SCI0501200 [CELDUC]

IGBT BASED DC SOLID-STATE RELAY; 基于IGBT的直流固态继电器
SCI0501200
型号: SCI0501200
厂家: celduc-relais    celduc-relais
描述:

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

继电器 固态继电器 双极性晶体管
文件: 总5页 (文件大小:471K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
®
celduc  
S/CON/SCI0501200/B/11/06/08  
r
e
l
a
i
s
Page 1/5 UK  
PRELIMINARY DATA  
IGBT BASED  
DC SOLID-STATE RELAY  
SCI0501200  
u Latest high voltage IGBT technology generation.  
u New innovative isolated driver ensuring fast power transistor  
turn on and off therefore low power transient.  
u Ultra low output leakage current  
Control voltage  
range  
Max transient peak  
voltage  
Advised max. DC  
4.5-32VDC  
1200V  
u Low control current consumption  
u Triggered control input to avoid linear control risks  
u Low conducted and radiated disturbances  
650VDC  
50ADC  
Mains peak voltage  
Max. Load Current  
(with heatsink)  
DC Mains  
voltage range  
Load current  
range  
Control input  
voltage range  
In & case / Out  
Insulation  
Dimensions  
(WxHxD)  
Connections  
Weight  
650VDC Max Advised  
(Depends on protection  
clamping voltage)  
44.5 x 58.2 x 27  
(mm)  
M3 round tabs  
M5 round tabs  
0 to 50A  
4.5-32VDC  
4kV  
100g  
(with heatsink)  
HIGH SIDE WIRING DIAGRAM  
(Load connected to “-“)  
LOW SIDE WIRING DIAGRAM  
(Load connected to “+”)  
Fig. 1  
Fig. 2  
Please consult us  
to select the right  
protective  
Please consult us  
to select the right  
protective  
components C1,  
D1 & D2.  
components C1,  
D1 & D2.  
The red paths  
(C1/D1/D2) must  
be as short as  
possible !  
The red paths  
(C1/D1/D2) must  
be as short as  
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  
®
celduc  
S/CON/SCI0501200/B/11/06/08  
r
e
l
a
i
s
Page 2/5 UK  
PRELIMINARY DATA  
CONTROL INPUT CHARACTERISTICS  
CONTROL CURRENT  
vs. CONTROL VOLTAGE  
CHARACTERISTIC  
LABEL  
Ucnom  
VALUE  
INFO.  
Fig. 4  
Nom. Control voltage  
Nom. Control current  
Control voltage range  
Control current  
consumption  
12-24VDC  
35mADC  
4.5 – 32VDC  
Ic (mADC)  
45  
40  
35  
30  
25  
20  
15  
10  
5
Icnom  
Uc  
typical=4.3V  
See curve  
@25°C  
Ic  
25 – 42mADC  
1VDC  
Releasing control  
voltage  
Typical= 3.5V  
-Icmax <100µA  
See curve  
Ucoffmax  
Max. reverse control  
voltage  
-Ucmax  
Rin  
32VDC  
0
0
2
4
6
8
10 12 14 16 18 20 22 24 26 28 30 32  
Uc (VDC)  
Current  
limitation  
Input impedance  
TIME CHARACTERISTICS  
CHARACTERISTIC  
LABEL  
VALUE  
Turn on time  
ton  
tdon  
toff  
10µs  
600µs  
50µs  
Turn on delay  
Turn off time  
Turn off delay  
Max. On-Off frequency  
tdoff  
100µs  
200Hz  
F(on-off)  
POWER OUTPUT CHARACTERISTICS  
CHARACTERISTIC  
Mains voltage range  
LABEL  
VALUE  
INFO.  
Min = VCEsat  
Max (Advised) = 650VDC  
Depends on protection  
clamping voltage (D1)  
Ut  
Utp  
Ue  
Non-repetitive peak voltage  
Overvoltage protection  
1200V  
Not integrated  
A voltage clamping mean must be connected across the  
terminals 1 & 2 (see fig 1 & 2)  
Please consult us to select  
the right protective  
components  
D1  
Off-state max reverse voltage  
drop (internal diode)  
@Ie=50A  
-Ut  
1.4V  
Resistive  
Motor  
Maximum nominal currents  
Ie max  
Iepeak  
See fig. 9  
50A  
Please contact us  
Switch OFF  
Fmax  
Switch OFF D<1%  
50A  
ON-state  
320A  
@Tc=100°C @Tj=175°C  
Max. non-repetitive peak current  
@Utp (See fig. 8)  
50A  
0mA  
1mA  
Min. load current  
Iemin  
Ielk max  
VCEsat  
Cout  
@Utp @Tjmax  
@Iemax  
Max. leakage current  
Max. on-state voltage  
1.4V @Tj=25°C  
1.8V @Tj=125°C  
Typ. output capacitance  
Junction/case thermal resistance  
300pF  
@Utp  
Rthjc  
0.4K/W  
Built-in heatsink thermal  
