Rear connector (IDC10) RS485 GND RS485 A IDC 10 RS485 B. Utilizzo Accessorio Z-PC-DINAL2-17,5

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3 S SENECA ZPC Line EN Installation Manual Contents: General Specifications specifications Technical Specifications features Installation Modbus connections ules Electrical Installationconnections Modbus Electrical connections rules DIPswitches settings Digital Modbus inputs register and LEDs signallings Leds Factory Signallings settings and advanced settings. Factory Settings Z3AO Z4TC 4 ANALOG INPUT for Thermocouple Modbus Module with Modbus Digital Inputs S4 Via Germania, Z.I. CAMIN PADOVA ITALY Tel Fax For manuals and configuration software, see INSEIE FOTO This document is property of SENECA srl. Duplication and reprodution are forbidden, if not authorized. Contents of the present documentation refers to products and technologies described in it. All technical data contained in the document may be modified without prior notice Content of this documentation is subject to periodical revision. Voltage Consumption Temperature Humidity Storage Temperature Degree protection Connections Dimensions Box Isolations 00 V IDC0 S3 S IDC0 Analog Inputs VDC Hz Typical:. W, Maximum:. W Environmental condition 0.. C 30..0% a 40 C not condensing 0.. C IP0 Connections emovable 3way screw terminals,,0 pitch ear IDC0 connector for DIN 477 rail Frontal jack 3. mm Box / Dimensions Jack 0 L: 00 mm; H: mm; W: 7, mm PBT, Black SUPPLEMENTAY NOTE FO USE: Use in environment with or less pollution degree. Standards The module is conforming to the following regulations: EN0004/00 (electromagnetic emission, industrial environment). EN000/00 (electromagnetic immunity, industrial environment) EN00/00 (safety). All circuits must be isolated from the other circuits under dangerous voltage with double isolation. The power supply transformer must comply with EN074: Isolated transformers and safety transformers. ear connector (IDC0) S4 S4 A S4 B IDC 0 Power Supply AC Power Supply AC Utilizzo Accessorio ZPCDINAL7, V 0 40 V 3 Input The module accept in input, the following types of thermocouples: J, K, E, N, S,, B, T. Although the module can be used to read voltagewith ±0mVrange. The ground is internally connect and share in all analog input channel, it s available at 7 and screw terminals., kv isolation is guaranteed between power supply and serial communication circuits. The picture shows the meaning of the IDC0 connector pins. This connector can be used in alternative to the screw terminals blocks If ZPCDINAL7, accessory is used, the power supply signals and communication signals may be provided by the terminals block into the DIN rail support. In the figure are shown the meaning and the position of the terminal blocks. The DIPswitch that set the 0 Ω terminator is used only for CAN communication. SHLD: Shield to protect the connection cables (recommended). NOTE: To avoid measurment errors caused by external disturbances are recommended shortcircuit the thermocouple input channels not used. mv Screw terminal and 3 are the alternative to seneca DIN rail bus to provide the power supply at the module. The upper limits must not be exceeded otherwise the module can be damaged. If the power supply source is not protected against overload, a safety fuse with a maximum acceptable value of. A, must be installed in the power supply line. Thermocouple Thermocouple 3 Thermocouple Thermocouple Note: when DIPswitches from 3 to are in OFF, comunication settings are retrieved from EEprom Nota : The termination of S4 communication must be enabled only to the ends of the communication line. MODBUS EGISTE AND LED SIGNALLINGS Holding register egister Name NCH Valore Measured della value misura of channel del canale selected con scala input , non normalizzata. bit = µ 0. C Da FSCALE e da ISCALE dipende il fondo scala utilizzato che può essere mv oppure 0 Vcc FACTOY SETTING AND ADVANCED SETTING Tutti i DIPswitch in OFF: 4004 CH See before. 