8ETL06-1PBF [INFINEON]

Ultra-low VF Hyperfast Rectifier for Discontinuous Mode PFC; 超低VF超高速整流器不连续模式PFC
8ETL06-1PBF
型号: 8ETL06-1PBF
厂家: Infineon    Infineon
描述:

Ultra-low VF Hyperfast Rectifier for Discontinuous Mode PFC
超低VF超高速整流器不连续模式PFC

整流二极管 功率因数校正 软恢复二极管 超快速软恢复二极管
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中文:  中文翻译
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PRELIMINARY  
Bulletin PD-21075 rev. A 11/06  
8ETL06SPbF  
8ETL06-1PbF  
Ultra-low VF Hyperfast Rectifier for Discontinuous Mode PFC  
Features  
VF = 0.96V typ.  
IF(AV) = 8Amp  
VR = 600V  
Benchmark Ultra-low Forward Voltage Drop  
Hyperfast Recovery Time  
Low Leakage Current  
175°C Operating Junction Temperature  
Lead-Free ("PbF" suffix)  
Description  
State of the art, ultra-low VF, soft-switching Hyperfast Rectifiers optimized for Discontinuous (Critical) Mode (DCM)  
Power Factor Correction (PFC).  
The minimised conduction loss, optimized stored charge and low recovery current minimize the switching losses and  
reduce over dissipation in the switching element and snubbers.  
The device is also intended for use as a free wheeling diode in power supplies and other power switching  
applications.  
Applications  
AC-DC SMPS 70W-400W  
e.g. Laptop & Printer AC Adaptors, Desktop PC, TV & Monitor, Games units and DVD AC-DC power supplies.  
Absolute Maximum Ratings  
Parameters  
Max  
600  
8
Units  
VRRM  
IF(AV)  
IFSM  
IFM  
Peak Repetitive Reverse Voltage  
Average Rectified Forward Current @ TC = 160°C  
Non Repetitive Peak Surge Current @ TJ = 25°C  
Peak Repetitive Forward Current  
V
A
175  
16  
TJ, TSTG Operating Junction and Storage Temperatures  
- 65 to 175  
°C  
Case Styles  
8ETL06-1PbF  
8ETL06SPbF  
Base  
Cathode  
2
2
1
3
1
3
N/C  
Anode  
Anode  
N/C  
D2PAK  
TO-262  
www.irf.com  
1
8ETL06SPbF, 8ETL06-1PbF  
Bulletin PD-21075 rev. A 11/06  
Electrical Characteristics @ T = 25°C (unless otherwise specified)  
J
Units  
Parameters  
Min Typ Max  
Test Conditions  
VBR, Vr  
Breakdown Voltage,  
Blocking Voltage  
600  
-
-
V
IR = 100μA  
VF  
Forward Voltage  
-
-
-
-
-
-
0.96 1.05  
0.81 0.86  
V
IF = 8A, TJ = 25°C  
V
IF = 8A, TJ = 150°C  
IR  
Reverse Leakage Current  
0.05  
5
μA  
μA  
pF  
nH  
VR = VR Rated  
20 100  
TJ = 150°C, VR = VR Rated  
VR = 600V  
CT  
LS  
Junction Capacitance  
Series Inductance  
17  
-
-
8.0  
Measured lead to lead 5mm from package body  
Dynamic Recovery Characteristics @ T = 25°C (unless otherwise specified)  
C
Parameters  
Min Typ Max Units Test Conditions  
trr  
Reverse Recovery Time  
-
-
-
-
-
60 100  
150 250  
ns  
IF = 1A, diF/dt = 100A/μs, VR = 30V  
IF = 8A, diF/dt = 100A/μs, VR = 30V  
TJ = 25°C  
170  
250  
15  
-
-
-
TJ = 125°C  
IF = 8A  
IRRM  
Peak Recovery Current  
A
TJ = 25°C  
diF /dt = 200A/μs  
VR = 390V  
-
-
-
20  
1.3  
2.6  
-
-
