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  Datasheet File OCR Text:
 1
3
TO -24
2 1 - Anode 1 2 - Common Cathode Back of Case - Cathode 3 - Anode 2
1 2 3
7
APT30D60BCT
600V
2x30A
ULTRAFAST SOFT RECOVERY RECTIFIER DIODES
PRODUCT APPLICATIONS
* Parallel Diode * * * * *
-Switchmode Power Supply -Inverters Free Wheeling Diode -Motor Controllers -Converters Snubber Diode Uninterruptible Power Supply (UPS) Induction Heating High Speed Rectifiers
PRODUCT FEATURES
* Ultrafast Recovery Times * Soft Recovery Characteristics * Popular TO-247 Package * Low Forward Voltage * High Blocking Voltage * Low Leakage Current
PRODUCT BENEFITS
* Low Losses * Low Noise Switching * Cooler Operation * Higher Reliability Systems * Increased System Power
Density
MAXIMUM RATINGS
Symbol VR VRRM VRWM IF(AV) IF(RMS) IFSM TJ,TSTG TL Characteristic / Test Conditions Maximum D.C. Reverse Voltage Maximum Peak Repetitive Reverse Voltage Maximum Working Peak Reverse Voltage
All Ratings Are Per Leg: TC = 25C unless otherwise specified.
APT30D60BCT UNIT
600
Volts
Maximum Average Forward Current (TC = 100C, Duty Cycle = 0.5) RMS Forward Current Non-Repetitive Forward Surge Current (TJ = 45C, 8.3ms) Operating and StorageTemperature Range Lead Temperature: 0.063" from Case for 10 Sec.
30 70 320 -55 to 150 300
C Amps
STATIC ELECTRICAL CHARACTERISTICS
Symbol Characteristic / Test Conditions IF = 30A VF Maximum Forward Voltage IF = 60A IF = 30A, TJ = 150C IRM CT LS Maximum Reverse Leakage Current VR = VR Rated VR = VR Rated, TJ = 125C Junction Capacitance, VR = 200V Series Inductance (Lead to Lead 5mm from Base)
APT Website - http://www.advancedpower.com
Bend, Oregon 97702-1035 F-33700 Merignac - France Phone: (541) 382-8028 Phone: (33) 5 57 92 15 15 FAX: (541) 388-0364 FAX: (33) 5 56 47 97 61
MIN
TYP
MAX
UNIT
1.8 1.5 1.6 250 500 40 10
A pF nH
053-6016 Rev -
Volts
USA
405 S.W. Columbia Street
EUROPE
Avenue J.F. Kennedy Bat B4 Parc Cadera Nord
DYNAMIC CHARACTERISTICS
Symbol trr1 trr2 trr3 tfr1 tfr2 IRRM1 IRRM2 Qrr1 Qrr2 Vfr1 Vfr2 diM/dt IF = 30A, diF /dt = -240A/s, VR = 350V (See Figure 10) Characteristic Reverse Recovery Time, IF = 1.0A, diF /dt = -15A/s, VR = 30V, TJ = 25C Reverse Recovery Time IF = 30A, diF /dt = -240A/s, VR = 350V Forward Recovery Time IF = 30A, diF /dt = 240A/s, VR = 350V Reverse Recovery Current IF = 30A, diF /dt = -240A/s, VR = 350V Recovery Charge IF = 30A, diF /dt = -240A/s, VR = 350V Forward Recovery Voltage IF = 30A, diF /dt = 240A/s, VR = 350V Rate of Fall of Recovery Current TJ = 25C TJ = 100C TJ = 25C TJ = 100C TJ = 25C TJ = 100C TJ = 25C TJ = 100C TJ = 25C TJ = 100C TJ = 25C TJ = 100C MIN TYP
APT30D60BCT
MAX UNIT
50 50 80 155 155 4 7.5 100
65
ns
10
Amps
15
nC
300 5
Volts
5 400
A/s
200
THERMAL AND MECHANICAL CHARACTERISTICS
Symbol RJC RJA WT Characteristic / Test Conditions Junction-to-Case Thermal Resistance Junction-to-Ambient Thermal Resistance MIN TYP MAX UNIT C/W oz gm
0.90 40 0.22
Package Weight
6.1 10
Maximum Mounting Torque (Screw Type = 6-32 or 3mm Machine)
lb*in N*m
Torque
1.1
1.0 0.5 D=0.5
, THERMAL IMPEDANCE (C/W)
0.2 0.1 0.05 0.05 0.02 0.01 0.01 0.005
t2 DUTY FACTOR D = t1 / t2
