Remote I/O Communication Module Specification and Installation Instructions

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1 ON Remote I/O Communication Module Models CMMB16 Description The CMMB extends your BACnet or Modbus network when your application requires additional inputs and outputs on a physical controller. Combining the 2 inputs and outputs of the CMMB with your Building Automation System provides simple expansion of a new or existing controller and reduces unnecessary costs of additional components. Features Power & Communication 24Vac or 3Vdc supply BACnet MS/TP or Modbus communication port (selectable) Up to 2 STLD24 thermostats Inputs & Outputs 8 universal inputs 2 digital inputs 2 universal outputs (supervised) 2 analog outputs (supervised) 6 digital outputs (supervised) Installation 1 override switches to manually control each output LED status indication of each input and output DIN rail mounting Removable, non-strip, raising clamp terminals CMMB16 Network Communication BACnet MS/TP or Modbus communication port (selectable via DIP switch) Select MAC address via DIP switch or via network BACnet 96, 192, 384 or 768 bps Automatic baud rate detection Automatic device instance configuration Copy & broadcast configuration to other CMMB modules Modbus 96, 192, 384 or 576 bps RTU Slave, 8 bits (configurable parity and stop bits) Connects to any Modbus master Technical Specifications Specifications Thermostats Input Voltage Consumption Universal Inputs (12-bit) Digital Inputs Universal Outputs Analog Outputs Digital Relay Outputs BACnet Modbus Communication Connections Electrical Connections Operational Temperature Storage Temperature Relative Humidity eight Dimensions CMMB16 Up to 2 STLD24 thermostats (via independent Modbus network), via 4-wire connection 24 Vac or Vdc 5VA 24 Vac) 8 [-1Vdc, 1KΩ (Thermistor type III), on/off (dry contact), 4-2mA] / 12-bit resolution 2 [normally open/closed or direct/reverse] / 12-bit resolution 2 [-1Vdc, pulsed signal (2mA drive), on/off, 4-2mA] / 12-bit resolution 2 [-1Vdc] / 12-bit resolution 6 [normally open/closed, independent common per relay, 5A resistive] BACnet 96, 192, 384 or 768 bps (BAS-C) Modbus RTU 96, 192, 384 or 576. Selectable parity and stop bit configuration: No parity, 2 stop bit Even parity, 1 stop bit Odd parity, 1 stop bit 24 AG twisted-shield cable (Belden 9841 or equivalent).8 mm 2 [18 AG] minimum ºC to 5ºC [32ºF to 122ºF] -3ºC to 5ºC [-22ºF to 122ºF] 5 a 95% non condensed.4 kg [.9 lb] A C A = 6.3 / 16 mm B = 5. / 126 mm C = 2.25 / 57 mm B CMMB16-BACnet-Modbus-1851-ESA Page 1

2 TX RX TX RX DS1 DS2 ON ON Remote I/O Communication Module Connections and Configurations Please note that all jumper settings must also be set to the same value through BACnet. Some additional configurations are only available through BACnet (see Network Conditionson page 4). MAC Address DS2 The 8 DIP switches represent a binary logic to calculate the MAC address. Default = all OFF BACnet all OFF = Modbus all OFF = 1 End of Line JP3 / JP4 12 Ohms * default setting Network Port TB1 A+: