Tuesday, March 10, 2015
LoopCAD Update 5.0.0997
RadiantWorks Professional Update 15.2.0
For more information regarding this software update or other Watts Radiant products, please visit wattsradiant.com or call our technical support team at 1-800-276-2419.
Tuesday, May 20, 2014
LoopCAD 2014
RadiantWorks Professional
For more information regarding this software update or other Watts Radiant products, please visit wattsradiant.com or call our technical support team at 1-800-276-2419.
Wednesday, April 2, 2014
New US Price List Effective June 2nd, 2014
Our 2014 US Price List will become effective on June 2nd, 2014. We understand the impact higher prices have on your business, and we continue to do everything we can to minimize price increases.
You can now download excel and pdf copies of the price list from the support section
www.wattsradiant.com/support/pricelist
Updates to RadiantWorks Pro® and LoopCAD software will be available in early May.
In addition, the updated 2014 Full Line Catalog will be available to order by May 1st. Contact us at literature@wattsradiant.com to order copies of the new catalog.
New Products Featured:
• Large diameter pex crimp fittings through 2”
• Custom electric mats
Price Updates:
• RadiantPEX+, RadiantPERT Tubing and SmartTrac™ - no change
• RadiantPEX-AL Tubing – 3% increase
• All other products – 5% increase
Please contact your Watts Radiant Representative to discuss specific pricing questions.
Tuesday, October 29, 2013
RadiantWorks Pro 2013.3.6
This version introduces several new product lines. The new SmartTrac panel solution is included in this update, as well as our new radiant controls. Our radiant lead free PEX fittings are also included in this version.
To install the update, just download the .zip file from the site, unzip it, and run the .exe. Your settings and projects will not be erased or moved with the update.
For more information regarding this or other Watts Radiant products, please visit the RadiantWorks page or call 800-276-2419.
Friday, October 18, 2013
New Radiant Controls!
Watts Radiant now has new control options!
The Radiant Thermostat 519 is replacing our line of DualTemp thermostats. With a simplified user interface, it is the ideal choice for spaces where maintaining a minimum floor temperature is desirable - bathrooms, kitchens, and sunrooms are just a few examples. Using pulse width modulation, the radiant thermostat is designed specifically for hydronic systems. The Radiant Thermostat 519 is easy to program, with an easy-to-read, backlit digital display. Changing the temperature is as easy as using the up and down buttons. Utilizing both an air and a floor sensor, you are able to control either the room or floor temperature, and even use them in combination.
Installation itself is simple, with clearly marked and easy accessible wiring terminals.
The Slab Sensor 079 is included with the Radiant Thermostat 519; however a redundant one may also be purchased if desired, for peace of mind.
We also offer the Adapter Plate 012, which can be used to mount the Radiant Thermostat 519 to a single gang electrical box rather than directly to the wall.
Our Mixing Control 356 is designed to control a mixing pump that is part of a heating system. It uses outdoor temperature reset to intelligently anticipate the needs of the mixing pump, improving response and efficiency.
We also have new options for your snow melting system. The Snow/Ice Sensor 091 (Socket) and the Snow/Ice Sensor 090 (In Slab) will be replacing the HSC-5 snow melting detector. System installation is simple - place the socket before the slab is poured, and then insert the sensor into the socket after the pour.
This new snow melting sensor will interface directly with the Snow Melting Control 654. This control offers great flexibility and choice of melting options. It can be as simple as a manually on/off switch, or as complex as a multi-zone, automatic, snow/ice detecting and melting system.
The Snow Sensor 095 (Air) will be replacing the LCD-1H. It can be mounted on the roof or a pole, and will also tie into the Snow Melting Control 654.
All of these controls have a one year warranty from date of installation.
Thursday, November 15, 2012
Introducing RadiantPERT
What is RadiantPERT?
RadiantPERT is a new type of tubing manufactured from a compound developed by Dow Chemicals. The compound we use is DOWLEX 2344 PE-RT (PE-RT stands for Polyethylene Raised Temperature). This is the most flexible of the DOWLEX compounds.
Dow has been selling these compounds in Europe since 1982. In 1999 they began to develop it for the North American market. The standards are now at a point where we feel this product can be used for our radiant applications.
