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 Bulletin PD -2.531 Rev.A 09/03
HFA120FA60
HEXFRED
TM
Ultrafast, Soft Recovery Diode
K2 A2
VR = 600V VF(typ.)* = 1.4V IF(AV) = 60A Qrr (typ.) = 270nC IRRM(typ.) = 7.0A trr(typ.) = 65ns di(rec)M/dt (typ.)* = 270A/s
K1
A1
HFA120FA60
Features

Fast Recovery time characteristic Eletrically isolated base plate Large creepage distance between terminal Simplified mechanical designs, rapid assembly
Description
This SOT-227 module with FRED rectifier is available into parallel configuration, used for simple parallel rectifier and high current application. The semiconductor in the SOT-227 package is isolated from the copper base plate, allowing for common heatsinks and compact assemblies to be built. That module is intended for general applications such as power supplies, battery chargers, electronic welders, motor control, DC chopper, and inverters.
SOT-227
Absolute Maximum Ratings (per Leg)
Parameter
VR IF @ TC = 25C IF @ TC = 100C IFSM IFRM VISOL PD @ TC = 25C PD @ TC = 100C TJ TSTG *125 C Cathode-to-Anode Voltage Continuous Forward Current Continuous Forward Current Single Pulse Forward Current Maximum Repetitive Forward Current RMS Isolation Voltage, Any Terminal to Case, t=1 min Maximum Power Dissipation Maximum Power Dissipation Operating Junction and Storage Temperature Range
Max.
600 75 40 TBD 180 2500 180 71 -55 to +150
Units
V
A V W C
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1
HFA120FA60
Bulletin PD -2.531 Rev.A 09/03
Electrical Characteristics (per Leg) @ TJ = 25C (unless otherwise specified)
Parameter
VBR VFM IRM CT Cathode Anode Breakdown Voltage Max Forward Voltage Max Reverse Leakage Current Junction Capacitance
Min. Typ. Max. Units
600 1.5 1.7 1.9 2.1 1.4 1.6 2.5 20 130 2000 120 170 V V A pF
Test Conditions
IR = 100A IF = 60A See Fig. 1 IF = 120A IF = 60A, TJ = 125C See Fig. 2 VR = VR Rated TJ = 125C, VR = 0.8 x VR RatedD Rated See Fig. 3 VR = 200V
Dynamic Recovery Characteristics (per Leg) @ TJ = 25C (unless otherwise specified)
Parameter
trr trr1 trr2 IRRM1 IRRM2 Qrr1 Qrr2 di(rec)M/dt1 di(rec)M/dt2 Reverse Recovery Time See Fig. 5, 6 & 16 Peak Recovery Current See Fig. 7& 8 Reverse Recovery Charge See Fig. 9 & 10 Peak Rate of Fall of Recovery Current During tb See Fig. 11 & 12
Min. Typ. Max. Units
34 65 130 7.0 13 270 490 350 270 98 200 13 23 410 740 ns A nC A/s
Test Conditions
IF = 1.0A, dif/dt = 200A/s, VR = 30V TJ = 25C TJ = 125C IF = 60A TJ = 25C TJ = 125C VR = 200V TJ = 25C TJ = 125C dif/dt = 200A/s TJ = 25C TJ = 125C
Thermal - Mechanical Characteristics
Parameter
RJC RCS Wt Junction-to-Case, Single Leg Conducting Junction-to-Case, Both Legs Conducting Case-to-Sink, Flat , Greased Surface Weight Mounting Torque
Min.

Typ.
0.05 30 1.3
Max.
