DAI12-4GY CONTEC | Alldatasheet
Document overview
- Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
- PDF pages: 3
Technical content
Ver.1.01 DAI12-4(FIT)GY 1 F&eIT Series Isolated Analog Output Module DAI12-4(FIT)GY * Specifications, color and design of the products are subject to change without notice. This product can control external devices by converting digital data that is output fr om a, F&eIT-series controller module <CPU-CAxx(FIT)GY, CPU-SBxx(FIT)GY etc> into either voltage or current-based analog signals. The insulation between external signals and the Controller Module permits the use of the Controller Module without compromising the communications features of the latter. The output range is common to different channels, and can be selected from five output ranges: 0 - 10V, 0 - 5V, ±10V, ±5V, and 0 - 20mA. A rotary switch that is provided allows you to set device IDs to help you keep track of device numbers. The system incorporates a screwless connector plug that allows you to easily attach and detach wires without using any special tools. Similar to other F&eIT series products, the system, in the module itself, incorporates a 35mm DIN rail mounting mechanism as a standard item. A connection to a controller module can be effected on a lateral, stack basis in a unique configuration, which permits a simple, smart system configuration without the need for a backplane board. Module …1 First Step Guide …1 CD-ROM [F&eIT Series Setup Disk] *1…1 Interface connector plugs ...2 *1 The CD-ROM contains various software and User’s Manual. Specifications Item Specification Analog output section Output format Bus-isolated voltage/current output Output range Voltage: Bipolar ±10V, ±5V Unipolar 0 - 10V, 0 - 5V (Output voltage ±5mA) Current: 0 - 20mA Output impedance Voltage range: 10 Ω (Max.) Output channel 4 channels Resolution 12 Bits Conversion accuracy *1 Voltage range±3LSB, Current range±5LSB Settling time Voltage range: 10 μsec/ch, Current range: 20μsec/ch Interrupt Either IRQ5 or IRQ7 or IRQ9 *2 Internal sampling timer 10 μsec - 1,073,741,824μsec *1 *3 Common section Internal power consumption 5VDC±5% 400mA(Max.) Maximum distance of signal extension 1.5m Physical dimensions (mm) 25.2(W) x 64.7(D) x 94.0(H) (exclusive of protrusions) Weight (module itself) 100g Module connection method Stack connection by the connector that is provided with the side of module Module installation method One-touch connection to 35mm DIN rails (standard connection mechanism provided in the system) Applicable wire AWG 28 - 20 Applicable plug FK-MC 0,5/12-ST-2,5 (made by PHOENIX CONTACT Corp.) *1 When the environment temperature is near 0ºC or 50ºC, the non-linearity error may become larger. *2 Available only when this product is connected to the CPU-SBxx(FIT)GY . *3 If connected to a DAI12-4(USB)GY , uses the internal timer in the DAI12-4(USB)GY . The setting range is from 1000 to 1,073,741,000 μ sec. Notes! When connecting one of the modules to a controller module, the internal power consumption should be taken into account. If the total current exceeds the capacity of the power supply unit, the integrity of the operation cannot be guaranteed. For further details, please see the Controller Module manual. Current output requires an external power supply. With large external power supply fluctuations (ripple), the conversion precision indicated in the specifications may not be attainable. If this problem occurs, please use a low-ripple power supply. Depending upon the specific cont roller module that is used, some of the functions are not supported. Specification Features Packing List
Ver.1.01 DAI12-4(FIT)GY 2 Installation Environment Requirements Parameter Requirement description Operating temperature 0 - 50 °C Storage temperature -10 - 60 °C Humidity 10 - 90%RH (No condensation) Floating dust particles Not to be excessive Corrosive gases None Line-noise AC line/2kV, Signal line/1kV (IEC1000-4-4Level 3, EN61000-4-4Level 3) Line-Noise resistance Static electricity resistance Contact discharge/4kV (IEC1000-4-2Level 2, EN61000-4-2Level Atmospheric discharge/8kV (IEC1000-4-2Level 3, EN61000-4-2Level 3) Vibration resistance Sweep resistance 10 - 57Hz/semi-amplitude 0.15mm, 57 - 150Hz/2.0G 80minutes each in X, Y, and Z directions (JIS C0040-compliant, IEC68-2-6-compliant) Impact resistance 15G, half-sine shock for 11ms in X, Y , and Z directions (JIS C004-compliant, IEC68-2-27-compliant) Stack Connector Control Circuit Device ID Interface Connector CH0 - CH1 Interface Connector CH2 - CH3 D/A Converter DC/DC Converter Voltage-Current Conversion Reference Isolator (1.2)94.0 25.2 64.7 4.03.5 (1.2) [mm] 14.035.045.0 14.0 31.5 When connecting the Module to an