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 (R)
BYT 01-400
FAST RECOVERY RECTIFIER DIODES
FAST RECOVERY RECTIFIER VERY LOW REVERSE RECOVERY TIME VERY LOW SWITCHING LOSSES LOW NOISE TURN-OFF SWITCHING
SUITABLE APPLICATION FREE WHEELING DIODE IN CONVERTERS AND MOTORS CIRCUITS RECTIFIER IN S.M.P.S. ABSOLUTE RATINGS (limiting values)
Symbol IFRM IF (AV) IFSM P Tstg Tj Parameter Repetive Peak Forward Current Average Forward Current* Surge non Repetitive Forward Current Power Dissipation* Storage and Junction Temperature Range tp 10s Ta = 70C = 0.5 tp = 10ms Sinusoidal Ta = 70C
F 126 (Plastic)
Value 30 1 30 1.33 - 40 to +150 - 40 to + 150
Unit A A A W C
Symbol VRRM VRSM
Parameter Repetitive Peak Reverse Voltage Non Repetitive Peak Reverse Voltage
Value 400 440
Unit V V
THERMAL RESISTANCE
Symbol Rth (j - a) Junction-ambient* Parameter Value 60 Unit C/W
* On infinite heatsink with 10mm lead length.
October 1999 Ed : 1A
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BYT 01-400
ELECTRICAL CHARACTERISTICS STATIC CHARACTERISTICS
Symbol IR Tj = 25C Tj = 100C VF Tj = 25C Tj = 100C IF = 1A Test Conditions VR = VRRM Min. Typ. Max. 20 0.5 1.5 1.4 Unit A mA V
RECOVERY CHARACTERISTICS
Symbol trr Tj = 25C Tj = 25C Test Conditions IF = 1A IF = 0.5A diF/dt = - 15A/s IR = 1A VR = 30V Irr = 0.25A Min. Typ. Max. 55 25 Unit ns
TURN-OFF SWITCHING CHARACTERISTICS (Without Series inductance)
Symbol tIRM IRM diF/dt = - 50A/s diF/dt = - 50A/s Test Conditions Tj = 100C Lp 0.05 A VCC = 200 V See figure 12 IF = 1A Min. Typ. 35 1.5 Max. 50 2 Unit ns A
To evaluate the conduction losses use the following equations: VF = 1.05 + 0.145 IF P = 1.05 x IF(AV) + 0.145 IF2(RMS)
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BYT 01-400
Fi g ur e 1. Ma xi mu m av erag e po wer dissipation versus average forward current. Figure 2. Average forward current versus ambient temperature.
Figure 3. Thermal resistance versus lead length.
Mounting n1 INFINITE HEATSINK
Mounting n2 PRINTED CIRCUIT
Figure 5. Peak forward current versus peak forward voltage drop (maximum values).
Figure 4. Transient thermal impedance junction-ambient for mounting n2 versus pulse duration (L = 10 mm).
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BYT 01-400
Figure 7. Recovery time versus diF/dt. Figure 8. Peak forward voltage versus diF/dt.
Figure 9. Peak reverse current versus diF/dt.
Figure 10. Recovered charge versus diF/dt (typical values).
Figure 11. Dynamic parameters versus junction temperature.
Figure 12. Non repetitive surge peak current versus number of cycles.
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BYT 01-400
PACKAGE MECHANICAL DATA F 126 (Plastic)
C
A
C
D
REF. Min. A B C D 6.05 2.95 26 0.76 0.81 Typ. 6.20 3.00 DIMENSIONS Millimeters Max. Min. Inches Typ. Max.
D
B
6.35 0.238 0.244 0.250 3.05 0.116 0.118 0.120 31 1.024 1.220 0.86 0.030 0.032 0.034
Marking: type number Cooling method: by convection (method A) Weight: 0.393g
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 (c) 1999 STMicroelectronics - Printed in Italy - All rights reserved. STMicroelectronics GROUP OF COMPANIES Australia - Brazil - China - Finland - France - Germany - Hong Kong - India - Italy - Japan - Malaysia Malta - Morocco - Singapore - Spain - Sweden - Switzerland - United Kingdom - U.S.A. http://www.st.com
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