Dyson is a renowned brand that manufactures high-quality fan heaters. These devices are designed to provide a comfortable and warm atmosphere in your home or office. However, one major concern that most people have is the amount of electricity that these devices consume.
In this article, we will delve into the electricity consumption of Dyson fan heaters. We will also discuss the factors that affect energy consumption and provide a guide on how to calculate the electricity usage of Dyson fan heaters.
Understanding Dyson Fan Heaters

Before we dive into the electricity consumption of Dyson fan heaters, it is essential to understand how these devices work. Dyson fan heaters are equipped with advanced technology that allows them to heat your room quickly and efficiently.
These fan heaters use a heating element that is located at the base of the device, which heats up the air that passes through it. The warm air is then projected into the room, providing instant warmth and comfort.
Dyson fan heaters are also equipped with a thermostat that regulates the temperature of the device. This means that the device will automatically turn off when it reaches the desired temperature and turn on when the temperature drops below the set level.
Overall, Dyson fan heaters are excellent devices that provide instant warmth and comfort. However, as with any electrical device, it is essential to consider their energy consumption to avoid high electricity bills.
Factors Affecting Electricity Consumption

The electricity consumption of Dyson fan heaters is affected by several factors. Understanding these factors is essential in determining the amount of electricity that your device consumes.
Size and Power Output
The size and power output of your Dyson fan heater play a significant role in determining its electricity consumption. The larger the device and the higher the power output, the more electricity it will consume.
For instance, the Dyson Pure Hot + Cool Link fan heater has a power output of 2000 watts, making it more energy-consuming than the Dyson AM09 Hot + Cool fan heater, which has a power output of 2000 watts.
Usage Time
The amount of time that you use your Dyson fan heater also affects its electricity consumption. The longer you use the device, the more electricity it will consume.
Furthermore, leaving your device on for extended periods when it is not needed will also increase its electricity consumption. It is advisable to turn off your device when you are not using it to avoid unnecessary electricity consumption.
Temperature Settings
The temperature settings of your Dyson fan heater also affect its electricity consumption. Setting your device to a higher temperature will increase its electricity consumption.
It is advisable to set your device to the lowest temperature that is comfortable for you to reduce its electricity consumption. You can also use your device’s thermostat to regulate the temperature of your room automatically.
In the next section, we will discuss how to calculate the electricity consumption of Dyson fan heaters.
Factors Affecting Electricity Consumption
Aside from the size, power output, usage time, and temperature settings, other factors affect the energy consumption of Dyson fan heaters. Here are some of them:
Room Size
The size of your room also affects the electricity consumption of your Dyson fan heater. A larger room requires a more powerful device, which means higher energy consumption.
It is essential to choose the right-sized device for your room to avoid unnecessary energy consumption. Dyson fan heaters come in different sizes, so it is crucial to choose the right one for your room.
Insulation
The insulation of your room also affects the electricity consumption of your Dyson fan heater. A poorly insulated room will require more energy to heat up, resulting in higher energy consumption.
It is advisable to insulate your room correctly to reduce energy consumption. You can also use curtains, blinds, or window films to reduce heat loss and increase insulation.
Location
The location of your Dyson fan heater also affects its energy consumption. Placing your device in a drafty area will increase its energy consumption as it tries to compensate for the heat loss.
It is advisable to place your device in a location with minimal drafts to reduce its energy consumption.
Calculating Electricity Consumption of Dyson Fan Heaters
Calculating the electricity consumption of your Dyson fan heater is essential in managing your energy usage. Here is a step-by-step guide on how to calculate the electricity usage of Dyson fan heaters:
-
Determine the power output of your device in watts. You can find this information on the device or in the user manual.
-
Determine the number of hours that you use your device per day.
-
Multiply the power output of your device by the number of hours that you use it per day. This will give you the daily energy consumption of your device in watt-hours.
-
Multiply the daily energy consumption of your device in watt-hours by the number of days that you use it per month. This will give you the monthly energy consumption of your device in watt-hours.
-
Divide the monthly energy consumption of your device in watt-hours by 1000. This will give you the monthly energy consumption of your device in kilowatt-hours (kWh).
By following these steps, you can determine the electricity consumption of your Dyson fan heater and manage your energy usage effectively.
In conclusion, understanding the electricity consumption of your Dyson fan heater is essential in managing your energy usage. Factors affecting energy consumption include size, power output, usage time, temperature settings, room size, insulation, and location. By following a step-by-step guide, you can calculate your device’s electricity consumption and manage your energy usage effectively. Dyson fan heaters are excellent devices that provide instant warmth and comfort, but it is essential to consider their energy consumption to avoid high electricity bills. As Reviews AZ, we recommend Dyson fan heaters for their efficiency and advanced technology.
Examples of Electricity Consumption of Dyson Fan Heaters
To give you a better idea of the electricity consumption of Dyson fan heaters, let’s take a look at some real-life examples.
Suppose you use your Dyson fan heater for five hours a day at a power output of 1500 watts. In that case, you can expect to use approximately 7.5 kWh of electricity per day. This translates to around 225 kWh per month, which is equivalent to $27.50 in electricity bills per month.
Comparing different models of Dyson fan heaters, the Dyson Pure Hot + Cool Link fan heater consumes more electricity than the Dyson AM09 Hot + Cool fan heater. The former has a power output of 2000 watts, while the latter has a power output of 1500 watts. Therefore, if you are concerned about electricity consumption, you may want to consider purchasing a lower-powered device.
Conclusion
In conclusion, Dyson fan heaters are excellent devices that provide instant warmth and comfort. However, it is essential to consider their electricity consumption to avoid high electricity bills. The amount of electricity that Dyson fan heaters consume depends on several factors, including their size and power output, usage time, and temperature settings.
To ensure that you are using your Dyson fan heater efficiently, you can calculate its electricity consumption using the guide provided in this article. We also recommend setting your device to the lowest comfortable temperature and turning it off when not in use to reduce unnecessary electricity consumption.
Overall, Dyson fan heaters are energy-efficient devices that can help you save money on your electricity bills while providing the warmth and comfort you need. If you are looking for a reliable and energy-efficient fan heater, Dyson fan heaters are an excellent choice.
*Disclaimer: The information provided in this article is for educational purposes only. Reviews AZ does not endorse any specific product or brand. Please consult with a licensed electrician or a qualified professional before making any decisions related to your electricity consumption.