series USER S MANUAL Analog Unit FEH527d

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1 series SER S MANAL Analog nit FEH527d

2 Preface Thank you for purchasing Fuji Electric Programmable Controller MICREX-SX SPF Series. This ser s Manual describes the specifications of the SPF series analog unit, thermocouple input unit, and resistance thermometer element input unit. Read this manual carefully to ensure correct operation and also read the corresponding user s manuals listed below. Title ser s Manual Hardware, MICREX-SX series SPF ser s Manual Instructions (Standard), MICREX-SX series SPF ser s Manual Instructions (Standard), MICREX-SX series SP ser s Manual Instructions (Standard), MICREX-SX series SPH ser s Manual SX-Programmer Standard <Reference>, MICREX-SX series ser s Manual Instructions (Expert), MICREX-SX series SPF ser s Manual Instructions (Expert), MICREX-SX series SP ser s Manual Instructions (Expert), MICREX-SX series SPH ser s Manual SX-Programmer Expert <Reference>, MICREX-SX series Manual No. Contents FEH526 FEH524 FEH430 FEH588 FEH598 FEH525 FEH202 FEH200 FEH257 Describes the system configuration, hardware specifications and operations of units in the MICREX-SX series SPF. Describes the memory specifications and instructions specific to SPF series. Describes the memory, language and system definitions of the MICREX-SX series SP (SX-mode, Standard loader). Describes the memory, language and system definitions of the MICREX-SX series SPH (SX-mode, Standard loader). Describes the functions and the operations of SX-Programmer Standard. Describes the memory specifications and instructions specific to SPF series. Describes the memory, language and system definitions of the MICREX-SX series SP (SX-mode, Expert loader). Describes the memory, language and system definitions of the MICREX-SX series SPH (SX-mode, Expert loader). Describes the functions and the operations of SX-Programmer Expert. * In addition to the above manuals, the following Fuji Electric Co.,Ltd.site offers various manuals and technical documents associated with MICREX-SX series. RL Notes 1. This manual may not be reproduced in whole or part in any form without prior written approval by the manufacturer. 2. The contents of this manual (including specifications) are subject to change without prior notice. 3. If you find any ambiguous or incorrect descriptions in this manual, please write them down (along with the manual No. shown on the cover) and contact FJI.

3 Safety Precautions e sure to read the "Safety Precautions" thoroughly before using the module. Here, the safety precautions items are classified into "Warning" and "Caution". Warning Caution : Incorrect handling of the device may result in death or serious injury. : Incorrect handling of the device may result in minor injury or physical damage. Even some items indicated by "Caution" may result in a serious accident. oth safety instruction categories provide important information. e sure to strictly observe these instructions. Warning Neve touch any part of charged circuits as terminals and exposed metal portion while the power is turned ON. It may result in an electric shock to the operator. Turn OFF the power before mounting, dismounting, wiring, maintaining or checking, otherwise, electric shock, erratic operation or troubles might occur. Place the emergency stop circuit, interlock circuit or the like for safety outside the PLC. A failure of the PLC might break or cause problems to the machine. When using an expansion right side unit, be sure to mount a healthy unit to stop the SPF system with a fatal fault if the expansion right side unit is dropped. nless a healthy unit is mounted, a dropout of the expansion right side unit is not detected and the SPF system continues operation in the state where the expansion right side unit is dropped.

4 Safety Precautions Caution Do not use one found damaged or deformed when unpacked, otherwise, fire, failure or erratic operation might be caused. Do not shock the product by dropping or tipping it over, otherwise, it might be damaged or troubled. Follow the directions of the instruction manual and user s manual when mounting the product. If mounting is improper, the product might drop or develop problems or erratic operations. se the rated voltage and current mentioned in the instruction manual and user s manual. se beyond the rated values might cause fire, erratic operation or failure. Operate (keep) in the environment specified in the instruction manual and user s manual. High temperature, high humidity, condensation, dust, corrosive gases, oil, organic solvents, excessive vibration or shock, might cause electric shock, fire, erratic operation or failure. Select a wire size to suit the applied voltage and carrying current. Tighten the wire terminals to the specified torque. Inappropriate wiring or tightening might cause fire, malfunction, failure or might cause the product to drop from its mounting. Contaminants, wiring chips, iron powder or other foreign matter must not enter the device when installing it, otherwise, fire, accident, erratic operation or failure might occur. Remove the dust-cover seals of modules after wiring, otherwise, fire, accident, erratic operation or failure might occur. Connect the ground terminal to the ground, otherwise, electric shock or erratic operation might occur. Periodically make sure the terminal screws and mounting screws are securely tightened. Operation at a loosened status might cause fire or erratic operation. Put the furnished connector covers on unused connectors, otherwise, erratic operation or failure might occur. Sufficiently make sure of safety before program change, forced output, starting, stopping or anything else during a run. Wrong operation might break or cause problems to the machine Engage the loader connector in a correct orientation, otherwise, an erratic operation might occur. efore touching the PLC, discharge any static electricity that may have been collected on your body. To discharge it, touch a grounded metallic object. Static electricity might cause erratic operation or failure. e sure to install the electrical wiring correctly and securely, observing the directions of the instruction manual and user s manual. Wrong or loose wiring might cause fire, accident or failure. When disengaging the plug from the outlet, do not pull the cord, otherwiase, break of cable might cause fire or failure. Do not attempt to change system configurations (such as installing or removing expansion block) while the power is ON, otherwise, failure or erratic operation might occur. Do not attempt to repair the module by yourself, but contact your Fuji Electric agent, otherwise, fire, accident or failure might occur. To clean the module, turn power off and wipe the module with a cloth moistened with warm water. Do not use thinner or other organic solvents, as the module surface might become deformed or discolored. Do not remodel or disassemble the product, otherwise, failure might occur. Follow the regulations of industrial wastes when the device is to be discarded. The products covered in this user s manual have not been designed or manufactured for use in equipment or systems which, in the event of failure, can lead to loss of human life. Do not use the products covered in this user s manual for special applications, such as power plant, radiation facilities, railroad, space/flight equipments, lifeline facilities, or medical equipments, where a great effect on human life, body, society, major property or rights may be anticipated and high degree of safety is required. e sure to provide protective measures when using the products covered in this manual in equipment which, in the event of failure, can lead to loss of human life or other grade results. External power supply (such as 24 V DC power supply) which is connected to DC I/O should be strongly isolated from AC power supply, otherwise, accident or failure might occur. (se of EN60950 conforming power supply is recommended.) Do not use the peoducts covered in this user s manual in a residential environment.

