Instruction Manual

Appendix A Rev. 3.8 July 2002

World Class 3000

APPENDIX A

 

1.

Heater, Strut, and Backplate Assembly

 

2.

Diffusion Assembly

 

 

 

3.

Retainer Screw

 

 

 

4.

Cell and Flange

 

 

 

5.

Corrugated Seal

 

 

NOTE: NOT ALL PARTS SHOWN ARE AVAILABLE FOR

6.

Probe Tube Assembly

 

 

7.

Screw

 

 

 

PURCHASE SEPARATELY. FOR LIST OF

 

 

 

AVAILABLE PARTS, SEE TABLE A-3.

8.

Washer

 

 

 

 

9.

Cover Chain Screw

 

 

 

10.

Cover Chain

 

 

 

 

11.

Probe Junction Box Cover

 

 

12.

Cover Gasket

 

 

 

13.

Wiring Diagram

 

 

 

14.

O-Ring

 

 

 

1

15.

Terminal Block Screws

 

 

 

16.

Terminal Block

 

 

26

17.

Terminal Block Marker

 

 

20

18.

Terminal Block Mounting Plate

28

 

21

 

 

 

 

 

 

 

 

 

 

29

 

 

 

3

 

 

 

 

 

 

 

20

 

 

 

27

 

19

17

 

 

25

 

 

 

 

 

 

 

 

24

 

 

15

13

11

11

 

 

 

 

 

2

 

22

 

 

 

4

10

 

 

 

 

5

19.

Probe Junction Box Screws

6

20.

Hose Clamp

 

21.

Hose

 

22.

Gas Connection

 

23.

Seal Cap

 

24.

Label

 

25.

Probe Junction Box

 

26.

Ground Wires

 

27.

Insulating Gasket

NOTE:

28.

Washer

 

29.

Screw

 

18

 

16

8

 

7

23

 

14

 

 

 

12

10

9

ITEM , CALIBRATION GAS TUBE,

FITS INTO HOLES WHEN PROBE IS ASSEMBLED.

21240005

Figure A-1. Oxygen Analyzer (Probe) Exploded View

A-0 Appendices

Rosemount Analytical Inc. A Division of Emerson Process Management

Page 98
Image 98
Emerson Process Management 3000 instruction manual Appendix a

3000 specifications

Emerson Process Management is a key player in the field of industrial automation, and one of its flagship offerings is the Emerson Process Management 3000. This system is designed to optimize production processes across a variety of industries, enhancing efficiency and ensuring robust operational performance.

One of the main features of the Emerson Process Management 3000 is its advanced control capabilities. The system employs model predictive control (MPC) technology, which allows for real-time data processing and decision-making. By predicting future trends in process variables, the MPC enables operators to adjust control parameters proactively, minimizing fluctuations and improving overall productivity.

Additionally, the Emerson 3000 integrates seamlessly with existing industrial infrastructure. This system supports a wide range of communication protocols, ensuring compatibility across various devices and sensors. Its flexibility allows companies to leverage their investment in existing technologies while upgrading to more modern control strategies.

The user interface of the Emerson Process Management 3000 is highly intuitive, featuring graphical displays that provide operators with clear visibility into process parameters. This interface is designed for ease of use, with customizable dashboards that can be tailored to meet the specific needs of the users. Training time is significantly reduced due to the straightforward design, leading to quicker onboarding for new operators.

In terms of data analytics, the Emerson 3000 also stands out. It features built-in data logging and trend analysis capabilities, empowering operators to make informed decisions based on historical and real-time data. This analytical strength helps in identifying inefficiencies and potential areas for improvement, contributing to reduced downtime and lower operational costs.

Safety is another critical characteristic of the Emerson Process Management 3000. The system includes robust safety features and compliance with various industry standards. By integrating safety into the control process, it ensures that product quality and equipment integrity are maintained, thus safeguarding both personnel and assets.

Overall, Emerson Process Management 3000 is a sophisticated control system that combines advanced technologies, user-friendly design, and robust safety features. Ideal for industries such as oil and gas, chemicals, and water treatment, it is designed to enhance operational efficiency and drive productivity in modern industrial environments.