PD -2.515 rev. A 02/99
HFA210NJ60D
HEXFRED
Features
Reduced RFI and EMI Reduced Snubbing Extensive Characterization of Recovery Parameters
TM
Ultrafast, Soft Recovery Diode
Anode 1 Cathode 2
Base AC
V R = 600V V F(typ.) = 1.2V IF(AV) = 210A Qrr (typ.) = 450nC IRRM(typ.) = 10A trr(typ.) = 35ns di(rec)M/dt (typ.) = 240A/µs
Description
HEXFRED 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.
TM
TO-244AB
Absolute Maximum Ratings (per Leg)
Parameter
VR IF @ TC = 25°C IF @ TC = 100°C IFSM EAS PD @ TC = 25°C PD @ TC = 100°C TJ TSTG Cathode-to-Anode Voltage Continuous Forward Current Continuous Forward Current Single Pulse Forward Current Non-Repetitive Avalanche Energy Maximum Power Dissipation Maximum Power Dissipation Operating Junction and Storage Temperature Range
Max.
600 171 85 600 220 463 185 -55 to +150
Units
V A µJ W C
Thermal - Mechanical Characteristics
Parameter
RthJC RthCS Wt Junction-to-Case, Single Leg Conducting Junction-to-Case, Both Legs Conducting Case-to-Sink, Flat, Greased Surface Weight Mounting Torque Mounting Torque Center Hole Terminal Torque Vertical Pull 2 inch Lever Pull
Min.
30 (3.4) 12 (1.4) 30 (3.4)
Typ.
0.10 79 (2.8)
Max.
0.34 0.17 40 (4.6) 18 (2.1) 40 (4.6) 80 35
Units
°C/W K/W g (oz) lbfin (Nm) lbfin
Note: Limited by junction temperature L = 100µH, duty cycle limited by max TJ 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 lbfin steps until desired or maximum torque limits are reached. Module
1
HFA210NJ60D
PD-2.515 rev. A 02/99
Electrical Characteristics (per Leg) @ TJ = 25°C (unless otherwise specified)
Parameter
VBR V FM Cathode Anode Breakdown Voltage Max Forward Voltage
Min. Typ. Max. Units
600 1.3 1.5 1.2 6.0 1.5 200 6.0 1.5 1.7 1.4 30 6.0 300 V V µA mA pF nH
Test Conditions
IR = 100µA IF = 105A See Fig. 1 IF = 210A IF = 105A, T J = 125°C VR = VR Rated See Fig. 2 TJ = 125°C, VR = 480V See Fig. 3 VR = 200V From top of terminal hole to mounting plane
IRM CT LS
Max Reverse Leakage Current Junction Capacitance Series Inductance
Dynamic Recovery Characteristics (per Leg) @ TJ = 25°C (unless otherwise specified)
Parameter
trr trr1 trr2 IRRM1 IRRM2 Qrr1 Qrr2 di(rec)M /dt1 di(rec)M /dt2 Reverse Recovery Time
Min. Typ. Max. Units
Test Conditions
Peak Recovery Current Reverse Recovery Charge Peak Rate of Fall of Recovery Current During tb
35 IF = 1.0A, dif /dt = 200A/µs, VR = 30V 90 140 ns TJ = 25°C 160 240 TJ = 125°C IF = 105A 10 18 TJ = 25°C A 15 30 TJ = 125°C VR = 200V 450 1300 TJ = 25°C nC 1200 3600 TJ = 125°C dif /dt = 200A/µs 310 TJ = 25°C A/µs 240 TJ = 125°C
80.01 (3.150) 40.26 (1.585) 39.75 (1.565)
2
10.41 (0.410) DIA. 9.65 (0.380)
20.32 (0.800) 17.78 (0.700) 7.49 (0.295) DIA. 6.99 (0.275) (2 PLCS.)
LEAD ASSIGNMENTS 1 - ANODE 2 - CATHODE 3 - ANODE
34.925 (1.375) REF.