-
TJ = 125°C  
TJ = 25°C  
TJ = 125°C  
Qrr  
Reverse Recovery Charge  
μC  
Thermal - Mechanical Characteristics  
Parameters  
Min  
Typ  
Max  
175  
175  
2
Units  
TJ  
Max. Junction Temperature Range  
Max. Storage Temperature Range  
Thermal Resistance, Junction to Case  
- 65  
-
-
°C  
TStg  
- 65  
RthJC  
RthJA  
RthCS  
Per Leg  
-
1.4  
-
°C/W  
Thermal Resistance, Junction to Ambient Per Leg  
Thermal Resistance, Case to Heatsink  
Weight  
-
-
70  
-
0.5  
2.0  
0.07  
-
-
-
g
-
-
(oz)  
Mounting Torque  
Marking Device  
6.0  
5.0  
12  
Kg-cm  
-
10  
lbf.in  
8ETL06S  
8ETL06-1  
Case style D2Pak  
Case style TO-262  
Typical Socket Mount  
Mounting Surface, Flat, Smooth and Greased  
www.irf.com  
2
8ETL06SPbF, 8ETL06-1PbF  
Bulletin PD-21075 rev. A 11/06  
100  
10  
1
100  
10  
Tj = 175˚C  
150˚C  
125˚C  
100˚C  
1
75˚C  
50˚C  
0.1  
25˚C  
0.01  
0.001  
T
T
T
= 175˚C  
= 150˚C  
J
J
J
100  
200  
300  
400  
500  
600  
Reverse Voltage-VR(V)  
Fig.2-Typical Values Of Reverse Current  
Vs. Reverse Voltage  
=
25˚C  
100  
T
= 25˚C  
J
0.1  
0.4  
10  
0.8  
1.2  
1.6  
2
0
100 200 300 400 500 600  
Reverse Voltage-VR (V)  
Forward Voltage Drop-VFM (V)  
Fig.3-Typical Junction Capacitance  
Vs. Reverse Voltage  
Fig.1-Typical Forward Voltage Drop Characteristics  
10  
D = 0.50  
D = 0.20  
1
P
DM  
D = 0.10  
D = 0.05  
D = 0.02  
t
1
D = 0.01  
t
2
0.1  
Notes:  
Single Pulse  
1. Duty factor D = t1/ t2  
(Thermal Resistance)  
2. Peak Tj = Pdm x ZthJC + Tc  
0.01  
0.00001  
0.0001  
t1,Rectangular Pulse Duration (Seconds)  
Fig.4-Max. Thermal Impedance ZthJC Characteristics  
0.001  
0.01  
0.1  
1
www.irf.com  
3
8ETL06SPbF, 8ETL06-1PbF  
Bulletin PD-21075 rev. A 11/06  
12  
10  
8
180  
175  
170  
DC  
D = 0.01  
D = 0.02  
D = 0.05  
D = 0.1  
D = 0.2  
D = 0.5  
165  
6
DC  
RMS Limit  
160  
4
Square wave (D = 0.50)  
Rated Vr applied  
155  
2
see note (3)  
150  
0
0
2
4
6
8
10 12 14  
0
2
4
6
8
10  
12  
Average Forward Current-IF(AV) (A)  
Average Forward Current - IF(AV)(A)  
Fig.5-Max. Allowable CaseTemperature  
Vs. Average Forward Current  
Fig.6-Forward Power Loss Characteristics  
5000  
450  
IF = 16 A  
IF = 8 A  
IF = 16 A  
IF = 8 A  
4500  
4000  
3500  
3000  
2500  
2000  
1500  
1000  
500  
400  
350  
300  
250  
200  
150  
100  
50  
V R= 390V  
T J = 125˚C  
V R= 390V  
T J = 125˚C  
T J  
= 25˚C  
T J  
= 25˚C  
0
100  
100  
1000  
1000  
di F /dt (A/μs)  
diF/dt (A/μs)  
Fig.8-TypicalStoredCharge vs.diF /dt  
Fig. 7-TypicalReverseRecovery vs.di F /dt  
(3) Formulaused:TC =TJ -(Pd+PdREV)xRthJC;Pd=ForwardPowerLoss= IF(AV) xVFM @(IF(AV) /D)(seeFig.8);  
PdREV =InversePowerLoss=VR1 xIR (1-D);IR @VR1=ratedVR  
www.irf.com  
4
8ETL06SPbF, 8ETL06-1PbF  
Bulletin PD-21075 rev. A 11/06  
Reverse Recovery Circuit  
V
= 200V  
R
0.01  
Ω
L = 70µH  
D.U.T.  
