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 PD-2.327 rev. A 12/97
SD51
SCHOTTKY RECTIFIER 60 Amp
Major Ratings and Characteristics Characteristics
I F(AV) Rectangular waveform VRRM I FSM @ 60Hz VF TJ @ 120Apk, TJ = 150C 35/45 800 0.75 - 65 to 150 V
Description/Features Units
A The SD51 Schottky rectifier has been optimized for very low forward voltage drop, with moderate leakage. The proprietary barrier technology allows for reliable operation up to 150 C junction temperature. Typical applications are in switching power supplies, converters, free-wheeling diodes, and reverse battery protection. 150 C TJ operation A V C Very low forward voltage drop High frequency operation Guard ring for enhanced ruggedness and long term reliability Hermetic packaging
SD51...
60
CASE STYLE AND DIMENSIONS
Conforms to JEDEC Outline DO-203AB (DO-5) Dimensions in millimeters and inches
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1
SD51
PD-2.327 rev. A 12/97
Voltage Ratings
Part number
VR Max. DC Reverse Voltage (V) 35/45 (1) VRWM Max. Working Peak Reverse Voltage (V)
(1) For SD51 VRWM and VRRM = 45V @ TJ = 25C , =35V @ TJ = 150C
SD51
Absolute Maximum Ratings
Parameters
IF(AV) Max. Average Forward Current * See Fig. 5 IFSM Max. Peak One Cycle Non-Repetitive Surge Current * See Fig. 7
SD51 Units
60 800 A A
Conditions
50% duty cycle @ TC = 90C, rectangular wave form 60Hz half cycle sine wave or 5ms rectangular pulse Following any rated load condition and with rated VRRM applied
Electrical Specifications
Parameters
VFM Max. Forward Voltage Drop * See Fig. 1 (2)
SD51
0.58 0.66 0.86 0.75
Units
V V V V mA mA pF nH V/ s @ 35A @ 60A @ 120A @ 120A TJ = 25 C TJ = 125 C
Conditions
TJ = 25 C TJ = 150 C VR = rated VR
IRM CT LS
Max. Reverse Leakage Current (2) * See Fig. 2 Max. Junction Capacitance Typical Series Inductance
50 200 2900 7.5 1000
VR = 5V DC, (test signal range 100Khz to 1Mhz) 25 C Measured from top of terminal to mounting plane
dv/dt Max. Voltage Rate of Change (Rated VR)
(2) Pulse Width < 300s, Duty Cycle < 2%
Thermal-Mechanical Specifications
Parameters
TJ Tstg Max. Junction Temperature Range Max. Storage Temperature Range
SD51
-65 to 150 -65 to 150 1.0 0.25 15 (0.53) Min. Max. 23 (20) 46 (40)
Units
C C C/W C/W g (oz.) DCoperation
Conditions
RthJC Max. Thermal Resistance Junction to Case RthCS Typical Thermal Resistance, Case to Heatsink wt T Approximate Weight Mounting Torque Case Style
* See Fig. 4
Mounting surface , smooth and greased
Kg-cm Non-lubricated threads (Ibf-in)
DO-203AB(DO-5) JEDEC
* For Additional Informations and Graphs, Please See the 50HQ Series
2
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SD51
PD-2.327 rev. A 12/97
10 00
10 00 T =1 0 C 5 J R ves C r e t - I (m ) e r e ur n A R 10 0 1 5C 2 1 0C 0 7 5C 1 5 0C . 1 2 5C
1 0
In ta ta e u F r ad C r e t - I ( ) s n n o s ow r ur n A F
10 0
.0 1 0
5
11223344 05050505 R v r eV lt g - V ( ) e es o a e R V
T =1 0 C 5 J T= 2 5C J
Fig. 2 - Typical Values of Reverse Current Vs. Reverse Voltage
100 00 J n tio C p c n e- C (p ) u c n a a ita c F T
1 0
T =2 5C J
1 .1 .2 .3 . . . . .8 . 4567 9 11 1 1 1 .1 .2 .3 .4 F rw r V lta eDo - V ( ) o ad o g r p V F M
10 00 0
1 0
2 0
3 0
4 0
5 0
R v r eV lta e- V (V e es o g ) R
Fig. 1 - Maximum Forward Voltage Drop Characteristics
1 0 T e a I p d n e- Z h rm l m e a c (C ) /W t JC h
Fig. 3 - Typical Junction Capacitance Vs. Reverse Voltage
1
D=05 .0 D=03 .3 D=02 .5 D=01 .7
P
D M
.1
D=00 .8
t 1 t 2 N te : os 1 D tyfa to D= t1/ t 2 .u cr 2 P a T =P xZ . ek +T JD M th C C J . 1 1 1 0 10 0
S g P ls in le u e (T e a R s ta c ) h rm l e is n e .0 1 . 00 001 .0 0 01 .0 1 0 .0 1
t , R c n u r P ls D ra n( e o d ) e ta g la u e u tio S c n s 1
Fig. 4 - Maximum Thermal Impedance ZthJC Characteristics
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3
SD51
PD-2.327 rev. A 12/97
10 6 A w b C s T m e a r - ( ) llo a le a e e p r tue C S5 D1 R J ( C =10 C . /W th C D ) 10 2 D C
30 0 20 5 20 0 10 5 10 0 5 0 0 0 D C
8 0
4 0
0 0
A e g P w rL s -( a s v ra e o e o s W tt )
123456789 000000000 A e g F r a dC r e t - IF V ( ) v ra e o w r u r n (A ) A
4 0
8 0
10 2
10 6
20 0
A e a e F rw r C r e t - I v r g o ad ur n () A FV (A )
Fig. 5 - Maximum Allovable Case Temperature Vs. Average Forward Current
Fig. 6 - Forward Power Loss Characteristics
100 00 N n e e eS rg C r e t - I o -R p titiv u e u r n (A ) FM S
10 00
A A y R te L a C n itio t n a d od od n A dWh R te V R A p d n it a d R M p lie F llo in S rg o wg u e 10 0 1 0
10 0
10 00
100 00
S u reW v P ls D r tio - tp (m r s c qa a e u e ua n ic o e )
Fig. 7 - Max. Non-Repetitive Surge Current
4
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