| Availability: | |
|---|---|
>> Key Advantages & Features
Powerful PROFIBUS Connectivity
As a PROFIBUS DPV0, class 1 master, it can support up to 125 slave devices. It features a DE - 9 D - sub socket connector providing a reliable RS - 485 interface. With a data transmission rate ranging from 9.6 KBaud to 12 MBaud, it enables fast and stable communication, ensuring real - time data exchange between different components in the industrial network. For example, in a large - scale manufacturing plant, it can quickly relay sensor data from multiple 2.PROFIBUS - connected devices to the main controller.
Redundant Configuration Options
Offers multiple redundancy setups to enhance system reliability. It can operate with a single I/O Ethernet connection for a single I/O package (non - redundant), two I/O Ethernet connections for a single I/O package, or hot - backup Ethernet connections with two ports. In a power generation facility, the hot - backup option can be used to ensure continuous operation, with one module actively communicating with PROFIBUS slaves while the other stands by, ready to take over instantly in case of a failure.
Compatibility and Integration
Mounted on the PROFIBUS master gateway terminal board (SPIDG1A), which also provides an electronic ID, it is designed for easy integration into existing industrial control systems. The module's LED indicators offer visual diagnostics, simplifying troubleshooting. In a chemical plant, it can be smoothly integrated into the existing control infrastructure, allowing operators to quickly identify and address any communication or module - related issues.
Robust Environmental Adaptability
Operates within a wide ambient temperature range from - 20°C to + 55°C (- 4°F to + 131°F), making it suitable for diverse industrial environments. It has ATEX Zone 2, Group IIC certification, along with UL Demko 12 ATEX 1114875x and non - hazardous UL E207685 certification. This makes it safe and reliable for use in both normal and potentially explosive industrial settings, such as oil refineries or gas processing plants.
Standardized Functionality
Although the COM - C module it incorporates supports DPV1, the IS220PPRFH1B provides basic DPV0 functions. This includes configuring slave devices, cyclic I/O data exchange, and receiving PROFIBUS diagnostics. These functions are fundamental for maintaining the proper operation of PROFIBUS - based industrial control systems, ensuring that all connected devices work in harmony.
>> Technical Parameters
Parameter | Specification |
PROFIBUS Master Type | DPV0, class 1 |
Supported Slave Devices | Up to 125 |
Communication Interface | RS - 485 via DE - 9 D - sub socket connector |
Data Transmission Rate | 9.6 KBaud - 12 MBaud |
Redundancy Options | Single I/O Ethernet for single I/O package (non - redundant); two I/O Ethernet for single I/O package; hot - backup Ethernet with two ports |
Operating Temperature | - 20°C to + 55°C (- 4°F to + 131°F) |
Certifications | ATEX Zone 2, Group IIC (UL Demko 12 ATEX 1114875x); non - hazardous UL E207685 |
Input Voltage | Nominal 28V DC |
Input Current | Max 0.18 A DC |
Mounting | On PROFIBUS master gateway terminal board (SPIDG1A) |
Dimensions | Approximately 8.26 cm x 4.19 cm x 12.1 cm |
Weight | Around 0.14 kg |
>> Product Uses
1. Power Generation
In power plants, it connects various sensors and actuators related to turbines, generators, and auxiliary equipment. For instance, it can communicate with temperature sensors on turbine blades, pressure sensors in steam pipelines, and control valves. By relaying this data to the Mark VIe controller, it enables precise monitoring and control of power generation processes, ensuring stable power output and efficient operation.
2. Oil & Gas Industry
Used in oil refineries, gas processing plants, and offshore platforms. It can interface with flow meters, pressure transmitters, and safety - critical valves in pipelines. In an oil refinery, it helps in optimizing the refining process by ensuring seamless data flow between different components, and in case of any abnormal conditions, it can quickly trigger safety procedures.
3. Manufacturing
In large - scale manufacturing facilities, it plays a key role in connecting different parts of the production line. For example, it can link sensors on conveyor belts, robotic arms, and quality control devices to the main control system. This allows for real - time monitoring and adjustment of production processes, improving overall productivity and product quality.
4. Chemical Processing
Connects sensors and control devices in chemical reactors, storage tanks, and distillation columns. It can monitor parameters like temperature, pH levels, and chemical concentrations. Based on the data received, it can control the addition of reactants, the operation of pumps, and the opening and closing of valves, ensuring safe and efficient chemical production.
content is empty!