diF /dt  
dif/dt  
ADJUST  
D
IRFP250  
G
S
Fig. 9- Reverse Recovery Parameter Test Circuit  
3
t
rr  
I
F
t
t
a
b
0
4
Q
rr  
2
I
0.5  
I
RRM  
RRM  
5
di(rec)M/dt  
0.75 I  
RRM  
1
di /dt  
d
F
1. di /dt - Rate of change of current through zero  
F
crossing  
4. Qrr - Area under curve defined by t  
rr  
and I  
RRM  
t
x I  
2
rr  
RRM  
Q
=
2. I  
- Peak reverse recovery current  
rr  
RRM  
3. t - Reverse recovery time measured from zero  
5. di  
/ dt - Peak rate of change of  
(rec) M  
current during t portion of t  
rr  
rr  
crossing point of negative going I to point where  
F
b
a line passing through 0.75 I  
extrapolated to zero current  
and 0.50 I  
RRM  
RRM  
Fig. 10 - Reverse Recovery Waveform and Definitions  
www.irf.com  
5
8ETL06SPbF, 8ETL06-1PbF  
Bulletin PD-21075 rev. A 11/06  
Outline Table  
ConformtoJEDECoutlineD2Pak(SMD-220)  
Dimensions in millimeters and (inches)  
Modified JEDEC outline TO-262  
Dimensions in millimeters and (inches)  
www.irf.com  
6
8ETL06SPbF, 8ETL06-1PbF  
Bulletin PD-21075 rev. A 11/06  
Tape & Reel Information  
Dimensionsinmillimetersand(inches)  
Part Marking Information  
D2PAK  
PART NUMBER  
8ETL06S  
INTERNATIONAL  
RECTIFIER  
LOGO  
THIS IS A 8ETL06S  
LOT CODE 8024  
ASSEMBLED ON WW 02, 2000  
DATE CODE  
YEAR 0 = 2000  
WEEK 02  
ASSEMBLY  
LOT CODE  
P = LEAD-FREE  
TO-262  
PART NUMBER  
8ETL06-1  
INTERNATIONAL  
RECTIFIER  
LOGO  
THIS IS A 8ETL06-1  
LOT CODE 8024  
ASSEMBLED ON WW 02, 2000  
DATE CODE  
YEAR 0 = 2000  
WEEK 02  
ASSEMBLY  
LOT CODE  
P = LEAD-FREE  
www.irf.com  
7
8ETL06SPbF, 8ETL06-1PbF  
Bulletin PD-21075 rev. A 11/06  
Ordering Information Table  
Device Code  
8
E
T
L
06  
S
TRL PbF  
4
1
2
3
5
6
7
8
1
2
3
4
5
-
-
-
-
-
Current Rating (8A)  
E
T
L
= Single Diode  
= TO-220, D2Pak  
= Ultra-low VF HyperFast Recovery  
Voltage Rating (06 = 600V)  
6
-
S = D2Pak  
-1 =TO-262  
7
6
-
none = Tube (50 pieces)  
TRL = Tape & Reel (Left Oriented, for D2PAk package)  
TRR = Tape & Reel (Right Oriented, for D2PAk package)  
none = Standard Production  
8
-
PbF =Lead-Free  
Data and specifications subject to change without notice.  
This product has been designed and qualified for Industrial Level and Lead-Free.  
Qualification Standards can be found on IR's Web site.  
IR WORLD HEADQUARTERS: 233 Kansas St., El Segundo, California 90245, USA Tel: (310) 252-7105  
TAC Fax: (310) 252-7309  
Visit us at www.irf.com for sales contact information. 11/06  
www.irf.com  
8

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