SOM02060 [CELDUC]

MOSFET BASED DC SOLID-STATE RELAY; 基于MOSFET的直流固态继电器
SOM02060
型号: SOM02060
厂家: celduc-relais    celduc-relais
描述:

MOSFET BASED DC SOLID-STATE RELAY
基于MOSFET的直流固态继电器

继电器 固态继电器
文件: 总5页 (文件大小:368K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
®
celduc  
S/CON/SOM02060/A/08/12/05  
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PRELIMINARY DATA  
MOSFET BASED  
SOM02060  
DC SOLID-STATE RELAY  
X Latest MOSFET technology generation.  
X Ultra low on-state resistance.  
X Low output leakage current.  
X Low control current consumption.  
X Built-in overvoltage protection  
X Reverse protected triggered control input to avoid linear control  
Control voltage  
risks  
3.5-32VDC  
40VDC  
range  
Max. permanent  
X No radiated or conducted disturbances  
X Touch protected housing IP20  
output voltage  
Max. load current  
with heatsink  
20ADC  
Load voltage  
range  
Load current  
range  
Control input  
voltage range  
In & case / Out  
Insulation  
Dimensions  
(WxHxD)  
Connections  
Weight  
Up to 20A  
45 x 58.5 x 30  
5-40VDC  
3.5-32VDC  
2.5kV  
Screw terminals  
80g  
(with heatsink)  
HIGH SIDE WIRING DIAGRAM  
(Load connected to “-“)  
LOW SIDE WIRING DIAGRAM  
(Load connected to “+”)  
Fig. 1  
Fig. 2  
See Instruction  
See Instruction  
sheet to select  
the right  
sheet to select the  
right protective  
components  
protective  
components  
The red paths  
(C1/D2) must be  
as short as  
The red  
paths (C1/D2)  
must be as  
short as  
possible !  
possible !  
Fig. 3  
INTERNAL DIAGRAM  
®
Proud to serve you  
celduc  
Data given at Tambient=25°C and subject to modification without previous notice  
r e l a i s  
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celduc  
S/CON/SOM02060/A/08/12/05  
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PRELIMINARY DATA  
CONTROL INPUT CHARACTERISTICS  
CHARACTERISTIC  
LABEL  
VALUE  
INFO.  
Nom. Control voltage  
Ucnom  
Icmin  
Uc  
12-24VDC  
Min. Control current  
35mADC  
3.5 – 32VDC  
-100µA/°C  
typical ON=3.3V  
Control voltage range  
Control current consumption  
Releasing control voltage  
Max. reverse control voltage  
Input impedance  
Ic  
32 – 35mADC (for control voltage range)  
1VDC  
See fig. 5  
typical OFF= 2.6V  
Ucoffmax  
-Ucmax  
Rin  
-Icmax<100µA  
See fig. 5  
32VDC  
Current limitation  
POWER OUTPUT CHARACTERISTICS  
CHARACTERISTIC  
LABEL  
Uenom  
VALUE  
INFO.  
Nominal voltage  
Voltage range  
Non-repetitive peak voltage  
24VDC  
5-40VDC  
60V  
Ut  
Ue  
Utp  
D1  
Transient voltage suppressor  
Overvoltage protection  
39V (1500W/1ms)  
Max reverse voltage drop  
@Ie=55A  
@Uc=0  
-Ut  
1.5V  
(internal diode at OFF state)  
Resistive  
20A  
Motor  
Please contact us  
See fig. 7  
(limits)  
Maximum nominal currents  
Ie max  
Non-repetitive peak overload  
current  
Id max  
200A  
See fig. 8  
Min. load current  
Iemin  
Ielk max  
RDSon  
Cout  
5mA  
3mA  
36mΩ  
0.3nF  
@Utmax @Tjmax  
@Iemax @Tjmax  
Max. leakage current  
Max. on-state resistance  
Typ. output capacitance  
Junction/case thermal  
Rthjc  
1.8K/W  
resistance per power element  
Built-in heatsink thermal  
Rthra  
Tthra  
Uimp  
10K/W  
10 minutes  
2.5kV  
@Tra=75°C  
@Tra=40°C  
resistance vertically mounted  
Heatsink thermal time constant  
Control inputs/power outputs  
insulation voltage  
Inputs/case insulation voltage  
Outputs/case insulation voltage  
Isolation resistance  
Uimp  
Uimp  
Rio  
2.5kV  
2.5kV  
1GΩ  
Isolation capacitance  
Cio  
<8pF  
Maximum junction temperature  
Storage ambient temperature  
Operating ambient temperature  
Max. case temperature  
Tjmax  
Tstg  
Tamb  
Tc  
175°C  
-40->+100°C  
-25->+90°C  
100°C  
See fig. 7  
PROTECTION CHARACTERISTICS  
Leakage current (Ielk) vs DC voltage (Ut)  
Ielk / Ie  
Absolute limits  
1
0,8  
0,6  
0,4  
0,2  
0
Uto < Utp  