4.95 (0.195) DIA. 4.70 (0.185) 1/4-20 SLOTTED HEX
63.50 (2.500) 60.96 (2.400)
1 3
23.55 (0.927) 20.42 (0.804)
15.75 (0.620) 14.99 (0.590)
3.35 (0.132)
CONFORMS TO JEDEC OUTLINE TO-244AB
Dimensions in Millimeters and (Inches)
92.71 (3.650) 90.17 (3.550)
3.02 (0.119)
2
HFA210NJ60D
1000
PD-2.515 rev. A 02/99
10000
Reverse Current - I R (µA)
TJ = 150°C
1000
T = 125 °C J
100
Instantaneous Forward Current - IF (A)
10
100
TJ = 150 °C TJ = 125°C TJ = 25°C
1
TJ = 25°C
0.1 0 200 400 600
Junction Capacitance - C T (pF)
10
Fig. 2 - Typical Reverse Current vs. Reverse Voltage, (per Leg)
10000
Reverse Voltage - VR (V)
A
T = 25°C J
1000
1 0.0 1.0 2.0 3.0 4.0
Forward Voltage Drop - V FM (V)
Fig. 1 - Maximum Forward Voltage Drop vs. Instantaneous Forward Current, (per Leg)
100 1 10 100 1000
Reverse Voltage - VR (V)
Fig. 3 - Typical Junction Capacitance vs. Reverse Voltage, (per Leg)
1
Thermal Response (Z thJC)
D = 0.50 0.1 0.20 0.10 0.05 0.01 0.02 0.01 SINGLE PULSE (THERMAL RESPONSE) Notes: 1. Duty factor D = t1 / t 2 2. Peak T J = P DM x Z thJC + T C 0.001 0.01 0.1 1 10 PDM t1 t2
0.001 0.00001
0.0001
t1 , Rectangular Pulse Duration (sec)
Fig. 4 - Maximum Thermal Impedance ZthJC Characteristics, (per Leg)
3
HFA210NJ60D
PD-2.515 rev. A 02/99
240
100
VR = 200V TJ = 125°C TJ = 25°C
200
VR = 200V TJ = 125°C TJ = 25°C I F = 200A IF = 105A
I IRRM - (A)
t rr - (ns)
160
I F = 40A
10
IF = 200A
120
I F = 105A I F = 40A
80
40 100
di f /dt - (A/µs)
1000
1 100
di f /dt - (A/µs)
1000
Fig. 5 - Typical Reverse Recovery vs. dif/dt, (per Leg)
4000
Fig. 6 - Typical Recovery Current vs. dif/dt, (per Leg)
10000
VR = 200V TJ = 125°C TJ = 25°C
3000
VR = 200V TJ = 125°C TJ = 25°C
Q RR - (nC)
IF = 200A I F = 105A I F = 40A
di(rec)M/dt - (A/µs)
2000
1000
I F = 200A I F = 105A I F = 40A
1000
0 100
di f /dt - (A/µs)
1000
100 100
di f /dt - (A/µs)
1000
Fig. 7 - Typical Stored Charge vs. dif/dt, (per Leg)
4
Fig. 8 - Typical di (rec)M/dt vs. dif/dt, (per Leg)
HFA210NJ60D
3
PD-2.515 rev. A 02/99
IF
t rr ta tb
4
REVERSE RECOVERY CIRCUIT
VR = 200V
0 Q rr I RRM
2
0.5 I RRM di(rec)M/dt
5
0.01 Ω L = 70µH D.U.T. D 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 G
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
L = 100µH HIGH-SPEED SWITCH Rg = 25 ohm CURRENT MONITOR FREE-WHEEL DIODE + Vd = 50V
Fig. 10 - Reverse Recovery Waveform and Definitions
I L(PK)
DUT
DECAY TIME V (AVAL) V R(RATED)
Fig. 11 - Avalanche Test Circuit and Waveforms
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Data and specifications subject to change without notice.
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