5 Revision Printed on * Manual No. Revision contents Jan FEH527 First edition * The manual No. is printed at the bottom right of the cover of this manual. May 2017 FEH527a The specifications of the following products were added. NA3AW03-MR (Front board type analog input/output, 3 channels) NA3AY02-MR (Front board type analog output, 2 channels) NA0AX02-TC (Thermocouple input, 2 channels) NA0AX16-TC (Thermocouple input, 16 channels) NA0AX06-MRTC (Analog input / thermocouple input, 6 channels) NA0AX06-PT (Resistance thermometer element input, 6 channels) July 2017 FEH527b The detailed isolation specifications were added. The following model was deleted. NA0AX06-MRTC (Analog input / thermocouple input unit, 6 channels) Sep FEH527c Cautions for using NA0AX02-TC (Thermocouple input, 2 channels) and NA0AX06-TC (Thermocouple input, 6 channels) were added. Oct FEH527d The safety precautions were revised.

6 Contents Preface Safety Precautions Revision Contents Section 1 Overview 1-1 Product List Features Number of connectable units Analog signal range setting function Parameter setting function Supported Versions Supported version of program loader Supported version of main unit Section 2 Specifications 2-1 General Specifications Functional/Performance Specifications Specification list Conversion characteristics Names and Functions Analog input unit (Type: NA0AX06-MR) Analog output unit (Type: NA0AY02-MR) Analog input/output unit (Type: NA0AW06-MR) Analog output board (Type: NA3AY02-MR) Analog input/output board (Type: NA3AW03-MR) Thermocouple input unit (Type: NA0AX02-TC/NA0AX06-TC/NA0AX16-TC) Resistance thermometer element input unit (Type: NA0AX06-PT) Wiring Analog input Analog output Thermocouple input (Target type: NA0AX02-TC/NA0AX06-TC/NA0AX16-TC) Resistance thermometer element input unit Dimensions Expansion unit Expansion unit Front board Section 3 Programming 3-1 Memory Assignment Analog input unit NA0AX06-MR Analog output unit NA0AY02-MR Analog input/output unit NA0AW06-MR Analog output board NA3AY02-MR Analog input/output board NA3AW03-MR...3-1

7 Contents Thermocouple input unit NA0AX02-TC/NA0AX06-TC/NA0AX16-TC Resistance thermometer element input unit NA0AX06-PT System Definition Registering units Setting parameters Appendix 1 nit Handling Procedure Appendix 1-1 Handling pper Cover and Printed Circuit board...app.1-1 Appendix Handling pper Cover...App.1-1 Appendix Handling Printed circuit board inside unit...app.1-3 Appendix 2 Circuit Isolation lock Diagram Appendix 2-1 Analog Input nit NA0AX06-MR...App.2-1 Appendix 2-2 Analog Output nit NA0AY02-MR...App.2-1 Appendix 2-3 Analog Input/Output nit NA0AW06-MR...App.2-2 Appendix 2-4 Thermocouple Input nit NA0AX02-TC/NA0AX06-TC...App.2-2 Appendix 2-5 Thermocouple Input nit NA0AX16-TC...App.2-3 Appendix 2-6 Resistance Thermometer Element Input nit NA0AX06-PT...App.2-3

8 Section 1 Overview 1-1 Product List The SPF series analog unit and temperature measurement unit include the following models. In this manual, these models may be collectively referred to as analog unit. Type NA0AX06-MR NA0AY02-MR NA0AW06-MR NA3AW03-MR NA3AY02-MR NA0AX02-TC NA0AX06-TC NA0AX16-TC NA0AX06-PT Specification Analog voltage/current input, 6 channels Analog voltage/current output, 2 channels Analog voltage/current input/output, Input 4 channels, Output 2 channels Analog voltage/current input/output, Input 2 channels, Output 1 channel, Front board type Analog voltage/current output, 2 channels, Front board type Thermocouple input, 2 channels Thermocouple input, 6 channels Thermocouple input, 16 channels Resistance thermometer element input, 6 channels 1-2 Features Number of connectable units The analog unit is an expansion unit that is connected on the right-hand side of the SPF series main unit. However, a front board type unit is connected on the front of the main unit. For the front board type unit, only one unit can be connected on the main unit. For the other analog units, up to three units can be connected on the right-hand side of the main unit. Analog unit (front board type) Max. 1 unit Main unit Analog unit Analog unit Analog unit Max. 3 units 1-1

9 Section 1 Overview Analog signal range setting function You can set the analog input and analog output signal range by using the jumper pin of the analog unit. Therefore, a program for the range setting is not required Parameter setting function You can set the parameters of the analog unit by using a program loader. The parameter setting items are as follows: Analog input unit (Type: NA0AX06-MR): Moving average, resolution Analog input/output unit (Type: NA0AW06-MR): Moving average, resolution (for analog input only) Analog input/output board (Type: NA3AW03-MR): Moving average, resolution (for analog input only) Thermocouple input unit (Type: NA0AX02-TC/NA0AX06-TC/NA0AX16-TC) : Thermocouple type, moving average, sampling period (resolution), unit (Celsius or Fahrenheit) Resistance thermometer element input unit (NA0AX06-PT) : Resistance thermometer element type, moving average, sampling period, unit (Celsius or Fahrenheit) 1-3 Supported Versions Supported version of program loader SX-Programmer Expert (D300win) : V or later SX-Programmer Standard : V or later Supported version of main unit V03 or later software version of the main units support analog boards that are connected on the front of them (Type: NA3AY02-MR, NA3AW03-MR). Analog boards cannot be used with a main unit the software version of which is earlier than V

10 2-1 General Specifications Item Specification Remark Physical environmental conditions Mechanical service conditions Electrical service conditions Construction Cooling Operating ambient temperature Storage (transportation) temperature Relative humidity 0 to +55 C IEC to +70 C Pollution degree 2 (Note 1) Corrosion immunity Operating altitude 20 to 95%RH, no condensation (Transport condition: 5 to 95%RH, no condensation) Free from corrosive gases. Not stained with organic solvents 2000 m or less above sea level (Transport condition: 70 kpa or more) Vibration Half amplitude: 0.15mm, Constant acceleration: 19.6 m/s 2 Two hours for each of three mutually perpendicular axes, total six hours. (Note 2) (Note 3) Shock Acceleration peak: 98 m/s 2 Three times for each of three mutually perpendicular axes. Electrostatic discharge Contact discharge: ±4kV, Aerial discharge: ±8kV IEC Radiated, radio-frequency, electromagnetic field EFT/ (Electrical fast transient/burst) 80 to 1000MHz (10V/m) 1.4 to 2.0 GHz (3V/m) 2.0 to 2.7 GHz (1V/m) Equipment power, I/0 power, AC I/O (unshielded): ±2kV Data communication, digital and analog I/O s (except AC unshielded I/O): ±1kV Lightning impulse surge AC equipment power: ±2kV common mode, ±1kV differential mode DC equipment power: ±0.5kV common mode, ±0.5kV differential mode Conducted radio frequency Power frequency magnetic field IEC IEC IEC kHz to 80MHz, 10V IEC Hz, 30A/m IEC Panel-mounted type (open equipment) Air cooling Notes: 1) Pollution degree 2: This pollution does not conduct usually, but under certain circumstances temporary conductivity occurs due to condensation. 2) The unit is fixed by screws to the control panel. When the unit is mounted to the DIN rail, care must be taken that vibrations or shocks will not occur. 3) In an environment where repetitive or continuous vibration occurs, be sure to take vibration-proofing measures. 2-1

