HFA200MD40CPBF [INFINEON]

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HFA200MD40CPBF
型号: HFA200MD40CPBF
厂家: Infineon    Infineon
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整流二极管 局域网 软恢复二极管
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PD-2.450 rev. B 01/99  
HFA200MD40C  
HEXFREDTM  
Ultrafast, Soft Recovery Diode  
VR = 400V  
LUG  
TERMINAL  
CATHODE  
LUG  
TERMINAL  
ANODE 1  
LUG  
TERMINAL  
ANODE 2  
VF(typ.)ƒ = 0.9V  
IF(AV) = 200A  
• Reduced RFI and EMI  
• Reduced Snubbing  
• Extensive Characterization of  
Recovery Parameters  
Qrr (typ.) = 330nC  
IRRM(typ.)= 8.1A  
trr(typ.)= 45ns  
Isolated Base  
di(rec)M/dt (typ.)ƒ = 270A/µs  
HEXFREDTM diodes are optimized to reduce losses and EMI/RFI in high frequency  
power conditioning systems. An extensive characterization of the recovery  
behavior for different values of current, temperature and di/dt simplifies the  
calculations of losses in the operating conditions. The softness of the recovery  
eliminates the need for a snubber in most applications. These devices are  
ideally suited for power converters, motors drives and other applications where  
switching losses are significant portion of the total losses.  
TO-244AB  
(ISOLATED)  
Parameter  
Max.  
Units  
VR  
Cathode-to-Anode Voltage  
400  
172  
83  
1200  
1.4  
V
IF @ TC = 25°C  
IF @ TC = 100°C  
IFSM  
Continuous Forward Current  
Continuous Forward Current  
Single Pulse Forward Current   
Non-Repetitive Avalanche Energy ‚  
Maximum Power Dissipation  
A
EAS  
mJ  
W
PD @ TC = 25°C  
PD @ TC = 100°C Maximum Power Dissipation  
278  
111  
TJ  
TSTG  
Operating Junction and  
Storage Temperature Range  
C
-55 to +150  
Parameter  
Min.  
––––  
Typ.  
––––  
––––  
0.10  
Max.  
0.45  
Units  
RthJC  
Junction-to-Case, Single Leg Conducting  
Junction-to-Case, Both Legs Conducting  
Case-to-Sink, Flat , Greased Surface  
Weight  
°C/W  
K/W  
––––  
0.23  
RthCS  
Wt  
––––  
––––  
––––  
40 (4.6)  
40 (4.6)  
80  
––––  
79 (2.8)  
––––  
––––  
––––  
––––  
g (oz)  
Mounting Torque „  
30 (3.4)  
30 (3.4)  
––––  
lbf•in  
(N•m)  
TerminalTorque  
Vertical Pull  
lbf•in  
2 inch Lever Pull  
––––  
35  
Note:  Limited by junction temperature  
‚ L = 100µH, duty cycle limited by max TJ  
ƒ 125°C  
„
Mounting surface must be smooth, flat, free or burrs or other  
protrusions. Apply a thin even film or thermal grease to mounting  
surface. Gradually tighten each mounting bolt in 5-10 lbf•in steps  
until desired or maximum torque limits are reached. Module  
1
HFA200MD40C  
PD-2.450 rev. B 01/99  
J
Parameter  
Min. Typ. Max. Units  
Test Conditions  
VBR  
VFM  
Cathode Anode Breakdown Voltage  
400 ––– –––  
––– 1.0 1.2  
––– 1.2 1.4  
––– 0.9 1.1  
––– 2.0 12  
––– 3.0 16  
––– 370 500  
V
IR = 100µA  
Max Forward Voltage  
IF = 100A  
IF = 200A  
V
See Fig. 1  
IF = 100A, TJ = 125°C  
IRM  
Max Reverse Leakage Current  
µA VR = VR Rated  
mA TJ = 125°C, VR = 320V  
pF VR = 200V  
See Fig. 2  
See Fig. 3  
CT  
LS  
Junction Capacitance  
Series Inductance  
From top of terminal hole to mounting  
plane  
––– 5.0 –––  
nH  
J
Parameter  
Min. Typ. Max. Units  
Test Conditions  
trr  
Reverse Recovery Time  
––– 45 –––  
IF = 1.0A, dif/dt = 200A/µs, VR = 30V  
trr1  
trr2  
––– 81 120  
––– 260 390  
––– 8.1 15  
ns TJ = 25°C See Fig.  
