Thermal conductive potting silicone_MCOTI

CN | EN

Control module
As the core of robot intelligent decision-making and motion control, the AI ​​robot control module (CU) integrates high-computing AI chips, power devices and high-speed communication units. It generates a large amount of heat during the continuous operation process and faces long-term challenges in vibration, dust and hot and humid environments. MCOTI provides overall material solutions to achieve efficient thermal conductivity, structural reinforcement and environmental protection, and comprehensively improve the reliability, stability and service life of the control module.
Control module
Thermal conductive insulating coating Chip protection Thermal interface materials Thermal conductive potting silicone Non-conductive/conductive sealant
Thermal conductive potting silicone
Humanoid robot joint modules integrate multiple functional units such as motors, drive controls, power supplies, and sensors. Under high-frequency motion, continuous operation, and complex environments, higher requirements are placed on heat dissipation performance and reliability. Thermal conductive potting silicone is used in joint drive modules and electronic control units. Through heat conduction, heat dissipation, insulation protection and stress buffering, it provides long-term reliable protection for key electronic components and improves the operational stability of the entire machine.

Overall potting/partial potting of control panel

Power device thermal protection

Electronic component stress buffering

Complex environment reliability protection

Thermal conductive potting silicone
Product advantages

Thermal conductivity up to 4.0 W/m·K

Short curing time improves production efficiency

Flexible silicone protects sensitive components with low stress

Waterproof and dustproof, the inverter is suitable for outdoor use

Good adhesion to housing (aluminum or GF/reinforced PBT)

V0 flame retardant grade provides safety guarantee

Product parameters

product

MSI 2408

MSI 2450

MSI 2410

MSI 2415

MSI 2420

MSI 2420LH

MSI 2430

MSI 2440

Appearance

Component A: gray

Component B: white

After blending: gray

Component A: gray

Component B: white

After blending: gray

Component A: gray

Component B: white

After blending: gray

Component A: gray

Component B: white

After blending: gray

Component A: gray

Component B: white

After blending: gray

Component A: gray

Component B: white

After blending: gray

Component A: white

Component B: pink

After mixing: pink

Component A: gray

Component B: white

After blending: gray

viscosity [mPa.s]

After mixing:

1,000-3,000

After mixing:

2,000-4,000

After mixing:

3,000-4,000

After mixing:

2,000-4,000

After mixing:

4,000-6,000

After mixing:

6,000-7,000

After mixing:

8,000-12,000

After mixing:

12,000-18,000 

Mixing ratio

1:1

1:1

1:1

1:1

1:1

1:1

1:1

1:1

proportion

1.7

1.7

2.0

2.6

2.8

2.8

3.0

3.2

hardness [Shore]

50A

50A

60A

60A

60A

10A

40A

50A

thermal conductivity [W/(m·K)]

0.7

0.8

1.0

1.5

2.0

2.0

3.0

4.0

flame retardant UL 94

V0

V0

V0

V0

V0

V0

V0

V0


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