0.70 0.35
Units
C/W K/W g (Nm)
2
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Bulletin PD -2.531 Rev.A 09/03
1000 10000
HFA120FA60
TJ = 150C
Reverse Current - IR (A)
1000
100
T = 125C J
Instantaneous Forward Current - IF (A)
10
100
1
TJ = 25C
TJ = 150C TJ = 125C TJ = 25C
0.1 0 200 400 600
Reverse Voltage - V R V ) Reverse Voltage - VR ( (V)
10
Fig. 2 - Typical Reverse Current vs. Reverse Voltage, (per Leg)
10000
A
Junction Capacitance -CT (pF)
1000
TJ = 25C
1 0.0
0.5
1.0
1.5
2.0
2.5
3.0
100
Forward Voltage Drop - V FM (V)
Fig. 1 - Maximum Forward Voltage Drop vs. Instantaneous Forward Current, (per Leg)
10 1 10 100 1000
Reverse Voltage - V R (V)
Fig. 3 - Typical Junction Capacitance vs. Reverse Voltage, (per Leg)
1
Thermal Response (Z thJC )
D = 0.50
0.20 0.1 0.10 0.05 0.02 0.01 SINGLE PULSE (THERMAL RESPONSE) PDM t1 t2 Notes: 1. Duty factor D = t 1 / t 2 2. Peak TJ = P DM x Z thJC + TC 0.0001 0.001 0.01 0.1 1
0.01 0.00001
t1 , Rectangular Pulse Duration (sec)
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Fig. 4 - Maximum Thermal Impedance Zthjc Characteristics, (per Leg)
3
HFA120FA60
200 VR = 200V TJ = 125C TJ = 25C
Bulletin PD -2.531 Rev.A 09/03
100 VR = 200V TJ = 125C TJ = 25C
IF = 120A
160
IF = 120A I F = 60A I F = 30A
IF = 60A IF = 30A
trr- (ns)
120
Irr- ( A)
10
80
40 100
di f /dt - (A/s)
1000
1 100
1000
di f /dt - (A/s)
Fig. 5 - Typical Reverse Recovery vs. dif/dt, (per Leg)
4000 VR = 200V TJ = 125C TJ = 25C
Fig. 6 - Typical Recovery Current vs. dif/dt, (per Leg)
10000 VR = 200V TJ = 125C TJ = 25C
3000
I F = 60A
di (rec) M/dt- (A /s)
I F = 120A
I F = 120A IF = 60A I F = 30A
1000
Qrr- (nC)
I F = 30A
2000
1000
0 100
di f /dt - (A/s)
1000
100 100
1000
di f /dt - (A/s)
4
Fig. 7 - Typical Stored Charge vs. dif/dt, (per Leg)
Fig. 8 - Typical di(rec)M/dt vs. dif/dt, (per Leg)
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Bulletin PD -2.531 Rev.A 09/03
HFA120FA60
3
IF
trr ta tb
4
REVERSE RECOVERY CIRCUIT
VR = 200V
0 Q rr
2
I RRM
0.5 I RRM di(rec)M/dt
5
0.01 L = 70H D.U.T. D G IRFP250 S
1
0.75 I RRM di f /dt
4. Qrr - Area under curve defined by trr and IRRM trr X IRRM Qrr = 2 5. di(rec)M/dt - Peak rate of change of current during tb portion of trr
dif/dt ADJUST
1. dif/dt - Rate of change of current through zero crossing 2. IRRM - Peak reverse recovery current 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
Fig. 9 - Reverse Recovery Parameter Test Circuit
Fig. 10 - Reverse Recovery Waveform and Definitions
L = 100H HIGH-SPEED SWITCH Rg = 25 ohm CURRENT MONITOR FREE-WHEEL DIODE + Vd = 50V
I L(PK)
DUT
DECAY TIME V (AVAL) V R(RATED)
Fig. 11 - Avalanche Test Circuit and Waveforms
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5
HFA120FA60
Bulletin PD -2.531 Rev.A 09/03
SOT-227 Package Details
LEAD ASSIGNMENTS
Tube
QUANTITIES PER TUBE IS 10 M4 SREW AND WASHER INCLUDED
Data and specifications subject to change without notice. This product has been designed and qualified for Industrial market. Qualification Standards can be found on IR's Web site.
IR WORLD HEADQUARTERS: 233 Kansas St., El Segundo, California 90245, USA Tel: (310) 252-7105 TAC Fax: (310) 252-7903 Visit us at www.irf.com for sales contact information. 10/02
6
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