BACnet/Modbus A+ B-: BACnet/Modbus B- Universal Inputs TB12-15 ** Selectable ** AI1: Universal Input 1 : Common AI2: Universal Input 2 AI3: Universal Input 3 : Common AI4: Universal Input 4 AI5: Universal Input 5 : Common AI6: Universal Input 6 AI7: Universal Input 7 : Common AI8: Universal Input 8 Voltage Input TB17 ** 1mA max ** None* STLD24 Port TB11 ** 2 STLD24 thermostats ** : Common 24V: 24 Vac or Vdc A+ B- AI1 AI2 POER STATUS JP3 B- A+: Modbus A+ B-: Modbus B- AI2 AI1 Digital Inputs TB16 ** Configurable ** DI1: Digital Input 1 : Common DI2: Digital Input 2 A+ AI3 AI4 AI3 AI6 AI5 AI6 AI7 AI8 AI7 DI1 DI2 24V Network DS1 4 Mode OFF BACnet* ON Modbus 3 Mode Options If BACnet OFF Auto Detect* ON Manual (see DS1-1 & DS1-2) If Modbus OFF Config via Modbus Register ON No parity, 2 stop bits * default setting AI1-AI8 Signal JP5-JP12 I = 4-2mA JP4 AI4 AI5 AI8 BACnet/Modbus Up to two STLD24 Thermostats AO1-AO4 Switches S1-S4 On = 1Vdc / 2mA Baud Rate DS1 1 2 Result OFF OFF 9,6 ON OFF 19,2 OFF ON 38,4 ON ON BACnet: 76,8 Modbus: 57,6 JP1 = AO4 AO4 AO3 JP2 = AO3 AO2 AO1 NC NO NC NO NC NO NC NO NC NO NC NO DO6 DO5 DO4 DO3 DO2 DO1 AO3-AO4 Signal JP1-JP2 * default setting Digital Outputs TB4-9 NC: : NO: DO1-DO6 Switches S5-S1 On -1 Vdc* 4-2 ma Universal Outputs TB1 ** Selectable ** AO4: Universal Output 4 : Common AO3: Universal Output 3 Analog Outputs TB2 ** -1 Vdc ** AO2: Analog Output 2 : Common AO1: Analog Output 1 =Activated (opposite state) Normally Closed Common Normally Open T*= 1K Ohms / on-off Auto*= Automatic Auto*= Automatic V= -1Vdc Off = Vdc / ma Off = Deactivated (normal state) * default setting * default setting * default setting Page 2

3 TX RX TX RX DS1 DS2 ON ON MAC Address DIP Switch (DS2) MAC address for BACnet and Modbus communication, are selectable by DIP switch DS2 using binary logic. Remote I/O Communication Module BACnet Highest MAC address is 254. Default is all switches OFF = MAC address If you do not change device instance in program mode, it will be automatically modified according to the MAC address. MAC Address DS.1 = 1 DS.2 = 2 DS.3 = 4 DS.4 = 8 DS.5 = 16 DS.6 = 32 DS.7 = 64 DS.8 = 128 Default Device Instance OFF OFF OFF OFF OFF OFF OFF OFF ON OFF OFF OFF OFF OFF OFF OFF OFF ON OFF OFF OFF OFF OFF OFF ON ON OFF OFF OFF OFF OFF OFF OFF OFF ON OFF OFF OFF OFF OFF OFF ON ON ON ON ON ON OFF OFF ON ON ON ON ON ON ON Modbus Highest MAC address is 247. Default is all switches OFF = MAC address 1 MAC address is binary value +1 There is no device instance for Modbus. MAC Address DS.1 = 1 DS.2 = 2 DS.3 = 4 DS.4 = 8 DS.5 = 16 DS.6 = 32 DS.7 = 64 DS.8 = = 1 OFF OFF OFF OFF OFF OFF OFF OFF 1+1 = 2 ON OFF OFF OFF OFF OFF OFF OFF 2+1 = 3 OFF ON OFF OFF OFF OFF OFF OFF 3+1 = 4 ON ON OFF OFF OFF OFF OFF OFF 4+1 = 5 OFF OFF ON OFF OFF OFF OFF OFF = 127 OFF ON ON ON ON ON ON OFF = 247 OFF ON ON OFF ON ON ON ON LEDs Power On Off = Input voltage normal = No power Status Flashing = Normal operation (watchdog) RX/TX (BACnet) Flashing = Receiving (RX) and/or transmitting (TX) data. RX/TX (Modbus) Flashing = Receiving (RX) and/or transmitting (TX) data. Input Status On = Input on Off = Input off Flashing = Input not connected (thermistor setting only) Analog = hen Universal Inputs are set to analog values (Vdc, ma, or 1KΩ); the LED intensity corresponds to the input value. For example: At 1Vdc, the LED will be fully on. At 5Vdc, the LED will be at 5% intensity. At Vdc, the LED will be off. Output Status On = Activated Off = Deactivated Flashing = Output pulsed Analog = hen Universal and Analog outputs are set to analog values (Vdc or ma); the LED intensity corresponds to the output value. For example: At 1Vdc, the LED will be fully on. At 5Vdc, the LED will be at 5% intensity. At Vdc, the LED will be off. POER STATUS BACnet Modbus Input Status LEDs (one per input) Output Status LEDs (one per output) Page 3

4 Network Conditions Please note that all jumper settings must also be set to the same value through BACnet or Modbus. The following is a list of conditions and additional BACnet or Modbus objects. Universal Inputs (AI1-AI8) hen the jumper is set to Thermistor, you can select either C or F or you can set the input as a digital on/off input. If the universal input is set as a digital on/off input, you can also set the polarity to direct or reverse. For example, in Reverse an on signal would be recognized as an off signal. hen the jumper is set to -1 Vdc, you can also set the range to -5 Vdc. Digital Inputs (DI1-DI2) You can set the polarity to direct or reverse. For example, in Reverse an on signal would be recognized as an off signal. Universal/Analog Outputs (AO1-AO4) You can set the polarity to direct or reverse. For example, in reverse the output range would be 1- Vdc instead of -1 Vdc. The polarity applies to all settings -1Vdc, 4-2mA, on/off and pulsed. You can also set the outputs to pulsed or digital on/off. A fixed output value can only be modified via BACnet when the override switch is in the Automatic position. Digital Outputs (DO1-DO6) A fixed output (open/closed) can only be modified via BACnet when the override switch is in the Automatic position. The displayed text can be set to either Open/Closed, On/Off, or Alarm/Normal (BACnet only). Supervised Outputs All outputs are fully supervised via BACnet. This provides the actual state of the output including any manual overrides done using the on-board switches. BACnet Objects Table ID 1 Name Description ritable? Notes (* = default) AI.1 AI.2 AI.3 AI.4 AI.5 AI.6 AI.7 AI.8 UniversalInput1 UniversalInput2 UniversalInput3 UniversalInput4 UniversalInput5 UniversalInput6 UniversalInput7 UniversalInput8 Universal input 1 mode selected by MSV.1 Universal input 2 mode selected by MSV.12 Universal input 3 mode selected by MSV.15 Universal input 4 mode selected by MSV.48 Universal input 5 mode selected by MSV.57 Universal input 6 mode selected by MSV.58 Universal input 7 mode selected by MSV.59 Universal input 8 mode selected by MSV.6-1Volt or -4-1ºC or ºF or -1 Resolution.1Volt or.1ºc/.2ºf -1Volt or -4-1ºC or ºF or -1 Resolution.1Volt or.1ºc/.2ºf -1Volt or -4-1ºC or ºF or -1 Resolution.1Volt or.1ºc/.2ºf -1Volt or -4-1ºC or ºF or -1 Resolution.1Volt or.1ºc/.2ºf -1Volt or -4-1ºC or ºF or -1 Resolution.1Volt or.1ºc/.2ºf -1Volt or -4-1ºC or ºF or -1 Resolution.1Volt or.1ºc/.2ºf -1Volt or -4-1ºC or ºF or -1 Resolution.1Volt or.1ºc/.2ºf -1Volt or -4-1ºC or ºF or -1 Resolution.1Volt or.1ºc/.2ºf AV.52 AnalogOutput1Min Min. voltage of analog output 1 * Volt to AV.54 Resolution.1 Volt AV.53 AnalogOutput2Min Min. voltage of analog output 2 * Volt to AV.55 Resolution.1 Volt AV.54 AnalogOutput1Max Max. voltage of analog output 1 AV.52 to 1.* Volt Resolution.1 Volt AV.55 AnalogOutput2Max Max. voltage of analog output 2 AV.53 to 1.* Volt Resolution.1 Volt AV.72 AnalogOutput1 Analog output 1 value -1% Resolution.1% AV.73 AnalogOutput2 Analog output 2 value -1% Resolution.1% AV.118 AnalogOutput3Min Min. voltage of analog output 3 * Volt to AV.12 Resolution.1 Volt AV.119 AnalogOutput4Min Min. voltage of analog output 4 * Volt to AV.121 Resolution.1 Volt AV.12 AnalogOutput3Max Max. voltage of analog output 3 AV.118 to 1.* Volt Resolution.1 Volt AV.121 AnalogOutput4Max Max. voltage of analog output 4 AV.119 to 1.* Volt Resolution.1 Volt AV.124 AnalogOutput3 Analog output 3 value -1% Resolution 1% AV.125 AnalogOutput4 Analog output 4 value -1% Resolution 1% AV.226 UniversalInput1Offset Universal input 1 offset AV.227 UniversalInput2Offset Universal input 2 offset AV.228 UniversalInput3Offset Universal input 3 offset -5. to 5. ºC/ºF/Volt/mA (default *) Resolution:.1 ºC/ºF/Volt/mA -5. to 5. ºC/ºF/Volt/mA (default *) Resolution:.1 ºC/ºF/Volt/mA -5. to 5. ºC/ºF/Volt/mA (default *) Resolution:.1 ºC/ºF/Volt/mA 1 ID is equal to ObjectType.Instance Page 4

5 ID 1 Name Description ritable? Notes (* = default) AV.229 UniversalInput4Offset Universal input 4 offset AV.23 UniversalInput5Offset Universal input 5 offset AV.231 UniversalInput6Offset Universal input 6 offset AV.232 UniversalInput7Offset Universal input 7 offset AV.233 UniversalInput8Offset Universal input 8 offset AV.235 AV.236 SD1_Type_ADD SD1_Baudrate Remote sensor model and Modbus address Remote sensor baud rate of Modbus communication -5. to 5. ºC/ºF/Volt/mA (default *) Resolution:.1 ºC/ºF/Volt/mA -5. to 5. ºC/ºF/Volt/mA (default *) Resolution:.1 ºC/ºF/Volt/mA -5. to 5. ºC/ºF/Volt/mA (default *) Resolution:.1 ºC/ºF/Volt/mA -5. to 5. ºC/ºF/Volt/mA (default *) Resolution:.1 ºC/ºF/Volt/mA -5. to 5. ºC/ºF/Volt/mA (default *) Resolution:.1 ºC/ºF/Volt/mA AV.237 SD1_Firmware_version Remote sensor version AV.238 SD1_Status_Config Remote sensor config and status AV.239 SD1_Intern_Temp Remote sensor internal temp. AV.24 SD1_Temp_SetPoint Remote sensor temp. setpoint AV.241 SD1_Min_Temp_SetPoint Remote sensor min. setpoint AV.242 SD1_Max_Temp_SetPoint Remote sensor max. setpoint AV.243 SD1_Int_Temp_Offset Remote sensor internal temperature offset AV.249 SD1_Extern_Temp Remote sensor external temp. AV.25 AV.251 AV.252 AV.253 AV.254 AV.255 AV.256 AV.257 SD1_Extern_Temp_Offset SD1_Button_Cfg_Status SD1_Let76 SD1_Let54 SD1_Let32 SD1_Let1 SD1_Digit43 SD1_Digit21 Remote sensor external temperature offset Remote sensor button