0.071 (1.80)
0.047 (1.20)
DO-214AC
0.181(4.60)
0.157(4.00)
0.091(2.30)
0.067(1.70)
0.063(1.60)
0.029(0.75)
0.008(0.20)
0.002(0.05)
0.213(5.40)
0.188(4.80)
Dimensions in inches and (millimeters)
SL22A THRU SL210A
SURFACE MOUNT SCHOTTKY BARRIER RECTIFIER
Reverse Voltage - 20 to 100 Volts Forward Current - 2.0 Amperes
0.118(3.00)
0.094(2.40)
0.016(0.41)
0.006(0.15)
FEATURES
The plastic package carries Underwriters Laboratory
Flammability Classification 94V-0
For surface mounted applications
Metal silicon junction,majority carrier conduction
Low power loss,high efficiency
Built-in strain relief,ideal for automated placement
High forward surge current capability
High temperature soldering guaranteed:
260 C/10 seconds at terminals
MECHANICAL DATA
Case: JEDEC DO-214AC molded plastic body
Terminals: leads solderable per MIL-STD-750,
Method 2026
Polarity: Color band denotes cathode end
Mounting Position: Any
Weight:0.002 ounce, 0.07 grams
MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS
Ratings at 25 C ambient temperature unless otherwise specified.
Single phase half-wave 60Hz,resistive or inductive load,for capacitive load current derate by 20%.
MDD Catalog Number
SYMBOLS SL22A SL23A SL24A SL25A SL26A
Maximum repetitive peak reverse voltage
Maximum RMS voltage
Maximum DC blocking voltage
VRRM
20
30 40
50
VRMS
14
21 28 35
VDC 20 30 40 50
60
42
60
Maximum average forward rectified current
at TL(see fig.1)
I(AV)
2.0
Peak forward surge current
8.3ms single half sine-wave superimposed on
IFSM
50.0
rated load
Maximum instantaneous forward voltage at 2.0A VF
0.45
0.5
Maximum DC reverse current TA=25 C
at rated DC blocking voltage TA=100 C
IR
0.5
10.0
Typical junction capacitance (NOTE 1)
CJ 220
180
Typical thermal resistance (NOTE 2)
Operating junction temperature range
Storage temperature range
RθJA
TJ,
TSTG
75.0
-55 to +125
-55 to +150
Note:1.Measured at 1MHz and applied reverse voltage of 4.0V D.C.
2.P.C.B. mounted with 0.2x0.2”(5.0x5.0mm) copper pad areas
SL28A
80
56
80
SL210A UNITS
100 V
70 V
100 V
A
A
0.7
0.2
5.0
-55 to +150
V
mA
pF
C/W
C
C