400 CH 3 See before. 400 CH 4 See before. LED PW FAIL X TX STATE LEDs signallings of LEDS presence. settings. Fault/Failure. ecived data from S4. Verify the connection. Trasmitted data from S4. Out of order Factory settings Modbus protocol: Communication parameters: 3400,N, Addr. Input channel : mv Input channel : mv Input channel 3 : mv Input channel 4 : mv Signal sampling time for all channels: 0 ms MI0004IE ENGLISH / MI0004IE ENGLISH 3/ MI0004IE ENGLISH / MI0004IE ENGLISH 7/ GENEAL SPECIFICATIONS Up to 4 input for measuring thermocouples type J, K, E, N, S,,B,T. Up to 4 input for measuring mv voltage input. Sampling time for channels at 40 ms or 40 ms for all channels. 00 VAC input isolation compared with other lowvoltage circuits. Easy connections for power supply and serial communication by seneca bus that can be mounted on standard DIN 477 rail.. emovable terminals with section of. mm S4 serial communication with Modbustu protocol, maximum 4 nodes. Module insertion or extraction from seneca bus without interruption for serial communication and power supply. Connection distance up to 00 m. S3 connection on front from 3, mm jack connector. Low consumption. NEW Modbus address and Baud rate can be set through DIPswitches. Input measure can be set in temperature or mv. Programmable filters to stabilize the measured input. Cold junction compensation internal. Mains electric network frequency rejection > 4 db. TECHNICAL FEATUES Thermocouples inputs Thermocouples input J, K, E, N, S,, B, T. Number of channel 4 Cold junction error < C between C Input impedance Current test (TC open) DM Thermal Drift Voltage input >0 M < 00 na. disactivable > 0 db (0 Hz); > 4 db (0 Hz). < 0 ppm/k Thermocouples s Calibration : 0.% d.l.; Thermal sense : 0.0%/ C; EMC : % d.s. Sampling time 0 ms / channel o 0 ms / channel mvinput Bipolar with ± 0 mv range Input impedance > 0M esolution µv mv error Calibration : 0.% d.l.; Thermal sense : 0.0%/ C; EMC : % d.s. Bus lenght Drop lenght 00 m m INSTALLATION The module is designed to be installed, in vertical position, on DIN 477 rail. For the best module performance and duration, avoid to place cables raceways and other objects that couldobstructventilation slits. Never install the modules near heat sources. The module installation is adviced in the bottom of the control panel. Inserting in the DIN rail MODBUS CONNECTIONS ) Connect the module into the DIN rail (max 0) ) Use a cable with a suitable length to connect the remote modules. In the following table there are data relative to: Maximum length of the Modbus bus: It defines the connection length between two modules that have busterminatordipswitchon. (seescheme). Drop lenght: Maximum lenght of branch (see scheme ). Scheme For the maximum performances it s recommended to use a specific shielded cable, as an example BELDEN 4. How the picture shows: ) Insert the module IDC0 rear connnector on the DIN rail free slot ( inserting is univocal because connectors are polarized). ) The module can be fixed on the DIN rail through the clench of the two hooks in the bottom. ELECTICAL CONNECTIONS and Modbus interface Power Supply and Modbus interface are available by using the bus for the Seneca DIN rail, by the rear IDC0 connector or by ZPCDINAL7. accessory. B() A() S3 DIPSWITCHES SETTING The DIPswitches positions defines the Modbus communication parameter: Address and Baud rate. In the following table the Baud rate and address value are listed as a function of the DIPswitches position: 0xxxxxxxx 0xxxxxxxx xxxxxxxx xx BAUD ATE ADDESS 00xxxxxxxx 00 xx00000xx # xx00000xx #... S4 Connection for S4 communication with the Modbus Master systemisthe alternativeto ZPCDINxbus. Note: the indication of S4 connection polarity is not standard so