Operation

3.5.3Automatic Retransfers to UPS

Automatic Retransfer to UPS is an option that you can select from the SCC System Configuration screen. If you do not want the UPS system to initiate any automatic retransfers, set Max Auto-Rexfer Attempts to zero (0).

In an automatic retransfer, the two motorized circuit breakers (System Bypass and UPS Output) are both closed simultaneously for a short period of time (overlap).

The following critical bus conditions must be present to initiate an automatic retransfer of the critical load from the bypass source to the UPS system:

1.The number of Auto-Rexfer Attempts selected must be greater than zero (0). If zero (0) is selected, no automatic retransfers will occur.

2.Critical load was initially transferred to the bypass source due to a system overload only. (A manually initiated retransfer from bypass is required if the critical load exceeded the capacity of the modules on-line or if a UPS fault occurred.).

3.Overload has since dropped below 100% of the rated SCC current.

4.Enough UPS modules are on-line to supply the critical load.

5.OK to Transfer signal received from the control logic for at least 10 seconds, within 5 minutes of the system overload transfer. (A manually initiated retransfer from bypass is required for overloads lasting 5 minutes or more.)

6.Cyclic-type overloads, which occur up to five (select range is 0 to 5) times in 60 minutes, are automatically returned to the UPS system for each event including the Nth overload. A manually initiated retransfer from bypass is required for the N + 1 overload.

3.5.4Automatic Module Off-Line

For specified UPS module faults, the control logic will initiate an automatic isolation and shutdown of the UPS module. In the Module Off-Line mode the output, battery (MBD) and input circuit breakers are open. If the UPS system was operating in the redundant mode when the module was taken off- line, the critical load will remain on the UPS system. If the UPS system was operating in the non- redundant mode, an automatic transfer to bypass will be initiated. Note that the bypass line is usu- ally not available during Low Battery Shutdown. One Module Off-Line is illustrated in Figure 57.

The following UPS module faults will initiate an automatic Module Off-Line:

DC Overvoltage Shutdown

Hardware Shutdown

Inverter Fault

Low-Battery Shutdown

Overload Shutdown

Overtemperature Timeout

Rectifier Fuse Blown

Reverse Power

Refer to Table 9 for more information regarding these alarm messages.

3.5.5Automatic Emergency Modules Off

For the specified UPS system fault, the control logic will initiate an automatic transfer to bypass fol- lowed immediately by a shutdown and isolation of the UPS system. In the Emergency Modules Off mode the output, battery (MBD) and input circuit breakers at each UPS module are open. The System Bypass Breaker (SBB) will be closed if the bypass line is available. Emergency Modules Off is illustrated in Figure 59.

The following UPS system fault will initiate an automatic Emergency Modules Off: Output Over Voltage Refer to Table 9 for more information regarding alarm messages.

NOTE

A load transfer to the bypass line will be completed whenever an automatic transfer to bypass is initiated and the bypass line is available. If the OK to Transfer condition is present, the load transfer will be uninterrupted. If the Static Switch Unable alarm message is present for any reason, the automatic transfer will be interrupted for 40 to 120 milliseconds. Because of the reliability of the UPS components, an interrupted load transfer is a very unlikely occurrence.

Your installation may include a Remote Emergency Power Off mode that can be initiated automatically by a contact closure in the critical load equipment. Refer to 3.3.8 - Remote Emergency Power Off.

97

Page 103
Image 103
Emerson Series 610 manual Automatic Retransfers to UPS, Automatic Module Off-Line, Automatic Emergency Modules Off

Series 610 specifications

The Emerson Series 610 is a cutting-edge solution for precise process measurement and control, designed specifically for industries where accuracy and reliability are paramount. This advanced instrument, often utilized in oil and gas, chemical processing, and water treatment sectors, combines innovative technology with robust features to meet the demanding requirements of modern industrial applications.

One of the standout features of the Series 610 is its exceptional measurement accuracy. The device employs advanced sensor technology that enables precise determination of variables such as pressure, temperature, and flow. This accuracy translates into improved process efficiency and enhanced product quality. With a wide range of measurement capabilities, the Series 610 can handle varying process conditions and fluid types, making it versatile across different applications.

The heart of the Emerson Series 610 lies in its intelligent diagnostics and predictive maintenance functionalities. This built-in technology allows for real-time monitoring of the device's operational status, providing valuable insights into performance trends. By detecting anomalies early, users can take proactive measures to prevent potential failures, thereby reducing downtime and maintenance costs.

Moreover, the Series 610 is designed with user-friendly features. Its intuitive interface and easy-to-navigate menus facilitate quick setup and configuration, enabling operators to be productive from the outset. The device also supports various communication protocols, including HART and FOUNDATION fieldbus, ensuring seamless integration into existing control systems and enhancing overall automation capabilities.

Another notable characteristic of the Emerson Series 610 is its robust construction. Designed to withstand harsh environmental conditions, it is built with durable materials that offer high resistance to corrosion and physical damage. This durability ensures longevity and reliability, even in the most challenging industrial environments.

In summary, the Emerson Series 610 represents a significant advancement in process measurement technology. With its exceptional accuracy, intelligent diagnostics, user-friendly design, and robust construction, it is an ideal choice for industries seeking to enhance their operational efficiency and reliability. Its ability to seamlessly integrate into existing systems further solidifies its position as a leading solution in the field of industrial measurement and control. As industries continue to evolve, the Series 610 is poised to meet the challenges of the future with confidence and precision.