LITE-ON
SEMICONDUCTOR
A3.0SMCJ SERIES
STAND-OFF VOLTAGE -
5.0
to
75
Volts
POWER DISSIPATION -
3000
WATTS
SURFACE MOUNT
UNIDIRECTIONAL AND BIDIRECTIONAL
TRANSIENT VOLTAGE SUPPRESSORS
FEATURES
For surface mounted applications
Reliable low cost construction utilizing molded plastic
technique
Typical IR less than 2uA above 10V
Fast response time: typically less than 1.0ns for
Uni-direction less than 5.0ns for Bi-direction form 0 Volts
to BV min
RoHS compliant
AEC-Q101 qualified
PPAP capable
SMC
SMC
DIM.
A
B
C
B
C
D
E
F
G
H
E
F
D
G
H
MIN.
6.60
5.59
2.92
0.15
7.75
0.05
2.01
0.76
MAX.
7.11
6.22
3.18
0.31
8.13
0.20
2.40
1.52
CHARACTERISTICS
Peak Forward Surge Current 8.3ms single half
sine-wave @TJ=25
(Note 2)
Operating Temperature Range
Storage Temperature Range
℃
NOTES : 1. Non-repetitive current pulse, per Fig. 3 and derated above T
J
= 25
2. Only for unidirectional units.
℃
Steady State Power Dissipation at TL =120
lead lenghts 0.375" (9.5mm) , see fig. 6
℃
PEAK POWER DISSIPATION AT T
J
= 25
, T
P
= 1ms (Note 1)
℃
℃
●
●
●
●
●
●
●
A
MECHANICAL DATA
Case : Molded plastic
Case Material: Molding compound, UL Flammability
classification 94V-0, (No Br. Sb. Cl.) "Halogen-free".
Polarity : by cathode band denotes uni-directional device
none cathode band denotes bi-directional device
Weight : 0.007 ounces, 0.21 gram
All Dimensions in millimeter
MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS
Ratings at 25
ambient temperature unless otherwise specified.
SYMBOLS
VALUE
UNIT
P
PK
3000
W
I
FSM
300
A
P
M(AV)
2.0
W
T
J
-55 to +175
C
T
STG
-55 to +175
per Fig.1.
C
REV. 0, Nov-2017, KSIA04
RATING AND CHARACTERISTIC CURVES
A3.0SMCJ SERIES
FIG.1 - PULSE DERATING CURVE
PEAK PULSE DERATING IN % OFPEAK
POWER OR CURRENT
100
FIG.2 - MAXIMUM NON-REPETITIVE SURGE CURRENT
300
250
75
PEAK FORWARD SURGE
CURRENT,
AMPERES
125
150
175
200
200
50
150
100
50
8.3ms Single Half-Sine-Wave
0
1
2
5
10
20
50
100
25
W
10 X 1000 AVEFORM
AS DEFINED BY R. E.A
0
0
25
50
75
100
FIG.3 - PULSE WAVEFORM
10000
T
R
=10us
CURRENT ,
100
Peak value (I
RSM)
Uni-directional
Half value=
2
CAPACITANCE , (pF)
I
RSM
Pulse width (T
P
) is defined
as that point where the
peak current decays to
50% of I
RSM
PULSE
50
10 x 1000 waveform as
defined by R.E.A.
I
P,
PEAK
(% )
T
J
=25 C
TP
0
0
1.0
2.0
3.0
4.0
T , TIME
( ms )
STEADY STATE POWER DISSIPATION (W)
FIG.5 - PULSE RATING CURVE
100
T
A
=25 C
P
P
, PEAK POWER
W
)
(K
10
NON-REPETITIVE
PULSE WAVEFORM
SHOWN IN FIG 3
1.0
8.0mm LEAD AREAS
0.1
0.1us
1.0us
10us
100us
1.0ms
10ms
PM
(AV)
,
T
P
, PULSE WIDTH
℃
1000
100
JUNCTION TEMPERATURE,
NUMBER OF CYCLES AT 60Hz
FIG.4 - TYPICAL JUNCTION CAPACITANCE
Bi-directional
Measured at
Zero Bias
10
1
10
100
T
J
= 25 C
1000
STAND-OFF VOLTAGE, VOLTS
FIG.6 - STEADY STATE POWER DERATING CURVE
2.0
1.6
1.2
0.8
0.4
60Hz RESISTIVE OR
INDUCTIVE LOAD
0.0
0
25
50
75
100
125
150
175
TL, LEAD TEMPERATU
Legal Disclaimer Notice
A3.0SMCJ SERIES
Max.
Reverse
Leakage
@VR
IR (uA)
1000.0
1000.0
500.0
200.0
100.0
50.0
25.0
10.0
2.0
2.0
2.0
2.0
2.0
2.0
2.0
2.0
2.0
2.0
2.0
2.0
2.0
2.0
2.0
2.0
2.0
2.0
2.0
2.0
2.0
2.0
2.0
2.0
2.0
2.0
2.0
2.0
Max.
Clamping
Voltage
@Ipp
Vc (V)
9.2
10.3
11.2
12.0
12.9
13.6
14.4
15.4
17.0
18.2
19.9
21.5
23.2
24.2
26.0
27.6
29.2
32.4
35.5
38.9
42.1
45.4
48.4
53.3
58.1
64.5
69.4
72.7
77.4
82.4
87.1
93.6
96.8
103.0
113.0
121.0
Max.
