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IDC32-1.1

Control board
In Stock

Product Describe:

Control board
Digital Intelligence
Modular Eurocard Design
Robust Connectivity

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Technical specifications for IDC32-1.1

Technical specifications for IDC32-1.1

  • Manufacturer:
    EMG
  • Product Category:
    General Automation
  • Spare Part Number:
    IDC32-1.1
  • Estimated shipping dimensions:
    16x10x2cm
  • Weight:
    0.3 kg
  • Tariff Code:
    8537101190
  • Counliy of origin:
    Germany
  • Sampling frequency:
    1 ms -5 ms
  • A/D conversion accuracy:
    12 bit
  • Baud Rate:
    Supports 125 kbit/s to 1 Mbit/s
  • Node ID:
    Set through onboard dip switch or software
  • Voltage signal:
    -10V to+10V
  • Current signal:
    4-20mA
  • Interface type:
    RS232 or through bus transfer
  • Supporting tools:
    MCU16 Tools software package

Information

Information

Overview Manuals Core functionality Internal Device Protection
The EMG IDC32-1.1 is an industrial control circuit board produced by EMG Automation GmbH in Germany, mainly used as the core component of its central control system (such as Guard PLC platform).
    • Industrial Hardening
    • High anti-interference design
    • Multi source signal access
The control board adopts a standard Eurocard plug-in structure, which can be seamlessly integrated into a 19 inch rack. This modular design not only simplifies the wiring of complex control cabinets, but also significantly improves the efficiency of on-site maintenance - in the event of a fault, operators can quickly replace the board card to achieve production recovery.

Important Notice: Other accessories, manuals, cables, calibration data, software, etc. are not included with this equipment unless listed in the above stock item description. 
EMG ​​IDC32-1.1 Control board Manuals, Datasheets, Drivers, Link Important Notice: Other accessories, manuals, cables, calibration data, software, etc. are not included with this equipment unless listed in the above stock item description.
1. Signal processing and conversion Sensor interface: Receive raw analog signals from high-frequency (HF), photoelectric, or inductive sensors. Analog to digital conversion: Convert the edge or center position signals captured by sensors into high-precision digital data, providing real-time position feedback to the controller.

2. Closed loop position control (SPC/iCON core) Automatic centering control: Automatically calculate correction instructions based on a preset deviation threshold. It is a computing node in the SPC16 or EMG iCON system, ensuring that the strip steel does not deviate from the center of the production line during high-speed operation. Multiple working modes: supports Automatic, Manual, Centre, and Jog modes. The operator can switch control strategies at any time through the system.

3. System communication and synchronization CANopen bus connection: IDC32 series cards typically communicate with other expansion modules, PLCs, or human-machine interfaces (HMI) through CANopen fieldbus to achieve distributed control. Collaborative work: As a CPU or main control board, it can coordinate the actions of actuators (such as servo valves or electric push rods) to ensure response time in milliseconds.
Equipped with comprehensive electrical monitoring functions, it can monitor the stability of the 24V DC system power supply and internal logic voltage in real time. Once undervoltage or overcurrent is detected, the output will be immediately cut off through the "Ready to operate" interlock signal to protect the core circuit.

At the same time, its I/O ports are equipped with short-circuit protection and electromagnetic compatibility (EMC) shielding design, effectively preventing surge interference from on-site sensors or actuators from damaging the internal processing unit. In addition, IDC32-1.1 has a powerful watchdog self diagnostic program that can monitor the firmware running status in real time. When the controller encounters logic errors or communication interruptions, it can quickly switch to Safe State to prevent mechanical damage to the production line caused by the misoperation of the correction actuator.

FAQS

  • What is IDC32-1.1?
    IDC32-1.1 is a Control board
  • What does the LED light on the IDC32-1.1 board represent?
    Power (green): indicates that the 24V DC power supply of the board is normal. Ready (green): The system self-test has passed, the controller is in a ready state, and the interlock contacts have been closed. Bus Error (red): CANopen or other bus communication faults, usually caused by station address conflicts, missing terminal resistors, or cable breaks. Error (red constantly on/flashing): Hardware failure or program crash. If the red light still lights up after restarting, it usually indicates that the internal components of the board are damaged.
  • How to modify the control parameters (such as gain or dead zone) of IDC32-1.1?
    Tool software: Usually requires the use of EMG specific MCU16 Tools debugging software. Connection method: Connect to the corresponding interface on the rack through the serial port (RS232) of the PC, or access through the bus gateway. Attention: Before modifying parameters online, please make sure to backup the original parameter list to prevent debugging errors from causing the strip steel to deviate and lose control.
  • Can IDC32-1.1 and IDC32-1.3 be interchangeable?
    Hardware compatibility: The physical dimensions and pin definitions are basically the same, and can be inserted into the same slot. Software compatibility: cannot be easily interchanged directly. IDC32-1.3 typically has higher firmware versions or different storage structures. If the 1.1 program is directly burned into 1.3, it may cause the calibration data of some sensors (such as EVK) to become invalid. Before changing the model, it is necessary to consult EMG technical support to confirm the firmware version.
  • Why does the system display 'Measuring equipment not OK'?
    External cause: Check if the high-frequency (HF) or optoelectronic (EVK) sensor cable connected to IDC32-1.1 is loose, or if the sensor lens is dirty. Internal reason: The analog input channel of IDC32-1.1 may be broken down by high voltage surges, resulting in the inability to recognize the voltage/current signals returned by the sensor. A multimeter can be used to measure the signal value at the input end of the board for troubleshooting.
  • How to set the bus address (Node ID) of IDC32-1.1?
    Hardware DIP: There is usually a set of miniature DIP switches at the edge of the board, which are used to set the binary address of the CAN node. Software settings: Some versions support writing addresses through software. After changing the address, the power must be turned off and the board must be restarted for it to take effect.
Why Choose Apter Power?
1.Full one year warranty on all components
2.Professional after selling team
3.Same-day dispatch payment come
4.All units are fully tested well with certificate
5.Speak With an Expert Sales Representative
6.More than 20 years experience in automation
7.Stable employees more than 10+ years working experience
Common Applications
  • Petroleum
  • Natural gas
  • Chemistry
  • Electricity
  • Steel
  • Papermaking
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Delivery
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Same day dispatch from warehouse inventory
Warranty
All parts new original are covered by Apterpower 12 month warranty

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Disclaimer: We are not an authorized distributor or distributor of the product manufacturer of this website, The product may have older date codes or be an older series than that available direct from the factory or authorized dealers. Because our company is not an authorized distributor of this product, the Original Manufacturer`s warranty does not apply.While many DCS PLC products will have firmware already installed, Our company makes no representation as to whether a DSC PLC product will or will not have firmware and, if it does have firmware, whether the firmware is the revision level that you need for your application. Our company also makes no representations as to your ability or right to download or otherwise obtain firmware for the product from our company, its distributors, or any other source. Our company also makes no representations as to your right to install any such firmware on the product. Our company will not obtain or supply firmware on your behalf. It is your obligation to comply with the terms of any End-User License Agreement or similar document related to obtaining or installing firmware.

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