OCX 8800

Instruction Manual

IM-106-880, Rev 1.0 January 2007

Figure B-2. OCX 8800 and SPA Interface Connections

HART

Model 275/375

Handheld

Communicator

 

OCX 8800

 

 

 

Customers

 

 

DCS, PLC,

 

4-20 mA O2 Signal Loop

or

 

> 250

PC with AMS

 

R < 950

Software

 

 

Analog Output

 

IN IN

4-20 mA

 

 

or

 

 

0-24 vdc

 

 

Event Recorder,

 

 

Audible Alarm,

 

 

or other

 

 

Analog Device

 

 

37390022

INSTALLATION

Refer to Figure B-2for the typical interface connections for the OCX 8800 and

 

the SPA with HART alarm. Refer to the Moore Industries SPA user's manual

 

for additional information concerning SPA installation, setup, and operation.

SETUP

Setup of the SPA for communication with the OCX 8800 includes setting

 

internal jumpers and dip switches and configuring the SPA operating

 

parameters via a menu-driven selection and calibration procedure.

Jumper and Switch Settings

SPA jumper and switch settings are shown in Figure B-3.If the SPA with HART was factory-configured by Emerson Process Management for operation with your OCX 8800, jumper and switch setting adjustments are not required. However, you may use the following procedure to verify that the jumper and switch settings are correct. Adjust or verify jumper and switch settings as follows:

Electrostatic discharge (ESD) protection is required to avoid damage to the SPA electronic circuits.

1.Refer to Figure B-3.Turn the SPA over and slide the access cover out. Before changing any jumper or switch position, take adequate precautions to avoid an electrostatic discharge.

B-2

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Image 144
Emerson 8800 instruction manual Setup, Jumper and Switch Settings

8800 specifications

The Emerson 8800, a pivotal instrument in industrial automation, stands out for its robust features and cutting-edge technologies. Designed to enhance process efficiency and reliability, this device is integral to numerous industries, including oil and gas, chemical, and power generation.

One of the standout features of the Emerson 8800 is its advanced control capabilities. It incorporates a highly flexible control architecture that supports a wide variety of control schemes. This adaptability allows engineers to implement customized solutions tailored to specific process requirements. Additionally, the 8800 series includes integrated predictive diagnostics that continually monitor system performance, alerting operators to potential issues before they escalate into serious problems.

The technology powering the Emerson 8800 is equally impressive. Equipped with state-of-the-art microprocessors, it can handle complex calculations and data processing with remarkable speed and accuracy. The device supports multiple communication protocols, including Foundation Fieldbus, HART, and Modbus. This flexibility ensures seamless integration with existing systems, thereby enhancing data sharing and communication between devices.

Moreover, the Emerson 8800 features a user-friendly interface that simplifies operation and monitoring. The intuitive display allows operators to easily navigate through various settings and real-time data, promoting better decision-making and faster response times. This ergonomic design enhances usability in high-pressure environments, ultimately contributing to improved safety and operational efficiency.

Another key characteristic of the Emerson 8800 is its durability and reliability. Built to withstand the rigors of industrial environments, the device boasts a robust enclosure, ensuring protection against dust, moisture, and extreme temperatures. This reliability minimizes the risk of downtime, making it a cost-effective choice for industries where uptime is critical.

In summary, the Emerson 8800 emerges as a powerhouse in the realm of industrial automation. With its advanced control systems, diverse communication capabilities, user-friendly interface, and rugged design, it embodies efficiency and reliability. As industries continue to evolve, the Emerson 8800 stands ready to meet the challenges of modern automation, driving innovation and productivity in complex environments.