configuration and status characters 7 and 6 characters 5 and 4 characters 3 and 2 character 1 Remote sensor digit number 4 and 3 Remote sensor digit number 2 and 1 AV.258 SD1_Icon1 Remote sensor icon to display AV.259 SD1_Icon1_Blink Remote sensor icon to blink AV.26 SD1_Icon2 Remote sensor icon to display AV.261 SD1_Icon2_Blink Remote sensor icon to blink AV.262 SD1_Icon3 Remote sensor icon to display AV.263 SD1_Icon3_Blink Remote sensor icon to blink AV.264 AV.265 SD2_Type_ADD SD2_Baudrate Remote sensor model and Modbus address Remote sensor baud rate of Modbus communication AV.266 SD2_Firmware_version Remote sensor version AV.267 SD2_Status_Config Remote sensor config and status AV.268 SD2_Intern_Temp Remote sensor internal temp. AV.269 SD2_Temp_SetPoint Remote sensor temp. setpoint AV.27 SD2_Min_Temp_SetPoint Remote sensor min. setpoint AV.271 SD2_Max_Temp_SetPoint Remote sensor max. setpoint AV.272 SD2_Int_Temp_Offset Remote sensor internal temperature offset AV.278 SD2_Extern_Temp Remote sensor external temp. AV.279 SD2_Extern_Temp_Offset Remote sensor external temperature offset Page 5

6 ID 1 Name Description ritable? Notes (* = default) AV.28 AV.281 AV.282 AV.283 AV.284 AV.285 AV.286 SD2_Button_Cfg_Status SD2_Let76 SD2_Let54 SD2_Let32 SD2_Let1 SD2_Digit43 SD2_Digit21 Remote sensor button configuration and status characters 7 and 6 characters 5 and 4 characters 3 and 2 character 1 Remote sensor digit number 4 and 3 Remote sensor digit number 4 and 3 AV.287 SD2_Icon1 Remote sensor icon to display AV.288 SD2_Icon1_Blink Remote sensor icon to blink AV.289 SD2_Icon2 Remote sensor icon to display AV.29 SD2_Icon2_Blink Remote sensor icon to blink AV.291 SD2_Icon3 Remote sensor icon to display AV.292 SD2_Icon3_Blink Remote sensor icon to blink AV.467 NumberOfSlaveSensor Number of remote sensors *-2 (# of STLD24 connected to CMMB) AV.468 CopyCfgStartAdd Copy configuration start address AV.469 CopyCfgEndAdd Copy configuration end address AV.47 CopyCfgResult 2 Copy configuration result BI.1 DigitalInput1 Digital input 1 status BI.2 DigitalInput2 Digital input 2 status BV.22 ContactOutput1 Digital output 1 status BV.23 ContactOutput2 Digital output 2 status BV.24 ContactOutput3 Digital output 3 status BV.25 ContactOutput4 Digital output 4 status BV.26 ContactOutput5 Digital output 5 status BV.27 ContactOutput6 Digital output 6 status BV.33 DigitalInput1Polarity Polarity of digital input 1 BV.34 DigitalInput2Polarity Polarity of digital input 2 BV.66 AnalogOutput1Direction Polarity of analog output Address of first CMMB to copy Available only if BV.11 is set to No AV.468 (AV ) Address of last CMMB to copy Available only if BV.11 is set to No AV.468 AV.469 Result of copy is available on Description property and is available only if BV.11 is set to Yes. Results: Succeed, Prog_Error, Type_Error, Model_Error, F_Error, Mem_Error, Size_Error, Comm_Error, SlaveDevice, InProgress, AllSucceed = Open / Ouvert * 1= Close / Fermé Text depends of selection in MSV.76 = Open / Ouvert * 1= Close / Fermé Text depends of selection in MSV.77 = Open / Ouvert / Off / Arret / Normal * 1= Close / Fermé / On / Marche / Alarm Text depends of selection in MSV.66 = Open / Ouvert / Off / Arret / Normal * 1= Close / Fermé / On / Marche / Alarm Text depends of selection in MSV.67 = Open / Ouvert / Off / Arret / Normal * 1= Close / Fermé / On / Marche / Alarm Text depends of selection in MSV.68 = Open / Ouvert / Off / Arret / Normal * 1= Close / Fermé / On / Marche / Alarm Text depends of selection in MSV.69 = Open / Ouvert / Off / Arret / Normal * 1= Close / Fermé / On / Marche / Alarm Text depends of selection in MSV.7 = Open / Ouvert / Off / Arret / Normal * 1= Close / Fermé / On / Marche / Alarm Text depends of selection in MSV.71 2 rite address in present value, result will be available in description. Page 6

7 ID 1 Name Description ritable? Notes (* = default) BV.67 AnalogOutput2Direction Polarity of analog output 2 BV.68 AnalogOutput3Direction Polarity of analog output 3 BV.69 AnalogOutput4Direction Polarity of analog output 4 BV.93 BV.94 BV.95 BV.96 BV.97 BV.98 BV.99 BV.1 UI1_DI_Polarity UI2_DI_Polarity UI3_DI_Polarity UI4_DI_Polarity UI5_DI_Polarity UI6_DI_Polarity UI7_DI_Polarity UI8_DI_Polarity Polarity of universal input 1 Polarity of universal input 2 Polarity of universal input 3 Polarity of universal input 4 Polarity of universal input 5 Polarity of universal input 6 Polarity of universal input 7 Polarity of universal input 8 BV.11 CopyCfgExecute Start or stop copy configuration MSV.1 UniversalInput1Function Selected analog input 1 mode MSV.12 UniversalInput2Function Selected analog input 2 mode MSV.15 UniversalInput3Function Selected analog input 3 mode MSV.48 UniversalInput4Function Selected analog input 4 mode MSV.54 AnalogOutput1Mode Select analog output 1 mode MSV.55 AnalogOutput2Mode Select analog output 2 mode MSV.57 UniversalInput5Function Selected analog input 5 mode MSV.58 UniversalInput6unction Selected analog input 6 mode = No * 1= Yes Start copy and give results, must be reset by user. 3= _1Volt 5= _5Volt 6= 4_2mA 3= _1Volt 5= _5Volt 6= 4_2mA 3= _1Volt 5= _5Volt 6= 4_2mA 3= _1Volt 5= _5Volt 6= 4_2mA 1= Analog * 2= On_Off 3= Pulsing 1= Analog * 2= On_Off 3= Pulsing 3= _1Volt 5= _5Volt 6= 4_2mA 3= _1Volt 5= _5Volt 6= 4_2mA Page 7

8 ID 1 Name Description ritable? Notes (* = default) MSV.59 UniversalInput7Function Selected analog input 7 mode MSV.6 UniversalInput8Function Selected analog input 8 mode MSV.66 MSV.67 MSV.68 MSV.69 MSV.7 MSV.71 ContactOutput1Text ContactOutput2Text ContactOutput3Text ContactOutput4Text ContactOutput5Text ContactOutput6Text Contact output 1 inactive & active text Contact output 2 inactive & active text Contact output 3 inactive & active text Contact output 4 inactive & active text Contact output 5 inactive & active text Contact output 6 inactive & active text MSV.76 DigitalInput1Text Digital input 1 inactive & active text 3= _1Volt 5= _5Volt 6= 4_2mA 3= _1Volt 5= _5Volt 6= 4_2mA 3= On_Off 4= Marche_Arret 5= Alarm_Normal 3= On_Off 4= Marche_Arret 5= Alarm_Normal 3= On_Off 4= Marche_Arret 5= Alarm_Normal 3= On_Off 4= Marche_Arret 5= Alarm_Normal 3= On_Off 4= Marche_Arret 5= Alarm_Normal 3= On_Off 4= Marche_Arret 5= Alarm_Normal MSV.77 DigitalInput2Text Digital input 2 inactive & active text MSV.81 AnalogOutput3Mode Select analog output 3 mode MSV.82 AnalogOutput4Mode Select analog output 4 mode 1= Analog * 2= On_Off 3= Pulsing 1= Analog * 2= On_Off 3= Pulsing Page 8

