DD285N [EUPEC]

Netz-Dioden-Modul Rectifier Diode Module; 茨- Dioden - MODUL整流二极管模块
DD285N
型号: DD285N
厂家: EUPEC GMBH    EUPEC GMBH
描述:

Netz-Dioden-Modul Rectifier Diode Module
茨- Dioden - MODUL整流二极管模块

整流二极管
文件: 总10页 (文件大小:242K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
Datenblatt / Data sheet  
N
Netz-Dioden-Modul  
Rectifier Diode Module  
DD285N  
DD285N  
Elektrische Eigenschaften / Electrical properties  
Höchstzulässige Werte / Maximum rated values  
PeriodischeSpitzensperrspannungT = -40°C... T  
400  
500  
600 V  
800 V  
VRRM  
vj  
vj max  
repetitive peak reverse voltages  
700 V  
900 V  
Stoßspitzensperrspannung  
Tvj = +25°C... Tvj max  
VRSM  
non-repetitive peak reverse voltage  
450 A  
285 A  
Durchlaßstrom-Grenzeffektivwert  
maximum RMS on-state current  
IFRMSM  
IFAVM  
IFSM  
Dauergrenzstrom  
average on-state current  
TC = 100°C  
9.500 A  
8.300 A  
Stoßstrom-Grenzwert  
surge current  
Tvj = 25 °C, tP = 10 ms  
Tvj = Tvj max, tP = 10 ms  
451.000 A²s  
344.000 A²s  
Grenzlastintegral  
I²t-value  
Tvj = 25 °C, tP = 10 ms  
Tvj = Tvj max, tP = 10 ms  
I²t  
Charakteristische Werte / Characteristic values  
Durchlaßspannung  
1,15 V  
0,75 V  
0,4 m  
20 mA  
max.  
Tvj = Tvj max , iF = 800 A  
Tvj = Tvj max  
vF  
on-state voltage  
Schleusenspannung  
threshold voltage  
V(TO)  
rT  
Ersatzwiderstand  
slope resistance  
Tvj = Tvj max  
max.  
Sperrstrom  
reverse current  
Tvj = Tvj max , vR = VRRM  
iR  
Isolations-Prüfspannung  
RMS, f = 50 Hz, t = 1 sec  
RMS, f = 50 Hz, t = 1 min  
VISOL  
kV  
kV  
3,6  
3,0  
insulation test voltage  
Thermische Eigenschaften / Thermal properties  
Innerer Wärmewiderstand  
thermal resistance, junction to case  
pro Modul / per Module, Θ = 180° sin RthJC  
pro Zweig / per arm, Θ = 180° sin  
pro Modul / per Module, DC  
max.  
max.  
max.  
max.  
0,085 °C/W  
0,170 °C/W  
0,082 °C/W  
0,164 °C/W  
pro Zweig / per arm, DC  
pro Modul / per Module  
pro Zweig / per arm  
max.  
max.  
0,02 °C/W  
0,04 °C/W  
Übergangs-Wärmewiderstand  
RthCH  
Tvj max  
Tc op  
Tstg  
thermal resistance, case to heatsink  
150  
Höchstzulässige Sperrschichttemperatur  
maximum junction temperature  
°C  
Betriebstemperatur  
operating temperature  
- 40...+150 °C  
- 40...+150 °C  
Lagertemperatur  
storage temperature  
C. Drilling  
date of publication: 30.04.03  
revision:  
prepared by:  
1
approved by: M. Leifeld  
MA2-BE / 87-08-20, K.Spec  
A20/87  
Seite/page  
1/9  
Datenblatt / Data sheet  
N
Netz-Dioden-Modul  
Rectifier Diode Module  
DD285N  
Mechanische Eigenschaften / Mechanical properties  
Gehäuse, siehe Anlage  
case, see annex  
Seite 3  
page 3  
Si-Element mit Druckkontakt  
Si-pellet with pressure contact  
Innere Isolation  
AlN  
5
internal insulation  
Anzugsdrehmoment für mechanische Anschlüsse  
mounting torque  
Toleranz ±15%  
M1  
M2  
G
Nm  
Anzugsdrehmoment für elektrische Anschlüsse  
terminal connection torque  
Toleranz ±10%  
12 Nm  
800  
Gewicht  
weight  
typ.  
g
Kriechstrecke  
17 mm  
50 m/s²  
creepage distance  
Schwingfestigkeit  
vibration resistance  
f = 50 Hz  
file-No.  
