APT2X100D60J [ADPOW]

ULTRAFAST SOFT RECOVERY DUAL RECTIFIER DIODES; 超快软恢复双整流二极管
APT2X100D60J
型号: APT2X100D60J
厂家: ADVANCED POWER TECHNOLOGY    ADVANCED POWER TECHNOLOGY
描述:

ULTRAFAST SOFT RECOVERY DUAL RECTIFIER DIODES
超快软恢复双整流二极管

整流二极管 测试 局域网 超快软恢复二极管 快速软恢复二极管
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SOT-227  
Anti-Parallel  
APT2X100D60J  
Parallel  
APT2X101D60J  
APT2X100D60J 600V 100A  
APT2X101D60J 600V 100A  
DUAL DIE ISOTOP® PACKAGE  
ULTRAFAST SOFT RECOVERY DUAL RECTIFIER DIODES  
PRODUCT APPLICATIONS  
PRODUCT FEATURES  
PRODUCT BENEFITS  
Anti-Parallel Diode  
-Switchmode Power Supply  
-Inverters  
Free Wheeling Diode  
-Motor Controllers  
-Converters  
Snubber Diode  
Ultrafast Recovery Times  
Low Losses  
Soft Recovery Characteristics  
Popular SOT-227 Package  
Low Forward Voltage  
Low Noise Switching  
Cooler Operation  
Higher Reliability Systems  
Uninterruptible Power Supply (UPS)  
Induction Heating  
High Speed Rectifiers  
High Blocking Voltage  
Low Leakage Current  
Increased System Power  
Density  
MAXIMUM RATINGS  
All Ratings: T = 25°C unless otherwise specified.  
C
Characteristic / Test Conditions  
APT2X100/2X101D60J  
Symbol  
VR  
UNIT  
Maximum D.C. Reverse Voltage  
VRRM  
VRWM  
IF(AV)  
IF(RMS)  
IFSM  
Maximum Peak Repetitive Reverse Voltage  
Maximum Working Peak Reverse Voltage  
Maximum Average Forward Current (TC = 60°C, Duty Cycle = 0.5)  
RMS Forward Current  
600  
Volts  
100  
170  
Amps  
Non-Repetitive Forward Surge Current (TJ = 45°C, 8.3ms)  
Operating and StorageTemperature Range  
Lead Temperature: 0.063" from Case for 10 Sec.  
1000  
TJ,TSTG  
TL  
-55 to 150  
300  
°C  
STATIC ELECTRICAL CHARACTERISTICS  
Symbol Characteristic / Test Conditions  
MIN  
TYP  
MAX  
UNIT  
IF = 100A  
2.0  
VF  
Maximum Forward Voltage  
IF = 200A  
1.7  
Volts  
IF = 100A, TJ = 150°C  
VR = VR Rated  
1.7  
250  
500  
Maximum Reverse Leakage Current  
Junction Capacitance, VR = 200V  
IRM  
µA  
VR = VR Rated, TJ = 125°C  
CT  
LS  
165  
20  
pF  
nH  
Series Inductance (Lead to Lead 5mm from Base)  
APT Website - http://www.advancedpower.com  
USA  
405 S.W. Columbia Street  
EUROPE  
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  
Avenue J.F. Kennedy Bât B4 Parc Cadéra Nord  
APT2X100/2X101D60J  
DYNAMIC CHARACTERISTICS  
Symbol Characteristic  
MIN  
TYP  
60  
MAX  
UNIT  
trr1  
trr2  
Reverse Recovery Time, IF = 1.0A, diF/dt = -15A/µs, VR = 30V, TJ = 25°C  
75  
Reverse Recovery Time  
TJ = 25°C  
TJ = 100°C  
TJ = 25°C  
TJ = 100°C  
TJ = 25°C  
TJ = 100°C  
TJ = 25°C  
TJ = 100°C  
TJ = 25°C  
TJ = 100°C  
TJ = 25°C  
TJ = 100°C  
60  
trr3  
IF = 100A, diF/dt = -800A/µs, VR = 350V  
Forward Recovery Time  
92  
ns  
tfr1  
185  
185  
27  
tfr2  
IF = 100A, diF/dt = 800A/µs, VR = 350V  
Reverse Recovery Current  
IRRM1  
IRRM2  
Qrr1  
Qrr2  
Vfr1  
Vfr2  
38  
54  
Amps  
nC  
42  
IF = 100A, diF/dt = -800A/µs, VR = 350V  
Recovery Charge  
810  
1930  
10.2  
10.2  
600  
400  
IF = 100A, diF/dt = -800A/µs, VR = 350V  
Forward Recovery Voltage  
Volts  
A/µs  
IF = 100A, diF/dt = 800A/µs, VR = 350V  
Rate of Fall of Recovery Current  
IF = 100A, diF/dt = -800A/µs, VR = 350V (See Figure 10)  
diM/dt  
THERMAL AND MECHANICAL CHARACTERISTICS  
Symbol Characteristic / Test Conditions  
MIN  
TYP  
MAX  
0.42  
20  
UNIT  
RθJC  
RθJA  
Junction-to-Case Thermal Resistance  
Junction-to-Ambient Thermal Resistance  
°C/W  
VIsolation  
RMS Voltage (50-60 Hz Sinusoidal Waveform from Terminals to Mounting Base for 1 Min.) 2500  
Volts  
oz  
1.03  
29.2  
WT  
Package Weight  
gm  
13.6  
1.5  
lb•in  
N•m  
Torque  
