Description
General Electric’s IS215UCVEH2AB VMIVMME-7614-132 350-007614-132C is a high-performance VMEbus single board computer module designed to serve as a central processor in industrial control systems. It interfaces with various input/output devices, sensors, and actuators, acting as the “brain” to process data and send control commands to ensure the coordinated operation of the entire system.
IS215UCVEH2AB VMIVME-7614-132 350-007614-132C
This module is based on the VMEbus architecture, which provides a standardized and reliable platform for data communication and expansion. It has powerful processing capabilities and can easily handle complex algorithms and real-time data analysis. The high-speed data bus on the module enables fast information transmission between different components, reducing latency and improving overall system response speed.
IS215UCVEH2AB VMIVME-7614-132 350-007614-132C
Main features and advantages:
In terms of communication, IS215UCVEH2AB VMIVMME-7614-132 350-007614-132C supports multiple communication protocols, including Ethernet, serial interface, and CAN bus. This versatility enables seamless integration with various control systems such as programmable logic controllers (PLC), distributed control systems (DCS), and human-machine interfaces (HMI). It can communicate with remote devices, sensors, and actuators, collect real-time data, and send control signals to optimize the operation of industrial processes.
This module also has advanced diagnostic functions, which can continuously monitor its own health status and the status of connected devices. It can detect hardware failures, communication errors, and abnormal data patterns, and report them in real-time to the control system. This proactive diagnostic function enables rapid troubleshooting and minimizes downtime, ensuring the continuous and reliable operation of industrial control systems.
From a physical structure perspective, General Electric’s IS215UCVEH2AB VMIVMME-7614-132 350-007614-132C is designed for easy installation in standard industrial control cabinets. Its VMEbus external dimensions enable it to be easily integrated into existing VME based systems and can be installed on racks or backboards. Whether used for new automation projects or as an upgrade to existing systems, this module can seamlessly integrate into the industrial control ecosystem, enhancing overall performance and functionality.
This module is designed to be sturdy and durable, using high-quality components to ensure long-term performance even in harsh industrial environments. Its wide operating temperature range and resistance to electrical noise and vibration make it suitable for challenging environments such as manufacturing plants, power plants, and oil drilling platforms. This durability reduces the need for frequent replacement and maintenance, resulting in significant cost savings during the system’s lifespan.
IS215UCVEH2AB VMIVMME-7614-132 350-007614-132C Enhanced data processing capabilities can achieve faster and more accurate control over industrial processes. It can handle complex algorithms and real-time data analysis, enabling precise adjustments to machines and processes. This helps improve product quality, reduce waste, and increase production efficiency. For example, in a food processing plant, this module can analyze real-time data from sensors monitoring temperature, pressure, and flow rate, and adjust processing equipment accordingly to ensure consistent product quality.
The advanced communication function of this module simplifies system integration and management. Its support for multiple protocols and interfaces enables seamless connection with various devices and systems, reducing the need for customized interfaces and complex cabling. Real time data transmission and remote monitoring capabilities enable operators to access critical information from anywhere, facilitating better decision-making and proactive maintenance. The built-in diagnostic function also plays a key role in maintaining efficiency. By providing early warning of potential issues, this module enables maintenance teams to schedule repairs during planned downtime, minimizing unexpected disruptions to production.
IS215UCVEH2AB VMIVME-7614-132 350-007614-132C
Technical specifications:
Model IS215UCVEH2AB VMIVMME-7614-132 350-007614-132C
Brand General Electric
Type VMEbus Single Board Computer Module
Input voltage 5V DC (± 5%)
Working temperature range -40 ° C to+85 ° C
Installation methods: rack mounted, backplane compatible
Interface/Bus VMEbus, Ethernet, Serial (RS-232/485), CAN Bus
Compliance with CE, RoHS, IEC 61000-6-2
Supported protocols Modbus TCP, Profibus DP, Ethernet/IP
Contact Us
Phone:+86 16626708626
WeChat/WhatsApp:+86 16626708626
Email: 3772179818@qq.com
IS215UCVEH2AB VMIVME-7614-132 350-007614-132C
Application areas:
In the power generation industry, this module is used to control and monitor the operation of generators, turbines, and other power related equipment. It can collect data from sensors that measure parameters such as voltage, current, frequency, and temperature, and use this information to adjust the operation of the equipment in real time. This ensures stable power production and efficient grid management. For example, in a wind farm, IS215UCVEH2AB VMIVMME-7614-132 350-007614-132C can control the pitch of wind turbine blades based on wind speed and direction, maximizing power generation while protecting the turbine from damage.
In the oil and gas industry, this module is used for offshore platforms and onshore refineries to control the operation of pumps, compressors, valves, and other critical equipment. It can handle the complex control requirements of these processes, ensuring safe and efficient production. This module is capable of withstanding harsh environmental conditions such as high humidity, salt spray, and extreme temperatures, making it suitable for offshore applications. It can also communicate with remote monitoring systems, allowing operators to monitor the status of equipment and processes from the onshore control center.
In the manufacturing industry, General Electric’s IS215UCVEH2AB VMIVMME-7614-132 350-007614-132C is used in automated production lines to control the movement of robotic arms, conveyors, and other machines. It can coordinate the operation of multiple devices to ensure smooth and efficient production. The high-speed data processing and real-time control capabilities of this module enable it to handle the complex motion control requirements of modern manufacturing processes such as precision machining and assembly.
IS215UCVEH2AB VMIVME-7614-132 350-007614-132C
Related products:
IS215UCVEH1AB: Similar in function but with lower processing capability, suitable for less complex industrial control applications.
IS215UCVEH3AB: Designed for industrial automation projects with higher requirements, it features larger memory and faster processing capabilities.
VMIVME-7610: Related VMEbus single board computer modules with different I/O configurations, providing alternative options for system integration.
350-007612-13 2C: A model with similar external dimensions and communication interfaces, providing an alternative option for users seeking cost-effective solutions.
IS215UCVEH2AC: A variant with enhanced communication capabilities, such as additional Ethernet ports, suitable for applications that require broader network connectivity.
Installation and maintenance:
Before installing General Electric’sIS215UCVEH2AB VMIVMME-7614-132 350-007614-132C, it is essential to verify the compatibility of this module with your existing control system. Check power requirements, communication interfaces, and software compatibility to ensure seamless integration. Ensure that the VMEbus backplane or rack on which the module is installed is in good working condition and has sufficient slots and power capacity.
During the installation process, handle the module carefully to avoid electrostatic damage. Follow the manufacturer’s instructions for proper installation and wiring. Ensure all connections are secure and the module is properly grounded to prevent electrical interference. When connecting communication cables, use appropriate connectors and follow recommended cable lengths and shielding practices to ensure reliable data transmission.
For continuous maintenance, regularly monitor the status indicator lights on the module to check for any signs of abnormal operation. Green LED indicates normal operation, while red LED may indicate a fault or error status. Regularly clean the module and its connectors to remove dust and debris that may affect their performance. Check the temperature during module operation to ensure it is within the specified range. If necessary, install additional cooling devices to prevent overheating. Keep the firmware of the module up-to-date by downloading and installing the latest updates from General Electric’s official website. These updates typically include error fixes, performance improvements, and security enhancements to ensure that modules always run at their best.
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