for some masters may be inverted. S3 port can be used to communicate and also to program the module. ZNET or EASY ZPC are the Seneca configuration softwares. S3 communication use thefollowingcommunication parameters : 400,,N, S3 and S4 port use the same Modbus protocol. When S3 communication is established, the serial S4 bus network will be not enable. The S4 port will return automatically active some seconds after the last data packed received from S3 port. The 3, mm DB jack stereo connector for S3 communication can either be assembled as indicated in the following figure or purchased as an accessory (cod. PM000). DIPswitches table... xxxx # 3 BAUD ATE ADDESS From EEprom xx From EEprom TEMINATO xxxxxxxxx0 Disable xxxxxxxxx Enable Advanced settings Inputs channels can be sete in current or voltage. Signal sampling time can be set at 40 ms or 40 ms. Possibility to set a filters for the inputs measured. Possibilty to disable the current test for thermocouples. J K E N Admitted ange THEMOCOUPLE ANGE Linearization Admitted ange Linearization C C C 0,0 C 0,0 C 0,0 C S B 0..7 C 0..7 C 0..0 C 0,0 C 0,0 C 0,03 C C 0,04 C T C 0,04 C Variations of standard parameters are possible by using configuration softwares ZNET and EASYZPC ( For more information about a list of all register and their function consult the USE manual Disposal of Electrical & Electronic Equipment (Applicable throughout the European Union and other European countries with separate collections programs). This symbol, found on your producr or on its packaging, indicates that this product should not be treated as household waste when you wish to dispose of it. Instead, it should be handed over to an applicable collection point for the recycling of electrical & electronic equipment. By ensuring this product is didposed of correctly, you will help prevent potential negative consequences to the environment and human health, which could otherwise be caused by inappropriate disposal of this product. The recycling of materials will help to conserve natural resources. For more detailed information about the recycling of the product, please contact your local city office, waste disposal service of the retail store where you purchased this product. MI0004IE ENGLISH / MI0004IE ENGLISH 4/ MI0004IE ENGLISH / MI0004IE ENGLISH /

4 THE INTENATIONAL CETIFICATION NETWOK EN ZTC CONVETE FO THEMOCOUPLES WITH POINT INSULATION General The ZTC instrument is a digital converter for thermocouples, with eight measuring channels, which are insulated from the power supply and from the serial communication line up to. kv. The same. kv insulation is present among the input channels belonging to different groups of terminals. The instrument is therefore characterized by a six points global insulation. Furthermore, the module has: Facilitated wiring of power supply and serial bus by means of the bus housed in the DIN rail. Communication can be configured by DIPswitch or software. S4 serial communication with MODBUSTU protocol, 3 nodes maximum. Inputs protected against ESD discharges up to 4 kv. High acquisition speed. Measurement of thermocouples: J, K, E, N, S,, B, T. Measurement of the inputs available in the following formats: floatingpoint representation, reverse floatingpoint, fixed dot at bits, in tenths degrees with sign for temperature, tenths of V for voltage. Channels independently activable. Programmable value in case of fault or freezing of last reading. For each pair of inputs belonging to the same group of terminals the following common settings are possible: Measurement in temperature or mv. Filter programmable at eight levels to stabilise reading. ejection programmable at 0 Hz or 0 Hz. Three selectable acquisition speeds (two at 4 bits, one at bits). Cold Junction Compensation. Technical Specifications Power Supply: Consumption : Serial Communication Ports : Protocol : Inputs Inputs : Tables : Temperature ange : Span mv: Impedance : Total : Vdc or.. Vac (0..0 Hz). max 0, W. S4, Baud. S3, 400 Baud, Address:, Parity: NO, Data bits:; Stop bits:. MODBUSTU. Thermocouple types: J,K,E,N, S,, B,T. EN04 (ITS0). Dependent on the thermocouple type (see Thermocouples ange table). 