Sep 24, 2026
A dehumidifier is designed to remove excess moisture from the air, but temperature also plays an important role in the process. When a dehumidifier operates in a cool environment, moisture can condense or freeze on internal components, which may affect airflow, dehumidification capacity, and continuous operation.
This is one reason PTC heaters for dehumidifiers are used as auxiliary heating components. By adding controlled heat to the airflow, a PTC heater can help maintain a more suitable operating temperature and support stable performance under different environmental conditions.

At Jaye Heater, we provide customizable PTC heating elements for dehumidifiers and other air-heating equipment, with different power ratings, dimensions, and structures available according to the equipment design.
The operating temperature of a dehumidifier can vary significantly depending on where it is used. Residential rooms, basements, warehouses, bathrooms, and industrial environments may all have different temperature and humidity conditions.
When the surrounding temperature becomes low, several issues may occur:
An auxiliary heater can provide additional heat to help manage these conditions. A PTC heater is one option because its electrical characteristics allow it to provide heating while naturally reducing power as its temperature increases.
PTC stands for Positive Temperature Coefficient. Unlike a conventional resistance wire whose resistance remains relatively stable over its normal operating range, a PTC heating element increases in resistance as its temperature rises.
When power is applied, the PTC element heats up. As its temperature increases, its resistance also increases, which causes the electrical power to decrease. This characteristic provides a degree of natural temperature regulation.
For a dehumidifier, the PTC element can be combined with a fan so that air passes across the heated surface before being discharged. The exact configuration depends on the airflow path and the available installation space.
The heating process can generally be understood as:
Electrical power → PTC heating element → heat transfer → airflow → warmer air
This makes PTC technology suitable for compact air-heating applications where controlled supplementary heat is required.
The installation position depends on the internal structure of the dehumidifier.
A PTC heater may be positioned:
Near the air outlet
The heater can warm the air before it leaves the unit. This configuration is useful when the design requires additional heat in the discharge airflow.
Inside the air duct
A PTC element can be integrated into the air channel so that air passes directly through or around the heating element. This allows the heat to be transferred efficiently to the moving air.
Near the evaporator or refrigeration section
In some designs, supplementary heating may be used to help manage low-temperature operating conditions or assist with defrosting. The exact heating method depends on the refrigeration system and control strategy.
The PTC structure should therefore be selected together with the airflow direction, fan capacity, available space, and required heating performance.
PTC heating elements can be designed in relatively compact configurations, making them suitable for equipment where installation space is limited. This is particularly useful for small household dehumidifiers and compact air-treatment equipment.
PTC elements can work together with fans to heat moving air. The heating structure can be designed according to the airflow direction and internal duct configuration.
The positive temperature coefficient characteristic allows the electrical resistance to increase as the PTC element heats up. This provides a natural power-limiting effect and makes PTC heaters different from simple fixed-resistance heating elements.
The heating element does not have to follow one fixed size or power specification. Voltage, wattage, dimensions, terminals, mounting structure, and other details can be considered according to the equipment design.
Choosing a PTC heater is not simply a matter of selecting a wattage. The heater needs to match the complete operating conditions of the dehumidifier.
1. Rated Voltage
The PTC heater should match the electrical system of the equipment, such as 110V, 220V, or another required voltage.
2. Heating Power
Power determines how much heat the element can provide. The required wattage depends on the airflow, target temperature, operating environment, and intended heating function.
3. Airflow
The fan's airflow rate is particularly important for air-heating applications. A heater designed for low airflow may not be suitable for a system with a significantly higher airflow rate.
4. Installation Dimensions
The available space inside the dehumidifier should be considered before selecting the heater. The length, width, thickness, terminal position, and mounting structure may all affect installation.
5. Target Temperature
If the PTC heater is being used to warm the discharged air, the required outlet-air temperature should be defined. If it is mainly used for low-temperature operation or defrost assistance, the heating requirements may be different.
6. Operating Environment
Temperature and humidity conditions should also be considered, particularly for dehumidifiers designed for basements, warehouses, cold rooms, or other relatively cold environments.
Both PTC heaters and conventional resistance heaters can be used for air heating, but their characteristics are different.
A conventional resistance heater generally relies on a resistance wire or similar heating element and may require additional temperature-control components to manage the heating temperature.
A PTC heater, on the other hand, has a positive temperature coefficient characteristic. Its resistance increases as the element heats up, providing a degree of self-regulating behavior.
For compact air-heating equipment such as dehumidifiers, this characteristic can make PTC technology a practical option. However, the final choice should still be based on the equipment's electrical design, airflow, temperature requirements, and control system.
If you are developing a new dehumidifier or replacing an existing heating element, providing more application information can make heater selection much easier.
Typically, the following information is useful:
If the exact PTC structure has not yet been determined, a drawing of the available installation space can also help the heater manufacturer recommend a suitable configuration.
The same PTC air-heating principle can be used in a variety of equipment where controlled air heating is required, including:
The required PTC structure and power can vary considerably between applications, so the heater should be designed according to the actual airflow and installation conditions rather than using a standard specification for every application.

Upgrade your heating systems with Jaye Heater's premium components. For reliable heating elements and precise thermal controllers that ensure performance and safety, contact our experts today for a quote and technical support. Let's find your perfect heating solution.