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Kathode Cathode Anode +0.1 tief depth beidseitig both sides


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Leistungsgleichrichterdioden Power Rectifier Diodes
Kathode Cathode
Anode
+0.1 tief depth beidseitig both sides
19,5
July 1996
Elektrische Eigenschaften Electrical properties
Werte Periodische Spitzensperrspannung
Maximum rated values repetitive peak reverse voltage -40°C. VRRM 800, 1200, 1400 1800, 2000
Dauergrenzstrom
non-repetitive peak reverse voltage +25°C. forward current mean forward current
VRSM IFRMSM IFAVM
surge forward current
25°C,
IFSM
Grenzlastintegral
t-value
25°C,
296,45
Charakteristische Werte Schleusenspannung Ersatzwiderstand Sperrstrom
Characteristic values on-state voltage threshold voltage slope resistance reverse current VT(TO) max. max. 1,76 0,81 0,54
Thermische Eigenschaften Innerer Widerstand
Thermal properties thermal resistance, junction case beidseitig/two-sided, =180° beidseitig/two sided, Anode/anode, =180° Anode/anode, Kathode/cathode, =180° Kathode/cathode, thJC max. max. max. max. max. max. thCK max. max. tstg 0,069 °C/W 0,063 °C/W 0,106 °C/W 0,100 °C/W 0,176 °C/W 0,170 °C/W 0,015 °C/W 0,030 °C/W -40.+150 -40.+150
thermal resistance,case heatsink beidseitig /two-sided einseitig /single-sided
Betriebstemperatur Lagertemperatur
max. junction temperature operating temperature storage temperature
Mechanische Eigenschaften Si-Element Druckkontakt Gewicht Kriechstrecke Feuchteklasse Schwingfestigkeit
Mechanical properties Si-pellet with pressure contact clamping force weight creepage distance humidity classification vibration resistance outline 40040 Seite/page
typ. 3,2.7,6
design
Angabe Typenbezeichnung additional value type definition
Durchmesser diameter only
2000 2000
2500
2000
(normiert)
1500
1000
D428N_1
[ms]
D428N_4
Bild/Fig. Limiting forward characteristic (vF)
Bild Fig. Normiertes Grenzlastintegral Normalized f(tp)
IF(0V)M
IF(0V)M
IF(0V)M [kA]
IF(0V)M [kA]
D428N_5
D428N_6
Bild Fig. Grenzstrom Maximum overload forward current IF(0V)M f(t) IFAV(vor) IFAV(vor) VRRM VRRM
Bild Fig. Grenzstrom Maximum overload forward current IF(0V)M f(t) IFAV(vor) IFAV(vor) VRRM VRRM
0,06
0,05
RthJC [°C/W]
0,04
[µAs]
0,03
0,02
0,01
D428N_3
D428N_7
[A/µs]
[°el]
Bild Fig. Differenz zwischen Pulsstrom Difference between values thermal resistance pulse current Parameter: Stromkurvenform Current waveform
Bild Fig. Recovered charge f(-diF/dt) tvjmax; VRRM; VRRM Beschaltung Snubber: 0,47 Parameter: Forward current
0,20 0,18 (th)JC [°C/W] 0,14 0,12 0,10 0,08 0,06 0,04 0,02
D428N_2
Analytische Elemente transienten ZthJC Analytical elements transient thermal impedance ZthJC
Cooling Pos.
0,0171 0,387 0,00758 0,0363 0,699 0,115 3,46 3,78
Rthn °C/W 0,00063 0,00635 0,01052 0,0284
0,000135 0,00158 0,0199 0,0815 0,0363 0,108 0,0325 0,113
Rthn °C/W 0,000632 0,006388 0,0128
0,000136 0,00158 0,022
Rthn °C/W 0,000626 0,006574 0,0153
0,000135 0,0016 0,0274
Beidseitige Two-sided cooling Anodenseitige Anode-sided cooling Kathodenseitige Cathode-sided cooling
Analytische Funktion Analytical function nmax ZthJC thn(1-EXP(-t/n))
10-2 10-1
Bild Fig. Transienter innerer Transient thermal impedance ZthJC f(t), Beidseitige Two-sided cooling Anodenseitige Anode-sided cooling Kathodenseitige Cathode-sided cooling
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