GE F650BFDF1G1HI6E | Digital Bay Controller | Multilin F650
GE F650BFDF1G1HI6E is a digital bay controller with excellent performance and high reliability, suitable for a variety of industrial scenarios. By choosing the right purchasing channels and suppliers, and taking full advantage of the support and after-sales services provided by GE, you can ensure the smooth operation and long-term stability of your equipment.
Product Introduction
GE F650BFDF1G1HI6E | Digital Cabin Controller | Multilin F650. The GE F650BFDF1G1HI6E is a digital cabin controller for the Multilin F650 system. The device is part of the GE Multilin F650 product line, a range of industrial automation products designed for various applications in the energy industry.
The F650 Digital Cabin Controller is a versatile device capable of handling a wide range of tasks. It monitors and controls connected devices in real time, ensuring optimal performance and efficiency. The controller can handle a wide range of inputs and outputs, making it suitable for different applications.
A key feature of the F650 controller is its ability to perform boot code updates. This feature allows for the updating of firmware and kernel versions, thus enhancing the overall performance and security of the system.
The controller also features a comprehensive user interface with various customization options. It offers the possibility to select an initial logo, a simplified metering screen showing the main values, or both. It also supports snapshot events, control events, oscilloscope, fault logger, data logger, and multi-language visualization of metering.
The F650 controller also comes with a built-in web server, allowing remote access and control. This feature enhances the flexibility and convenience of the system as users can monitor and manage the system remotely.
Specifications:
Voltage Input: 110-250VDC / 120-230VAC
Power Consumption: Approx. 30W
B = Basic Display
Rear Serial Communication Board 1: A = Wind Power RS485
Rear Wall Communication Board 2: B = 10/100 Base TX
I/O Board in Slot F: 1 = 16 Digital Inputs + 8 Outputs
I/O Board in Slot G: 0 = None
Auxiliary Voltage: HI = 110-250 Vdc (Range 88 – 300). 120-230 Vac (Range 96 – 250)
Language: - = English
Communication Protocols: - = Modbus RTU, TCP/IP, DNP 3.0 Level 2, IEC 60870-5-104
Environmental Protection: - = Environmental Protection (Chemical) Environmental Protection Conformal Coating
Enhanced Display: - = With RS232 Display
Weight: 5 kg
Features:
Comprehensive Protection Suite: It provides various functions to prevent electrical faults, including overcurrent protection.
Enhanced Reliability: Ensures stable operation of power systems by automatically isolating faults.
Automation Potential: It can promote automation changes, with the potential to reduce manual intervention and workload.
Applications:
Distribution Systems: Protect feeders and bus towers from the effects of electrical faults such as overcurrent.
Substation Automation: As part of a larger system, it can facilitate the automation of various functions within a substation.
The Multilin F650 is designed for protection, control and automation of feeders or related applications. The Multilin F650 Feeder Protection Relay provides high-speed protection and control for feeder management and bay control applications and features a large LCD and single line diagram for building bay monitoring and control of a variety of feeder arrangements including ring bus, double breaker or breaker and half breaker.
Key Benefits
Comprehensive and flexible protection and control for feeder applications
Increase system uptime and reliability with load shedding and transfer schemes
Advanced automation capabilities for customized protection and control solutions
Human Machine Interface (HMI) with graphical LCD, programmable buttons, and easy keys for selecting setup menus and submenus
Modular drawout structure reduces replacement time
Reduces troubleshooting time and maintenance costs with IEEE 1588 (PTP), IRIG-B and SNTP time synchronization (configuration of two different SNTP masters), event reporting, waveform capture, and data logger
Simplifies system integration with support for serial and Ethernet interfaces and multiple protocol communications
Embedded IEC® 61850 protocol (with support for version 2), IEC 60870-5-103/104, IEC 62439/PRP/HSR, IEEE 802.1D/RSTP
Proven interoperability and KEMA 61850 Part 2 Version certification
Application
Main or backup protection and control of feeders in directly grounded, high-impedance grounded or resonantly grounded systems
Bus interlocking/interlocking scheme
Arc flash high-speed fault detection
Transfer scheme (bus transfer scheme application)
Load shedding scheme based on voltage and frequency factors
Distributed generation (DG) interconnection protection, including active and passive anti-islanding
Functions of GE F650BFDF1G1HI6E (Multilin F650) digital bay controller
I. Control and protection functions
Feeder protection
It can provide comprehensive protection for feeders, such as responding quickly to overcurrent, short circuit and other faults in feeders to protect the safe and stable operation of the entire power system. This is a very critical function in industrial power systems, which can effectively prevent the expansion of faults and reduce equipment damage and power outage risks7.
Embedded control
It has a unique embedded control function, which combines comprehensive feeder protection and programmable logic. In this way, the functions of feeder protection and control systems can be customized using programmable logic according to different industrial scenarios and needs to meet various unique requirements, making the controller highly flexible and cost-effective in complex systems7.
2. Human-computer interaction function
Display function
Equipped with a 4x20 standard backlit LCD display, and an optional 16x40 (240x128 pixel) graphic LCD. Such a display setting can clearly display the operating status, parameter settings, fault information and other contents of the equipment, making it convenient for operators to view and monitor.
For example, when viewing the voltage, current and other parameters of the power system, you can intuitively obtain data from the display screen and keep abreast of the system's operating conditions7.
Operation function
It has programmable buttons and a rotary switch for selecting setting menus and submenus. These operating components allow users to easily set and operate the controller in various ways, such as adjusting protection parameters, viewing historical records, etc., greatly improving the convenience and flexibility of operation7.
3. Data processing and recording function
Fault diagnosis and troubleshooting
Event reporting, waveform capture, data recording and other operations can be performed. When a system fails, various data at the time of the failure, such as voltage waveform, current waveform, etc., can be recorded, providing an important basis for fault analysis and troubleshooting, helping technicians to quickly locate problems, reduce troubleshooting time and reduce maintenance costs.
For example, by analyzing the waveform data at the moment of the fault, it can be determined whether the fault is caused by a momentary voltage surge or a long-term current overload7.
Time synchronization
Supports IRIG-B time synchronization function. This function can ensure the time synchronization between different devices in complex industrial systems, which is very important for accurately recording the time sequence of events, conducting fault analysis, and the coordinated operation of the system as a whole7.
IV. Communication and integration functions
Communication interface
It has multiple protocols, standard RS232, RS485 and Ethernet ports. These rich communication interfaces enable the GE F650BFDF1G1HI6E digital bay controller to connect and exchange data with a variety of different devices to meet the communication needs in different industrial environments.
For example, it can communicate with the host system to transmit the collected power system data to the monitoring center; it can also be interconnected with other intelligent devices to achieve the collaborative work of the entire industrial automation system7.
Integration flexibility
By supporting open standard protocols such as Modbus RTU, TCP/IP, and DNP3.0, it achieves optimized integration flexibility. This means that the controller can be easily integrated into different industrial automation systems and seamlessly connect with other devices that follow the same standard protocols, thereby improving the integration and operating efficiency of the entire system.
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