11 2-2 Functional/Performance Specifications Specification list (1) Analog input unit NA0AX06-MR Item Type No. of input channels Input impedance Maximum allowable input Analog input range Resolution Specification NA0AX06-MR 6 channels Overall accuracy ±1% *1 A/D conversion value Sampling period Moving average External wire connections Applicable wire size Status indication Voltage: 63.2 kw, Current: 250 W Voltage: ±15V, Current: ±30mA -10 to +10V, -5 to +5V, 0 to 10V, 0 to 5V -20 to 20mA, -10 to 10mA, 0 to 20mA, 0 to 10mA (Collectively set for all channels by the jumper pin in the unit) 12 bits or 14 bits (Set for individual channels by the program loader.) INT type Synchronized with the scan of the main unit. 1 to 16 times (Set for individual channels by the program loader.) 8-pole terminal block (M3) x 2, Tightening torque: 0.59 to 0.78 N m AWG#22-18 * e sure to use shielded twisted pair cables. 5V power supply display, ON when normal (red) Isolation method Not isolated * For the internal circuit, see Appendix 2. Occupied words External power supply Internal current consumption Dimensions Mass 6 words 24V DC, 53mA *Wiring length: 10m or less 5V DC, 25mA 40 (W) x 90 (H) x 80 (D) (mm) Approx. 160g *1 The overall accuracy is the specification for when noise described in Electrical service conditions is not applied. If noise is applied, the overall accuracy may exceed the above specification. *2 Notes on using analog input If connection between the analog unit and an external analog device is broken, the A/D conversion value (analog input value) becomes 0 (zero). 2-2

12 (2) Analog output unit NA0AY02-MR Item Type No. of output channels External load resistance Analog output range Resolution Specification NA0AY02-MR 2 channels Voltage output: 500 W to 1 MW, Current output: 0 to 500 W or less -10 to +10V, -5 to +5V, 0 to 10V, 0 to 5V -20 to 20mA, -10 to 10mA, 0 to 20mA, 0 to 10mA (Collectively set for all channels by the jumper pin in the unit) 14 bits Overall accuracy ±1% Data type of digital output value Output period External wire connections Applicable wire size Status indication INT type Synchronized with the scan of the main unit. 8-pole terminal block (M3) x 2, Tightening torque: 0.59 to 0.78 N m AWG#22-18 * e sure to use shielded twisted pair cables. 5V power supply display, ON when normal (red) Isolation method Not isolated * For the internal circuit, see Appendix 2. Occupied words External power supply Internal current consumption Dimensions Mass 2 words 24V DC, 90mA *Wiring length: 10m or less 5V DC, 33mA 40 (W) x 90 (H) x 80 (D) (mm) Approx. 140g *1 Notes on using analog output The analog unit does not support the hold function. If the main unit stops due to a system error, the analog output value becomes 0 (zero). It is not possible to hold the output status after occurrence of an error or CP stop. 2-3

13 (3) Analog input/output unit NA0AW06-MR Item Type No. of input channels Input impedance Maximum allowable input Analog input range Resolution Specification NA0AW06-MR 4 channels Overall accuracy ±1% *1 A/D conversion value Sampling cycle Moving average No. of output channels External load resistance Analog output range Resolution Voltage input: 63.2 kw, Current input: 250 W Voltage: ±15V, Current: 30mA -10 to +10V, -5 to +5V, 0 to 10V, 0 to 5V -20 to 20mA, -10 to 10mA, 0 to 20mA, 0 to 10mA (Collectively set for all channels by the jumper pin in the unit) 12 bits or 14 bits (Set for each channel by the program loader.) INT type Synchronized with the scan of the main unit. 1 to 16 times (Set for individual channels by the program loader.) 2 channels Voltage output: 500 W to 1 MW, Current output: 0 to 500 W or less -10 to +10V, -5 to +5V, 0 to 10V, 0 to 5V -20 to 20mA, -10 to 10mA, 0 to 20mA, 0 to 10mA (Collectively set for all channels by the jumper pin in the unit) 14 bits Overall accuracy ±1% Data type of digital output value Output cycle External wire connections Applicable wire size Status indication INT type Synchronized with the scan of the main unit. 8-pole terminal block (M3) x 2, Tightening torque: 0.59 to 0.78 N m AWG#22-18 * e sure to use shielded twisted pair cables. 5V power supply display, ON when normal (red) Isolation method Not isolated * For the internal circuit, see Appendix 2. Occupied words External power supply Internal current consumption Mass 6 words 24V DC, 103mA *Wiring length: 10m or less 5V DC, 35mA Approx. 160g *1 The overall accuracy is the specification for when noise described in Electrical service conditions is not applied. If noise is applied, the overall accuracy may exceed the above specification. *2 Notes on using analog input If connection between the analog unit and an external analog device is broken, the A/D conversion value (analog input value) becomes 0 (zero). *3 Notes on using analog output The analog unit does not support the hold function. If the main unit stops due to a system error, the analog output value becomes 0 (zero). It is not possible to hold the output status after occurrence of an error or CP stop. 2-4

14 (4) Analog output board, 2 channels NA3AY02-MR Item Type No. of output channels External load resistance Specification NA3AY02-MR 2 channels Voltage output: 1k W to 1MW, Current output: 0 to 500 W or less Analog output range 0 to +10V 0 to 20mA * Selectable by wiring of the terminal block. Resolution 12 bits Overall accuracy ±1% Data type of digital output value Output period External wire connections Applicable wire size Status indication Isolation method Occupied words Internal current consumption Mass INT type Synchronized with the scan of the main unit. 5-pole European-style terminal block (M2) x 1, Tightening torque: 0.2 N m AWG#28-16 * e sure to use shielded twisted pair cables. None Not isolated 2 words 5V DC, 223mA Approx. 20g *1 Tightening torque for mounting the board on the main unit: 0.2 N m *2 Notes on using analog output The analog unit does not support the hold function. If the main unit stops due to a system error, the analog output value becomes 0 (zero). It is not possible to hold the output status after occurrence of an error or CP stop. 2-5