E 83336  
MA2-BE / 87-08-20, K.Spec  
A20/87  
Seite/page  
2/9  
Datenblatt / Data sheet  
N
Netz-Dioden-Modul  
DD285N  
Rectifier Diode Module  
1
2
3
DD  
MA2-BE / 87-08-20, K.Spec  
A20/87  
Seite/page  
3/9  
Datenblatt / Data sheet  
N
Netz-Dioden-Modul  
DD285N  
Rectifier Diode Module  
Analytische Elemente des transienten Wärmewiderstandes Z thJC für DC  
Analytical elements of transient thermal impedance Z thJC for DC  
Pos. n  
1
2
3
4
5
6
7
Rthn [°C/W]  
0,0039  
0,0008  
0,0097  
0,008  
0,0291  
0,085  
0,0552  
0,54  
0,0661  
2,85  
τn [s]  
nmax  
n
ZthJC  
1 - e– t  
R  
n=1  
Analytische Funktion / Analytical function:  
thn  
Θ=  
rec 60°  
rec120°  
rec180°  
sin180°  
DC  
0,20  
0,16  
0,12  
0,08  
0,04  
0,00  
0,001  
0,01  
0,1  
1
10  
100  
t [s]  
Transienter innerer Wärmewiderstand je Zweig / Transient thermal impedance per arm ZthJC = f(t)  
Parameter: Stromflußwinkel Θ / Current conduction angle Θ  
MA2-BE / 87-08-20, K.Spec  
A20/87  
Seite/page  
4/9  
Datenblatt / Data sheet  
N
Netz-Dioden-Modul  
Rectifier Diode Module  
DD285N  
R,Tau_Glieder des Kühlers  
Natürliche Kühlung / Natural cooling  
3 Module pro Kühler / 3 modules per heatsink  
Kühler / Heatsink type: KM17 (60W)  
Analytische Elemente des transienten Wärmewiderstandes Z thCA  
Analytical elements of transient thermal impedance Z thCA  
Pos. n  
1
2
3
4
5
6
7
Rthn [°C/W]  
0,0205  
2,04  
0,07905  
36,4  
1,535  
1340  
τn [s]  
Verstärkte Kühlung / Forced cooling  
3 Module pro Kühler / 3 modules per heatsink  
Kühler / Heatsink type: KM17 (Papst 4650)  
Analytische Elemente des transienten Wärmewiderstandes Z thCA  
Analytical elements of transient thermal impedance Z thCA  
Pos. n  
1
2
3
4
5
6
7
Rthn [°C/W]  
0,015  
4,11  
0,08  
40,4  
0,475  
458  
τn [s]  
nmax  
n
ZthCA  
1 - e – t  
R  
n=1  
Analytische Funktion / Analytical function:  
thn  
MA2-BE / 87-08-20, K.Spec  
A20/87  
Seite/page  
5/9  
Datenblatt / Data sheet  
N
Netz-Dioden-Modul  
DD285N  
Rectifier Diode Module  
400  
DC  
180 ° rec  
180 ° sin  
120 ° rec  
300  
200  
100  
Θ= 60 ° rec  
0
0
100  
200  
300  
400  
500  
IFAV [A]  
Durchlassverlustleistung je Zweig / On-state power loss per arm PFAV = f(IFAV  
)
Parameter: Stromflußwinkel / Current conduction angle Θ  
160  
140  
120  
100  
80  
60  
180 ° sin  
40  
Θ= 60 ° rec  
DC  
180 ° rec  
120 ° rec  
20  
0
100  
200  
300  
400  
500  
IFAVM [A]  
Höchstzulässige Gehäusetemperatur / Maximum allowable case temperature TC = f(IFAVM  
)
Strombelastung je Zweig / Current load per arm  
Berechungsgrundlage PTAV  
Calculation base PTAV  
Parameter: Stromflußwinkel Θ / Current conduction angle Θ  
MA2-BE / 87-08-20, K.Spec  
A20/87  
Seite/page  
6/9  
Datenblatt / Data sheet  
N
Netz-Dioden-Modul  
Rectifier Diode Module  
DD285N  
ID  
B2  
R thCA [°C/W]  
0,04 0,03 0,02  
0,05  
0,06  
1400  
1200  
1000  
800  
+
~
0,08  
0,10  
R-Last  
-
L-Last  
0,12  
0,15  
600  
0,20  
0,30  
0,40  
400  
0,40  
200  
0,40  
0
0
20  
40  
60  
A [°C]  
80  
100  
120  
140  
0
100  
200  
300  
ID [A]  
400  
500  
600  
T
Höchstzulässiger Ausgangsstrom / Maximum rated output current ID  
B2- Zweipuls-Brückenschaltung / Two-pulse bridge circuit  
Gesamtverlustleistung der Schaltung / Total power dissipation at circuit Ptot  
Parameter:  
Wärmewiderstand zwischen den Gehäusen und Umgebung / Thermal resistance cases to ambient RthCA  
1800  
1600  
1400  
1200  
1000  
800  
ID  
B6  
R thCA [°C/W]  
3~  
0,03  
0,04  
0,02  
+
0,05  
0,06  
-
0,08  
0,10  
0,12  
