1.4.4 Starting the Off-Line Monitor

When offline analysis is adapted to the data collected under ONLINE MODE.

(1)Clicking "Offline Analyze" on the selection screen of Monitor

mode. Last click " ."

1.4.5 Using the Wide area access mode

Under the "Wide area access mode," the access method for remote connection can be registered to the database of each customer enabling easy online connection with the air conditioning system of the customer desired to be accessed.

[Remote access method]

-LAN : Accessing by directly connecting Maintenance Tool PC and G-50A with LAN (WAN).

-Dialup : Accessing by dialup connection to G-50A via public network.

-E-mail : Accessing by E-mail communication to G-50A via mail server.

-Modem (MN Converter) : Accessing by connecting Modem to MN Converter via public telephone circuit.

After the online connection performed by any of the above methods, you may use the similar function as that obtainable in the normal online connection.

While under the offline mode, customer information will be provided to the monitored data enabling only to select a specified customer for display.

Note :

Even when connecting under the wide area access mode, cautions will be applied as same as under the normal connection mode. You are kindly requested to observe the cautions described in the connection method under normal mode as well. (1.4.1 - 1.4.3)

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Mitsubishi G-50A, MN Converter manual Starting the Off-Line Monitor, Using the Wide area access mode

G-50A, MN Converter specifications

The Mitsubishi MN Converter, G-50A, represents a significant advancement in power conversion technology, designed to meet the rigorous demands of various industrial applications. This converter excels in delivering efficient and reliable performance while addressing specific user requirements.

One of the standout features of the G-50A is its high efficiency, typically exceeding 95%. This efficiency minimizes energy losses during the conversion process, significantly reducing operational costs and enhancing the overall economic viability of power-intensive operations. Its robust design ensures that it can handle fluctuating loads, making it suitable for diverse environments, from manufacturing plants to renewable energy systems.

The G-50A employs advanced digital signal processing (DSP) technology, enabling precise control of power conversion processes. This feature not only enhances the converter's performance but also allows for adaptive control strategies that can optimize energy use based on real-time conditions. As a result, users can experience improved reliability and performance consistency over time.

Thermal management is another critical characteristic of the G-50A. It utilizes a sophisticated cooling system that manages the heat generated during operation, ensuring that the unit remains within optimal temperature ranges. This prevents overheating and extends the lifespan of the converter, which is essential for maintaining operational uptime in demanding applications.

The modular design of the G-50A facilitates easier maintenance and scalability. Users can easily replace or upgrade individual components without the need for extensive downtime, significantly improving overall operational efficiency. Moreover, the compact footprint of the G-50A allows for flexible installation in various settings, making it adaptable to space-constrained environments.

In addition to its state-of-the-art technologies and features, the G-50A adheres to stringent international standards for safety and environmental compliance. This ensures that users can operate the converter with confidence, knowing that it meets necessary regulations while minimizing their environmental impact.

Overall, the Mitsubishi MN Converter, G-50A, combines high efficiency, advanced digital technology, and robust design attributes to provide a versatile and reliable power solution for a wide range of applications. Whether integrating into existing systems or establishing new processes, the G-50A stands as an innovative choice for enterprises seeking to optimize energy usage and enhance operational performance.