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  • UniOP ETOP20C-0050 - Graphic Touch Panel
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  • UniOP ETOP20C-0050 - Graphic Touch Panel

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    Mr.FSN
    chnfcsXM@163.com
    +86-153-9626-8993
    Selection, installation, operation, maintenance, troubleshooting, safety
    Petrochemical/Chemical,Power industry,Metallurgical industry,Municipal/Environmental Protection,Oil and gas industry,Robot system accessories,automobile manufacturing,3C Electronics,Machining
    The UniOP ETOP20C-0050 stands out as a highly reliable and versatile Human-Machine Interface (HMI) within the UniOP automation products lineup, specifically engineered for demanding environments such as the power industry, petrochemical sectors, and
    • ¥11349.00
      ¥8402.00
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    Weight:10.380KG
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Description
The UniOP ETOP20C-0050 stands out as a highly reliable and versatile Human-Machine Interface (HMI) within the UniOP automation products lineup, specifically engineered for demanding environments such as the power industry, petrochemical sectors, and

UniOP ETOP20C-0050 - Graphic Touch Panel

The UniOP ETOP20C-0050 stands out as a highly reliable and versatile Human-Machine Interface (HMI) within the UniOP automation products lineup, specifically engineered for demanding environments such as the power industry, petrochemical sectors, and general automation applications. Designed to deliver superior performance and durability, the ETOP20C-0050 is equipped with a 5.7-inch color TFT display featuring a resolution of 320x240 pixels, providing crisp and clear visualization of complex industrial processes. This model supports a robust input/output configuration, including multiple serial communication ports (RS-232/RS-485) and optional Ethernet connectivity, enabling seamless integration with PLCs and various control devices for real-time data exchange. Durability is a key aspect of the ETOP20C-0050, with an IP65-rated front panel that ensures protection against dust and water ingress, making it suitable for harsh industrial environments. It operates reliably within a wide temperature range of -10°C to +60°C, and its solid-state design enhances resistance to vibration and shock, critical for installations in petrochemical plants and power generation facilities. The device’s response time and refresh rate are optimized to guarantee smooth operation and immediate feedback, which is essential for monitoring and control tasks requiring high precision. In practical applications, the UniOP ETOP20C-0050 excels in scenarios where operators need intuitive access to process data and control functions under challenging conditions. 


For example, in the power industry, it is frequently used for monitoring turbine status, managing electrical switchgear, and supervising power distribution networks. Its robust connectivity options allow it to interface with various automation controllers, facilitating centralized control and data logging. Similarly, in petrochemical plants, the ETOP20C-0050 supports the visualization of critical parameters such as temperature, pressure, and flow rates, helping to maintain safety and operational efficiency. Its durability and responsive interface also make it ideal for general automation tasks across manufacturing lines, water treatment facilities, and HVAC systems. When compared to other models in the UniOP portfolio, the ETOP20C-0050 offers a balanced combination of screen size, connectivity, and ruggedness. For instance, the UniOP ETOP05-0045 and the UniOP eTOP06C-0050 cater to applications requiring smaller displays and more compact footprint, which may be less suitable for complex data visualization. On the other hand, larger and more advanced models like the UniOP eTOP33B-4550 or the UniOP ETOP40B-0050 offer expanded screen real estate and additional I/O options but come at a higher cost and potentially more complex integration effort. The ETOP20C-0050 strikes a middle ground by providing sufficient interface capabilities and robust construction without the overhead of larger units, making it highly cost-effective for mid-level automation needs.


Alongside the UniOP ETOP20C-0050, the UniOP ETOP12-0050-SU and UniOP ETOP02-0050 models complement automation setups by offering varied display sizes and specialized communication protocols, enhancing flexibility across different control architectures. For more demanding visualization requirements, the UniOP eTOP32 and UniOP ETOP33C-0050 series provide enhanced graphics capabilities and extended memory. The UniOP ETOP507U3P1 and ETOP507MU4P1 models are ideal for applications needing multi-touch support and advanced networking features, often found in large-scale power plants or petrochemical automation systems. For general automation and compact installations, the UniOP eTOP05-SS45 and the UniOP eTOP03-0046F remain popular choices due to their streamlined designs and ease of deployment. The application of ETOP20C-0050 in power industry, petrochemical, and general automation sectors is underpinned by its reliable hardware architecture and flexible software environment. It supports multiple programming environments compatible with UniOP’s configuration tools, enabling engineers to tailor the interface to specific process requirements quickly. This adaptability, combined with its rugged design, ensures sustained operation in critical infrastructures where downtime can be costly. In summary, the UniOP ETOP20C-0050 is a robust, efficient, and versatile HMI solution tailored for industrial automation challenges. 


It provides an ideal balance of display size, input/output flexibility, and environmental resistance, positioning it as a preferred choice for professionals in the power industry, petrochemical plants, and general automation sectors. When used alongside complementary UniOP models like the ETOP310, eTOP06-005, ETOP33B, and ETOP40-0050, it forms part of a comprehensive automation ecosystem capable of meeting diverse operational requirements with reliability and precision. For companies seeking dependable UniOP automation products, the ETOP20C-0050 offers unmatched value in performance and durability, ensuring smooth and secure operation in the most demanding industrial settings.

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