15 (5) Analog input/output board NA3AW03-MR Item Type No. of input channels Input impedance Maximum allowable input Specification NA3AW03-MR 2 channels Voltage input: 100 kw, Current input: 125 W Voltage: ±15V, Current: 30mA Analog input range 0 to +10V 0 to 20mA * Selectable by wiring of the terminal block. Resolution Overall accuracy ±1% *1 A/D conversion value Sampling cycle Moving average No. of output channels External load resistance 14 bits (Set for each channel by the program loader.) INT type Synchronized with the scan of the main unit. 1 to 16 times (Set for individual channels by the program loader.) 1 channel Voltage output: 2 kw to 1 MW, Current output: 0 to 500 W or less Analog output range 0 to +10V 0 to 20mA * Selectable by wiring of the terminal block. Resolution 12 bits Overall accuracy ±1% Data type of digital output value Output cycle INT type Synchronized with the scan of the main unit. External wire connections Applicable wire size Status indication Isolation method Occupied words Internal current consumption Mass 5-pole European-style terminal block (M2) x 1, Tightening torque: 0.2 N m AWG#28-16 * e sure to use shielded twisted pair cables. None Not isolated 3 words 5V DC, 158mA Approx. 20g *1 The overall accuracy is the specification for when noise described in Electrical service conditions is not applied. If noise is applied, the overall accuracy may exceed the above specification. *2 Tightening torque for mounting the board on the main unit: 0.2 N m *3 Notes on using analog input If connection between the analog unit and an external analog device is broken, the A/D conversion value (analog input value) becomes 0 (zero). *4 Notes on using analog output The analog unit does not support the hold function. If the main unit stops due to a system error, the analog output value becomes 0 (zero). It is not possible to hold the output status after occurrence of an error or CP stop. 2-6

16 (6) Thermocouple input unit NA0AX02-TC/NA0AX06-TC/NA0AX16-TC Item Specification Type NA0AX02-TC NA0AX06-TC NA0AX16-TC No. of input channels 2 channels 6 channels 16 channels Resolution 0.1 C or 1 C *1 Thermocouple type Temperature measurement range Cold junction automatic compensator J, K, R, S, E, T,, N (Collectively set for all channels by the program loader.) J: to C to F K: to C to F T: to C to F E: to C to F N: to C to F : to C to F R: 0.0 to C 32.0 to F S: 0.0 to C 32.0 to F uilt in the unit Overall accuracy ± (1% + 1 C) *2 Data type of A/D conversion value Sampling period Moving average INT type 1 second (high speed) or 2 seconds (low speed) 2 seconds (high speed) or 4 seconds (low speed) 3 seconds (high speed) or 6 seconds (low speed) (Collectively set [high speed or low speed] for all channels by the program loader.) No moving average / 2 / 4 / 8 times (Collectively set for all channels by the program loader.) External wire connections 8-pole European-style terminal block (M2) x 2, Tightening torque: 0.2 N m Applicable wire size AWG#28-16 AWG#22-18 Status indication Isolation method 5V power supply display, ON when normal (red) Transformer (power supply) and photocoupler (signal) * For the internal circuit, see Appendix pole terminal block (M3) x 2, Tightening torque: 0.59 to 0.78 N m Not isolated Occupied words 2 words 6 words 16 words External power supply 24V DC, 21mA 24V DC, 29mA 24V DC, 58mA Internal current consumption *Wiring length: 10m or less 5V DC, 30mA Dimensions 40 (W) x 90 (H) x 80 (D) (mm) 90 (W) x 90 (H) x 80 (D) (mm) Mass Approx. 130g Approx. 140g Approx. 310g *1 The resolution is determined by the setting of the sampling period in the parameter. When the resolution is 1 C: Set to high speed. When the resolution is 0.1 C: Set to low speed. *2 The overall accuracy is the specification for when noise described in Electrical service conditions is not applied. If noise is applied, the overall accuracy may exceed the above specification. *3 Immediately after the main unit is powered on, the A/D conversion value becomes until the analog unit collects analog values from external devices and starts A/D conversion (approx. 10 seconds.) *4 If connection between the analog unit and a temperature sensor is broken, the temperature conversion value becomes

17 (7) Resistance thermometer element input unit NA0AX06-PT Item Type No. of analog input channels Specification NA0AX06-PT 6 channels Resolution 0.1 C or 1 C *1 Applicable resistance thermometer element Temperature measurement range Overall accuracy ±1% *2 Resistance of input wiring Data type of A/D conversion value Sampling period Moving average External wire connections Applicable wire size Status indication Pt100, Pt1000 (JIS or DIN) Pt100: to C ( to F) Pt1000: to C ( to F) 20Ω or less INT type 1 second (high speed) or 2 seconds (low speed) (Collectively set for all channels by the program loader.) No moving average / 2 / 4 / 8 times (Collectively set for all channels by the program loader.) 8-pole terminal block (M3) x 2, Tightening torque: 0.59 to 0.78 N m AWG#22-18 * e sure to use shielded twisted pair cables. 5V power supply display, ON when normal (red) Isolation method Not isolated * For the internal circuit, see Appendix 2. Occupied words External power supply Internal current consumption Dimensions Mass 6 words 24V DC, 16mA *Wiring length: 10m or less 5V DC, 32mA 40 (W) x 90 (H) x 80 (D) (mm) Approx. 140g (excl. expansion cable) *1 The resolution is determined by the setting of the sampling period in the parameter. When the resolution is 1 C: Set to high speed. When the resolution is 0.1 C: Set to low speed. *2 The overall accuracy is the specification for when noise described in Electrical service conditions is not applied. If noise is applied, the overall accuracy may exceed the above specification. *3 Immediately after the main unit is powered on, the A/D conversion value becomes until the analog unit collects analog values from external devices and starts A/D conversion (approx. 10 seconds.) *4 If connection between the analog unit and a temperature sensor is broken, the temperature conversion value becomes

18 2-2-2 Conversion characteristics (1) Analog input 1) 0 to 5V / 0 to 10mA (when set at NIPOLAR) A/D conversion value (INT type) (4095) * The value in ( ) is the A/D conversion value when 12 bits is selected for the resolution. 0 5V/10mA Analog input voltage/current 2) 0 to 5V / 0 to 10mA (when set at IPOLAR) A/D conversion value (INT type) 8191 (2047) 0V/0mA 0 5V/10mA Analog input voltage/current * The values in ( ) are the A/D conversion values when 12 bits is selected for the resolution (-2048) 3) 0 to 10V / 0 to 20mA (when set at NIPOLAR) A/D conversion value (INT type) (4095) *2 *1: The value in ( ) is the A/D conversion value when 12 bits is selected for the resolution. *2: for a front board 0 10V/20mA Analog input voltage/current 2-9