9 Modbus Registers Register address o As per protocol base (base ); for PLC add 1 to protocol base. o As per holding register (base 41) Functions : o 3 Read Holding Register o 6 rite Single Register o 16 rite Multiple Registers Error Codes : o 2 Illegal Data Address o 3 Illegal Value o 6 Slave Device Busy = ritable register, [blank] = read only. No Real number in modbus register, use scale to calculate real number. Register = Real number * Scale => Real number = Register / Scale. Scale could be 1, 1 or 1 Attention when writing a register that contains a bit string. If bit is writable (conditional or not), the write will always be accepted. If bit is reserved or not writable, the write will be ignored and will keep its actual state. Use READ-MODIFY-RITE sequence. Protocol Base Holding Register Description Data Type MSB/LSB Units/Values ritable Default Value MB LB 41 MSB = Neptronic Device ID LSB = MAC Address 1 42 Device Baud Rate 2 43 Port Configuration IMPORTANT: The default value is "no parity, 2 stop bits". To change the value, you must set DIP switch DS1-3 to OFF. If set to ON, it will always remain at the default value. Refer to Connections and Configurations on page 2. Unsigned Unsigned Scale.1 15 (69h) [96] [192] [384] [576] Unsigned [..2] [1..247] (1h- F7h) * MAC address is writable if all DIP switches of DS2 are OFF. * 69h 1h 9,6 19,2 38,4 57,6 = no parity, 2 stop bits 1 = even parity, 1 stop bit 2 = odd parity, 1 stop bit Product Name (characters 8 & 7) 2 x ASCII char 8 char 7 Valid ASCII character: 32 (2h) 122 (7ah), Empty = 43h [C] 4h [M] 4 45 Product Name (characters 6 & 5) 2 x ASCII char 6 char 5 Valid ASCII character: 32 (2h) 122 (7ah), Empty = 4h [M] 42h [B] 5 46 Product Name (characters 4 & 3) 2 x ASCII char 4 char 3 Valid ASCII character: 32 (2h) 122 (7ah), Empty = 31h [1] 3h [] 6 47 Product Name (characters 2 & 1) 2 x ASCII char 2 char 1 Valid ASCII character: 32 (2h) 122 (7ah), Empty = 36h [6] 2h [ ] 7 48 Firmware Version 8 49 Application Version Unsigned Scale 1 Unsigned Scale Page 9

10 Protocol Base Holding Register Description Data Type MSB/LSB Units/Values ritable Default Value MB LB 9 41 System Status 1 Bit String [B..B15] = Normal 1 = Fault B = System operation, 1, 1111, 111b System Status 2 Bit String [B..B15] Always,,, b Analog Input Analog Input 2 T_C: Type: Signed, Scale:1, Unit:ºC, Range:-4, - 1, ºC, Resolution :, T_F: Type: Signed, Scale:1, Unit:ºF, Range:-4, - 212, ºF, Resolution :, Analog Input V: Type: Unsigned, Scale:1, Unit: Volt, Range:-1,V, Resolution :, Analog Input 4 DI: Type: Unsigned, Scale:1, Unit: n/a, Range: -1, Resolution : Analog Input 5-5V: Type: Unsigned, Scale:1, Unit: Volt, Range:-5,V, Resolution :, mA: Type: Unsigned, Scale:1, Unit: ma, Range:4, - 2, ma, Resolution :, Analog Input Analog Input 7 Note: (7FFFh) = Input in fault; for temperature T_C & T_F modes only Analog Input Digital Input Bit String [B..B1] Analog Output 1 B = DI1 B1 = DI Analog Output 2 Unsigned [..1] Unit: %, Range: -1,%, Resolution :, Analog Output 3 Scale Analog Output Relay Output Bit String [B..B6] Output Overwrite Status Indicates that the output is overridden by the hardware switch (S5-S1). Bit String [B..B1] B = Relay 1 B1 = Relay 2 B2 = Relay 3 B3 = Relay 4 B4 = Relay 5 B5 = Relay 6 B = Relay 1 B1 = Relay 2 B2 = Relay 3 B3 = Relay 4 B4 = Relay 5 B5 = Relay 6 B6 = AO1 B7 = AO2 B8 = AO3 B9 = AO ,,, b,,, b,,, b Page 1

11 Protocol Base Holding Register Description Data Type MSB/LSB Units/Values ritable Default Value MB LB Universal Input 1 Function Universal Input 2 Function Universal Input 3 Function 1 = Temperature C 1 2 = Temperature F Universal Input 4 Function 3 = -1V 1 Unsigned [1..4] Universal Input 5 Function 4 = Digital Input 1 5 = -5V Universal Input 6 Function 6 = 4-2mA Universal Input 7 Function Universal Input 8 Function Universal Input 1 Offset Universal Input 2 Offset Universal Input 3 Offset Universal Input 4 Offset Signed [..1] Range: +/- 5,, Resolution :, Universal Input 5 Offset Scale Universal Input 6 Offset Universal Input 7 Offset Universal Input 8 Offset Analog Output 1 Mode Unsigned [1..4] 1 = Analog 2 = On/Off 3 = Pulse 4 = 4-2mA Analog Output 1 Minimum Voltage Signed Unit: Volt, Range: V - Register 44, Resolution :,1 [..1] Analog Output 1 Maximum Voltage Scale 1 Unit: Volt, Range: Register 43-1.V, Resolution :, Analog Output 2 Mode Unsigned [1..4] 1 = Analog 2 = On/Off 3 = Pulse 4 = 4-2mA Analog Output 2 Minimum Voltage Signed Unit: Volt, Range: V - Register 47, Resolution :,1 [..1] Analog Output 2 Maximum Voltage Scale 1 Unit: Volt, Range: Register 46-1.V, Resolution :, Analog Output 3 Mode Unsigned [1..4] 1 = Analog 2 = On/Off 3 = Pulse 4 = 4-2mA 1 Page 11

12 Protocol Base Holding Register Description Data Type MSB/LSB Units/Values ritable Default Value MB LB Analog Output 3 Minimum Voltage Signed Unit: Volt, Range: V - Register 5, Resolution :,1 [..1] Analog Output 3 Maximum Voltage Scale 1 Unit: Volt, Range: Register 49-1.V, Resolution :, Analog Output 4 Mode Unsigned [1..4] 1 = Analog 2 = On/Off 3 = Pulse 4 = 4-2mA Analog Output 4 Minimum Voltage Signed Unit: Volt, Range: V - Register 53, Resolution :,1 [..1] Analog Output 4 Maximum Voltage Scale 1 Unit: Volt, Range: Register 52-1.V, Resolution :, System Options * = digital input mode only Bit String [B..B13] = Direct 1 = Reverse B = AO1 polarity B1 = AO2 polarity B2 = AO3 polarity B3 = AO4 polarity B4 = AI1 polarity * B5 = AI2 polarity * B6 = AI3 polarity * B7 = AI4 polarity * B8 = AI5 polarity * B9 = AI6 polarity * B1 = AI7 polarity * B11 = AI8 polarity * B12 = DI1 polarity B13 = DI2 polarity,,, b Recycling at end of life: please return this product to your Neptronic local distributor for recycling. If you need to find the nearest Neptronic authorized distributor, please consult Page 12

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