SMCJ SERIES
TRANSIENT VOLTAGE SUPPRESSORS
FEATURE
For surface mounted applications in order to optimize board space.
Low profile package.
Built-in strain relief.
Glass passivated junction.
Low inductance.
Excellent clamping capability.
Repetition Rate (duty cycle):0.05%.
Fast response time: typically less than 1.0ps from 0 Volts to BV min.
Typical IR less than 1μA above 10V.
High Temperature soldering: 260°C/10 seconds at terminals.
Plastic package has Underwriters Laboratory Flammability 94V-O.
SMC/DO-214AB
MECHANICAL DATE
Case: JEDEC DO214AB. Molded plastic over glass passivated junction.
Terminal: Solder plated, solderable per MIL-STD-750, Method 2026.
Polarity: Color band denoted positive end (cathode) except Bidirectional.
Standard Packaging: 12mm tape (EIA STD RS-481).
Weight: 0.007 ounce, 0.21 grams.
DEVICES FOR BIPOLAR APPLICATION
For bidirectional use C or CA suffix for types SMCJ5.0 thru types SMCJ440 (e.g.SMCJ5.0CA, SMCJ440CA),
electrical characteristics apply in both directions.
MAXIMUM RATINGS AND CHARACTERISTICS
Ratings at 25ć ambient temperature unless otherwise specified.
RATING
SYMBOL
VALUE
UNITS
Peak Pulse Power Dissipation on 10/1000ȝs waveform
(Note1,Note2, Fig.1).
PPPM
Minimum 1500
Watts
Peak Pulse Current of on 10/1000ȝs waveform.(Note1,Fig.3)
IPPM
See Table
Amps
Steady State Power Dissipation at TL =75ć,Lead lengths.375”,
(9.5mm) (Note2,Fig.5).
PM(AV)
6.5
Watts
Peak Forward Surge Current,8.3ms Single Half Sine-Wave
Superimposed on Rated Load, (JEDEC Method) (Note 3,Fig.6).
IFSM
200
Amps
TJ , TSTG
-65 to +150
ć
Operating junction and Storage Temperature Range.
Notes: 1. Non-repetitive current pulse, per Fig. 3 and derated above TA = 25ć per Fig. 2.
2. Mounted on 0.8mm x 0.8mm Copper Pads to each terminal.
3. 8.3ms single half sine-wave, or equivalent square wave, Duty cycle = 4 pulses per minutes maximum.
1/4
SMCJ SERIES
Cathode Band
s
D1 D
d
T1
T
L
SMC/DO-214AB
Millimeters
Item
Inches
Min.
Max.
Min.
Max.
L
6.60
7.11
0.260
0.280
D
5.59
6.22
0.220
0.245
D1
2.90
3.20
0.114
0.126
T
7.75
8.13
0.305
0.320
T1
0.76
1.52
0.030
0.060
d
-
0.203
-
0.008
s
2.06
2.62
0.079
0.103
t
0.152
0.305
0.006
0.012
ELECTRICAL CHARACTERISTICS
Part Number
Device
Reverse
Breakdown
Breakdown
Marking
Stand-Off
Voltage
Voltage
Code
Voltage
NIN.@IT
MAX.@IT
Test
Current
Maximum
Peak
Reverse
Clamping
Pulse
Leakage
Voltage @IPP
Current
@VRWM
UNT-POLAR
BI-POLAR
UNI
BI
VRWM(V)
VBR MIN.(V)
VBR MAX.(V)
IT(mA)
VC(V)
IPP(A)
IR(ȝA)
SMCJ5.0A
SMCJ5.0CA
GDE
BDE
5.0
6.40
7.00
10
9.2
163.0
800
SMCJ6.0A
SMCJ6.0CA
GDG
BDG
6.0
6.67
7.37
10
10.3
145.7
800
SMCJ6.5A
SMCJ6.5CA
GDK
BDK
6.5
7.22
7.98
10
11.2
134.0
500
SMCJ7.0A
SMCJ7.0CA
GDM
BDM
7.0
7.78
8.60
10
12.0
125.0
200
SMCJ7.5A
SMCJ7.5CA
GDP
BDP
7.5
8.33
9.21
1
12.9
116.3
100