19 4) 0 to 10V / 0 to 20mA (when set at IPOLAR) A/D conversion value (INT type) 8191 (2047) 0V/0mA 0 10V/20mA Analog input voltage/current * The values in ( ) are the A/D conversion values when 12 bits is selected for the resolution (-2048) 5) -5 to 5V / -10 to 10mA (when set at NIPOLAR) A/D conversion value (INT type) (4095) * The value in ( ) is the A/D conversion value when 12 bits is selected for the resolution. -5V/-10mA 0 5V/10mA Analog input voltage/current 6) -5 to 5V / -10 to 10mA (when set at IPOLAR) A/D conversion value (INT type) 8191 (2047) -5V/-10mA 0 5V/10mA Analog input voltage/current * The values in ( ) are the A/D conversion values when 12 bits is selected for the resolution (-2048) 2-10

20 7) -10 to 10V / -20 to 20mA (when set at NIPOLAR) A/D conversion value (INT type) (4095) (2047) 8191 * The values in ( ) are the A/D conversion values when 12 bits is selected for the resolution. 0-10V/-20mA 10V/20mA Analog input voltage/current 8) -10 to 10V / -20 to 20mA (when set at IPOLAR) A/D conversion value (INT type) 8191 (2047) -10V/-20mA 0 10V/20mA Analog input voltage/current * The values in ( ) are the A/D conversion values when 12 bits is selected for the resolution (-2048) 2-11

21 (2) Analog output 1) 0 to 5V / 0 to 10mA (when set at NIPOLAR) Analog output voltage/current 5V/10mA D/A conversion value (INT type) 2) 0 to 5V / 0 to 10mA (when set at IPOLAR) Analog output voltage/current 5V/10mA V/0mA 8191 D/A conversion value (INT type) 3) 0 to 10V / 0 to 20mA (when set at NIPOLAR) Analog output voltage/current 10V/20mA 0 D/A conversion value (INT type) * for a front board 2-12

22 4) 0 to 10V / 0 to 20mA (when set at IPOLAR) Analog output voltage/current 10V/20mA V/0mA 8191 D/A conversion value (INT type) 5) -5 to 5V / -10 to 10mA (when set at NIPOLAR) Analog output voltage/current 5V/10mA -5V/-10mA D/A conversion value (INT type) 6) -5 to 5V / -10 to 10mA (when set at IPOLAR) Analog output voltage/current 5V/10mA D/A conversion value (INT type) -5V/-10mA 2-13

23 7) -10 to 10V / -20 to 20mA (when set at NIPOLAR) Analog output voltage/current 10V/20mA -10V/-20mA D/A conversion value (INT type) 8) -10 to 10V / -20 to 20mA (when set at IPOLAR) Analog output voltage/current 10V/20mA D/A conversion value (INT type) -10V/-20mA 2-14

24 2-3 Names and Functions Analog input unit (Type: NA0AX06-MR) (1) Names The jumper pins in the analog input unit are used to change the analog signal range and digital value range. Therefore, remove the upper cover and control board when setting the jumper pin. 2) Terminal block Expansion connector (IN) 1) Status indication LED Expansion connector (OT) Nameplate 2) Terminal block 3) JP1 5) JP5 (CH1) 5) JP5 (CH0) 4) JP3 4) JP2 5) JP7 (CH3) 5) JP6 (CH2) 5) JP8 (CH4) 5) JP9 (CH5) Pin layout of control board (When the upper cover is removed) Pin layout of I/O board (When the control board is removed) <Notes on mounting/removing the upper cover and control board> When handling the analog unit, remove it from the control panel, turn off the power, and disconnect other units. The procedure for handling the upper cover and printed circuit board, see Appendix 1 nit Handling Procedure. efore mounting/removing the upper cover or handling the printed circuit board, be sure to eliminate static electricity. 2-15

25 (2) Functions 1) Status indication LED Status indication LED Status Specification PWR of analog input unit ON (red) While 5V DC power is normally supplied. 2) Terminal block These are terminals for 24V DC power supply to operate the analog unit and analog input signal. * For the wiring method, see 2-4 Wiring. NA0AX06-MR 3) JP1: Digital value range selection This jumper pin is used to set the digital value range. Digital value range JP1 setting to to ) JP2 and JP3: Analog input range selection These jumper pins are used to set the analog signal range for six channels in a batch. 5) JP4 to 9: Voltage/current selection This jumper pin is used to select voltage or current for each channel. Signal range JP3 setting JP2 setting 0 to 10V or 0 to 20mA 0 to 5V or 0 to 10mA -10 to 10V or -20 to 20mA 5V 10V 5V 10V 5V 10V Voltage/current Voltage Current Setting of JP4 (CH0) to JP9 (CH5) V I V I -5 to 5V or -10 to 10mA 5V 10V * When handling the setting pins on the printed circuit board, be sure to turn OFF the unit power. Securely mount them by using tweezers. 2-16

26 2-3-2 Analog output unit (Type: NA0AY02-MR) (1) Names The jumper pins in the analog output unit are used to change the analog signal range and digital value range. Therefore, remove the upper cover and control board when setting the jumper pin. 2) Terminal block Expansion connector (IN) 1) Status indication LED Expansion connector (OT) Nameplate 2) Terminal block NA0AY02-MR 5) JPA (CH0) 4) JP (CH0) 5) JPA (CH1) 4) JP (CH1) 3) JP1 Pin layout of control board (When the upper cover is removed) <Notes on mounting/removing the upper cover and control board> When handling the analog unit, remove it from the control panel, turn off the power, and disconnect other units. The procedure for handling the upper cover and printed circuit board, see Appendix 1 nit Handling Procedure. efore mounting/removing the upper cover or handling the printed circuit board, be sure to eliminate static electricity. 2-17

27 (2) Functions 1) Status indication LED Status indication LED Status Specification PWR of analog output unit ON (red) While 5V DC power is normally supplied. 2) Terminal block These are terminals for 24V DC power supply to operate the analog unit and analog input signal. * For the wiring method, see 2-4 Wiring. 3) JP1: Digital value range selection This jumper pin is used to set the digital value range. Digital value range to to JP1 setting 4) JPA and JP: Analog output range selection Signal range JPA setting JP setting 0 to 10V 10V 5V -10 to 10V V I 10V 5V 0 to 5V 10V 5V -5 to 5V 10V 5V 0 to 20mA 10V 5V -20 to 20mA V I 10V 5V 0 to 10mA 10V 5V -10 to 10mA 10V 5V * When handling the setting pins on the printed circuit board, be sure to turn OFF the unit power. Securely mount them by using tweezers. 2-18