external device, you can use the supplied connector plug. When wiring the Module, strip off approximately 7 - 8 mm of the covering for the cable, and insert the bare wire by pressing the orange button on the connector plug. Releasing the orange button after the wire is inserted to fix the cable. Compatible wires are AWG 28 - 20. Press this section to insert the wire material. - Connector used: 2.5mm pitch, 12-pin type, 4.0A nominal current MC0.5/12-G-2.5 connector (made by Phoenix Contact Corp.) - Applicable plug (bundled): Front-operable spring gauge type FK-MC0,5/12-ST-2,5 plug (made by Phoenix Contact Corp.) Applicable cable: AWG 28 - 20 RUN STATUS DAI12-4 Device ID CH0 CH1 AG AG CH2 CH3 AG AG 7 - 8mm Notes! Removing the connector plug by grasping the cable can break the wire. The Module can be connected to an external device using a 12pin (1 group) connector that is provided on the Module face. CH0 [V] CH0 [C] AG CH1 [V] CH1 [C] AG N.C. N.C. N.C. N.C. N.C. N.C. Analog Output [Voltage output] 0 Analog Output [Current output] 0 Analog Ground Analog Output [Voltage output] 1 Analog Output [Current output] 1 Analog Ground Not connected Not connected Not connected Not connected Not connected Not connected CH0 CH1 CH2 [V] CH2 [C] AG CH3 [V] CH3 [C] AG N.C. N.C. N.C. N.C. N.C. N.C. Analog Output [Voltage output] 2 Analog Output [Current output] 2 Analog Ground Analog Output [Voltage output] 3 Analog Output [Current output] 3 Analog Ground Not connected Not connected Not connected Not connected Not connected Not connected CH2 CH3 Block Diagram How to Connect an Interface Connector Physical Dimensions Physical Dimensions
Ver.1.01 DAI12-4(FIT)GY 3 Connecting with a Flat Cable This example involves connec ting the voltage output and the analog ground for each channel to the input and the ground of an external device, using a flat cable. Voltage Output 0...3 Analog Ground 0...3 TargetModule CableConnector Digital multi-meter, etc. Connecting with a coaxial cable A coaxial cable can be used in si tuations where the module is at a relatively large distance from the external device or when the noise immunity of the module must be improved. In this case, the voltage output and the analog ground for each channel are connected to the input and the ground, respectively, of the external device by using the core wire and the shield braid of the coaxial cable. TargetCoaxial cable Voltage Output 0...3 Analog Ground 0...3 Module Digital multi-meter, etc. Connector Example of Connecting a Negative Load Resister Two types of connection methods can be employed: fixed load and floating load. If the module is used as a load resistance, multiple current loops can be implemented by using the same power supply. The use of current output requires an external power supply (17 - 24V). In such a case, a power supply with a small ripple should be used in order to avoid an adverse impact on the conversion accuracy due to a large power supply ripple. The load resistance R L that is connected to the current output of each channel should be less than 500 Ω, including the wire resistance. Example of Connecting with a Flat Cable Use a flat cable to connect t he voltage output and the analog ground of each channel to the load resistance RL. Connecting to a Floating Load (Flat Cable) Connecting to a Fixed Load (Flat Cable) Current Output 0...3 Analog Ground 0...3 Target Cable Load resistance RL Module FLOATING SUPPLY + -Connector Example of Connecting with a Coaxial Cable A coaxial cable can be used in si tuations where the module is at a relatively large distance from the external device or when the noise immunity of the module must be improved. In this case, the current output and the analog ground for each channel are connected to the load resistance RL of the external device by using the core wire and the shield braid of the coaxial cable. Connecting to a Floating Load (Coaxial Cable) Connecting to a Fixed Load (Coaxial Cable) Coaxial cable Ground 0...3 Current Output 0...3 Module Target FLOATING SUPPLY + -Connector Load resistance RL The controller module distinguishes and keeps track of the modules that are connected to it by assigning device IDs to them. Each module, therefore, should be assigned a unique ID. A Device ID can be assigned in a 0 - 7 range, so that a maximum of eight modules can be distinguished. To connect this this product to the DAI12-4(USB)GY, assign a device ID between 1 and 3. The factory setting for the Device ID is [0]. Setup Method A Device ID can be set by turning the rotary switch on the device face. To set a Device ID, turn the switch knob. Device ID Factory settings: (Device ID = 0) Connecting a Voltage Output Physical Dimensions Physical Dimensions