Thermal Management

Climate-Controlled
Robot Protection Systems


Thermal protection for industrial robots operating in cold storage,
sub-zero environments and other temperature-critical conditions

ROBCARE combines insulated protective covers, active heating and
temperature monitoring to help maintain stable operating conditions around industrial robots.

Reliable Robot Operation in Extreme Cold

Industrial robots operating in cold storage, refrigerated facilities or severe winter conditions can be exposed to temperatures around −30°C or below.
Low temperatures may increase lubricant viscosity, affect robot motion and create freezing risks for fluid lines and
auxiliary components.

Thermal protection helps create a more stable micro-environment around the robot.


Down to −30°C*
Extreme cold environments

Active Heating
Controlled thermal compensation

Temperature Monitoring
Adjustable operating conditions

* Application temperature depends on robot model, system configuration and project requirements.

Active Temperature-Controlled Protection

ABB IRB 660 · Handling & Palletizing

Multi-layer insulated protective cover combined with an electrically powered heating system and adjustable temperature control.

Heated Quilted Insulation

KUKA KR 210 R2700-2

A quilted multi-layer construction provides increased thermal insulation while retaining sufficient flexibility for articulated robot movement.

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Key Features

Active electric heating

Thermal insulation

Temperature monitoring & adjustment

Wind and dust protection

Water-resistant construction*

Designed for low-temperature operation

* Performance depends on material configuration, seams and closure design.

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Key Features

Quilted thermal insulation

Integrated heating

Temperature control

Heat-retention structure

Flexible joint accommodation

Customized fit for robot motion

.

Intelligent Temperature Control


Controlled Heat. Stable Operating Conditions.

Temperature sensors monitor conditions within the protective system. The controller regulates the heating output according to the selected temperature setting, helping maintain a stable thermal environment around the robot.

Temperature Sensor

Temperature Controller

Heating System

Insulated Protective Cover

Stable Robot Microclimate

System Architecture


More Than a Protective Cover

A complete thermal protection system can integrate multiple functional components according to the operating environment and robot configuration.

01

Protective Cover

Custom-fitted around the robot geometry and motion envelope.

02

Thermal Insulation

Reduces heat loss between the robot and surrounding environment.

03

Heating System

Provides active thermal compensation through integrated or external heating, depending on the application.

04

Temperature Sensors

Continuously measure temperatures at defined monitoring points.

05

Control System

Regulates heating according to the required operating temperature.

Integrated Heating & Temperature Control


Depending on the application, the protective cover can be integrated with an external heating and temperature-control unit to provide conditioned warm air and maintain a more stable thermal environment around the robot.

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External Heating & Temperature-Control Unit

Warm-air heating can be integrated with the insulated robot cover for rapid heating and controlled temperature maintenance.

Rapid Heating

Low-Temperature Operation

Stable Temperature
Control

Composite Insulated Construction

Dense multi-layer construction designed to combine thermal insulation with environmental protection.

Potential properties depending on material configuration:

Quilted Insulation Construction

Multiple material layers are quilted together to stabilize the insulation and maintain uniform thermal protection during robot movement.

Potential properties depending on material configuration:

Thermal Insulation

Wind Resistance

Water Resistance

Dust Protection

Mechanical Strength

Thermal Insulation

Heat Retention

Flexible Construction

Motion Adaptability

.

Engineering Considerations


01

Ambient Temperature

Minimum operating temperature,
temperature fluctuations and exposure duration.

02

Robot Motion Profile



Joint movement, cycle frequency and motion envelope
influence cover geometry and heating-zone design.

03

Required Thermal Condition

The target is to maintain suitable operating conditions around
critical robot components rather than simply maximize heating temperature.

04

Heating & Insulation Configuration



Heating power, insulation thickness, sensor locations and
control strategy are configured according to the application.

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Thermal protection is engineered as a system — not specified by cover material alone.

Engineered for Your Robot. Configured for Your Environment.


Every climate-controlled protection system is developed according to the robot model, operating temperature,
motion profile and environmental conditions.

Robot Model

 →

Operating Environment

 →

Thermal Requirement

System Configuration

Tell Us Your Robot and Operating Conditions.

Provide the robot model and basic operating conditions. We will evaluate the thermal requirements, robot movement and process environment to develop an appropriate protection concept.

ROBCARE™

Protection Engineering for
Robotic Systems

Protection Solutions

Applications

Contact

Custom-engineered protective solutions
for industrial robots, end-of-arm tooling
and related equipment.


Application-Based Engineering
Custom-Fit Protection
From Concept to Production

ROBCARE™

Billrothstraße 2A-5-34,
1190 Vienna, Austria

Tel: +43 660 5657968

Email: info@robcare.at

Web: www.robcare.at

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