Clip Heat Sinks 6

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Part RoHS Manufacturer Thermal Device Type Profile Body Material Device Used On Construction Fin Orientation Thermal Resistance Approvals (V) Height Width Finish Diameter Color Additional Features Packing Method Weight Length Power (Rated)

576802B04000G

Boyd

Heat Sink

U

Aluminium

Transistor

Clip

27.3 Ω

0.75 in (19.05 mm)

0.5 in (12.7 mm)

Anodized

Black

0.57 in (14.48 mm)

576802B00000G

Boyd

Heat Sink

U

Aluminium

Clip

Transverse

27.3 Ω

0.75 in (19.05 mm)

0.5 in (12.7 mm)

Anodized

Black

0.57 in (14.48 mm)

576802B03100G

Boyd

Heat Sink

Aluminium

Clip

27.3 Ω

0.5 in (12.7 mm)

0.57 in (14.48 mm)

Anodized

Black

0.75 in (19.05 mm)

566010B03400G

Boyd

Heat Sink

Aluminium

Clip

11.5 Ω

1.22 in (30.99 mm)

0.5 in (12.7 mm)

Anodized

Black

1 in (25.4 mm)

7136DG

Boyd

Heat Sink

U

Copper

Clip

Transverse

19.7 Ω

0.848 in (21.54 mm)

0.515 in (13.08 mm)

Tin

0.52 in (13.21 mm)

576802B03900G

Boyd

Heat Sink

U

Aluminium

Clip

Transverse

27.3 Ω

0.75 in (19.05 mm)

0.5 in (12.7 mm)

Anodized

Black

0.5 in (12.7 mm)

Heat Sinks

Heat sinks are passive cooling devices that are used to dissipate heat generated by electronic components such as CPUs, GPUs, and power amplifiers. They work by increasing the surface area available for heat dissipation, allowing heat to be transferred more efficiently from the component to the surrounding air.

Heat sinks come in a variety of shapes and sizes, including finned heat sinks, pin fin heat sinks, and heat pipes. They are typically made of aluminum or copper, which have high thermal conductivity and good heat dissipation properties.

Heat sinks are mounted directly onto the electronic component using thermal interface material, such as thermal paste or thermal pads. The thermal interface material fills any gaps between the heat sink and the component, ensuring efficient heat transfer.

Heat sinks offer several advantages over other types of cooling devices. They are passive, which means they do not require any additional power to operate. They are also highly reliable and have no moving parts that can wear out or break down over time.

However, heat sinks also have some limitations, such as limited cooling capacity and susceptibility to external disturbances. They also require adequate airflow to be effective, which can be a challenge in confined spaces.