Bacharach INSIGHT manual Making a Draft / Pressure Measurement

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Fyrite® INSIGHT

Undiluted Flue

Gas Sample Taken

Under Draft

Diverter in Top

of Fire Tube

Hot Water Tank

Atmospheric Burner or Gravity Vented Forced Air

Atmospheric or

Gravity Vented

Boiler

80% Eff. Fan Assist or Power Vented Furnace/Boiler

Fig. 4.1

90% Eff. Condensing

Furnace/Boiler

Fyrite® INSIGHT

4.6 Making a Draft / Pressure Measurement

The difference in pressure (ΔP) between two areas can be measured by using the analyzer's two pressure ports and the PRESSURE screen. By using the -ΔP port as the reference, the pressure applied to the +ΔP port will be displayed on the PRESSURE screen as the differential pressure between the two ports. Perform a draft / pressure measurement as follows:

1.Turn ON the analyzer and allow it to complete its warm-up cycle.

2.Display the MAIN MENU by pressing the MENU (F2) button. If necessary, press ESC until MENU appears

above F2.

3.Use the ▲▼ buttons to select PRESSURE.

Press ENTER to display the Pressure screen.

4.Before taking a measurement, the pressure sensor may need to be re-zeroed if it is not already displaying zero with both pressure ports open to the atmosphere. If necessary, zero the pressure sensor as follows:

• Press the ZERO (F2) button.

F1

F2

F3

 

 

 

• Disconnect any hoses connected to the

 

 

 

 

 

 

+ΔP and -ΔP ports, and then press EN-

 

 

 

TER to zero the pressure sensor.

 

 

 

• Reconnect any hoses. When measuring

 

 

 

 

 

 

draft, leave the -ΔP port open to the at-

 

 

 

 

mosphere and connect the probe's draft

 

 

 

 

hose to the +ΔP port.

 

 

 

 

5. Do one of the following to measure draft or

 

 

 

 

differential pressure:

 

 

 

 

 

 

 

 

• To measure draft, insert the probe into

 

 

 

the stack and observe the draft reading

 

 

 

 

 

 

on the PRESSURE screen.

 

 

 

• To measure differential pressure, con-

 

 

 

nect two sampling hoses to the +ΔP

 

 

 

and -ΔP ports, and place the open end

 

 

 

of each hose into the areas being mea-

 

 

 

24

Instruction 24-9460

 

Instruction 24-9460

25

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Contents Fyrite Insight Table of Contents Fyrite Insight IntroductionFyrite Insight Features & Benefits Operational Overview Technical CharacteristicsPreliminary Steps Setting UP the AnalyzerPower Connecting the Probe Hose & Thermo- coupleInsight Front Panel Push Buttons Setup ModeEntering Setup Temperature UnitsPrint Pressure Pressure UnitsClock 5 O2 Reference9 Run/Hold Format UsernameLanguage Selection Button SoundCAL Reminder Period Inactivity Timeout Post-Purge PeriodDate Format Fuel Selection Analyzer Power On & Warm UpOperation Operating TipsPerforming a Combustion Test Sampling PointMaking a Draft / Pressure Measurement Emptying the Water Trap Temperature MeasurementSaving Test Data Ending a Combustion TestPowering OFF the Analyzer & Purging Low Battery AlarmMemory Fyrite User Software Installation Printing Test DataPress the Print F1 button to begin print- ing Windows Vista Operating System Starting a Calibration Calibration & MaintenanceFyrite User Software Description Smart SensorsMaterials Required Pressure Sensor CalibrationProcedure TS-Zero ProcedureStack Calibration Material Required TS-Span ProcedureTA-Zero Procedure Air CalibrationCO Sensor Calibration TA-Span ProcedureMaintenance Fyrite Insight Disassembly Water Trap / Filter O2 Sensor ReplacementCO Sensor Replacement Thermocouple ReplacementTools Required Parts & Tools Required Gas Pump ReplacementCleaning the Probe Error MessagesStatus Screen Diagnostics ScreenMéxico Service CentersUnited States Pennsylvania CanadaHeadquarters Hunt Valley Circle, New Kensington, PA

INSIGHT specifications

Bacharach INSIGHT is a cutting-edge platform designed for HVAC professionals and building management teams, providing real-time insights and analytics for optimal system performance. Offering a seamless integration of hardware and software, INSIGHT enhances operational efficiency by transforming traditional data management paradigms.

One of the standout features of Bacharach INSIGHT is its user-friendly interface, which enables users to visualize data in an easily digestible format. The platform presents key metrics, historical trends, and system alerts, empowering users to make informed decisions quickly. This accessibility is crucial for technicians and managers who need to identify potential issues before they escalate, ensuring systems run smoothly and effectively.

Another significant characteristic of Bacharach INSIGHT is its advanced data analytics capabilities. The platform leverages machine learning algorithms to analyze performance data, identify patterns, and predict maintenance needs. This proactive approach minimizes downtime and extends the lifespan of HVAC systems, resulting in cost savings for organizations.

INSIGHT also incorporates IoT technologies, allowing for real-time data collection from various connected devices across an HVAC system. This integration ensures that users have access to accurate and timely information, facilitating immediate responses to any irregularities. The use of cloud technology enables data storage and access from anywhere, promoting collaboration among team members and stakeholders.

The platform is designed with scalability in mind, accommodating small businesses with singular HVAC units as well as large enterprises with complex, multi-site systems. This flexibility means that as organizations grow, Bacharach INSIGHT can adapt to their changing needs without requiring extensive modifications.

Furthermore, user customization options allow for tailored dashboards and alerts, ensuring that each team can focus on the most relevant metrics for their operations. This adaptability contributes to improved user experience, enhancing system usability and engagement.

In summary, Bacharach INSIGHT combines intuitive design, powerful analytics, IoT integration, and scalability to redefine HVAC management. By equipping users with actionable insights and fostering proactive maintenance practices, INSIGHT positions organizations to optimize their energy use, reduce costs, and improve overall system reliability. This innovative platform is pioneering a new era for HVAC professionals, facilitating smarter building management with robust, real-time analytics.