FIGURES

 

Figure 1

Multi-Module UPS, 100-500kVA

. 2

Figure 2

Multi-Module UPS, 500-750kVA

. 3

Figure 3

System Control Cabinets

. 4

Figure 4

SCC controls and display screen with example of the Monitor/Mimic screen

. 7

Figure 5

Module controls and display screen with example of the Monitor/Mimic screen

. 8

Figure 6

UPS module block diagram

11

Figure 7

System Control Cabinet block diagram

16

Figure 8

Typical operator controls

21

Figure 9

Operator controls, typical SCCT System Control Cabinet

22

Figure 10

Liebert Series 610 UPS and SCC operator control panels

23

Figure 11

Switches behind SCC control panel door

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Figure 12

Menu tree

25

Figure 13

SCC and module master menu screens

26

Figure 14

SCC Monitor/Mimic display screen

28

Figure 15

Module Monitor/Mimic display screen

30

Figure 16

Monitor/Mimic display example: Normal power flow

32

Figure 17

Monitor/Mimic display example: Utility fail

33

Figure 18

Monitor/Mimic display example: Load on bypass, UPS modules on and charging battery

34

Figure 19

Monitor/Mimic display example: Load on UPS, one UPS module off line

35

Figure 20

Monitor/Mimic Display example: Load on bypass, all UPS modules off line

36

Figure 21

Walk-in display screen during start-up

37

Figure 22

Status reports screen

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Figure 23

Present status report screens, SCC (above) and module

39

Figure 24

Event history report screen

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Figure 25

History status report screens

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Figure 26

Battery cycle monitor screen

42

Figure 27

Battery cycle monitoring summary screen

43

Figure 28

Typical data on discharge cycles of 91 to 240 seconds duration during the recording period . . .

43

Figure 29

SCC system configuration screen

44

Figure 30

Date screen

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Figure 31

Time screen

46

Figure 32

Auto dial setting screen

47

Figure 33

Modem baud rate

48

Figure 34

Maximum auto-retransfer attempts screen

48

Figure 35

SCC system options screen

49

Figure 36

MMU system options screen

49

Figure 37

Battery test screen—MMU only

50

Figure 38

Battery test results screen

50

Figure 39

Monitor/Mimic display example: Continuous Duty Static Switch

51

Figure 40

Module alarm limit settings screen

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Figure 41

Load transfer procedures screen

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Figure 42

SCC start- up procedures screen

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Figure 43

Module start- up procedures screens

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Figure 44

SCC shutdown procedures screen

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Figure 45

Module shutdown procedures screen

57

Figure 46

Battery time screen (15 minute discharge)

58

Figure 47

Battery time screen (45-minute discharge)

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Figure 48

Accuracy range of values for calculated battery times

59

Figure 49

Meter calibration screen

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Image 5
Emerson Series 610 manual Figures

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.