Raypak Hot Water Energy Management Control FAX Modem Setup and Test, Value Transmit Day Graphs

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FAX MODEM SETUP AND TEST

FD TEXT - Fax Dial-OutUse this screen to enter the phone number of the fax machine which is to receive fax alarm messages, installation reports, and/or graphics. Example "ATDT5551212". Edit text with SPACE, BACKSP, F4, and F5.

XXVALUE - Fax Graph Max Temp This value sets the highest value of the Y-axis tempera- ture scale for all faxed graphs. This item is unrelated to PC graphics. Autoscaling is not support- ed.

XN VALUE - Fax Graph Min Temp This value sets the lowest value of the Y-axis tempera- ture scale for all faxed graphs. This item is unrelated to PC graphics. Autoscaling is not support- ed.

XM VALUE - Fax on Day of Month A complete installation report with graphics of logged data can be automatically faxed, once a month, to any group III fax machine. This value sets the day of the month to transmit this data. The report consists of seven pages. The first two pages give all program values and performance data, such as percent savings. The next three and one- half pages are detailed graphs for the last seven days. The last one and one-half pages are trend graphs for the last 12 months. The default day of zero disables this function.

XW VALUE - Fax on Day of Week Detailed graphs of logged data for the last seven days can be automatically faxed, once a week, to any Group III fax machine. This value sets the day of the week to transmit this data.

Value

Transmit

Day Graphs

0

None

None

1

Monday

Last 7 days on 3 1/2 pages

 

 

 

2

Tuesday

Last 7 days on 3 1/2 pages

 

 

 

3

Wednesday

Last 7 days on 3 1/2 pages

 

 

 

4

Thursday

Last 7 days on 3 1/2 pages

 

 

 

5

Friday

Last 7 days on 3 1/2 pages

 

 

 

6

Saturday

Last 7 days on 3 1/2 pages

 

 

 

7

Sunday

Last 7 days on 3 1/2 pages

 

 

 

8

Every Day

Yesterday full size on 1 page

 

 

 

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Contents RayTemp Hot Water Energy Management Control SERVICE/RETURN Authorization Procedure BIG Picture Getting StartedManual Attaching the Temperature SensorsProcedure for Connecting Temperature Sensors to Pipes What Comes with the ControlProcedure for Installing Supply Sensor in Tank Providing 24 VAC Power to the ControlInstallation Layout Make all adjustments with ALL power off DIP Switch Settings on Circuit BoardConnecting the Optional Elsa Brand Modem RT-Relay Status Using the Front Panel to Check Sensors and RelaysGreen = Building or Buying Interface CablesDescription Red =Back Installing PTT Software on Your PCSimulated Front Panel Display SpaceReading Logged Data Using Your PC, PTT and Modem to Call a ControlPage Quick Reference Front Panel Laptop Screen SelectedOr PC Key See Screen code and description, in sequence of appearanceScreen Code and Description Time and Date First Screen AT POWER-UPManual Override View Sensors and RelaysErase Memory / Reset Program Security PasswordFront Panel Menu / Lock Time Schedule Supply TemperaturePage NO. Default is YES Return TemperatureSQ Select Branch Temperature not UsedB0 Select # of Branch Sensors Installed Not used Relay SequencingSensor Override Test Savings Test Results Savings Test SetupSensor Calibration Data Modem Setup Location TextLapTop Value Transmit Day Graphs FAX Modem Setup and TestStatus Description Option Transmit Function PagesSERVICE/RETURN Authorization Procedure Warranty

Hot Water Energy Management Control specifications

Raypak, a leading name in the hydronic heating and hot water markets, has developed an innovative solution for energy management with its Hot Water Energy Management Control system. This advanced control technology is designed to optimize the performance and efficiency of heating systems, making it an ideal choice for commercial and residential applications.

One of the standout features of the Raypak Hot Water Energy Management Control is its ability to integrate with various heating systems, including boilers and water heaters. This flexibility ensures a seamless connection that maximizes energy efficiency across different types of equipment. The system employs advanced algorithms to analyze real-time data, enabling it to adjust operations based on current demand and environmental conditions.

A key characteristic of Raypak’s control system is its user-friendly interface. This interface allows operators to easily monitor and adjust system settings, ensuring that hot water is delivered at the desired temperature without wasting energy. With remote access capabilities, users can manage their systems from anywhere, enhancing convenience and operational oversight.

The technology behind the Hot Water Energy Management Control emphasizes sustainability. By actively managing water temperature and flow rates, the system minimizes energy consumption while maintaining user comfort. Smart scheduling features allow for operation based on peak and off-peak energy rates, reducing operational costs and environmental impact.

Moreover, Raypak’s commitment to reliability and durability is evident in this control system. Built with robust components, the control unit is designed to withstand challenging environments while maintaining consistent performance. This not only extends the lifespan of the system but also ensures that the hot water supply remains uninterrupted.

Another notable aspect of the Raypak energy management system is its compatibility with smart building technologies. As the trend towards smart automation in building management systems continues to grow, Raypak has equipped its control with features that allow it to communicate with other automated systems. This integration facilitates a holistic approach to energy management, optimizing all aspects of facility operation.

In addition to efficiency and integration, Raypak provides comprehensive support and training for its Hot Water Energy Management Control system. This commitment to customer service ensures that users can take full advantage of the system’s capabilities, enhancing both performance and satisfaction.

In conclusion, the Raypak Hot Water Energy Management Control system offers a technologically advanced solution for optimizing hot water heating. With its range of features, emphasis on sustainability, and compatibility with smart technologies, it stands out as a pivotal component for effective energy management in today’s demand-driven environment.