0,15  
0,20  
600  
0,30  
0,40  
400  
0,40  
0,40  
200  
0
0
100  
200  
300  
400  
500  
600  
700  
800  
0
20  
40  
60  
80  
100  
120  
140  
T
A [°C]  
ID [A]  
Höchstzulässiger Ausgangsstrom / Maximum rated output current ID  
B6- Sechspuls-Brückenschaltung / Six-pulse bridge circuit  
Gesamtverlustleistung der Schaltung / Total power dissipation at circuit Ptot  
Parameter:  
Wärmewiderstand zwischen den Gehäusen und Umgebung / Thermal resistance cases to ambient RthCA  
MA2-BE / 87-08-20, K.Spec  
A20/87  
Seite/page  
7/9  
Datenblatt / Data sheet  
N
Netz-Dioden-Modul  
Rectifier Diode Module  
DD285N  
10000  
iFM = 1000A  
500A  
200A  
1000  
100  
100A  
50A  
20A  
1
10  
100  
-di/dt [A/µs]  
Sperrverzögerungsladung / Recovered charge Qr = f(-di/dt)  
Tvj = Tvjmax, vR 0,5 VRRM, vRM = 0,8 VRRM  
Parameter: Durchlaßstrom / On-state current iFM  
7.000  
6.000  
5.000  
4.000  
3.000  
2.000  
1.000  
0
a
TA = 35 °C  
b
TA = 45 °C  
0,01  
0,1  
1
t [s]  
Grenzstrom je Zweig / Maximum overload on-state current per arm IF(OV)M = f(t), vRM = 0,8 VRRM  
a: Leerlauf / No-load conditions  
b: Vorlaststrom je Zweig / Pre-load current per arm IFAV(vor) = IFAVM  
Ta = 35°C, verstärkte Luftkühlung / Forced air cooling Kühlkörper / Heatsink type: KM17 (Papst 4650)  
Ta = 45°C, natürliche Luftkühlung / Natural air cooling Kühlkörper / Heatsink type: KM17 (60W)  
MA2-BE / 87-08-20, K.Spec  
A20/87  
Seite/page  
8/9  
Datenblatt / Data sheet  
N
Netz-Dioden-Modul  
DD285N  
Rectifier Diode Module  
I FAV (vor)  
0 A  
20 A  
35 A  
50 A  
60 A  
66 A  
=
3.000  
2.000  
1.000  
0
0,01  
0,1  
1
10  
100  
1000  
10000  
t [s]  
Überstrom je Zweig / Overload on-state current IF(OV)  
B6- Sechspuls-Brückenschaltung, 120° Rechteck / Six-pulse bridge circuit, 120° rectangular  
Kühlkörper / Heatsink type KM17 (60W) Natürliche Kühlung bei / Natural cooling at TA = 45°C  
Parameter: Vorlaststrom je Zweig / Pre-load current per arm IFAV(vor)  
4.000  
3.000  
2.000  
1.000  
0
I FAV (vor)  
0 A  
=
50 A  
90 A  
115 A  
135 A  
150 A  
0,01  
0,1  
1
10  
t [s]  
100  
1000  
10000  
Überstrom je Zweig / Overload on-state current IF(OV)  
B6- Sechspuls-Brückenschaltung, 120° Rechteck / Six-pulse bridge circuit 120° rectangular  
Kühlkörper / Heatsink type KM17 (Papst 4650) Verstärkte Kühlung bei / Forced cooling at TA = 35°C  
Parameter: Vorlaststrom je Zweig / Pre-load current per arm IFAV(vor)  
MA2-BE / 87-08-20, K.Spec  
A20/87  
Seite/page  
9/9  
Terms & Conditions of Usage  
Attention  
The present product data is exclusively subscribed to technically experienced  
staff. This Data Sheet is describing the specification of the products for which a  
warranty is granted exclusively pursuant the terms and conditions of the supply  
agreement. There will be no guarantee of any kind for the product and its  
specifications. Changes to the Data Sheet are reserved.  
You and your technical departments will have to evaluate the suitability of the  
product for the intended application and the completeness of the product data  
with respect to such application. Should you require product information in  
excess of the data given in the Data Sheet, please contact your local Sales Office  
via “www.eupec.com / sales & contact”.  
Warning  
Due to technical requirements the products may contain dangerous substances.  
For information on the types in question please contact your local Sales Office via  
“www.eupec.com / sales & contact”.  

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