0.1
NOTE:
JC
PDM
SINGLE PULSE
t1
Z
053-6016 Rev -
PEAK TJ =PDM x Z JC + TC
0.001 10-5
10-3 10-2 10-1 1.0 RECTANGULAR PULSE DURATION (SECONDS) FIGURE 1, MAXIMUM EFFECTIVE TRANSIENT THERMAL IMPEDANCE, JUNCTION-TO-CASE vs PULSE DURATION
10-4
10
APT30D60BCT
100 Qrr, REVERSE RECOVERY CHARGE (nano-COULOMBS) 1600
TJ = 100C VR = 350V
IF, FORWARD CURRENT (AMPERES)
80 TJ = 150C TJ = 100C
1200 60A 800 30A 400 15A
60
40
TJ = 25C TJ = -55C
20
0 0.5 1.0 1.5 2.0 2.5 VF, ANODE-TO-CATHODE VOLTAGE (VOLTS) Figure 2, Forward Voltage Drop vs Forward Current 40 IRRM, REVERSE RECOVERY CURRENT (AMPERES)
TJ = 100C VR = 350V
0
0 10 50 100 500 1000 diF /dt, CURRENT SLEW RATE (AMPERES/SEC) Figure 3, Reverse Recovery Charge vs Current Slew Rate 2.0
Kf, DYNAMIC PARAMETERS (NORMALIZED)
60A 30
1.6 Qrr trr 1.2 trr 0.8 IRRM Qrr
20 30A 15A
10
0.4
0 0 200 400 600 800 1000 diF /dt, CURRENT SLEW RATE (AMPERES/SEC) Figure 4, Reverse Recovery Current vs Current Slew Rate 200
TJ = 100C VR = 350V
-25 0 25 50 75 100 125 150 TJ, JUNCTION TEMPERATURE (C) Figure 5, Dynamic Parameters vs Junction Temperature 1200 tfr, FORWARD RECOVERY TIME (nano-SECONDS)
TJ = 100C VR = 350V IF = 30A
0.0
-50
15.0 Vfr, FORWARD RECOVERY VOLTAGE (VOLTS)
trr, REVERSE RECOVERY TIME (nano-SECONDS)
160 60A 120 30A 15A 80
1000 800 600 400 200
12.5 10.0 7.5 5.0 2.5
Vfr
40
tfr
0 0 200 400 600 800 1000 diF /dt, CURRENT SLEW RATE (AMPERES/SEC) Figure 6, Reverse Recovery Time vs Current Slew Rate 800 500 CJ, JUNCTION CAPACITANCE (pico-FARADS)
0 0 0 200 400 600 800 1000 diF /dt, CURRENT SLEW RATE (AMPERES/SEC) Figure 7, Forward Recovery Voltage/Time vs Current Slew Rate
100
50 30 0.01 053-6016 Rev -
0.05
0.1
0.5 1 5 VR, REVERSE VOLTAGE (VOLTS)
10
50
100
200
Figure 8, Junction Capacitance vs Reverse Voltage
Vr
APT30D60BCT
D.U.T. 30H
trr/Qrr Waveform
+15v diF /dt Adjust 0v -15v
PEARSON 411 CURRENT TRANSFORMER
Figure 9, Diode Reverse Recovery Test Circuit and Waveforms
1 2 3 4
IF - Forward Conduction Current diF /dt - Current Slew Rate, Rate of Forward Current Change Through Zero Crossing. Zero IRRM - Peak Reverse Recovery Current. trr - Reverse Recovery Time Measured from Point of IF 3 Current Falling Through Zero to a Tangent Line { 6 diM/dt} Extrapolated Through Zero Defined by 0.75 and 0.50 IRRM. 5 0.5 IRRM 0.75 IRRM 2 Qrr = 1/2 (trr . IRRM) 1 4 6
5 6
Qrr - Area Under the Curve Defined by IRRM and trr. diM/dt - Maximum Rate of Current Change During the Trailing Portion of trr.
Figure 10, Diode Reverse Recovery Waveform and Definitions
TO-247AD Package Outline
4.69 (.185) 5.31 (.209) 1.49 (.059) 2.49 (.098) 6.15 (.242) BSC 20.80 (.819) 21.46 (.845)
15.49 (.610) 16.26 (.640) 5.38 (.212) 6.20 (.244)
Common Cathode
3.55 (.140) 3.81 (.150)
4.50 (.177) Max. 0.40 (.016) 0.79 (.031)
2.87 (.113) 3.12 (.123) 1.65 (.065) 2.13 (.084)
19.81 (.780) 20.32 (.800) 1.01 (.040) 1.40 (.055)
Anode 1 Common Cathode Anode 2
2.21 (.087) 2.59 (.102)
053-6016 Rev -
5.45 (.215) BSC 2-Plcs.
Dimensions in Millimeters and (Inches)
APT Reserves the right to change, without notice, the specifications and information contained herein.


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