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5SDD24F2800

型号:

5SDD24F2800

描述:

整流器器二极管[ Rectifier Diode ]

品牌:

ABB[ THE ABB GROUP ]

页数:

5 页

PDF大小:

145 K

VRSM  
IFAVM  
IFRMS  
IFSM  
VF0  
=
=
=
=
=
=
3000 V  
2596 A  
Rectifier Diode  
5SDD 24F2800  
4078 A  
30×103 A  
0.906 V  
0.135  
mΩ  
rF  
Doc. No. 5SYA1167-00 Jan. 03  
Very low on-state losses  
Optimum power handling capability  
Blocking  
Maximum rated values 1)  
Parameter  
Symbol Conditions  
Value  
2800  
3000  
Unit  
V
V
Repetetive peak reverse voltage  
VRRM  
f = 50 Hz, tp = 10ms, Tj = -40...160°C  
Non - repetetive peak reverse voltage VRSM  
f = 5 Hz, tp = 10ms, Tj = -40...160°C  
Characteristic values  
Parameter  
Symbol Conditions  
IRRM VRRM, Tj = 160°C  
min  
min  
typ  
typ  
max  
50  
Unit  
mA  
Max. (reverse) leakage current  
Mechanical data  
Maximum rated values 1)  
Parameter  
Mounting force  
Acceleration  
Acceleration  
Characteristic values  
Parameter  
Symbol Conditions  
FM  
max  
Unit  
kN  
20  
22  
24  
50  
100  
a
a
Device unclamped  
Device clamped  
m/s2  
m/s2  
Symbol Conditions  
m
min  
typ  
0.5  
max  
Unit  
kg  
Weight  
Housing thickness  
Pole-piece diameter  
Surface creepage distance  
Air strike distance  
H
26  
47  
mm  
mm  
mm  
mm  
DP  
DS  
Da  
33  
18  
1) Maximum rated values indicate limits beyond which damage to the device may occur  
ABB Switzerland Ltd, Semiconductors reserves the right to change specifications without notice.  
5SDD 24F2800  
On-state  
Maximum rated values 1)  
Parameter  
Symbol Conditions  
IFAVM 50 Hz, Half sine wave, TC = 85 °C  
min  
typ  
max  
2596  
Unit  
A
Max. average on-state  
current  
4078  
Max. RMS on-state current IFRMS  
A
A
30×103  
Max. peak non-repetitive  
IFSM  
tp = 10 ms, Tj = 160°C,  
VR = 0 V  
surge current  
4.5×106  
32×103  
Limiting load integral  
I2t  
A2s  
A
Max. peak non-repetitive  
IFSM  
tp = 8.3 ms, Tj = 160°C,  
VR = 0 V  
surge current  
4.262×106  
Limiting load integral  
Characteristic values  
Parameter  
I2t  
A2s  
Symbol Conditions  
min  
min  
typ  
max  
1.3  
Unit  
V
V
On-state voltage  
Threshold voltage  
Slope resistance  
VF  
V(T0)  
rT  
IF = 3000 A, Tj = 160°C  
0.906  
0.135  
Tj = 160°C  
IT = 3140...9420 A  
mΩ  
Switching  
Characteristic values  
Parameter  
Symbol Conditions  
typ  
max  
Unit  
Qrr  
3000  
3500  
µAs  
Recovery charge  
diF/dt = -30 A/µs, VR = 100 V  
IFRM = 1000 A, Tj = 160°C  
Thermal  
Maximum rated values 1)  
Parameter  
Symbol Conditions  
Tvj  
min  
-40  
typ  
typ  
max  
160  
Unit  
°C  
Operating junction  
temperature range  
Storage temperature range Tstg  
-40  
160  
°C  
Characteristic values  
Parameter  
Symbol Conditions  
min  
max  
Unit  
Thermal resistance junction Rth(j-c)  
Double-side cooled  
15  
K/kW  
to case  
Rth(j-c)A Anode-side cooled  
Rth(j-c)C Cathode-side cooled  
24  
40  
4
K/kW  
K/kW  
K/kW  
Thermal resistance case to Rth(c-h)  