0,..,4 mv. 0 M. 4 bitsadc and 0 Hz ejection: (0,040 % 3 V). bitsadc and 0 Hz ejection: (0,03 % 0 V). 4 bitsadc and 0 Hz ejection : (0,04 % V). bitsadc and 0 Hz ejection: (0,040 % V Installation rules The module is designed to be installed in vertical position on a DIN 477 rail. In order to ensure optimum performance and the longest working life, the module(s) must be supplied adequate ventilation and no raceways or other objects that obstruct the ventilation slots. Never install modules above sources of heat; we recommend installation in the lower part of the control panel. Electric Connections POWE SUPPLYAND S4 COMMUNICATION POT TheelectricconnectionsforpowersupplyandS4buscanbemadeonlybyusing the bus for the Seneca DIN rail. The connections of the bus connector are described on the following figure. S4 S4 A S4 B S3 SEIAL POT Connection cable DB with a 3. mm stereo Jack, can be assembled as indicated in the following figure, or can be bought as an accessory. We advise you that the of the S3 is the same of S4. DBF Tx x IDC0 Power Supply AC Power Supply AC 3. mm Stereo Jack Tx x TX LED ( ED) Data are being transmitted through the S4 communication port. Serial interface For detailed information on S4 serial interface, consult the documentation provided by the website in the section Prodotti/Serie ZPC/MODBUS TUTOIAL. DIPSWITCH SETTING The instrument leaves the factory with all DIPswitches configured in position 0. The settings of the DIPswitches defines the module's communication parameters: address and speed. In all the following tables, the indication corresponds to a DIPswitch set in (ON); no indication is provided when the DIPswitch is set in 0 (OFF). SPEED SW 00 Baud 00 Baud 3400 Baud 700 Baud ADDESS SW (4) Communication Parameters from EEPOM Fixed Address: 0 Fixed Address: 0 Fixed Address: 03 Fixed Address: 04 X X X X X X Fixed Address, as from binary representation. Fixed Address: 3 NOT USED SW Not used. Leave to OFF position. S4 TEMINATO SW 0 Terminator OFF. Terminator ON. (4) The default configuration is the following: Address, 3400, no parity, stop bit. Programming For the product's programming and/or configuration tools, consult the website Duringinitialprogramming, the EEPOM (SW3..inOFFposition) defaultsettingvalues originally programmed as follows can be used: Address=, SPEED=3400baud, PAITY=none, BITNUMBE=, STOPBIT=. The module can also be programmed through the front connector (COM) while paying attention to set the following connection parameters: Address=, Speed=400Baud, PAITY=none, STOPBIT =. The COM communication port behaves in the same way as the S4 bus port except for the communication parameters described above. It also has priority over the S4 serial port and closes after 3 seconds of inactivity. Frontal Panel and Led Position S4 Data eceiving E PW X COM TX S ZTC Presence of Power Supply S4 Data Transmission MI0030E ENGLISH / MI0030E ENGLISH 3/ MI0030E ENGLISH / MI0030E ENGLISH 7/ Test Current : () CM : () () DM : THEMOCOUPLES ANGE Allowed Linearization Allowed Linearization ange ange J C 0,0 C S 0..7 C 0,0 C K C 0,0 C 0..7 C 0,0 C E C 0,0 C B 0..0 C 0,03 C N C 0,04 C T C 0,04 C Other Features ADC : Thermal Drift : Disturbance ejection : Cold Junction : Insulation Voltage : Protection Degree : Environmental conditions : Storage temperature : Signalling by LED : Connections : Box : Dimensions and weight : Standards : <0 na. > db (tested port towards all the other ones at ). Settable to 4 or bits. < 00 ppm/k. Settable to 0 Hz or 0 Hz. < C. 00 Vac among input, power supply and communication ports. 