction IOPAC 5500 LED Indicators There are 9 LEDs on the ioPAC controller EO OFO mi FOROBOLOBOBOBOFOROBORO OBOBOSOEO 020 m o aux ua a 22 gs 3358858858 y w KFRRRERRREZZZZf 02080808080808080808080 CCT Ts a a eeoococoocoeeococececoocoe o 3AKGESZ3R iH ioPAC 5542 HSPA FR category label usasse S O System Power On Power On Ka ali a System Kernel Green System
18. s blinking GREEN hold the toggle switch in the reset position 2 Continue to hold toggle switch until the RDY LED turns a solid RED and then release the toggle switch It will take around 90 seconds to complete the factory reset process 3 When the RDY LED starts blinking GREEN indicating that the kernel is rebooting the factory mode is completed NOTE Do NOT power off operate or connect any devices when the RDY LED is a solid RED The factory reset function is only activated when the system is booting up Pin assignment and I O wiring guide The following is the ioPAC 5542 RTU controller s pin assignment and I O wiring guide Pin Assignment ran Name Description Pin Name Description COMO COMof DIO DI2 DI4 and COM1 COM of DIL DI3 DI5 and DI6 DI7 6 K N 1100 OO O y 3 Digital Input Channel O Digital Input Channel 1 Digital Input Channel 2 6 D3 Digital Input Channel 3 Digital Input Channel 4 8 Ere 0 00000000000000 00000 DI5 Digital Input Channel 5 9 JDI6 Digital Input Channel 6 Digital Input Channel 7 13 COM2 COM of DIOO DIO2 14 COM3 COM of DIO1 DIO3 DIOS DIO4 and DIO6 and DIO7 15 DIOO Digital Input Output 16 DIO1 Digital Input Output J Channel 0 Channel 1 3 10 Bo eee ee ee ee ee ioPAC 5500 Hardware ioPAC 5500 Hardware Introduction l i 1117 DIO2 Digital Input Output 18 DIO3 Digital Input O
19. utput Vai SIEQ Channel 2 Channel 3 oo 19 O DIO4 Digital Input Output A 0000 OOOO OO O O O O O O O Channel 4 Digital Input Output Channel 6 DIO5 Digital Input Output Channel 5 DIO7 Digital Input Output Channel 7 Analog Input Channel 0 Analog Input Channel 1 DIO6 GND AIO AIO AI2 Analog Input Channel 0 Analog Input Channel 2 30 Analog Input Channel 2 Analog Input Channel 4 34 Analog Input Channel 4 Analog Input Channel 6 Analog Input Channel 7 Analog Input Channel 6 Analog Input Channel 7 AI2 AI4 AI4 AI6 AI6 Digital Input Dry Contact Wiring Source Type NPN Din Sink Type PNP Digital Output Analog Input voltage Analog Input Current Aln Aln DOn LOAD sn Aln Aln 3 11
20. zo LS 7 2 0 28 105 4 4 15 10 0 39 90 05 3 55 wee ct pea Front View Side View Rear View Hardware Block Diagrams IOPAC 5500 RTU Controller Block Diagram CPU Board R45 SY lt gt CPU Board Buffer gt LED PHY PHY USB 3 in 1 USB gt HUB Serial Port SIA 3 in 1 Serial Port MOXA cpro lt gt CPU Real time B2B to IO Board Clock EEPROM Console Port 3 3 ioPAC 5500 Hardware ioPAC 5500 Hardware Introduction I O Board IO Board 3G Board 3G Board ioPAC 5500 Hardware ioPAC 5500 Hardware Introduction Product Hardware Specifications Product Selection Guide ioPAC 5542 C T RTU controller 8AIs 8 DIs 8DIOs C C 40 to 75 C operating temperature ioPAC 5542 HSPA C T RTU controller with HSPA module 8Als 8 DIs 8DIOs C C 30 to 75 C nn Mems nn ioPAC 5542 IEC T RTU controller 8AIs 8 DIs 8DIOs IEC 61131 3 40 to 75 C operating temperature ioPAC 5542 HSPA IEC T RTU controller with HSPA module 8Als 8 DIs 8DIOs IEC 61131 3 30 to 75 C operating temperature NOTE Conformal coating available on request Product Specifications Computer Main CPU 32 bit ARM9 192 MHz CPU I O CPU 32 bit ARM Cortex M4 80 MHz CPU OS Linux Clock Real time clock with battery backup Memory e SDRAM 64 MB e Flash 32 MB e SRAM 256 KB battery backup lasts for 1 week e microSD Slot Up to 32 GB SD 2 0 compatible Note For units operating in extreme temper
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