SURFACE MOUNT Low VF SCHOTTKY BARRIER RECTIFIER - MIC
Description
MASTER INSTRUMENT CORPORATION
SURFACE MOUNT Low VF SCHOTTKY BARRIER RECTIFIER SSL12 THRU SSL14
VOLTAGE RANGE 20 to 40 Volts Forward Current 1.
0 Amperes
FEATURES
• Plastic package has Underwriters Laboratory Flammability Classification 94V-O
• For surface mounted applications • Low profile package • Built-in strain relied • Metal to silicon rectifier
majority carrier conduction • Low power loss, High efficiency • High current capability, low VF • High surge capacity • For use in low voltage high frequency inverters,
free wheeling, and polarity protection applications • High temperature soldering guaranteed:
260 OC/10 seconds at terminals
SMA(DO-214AC)
MECHANICAL DATA
• Case: JEDEC DO-214AC molded plastic • Terminals: Solder plated, solderable per MIL-STD-750
method 2026 • Polarity: Color band denotes cathode • Weight: 0.
002ounce, 0.
064 gram
MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS
• Ratings at 25OC ambient temperature unless otherwise specified • Single Phase, half wave, 60Hz, resistive or inductive load • For capacitive load derate current by 20%
Dimensions in inches and (millimeters)
SYMBOLS
Maximum Repetitive Peak Reverse Voltage
Maximum RMS Voltage
Maximum DC Blocking Voltage Maximum Average Forward Rectified Current, At TL see figure 1 Peak Forward Surge Current
VRRM VRMS VDC
I(AV)
8.
3mS single half sine wave superimposed on
IFSM
rated load (JEDEC method)
Maximum Instantaneous Forward Voltage @ 1.
0A (Note 1)
Maximum DC Reverse Current at Rated TA = 25 ℃(Note 1)
DC Blocking Voltage per element
TA = 100℃
VF IR
Typical Thermal Resistance (Note 2)
Operating Junction Temperature Storage Temperature Rang
RθJA RθJL TJ TSTG
SSL12 20 14 20
SSL13 30 21 30
1.
0
30.
0
0.
38 0.
5 20.
0 88 28
-50 to+125 -50 to +150
Notes:
1.
Pulse test: 300µS pulse width, 1% duty cycle 2.
Mounted on P.
C.
Board with 8.
0mm2 (.
013cm thick) copper pad areas
E-mail: sales@cnmic.
com Web Site: www.
cnmic.
com
SSL14 40 28 40
0.
45
UNIT
Volts Volts Volts Amps
Amps
Volts mA
℃/W ...
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