Cofan Thermal PCB

HEAT PIPES

COFAN’S HEAT PIPES ARE SUPERCONDUCTORS
WITH EXTRAORDINARY HEAT TRANSFER CAPACITY.

Cofan’s heat pipe is a thermal management device designed
to transfer heat efficiently from one point to another using
the principles of phase transition and thermal conductivity.
It consists of a sealed hollow tube containing a working
fluid and a wick structure that facilitates the movement of
the fluid within the tube.

Cofan’s Heat pipes offer several advantages. They have high thermal conductivity, allowing for the transfer
of heat over long distances with minimal temperature drop, far superior to solid conductors of the same size.
They operate passively, relying on natural physical processes without the need for external power. Additionally,
heat pipes are flexible and can be bent and shaped to fit various applications, making them highly versatile.
They also provide efficient heat distribution along their length, which is beneficial for temperature-sensitive components.

Cofan_Heatpipe

heat pipe feature

Cofan_Heatpipe
Cofan_Heatpipe
Cofan_Heatpipe

Heat Pipe Features

heat pipe technology

Cofan_Heatpipe-_Structure

Heat pipe includes three main components: the container, the working fluid, and the wick structure. The container, usually made of metal such as copper or aluminum, provides the structure and holds the working fluid. Inside the container, the working fluid, which can be water, ammonia, acetone, or various refrigerants, undergoes phase changes to transfer heat. The wick structure, made from materials like sintered metal, screen mesh, or grooved surfaces, lines the inner walls of the container and aids in the capillary action needed to return the condensed fluid back to the evaporator section.

Main Components

Cofan_heatpipe_vapor_flow

Heat is absorbed from the source through vaporization and released at a sink through condensation. The vapor travels from source to sink through the central channel, while the liquid travels from sink to source through the porous wick. The rapid growth of the electronics and personal computer industries has introduced challenging heat dissipation problems. Heat pipes effectively transport heat with minimal drops in temperature.

heat pipe application

Heat pipes are used in a wide range of applications including electronics cooling in laptops, desktops, and servers to cool CPUs, GPUs, and other heat-generating components. In aerospace, they are used for temperature control in satellites and spacecraft. They also play a role in managing the heat generated by high-power LED lights, improving energy efficiency in HVAC systems, and cooling sensitive equipment in medical devices.

Cofan_Heatpipe_Application

GPU/CPU

Cofan_Heatpipe_Application

Laptop

Cofan_Heatpipe_Application

Server

Cofan_Heatpipe_Application

Aerpspace

Cofan_Heatpipe_Application

Led

Cofan_Heatpipe_Application

Medical

cofan's heat pipe products

Product Information

Cofan_Heatpipe

Product Information

Cofan_Heatpipe

Product Information

Cofan_Heatpipe

Product Information

Cofan_Heatpipe

Product Information

Cofan_Heatpipe

Product Information

Cofan_Heatpipe
Diameter x Length
[mm]
Part No.
Diameter x Length
[mm]
Part No.
Diameter x Length
[mm]
Part No.
Diameter x Length
[mm]
Part No.
4 x 70
91-1028-70
5 x 100
91-1029-100
6 x 125
91-1030-125
8x 125
91-1031-125
4 x 175
91-1028-175
5 x 125
91-1029-125
6 x 150
91-1030-150
8 x 150
91-1031-150
4 x 100
91-1028-100
5 x 150
91-1029-150
6 x 170
91-1030-170
8 x 175
91-1031-175
4 x 125
91-1028-125
5 x 175
91-1029-175
6 x 200
91-1030-200
8 x 200
91-1031-200
4 x 200
91-1028-200
5 x 200
91-1029-200
6 x 225
91-1030-225
8 x 300
91-1031-300
4 x 250
91-1028-250
5 x 225
91-1029-225
6 x 250
91-1030-250
4 x 225
91-1028-225
5 x 225
91-1029-250
6 x 300
91-1030-300
4 x 300
91-1028-300
5 x 300
91-1029-300

