Barrier Rectifiers. S30S60 Datasheet

S30S60 Rectifiers. Datasheet pdf. Equivalent

S30S60 Datasheet
Recommendation S30S60 Datasheet
Part S30S60
Description Schottky Barrier Rectifiers
Feature S30S60; MOSPEC Schottky Barrier Rectifiers Using the Schottky Barrier principle with a Molybdenum barrier me.
Manufacture MOSPEC
Datasheet
Download S30S60 Datasheet




MOSPEC S30S60
MOSPEC
Schottky Barrier Rectifiers
Using the Schottky Barrier principle with a Molybdenum barrier metal. These
state-of-the-art geometry features epitaxial construction with oxide passivation
and metal overlay contact. Ideally suited for low voltage, high frequency
rectification, or as free wheeling and polarity protection diodes.
Features
Low Forward Voltage.
Low Switching noise.
High Current Capacity
Guarantee Reverse Avalanche.
Guard-Ring for Stress Protection.
Low Power Loss & High efficiency.
150 Operating Junction Temperature
Low Stored Charge Majority Carrier Conduction.
Plastic Material used Carries Underwriters Laboratory
Flammability Classification 94V-O
In compliance with EU RoHs 2002/95/EC directives
S30S30 thru S30S60
SCHOTTKY BARRIER
RECTIFIERS
30 AMPERES
30-60 VOLTS
TO-263 (D2-PAK)
MAXIMUM RATINGS
Characteristic
Symbol
S30S
Unit
30 35 40 45 50 60
Peak Repetitive Reverse Voltage
Working Peak Reverse Voltage
DC Blocking Voltage
VRRM
VRWM 30 35 40 45 50 60
VR
V
RMS Reverse Voltage
VR(RMS) 21 25 28 32 35 42
Average Rectifier Forward Current (per diode)
Total Device (Rated VR), TC=125
IF(AV)
15
30
Peak Repetitive Forward Current
(Rate VR, Square Wave, 20kHz)
Non-Repetitive Peak Surge Current
(Surge applied at rate load conditions
halfware, single phase, 60Hz)
IFM
IFSM
20
200
V
A
A
A
Operating and Storage Junction
Temperature Range
TJ , Tstg
-65 to +150
ELECTRIAL CHARACTERISTICS
Characteristic
Symbol
Maximum Instantaneous Forward Voltage
( IF =15 Amp TC = 25 )
( IF =15 Amp TC = 100 )
Typical Thermal Resistance junction to
case
VF
Rθ j-c
30
Maximum Instantaneous Reverse Current
( Rated DC Voltage, TC = 25 )
( Rated DC Voltage, TC = 125 )
IR
S30S
35 40 45
0.55
0.48
4.2
0.5
30
50 60
0.70
0.61
Unit
V
/w
mA
DIM
MILLIMETERS
MIN MAX
A 8.12 8.92
B 9.90 10.30
C 4.23 4.83
D 0.51 0.89
E 1.27 1.53
G 2.54 BSC
H 2.03 2.79
J 0.31 0.51
K 2.29 2.79
S 14.60 15.88
V 1.57 1.83
X --- 1.40



MOSPEC S30S60
S30S30 Thru S30S60
FIG-1 FORWARD CURRENT DERATING CURVE
CASE TEMPERATURE ( )
FIG-3 TYPICAL REVERSE CHARACTERISTICS
Tj=125oc
Tj=75oc
Tj=25oc
PERCENT OF RATED REVERSE VOLTAGE ( )
FIG-5 PEAK FORWARD SURGE CURRENT
FIG-2 TYPICAL FORWARD CHARACTERISITICS
TJ=125
S30S30-45
TJ=25
S30S50-60
TJ=125
S30S50-60
TJ=25
S30S30-45
FORWARD VOLTAGE (Volts)
FIG-4 TYPICAL JUNCTION CAPACITANCE
S30S30-45
S30S50-60
REVERSE VOLTAGE (Volts)
NUMBER OF CYCLES AT 60 Hz
DJ-A



MOSPEC S30S60
Notice
MOSPEC reserves the rights to make changes of the content herein the document anytime without
notification. MOSPEC or anyone on its behalf, assumes no responsibility or liability for any errors or
inaccuracies. Please refer to MOSPEC website for the last document.
MOSPEC disclaims any and all liability arising out of the application or use of any product
including damages incidentally and consequentially incurred.
Application shown on the herein document are examples of standard use and operation.
Customers are responsible for comprehending suitable use in particular applications. MOSPEC makes
no representation or warranty that such application will be suitable for the specified use without
further testing or modification.
The information contained herein is presented only as a guide for the applications of our products.
No responsibility is assumed by MOSPEC for any infringements of patents or other rights of the third
parties which may result from its use. No license is granted by implication or otherwise under any
patent or patent rights of MOSPEC or others.
These MOSPEC products are intended for usage in general electronic equipment. Please make sure
to consult with MOSPEC before you use these MOSPEC products in equipment which require
specialized quality and/or reliability, and in equipment which could have major impact to the welfare of
human life ( atomic energy control, aeronautics , traffic control, combustion control, safety devices etc.)







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