0.75  
t max =  
(Uto Ut max) × Ie  
P
(protection ) = 1W max  
(Uto Ut max) × Ie × t  
1  
0
10  
20  
30  
40  
( =Uemax)  
50  
60 Ut (V)  
T
U t max  
U t p  
Ielk : Leakage current of the relay  
Ie : User load nominal current  
Utmax : Max. nominal voltage of the relay  
Uto : Possible overvoltage above Utmax  
Utn = Ue : User DC power supply voltage  
t : Overvoltage duration  
T: Time between 2 overvoltage  
Utp : Relay max. non repetitive peak voltage  
®
celduc  
S/CON/SOM02060/A/08/12/05  
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PRELIMINARY DATA  
TIME CHARACTERISTICS  
Fig. 4  
TIME DIAGRAMS  
CHARACTERISTIC  
LABEL  
VALUE  
INFO.  
Turn on time  
Turn on delay  
Turn off time  
Turn off delay  
ton  
tdon  
toff  
20µs  
20µs  
20µs  
20µs  
tdoff  
>1000Hz (for high frequency, take 2 x Ie to calculate the  
Refer to the  
Max. On-Off frequency  
F(on-off)  
instruction sheet  
heatsink; the protections must be chosen carefully)  
GENERAL INFORMATION  
Connections  
Power  
Control  
Screwdriver advised  
Min and max tightening torque  
POZIDRIV2  
2 N.m  
M5  
1.2 N.m  
M4  
Insulated crimp terminals  
(round tabs, eyelet type)  
Green LED  
Display  
(indicates relay has switched ON)  
Housing  
Mounting  
Noise level  
Weight  
UL94V0  
See mounting  
sheet  
2 screws (M4x12mm ; tightening = 1.2N.m)  
None  
80g  
STANDARDS  
Standards  
Protection level  
IEC60947-1  
IP20  
Protection against direct touch  
CE marking  
Yes  
Yes  
UL, cULUS and VDE approvals  
Pending  
STANDARD  
TYPE OF TEST  
LEVEL  
EFFECT  
EN61000-4-2  
EN61000-4-3  
EN61000-4-4  
EN61000-4-5  
EN61000-4-11  
E.S.D. (Electrostatic discharges)  
Radiated electromagnetic fields  
Fast transients bursts  
Electric chocks  
Pending  
Pending  
Pending  
Pending  
-
?
?
?
?
Voltage drop  
Radiated and conducted  
disturbances  
NFEN55011  
Pending  
®
celduc  
S/CON/SOM02060/A/08/12/05  
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PRELIMINARY DATA  
CHARACTERISTIC CURVES  
Fig. 5  
INPUT CHARACTERISTIC  
Fig. 6  
RDSon  
ON RESISTANCE VS JUNCTION TEMPERATURE  
Ic (mADC)  
50  
40  
35  
30  
25  
20  
15  
10  
5
-35°C  
-35°C  
(mOhms)  
45  
40  
35  
30  
25  
20  
15  
10  
5
25°C  
100°C  
0
0
-50  
0
50  
100  
150  
0
2
4
6
8
10 12 14 16 18 20 22 24 26 28 30 32  
Uc (VDC)  
Junction Temperature (°C)  
Fig. 7  
POWER DISSIPATED AND LOAD CURRENT LIMIT VS TEMPERATURE  
Permanent current  
Ie (ARMS)  
Power dissipated  
(W)  
Please refer to the installation notice for precautions  
about mounting the device on a heatsink.  
22.5  
14.4  
8.1  
25  
20  
15  
10  
5
10K/W  
4K/W  
2,1K/W  
1.1K/W  
3.6  
0.9  
2.2K/W  
1.2K/W  
0
0
0
10  
20  
30  
40  
50  
60  
70  
80  
90  
100  
110  
Ambient temperature (°C)  
10K/W = No Heatsink  
2.1K/W = WF210000  
4K/W = 150x150x3mm aluminium sheet  
1.2K/W = WF121000  
2.2K/W = WF262100  
1.1K/W = WF131100  
2.2K/W = WF151200  
Fig. 8  
PEAK OVERLOAD CURRENT vs. PULSE DURATION CHARACTERISTIC  
Ie 220  
(Apk)  
200  
180  
160  
140  
120  
100  
80  
Non-repetitive D=1% (Tc=100°C, Tjmax=175°C)  
Repetitive D=5% (Tc=100°C, Tjmax=175°C)  
Repetitive D=10% (Tc=100°C, Tjmax=175°C)  
Repetitive D=20% (Tc=100°C, Tjmax=175°C)  
Repetitive D=50%(Tc=100°C, Tjmax=125°C)  
60  
40  
20  
0
t1  
t2  
D
(
%
)
=
×100  
0,1  
1
10  
100  
1000  
Pulse duration (ms)  
®
celduc  
S/CON/SOM02060/A/08/12/05  
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Page 5/5 UK  
PRELIMINARY DATA  
DIMENSIONS AND ACCESSORIES  
Fig. 9  
DIMENSIONS (mm)  
2
-
1
+
Fig.  
10  
ACCESSORIES  
FASTON : Please contact us  
®
celduc  
www.celduc.com  
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Rue Ampère B.P. 4  
42290 SORBIERS - France  
Phone : 33 (0) 4 77 53 90 20 Fax : 33 (0) 4 77 53 85 51 Email : celduc-relais@celduc.com  

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