Features
l For surface mount application (flat handing surface for
Accurate placement)
l 3.3 thru 100 Volt Voltage Range
l High Surge Current Rating
l Higher Voltages Available
l Available on Tape and Reel
Mechanical Data
l CASE: JEDEC DO-214AC molded plastic body over
passivated chip
l Terminals solderable per MIL-STD-750, Method 2026
l Polarity is indicated by cathode band.
l Maximum temperature for soldering: 260oC for 10 seconds.
l For surface mount applications with flame retardent epoxy
Meeting UL94V-0
Maximum Ratings @ 25oC Unless Otherwise Specified
Peak Surge
Current IS See Table 1
Maximum
Forward
Voltage
VF 1.2V (Note: 1)
Steady State
Power
Dissipation
P(AV) 1.0W (Note: 2,3)
Operation And
Storage
Temperature
TJ, TSTG -55oC to
+150oC
*
NOTES:
1. Forward Current @ 200mA.
2. Mounted on 4.0mm2 copper pads to each terminal.
3. Lead temperature at 100oC or less. Derate linearly
above 100oC to zero power at 150oC.
SMAJ4728
THRU
SMAJ4764
Silicon
1 Watt
Zener Diodes
DO-214AC
(SMAJ) (High Profile)
H
J
E
F
G
A
B
D
C
Cathode Band
DIMENSIONS
INCHES MM
DIM MIN MAX MIN MAX NOTE
A .078 .116 1.98 2.95
B .067 .089 1.70 2.25
C .002 .008 .05 .20
D --- .02 --- .51
E .035 .055 .89 1.40
F .065 .096 1.65 2.45
G .205 .224 5.21 5.69
H .160 .180 4.06 4.57
J .100 .112 2.57 2.84
0.070”
0.090”
0.085”
SUGGESTED SOLDER
PAD LAYOUT
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MCC
SMAJ4728 thru SMAJ4764
Electrical Characteristics @ 25oC Unless Otherwise Specified
ZENER
VOLTAGE
Vz
TEST
CURRENT
Izt
MAXIMUM
DYNAMIC
IMPEDANCE
Zzt @ Izt
MAXIMUM
REVERSE
CURRENT
Ir @ Vr
TEST
VOLTAGE
Vr
MAXIMUM
REGULATOR
CURRENT
Izm
Ta=50oC
MAXIMUM
KNEE
IMPEDANCE
Zzk @ Izk
TEST
CURRENT
Izk
MAXIMUM
SURGE
CURRENT
Is
MCC PART
NUMBER VOLTS mA OHMS uA VOLTS mA OHMS MA mA
SMAJ4728
3.3 76 10 100 1 276 400 1.0 1380
SMAJ4729
3.6 69 10 100 1 252 400 1.0 1260
SMAJ4730
3.9 64 9 50 1 234 400 1.0 1190
SMAJ4731
4.3 58 9 10 1 217 400 1.0 1070
SMAJ4732
4.7 53 8 10 1 193 500 1.0 970
SMAJ4733
5.1 49 7 10 1 178 550 1.0 890
SMAJ4734
5.6 45 5 10 2 162 600 1.0 810
SMAJ4735
6.2 41 2 10 3 146 700 1.0 730
SMAJ4736
6.8 37 3.5 10 4 133 700 1.0 660
SMAJ4737
7.5 34 4.0 10 5 121 700 0.5 605
SMAJ4738
8.2 31 4.5 10 6 110 700 0.5 550
SMAJ4739
9.1 28 5.0 10 7 100 700 0.5 500
SMAJ4740
10 25 7 10 7.6 91 700 0.25 454
SMAJ4741
11 23 8 5 8.4 83 700 0.25 414
SMAJ4742
12 21 9 5 9.1 76 700 0.25 380
SMAJ4743
13 19 10 5 9.9 69 700 0.25 344
SMAJ4744
15 17 14 5 11.4 61 700 0.25 304
SMAJ4745
16 15.5 16 5 12.2 57 700 0.25 285
SMAJ4746
18 14 20 5 13.7 50 750 0.25 250
SMAJ4747
20 12.5 22 5 15.2 45 750 0.25 225
SMAJ4748
22 11.5 23 5 16.7 41 750 0.25 205
SMAJ4749
24 10.5 25 5 18.2 38 750 0.25 190
SMAJ4750
27 9.5 35 5 20.6 34 750 0.25 170
SMAJ4751
30 8.5 40 5 22.8 30 1000 0.25 150
SMAJ4752
33 7.5 45 5 25.1 27 1000 0.25 135
SMAJ4753
36 7.0 50 5 27.4 25 1000 0.25 125
SMAJ4754
39 6.5 60 5 29.7 23 1000 0.25 115
SMAJ4755
43 6.0 70 5 32.7 22 1500 0.25 110
SMAJ4756
47 5.5 80 5 35.8 19 1500 0.25 95
SMAJ4757
51 5.0 95 5 38.8 18 1500 0.25 90
SMAJ4758
56 4.5 110 5 42.6 16 2000 0.25 80
SMAJ4759
62 4.0 125 5 47.1 14 2000 0.25 70
SMAJ4760
68 3.7 150 5 51.7 13 2000 0.25 65
SMAJ4761
75 3.3 175 5 56.0 12 2000 0.25 60
SMAJ4762
82 3.0 200 5 62.2 11 3000 0.25 55
SMAJ4763
91 2.8 250 5 69.2 10 3000 0.25 50
SMAJ4764
100 2.5 350 5 76.0 9 3000 0.25 45
NOTE 1 The JEDEC type numbers shown have A 5% tolerance on nominal zener voltage.
No suffix signifies A 10% tolerance, C signifies 2%, and D signifies 1% tolerance.
NOTE 2 The zener impedance is derived from the 60Hz AC voltage, which results when an AC current having an rms value equal to
10% of the DC zener current (Izt or Izk) is superimposed on Izt or Izk. Zener impedance is measured at two points to insure
a sharp knee on the breakdown curve and eliminate unstable units.
NOTE 3 The reverse surge current is measured at 25oC ambient using a 1/2 square wave or equivalent sine wave pulse 1/120 second
duration superimposed on Izt
NOTE 4 Voltage measurements to be performed 90 seconds after application of DC current.
MCC
www.mccsemi .com
SMAJ4728 thru SMAJ4764
SMAJ4728... SMAJ4764
Ratings and
Characteristic Curves(TA = 25°C unless otherwise noted)
MCC
www.mccsemi .com