resistance vertically mounted  
Rthra  
Tthra  
10K/W  
@DTra=75°C  
@DTra=60°C  
Heatsink thermal time constant  
10 minutes  
4kV  
Control inputs/power outputs  
insulation voltage  
Uimp  
Inputs/case insulation voltage  
Outputs/case insulation voltage  
Isolation resistance  
Uimp  
Uimp  
Rio  
4kV  
4kV  
1GW  
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  
-40->+90°C  
100°C  
See fig. 9  
®
celduc  
S/CON/SCI0501200/B/11/06/08  
r
e
l
a
i
s
Page 3/5 UK  
PRELIMINARY DATA  
OUTPUT SWITCH CHARACTERISTIC CURVES  
REVERSE VOLTAGE DROP  
VS REVERSE CURRENT  
Fig. 5  
VOLTAGE DROP VS LOAD CURRENT  
Fig. 6  
Ic (A)  
100  
If (A)  
280  
240  
200  
160  
120  
80  
80  
60  
40  
20  
Vf @25°  
Tj = 25°c  
Vf @175°  
Tj = 175°c  
40  
0
0
0
0
0,5  
1
1,5  
2
2,5  
3
3,5  
4
Vf (V)  
Vcesat (V)  
0,5  
1
1,5  
2
2,5  
3
POWER ELEMENT TRANSIENT THERMAL  
IMPEDANCE vs. PULSE DURATION  
ON-STATE PEAK OVERLOAD CURRENT vs.  
PULSE DURATION  
Fig. 7  
Fig. 8  
Zth (K/W)  
1
Ie (Apk)  
1000  
100  
10  
0,1  
Single pulse  
D=1%  
D=2%  
D=5%  
D=10%  
D=20%  
D=50%  
0,01  
Repetitive D=50% (Tc = 100°C,  
Tjmax = 125°C)  
No repetitive D=1% (Tc = 100°C,  
Tjmax = 175°C)  
1
0,0001  
0,001  
0,01  
0,1  
t (sec)  
1
0,001  
t (sec)  
0,00001  
0,0001  
0,001  
0,01  
0,1  
1
Fig. 9  
POWER DISSIPATED AND LOAD CURRENT LIMIT VS TEMPERATURE  
Permanent current  
Ie (ARMS)  
Power dissipated  
Pd (W)  
Please refer to the installation notice for precautions  
about mounting the device on a heatsink.  
Ambient temperature (°C)  
2.2K/W = WF262100 / WF151200  
10K/W = No Heatsink / 1LD12020  
4K/W = 150x150x3mm aluminium sheet  
1.1K/W = WF131100  
2.1K/W = WF210000  
0.55K/W = WF050000  
1.2K/W = WF121000  
0.3K/W = WF031100  
0.9K/W = WF115100  
0.75K/W = WF070000  
0.2K/W = No reference  
0.1K/W = No reference  
®
celduc  
S/CON/SCI0501200/B/11/06/08  
r
e
l
a
i
s
Page 4/5 UK  
PRELIMINARY DATA  
GENERAL INFORMATION  
Connections  
Power  
Philips™ NR2  
1.8 N.m  
Control  
Philips™ NR1  
0.8 N.m  
Screwdriver advised  
Min and max tightening torque  
Insulated crimp terminals  
(round tabs, eyelet type)  
M5  
M3  
Green LED  
(indicates relay has switched ON)  
Display  
Housing  
Mounting  
Noise level  
Weight  
UL94V0  
See mounting  
sheet  
2 screws (M4x12mm)  
No audible noise  
100g  
STANDARDS  
Standards  
IEC60947-1  
IP00  
Protection level  
Protection against direct touch  
CE marking  
None  
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  
-
?
?
No effect  
?
Voltage drop  
Radiated and conducted  
disturbances  
NFEN55011  
Pending  
®
celduc  
S/CON/SCI0501200/B/11/06/08  
r
e
l
a
i
s
Page 5/5 UK  
PRELIMINARY DATA  
DIMENSIONS AND ACCESSORIES  
Fig.  
10  
DIMENSIONS (mm)  
28  
22.8±0,5  
19.6  
28  
Ø4.7  
M5  
2-  
1+  
4-  
3+  
25.4  
25.8  
44.5  
M3  
±
0.3  
TOLERANCES:  
ACCESSORIES  
PROTECTIVE COVER  
1K470000  
Please consult our website for other accessory references  
(Heatsinks, mounting adaptors, thermal grease…)  
celduc®  
www.celduc.com  
r e l a i s  
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  

相关型号:

SCI0603HC

WIREWOUND CHIP INDUCTORS
SUPERWORLD

SCI0603HC-10NF

WIREWOUND CHIP INDUCTORS
SUPERWORLD

SCI0603HC-10NGF

WIREWOUND CHIP INDUCTORS
SUPERWORLD

SCI0603HC-10NJF

WIREWOUND CHIP INDUCTORS
SUPERWORLD

SCI0603HC-10NKF

WIREWOUND CHIP INDUCTORS
SUPERWORLD

SCI0603HC-12NF

WIREWOUND CHIP INDUCTORS
SUPERWORLD

SCI0603HC-12NGF

WIREWOUND CHIP INDUCTORS
SUPERWORLD

SCI0603HC-12NJF

WIREWOUND CHIP INDUCTORS
SUPERWORLD

SCI0603HC-12NKF

WIREWOUND CHIP INDUCTORS
SUPERWORLD

SCI0603HC-15NF

WIREWOUND CHIP INDUCTORS
SUPERWORLD

SCI0603HC-15NGF

WIREWOUND CHIP INDUCTORS
SUPERWORLD

SCI0603HC-15NJF

WIREWOUND CHIP INDUCTORS
SUPERWORLD