28 I I Analog input/output unit (Type: NA0AW06-MR) (1) Names The jumper pins in the analog input/output unit are used to change the analog signal range and digital value range. Therefore, remove the upper cover and control board when setting the jumper pin. 2) Terminal block Expansion connector (IN) 1) Status indication LED Expansion connector (OT) Nameplate 2) Terminal block NA0AW06-MR CH0 CH0 V 10V 5V CH1 CH1 4) JPA V 5) JP 3) JP1 10V 5V D/A JP1 A/D 6) JP3 6) JP4 5V 10V 7) JP5 (CH0) to JP8 (CH3) Pin layout of control board (When the upper cover is removed) Pin layout of I/O board (When the control board is removed) <Notes on mounting/removing the upper cover and control board> When handling the analog unit, remove it from the control panel, turn off the power, and disconnect other units. The procedure for handling the upper cover and printed circuit board, see Appendix 1 nit Handling Procedure. efore mounting/removing the upper cover or handling the printed circuit board, be sure to eliminate static electricity. 2-19

29 (2) Functions 1) Status indication LED Status indication LED Status Specification PWR of analog input/output unit ON (red) While 5V DC power is normally supplied. 2) Terminal block These are terminals for 24V DC power supply to operate the analog unit and analog input signal. * For the wiring method, see 2-4 Wiring. 3) JP1: Digital value range selection This jumper pin is used to set the digital value range for analog output (upper side) and analog input (lower side) Digital value range JP1 setting to 8191 Analog output Analog input 0 to Analog output Analog input 4) JPA and 5) JP: Analog output range selection Signal range JPA setting JP setting 0 to 10V 10V 5V -10 to 10V V I 10V 5V 0 to 5V 10V 5V -5 to 5V 10V 5V 0 to 20mA 10V 5V -20 to 20mA V I 10V 5V 0 to 10mA 10V 5V -10 to 10mA 10V 5V * When handling the setting pins on the printed circuit board, be sure to turn OFF the unit power. Securely mount them by using tweezers. 2-20

30 6) JP3 and JP4: Analog input range selection Signal range JP3 setting JP4 setting 0 to 10V or 0 to 20mA 5V 10V 0 to 5V or 0 to 10mA 5V 10V -10 to 10V or -20 to 20mA 5V 10V -5 to 5V or -10 to 10mA 5V 10V 7) JP5 to 8: Input voltage/current selection This jumper pin is used to select voltage or current for each channel. Voltage/current Setting of JP5 (CH0) to JP8 (CH3) I V I V Voltage Current * When handling the setting pins on the printed circuit board, be sure to turn OFF the unit power. Securely mount them by using tweezers. 2-21

31 2-3-4 Analog output board (Type: NA3AY02-MR) (1) Names VO0+ IO0+ VO1+ IO1+ 1) Terminal block GND (2) Functions 1) Terminal block These are terminals for analog output signal. (M2, 5-pole terminal block x 1) Tightening torque: 0.2 N m * For the wiring method, see 2-4 Wiring Analog input/output board (Type: NA3AW03-MR) (1) Names VI0+ II0+ VO0+ IO0+ 1) Terminal block VI1+ II1+ GND GND (2) Functions 1) Terminal block These are terminals for analog input/output signal. (M2, 5-pole terminal block x 2) Tightening torque: 0.2 N m * For the wiring method, see 2-4 Wiring. <Notes on handling a front board> efore handling a front board, be sure to eliminate static electricity. 2-22

32 2-3-6 Thermocouple input unit (Type: NA0AX02-TC/NA0AX06-TC/NA0AX16-TC) (1) Names 2) Terminal block 2) Terminal block Expansion connector (IN) Expansion connector (OT) Expansion connector (IN) Expansion connector (OT) Nameplate Nameplate 1) Status indication LED 1) Status indication LED 2) Terminal block NA0AX02-TC NA0AX06-TC 2) Terminal block Expansion connector (IN) Expansion connector (OT) Nameplate 1) Status indication LED 2) Terminal block NA0AX16-TC 2-23

33 (2) Functions 1) Status indication LED Status indication LED Status Specification PWR of thermocouple input unit ON (red) While 5V DC power is normally supplied. 2) Terminal block These are terminals for 24V DC power supply to operate the unit and thermocouple input signal. * For the wiring method, see 2-4 Wiring. * When performing wiring of NA0AX02-TC and NA0AX06-TC, take extra care not to scratch the parts boxed in red in the figure below with the tip of the screwdriver, and not to enter wiring waste inside the unit. Otherwise, a fault may occur. 2-24

34 2-3-7 Resistance thermometer element input unit (Type: NA0AX06-PT) (1) Names 2) Terminal block Expansion connector (IN) 1) Status indication LED Expansion connector (OT) Nameplate 2) Terminal block (2) Functions 1) Status indication LED Status indication LED Status Specification PWR of resistance thermometer element input unit ON (red) While 5V DC power is normally supplied. 2) Terminal block These are terminals for 24V DC power supply to operate the unit and sensor input. * For the wiring method, see 2-4 Wiring. 2-25

35 2-4 Wiring Analog input (1) Target type: NA0AX06-MR/NA0AW06-MR NA0AX06-MR/NA0AW06-MR +15V 15V 24V+ 24V +24V DC External power supply + - V I I0+ I0 shielded twisted pair cable CH0 Analog device (Example of voltage input) + - V I I1+ I1 shielded twisted pair cable CH1 Analog device (Example of current input) AG + V I5+ - I I5 Voltage/current selection shielded twisted pair cable CH5 Analog device (Example of voltage input) * p to CH3 for NA0AW06-MR *1 nused channels shall basically be short-circuited. *2 Ground shielded wires at one point on the PLC side (Grounding resistance of 100Ω or less). However, when shielded wires had better be grounded on the external device side due to the condition of external noise, their ends on the PLC side must be open. *3 Keep signal wires that go out of the analog unit sufficiently away from high-voltage or power cables, and avoid parallel wiring. *4 Avoid wiring the signal cables in the vicinity of load cables coming from devices other than PLC or bundling them with such cables. *5 Keep the signal cables sufficiently away from circuits where high frequencies occur, such as inverter main load circuit. 2-26

