METSO D201136 Wired high-channel digital input/output module
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METSO D201136 Wired high-channel digital input/output module
The D201136 functions as a wired high-channel digital input/output module, designed to handle a large number of digital signals from field devices such as sensors, switches, and actuators. It connects directly to the control system via a robust backplane or bus, ensuring stable and fast data transmission.
Model NumberD201136
Brand METSO
Type Wired high-channel digital input/output module
Input Voltage 24V DC
Operating Temp Range -20°C to 65°C
Mounting Style DIN-rail mount
Dimensions 140mm x 110mm x 75mm
Weight 500g
Interface/Bus Profibus DP, Ethernet/IP
Compliance CE, RoHS, UL 508
Supported Protocols Modbus RTU, Profibus DP
Typical Power Draw 7W
The D201136 functions as a wired high-channel digital input/output module, designed to handle a large number of digital signals from field devices such as sensors, switches, and actuators. It connects directly to the control system via a robust backplane or bus, ensuring stable and fast data transmission.
D201136
The module’s enhanced surge protection circuitry is a key feature. It diverts excess electrical energy from voltage spikes and surges away from sensitive components, preventing damage and signal disruption. The D201136 integrates seamlessly into existing automation stacks, supporting standard industrial protocols to communicate with PLCs, DCS, and SCADA systems. Its high-channel design allows it to manage multiple devices simultaneously, making it a central hub for digital signal processing in complex industrial systems.
D201136
Technical specifications:
Model NumberD201136
Brand METSO
Type Wired high-channel digital input/output module
Input Voltage 24V DC
Operating Temp Range -20°C to 65°C
Mounting Style DIN-rail mount
Dimensions 140mm x 110mm x 75mm
Weight 500g
Interface/Bus Profibus DP, Ethernet/IP
Compliance CE, RoHS, UL 508
Supported Protocols Modbus RTU, Profibus DP
Typical Power Draw 7W
Contact Us Phone:+86 16626708626 WeChat/WhatsApp:+86 16626708626 Email: 3772179818@qq.com
D201136
Main features and advantages:
Engineered for high performance in harsh electrical environments, the D201136 delivers substantial real-world benefits. Its enhanced surge protection ensures uninterrupted operation even in areas with frequent voltage spikes, such as near large motors or welding equipment. This reliability reduces unplanned downtime, which is crucial in industries where production stoppages can cost thousands of dollars per minute.
With its high-channel capacity, the D201136 eliminates the need for multiple modules, reducing the number of connections in the system. This simplifies wiring, lowers installation costs, and minimizes the risk of loose connections or wiring errors. The module’s robust construction ensures long-term durability, withstanding the rigors of industrial environments including dust, vibration, and temperature fluctuations, thus reducing maintenance and replacement costs over time.
Moreover, the D201136s compatibility with standard protocols makes integration with existing control systems straightforward, reducing engineering time and effort during setup. Its stable signal transmission ensures accurate data flow to the control system, enabling precise process control and improving overall product quality.
D201136
Application areas:
The D201136 is ideally suited for high-noise industrial environments. In steel manufacturing plants, it is used to monitor and control various processes such as rolling mills, furnaces, and material handling equipment. The high levels of electrical noise from these operations make the module’s surge protection essential for maintaining reliable signal transmission.
In mining operations, where heavy machinery generates significant electrical interference, the D201136 connects sensors and actuators in drilling, crushing, and conveyor systems. Its ability to withstand voltage spikes ensures that critical control signals are not disrupted, contributing to safe and efficient mining operations.
Another common use case is in power generation facilities, particularly around generators and transformers. The D201136 manages digital signals from monitoring devices and control mechanisms, ensuring that the power generation process remains stable despite the high electrical noise in these environments.
D201136
Related products:
D201134 – Wireless high-channel digital I/O module, suitable for applications where wired connections are impractical.
D201126 – Wired digital I/O module with fewer channels, ideal for smaller-scale systems in moderate noise environments.
D201130 – High-speed wireless module with 8 channels, designed for fast response time requirements.
D201132 – Battery-powered wireless digital I/O module with 12 channels, for remote off-grid applications.
D201135 – Legacy high-channel wired module, offering an upgrade path to the D201136 with enhanced surge protection.
D201129 – Lower channel wireless digital I/O module, suitable for small-scale, low-noise environments.
D201137 – Wired high-channel module with extended temperature range, for extreme heat or cold applications.
Installation and maintenance:
Before installing the D201136, verify that the backplane or bus of the control system is compatible with the module’s interface. Ensure that the mounting location has sufficient space for cooling, as the module generates more heat than lower-channel units. Check that the input voltage is within the 24V DC range and that the power supply is stable to avoid damage during operation.
During installation, pay special attention to wiring practices to maximize the effectiveness of the surge protection. Use shielded cables and ensure proper grounding of the module and connected devices. Before powering on, double-check all connections to prevent short circuits.
For ongoing maintenance, regularly inspect the module’s status indicators to monitor for any fault conditions. Check the wiring connections quarterly to ensure they are tight and free from corrosion. Clean the module’s surface periodically to remove dust and debris that can impede heat dissipation. Test the surge protection functionality annually using appropriate test equipment to ensure it is working correctly.