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Advanced Settings and Read-Out

Press both the UP () and DOWN () buttons together for 3 seconds. "INFO" is displayed.

Press the UP () button until you reach the desired sub menu. Select the sub menu with the OK () button.

Monitoring energy consumption

The thermostat calculates the average time it has been switched on allowing you to monitor your energy con- sumption. The thermostat displays the total switch-on time as a percentage for the last 2 days, 30 days or 365 days.

Calculation of operational costs per day:

(switch-on time:100) x kW x kWh-price x 24 h per day

Example:

Read-out: 30% in the latest 365 days

Size of heating system: 1.2 kW (ask the installer)

Cost of power: 0.2 USD/ kWh - Calculation:

(30:100) x 1.2 kW x 0.2 USD/ kWh x 24 h = 1.7 USD per day

2 days

30 days

365 days

Software version

Temperature sensor

Press the UP () or DOWN () button to show the dif- ferent readouts.

No changes can be made here. Use the OK () button to end.

4-event sequence

The present event sequence flashes: Days 1-5, followed by days 6-7. To change, press the UP () button until you have days 1-6 and then day 7 flashing, or all 7 days are flashing. Select the required sequence with the OK () button.

5-2: 4 events in 5 days +

2 events in 2 days.

6-1: 4 events in 6 days +

2 events in 1 day

7-0: 4 events in 7 days

QuickStat Installation & Operation Manual

Maximum and minimum allowed temperature range

The temperature setting range of 41˚F to 104˚F can be limited to prevent a too high or too low temperature from being selected.

Set the maximum allowed temperature. Use the UP () or DOWN () button to increase or reduce and the OK () button to accept.

Next "LoLi" is displayed.

Press the OK () button to continue.

Set the minimum temperature that the floor should never fall below. Use the UP () or DOWN () button to increase or reduce and the OK () button to accept.

Note: It is possible to select the heating OFF as your "LoLi" setting by reducing the setting to 41˚F, and then pressing the () once more.

Time and temperature scale selection

You can select either ˚F˚ or C scale, and 12 or 24 hour clock as follows:

Press the UP () or DOWN

() button to change settings. Confirm the required scale with the OK () button.

Adaptive function

This function enables the thermostat to calculate when it needs to switch ON so that the required temperature is reached at the set time. With a start time of 7:00 a.m. therefore, the thermostat may switch ON as early as 6:00 a.m. so that the desired temperature of 77˚F is achieved by 7:00 a.m. Without this function set, the thermostat will start to heat at the time you set.

Press the DOWN () button to switch between on and off.

Press the OK () button to confirm.

Ending the programming sequence

Press the OK () button to end programming and to return to scheduled program.

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Tyco QuickStatTM specifications Advanced Settings and Read-Out

QuickStatTM specifications

Tyco QuickStatTM is an advanced real-time monitoring and data acquisition system designed to enhance operational efficiency and safety in various industrial applications. This innovative system is engineered to provide high-performance data collection and analysis, enabling organizations to make informed decisions based on real-time information.

One of the standout features of QuickStatTM is its intuitive user interface, which allows operators to easily navigate through complex data streams. The system employs touch-screen technology, making it user-friendly and accessible even for personnel with limited technical expertise. This ease of use facilitates rapid training and minimizes the learning curve, allowing staff to focus on their core responsibilities.

At the heart of QuickStatTM is its state-of-the-art sensor technology. The system utilizes an array of high-precision sensors that can continuously monitor various parameters, such as temperature, pressure, flow rates, and chemical composition. This capability allows for comprehensive situational awareness, helping organizations to identify potential issues before they escalate into significant problems. The sensors are designed to provide accurate readings even in challenging environmental conditions, ensuring reliability and consistency.

QuickStatTM also incorporates cutting-edge wireless communication technology, enabling seamless data transmission across multiple devices and locations. This connectivity ensures that data can be accessed remotely, empowering teams to analyze real-time information from any location. The system supports various communication protocols, allowing for easy integration with existing infrastructure and other monitoring systems.

Another key characteristic of QuickStatTM is its robust data analytics capabilities. The system employs advanced algorithms to process and analyze the collected data, providing valuable insights and actionable recommendations. By leveraging machine learning and artificial intelligence, QuickStatTM can help organizations optimize their operations, reduce downtime, and enhance overall productivity.

Furthermore, security is a top priority for QuickStatTM. The system features advanced cybersecurity measures that protect sensitive data from unauthorized access and ensure the integrity of the information being collected. With data encryption and secure access protocols, organizations can be assured that their operational intelligence is safeguarded.

In summary, Tyco QuickStatTM represents a significant advancement in real-time monitoring technology. With its user-friendly interface, high-precision sensors, wireless communication capabilities, advanced data analytics, and robust security features, QuickStatTM is ideally positioned to support organizations in achieving their operational goals while ensuring safety and reliability. This innovative solution is a valuable asset for any industry that requires constant monitoring and data-driven decision-making.