heat pipe data sheet

Wick Structure
Standard Length/mm
Special Length/mm
Performance 100-350 L/mm
Mesh
Groove
Sintered
60-120
121-200
210-400
601-4700
Power/W
Terminal Resistance ºC/w
⌀2
3-6
0.62-1.66
⌀3
10-15
0.33-0.5
⌀4
15-28
0.17-0.33
⌀5
● (Groove & Mesh)
30-50
0.1-0.2
⌀6
● (Groove & Mesh)
50-70
0.07-0.15
⌀8
● (Mesh)
60-90
0.05-0.1
⌀10
● (Mesh)
130-160
0.03
⌀12
● (Mesh)
130-160
0.03
⌀14
● (Mesh)
180-220
0.08

wick structure comparison

Wick Structure
Screen Mesh
Groove
Sintering Powder
Image
Rate Process
Easy
Easy
Hard
Capillary
Bad
Good
Better
Flat (Min.)
t=2.0
t=1.5
t=2.5
Bend (Min.)
2* Heat Pipe Diameter [D]
2* Heat Pipe Diameter [D]
3* Heat Pipe Diameter [D]
Resistance (t = 3mm)
0.250 ~ 0.350
0.030 ~ 0.040
0.030 ~ 0.045
Heat Flux
35
40
45
Cost
Low
Medium
High

heat pipe working fluid

Main Components

Working Fluid
Relative Figure of Merit [80ºC]
Useful Range [ºC]
Wick Vessel Material
Life [hrs]
Ammonia
0.45
-60 ~ 100
AL SS304
36000
Ammonia
0.45
-60 ~ 100
AL SS304
36000
Freon 113
-10 ~ 100
86
CU AL SS304
25000
Aceton
300
0 ~ 120
CU AL SS304
50000
Methanol
450
10 ~ 120
CU AL SS304
less than 50000
Ethanol
340
0 ~ 120
CU SS304
24000
Water
40000
30 ~ 250
CU
7500000

copper screen mesh

Cofan_Heat_Pipe
Cofan_Heat_Pipe
Cofan_Heat_Pipe
Assessment Parameter
Diameter (mm)
Diameter (mm)
Diameter (mm)
Diameter (mm)
Thickness
4
5
6
8
t = 2.0mm
.65 ~ .09; 15
.50 ~ .80; 18
.35 ~ .60; 35
.30 ~ .55; 45
t = 2.5mm
.65 ~ .09; 18
.45 ~ .65; 22
.25 ~ .40; 40
.20 ~ .35; 50
t = 3.0 mm
.50 ~ .70; 20
.45 ~ .60; 22
.25 ~ .35; 45
.20 ~ .30; 55
Round
.50 ~ .70; 20
.40 ~ .35; 25
.20 ~ .35; 45
.15 ~ .30; 60
Units; R [ºC/W]; Qmax [Watt]

copper groove

Copper grooves inside heat pipes are intricate patterns that enhance the device’s efficiency by:

Cofan_Heatpipe
Assessment Parameter
Diameter (mm)
Diameter (mm)
Diameter (mm)
Diameter (mm)
Thickness
4
5
6
8
t = 2.0mm
.40 ~ .70; 5
.40 ~ .60; 5
t = 2.5mm
.04 ~ 06; 25
.03 ~ .05; 40
t = 3.0 mm
.02 ~ .05; 30
.03 ~ .04; 60
t = 4.5 mm
.003 ~ 0.15; 70
Round
.03 ~ .05; 35
.20 ~ .03; 65
.002 ~ .007; 80
Units; R [ºC/W]; Qmax [Watt]

copper sintering powder

Advantages of Copper Sintering Powder

Cofan_Heat_Pipe
Assessment Parameter
Diameter (mm)
Diameter (mm)
Diameter (mm)
Diameter (mm)
Thickness
4
5
6
8
t = 2.0mm
.035 ~ .60; 5
t = 2.5mm
.04 ~ 06; 25
.03 ~ .05; 40
t = 3.0 mm
.02 ~ .05; 30
.03 ~ .04; 60
t = 4.5 mm
.003 ~ 0.15; 70
Round
.03 ~ .05; 35
.20 ~ .03; 65
.002 ~ .007; 80
Units; R [ºC/W]; Qmax [Watt]