One thing to keep in mind is the slightly different specification that RadiantPERT has reguarding pressure and temperature. RadiantPERT is rated at 80 psi at 180 degrees. This 180 degrees is the maximum temperature water that can be run through RadiantPERT. No higher temperature is allowed under the specification. Other than that small difference, RadiantPERT is rated to the same specifications as RadiantPEX+.
What are the advantages of RadiantPERT?
First, RadiantPERT is more flexible than RadiantPEX+. This allows it to more easily achieve some installations RadiantPEX+ has problems with. For instance, in a snowmelt system with typical 9" spacing, 3/4" tubing usually requires a "lightbulb" at the end. If you used RadiantPERT in this situation, you would not need to worry about lightbulbs. The bend radius of 3/4" RadiantPERT is 4-3/8". This added flexibility will also allow easier installations in staple-up situations when trying to work around joist bays.
Another advantage to RadiantPERT is a greener manufacturing process then RadiantPEX+. During manufacture there are no chemicals needed to perform a crosslink, as is required for RadiantPEX+. In fact, RadiantPERT does not need crosslinking at all, which leads to faster production. Because crosslinking is not used, there is no need for a cure time, the tubing can be produced and send directly to QC and then packaging. No delay and no waiting. Production will be able to respond quicker to demand.
RadiantPERT is dimensionally the same as RadiantPEX+. This means that all of our RadiantPEX+ fittings and manifolds can be used with RadiantPERT. No need to learn new fittings or installation rules; it's all the same as the RadiantPEX+ you know.
Monday, October 29, 2012
RadiantWorks Professional - RadiantPERT
This update adds the new RadiantPERT product line to the program, with all pricing and part numbers. No other changes have been made at this time.
To install the update, just download the .exe file from the site, and it will install over the old version. Your settings and projects will not be erased or moved with the updated.
For more information regarding this or other Watts Radiant products, please visit the RadiantWorks page or call 800-276-2419.
Friday, October 26, 2012
The SunStat View
We have recently introduced a new thermostat for our electric floor warming products: the SunStat View, a touchscreen programmable thermostat!
Let's take a look at some of the features.
When you first turn on your SunStat View, it will step you through initial setup and programming with the startup tutorial. It will prompt you to select your language, set the time and date, and pick your temperature format (either °F or °C). This will allow you to quickly get your system up and running. Afterwards you may then customize your program to your needs.
This is a fully touchscreen thermostat, with the only buttons being to turn it on and test the GFCI. All the rest of the programming and usage is done through the touchscreen. Using a touchscreen allows the SunStat to present more information, in an easier form, to you. This streamlines programming, and makes it easy to check and change your settings.
The View is fully seven day programmable. You are able to select any individual day of the week and set specific times and temperatures for that day alone. This allows for very flexible programming. Do you work from home on Tuesday and Friday? Now you can set those days separately from the rest of the work week. Perhaps your kid has soccer on Thursday evening, and you want the system to come on two hours later than every other day. With this SunStat View, you can do that!
Wondering what time you need to program the View so that your floor is warm by 7am? Wonder no more! With the included SmartStat feature, your SunStat View will learn how long it takes to warm and adjust the start-up time accordingly. You just tell it the times you'd like your floor to be warm and it will do the rest for you.
If you do not need to program your SunStat, and would just like it to hold a certain temperature until you wish to adjust it, you can do that as well. You are able to either have it hold indefinitely, or some amount of days ranging from one to ninety-nine. If you are at home for a couple days, just set the hold for as long as you need, and afterward the SunStat will resume your normal programming.
If you are curious as to how much the SunStat View has been running, perhaps to estimate the electrical cost of the system, there is a usage monitor that will allow you to see the hours the floor has been heating. You can choose to view the current day, last seven days, or last thirty days.
On the technical side, the SunStat View is protected by a built-in GFCI. What this means is that if something happens to damage your heating element, the SunStat GFCI will instantly cut power to the floor, protecting the system from further damage, and you from shocks, just like a GFCI outlet. A nice side effect of having a GFCI built into the SunStat is that you will have no need for an expensive GFCI breaker.
The SunStat View is covered by a three year warranty. If something in the SunStat fails, it is able to be returned to the point of purchase and a new one received.
Wednesday, April 18, 2012
RadiantWorks Professional - April 2 2012 Pricing
The pricing in RadiantWorks has been updated to reflect the April 2nd price guide. The software now also includes all the current electric radiant products, such as ProMelt and SlabHeat.