36 (2) Target type: NA3AW03-MR NA3AW03-MR For voltage + 25k 75k VI0+ shielded twisted pair cable *6 CH0 Analog device II0+ (Example of voltage input) For current VI1+ II1+ shielded twisted pair cable CH1 Analog device (Example of current input) GND *1 nused channels shall basically be short-circuited. (Voltage signal terminal - Current signal terminal - GND) The signal terminal on the unused side of the used channel must be open. Example: When CH0 is used as voltage input, II0+ terminal must be open. *2 Ground shielded wires at one point on the PLC side (Grounding resistance of 100Ω or less). However, when shielded wires had better be grounded on the external device side due to the condition of external noise, their ends on the PLC side must be open. *3 Keep signal wires that go out of the analog unit sufficiently away from high-voltage or power cables, and avoid parallel wiring. *4 Avoid wiring the signal cables in the vicinity of load cables coming from devices other than PLC or bundling them with such cables. *5 Keep the signal cables sufficiently away from circuits where high frequencies occur, such as inverter main load circuit. *6 It is recommended to connect a ceramic capacitor (0.1 to 0.4μF) to reduce noise. 2-27

37 2-4-2 Analog output (1) Target type: NA0AY02-MR and NA0W06-MR NA0AY02-MR/NA0AW06-MR +15V 15V 24V+ 24V +24V DC External power supply V I O0+ O0 shielded twisted pair cable CH0 Analog device (Example of voltage output) AG V O1+ I O1 Voltage/current selection CH1 Analog device (Example of current output) *1 nused channels shall basically be short-circuited. *2 Ground shielded wires at one point on the PLC side (Grounding resistance of 100Ω or less). However, when shielded wires had better be grounded on the external device side due to the condition of external noise, their ends on the PLC side must be open. *3 Keep signal wires that go out of the analog unit sufficiently away from high-voltage or power cables, and avoid parallel wiring. *4 Avoid wiring the signal cables in the vicinity of load cables coming from devices other than PLC or bundling them with such cables. *5 Keep the signal cables sufficiently away from circuits where high frequencies occur, such as inverter main load circuit. 2-28

38 (2) Target type: NA3AY02-MR and NA0W03-MR NA3AY02-MR/NA3AW03-MR V VO0+ shielded twisted pair cable *6 CH0 Analog device I IO0+ (Example of voltage output) V I VO1+ IO1+ shielded twisted pair cable CH1 Analog device (Example of current output) GND * Only CH0 for NA3AW03-MR *1 nused channels shall basically be short-circuited. *2 Ground shielded wires at one point on the PLC side (Grounding resistance of 100Ω or less). However, when shielded wires had better be grounded on the external device side due to the condition of external noise, their ends on the PLC side must be open. *3 Keep signal wires that go out of the analog unit sufficiently away from high-voltage or power cables, and avoid parallel wiring. *4 Avoid wiring the signal cables in the vicinity of load cables coming from devices other than PLC or bundling them with such cables. *5 Keep the signal cables sufficiently away from circuits where high frequencies occur, such as inverter main load circuit. *6 It is recommended to connect a ceramic capacitor (0.1 to 0.4μF) to reduce noise. 2-29

39 2-4-3 Thermocouple input (Target type: NA0AX02-TC/NA0AX06-TC/NA0AX16-TC) NA0AX02-TC/NA0AX06-TC/NA0AX16-TC 24V+ +24V DC 24V External power supply + TC0+ TC0- + Thermocouple sensor + TC1+ TC1- + Thermocouple sensor + TC15+ TC15- + Thermocouple sensor Multiplexer * p to TC1 for NA0AX02-TC p to TC5 for NA0AX06-TC 2-30

40 2-4-4 Resistance thermometer element input unit NA0AX06-PT 24V+ 24V +24V DC External power supply P0+ P0 PT P1+ P1 P5+ P5 PT Multiplexer COM *1 When this unit is used under high noise environment, ground grounding terminal (grounding resistance of 100Ω or less). *2 For wiring of Po+, Po-, and COM, use the same length of wires so that the impedance becomes equal. 2-31

41 2-5 Dimensions Expansion unit 1 <Target type> Type NA0AX06-MR NA0AY02-MR NA0AW06-MR NA0AX02-TC NA0AX06-TC NA0AX06-PT Specification Analog voltage/current input, 6 channels Analog voltage/current output, 2 channels Analog voltage/current input/output, Input 4 channels, Output 2 channels Thermocouple input, 2 channels Thermocouple input, 6 channels Resistance thermometer element input, 6 channels 20 2 Φ4.5 nit: mm (97)

42 2-5-2 Expansion unit 2 <Target type> Type NA0AX16-TC Specification Thermocouple input, 16 channels 4 2 Φ4.5 nit: mm (97) Front board <Target type> Type NA3AW03-MR NA3AY02-MR Specification Analog voltage/current input/output, Input 2 channels, Output 1 channel, Front board type Analog voltage/current output, 2 channels, Front board type 51 nit: mm 47 * The left figure shows the appearance of NA3AY02-MR. NA3AW03-MR has the same dimensions. * There is a screw hole for mounting a front board inside the cover. 2-33

43 Section 3 Programming 3-1 Memory Assignment Analog input unit NA0AX06-MR WXo.0 WXo.1 WXo.2 WXo.3 WXo.4 WXo.5 CH0 A/D conversion value (INT type) CH1 A/D conversion value (INT type) CH2 A/D conversion value (INT type) CH3 A/D conversion value (INT type) CH4 A/D conversion value (INT type) CH5 A/D conversion value (INT type) Analog output unit NA0AY02-MR WYo.0 WYo.1 CH0 D/A conversion value (INT type) CH1 D/A conversion value (INT type) Analog input/output unit NA0AW06-MR WXo.0 WXo.1 WXo.2 WXo.3 WYo.4 WYo.5 CH0 A/D conversion value (INT type) CH1 A/D conversion value (INT type) CH2 A/D conversion value (INT type) CH3 A/D conversion value (INT type) CH4 D/A conversion value (INT type) CH5 D/A conversion value (INT type) Analog output board NA3AY02-MR WYo.0 WYo.1 CH0 D/A conversion value (INT type) CH1 D/A conversion value (INT type) Analog input/output board NA3AW03-MR WXo.0 WXo.1 WYo.2 CH0 A/D conversion value (INT type) CH1 A/D conversion value (INT type) CH2 D/A conversion value (INT type) * The unit No. registered in the system definition is entered in o. 3-1

