Emerson PN-51-T56 instruction manual Specifications General

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Instruction Manual

Clarity II T56

PN-51-T56

May 2012

 

 

1.2Specifications - General

Case: Polycarbonate. NEMA 4X/CSA 4, IP66.

NOTE:

To ensure a NEMA seal, tighten all four front panel screws to 6 in-lbs of torque.

Dimensions: 6.2 x 6.2 x 5.2 in. (157 x 157 x 132mm)

Conduit openings: Accepts (6) PG13.5 or 1/2 in. conduit fittings

Display: Large 3.75 x 2.2 in. (95.3 x 55.9mm) high resolution color LCD displays large process variables and user-definable display of diagnostic parameters. Calibration, programming and information screens display clear, easy-to-read characters. The color display is back-lit and back- lighting intensity is user adjustable. Measurement character height: (.5") 13mm. Main display can be customized to meet user requirements.

Ambient temperature and humidity: For Turbidity only: 0 to 55°C (32 to 131°F). RH 5 to 95% (non-condensing).

NOTE:

The analyzer is operable from -5 to 55°C (-23 to 131°F) with some degradation in display response or performance. Above 60°C, the following components will progressively and auto- matically shut down: display, USB communications port, current outputs, alarm relays, main circuit board.

WARNING

Always remove USB memory device at ambient temp above 60°C. Do not access USB port if combustible atmosphere is present.

Storage temperature: -20 to 60°C, (-4 to 140°F)

Power: Code -02: 20 to 30 VDC. 20 W

Code –03: 85 to 264 VAC, 47.5 to 65.0 Hz, 20 W

Real time clock back-up: 24 hours.

Hazardous Location Approvals:

Class I, Division 2, Groups A, B, C, & D

Class Il, Division 2, Groups E, F, & G

Class Ill T4A Tamb= 50°C

Evaluated to the ANSI/UL Standards. The ‘C’ and ‘US’ indicators adjacent to the CSA Mark signify that the product has been evaluated to the applicable CSA and ANSI/UL Standards, for use in Canada and the U.S. respectively

Class I, Division 2, Groups A, B, C, & D

Class Il & lll, Division 2, Groups E, F, & G

T4A Tamb= 50°C Enclosure Type 4X

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Description and Specifications

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Contents Clarity II T56 Turbidimeter Clarity II T56 Clarity II T56 Turbidimeter About This Document Contents Table of Contents cont’d Description and Specifications Features and ApplicationsSpecifications General Listed Ordering Information T56 Turbidity System ComponentsInstallation InstallationUnpacking and Inspection General InformationPanel Mount Wall / Surface Mount Installation Debubbler Assembly Debubbler and Flow Chamber Installation Sensor SensorWiring GeneralPreparing Sensor Cable Power, Output, and Sensor ConnectionsPreparing Conduit Openings Sensor wiring to signal boards SensorImportant Note Display and Operation User InterfaceInstrument Keypad Function keysMain Display Navigation KeysAlpha-numeric Keypad Process MeasurementsFault and Warning banner Menu SystemPN-51-T56 May This page left blank intentionally Programming the Analyzer Basics Configuring and Ranging the Current OutputsSetting a Security Code Resetting Factory Default Settings Security AccessUsing Hold Programming Alarm Relays ENTER/MENUClarity II T56 Turbidity Measurement Programming Programming TurbidityProgramming Measurements Introduction PN-51-T56 May This page left blank intentionally Turbidity CalibrationCalibration Introduction Grab Calibration Turbidity Slope Calibration TurbidityStandardize Calibration Turbidity Maintenance Cleaning the sensorOverview SensorReplacing the Lamp/LED Board Cleaning the orifice Debubbler and Measuring ChamberList of Replacement Parts Location Description PartReturn of Material Warranty RepairNon-Warranty Repair Dilution Volume Final Volume for Factor AppendixWarranty Certification Clarity II T56 PN-51-T56 May This page left blank intentionally Clarity II T56 RosemountAnalytical.com

PN-51-T56 specifications

The Emerson PN-51-T56 is a sophisticated and versatile process control valve designed to meet the demands of various industrial applications. This model is known for its robust performance, reliability, and advanced features that enhance its functionality and efficiency in process control.

One of the main features of the PN-51-T56 is its globe valve design, which allows for excellent flow regulation and precise control over fluid dynamics. The valveā€™s construction is designed to minimize pressure drop while ensuring high flow capacity, making it ideal for both liquid and gas applications in industries such as oil and gas, chemical processing, and water treatment.

The PN-51-T56 incorporates Emerson's latest technologies, including digital valve control systems. These systems enable seamless integration with existing control networks, allowing for real-time performance monitoring and diagnostics. With smart technologies, operators can optimize valve performance, reduce downtime, and improve overall process efficiency.

In terms of characteristics, the PN-51-T56 features a wide range of sizing options, providing versatility in various applications. It is available in different materials, allowing users to select the most appropriate material for their specific media and environmental conditions. The valve is built to withstand extreme temperatures and pressures, ensuring durability and longevity even in the most demanding situations.

Additionally, the valve's design considers maintenance ease, featuring accessible components that simplify repairs and periodic maintenance. This design philosophy minimizes operational interruptions and contributes to lower lifecycle costs.

Another key characteristic of the PN-51-T56 is its compliance with international standards and regulations, ensuring that users can rely on its safety and performance in critical applications.

In summary, the Emerson PN-51-T56 combines innovative technology with a robust design to deliver precise control in process applications. Its superior performance, durability, and ease of integration make it a preferred choice for industries requiring reliable process control solutions. With ongoing advancements in automation and digitalization, the PN-51-T56 positions itself as an essential tool for optimizing process efficiency and effectiveness in modern industrial settings.