00 Vac among channels belonging to different groups of terminals. IP0. Temperature 0.. C, Saving of parameters in EEPOM guaranteed in range: 0..0 C. Humidity % notcondensing. Altitude: up to 000 m a.s.l. 0.. C. Power Supply,Fail, S4 Communication. emovable 4way screw terminals,, max. mm, 3. mm pitch. ear IDC0 connector for DIN rail. 3. mm stereophonic front jack for S3 (COM) connection. PBT, black. 00 x x 7, mm, 40 g. EN0004/00 (electromagnetic emission, industrial environment) EN000/00 (electromagnetic immunity, industrial environment) EN00/00 (safety). All circuits must be insulated from the other circuits under dangerous voltage with double insulation. The power supply transformer must comply with EN074: Insulated transformers and safety transformers. () The values are valid at the set rejection frequency, with the filter ON. () For disturbance values such as the input signal peak does not exceed the limit of acceptability. Up to 0 C: the input is considered equivalent to a null temperature. INPUTS The module accepts,at input, the following types of thermocouples: J,K,E,N, S,, B,T. For the electrical connections, we advise you to use screened cables. TC TC 3 4 TC 3 TC 4 TC TC TC 7 TC The pairs of channels belonging to the same group of terminals, have the terminal internally connected and are not insulated each other. Instead a. kv insulation is present among the input channels belonging to different groups of terminals. Indications by LED on the frontal panel PW LED (GEEN) Power Supply is present. E LED (YELLOW) Fault: insufficient power supply, faulty channel, faulty TC, internal communication error (signalled if the channel has been activated). X LED ( ED) Data are being received through the S4 communication port. 7 DEFAULT SETTING OF INPUT CHANNELS The default configuration, valid for each pair of channels, belogging to the same group of terminals is the following : Enabling : Type of returned Data : Cold junction Compensation : ejection : ADC / Filter : Thermocouple Type : FILTE SETTING The filtering methods can be set for each pair of channels. The filter consists of two independent lowpass filters: FI Filter, in running average, able to increase the rejection of disturbances to the mains power line frequency and to reduce measuring noise. II exponential Filter,with programmable time constant, able to dampen fluctuations. If an input variation higher than the threshold T is detected, both filters are forced to adapt rapidly to the new value, stabilising it only later on. The value of the threshold in voltage is fixed and equal to 0,7 mv. The filter is set with the three least significant bits of registers MODBUS (refer to section MODBUS EGISTES). The following is a table containing all settable filter types. The propagation time (0%) is indicated for each filter, i.e. the maximum time between the step variation of the input and the variation of the number which represents it in the Modbus register, including the interrogation time of the single register (at kbaud). The times indicated are valid if both the following conditions are respected: ejectionsetto0hz. For 0Hzrejectiondividethetimesby,. ly one of the two thermocouples of the same group is enabled. If both thermocouples are enabled, the propagation times approximately are doubled. SET SAMPLING FILTE POP. TIME 0% Bits ADC Hz TYPE <T >T Not present 4 ms 4 ms Average 3 ms 03 ms 00 Average 40 ms 7 ms () 0 Average exp s 7 ms Average exp Average exp Average exp Average exp 3 s s 4 s 7 s 7 ms 7 ms 7 ms 7 ms () Default Value. Both channels are enabled. C Active 0 Hz ADC: bit, Filter: average, J for both channels. Dimensions and Overall dimensions ISO mm mm 7, mm Thisdocumentisproperty ofsenecasrl. Duplicationandreprodutionareforbidden, ifnotauthorized. Contents ofthepresent documentation refers toproducts andtechnologies described in it. All technical datacontained in the document may be modified without prior notice Content of this documentation is subject to periodical revision. Via Germania, Z.I. CAMIN PADOVA ITALY Tel Fax info@seneca.it MI0030E ENGLISH / MI0030E ENGLISH 4/ MI0030E ENGLISH / MI0030E ENGLISH /

