Emerson MAN -0016-00, UVC120 manual B lis h ed in Accordance with E1A Standard

Page 39

Appendix A Net Safety Monitoring Inc. Electrostatic

Sensitive Device Handling Procedure

W ith the trend toward increasingly widespread use of microprocessors and a wide variety of other electrostatic sensitive semiconductor devices, the need for careful handling of equipment containing these devices deserves more attention than it has received in the past.

Electrostatic damage can occur in several ways. The most familiar is by physical contact. Touching an object causes a discharge of electrostatic energy that has built up on the skin. If the charge is of sufficient magnitude, a spark will also be visible. This voltage is often more than enough to damage some electronic components. Some devices can be damaged without any physical contact. Exposure to an electric field can cause damage if the electric field exceeds the dielectric breakdown voltage of the capacitive elements within the device.

In some cases, permanent damage is instantaneous and an immediate malfunction is realized. Often, however, the symptoms are not immediately observed. Performance may be marginal or even seemingly normal for an indefinite period of time, followed by a sudden and mysterious failure.

Damage caused by electrostatic discharge can be virtually eliminated if the equipment is handled only in a static safeguarded work area and if it is transported in a package or container that will render the necessary protection against static electricity. Net Safety Monitoring Inc. modules that might be damaged by static electricity are carefully wrapped in a static protective material before being packaged. Foam packaging blocks are also treated with an anti-static agent. If it should ever become necessary to return the module, it is highly recommended that it be carefully packaged in the original carton and static protective wrapping.

Since a static safeguarded work area is usually impractical in most field installations, caution should be exercised to handle the module by its metal shields, taking care not to touch electronic components or terminals.

In general, always exercise all of the accepted and proven precautions that are normally observed when handling electrostatic sensitive devices.

A warning label is placed on the packaging, identifying those units that use electrostatic sensitive semiconductor devices.

*P u b lis h ed in Accordance with E1A

standard 471

-33-

Image 39
Contents Ultraviolet Fire Detection System Page Page Page Table of Contents Unit V Maintenance Unit I General Information Detector Specifications Dimensions Basic Operation Controller Controller Faceplate Description Outputs Relay OutputsCurrent Outputs External Reset Automatic Diagnostics and Fault IdentificationProgramming Options Petroleum Products Handling Unit II UV Fire DetectionDetector System ApplicationDetector Sensitivity Spectral Sensitivity Range Gaseous Fuel HandlingOther Processes System Sensitivity Cone of VisionUnit III System Installation Installation General Wiring RequirementsController Wiring Page W iring for U1F-UV with Non-Isolated Current Output W iring for U1F-UV with Isolated Current Output W iring for U2F-UV with Non-Isolated Output W iring Diagram for U2F-UV with Isolated Current Output W iring for U4F-UV with Non-Isolated Current Output W iring for U4F-UV with Isolated Current Output DIP Switch Settings Position and Density of DetectorsMounting the Detector U2F and U4F Controller Sensitivity AdjustmentChannel Selection U1F, U2F and U4FRelay Outputs LATCHING/NON-LATCHING Relay Outputs ENERGIZED/DE-ENERGIZEDExample Page Relay Settings Time Delay for Area AlarmsStartup Procedure Checkout ProcedureUnit IV System Operation Manual Check Procedure Normal Operation Fire Response Alternate Test ProcedureCurrent Output Situation Main Menu Special Function Menu Error Check Mode Err ChcCurrent Calibration Mode CuC Device Repair and Return Unit V MaintenanceRoutine Maintenance TroubleshootingPage Appendices B lis h ed in Accordance with E1A Standard Appendix B Procedure For Activating Reed Switches Appendix C Record Of Dip Switch Settings Appendix D Common Ultra-Violet Absorbing Gases AWG #20 AWG #18 AWG #16 AWG #14 AWG #12 AWG #10 AWG #8 Appendix E Wire Resistance In Ohms

0016-00, UVC120, MAN -0016-00 specifications

The Emerson MAN-0016-00, UVC120, 0016-00 is a state-of-the-art device designed to meet the demands of modern industrial and commercial applications. This advanced model showcases Emerson’s commitment to innovation, providing users with reliable performance and cutting-edge technology.

One of the key features of the Emerson MAN-0016-00 is its superior control capabilities. Equipped with sophisticated algorithms, this device ensures precise and adaptable control over various processes, improving efficiency and productivity in operations. Users benefit from enhanced responsiveness to changing conditions, allowing for quick adjustments that lead to optimized performance.

Another noteworthy technology integrated into the UVC120 is its advanced user interface. The device boasts a highly intuitive control panel that facilitates easy navigation and management of settings. This user-friendly design minimizes the learning curve for operators, ensuring that they can quickly familiarize themselves with its functions. The display provides clear, real-time feedback, enabling users to monitor system performance effortlessly.

The Emerson MAN-0016-00 is also characterized by its robust construction. Designed to endure harsh environmental conditions, this model is built with durable materials that enhance its longevity and reliability. It is resistant to various industrial contaminants, ensuring consistent operation even in challenging settings.

Energy efficiency is a hallmark of the UVC120 model. By employing innovative power management technologies, it significantly reduces energy consumption without compromising performance. This emphasis on sustainability not only lowers operational costs for users but also aligns with global efforts to minimize environmental impact.

Moreover, the Emerson MAN-0016-00 incorporates advanced safety features that prioritize user protection. These include integrated alarms and emergency shut-off mechanisms that respond to detected anomalies, enhancing overall workplace safety. The design also adheres to international safety standards, ensuring compliance and peace of mind for users.

In conclusion, the Emerson MAN-0016-00, UVC120, 0016-00 stands out as an exemplary model in the field of industrial technology. Its combination of precision control, user-friendly interface, robust construction, energy efficiency, and safety features make it an ideal choice for various applications. As industries continue to evolve, devices like this play a crucial role in enhancing performance, safety, and sustainability across the board.