To install the update, just download the .exe file from the site, and it will install over the old version. Your settings and projects will not be erased or moved with the updated.
For more information regarding this or other Watts Radiant products, please visit the RadiantWorks page or call 800-276-2419.
Wednesday, August 24, 2011
Installing SlabHeat
The spacing of the SlabHeat cable will help determine how much heated area can be covered by a single SlabHeat coil. SlabHeat can be installed on either 4” (15 W/sf) or 6” (10 W/sf) centers, depending on the amount of heat required for the area. A heat loss calculation is required to know which spacing is right for the project. If the SlabHeat system is to be used for floor warming only, installing the cable at 6” on center is sufficient.
Another consideration to take into account when designing a SlabHeat system is to know the available amperage. A 120 VAC system will pull twice the amps as a 240 VAC system. If amp capacity is a factor, it may be better designing for 240 VAC. Make sure the voltage supplied matches the voltage requirement of the SlabHeat cable. Failure to do so may result in either an over-heating or under-heating condition.
SlabHeat can be installed in either a new slab pour or over an existing slab with a concrete cap. For new concrete pours, just zip-tie the cable to the rewire/rebar and elevate to the middle of the slab. If installing over an existing slab, it will be necessary to install CableStrap™ to hold the SlabHeat cable in place.
When finished the only visible part to the system is the wall mounted SunStat thermostat.
A nice feature of the SlabHeat system is there is no annual maintenance required. Hydronic systems can require periodic cycling of the circulators to prevent the impellers from locking up during periods of non-use. Hydronic systems may also require fluid testing, treatment, and periodic system purges. SlabHeat systems are simple and easy.
Selecting the right product for the application is a breeze with SlabHeat. Since there are fewer parts needed to run a system, just thecable and control, ordering is easier than with a hydronic system. Just make sure to purchase the correct voltage, either 120 VAC or 240 VAC, and the correct number of thermostats or relays.
Controlling a SlabHeat system is also simple. Choose between two types of SunStat controls: programmable and non-programmable. Either one can be set up to respond to either a set floor or air temperature. SunStats are also dual voltage, meaning a single SunStat control can operate either a 120 VAC or 240 VAC system directly (one or the other, not both at the same time). This eliminates the need for cumbersome contactors, transformers, and complicated wiring as seen with other types of heating systems.
Whether heating a small sunroom or an entire warehouse, SlabHeat is the simple solution.
Christopher Campfield
Watts Radiant System Designer
Tuesday, August 23, 2011
Introducing SlabHeat
SlabHeat expands upon our successful electric floor warming product lines. Designed as a robust, job site resistant cable, SlabHeat is an electric radiant system installed directly in concrete. A combination of strength, durability, and simplicity lies at the heart of SlabHeat. Engineered to provide room heating as well as floor warming for a wide range of applications, SlabHeat is the perfect solution for even the toughest heating project.
Why choose SlabHeat over a traditional hydronic radiant system?
One of SlabHeat’s benefits is the lack of a complicated mechanical room. With SlabHeat there is no need for a heat source such as a boiler; the cable is the heat source! For new construction, as well as remodel, trying to add a dedicated heat source can create its own set of challenges. Hydronic heat sources require a dedicated space, venting, power, and fuel. Hard piping is also needed to circulate the heated water. SlabHeat has none of these obstacles. With SlabHeat all that is required is to run the cable across the space and connect to the SunStat® thermostat. Then, simply pull dedicated 120 VAC or 240 VAC power to the area to be heated. When using a SunStat thermostat, the rest is as easy as wiring a light switch.
Designing a SlabHeat system is much simpler than designing a typical hydronic radiant system. First, figure the gross square footage (wall to wall), then multiply that number by 90%. This square footage will be your heated area. The area to be heated will help determine if a 120 VAC or a 240 VAC system should be used. For a 120 VAC system this is approximately 115 square feet of heated floor area at 4” on center. For a 240 VAC system this is about 225 square feet of heated floor area at 4” on center. This is determined by the SunStat 15 amp limit. If larger areas are to be heated one of two things need to happen. Either add additional SunStat thermostats (one for each additional 115 or 225 square feet of heated area) or add SunStat Relays to the control strategy (one Relay for each additional 115 or 225 square foot of heated area).
Up Next: Installation...