5 THE INTENATIONAL CETIFICATION NETWOK MODBUS EGISTES ZTC has MODBUS bits (words) registers, accessible by S4 or S3 serial communication. In the next paragraphs, we shall describe the supported MODBUS commands, and the functions of the registers. Supported MODBUS Commands Code 03 (*) 04 (*) 0 Holding egisters EGISTE MACHINE ID STATUS_INP Bit Function ead Holding egisters ead Input egisters Write Single egister Write Multiple egisters (*) The two functions have the same effect. The bit Holding egisters have the following structure: Most Significant Bit Bit Index Bit [:]: contain the module's ID: 4. Bit [7:0]: contain the firmware's revision. Status of input channels. eading of word registers up to 3 at a time. eading of word registers up to 3 at a time. Writing of a word register. Writing of word registers up to 3 at a time : Fault on channels and. : Fault on channels 3 and 4. : Fault on channels and. : Fault on channels 7 and. Least Significant Bit Word ( bits): MODBUS egister In the table the notation Bit [x:y] indicates all bits from x to y. For example Bit [:] indicates bit and bit, and serves to illustrate the meaning of the various united combinations of the values of the two bits. emember that MODBUS functions 3, 4, and, of single or multiple writing and reading, can be executed in the following registers. Default values are indicated with the * symbol. : Fault on the TC connected to channel. ADD. /W CHAN_TEN CHAN_FLOAT_H CHAN_FLOAT_L CHAN_FLOAT_H CHAN_FLOAT_L CHAN3_FLOAT_H CHAN3_FLOAT_L CHAN4_FLOAT_H CHAN4_FLOAT_L CHAN_FLOAT_H Channel measurement (tenths of C or 4000 Temperature of channel in tenths of C (or Measurement of channel in floating point (see 400 Temperature of channel in C or voltage in mv Measurement of channel in floating point (see 400 Temperature of channel in C or voltage in mv Measurement of channel in floating point (see 4003 Temperature of channel in C or voltage in mv Measurement of channel in floating point (see 4004 Temperature of channel in C or voltage in mv Measurement of channel 3 in floating point (see 400 Temperature of channel 3 in C or voltage in mv Measurement of channel 3 in floating point (see 400 Temperature of channel 3 in C or voltage in mv Measurement of channel 4 in floating point (see 4007 Temperature of channel 4 in C or voltage in mv Measurement of channel 4 in floating point (see 400 bit of AUX_SETTINGS register: 400 ). Temperature of channel 4 in C or voltage in mv Measurement of channel in floating point (see 400 Temperature of channel in C or voltage in mv JUNCT_TEN_IN7_ Cold Junction Temperature of channels 7 and Cold junction temperature of channels 7 and, in E_CH_CH34 s: Channels, (MSB), Channels 3, 4 (LSB) Bit [:] Bit Bit Bit [3:] E_CH_CH7 s: Channels, (MSB), Channels 7, (LSB) Bit [:] Bit Bit Bit [3:] : voltage error (channels and ). : eception (channels and ). : EEPOM saving (channels and ). : EEPOM saving blocked (channels and ). eserved. : eading CC EEPOM (chan. and ). : voltage error (channels 3 and 4). : eception (channels 3 and 4). : EEPOM saving (channels 3 and 4). : EEPOM saving blocked (channels 3 and 4). eserved. : eading CC EEPOM (chan. 3 and 4 ). : voltage error (channels and ). : eception (channels and ). : EEPOM saving (channels and ). : EEPOM saving blocked (channels and ). eserved. : eading CC EEPOM (chan. and ). : voltage error (channels 7 and ). : eception (channels 7and ). : EEPOM saving (channels 7 and ). : EEPOM saving blocked (channels 7 and ). eserved. : eading CC EEPOM (chan. 7 and ). ESET Module eset /W Write value 0xCCCC to reset the module. Bit [0:] Bit [7:4] Bit [3:0] CONF_CH3_CH4 () CONF_CH_CH () CONF_CH7_CH () AUX_SETTINGS () Bit [4:] Bit Bit 3 Bit Bit Filter of channels and (for details, refer to the FILTE SETTING section ): 000: Not present 00: Average filter Other settings in FILTE SETTING. Thermocouple Type of Channel (see THEMOCOUPLE TYPE Table). Default:Type J. Thermocouple Type of Channel (see THEMOCOUPLE TYPE Table). Default:Type J. Configuration of Channels 3 and egister for the configuration of channels 3 and 4. See egister 4004, refering to channels 3 and 4 instead of channels and. Configuration of Channels and. egister for the configuration of channels and. See egister 4004, refering to channels and instead of channels and. Configuration of Channels 7 and. egister for the configuration of channels 7 and. See egister 4004, refering to channels 7 and instead of channels and. /W 400 /W 4007 /W Additional Configuration egister. 400 /W Floating point interpretation : 0 *: The high word of floating point is transmitted first, then the low word. : The low word of floating point is transmitted first, then the high word. eserved and not modifiable. Action in case of fault on channel : 0 *: The temperature/voltage value is forced to the programmed fault value. : The temperature/voltage value is frozen at the last acquired value before fault is signalled. Action in case of fault on channel (As ). Action in case of fault on channel 3 (As ). Action in case of fault on channel 4 (As ). Action in case of fault on channel (As ). Action in case of fault on channel (As ). Action in case of fault on channel 7 (As ). Action in case of fault on channel (As ). MI0030E ENGLISH / MI0030E ENGLISH / MI0030E ENGLISH 3/ MI0030E ENGLISH / Bit 0 Bit Bit Bit Bit 3 Bit Bit CHAN_TEN CHAN_TEN CHAN3_TEN CHAN4_TEN CHAN_TEN CHAN_TEN CHAN7_TEN : Fault on the TC connected to channel. : Fault on the TC connected to channel 3. : Fault on the TC connected to channel 4. : Fault on the TC connected to channel. : Fault on the TC connected to channel. : Fault on the TC connected to channel 7. : Fault on the TC connected to channel. : Communication with channels and. : Communication with channels 3 and 4. : Communication with channels and. : Communication with channels 7 and. Channel measurement (tenths of C or tenths of V). Temperature of channel in tenths of C (or voltage in tenths of V). Channel measurement (tenths of C or Temperature of channel in tenths of C (or Channel 3 measurement (tenths of C or 4000 tenths of V. Temperature of channel 3 in tenths of C (or Channel 4 measurement (tenths of C or 4000 Temperature of channel 4 in tenths of C (or Channel measurement (tenths of C or tenths of V. Temperature of channel in tenths of C (or Channel measurement (tenths of C or 4000 Temperature of channel in tenths of C (or Channel 7 measurement (tenths of C or 4000 Temperature of channel 7 in tenths of C (or CHAN_FLOAT_L Measurement of channel in floating point (see 4000 Temperature of channel in C or voltage in mv CHAN_FLOAT_H Measurement of channel in floating point (see 400 Temperature of channel in C or voltage in mv CHAN_FLOAT_L Measurement of channel in floating point (see 400 Temperature of channel in C or voltage in mv CHAN7_FLOAT_H Measurement of channel 7 in floating point (see 4003 Temperature of channel 7 in C or voltage in mv CHAN7_FLOAT_L Measurement of channel 7 in floating point (see 4004 Temperature of channel 7 in C or voltage in mv CHAN_FLOAT_H Measurement of channel in floating point (see 400 Temperature of channel in C or voltage in mv CHAN_FLOAT_L Measurement of channel in floating point (see 400 Temperature of channel in C or voltage in mv STATUS_INP Copy of register 4000 containing the status 4007 of the input channels. JUNCT_TEN_IN_ Cold Junction Temperature of channels and. 400 Cold junction temperature of channels and, in JUNCT_TEN_IN3_4 Cold Junction Temperature of channels 3 and Cold junction