The IBA SM128V is a VMEbus interface board designed to connect VME-based PLC systems to ibapda-v 6 or ibalogic platforms. Serving as a critical link between field sensors and control systems in complex automation environments, it enables seamless integration of analog and digital signals.
Technical Specifications:
Input Channels: 16 differential analog inputs, 8 digital I/O channels.
Resolution: 12-bit analog, 1-bit digital.
Input Voltage Range: Configurable via software (-10V to +10V, 0-5V, etc.).
Sampling Rate: Up to 100 ks/s per channel.
Communication Interface: VMEbus (32-bit, 33MHz).
Physical Dimensions: 160mm × 100mm × 40mm.
Weight: 0.6kg.
Operating Temperature: -40°C to +85°C.
Humidity: 5%-95% non-condensing.
Mounting: VMEbus slot installation.
Features of IBA SM128V:
Flexible Configuration: DIP switches located at the bottom of the board for setting interrupts, data formats, and memory addresses. Supports flexible configuration of data rate, data size, and format, adhering to the 32 mbit flex protocol with operational modes including cascade and peer-to-peer.
Data Transmission: Utilizes dual-port RAM technology for high-speed data transfer with block consistency mode.
Power Supply: Powered via VMEbus.
EMI Resistance: Equipped with electromagnetic interference (EMI) and noise immunity to ensure stable and accurate data transmission.
Communication Interfaces: Features multiple interfaces (USB, Ethernet, RS-232) for seamless integration with data acquisition or control systems.
Software Support: Includes dedicated software for configuration, control, and monitoring of data acquisition processes, streamlining user operations.
Application Fields:
Manufacturing Industry
The IBA SM128V can be integrated with CNC machines, robotic arms, and conveyor systems to monitor performance indicators such as motor speed, torque, and position. This helps optimize production lines and reduce waste.
Energy Sector
It is used to monitor sensors in gas turbines, steam generators, and wind turbines, tracking parameters like vibration, temperature, and pressure. This enables predictive maintenance, enhances equipment reliability in power plants and renewable energy facilities, and minimizes downtime.
Research and Development
In laboratories, the board supports experimental data acquisition for material testing, fluid dynamics analysis, sensor calibration, etc. Its high precision and flexible configuration make it the preferred choice for academic and industrial research.
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