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206060-1 PDF预览

206060-1

更新时间: 2024-01-15 18:13:43
品牌 Logo 应用领域
MACOM 连接器圆形连接器
页数 文件大小 规格书
51页 3136K
描述
AMP Circular Connectors for Commercial Signal and Power Applications

206060-1 技术参数

是否Rohs认证:符合生命周期:Active
Reach Compliance Code:compliantECCN代码:EAR99
HTS代码:8536.69.40.20Factory Lead Time:10 weeks
风险等级:1.57Is Samacsys:N
其他特性:COMPATIBLE CONTACTS: 66424-6; 66424-7; 66428-3; 66428-4; 66405-4后壳类型:SOLID
主体/外壳类型:PLUG连接器类型:CIRCULAR CONNECTOR
联系完成配合:NOT SPECIFIED触点性别:FEMALE
触点材料:NOT SPECIFIED耦合类型:THREADED
DIN 符合性:NO空壳:NO
滤波功能:NOIEC 符合性:NO
MIL 符合性:NO插接信息:MULTIPLE MATING PARTS AVAILABLE
混合触点:NO安装类型:CABLE
选件:GENERAL PURPOSE外壳材料:THERMOPLASTIC
外壳尺寸:11触点总数:4
Base Number Matches:1

206060-1 数据手册

 浏览型号206060-1的Datasheet PDF文件第5页浏览型号206060-1的Datasheet PDF文件第6页浏览型号206060-1的Datasheet PDF文件第7页浏览型号206060-1的Datasheet PDF文件第9页浏览型号206060-1的Datasheet PDF文件第10页浏览型号206060-1的Datasheet PDF文件第11页 
Note: All part numbers  
are RoHS Compliant.  
AMP Circular Connectors for  
Commercial Signal and Power Applications  
Current Carrying Capabilities  
The total current capacity of  
each contact in a given  
CONTACT CURRENT GUIDE Maximum Current (Amperes) for Largest Wire Size  
75  
60  
45  
30  
15  
Type XII Upgrade  
connector is dependent upon  
the heat rise resulting from the  
combination of electrical loads  
of the contacts in the connector  
arrangement and the maximum  
ambient temperature in which  
the connector will be operating.  
Caution must be taken so that  
this combination of conditions  
does not cause the internal  
temperature of the connector to  
exceed the maximum operating  
temperature of the housing  
material. Several variables  
which must be considered  
when determining this  
Size 8 Upgrade  
60  
56  
.125 POWERBAND Contact  
50  
45  
Size 8  
35  
Type XII  
+
Type I, Type II/III  
Upgrade  
23  
+
Type III , Type II,  
+
Type III Posted  
13  
11.85  
Size 20 Upgrade  
20 DF  
7.5  
maximum current capability for  
your application are:  
0
I Wire SizeLarger wire will  
carry more current since it  
has less internal resistance  
to current flow and generates  
less heat. The wire also  
conducts heat away from the  
connector.  
I Connector SizeIn general,  
with more circuits in a  
connector, less current per  
contact can be carried.  
I Current Load Distribution—  
Spreading those lines with  
greater current loads through-  
out the connector, particularly  
around the outer perimeter,  
will enhance heat dissipation.  
I Ambient TemperatureWith  
higher ambient temperatures,  
less current can be carried.  
design-life (EODL) conditions.  
Practical current-carrying capac-  
ity is not an absolute, but an  
loading density. A connector  
containing 50% current-carrying  
contacts will permit higher  
currents (per contact) than a  
connector will at 75% loading.  
The loading percentage assumes  
an even distribution of contacts  
within the housing. If all 10  
contacts are grouped together in  
one section of a 20-position  
connector, the loading density  
may approach 100%.  
Current Rating Verification  
Can a contact rated at 10 amps  
carry 10 amps?  
Maybe yes, but probably not.  
The reason lies in the test  
Temperature  
One other factor influencing  
current levels is the maximum  
operating temperature, for  
example, 105°C. If the appli-  
cation has a high ambient  
temperature (over 75°C) the  
contact’s T-rise is limited by  
the maximum operating  
temperature. For example, an  
application temperature of  
90°C limits the contact T-rise  
to 15°C. Since current  
application-dependent condition.  
New Method Simplifies Ratings  
conditions used to rate the  
contact. If these conditions do  
not adequately reflect the appli-  
cation conditions, the actual  
allowable current levels may be  
lower than specified levels. For  
example, many manufacturers,  
including Tyco Electronics, test  
a single contact in air. This  
gives an accurate measure of  
the basic current-carrying  
capacity of the contact. Use the  
contact alone in air and it can  
certainly carry 10 ampere. Use  
it in a multi-position connector  
surrounded by other current-  
carrying contacts or in high  
ambient temperatures, and the  
contact should carry less  
To help the designer set the  
appropriate current level, Tyco  
Electronics has developed a  
method of specifying current-  
carrying capacity. This method  
takes into account the various  
application factors that influ-  
ence current rating.  
The Importance of EODL  
2
produces heat (the I R law), the  
current must be lowered to  
limit the T-rise.  
As stated, T-rise in a contact  
depends on both resistance and  
current. As it ages, a contact’s  
resistance will increase. The  
contact designer will specify a  
maximum resistance for the  
contact, this level is the end-of-  
design-life resistance. Before  
the contact is tested for current,  
Tyco Electronics subjects it to a  
sequence of tests that exercises  
the major failure mechanisms  
and thereby simulates EODL  
conditions. Conditioning  
includes mating cycling, indus-  
trial mixed-flowing gases,  
humidity and temperature  
cycling, and vibration to  
sequentially introduce wear,  
corrosion, stress relaxation,  
and mechanical disturbance.  
The method can be summarized  
as follows:  
I The contact is aged to EODL  
conditions by durability  
cycling, thermal cycling, and  
environmental exposure.  
A contact’s T-rise depends not  
2
only on its I R Joule heating, but  
also on its ability to dissipate  
the heat. Consider a contact in  
a multi-contact housing. Joule  
heating in multiple contacts will  
raise the local ambient temper-  
ature. Since the contact will not  
be able to dissipate its own  
heat as well by convection, the  
maximum T-rise will be realized  
at a lower current level. Conse-  
quently, the allowable current  
level must be lower to maintain  
an acceptable T-rise.  
I The contact’s resistance  
stability is verified.  
I The current necessary to  
produce the specified tempera-  
ture rise is measured. This  
T-rise is usually 30°C.  
current.  
Similarly, as the contact ages  
and stress relaxation, environ-  
mental cycling, and other  
degradation factors take their  
toll, the contact’s current-  
carrying capacity decreases.  
A prudent design must set  
current levels for such end-of-  
I A rating factor is determined  
to allow derating of multiple  
contacts in the same housing  
and for different conductor  
sizes.  
For a given connector, the  
current level will be set by the  
8
Catalog 82021  
Revised 7-07  
Dimensions are in inches and  
Dimensions are shown for  
USA: 1-800-522-6752  
South America: 55-11-2103-6000  
Hong Kong: 852-2735-1628  
Japan: 81-44-844-8013  
millimeters unless otherwise  
reference purposes only.  
Specifications subject  
to change.  
Canada: 1-905-470-4425  
Mexico: 52-55-1106-0800  
C. America: 57-1-254-4444  
specified. Values in brackets  
are metric equivalents.  
www.tycoelectronics.com  
UK: 44-208-420-8341  

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