TJ = 125°C  
TJ = 25°C See Fig.  
TJ = 125°C  
TJ = 25°C See Fig.  
TJ = 125°C  
TJ = 25°C See Fig.  
5
IF = 100A  
VR = 200V  
IRRM1  
IRRM2  
Qrr1  
Qrr2  
Peak Recovery Current  
A
––– 17  
30  
6
Reverse Recovery Charge  
––– 330 890  
––– 2200 6000  
––– 290 –––  
––– 270 –––  
nC  
7
dif/dt = 200A/µs  
di(rec)M/dt1 Peak Rate of Fall of Recovery Current  
di(rec)M/dt2 During tb  
A/µs  
TJ = 125°C  
8
80.01 (3.150)  
40.26 (1.585)  
39.75 (1.565)  
20.32 (0.800)  
17.78 (0.700)  
LEAD ASSIGNMENTS  
1 - ANODE  
2 - CATHODE  
3 - ANODE  
7.49 (0.295)  
6.99 (0.275)  
(2 PLCS.)  
DIA.  
34.925 (1.375)  
REF.  
63.50 (2.500)  
60.96 (2.400)  
1/4-20 SLOTTED HEX  
1
2
3
OUTLINE TO-244AB (ISOLATED)  
Dimensions in Millimeters and (Inches)  
23.55 (0.927)  
20.42 (0.804)  
15.75 (0.620)  
14.99 (0.590)  
3.35 (0.132)  
3.02 (0.119)  
92.71 (3.650)  
90.17 (3.550)  
2
HFA200MD40C  
PD-2.450 rev. B 01/99  
1000  
100  
10  
100000  
10000  
1000  
100  
T = 150°C  
J
T = 125°C  
J
T = 150°C  
10  
J
T = 125°C  
T = 25°C  
J
J
1
T = 25°C  
J
0.1  
0
100  
200  
300  
400  
Reverse Voltage - V (V)  
R
Fig. 2 - Typical Reverse Current vs. Reverse  
Voltage, (per Leg)  
A
10000  
T = 25°C  
J
1000  
1
0.4  
0.8  
1.2  
1.6  
2.0  
Forward Voltage Drop - V  
(V)  
FM  
100  
Fig. 1 - Maximum Forward Voltage Drop  
vs. Instantaneous Forward Current,  
(per Leg)  
1
10  
100  
1000  
Reverse Voltage - V (V)  
R
Fig. 3 - Typical Junction Capacitance vs.  
