®
BYT 30P-1000
FAST RECOVERY RECTIFIER DIODE
VERY HIGH REVERSE VOLTAGE CAPABILITY
VERY LOW REVERSE RECOVERY TIME
VERY LOW SWITCHING LOSSES
LOW NOISE TURN-OFF SWITCHING
Cathode connected to case
SUITABLE APPLICATIONS
FREE WHEELING DIODE IN CONVERTERS
AND MOTOR CONTROL CIRCUITS
RECTIFIER IN S.M.P.S.
ABSOLUTE MAXIMUM RATINGS
Symbol
V
RRM
V
RSM
I
FRM
I
F (RMS)
I
F (AV)
I
FSM
P
T
stg
T
j
Parameter
Repetitive Peak Reverse Voltage
Non Repetitive Peak Reverse Voltage
Repetive Peak Forward Current
RMS Forward Current
Average Forward Current
Surge non Repetitive Forward Current
Power Dissipation
Storage and Junction Temperature Range
T
c
= 85°C
δ
= 0.5
t
p
= 10ms
Sinusoidal
T
c
= 85
°
C
t
p
≤
10
µ
s
SOD93
(Plastic)
Value
1000
1000
375
70
30
200
60
- 40 to +150
- 40 to +150
Unit
V
V
A
A
A
A
W
°
C
THERMAL RESISTANCE
Symbol
R
th (j - c)
Junction-case
Parameter
Value
1
Unit
°
C/W
October 1999 - Ed: 2A
1/5
BYT 30P-1000
ELECTRICAL CHARACTERISTICS
STATIC CHARACTERISTICS
Synbol
I
R
T
j
= 25°C
T
j
= 100
°
C
V
F
T
j
= 25
°
C
T
j
= 100
°
C
I
F
= 30A
Test Conditions
V
R
= V
RRM
Min.
Typ.
Max.
100
5
1.9
1.8
Unit
µA
mA
V
RECOVERY CHARACTERISTICS
Symbol
t
rr
T
j
= 25
°
C
Test Conditions
I
F
= 1A
I
F
= 0.5A
di
F
/dt = - 15A/
µ
s
I
R
= 1A
V
R
= 30V
I
rr
= 0.25A
Min.
Typ.
Max.
165
70
Unit
ns
TURN-OFF SWITCHING CHARACTERISTICS (Without Series Inductance)
Symbol
t
IRM
di
F
/dt = - 120A/
µ
s
di
F
/dt = - 240A/
µ
s
I
RM
di
F
/dt = -120A/µs
di
F
/dt = - 240A/
µ
s
22
Test Conditions
V
CC
= 200 V I
F
= 30A
L
p
≤
0.05
µ
H T
j
= 100
°
C
See figure 11
Min.
Typ.
Max.
200
120
19.5
A
Unit
ns
TURN-OFF OVERVOLTAGE COEFFICIENT (With Series Inductance
)
Symbol
C=
V
RP
V
CC
T
j
= 100
°
C
di
F
/dt = - 30A/µs
Test Conditions
V
CC
= 200V
L
p
= 5µH
I
F
= I
F (AV)
See figure 12
Min.
Typ.
Max.
4.5
Unit
To evaluate the conduction losses use the following equation:
V
F
= 1.47 + 0.010 I
F
P = 1.47 x I
F(AV)
+ 0.010 I
F2(RMS)
Figure 1. Low frequency power losses versus
average current
Figure 2. Peak current versus form factor
2/5
BYT 30P-1000
Figure 3. Non repetitive peak surge current
versus overload duration
Figure 4. Thermal impedance versus pulse
width
Figure 5. Voltage drop versus forward current
Figure 6. Recovery charge versus di
F
/d
t-
Figure 7. Recovery time versus di
F
/d
t-
Figure 8. Peak reverse current versus di
F
/d
t-
3/5
BYT 30P-1000
Figure 9. Peak forward voltage versus di
F
/d
t-
Figure 10. Dynamic parameters versus
junction temperature.
Figure 11. Turn-off switching characteristics (without series inductance).
Figure 12. Turn-off switching characteristics (with series inductance)
4/5
PACKAGE MECHANICAL DATA
SOD93 Plastic
DIMENSIONS
REF.
Millimeters
Inches
Min. Typ. Max. Min. Typ. Max.
A
4.70
4.90 0.185
0.193
C
1.17
1.37 0.046
0.054
D
2.50
0.098
D1
1.27
0.050
E
0.50
0.78 0.020
0.031
F
1.10
1.30 0.043
0.051
F3
1.75
0.069
G 10.80
11.10 0.425
0.437
H 14.70
15.20 0.578
0.598
L
12.20
0.480
L2
16.20
0.638
L3
18.0
0.709
L5
3.95
4.15 0.156
0.163
L6
31.00
1.220
O
4.00
4.10 0.157
0.161
Cooling method: by conduction (method C)
Marking: type number
Weight: 4.3g
Recommended torque value: 80cm. N
Maximum torque value: 100cm. N
Information furnished is believed to be accurate and reliable. However, STMicroelectronics assumes no responsibility for the consequences of
use of such information nor for any infringement of patents or other rights of third parties which may result from its use. No license is granted
by implication or otherwise under any patent or patent rights of STMicroelectronics. Specifications mentioned in this publication are subject to
change without notice. This publication supersedes and replaces all information previously supplied.
STMicroelectronics products are not authorized for use as critical components in life support devices or systems without express written approval
of STMicroelectronics.
The ST logo is a registered trademark of STMicroelectronics
©
1999 STMicroelectronics - Printed in Italy - All rights reserved.
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