Maximum Torque (Mounting = 8-32 or 4mm Machine and Terminals = 4mm Machine)  
0.5  
D=0.5  
0.1  
0.2  
0.1  
0.05  
0.05  
0.02  
0.01  
0.01  
Note:  
0.005  
SINGLE PULSE  
t
1
t
2
t
1
/
t
Duty Factor D =  
2
Peak T = P  
x Z  
+ T  
J
DM  
θJC C  
0.001  
10-5  
10-4  
10-3  
RECTANGULAR PULSE DURATION (SECONDS)  
FIGURE 1, MAXIMUM EFFECTIVE TRANSIENT THERMAL IMPEDANCE, JUNCTION-TO-CASE vs PULSE DURATION  
10-2  
10-1  
1.0  
10  
APT2X100/2X101D60J  
300  
240  
180  
120  
60  
4000  
3000  
2000  
1000  
0
T
= 100°C  
J
V
= 350V  
R
200A  
100A  
T
= 150°C  
= 100°C  
J
T
J
T
= 25°C  
J
T
= -55°C  
J
50A  
0
0
F
0.5  
1.0  
1.5  
2.0  
2.5  
10  
F
50  
100  
500 1000  
V , ANODE-TO-CATHODE VOLTAGE (VOLTS)  
di /dt, CURRENT SLEW RATE (AMPERES/µSEC)  
Figure 2, Forward Voltage Drop vs Forward Current  
Figure 3, Reverse Recovery Charge vs Current Slew Rate  
1.6  
60  
T
= 100°C  
J
V
= 350V  
R
200A  
50  
40  
30  
20  
10  
0
Q
rr  
1.2  
t
100A  
rr  
t
50A  
rr  
I
0.8  
0.4  
0.0  
RRM  
Q
rr  
0
F
200  
400  
600  
800  
1000  
-50 -25  
0
25 50 75 100 125 150  
T , JUNCTION TEMPERATURE (°C)  
di /dt, CURRENT SLEW RATE (AMPERES/µSEC)  
J
Figure 4, Reverse Recovery Current vs Current Slew Rate  
Figure 5, Dynamic Parameters vs Junction Temperature  
400  
3000  
2500  
2000  
1500  
1000  
500  
0
15  
T
= 100°C  
T
= 100°C  
J
J
V
I
= 350V  
V
= 350V  
R
R
= 100A  
F
12.5  
10  
7.5  
5
300  
200  
100  
0
200A  
V
fr  
100A  
50A  
2.5  
t
fr  
0
0
F
200  
400  
600  
800  
1000  
0
F
200  
400  
600  
800  
1000  
di /dt, CURRENT SLEW RATE (AMPERES/µSEC)  
di /dt, CURRENT SLEW RATE (AMPERES/µSEC)  
Figure 6, Reverse Recovery Time vs Current Slew Rate  
Figure 7, Forward Recovery Voltage/Time vs Current Slew Rate  
3000  
1000  
500  
100  
0.01  
0.05  
0.1  
0.5  
R
1
5
10  
50  
100  
200  
V , REVERSE VOLTAGE (VOLTS)  
Figure 8, Junction Capacitance vs Reverse Voltage  
APT2X100/2X101D60J  
V
r
D.U.T.  
t
Q
/
30µH  
rr rr  
Waveform  
PEARSON 411  
CURRENT  
TRANSFORMER  
+15v  
0v  
diF/dt Adjust  
-15v  
Figure 9, Diode Reverse Recovery Test Circuit and Waveforms  
1
IF - Forward Conduction Current  
1
4
5
6
2
diF/dt - Current Slew Rate, Rate of Forward  
Current Change Through Zero Crossing.  
Zero  
3
4
IRRM - Peak Reverse Recovery Current.  
t
- Reverse Recovery Time Measured from Point of IF  
3
rr  
0.5 I  
RRM  
6
Current Falling Through Zero to a Tangent Line  
{
diM/dt  
}
0.75 I  
RRM  
Extrapolated Through Zero Defined by 0.75 and 0.50 IRRM  
.
2
5
6
Q
- Area Under the Curve Defined by IRRM and t .  
rr  
rr  
1
Q
t . IRRM  
rr  
= /  
(
)
rr  
2
diM/dt - Maximum Rate of Current Change During the Trailing Portion of t  
rr.  
Figure 10, Diode Reverse Recovery Waveform and Definitions  
APT Reserves the right to change, without notice, the specifications and information contained herein.  
SOT-227 Package Outline  
11.8 (.463)  
12.2 (.480)  
31.5 (1.240)  
31.7 (1.248)  
8.9 (.350)  
9.6 (.378)  
W=4.1 (.161)  
W=4.3 (.169)  
H=4.8 (.187)  
H=4.9 (.193)  
(4 places)  
7.8 (.307)  
8.2 (.322)  
Hex Nut M4 H100  
(4 places)  
25.2 (0.992)  
25.4 (1.000)  
r = 4.0 (.157)  
(2 places)  
4.0 (.157)  
4.2 (.165)  
(2 places)  
0.75 (.030) 12.6 (.496)  
0.85 (.033) 12.8 (.504)  
3.3 (.129)  
3.6 (.143)  
1.95 (.077)  
2.14 (.084)  
14.9 (.587)  
15.1 (.594)  
Anti-parallel  
APT2X100D60J  
Parallel  
APT2X101D60J  
30.1 (1.185)  
30.3 (1.193)  
Anode 2  
Cathode 1 Cathode 2  
Anode 2  
38.0 (1.496)  
38.2 (1.504)  
Dimensions in Millimeters and (Inches)  
Cathode 2  
Anode 1 Cathode 1  
Anode 1  
ISOTOP® is a Registered Trademark of SGS Thomson.  

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