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Analytische Elemente transienten ZthJC Zweig Analytical elements trans


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Analytische Elemente transienten ZthJC Zweig Analytical elements transient thermal impedance ZthJC Pos. [°C/W]
0,00194 0,00073
0,00584 0,00824
0,01465 0,108
0,0254 0,57
0,0267 3,00
Analytische Funktion Analytical function:
nmax
ZthJC
Rthn (1-e
March 1998
Elektrische Eigenschaften Werte Periodische Spitzensperrspannung Dauergrenzstrom Grenzlastintegral Electrical properties Maximum rated values repetitive peak reverse voltage -40°C. non-repetitive peak reverse voltage +25°C. forward current mean forward current surge forward current t-value 25°C, 25°C, Charakteristische Werte Schleusenspannung Ersatzwiderstand Sperrstrom Thermische Eigenschaften Innerer Betriebstemperatur Lagertemperatur Mechanische Eigenschaften siehe Seite Si-Element Druckkontakt Characteristic values forward voltage threshold voltage forward slope resistance reverse current insulation test voltage Thermal properties thermal resistance, junction case max. junction temperature operating temperature storage temperature Mechanical properties case, page Si-pellet with pressure contact Toleranz/tolerance Toleranz/tolerance +5%/-10% typ. Modul/per module, =180° thJC Modul/per module,DC thCK tstg max. max. max. 0,0780 °C/W 0,0745 °C/W 0,02 °C/W -40.+150 -40.+150
VRRM VRSM IFRMSM IFAVM IFSM
1200 1400 1600 1800 1300 1500 1700 1900 1150 2420 1805
VRRM RMS, min.
VT(TO) VISOL
max.
1,40 0,75 0,215
max.
thermal resistance, case heatsink Modul/per module
Innere Isolation internal insulation Anzugsdrehmoment mechanische mounting torque Befestigung Anzugsdrehmoment elektrische terminal connection torque Gewicht Kriechstrecke Schwingfestigkeit
weight creepage distance vibration resistance
747-1 gilt eine Zeitbegrenzung Betrieb auftretende gilt keine zeitliche Begrenzung./ According with 747-1 time-limit defined. There time-limit case temperature during operation.
eupec GmbH Max-Planck-Str. D59581 Warstein, Telefon (0)2902/ 764-0, Telefax /764-256
1200 1000 PFAV
180° 180° 120°
[°C]
120° 180°
180° 1000 IFAVM
1200
DZ600N1
1000 IFAV
1200
DZ600N
Bild/Fig. Forward power loss PFAV FAV) Parameter: Stromkurvenform current waveform with current conduction angle
Bild/Fig. Maximum allowable case temperature f(IFAVM) Parameter: Stromkurvenform current waveform with current conduction angle
0,015 0,01 0,02 0,025 0,03 0,04 0,05 0,06 0,08 0,12 0,15
RthCA [°C/W] Ptot
4000 3500 R-Last R-load L-Last L-load 0,015 0,02 0,025 0,03 0,04 0,05 0,06 0,08 0,12 0,15 1000 1500 2000
DZ600N4
0,01
RthCA [°C/W]
5000 4500 Ptot 4000 3500 3000 2500 2000 1500 1000
3000 2500 2000 1500 1000 [°C]
DZ600N3
[°C]
1000
1500
2000
Bild/Fig. Two-pulse bridge circuit Ausgangsstrom maximum rated output current Gesamtverlustleistung Schaltung total power dissipation circuit Ptot Parameter: zwischen Umgebung thermal resistance cases ambient RthCA
Bild/Fig. Six-pulse bridge circuit Ausgangsstrom maximum rated output current Gesamtverlustleistung Schaltung total power dissipation circuit Ptot Parameter: zwischen Umgebung thermal resistance cases ambient RthCA
IF(OV)M [kA] 0,01
DZ600N5
10000 [µAs] 1600
35°C 45°C
1000
0,04
0,06 0,08
DZ600N6
-diF/dt [A/µs]
Bild/Fig. Grenzstrom F(OV)M tA=45°C tA=35°C, Belastung nach Leerlauf, VRRM. Limiting overload on-state current IF(OV)M natural (tA=45°C) forced (tA=35°) cooling, current surge under no-load conditions, VRRM.
Bild/Fig. Recovered charge f(-di/dt) max, VRRM, VRRM Parameter: Forward current
0,10 Analytische Elemente transienten ZthJC Zweig Analytical elements transient thermal impedance ZthJC Pos. [°C/W] 0,108 0,0254 0,57 0,0267
0,08 Z(th)JC [°C/W] 0,06
0,00194 0,00584 0,01465 0,000732 0,00824
Analytische Funktion Analytical function: 0,04 120° 180° 180° 10-2 10-1 ZthJC
nmax
(1-e
DZ600N7
Bild/Fig. Transienter innerer Transient thermal impedance Z(th)JC f(t) Parameter: current conduction angle

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