Double-side cooled  
heatsink  
Rth(c-h)  
Single-side cooled  
8
K/kW  
Analytical function for transient thermal  
impedance:  
n
(t) = åR  
Z
thJC  
i
(1-e-t/τ i )  
i=1  
i
1
2
3
4
Ri(K/kW)  
6.060  
0.6937  
3.850  
0.2040  
3.780  
0.0452  
1.320  
0.0040  
τi(s)  
Fig. 1 Transient thermal impedance junction-to-  
case.  
ABB Switzerland Ltd, Semiconductors reserves the right to change specifications without notice.  
Doc. No. 5SYA1167-00 Jan. 03  
page 2 of 5  
5SDD 24F2800  
10000  
9000  
8000  
7000  
6000  
5000  
4000  
3000  
2000  
1000  
0
60  
55  
50  
45  
40  
35  
30  
25  
20  
10  
9
25 °C  
160 °C  
i2dt  
I FSM  
ò
25°C  
25°C  
8
7
160 °C  
160°C  
6
5
4
3
2
1
0
0
0,5  
1
1,5  
2
2,5  
V F  
( V )  
1
10  
100  
t ( ms )  
Fig. 2 Max. on-state characteristics.  
Fig. 3 Surge forward current vs. pulse length. Half  
sine wave, single pulse, VR = 0 V  
= 30° 60° 90° 120° 180°  
270°  
5000  
5000  
4500  
4000  
3500  
3000  
2500  
2000  
1500  
1000  
500  
ψ
60° 120° 180°  
4500  
4000  
3500  
3000  
2500  
2000  
1500  
1000  
500  
DC  
DC  
0
0
0
500  
1000  
1500 2000 2500 3000  
IFAV  
0
500  
1000 1500 2000  
2500 3000  
IFAV  
( A )  
( A )  
Fig. 4 Forward power loss vs. average forward  
Fig. 5 Forward power loss vs. average forward  
current, sine waveform, f = 50 Hz  
current, square waveform, f = 50 Hz  
ABB Switzerland Ltd, Semiconductors reserves the right to change specifications without notice.  
Doc. No. 5SYA1167-00 Jan. 03  
page 3 of 5  
5SDD 24F2800  
170  
160  
150  
140  
130  
120  
110  
100  
90  
170  
160  
150  
140  
130  
120  
110  
100  
90  
DC  
DC  
270°  
80  
80  
180°  
70  
70  
180°  
3000  
60  
60  
60°  
2000  
120°  
2500  
IFAV  
= 30°  
1500  
60° 90° 120°  
ψ
0
500  
1000  
1500  
0
500  
1000  
2000  
2500  
3000  
( A )  
IFAV  
( A )  
Fig. 6 Max. case temperature vs aver. forward  
Fig. 7 Max. case temperature vs aver. forward  
current, sine waveform, f = 50 Hz  
current, square waveform, f = 50 Hz  
10000  
1000  
1000  
100  
max  
min  
max  
min  
10  
100  
dI F /dt ( A/µs )  
dIF /dt ( A/µs )  
1
10  
100  
1
10  
100  
Fig. 8 Reverse recovery charge vs. dIF/dt,  
Fig. 9 Peak reverse recovery current vs. diF/dt,  
IF= 1000 A; Tj = Tjmax, limit values  
IF = 1000 A; Tj = Tjmax, limit values  
ABB Switzerland Ltd, Semiconductors reserves the right to change specifications without notice.  
Doc. No. 5SYA1167-00 Jan. 03  
page 4 of 5  
5SDD 24F2800  
Fig. 10 Outline drawing. All dimensions are in millimeters and represent nominal values unless stated otherwise.  
ABB Switzerland Ltd, Semiconductors reserves the right to change specifications without notice.  
ABB Switzerland Ltd  
Semiconductors  
Doc. No. 5SYA1167-00 Jan. 03  
Fabrikstrasse 3  
CH-5600 Lenzburg, Switzerland  
Telephone +41 (0)58 586 1419  
Fax  
+41 (0)58 586 1306  
Email  
Internet  
abbsem@ch.abb.com  
www.abb.com/semiconductors  
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