Reverse Voltage, (per Leg)  
1
D = 0.50  
D = 0.33  
D = 0.25  
D = 0.17  
0.1  
P
DM  
D = 0.08  
t
1
t
2
0.01  
Notes:  
1. Duty factor D = t / t  
Single Pulse  
(Thermal Resistance)  
1
2
2. Peak T = P  
J
x Z  
+ T  
DM  
thJC  
C
0.001  
0.00001  
0.0001  
0.001  
0.01  
0.1  
1
10  
100  
t1, Rectangular Pulse Duration (Seconds)  
Fig. 4 - Maximum Thermal Impedance Zthjc Characteristics, (per Leg)  
3
HFA200MD40C  
PD-2.450 rev. B 01/99  
100  
10  
1
500  
VR = 200V  
TJ = 125°C  
TJ = 25°C  
VR = 200V  
TJ = 125°C  
TJ = 25°C  
400  
300  
200  
100  
0
I
F
= 200A  
I
= 200A  
F
I
= 100A  
F
I
= 100A  
I
= 70A  
F
F
I
= 70A  
F
100  
1000  
100  
1000  
di /dt - (A/µs)  
f
di /dt - (A/µs)  
f
Fig. 6 - Typical Recovery Current vs. dif/dt,  
Fig. 5 - Typical Reverse Recovery vs. dif/dt,  
(per Leg)  
(per Leg)  
6000  
10000  
VR = 200V  
TJ = 125°C  
TJ = 25°C  
VR = 200V  
TJ = 125°C  
TJ = 25°C  
I
F
= 200A  
4000  
2000  
0
I
= 100A  
F
I
= 70A  
F
I
= 70A  
F
1000  
I
= 100A  
F
I
= 200A  
F
100  
100  
100  
1000  
1000  
di /dt - (A/µs)  
di /dt - (A/µs)  
f
f
Fig. 7 - Typical Stored Charge vs. dif/dt,  
Fig. 8 - Typical di(rec)M/dt vs. dif/dt,  
(per Leg)  
(per Leg)  
4
HFA200MD40C  
PD-2.450 rev. B 01/99  
3
t
rr  
I
F
t
t
a
b
0
REVERSE RECOVERY CIRCUIT  
4
Q
rr  
V
= 200V  
2
R
I
0.5 I  
RRM  
RRM  
5
di(rec)M/dt  
0.01  
0.75 I  
RRM  
L = 70µH  
1
di /dt  
f
D.U.T.  
1. dif/dt - Rate of change of current  
through zero crossing  
4. Qrr - Area under curve defined by trr  
D
and IRRM  
dif/dt  
ADJUST  
trr X IRRM  
IRFP250  
G
2. IRRM - Peak reverse recovery current  
Q =  
rr  
2
3. trr - Reverse recovery time measured  
from zero crossing point of negative  
going IF to point where a line passing  
through 0.75 IRRM and 0.50 IRRM  
extrapolated to zero current  
S
5. di(rec)M/dt - Peak rate of change of  
current during tb portion of t  
rr  
Fig. 10 - Reverse Recovery Waveform and  
Fig. 9 - Reverse Recovery Parameter Test  
Definitions  
Circuit  
I
L = 100µH  
L(PK)  
HIGH-SPEED  
SWITCH  
DUT  
FREE-WHEEL  
DIODE  
Rg = 25 ohm  
+
CURRENT  
MONITOR  
DECAY  
TIME  
Vd = 50V  
V
(AVAL)  
V
R(RATED)  
Fig. 11 - Avalanche Test Circuit and Waveforms  
WORLDHEADQUARTERS: 233 Kansas St., El Segundo, California 90245 U.S.A. Tel: (310) 322 3331. Fax: (310) 322 3332.  
EUROPEANHEADQUARTERS: Hurst Green, Oxted, Surrey RH8 9BB, U.K. Tel: ++ 44 1883 732020. Fax: ++ 44 1883 733408.  
IRCANADA: 15 Lincoln Court, Brampton, Markham, Ontario L6T3Z2. Tel: (905) 453 2200. Fax: (905) 475 8801.  
IR GERMANY: Saalburgstrasse 157, 61350 Bad Homburg. Tel: ++ 49 6172 96590. Fax: ++ 49 6172 965933.  
IRITALY: Via Liguria 49, 10071 Borgaro, Torino. Tel: ++ 39 11 4510111. Fax: ++ 39 11 4510220.  
IR FAR EAST: K&H Bldg., 2F, 30-4 Nishi-Ikebukuro 3-Chome, Toshima-Ku, Tokyo, Japan 171. Tel: 81 3 3983 0086.  
IR SOUTHEAST ASIA: 1 Kim Seng Promenade, Great World City West Tower,13-11, Singapore 237994. Tel: ++ 65 838 4630.  
IR TAIWAN: 16 Fl. Suite D.207, Sec. 2, Tun Haw South Road, Taipei, 10673, Taiwan. Tel: 886 2 2377 9936.  
http://www.irf.com  
Fax-On-Demand: +44 1883 733420  
Data and specifications subject to change without notice.  
5

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