customized bending & flattening

Cofan_Heat_Pipe_Measure_white
Cofan_Heat_Pipe
Thickness
3
4
5
6
8
9
9.6
10
12
12.7
16
Minimum Bending Radious [2*D]
6
8
10
12
16
18
19
20
24
25
32
Standard Bending Radious [3*D]
9
12
15
18
24
27
29
30
36
38
48
Recommended Bending Radious [4*D]
12
16
20
24
32
36
38
40
48
51
64
Minimum Bending Angle [⌀]
90º
Recommended Bending Angle [⌀]
120º

copper heat pipe spec.

Diameter
Thickness
Thickness Tolerance
Width
Width Tolerance
Bend Radius
Invalid end Length
Q'max
(Sintered) Length
(Groove) Length
(Mesh) Length
𝜑2
1.50
± 0.05mm
2.40
± 0.15mm
Rc7 ↑
Head end: 5.0
Tail end: 1.0
6W ↑
60-200mm
𝜑3
2.50
± 0.05mm
3.42
± 0.15mm
Rc9 ↑
Head end:5.0
Tail end: 1.0
12W ↑
70-200mm
50-350mm
2.00
3.67
1.80
3.82
1.20
4.09
𝜑4
2.50
± 0.05mm
5.03
± 0.15mm
Rc12 ↑
Head end:7.0
Tail end: 3.0
20W↑
80-1000mm
60-2350mm
60-1000mm
2.00
5.29
1.50
5.56
1.20
5.71
𝜑5
3.00
± 0.05mm
6.30
± 0.15mm
Rc15 ↑
Head end:7.0
Tail end: 5.0
30W ↑
80-1000mm
60-2350mm
60-1500mm
2.50
6.62
2.00
6.90
1.50
7.15
𝜑6
4.00
± 0.05mm
7.32
± 0.15mm
Rc18↑
Head end:9.0
Tail end:6.0
35W ↑
80-1000mm
60-2350mm
60-2350mm
3.50
7.65
3.00
7.96
2.00
8.45
𝜑8
5.00
± 0.05mm
9.98
± 0.15mm
Rc24 ↑
Head end:11.0
Tail end:8.0
50W ↑
90-1000mm
80-2350mm
80-2350mm
4.00
10.60
3.00
11.06
2.00
11.85
𝜑10
9.00
± 0.05mm
10.80
± 0.15mm
Rc30 ↑
Head end:15.0
Tail end:12.0
80W ↑
100-1000mm
90-2350mm
90-4700mm
7.00
12.08
5.00
13.20
3.00
14.20
𝜑12
8.00
± 0.05mm
14.90
± 0.15mm
Rc36 ↑
Head end:15.0
Tail end: 15.0
120W ↑
100-2350mm
6.00
15.90
𝜑14
10.00
± 0.05mm
17.00
± 0.15mm
Rc45 ↑
Head end: 20.0
Tail end: 20.0
160W ↑
100-2350mm
8.00
18.00
Diameter (mm)
Thickness, t +0.05/-0.10 [mm]
DiamWidth, W ± 0.15 [mm]
3
1.2
3.94
1.5
4.10
2.0
3.65
2.5
3.32
3.0
N/A
4
1.5
5.49
2.0
5.23
2.5
4.96
3.0
4.65
4.0
N/A
5
1.4
7.14
1.5
6.77
2.0
6.60
2.3
6.50
2.5
6.26
3.0
5.95
4.0
5.63
5.0
N/A
6
1.5
8.69
2.0
8.41
2.3
8.25
2.4
8.20
2.5
8.16
2.7
8.00
3.0
7.84
3.5
7.57
4.0
7.30
4.8
6.86
5.0
6.63
5.3
6.60
6.0
N/A
8
2.0
Undone
2.5
11.26
3.0
10.97
3.5
10.71
4.0
10.45
4.5
10.20
5.0
9.96
6.0
9.36
8.0
N/A

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