44 Section 3 Programming Thermocouple input unit NA0AX02-TC/NA0AX06-TC/NA0AX16-TC (1) NA0AX02-TC WXo.0 WXo.1 T0 Temperature conversion value (INT type) T1 Temperature conversion value (INT type) (2) NA0AX06-TC WXo.0 WXo.1 WXo.2 WXo.3 WXo.4 WXo.5 T0 Temperature conversion value (INT type) T1 Temperature conversion value (INT type) T2 Temperature conversion value (INT type) T3 Temperature conversion value (INT type) T4 Temperature conversion value (INT type) T5 Temperature conversion value (INT type) (3) NA0AX16-TC WXo.0 WXo.1 WXo.2 WXo.3 WXo.4 WXo.5 WXo.6 WXo.7 WXo.8 WXo.9 WXo.10 WXo.11 WXo.12 WXo.13 WXo.14 WXo.15 T0 Temperature conversion value (INT type) T1 Temperature conversion value (INT type) T2 Temperature conversion value (INT type) T3 Temperature conversion value (INT type) T4 Temperature conversion value (INT type) T5 Temperature conversion value (INT type) T6 Temperature conversion value (INT type) T7 Temperature conversion value (INT type) T8 Temperature conversion value (INT type) T9 Temperature conversion value (INT type) T10 Temperature conversion value (INT type) T11 Temperature conversion value (INT type) T12 Temperature conversion value (INT type) T13 Temperature conversion value (INT type) T14 Temperature conversion value (INT type) T15 Temperature conversion value (INT type) Resistance thermometer element input unit NA0AX06-PT WXo.0 WXo.1 WXo.2 WXo.3 WXo.4 WXo.5 P0 Temperature conversion value (INT type) P1 Temperature conversion value (INT type) P2 Temperature conversion value (INT type) P3 Temperature conversion value (INT type) P4 Temperature conversion value (INT type) P5 Temperature conversion value (INT type) * The unit No. registered in the system definition is entered in o. 3-2

45 Section 3 Programming 3-2 System Definition Registering units Connect the analog unit on the right of the main unit or the unit that is connected on the right of the main unit. However, a front board type unit must be connected on the front of the main unit. <Example of system configuration> NA3AW03-MR (Front board type) NA0AX06-MR Main unit <How to register units> 1) Open the system definition screen and register the unit that is connected below the main unit (NA0AX06-MR in this example). Right-click here. 2) Right-click the main unit and left-click [Insert]. The Module insert dialog box opens. Select NA0AX06-MR Analog Input 6CH from the [Outline specification] box and then click the [OK] button. The unit is registered. 3-3

46 Section 3 Programming 3) Right-click the main unit and left-click [Insert]. The Module insert dialog box opens. Select Front oard for the [Module group type], and NA3AW03-MR Mixed Analog 3CH from the [Outline specification] box. Then, click the [OK] button. The unit is registered. The front board is connected on the front of the main unit and registered below the expansion right side unit in the configuration definition tree. The unit station No. is fixed to

47 Section 3 Programming Setting parameters (1) Analog input unit (Target type: NA0AX06-MR, NA0AW06-MR, NA3AW03-MR) For an analog input unit, set the resolution and moving average execution times. Parameter Setting range Resolution 14 bits, 12 bits, or 14 bits (12 bits) * Moving average execution times 1 (No moving average) to 16 times * What does the 14 bits (12 bits) of the resolution mean? This means the resolution is 14 bits, however, the lower two bits are fixed to 0. The A/D conversion value range is the same as for 14 bits as shown below, however, the value increments or decrements by 4. NIPOLAR: 0 to 16000, IPOLAR: to 8000 <How to set parameters> 1) Right-click the analog unit registered in the system definition screen and left-click [Properties]. The Module properties dialog box opens. * The setting procedure is the same for a front board type unit. 3-5

48 Section 3 Programming 2) Click the [Parameter] button to display the Analog Input nit parameter setting dialog box. Set the resolution (data format) and moving average for each channel, and then click the [OK] button. 3-6

49 Section 3 Programming (2) Thermocouple input unit (Target type: NA0AX02-TC, NA0AX06-TC, NA0AX16-TC) For a thermocouple input unit, set the sensor type of the thermocouple, moving average execution times, sampling period, and unit. Parameter Sensor type Moving average Sampling period nit Setting range J: -200 to 1200 C K: -200 to 1200 C T: -190 to 380 C E: -190 to 1000 C N: -200 to 1000 C : 350 to 1800 C R: 0 to 1800 C S: 0 to 1700 C No moving average, 2, 4, or 8 times High speed or low speed Celsius or Fahrenheit <How to set parameters> 1) Right-click the thermocouple input unit registered in the system definition screen and left-click [Properties]. The Module properties dialog box opens. 2) Click the [Parameter] button to display the Temperature Measurement nit parameter setting dialog box. Set the sensor type, moving average, sampling period, and unit for all channels in a batch, and then click the [OK] button. 3-7

50 Section 3 Programming (3) Resistance thermometer element input unit (Target type: NA0AX06-PT) For a resistance thermometer element input unit, set the sensor type of the resistance thermometer element, moving average execution times, sampling period, and unit. Parameter Sensor type Moving average Sampling period nit Setting range PT100-DIN: PT100-JIS: PT1000-DIN: PT1000-JIS: No moving average, 2, 4, or 8 times High speed (1 second) or low speed (2 seconds) Celsius or Fahrenheit <How to set parameters> 1) Right-click the thermocouple input unit registered in the system definition screen and left-click [Properties]. The Module properties dialog box opens. 2) Click the [Parameter] button to display the Temperature Measurement nit parameter setting dialog box. Set the sensor type, moving average, sampling period, and unit for all channels in a batch, and then click the [OK] button. 3-8

51 Appendix 1 nit Handling Procedure Appendix 1-1 Handling pper Cover and Printed Circuit board Appendix Handling pper Cover (1) How to remove the upper cover 1) Hold the unit with the both hands (with the nameplate facing forward) as shown below. Hold the lower case with the left hand and the upper cover with the right hand. Lower case pper cover 2) Lightly turn the lower case of the unit and the upper cover in the direction of each arrow. A small gap is made between one side of the lower case of the unit and the upper cover as shown below (see the area marked with an asterisk). * * Notes: efore mounting/removing the upper cover or handling the printed circuit board, be sure to eliminate static electricity. App.1-1

52 Appendix 1 nit Handling Procedure 3) Pull the upper cover and the lower case of the unit to the right and left. Then, the upper cover is removed from the lower case as shown below. (2) How to mount the upper cover 1) Hold the lower case with the nameplate facing forward and the upper cover with the side having the larger notch up. Then, mount the upper cover straight on the lower case (you will hear a clicking noise when inserted). * The right and left notches of the upper cover are different in size. Notes: efore mounting/removing the upper cover or handling the printed circuit board, be sure to eliminate static electricity. App.1-2

53 Appendix 1 nit Handling Procedure Appendix Handling Printed circuit board inside unit (1) How to remove the printed circuit board 1) The image below shows the unit with the upper cover removed. 2) The printed board is fixed at the printed board fixing hole of the lower case. 3) Pull the upper part of the lower case rightward and leftward, detach the printed board from the fixing hole, and then, pull it out slowly. (2) How to mount the printed circuit board To mount the printed circuit board, reverse the order of removal described in (1). Notes: efore mounting/removing the upper cover or handling the printed circuit board, be sure to eliminate static electricity. App.1-3

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