Heat Sinks

Results: 6
Type
Board LevelBoard Level with Fan
Length
1.063" (27.00mm)1.142" (29.00mm)1.220" (30.99mm)1.378" (35.00mm)1.693" (43.00mm)
Width
1.063" (27.00mm)1.142" (29.00mm)1.220" (30.99mm)1.378" (35.00mm)1.693" (43.00mm)
Fin Height
0.670" (17.00mm)0.713" (18.10mm)
Thermal Resistance @ Natural
2.76°C/W3.01°C/W3.10°C/W3.16°C/W3.36°C/W
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Showing
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Mfr Part #
Quantity Available
Price
Series
Package
Product Status
Type
Package Cooled
Attachment Method
Shape
Length
Width
Diameter
Fin Height
Power Dissipation @ Temperature Rise
Thermal Resistance @ Forced Air Flow
Thermal Resistance @ Natural
Material
Material Finish
624
In Stock
1 : ¥157.87000
Tray
Tray
Active
Board Level with Fan
-
Clip, Tape
Square, Fins
1.693" (43.00mm)
1.693" (43.00mm)
-
0.670" (17.00mm)
-
-
3.16°C/W
-
-
0
In Stock
Check Lead Time
1 : ¥250.19000
Tray
Tray
Active
Board Level with Fan
-
Clip, Tape
Square, Fins
1.220" (30.99mm)
1.220" (30.99mm)
-
0.670" (17.00mm)
-
-
3.01°C/W
-
-
0
In Stock
Check Lead Time
300 : ¥264.56323
Tray
Tray
Active
Board Level
-
Clip, Tape
Square, Fins
1.693" (43.00mm)
1.693" (43.00mm)
-
0.670" (17.00mm)
-
-
3.16°C/W
-
-
0
In Stock
Check Lead Time
300 : ¥329.81857
Tray
Tray
Active
Board Level with Fan
-
Clip, Tape
Square, Fins
1.378" (35.00mm)
1.378" (35.00mm)
-
0.713" (18.10mm)
-
-
2.76°C/W
-
-
0
In Stock
Check Lead Time
300 : ¥339.69273
Tray
Tray
Active
Board Level with Fan
-
Clip, Tape
Square, Fins
1.063" (27.00mm)
1.063" (27.00mm)
-
0.713" (18.10mm)
-
-
3.10°C/W
-
-
0
In Stock
Check Lead Time
300 : ¥343.12723
Tray
Tray
Active
Board Level with Fan
-
Clip, Tape
Square, Fins
1.142" (29.00mm)
1.142" (29.00mm)
-
0.713" (18.10mm)
-
-
3.36°C/W
-
-
Showing
of 6

Heat Sinks


Passive heat exchangers that transfer the heat generated by an electronic component to a fluid medium, often air or a liquid coolant, dissipating it away from the device to maintain an optimal operating temperature. They are designed to maximize the surface area in contact with the medium surrounding it. They are usually made out of copper or aluminum due to their high thermal conductivity.