Peak
Pulse
Current
Ipp (A)
326.1
291.3
267.9
250.0
232.6
220.6
208.3
194.8
176.5
164.8
150.8
139.5
129.3
124.0
115.4
108.7
102.7
92.6
84.5
77.1
71.3
66.1
62.0
56.3
51.6
46.5
43.2
41.3
38.8
36.4
34.4
32.1
31.0
29.1
26.5
24.8
Type
Number
(UNI)
A3.0SMCJ5.0A
A3.0SMCJ6.0A
A3.0SMCJ6.5A
A3.0SMCJ7.0A
A3.0SMCJ7.5A
A3.0SMCJ8.0A
A3.0SMCJ8.5A
A3.0SMCJ9.0A
A3.0SMCJ10A
A3.0SMCJ11A
A3.0SMCJ12A
A3.0SMCJ13A
A3.0SMCJ14A
A3.0SMCJ15A
A3.0SMCJ16A
A3.0SMCJ17A
A3.0SMCJ18A
A3.0SMCJ20A
A3.0SMCJ22A
A3.0SMCJ24A
A3.0SMCJ26A
A3.0SMCJ28A
A3.0SMCJ30A
A3.0SMCJ33A
A3.0SMCJ36A
A3.0SMCJ40A
A3.0SMCJ43A
A3.0SMCJ45A
A3.0SMCJ48A
A3.0SMCJ51A
A3.0SMCJ54A
A3.0SMCJ58A
A3.0SMCJ60A
A3.0SMCJ64A
A3.0SMCJ70A
A3.0SMCJ75A
Type
Number
(BI)
A3.0SMCJ5.0CA
A3.0SMCJ6.0CA
A3.0SMCJ6.5CA
A3.0SMCJ7.0CA
A3.0SMCJ7.5CA
A3.0SMCJ8.0CA
A3.0SMCJ8.5CA
A3.0SMCJ9.0CA
A3.0SMCJ10CA
A3.0SMCJ11CA
A3.0SMCJ12CA
A3.0SMCJ13CA
A3.0SMCJ14CA
A3.0SMCJ15CA
A3.0SMCJ16CA
A3.0SMCJ17CA
A3.0SMCJ18CA
A3.0SMCJ20CA
A3.0SMCJ22CA
A3.0SMCJ24CA
A3.0SMCJ26CA
A3.0SMCJ28CA
A3.0SMCJ30CA
A3.0SMCJ33CA
A3.0SMCJ36CA
A3.0SMCJ40CA
A3.0SMCJ43CA
A3.0SMCJ45CA
A3.0SMCJ48CA
A3.0SMCJ51CA
A3.0SMCJ54CA
A3.0SMCJ58CA
A3.0SMCJ60CA
A3.0SMCJ64CA
A3.0SMCJ70CA
A3.0SMCJ75CA
Device
Marking code
(UNI)
AHDE
AHDG
AHDK
AHDM
AHDP
AHDR
AHDT
AHDV
AHDX
AHDZ
AHEE
AHEG
AHEK
AHEM
AHEP
AHER
AHET
AHEV
AHEX
AHEZ
AHFE
AHFG
AHFK
AHFM
AHFP
AHFR
AHFT
AHFV
AHFX
AHFZ
AHGE
AHGG
AHGK
AHGM
AHGP
AHGR
Reverse
Standoff
Voltage
VR (V)
5.0
.0
6.0
6.5
7.0
7.5
8.0
8.5
9.0
10.0
11.0
12.0
13.0
14.0
15.0
16.0
17.0
18.0
20.0
22.0
24.0
26.0
28.0
30.0
33.0
36.0
40.0
43.0
45.0
48.0
51.0
54.0
58.0
60.0
64.0
70.0
75.0
Breakdown Voltage
BV Volts @It
Min (V)
6.40
6.67
7.22
7.78
8.33
8.89
9.44
10.0
11.1
12.2
13.3
14.4
15.6
16.7
17.8
18.9
20.0
22.2
24.4
26.7
28.9
31.1
33.3
36.7
40.0
44.4
47.8
50.0
53.3
56.7
60.0
64.4
66.7
71.1
77.8
83.3
Max (V) It (mA)
7.07
7.37
7.98
8.60
9.21
9.83
10.43
11.05
12.27
13.5
14.7
15.9
17.2
18.5
19.7
20.9
22.1
24.5
27.0
29.5
31.9
34.4
36.8
40.6
44.2
49.1
52.8
55.3
58.9
62.7
66.3
71.2
73.7
78.6
86.0
92.1
10
10
10
10
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
(BI)
AIDE
AIDG
AIDK
AIDM
AIDP
AIDR
AIDT
AIDV
AIDX
AIDZ
AIEE
AIEG
AIEK
AIEM
AIEP
AIER
AIET
AIEV
AIEX
AIEZ
AIFE
AIFG
AIFK
AIFM
AIFP
AIFR
AIFT
AIFV
AIFX
AIFZ
AIGE
AIGG
AIGK
AIGM
AIGP
AIGR
NOTES:
1) For bidirectional devices having VR of 10 volts and under, the IR limit is doubled .
2) Mark "*
*
" denote that comply IEC 61000-4-5 Severity levels, 6KV. For data lines requiring a 42Ω source impedance, the short-ciruit
current waveform is define as 8/20us.
Legal Disclaimer Notice
A3.0SMCJ SERIES
Important Notice and Disclaimer
LSC reserves the right to make changes to this document and its products and
specifications
at any time without notice. Customers should obtain and confirm the latest product
information and specifications before final design, purchase or use.
LSC makes no warranty, representation or guarantee regarding the suitability of
its products for any particular purpose, nor does LSC assume any liability for
application assistance or customer product design. LSC does not warrant or
accept any liability with products which are purchased or used for any unintended
or unauthorized application.
No license is granted by implication or otherwise under any intellectual property
rights of LSC.
LSC products are not authorized for use as critical components in life support
devices or systems without express written approval of LSC.