Reverse Recovery Time I = 1A, di /dt = -100A/µs, V = 30V, T = 25°C
F
F
R
J
Reverse Recovery Time
Reverse Recovery Charge
Maximum Reverse Recovery Current
Reverse Recovery Time
Reverse Recovery Charge
Maximum Reverse Recovery Current
Reverse Recovery Time
Reverse Recovery Charge
Maximum Reverse Recovery Current
I
F
= 100A, di
F
/dt = -1000A/µs
V
R
= 133V, T
C
= 125°C
I
F
= 100A, di
F
/dt = -200A/µs
V
R
= 133V, T
C
= 125°C
I
F
= 100A, di
F
/dt = -200A/µs
V
R
= 133V, T
C
= 25°C
-
-
-
-
-
-
-
-
-
60
200
6
110
840
15
80
1910
44
-
-
nC
Amps
ns
nC
Amps
ns
nC
Amps
THERMAL AND MECHANICAL CHARACTERISTICS
Symbol
R
θJC
R
θJA
W
T
Characteristic / Test Conditions
Junction-to-Case Thermal Resistance
Junction-to-Ambient Thermal Resistance
MIN
TYP
MAX
UNIT
°C/W
.33
20
1.03
oz
g
Package Weight
29.2
10
Maximum Terminal & Mounting Torque
lb•in
N•m
Torque
1.1
APT Reserves the right to change, without notice, the specifications and information contained herein.
0.35
Z
JC
, THERMAL IMPEDANCE (°C/W)
θ
0.30
0.25
0.20
0.15
0.9
0.7
0.5
Note:
0.3
PDM
t1
t2
0.10
0.1
0.05
0
0.05
10
-5
10
-4
SINGLE PULSE
t
Duty Factor D = 1/t2
Peak TJ = PDM x Z
θJC
+ TC
10
-3
10
-2
10
-1
1.0
10
RECTANGULAR PULSE DURATION (seconds)
FIGURE 1a. MAXIMUM EFFECTIVE TRANSIENT THERMAL IMPEDANCE, JUNCTION-TO-CASE vs. PULSE DURATION
RC MODEL
Junction
temp (°C)
0.0294
°C/W
0.00051 J/°C
1-2004
Power
(watts)
0.0700
°C/W
0.0310 J/°C
053-2005 Rev C
0.230
°C/W
Case temperature (°C)
0.700 J/°C
FIGURE 1b, TRANSIENT THERMAL IMPEDANCE MODEL
TYPICAL PERFORMANCE CURVES
300
t
rr
, REVERSE RECOVERY TIME
(ns)
APT2X101_100D20J
120
130A
T
J
= 125°C
V
R
= 133V
250
I
F
, FORWARD CURRENT
(A)
100
80
60
100A
50A
200
150
100
T
J
= 125°C
50
T
J
= 150°C
0
0
T
J
= 25°C
T
J
= -55°C
40
20
0
0.5
1
1.5
2
V
F
, ANODE-TO-CATHODE VOLTAGE (V)
Figure 2. Forward Current
vs.
Forward Voltage
T
J
= 125°C
V
R
= 133V
0
200
400
600
800
1000 1200
-di
F
/dt, CURRENT RATE OF CHANGE(A/µs)
Figure 3. Reverse Recovery Time
vs.
Current Rate of Change
50
I
RRM
, REVERSE RECOVERY CURRENT
(A)
T
J
= 125°C
V
R
= 133V
2000
Q
rr
, REVERSE RECOVERY CHARGE
(nC)
130A
1500
130A
40
100A
30
100A
20
50A
10
1000
50A
500
0
200
400
600
800
1000 1200
-di
F
/dt, CURRENT RATE OF CHANGE (A/µs)
Figure 4. Reverse Recovery Charge
vs.
Current Rate of Change
1.2
t
rr
K
f
, DYNAMIC PARAMETERS
(Normalized to 800A/µs)
0
0
200
400
600
800 1000 1200
-di
F
/dt, CURRENT RATE OF CHANGE (A/µs)
Figure 5. Reverse Recovery Current
vs.
Current Rate of Change
200
Duty cycle = 0.5
T
J
= 150°C
0
Q
rr
180
160
1.0
I
RRM
0.8
0.6
0.4
Q
rr
0.2
0
t
rr
I
F(AV)
(A)
140
120
100
80
60
40
20
25
50
75
100
125
150
T
J
, JUNCTION TEMPERATURE (°C)
Figure 6. Dynamic Parameters
vs.
Junction Temperature
4000
C
J
, JUNCTION CAPACITANCE
(pF)
0
50
75
100
125
150
Case Temperature (°C)
Figure 7. Maximum Average Forward Current
vs.
CaseTemperature
0
25
3500
3000
2500
2000
1-2004
1500
1000
500
1
10
100 200
V
R
, REVERSE VOLTAGE (V)
Figure 8. Junction Capacitance
vs.
Reverse Voltage
0
.3
053-2005 Rev C
APT2X101_100D20J
Vr
+18V
0V
D.U.T.
30µH
trr/Qrr
Waveform
di
F
/dt Adjust
APT20M20LFLL
PEARSON 2878
CURRENT
TRANSFORMER
Figure 9. Diode Test Circuit
1
2
3
4
I
F
- Forward Conduction Current
di
F
/dt - Rate of Diode Current Change Through Zero Crossing.
I
RRM
- Maximum Reverse Recovery Current.
Zero
1
4
5
3
2
0.25 IRRM
trr -
Reverse
Recovery
Time, measured from zero crossing where diode
current goes from positive to negative, to the point at which the straight
line through I
RRM
and 0.25 I
RRM
passes through zero.
Qrr - Area Under the Curve Defined by I
RRM
and trr.
5
Figure 10, Diode Reverse Recovery Waveform and Definitions
SOT-227 Package Outline
31.5 (1.240)
31.7 (1.248)
7.8 (.307)
8.2 (.322)
W=4.1 (.161)
W=4.3 (.169)
H=4.8 (.187)
H=4.9 (.193)
(4 places)
11.8 (.463)
12.2 (.480)
8.9 (.350)
9.6 (.378)
Hex Nut M4 H100
(4 places)
r = 4.0 (.157)
(2 places)
4.0 (.157)
4.2 (.165)
(2 places)
25.2 (0.992)
0.75 (.030) 12.6 (.496) 25.4 (1.000)
0.85 (.033) 12.8 (.504)
3.3 (.129)
3.6 (.143)
1.95 (.077)
2.14 (.084)
1-2004
14.9 (.587)
15.1 (.594)
30.1 (1.185)
30.3 (1.193)
38.0 (1.496)
38.2 (1.504)
Anti-parallel
Parallel
APT2X100D20J
Anode 2
APT2X101D20J
Anode 1
Cathode 1 Cathode 1
053-2005 Rev C
Dimensions in Millimeters and (Inches)
®
Cathode 2
Anode 1
Cathode 2
Anode 2
ISOTOP is a Registered Trademark of SGS Thomson. APT’s products are covered by one or more of U.S.patents 4,895,810 5,045,903 5,089,434 5,182,234 5,019,522
5,262,336 6,503,786 5,256,583 4,748,103 5,283,202 5,231,474 5,434,095 5,528,058 and foreign patents. US and Foreign patents pending. All Rights Reserved.