Christopher Campfield
Watts Radiant System Designer
Monday, August 15, 2011
Basic Design of Hydronic Freezer Panel Systems
A typical freezer application consists of an industrial sized, permanent freezer above a soil or compacted base. One issue resulting from this application involves the ground directly below the freezer heaving due to the moisture in the soil freezing. This heaving can sacrifice the integrity of the structure and should be avoided or mitigated if possible.
Solution:
To remedy the freezing and subsequent heaving of the soil, circulate hot water through piping in the soil to maintain a temperature above freezing. The ideal solution is to heat the soil enough to prevent freezing, while not causing excessive heat to transfer to the freezer itself, reducing efficiency and increasing load on the mechanical systems.
Design:
The design for the necessary supply fluid temperature is extrapolated from ASHRAE heating load calculations. The output of the surface of the soil is dependent on the freezer design. Freezers with internal temperature ranges between 20 °F and 30 °F are designed with loads of 3 BTU/h-ft², the ambient temperature is set at 50 °F directly above the soil, with a maximum ground surface temperature of 55 °F. These assumptions yield a solution that results in the soil staying above freezing (32 °F), while limiting the surface
temperature of the soil as to minimize the negative effects on the freezer mechanical system. As we are not concerned with striping or stratification on the surface, as we would be in a standard heating application, designs are computed around 36” or 48” tube spacing. NOTE: The diameter and length of the tubing are irrelevant when determining a supply fluid temperature and should be selected to optimize cost, availability, and mechanical room and pumping solutions.Results:
Empirical data shows that the resulting supply fluid temperatures within temperate climates range from 60 °F to 65 °F. With supply fluid temperatures that range close to the ground temperature, the back and edge losses from the soil are negligible. Dozens of these systems have been designed by Watts Radiant and are performing as expected for many years. The best results have been realized when combining intelligent controls that monitor ground temperatures with a heat source that harvests the waste heat produced from the freezer system. By doing this, a hydronic freeze protection system can be an attractive, simple solution that can be run with minimal cost to the owner.
-MDR
Friday, July 29, 2011
Sludge in Radiant Systems
Black sludge and other debris is often the initial sign of trouble for a hydronic system. Left untreated, corrosion will drastically shorten the life of any hydronic heating system. But how is corrosion treated? To answer this question it is important to understand what corrosion is and how it is caused. Different types of corrosion will require different types of treatment.
The most common cause is basic oxidation, or rust. Oxidation happens when oxygen, which is entrained in the water, reacts with ferrous (iron based) components. The rate in oxidation is doubled with every 18 degree rise in water temperature. Being a closed-loop radiant system, the internal water generally operates in the 100°-140°F range. Even a small amount of oxygen can cause significant corrosion. A simple field test can be used to visually verify corrosion. Partially fill a clear, clean glass with system fluid and then hold a magnet up to the side of the glass. Watch as the floating black particles migrate towards the magnate. This happens because the black particles are rust, composed mostly of iron, which is naturally attracted to the magnet.
Another fairly common cause for corrosion is an improperly balanced pH level. An ideal pH level is 7 on the pH scale, which is neither acidic nor basic. A low pH level will turn the system fluid acidic, causing the fluid to “eat away” at the ferrous components. Conversely, a high pH level is basic. Basic levels can be equally aggressive depending on the metals used. For the most part, basic pH levels do not adversely affect hydronic components themselves. Instead, a high, or alkaline, pH level tends to cause unwanted scale deposits. All the dissolved materials naturally present in the water supplied to the system will more likely precipitate out at higher pH levels, causing potential obstructions or reduced system performance over time. An example of a high pH system generally involves glycol. Most glycol based systems tend to start out more towards the basic pH range due to the inhibitors used.
The downside to glycol is the pH level is not constant and will drop as the glycol ages. Aging is a result of the glycol solution absorbing oxygen (which makes it an effective tool against oxygen permeation). A good practice to follow is to perform a yearly check of the glycol and re-fill with a new solution or add inhibitors when needed.
If the corrosion takes on the form of orange sludge, or has a pungent order, the system might be experiencing microbial growth. With water temperatures below 160 degrees, oxygen, and a food source such as glycol or sulfur rich water, microbial life can begin growing in the system. The resulting sludge is created when these microbes die. This is a particular problem with areas using artesian wells, which tend to be a good source of sulfur.
