SR30150R
Elektronische Bauelemente
VOLTAGE 150V 30.0AMP Schottky Barrier Rectifiers
RoHS Compliant Product A suffix of "-C" specifies halogen & lead-free TO-220
.412 (10.5) MAX. .108 (2.75) 3.8 f +.2 HOLE THRU .180 (4.6) .050 (1.27)
FEATURES
* Low forward voltage drop * High current capability * High reliability * High surge current capability * Epitaxial construction
.248 (6.3)
.595 (15.1) MAX.
MECHANICAL DATA
* Case: Molded plastic * Epoxy: UL 94V-0 rate flame retardant * Lead: Lead solderable per MIL-STD-202, method 208 guaranteed * Polarity: As Marked * Mounting position: Any * Weight: 2.24 grams(Approximately)
.051 MAX. (1.3) .040 MAX. (1.0) .100 (2.54)
.550 (14.0) .158 (4.0) MIN. MAX. .120 (3.05) PIN 1 PIN 3 + CASE PIN 2
Dimensions in inches and (millimeters)
MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS
Rating 25 C ambient temperature unless otherwise specified. Single phase half wave, 60Hz, resistive or inductive load. For capacitive load, derate current by 20%.
TYPE NUMBER
Maximum Recurrent Peak Reverse Voltage Working Peak Reverse Voltage Maximum DC Blocking Voltage Maximum Average Forward Rectified Current See Fig. 1 Peak Forward Surge Current, 8.3 ms single half sine-wave superimposed on rated load (JEDEC method) Maximum Instantaneous Forward Voltage (IF = 15 Amps,TF= 25 C) Maximum Instantaneous Forward Voltage (IF = 15 Amps,TF= 125 C) Maximum DC Reverse Current at Rated DC Blocking Voltage Typical Junction Capacitance (Note1) Typical Thermal Resistance RθJC (Note 2) Operating Temperature Range TJ Storage Temperature Range TSTG
NOTES:
SR30150R 150 150 150 30 250
0.95 0.78
UNITS V V V A A V mA mA pF C/W C C
Ta=25 C Ta=125 C
0.05 10 350 2.0 -5 0 ~ +150 -65 ~ +175
1. Measured at 1MHz and applied reverse voltage of 5.0V D.C. 2. Thermal Resistance Junction to Case.
http://www.SeCoSGmbH.com
Any changing of specification will not be informed individual
01-Jun-2002 Rev. A
Page 1 of 2
SR30150R
Elektronische Bauelemente
VOLTAGE 150V 30.0AMP Schottky Barrier Rectifiers
RATING AND CHARACTERISTIC CURVES (SR30150R)
FIG.1-TYPICAL FORWARD CURRENT DERATING CURVE
I F(AV),AVERAGE POWER DISSIPATION(WATTS) IF(AV) ,INSTANEOUS FORWAED CURRENT(AMP)
100 70 50
FIG.2- TYPICAL FORWARD VOLTAGE (PER LEG)
36 30 24 18 12 6 0 70 80 90 100 110 120 130 SQUARE WAVE
RATED VOLTAGE R q JC = 2° C/W
Tj=150 C
20
Tj=125 C
dc
10
5
Tj=100 C
140
150
160
180
Tc,CASE TEMPERATURE,( C)
2 1
Tj=25 TJ = 25 C C
FIG.3-MAXIMUM NON-REPETITIVE FORWARD SURGE CURRENT
300
0.2
0.4
0.6
0.8
1.0
PEAK FORWARD SURGE CURRENT,(A)
VF ,INSTANTANEOUS VOLTAGE(VOLTS)
250 100,000
Tj=25 C 8.3ms Single Half
FIG.5-TYPICAL REVERSE CURRENT(PER LEG)
200
Tj=150 C
I R , REVERSE CURRENT( m A)
150
Sine Wave JEDEC method
10,000
Tj=125 C
100
1,000
Tj=100 C
0 1 10 50 100
100
NUMBER OF CYCLES AT 60Hz
10
Tj=25 C
1
FIG.4-TYPICAL JUNCTION CAPACITANCE
700 600 VR , REVERSE CURRENT (VOLTS) 500 400
Tj=25 C
0 0 20 40 60 80 100 120 140 160 180 200
JUNCTION CAPACITANCE,(pF)
300 200 100 0
1
2
5
10
50
100
REVERSE VOLTAGE,(V)
http://www.SeCoSGmbH.com
Any changing of specification will not be informed individua
l
01-Jun-2002 Rev. A
Page 2 of 2
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