temperature of channels 3 and 4, in JUNCT_TEN_IN_ Cold Junction Temperature of channels and Cold junction temperature of channels and, in ADD Bit [:] Bit [7:0] () (7) /W egister for the setting of the module's address and parity control. Set the module's address. Permissible values from 0x00 to OxFF (decimal values in the interval of 0 ).Default address:. Set the type of parity control : * : No parity ( NONE ) (Default) : Even parity ( EVEN ) : Odd parity ( ODD ) 400 () (7) BAUD egister for the setting of the baudrate and of 4003 /W the response delay time. Bit [:] Set the value of the serial communicati speed (baudrate) : (0x00) : 400 Baud (0x0) : 00 Baud (0x0) : 00 Baud * (0x03) : 3400 Baud (0x04) : 700 Baud (0x0) : 00 Baud (0x0) : 00 Baud (0x07) : 400 Baud Bit [7:0] Set the response delay time in characters that represents the number of pauses of characters each to be entered between the end of the x message and the start of thetx message. Default value: 0. CONF_CH_CH () Configuration of Channels and /W Channel Activation : 0 : Channel is not active. * :Channel is active. Bit Channel Activation : 0 : Channel is not active. * :Channel is active. Type of returned Data Item (Channels and ): 0* :Measurement in C. : Measurement in mv. Cold junction Compensation Channels and : 0 : not active * : active ejection to mains frequency (Channels and ): 0 *: 0 Hz : 0 Hz VAL_FAULT_ () Value loaded in case of fault on channel 400 /W (expressed as 40003). Default: 000,0. VAL_FAULT_ () Value loaded in case of fault on channel 4000 /W (expressed as 40004). Default: 000,0. VAL_FAULT_3 () Value loaded in case of fault on channel /W (expressed as 4000). Default: 000,0. VAL_FAULT_4 () Value loaded in case of fault on channel /W (expressed as 4000). Default: 000,0. VAL_FAULT_ () Value loaded in case of fault on channel 4003 /W (expressed as 40007). Default: 000,0. VAL_FAULT_ () Value loaded in case of fault on channel 4004 /W (expressed as 4000). Default: 000,0. VAL_FAULT_7 () Value loaded in case of fault on channel /W (expressed as 4000). Default: 000,0. VAL_FAULT_ () Value loaded in case of fault on channel 400 /W (expressed as 4000). Default: 000,0. TABLE: THEMOCOUPLE TYPE FO THE SETTING OF EGISTES BIT THEMOCOUPLE TYPE BIT THEMOCOUPLE TYPE 7 4 TC for Channels, 3, or TC for Channels, 4, or TC J TC J TC K TC K TC TC 0 0 TC S 0 0 TC S TC T TC T 0 0 TC B 0 0 TC B 0 0 TC E 0 0 TC E 0 TC N 0 TC N x x x Not implemented x x x Not implemented The value is memorized in EEPOM memory. () The effect is at the reset (hardware or software) of the module. (7) The value in registers is copied respectively in registers , when the corresponding bit in register 400 is 0. The same value is converted in floatingpoint, and copied on the corresponding floating register. Disposal of Electrical & Electronic Equipment (Applicable throughout the European Union and other European countries with separate collection programs) This symbol, found on your product or on its packaging, indicates that this product should not be treated as household waste when you wish to dispose of it. Instead, it should be handed over to an applicable collection point for the recycling of electrical and electronic equipment. By ensuring this product is disposed of correctly, you will help prevent potential negative consequences to the environment and human health, which could otherwise be caused by inappropriate disposal of this product. The recycling of materials will help to conserve natural resources. For more detailed information about the recycling of this product, please contact your local city office, waste disposal service or the retail store where you purchased this product. ISO00000 Via Germania, Z.I. CAMIN PADOVA ITALY Tel Fax info@seneca.it MI0030E ENGLISH 0/ MI0030E ENGLISH / MI0030E ENGLISH 4/ MI0030E ENGLISH /

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