The last main cause for corrosion is electrolysis due to dissimilar metals. Because of all the trace metals present in city water, the possibility of these different metals reacting with each other and various system components is fairly significant. Metallics suspended in water create an excellent electrical conductor, increasing the chance of corrosion in systems with high ferrous content.
The best solution to any of these conditions is to ensure the system has been properly treated. To better evaluate the situation and determine which problems are causing the corrosion a fluid test should be performed. Companies which conduct these tests will be able to determine the nature and root-cause of the corrosion as well as offer a means of correction. Most “cures” include adding a specially formulated additive to the system. Although these additives will cure the current corrosion issues they won't eliminate the need for regular system maintenance and fluid checks. Inspect the hydronic system before the beginning of each heating season and take the necessary steps to ensure a corrosion-free season!
Christopher Campfield
Watts Radiant System Designer
Wednesday, October 6, 2010
Balanced Circuit Lengths
A: Most of the time, yes.
There are differing opinions on the need to keep balanced circuit lengths when designing and installing a hydronic system. The primary goal in any hydronic zone is to keep the flows of all the individual circuits the same, thereby creating equal temperature drops and equal heat from each circuit.
In the olden days, prior to circulators, gravity fed hydronic systems were sized in such a way that the natural balance of the system dictated the flow. These systems were very complicated to design and install, but were (in theory) self-balancing and required little to no adjustment.
With the introduction of modern hydronic circulators and flow controls, the systems became much more forgiving to design flaws. Circuits of varying lengths can be mated to a single manifold with flow controls, then balanced out to provide equal flows throughout the system. However, there is a tradeoff: balancing the systems can add a significant labor cost to both installation and maintenance. This may not be a huge deal with a single zone or 2-3 circuits, but with larger zones and more circuits, this becomes quite the daunting task for the installer. Also, if you're using a single manifold with actuators to feed multiple zones, having equal circuit lengths may not apply.
Do circuits need to be the same length? Technically, no. However, when a system is designed and installed with equal length circuits, the payoff is a more stable, self-balancing system that will require less maintenance and adjustment over it's lifespan.
-MDR
Thursday, June 17, 2010
RadiantWorks Professional - New Version w/ April 1 Pricing

RadiantWorks Professional version 2010.02.001 has been released, and can be downloaded from the RadiantWorks page on the Watts Radiant site.
The pricing in RadiantWorks has been updated to reflect the July 1 price guide. The software will now also have the ability to quote the FlexPlate and R-flex product lines.
To install the update, just download the .exe file from the site, and it will install over the old version. Your settings and projects will not be erased or moved with the update.
For more information regarding this or other Watts Radiant products, please visit the RadiantWorks page or call 800-276-2419.
Friday, June 4, 2010
Watts Radiant introduces FlexPlate,™ a revolutionary NEW under floor heating plate.

The primary material in the plate is a specially processed natural graphite giving FlexPlate unique heat conduction properties. Extensive performance testing indicates FlexPlate will outperform the industry standard aluminum plates. This increase in performance maximizes the thermal efficiency of any under floor radiant system through the use of lower input water temperatures.
In some cases FlexPlate will permit the use of lower temperature sources such as modulating-condensing boilers, ground-source heat pumps and solar thermal. FlexPlate is light weight, flexible, easy to cut to length, and features a simple staple-up installation.
For more information regarding this or other Watts Radiant products, please visit the FlexPlate Site or call 800-276-2419.
Tuesday, May 18, 2010
New Boiler Module Kit
- Air Remover (with or without flanges) for direct connection to circulators
- Swivel Isolation Pump Flange complete with integrated Purge Port.
- Residential Boiler Fill Fitting (RBFF).
Each of these items are designed to make installation and initial system fill easier, faster, and trouble free. The new RBFF is a new twist on an old concept. Each RBFF fitting allows for fast and easy isolation of the system expansion tank, a drain valve for easy purging or filling, and a 30 psig pressure gauge for quick and easy check of the system’s current pressure.
Friday, March 19, 2010
Watts Radiant introduces a NEW compact, lightweight PEX Unwinder.

This sturdy unwinder is collapsible and comes complete with its own carrying bag. Each unwinder comes fully assembled and can be secured to the ground or floor for smooth unwinding. The unwinder measures 10"x 36"x6" when folded, and handles coils up to 1".
For more information regarding this or other Watts Radiant products, please visit our website at www.wattsradiant.com or call 800-276-2419


