参数资料
型号: 109G
厂商: Aavid Thermalloy
文件页数: 10/116页
文件大小: 0K
描述: INSULATOR
标准包装: 1,000
套管,扣眼类型: 扣眼
尺寸: 圆形 - 0.375" OD x 0.141" ID x 0.218" H(9.52mm x 3.58mm x 5.54mm)
适用于相关产品: 线缆,导线
材质: 聚四氟乙烯(PTFE)
颜色:
其它名称: 036515
109GAA
How To Select a Heat Sink
Example A
Find a space saving heat sink to keep a TO-220 device below the
maximum 150°C junction temperature in natural convection. Device
will be screw mounted with an electrically conductive interface.
Example B
Find a heat sink to keep a TO-220 device below the maximum
150 °C junction temperature in forced convection at 400 ft/min.
Device must be electrically insulated and mounted with a labor
saving clip.
Given:
PD = 6 watts
R θ JC = 3°C/W (from semiconductor manufacturer)
TJ max = 150°C (from semiconductor manufacturer)
TA max = 65°C
Given:
PD = 12 watts
R θ JC = 2.5°C/W (from semiconductor manufacturer)
TJ max = 140°C (from semiconductor manufacturer)
TA max = 50°C
A Kondux TM pad is a good choice for electrically conductive
applications. Thermal resistance for Kondux TM can be determined
from the following graph.
A Hi-Flow? pad works great with clip mounting and provides the
necessary electrical insulation. Thermal resistance for
Hi-Flow? at low pressure is 1.15°C/W (from page 87).
0.60
0.50
0.40
0.30
0.20
0.10
Typical TO-220 Performance
Using equation 1, solve for R θ SA
R θ SA = 140 – 50 - (2.5 + 1.15) = 3.85°C/W
12
Many styles are available. If board space is a concern,
0.00
0
1
2 3 4
5
6
533202B02551G (pg 55) meets the requirements.
Screw Torque (in-lb)
Air Velocity—Feet Per Minute
At 2 in-lb of torque the thermal resistance
100
0
200
400
600 800
1000
10
is approximately R θ CS = 0.5°C/W
Using equation 1, solve for R θ SA
80
60
40
20
8
6
4
2
R θ SA = 150 – 65 - ( 3 + 0.5) = 10.7°C/W
6
0
0
2
4 6
8
10
0
The Index by Heat Sink Style on page 8 lists space saving heat sinks.
Several models are in the 10 °C/W range. Choose the one that best
53320X
53330X
Heat Dissipated—Watts
fits the application and verify thermal resistance from graph.
Part number 593202B03500G shows
a 60 °C temperature rise at 6 watts.
According to the above graph, an airflow of 400 ft/min results
in a thermal resistance of 3°C/W. This is less than the required
thermal resistance of 3.85°C/W and is therefore acceptable
under these airflow conditions.
100
0
200
Air Velocity—Feet Per Minute
400 600 800
1000
10
If height is a concern, 533702B02552G would meet the
requirements and is only 1.0” tall
80
8
60
40
20
0
6
4
2
0
Hi-Flow? is a trademark of the Bergquist Company
0
2
4 6
8
10
Heat Dissipated—Watts
R θ SA = 60 = 10.0°C/W
6
Which meets the above requirement in natural convection.
AMERICA
USA Tel: +1 (603) 224-9988 email: info@aavid.com
ASIA
Singapore Tel: +65 6362 8388 email: sales@aavid.com.sg
10
www.aavidthermalloy.com
EUROPE
Italy Tel: +39 051 764011 email: sales.it@aavid.com
United Kingdom Tel: +44 1793 401400 email: sales.uk@aavid.com
Taiwan Tel: +886(2) 2698-9888 email: sales@aavid.com.tw
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