MK23-52-F-2 [MEDER]

MK Reed Sensor; MK干簧传感器
MK23-52-F-2
型号: MK23-52-F-2
厂家: MEDER ELECTRONIC    MEDER ELECTRONIC
描述:

MK Reed Sensor
MK干簧传感器

传感器 换能器
文件: 总1页 (文件大小:76K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
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USA: +1 / 508 295 0771  
Asia: +852 / 2955 1682  
| Email: info@meder.com  
Item No.:  
9231523035  
Item:  
| Email: salesusa@meder.com  
| Email: salesasia@meder.com  
MK23-52-F-2  
Magnetic properties  
Pull-In excitation (Reference value)  
Test-Coil  
Pull-In excitation (modified contact)  
Test-Coil  
Pull-In in milliTesla (modified conta  
Conditions  
Min  
30  
Typ  
Typ  
Max  
35  
Unit  
AT  
Reed switch unmodified  
measured in coil- "define operation"  
Reed switch unmodified  
KMS-01  
KMS-21  
Reed switch modified  
42  
2,1  
56  
2,4  
AT  
phys. conditioned tolerance of +/- 1 AT  
Reed switch modified  
MS150 -  
mT  
phys. caused tolerance +/- 0,1mT  
Contact data 52  
Contact-No.  
Contact-form  
Contact-material  
Contact rating  
Conditions  
Min  
Max  
Unit  
52  
A
Rhodium  
consider any combination of V & A  
AC RMS 70 VA  
50  
W
Switching voltage  
Switching current  
Carry current  
DC or Peak AC  
DC or Peak AC  
DC or Peak AC  
350  
0,5  
2,5  
150  
200  
V
A
A
Measured with 40% overdrive  
Start Value  
Contact resistance static  
mOhm  
mOhm  
Maximum value 1,5 ms after excitation  
Start Value  
Contact resistance dynamic  
Insulation resistance  
Breakdown voltage (<36 AT)  
Operate time incl. bounce  
Release time  
RH <45 %, 100 V test voltage  
according to IEC 255-5  
measured with 40% overdrive  
measured with no coil excitation  
@ 10 kHz across open switch  
10  
500  
GOhm  
VDC  
ms  
ms  
pF  
1,1  
0,1  
Capacity  
0,5  
Environmental data  
Shock  
Vibration  
Conditions  
1/2 sine wave duration 11ms  
from 10 - 2000 Hz  
Min  
Typ  
Max  
50  
20  
Unit  
g
g
Operating temperature  
Storage temperature  
Soldering temperature  
-40  
-55  
130  
130  
260  
°C  
°C  
°C  
wave soldering max. 5 sec.  
Modifications in the sense of technical progress are reserved  
Designed at:  
16.12.09  
Designed by:  
AKELLER  
AKELLER  
Approval at:  
Approval at:  
16.12.09  
07.06.10  
Approval by:  
Approval by:  
RKAMP  
RKAMP  
Last Change at: 07.06.10  
Last Change by:  
Version:  
02  

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