SMCJ8.0A
SMCJ8.0CA
GDR
BDR
8.0
8.89
9.83
1
13.6
110.3
50
SMCJ8.5A
SMCJ8.5CA
GDT
BDT
8.5
9.44
10.40
1
14.4
104.2
20
SMCJ9.0A
SMCJ9.0CA
GDV
BDV
9.0
10.00
11.10
1
15.4
97.4
10
SMCJ10A
SMCJ10CA
GDX
BDX
10.0
11.10
12.30
1
17.0
88.3
5
SMCJ11A
SMCJ11CA
GDZ
BDZ
11.0
12.20
13.50
1
18.2
82.5
1
SMCJ12A
SMCJ12CA
GEE
BEE
12.0
13.30
14.70
1
19.9
75.4
1
SMCJ13A
SMCJ13CA
GEG
BEG
13.0
14.40
15.90
1
21.5
69.8
1
SMCJ14A
SMCJ14CA
GEK
BEK
14.0
15.60
17.20
1
23.2
64.7
1
SMCJ15A
SMCJ15CA
GEM
BEM
15.0
16.70
18.50
1
24.4
61.5
1
SMCJ16A
SMCJ16CA
GEP
BEP
16.0
17.80
19.70
1
26.0
57.7
1
SMCJ17A
SMCJ17CA
GER
BER
17.0
18.90
20.90
1
27.6
54.4
1
SMCJ18A
SMCJ18CA
GET
BET
18.0
20.00
22.10
1
29.2
51.4
1
SMCJ20A
SMCJ20CA
GEV
BEV
20.0
22.20
24.50
1
32.4
46.3
1
2/4
SMCJ SERIES
Part Number
Device
Reverse
Breakdown
Breakdown
Marking
Stand-Off
Voltage
Voltage
Code
Voltage
NIN.@IT
MAX.@IT
Test
Current
Maximum
Peak
Reverse
Clamping
Pulse
Leakage
Voltage @IPP
Current
@VRWM
UNT-POLAR
BI-POLAR
UNI
BI
VRWM(V)
VBR MIN.(V)
VBR MAX.(V)
IT(mA)
VC(V)
IPP(A)
IR(ȝA)
SMCJ22A
SMCJ22CA
GEX
BEX
22.0
24.40
26.90
1
35.5
42.3
1
SMCJ24A
SMCJ24CA
GEZ
BEZ
24.0
26.70
29.50
1
38.9
38.6
1
SMCJ26A
SMCJ26CA
GFE
BFE
26.0
28.90
31.90
1
42.1
35.7
1
SMCJ28A
SMCJ28CA
GFG
BFG
28.0
31.10
34.40
1
45.4
33.1
1
SMCJ30A
SMCJ30CA
GFK
BFK
30.0
33.30
36.80
1
48.4
31.0
1
SMCJ33A
SMCJ33CA
GFM
BFM
33.0
36.70
40.60
1
53.3
28.2
1
SMCJ36A
SMCJ36CA
GFP
BFP
36.0
40.00
44.20
1
58.1
25.9
1
SMCJ40A
SMCJ40CA
GFR
BFR
40.0
44.40
49.10
1
64.5
23.3
1
SMCJ43A
SMCJ43CA
GFT
BFT
43.0
47.80
52.80
1
69.4
21.7
1
SMCJ45A
SMCJ45CA
GFV
BFV
45.0
50.00
55.30
1
72.7
20.6
1
SMCJ48A
SMCJ48CA
GFX
BFX
48.0
53.30
58.90
1
77.4
19.4
1
SMCJ51A
SMCJ51CA
GFZ
BFZ
51.0
56.70
62.70
1
82.4
18.2
1
SMCJ54A
SMCJ54CA
GGE
BGE
54.0
60.00
66.30
1
87.1
17.3
1
SMCJ58A
SMCJ58CA
GGG
BGG
58.0
64.40
71.20
1
93.6
16.1
1
SMCJ60A
SMCJ60CA
GGK
BGK
60.0
66.70
73.70
1
96.8
15.5
1
SMCJ64A
SMCJ64CA
GGM
BGM
64.0
71.10
78.60
1
103.0
14.6
1
SMCJ70A
SMCJ70CA
GGP
BGP
70.0
77.80
86.00
1
113.0
13.3
1
SMCJ75A
SMCJ75CA
GGR
BGR
75.0
83.30
92.10
1
121.0
12.4
1
SMCJ78A
SMCJ78CA
GGT
BGT
78.0
86.70
95.80
1
126.0
11.9
1
SMCJ85A
SMCJ85CA
GGV
BGV
85.0
94.40
104.00
1
137.0
11.0
1
SMCJ90A
SMCJ90CA
GGX
BGX
90.0
100.00
111.00
1
146.0
10.3
1
SMCJ100A
SMCJ100CA
GGZ
BGZ
100.0
111.00
123.00
1
162.0
9.3
1
SMCJ110A
SMCJ110CA
GHE
BHE
110.0
122.00
135.00
1
177.0
8.5
1
SMCJ120A
SMCJ120CA
GHG
BHG
120.0
133.00
147.00
1
193.0
7.8
1
SMCJ130A
SMCJ130CA
GHK
BHK
130.0
144.00
159.00
1
209.0
7.2
1
SMCJ150A
SMCJ150CA
GHM
BHM
150.0
167.00
185.00
1
243.0
6.2
1
SMCJ160A
SMCJ160CA
GHP
BHP
160.0
178.00
197.00
1
259.0
5.8
1
SMCJ170A
SMCJ170CA
GHR
BHR
170.0
189.00
209.00
1
275.0
5.5
1
SMCJ180A
SMCJ180CA
GHT
BHT
180.0
201.00
222.00
1
292.0
5.1
1
SMCJ190A
SMCJ190CA
GHU
BHU
190.0
211.00
233.00
1
308.0
4.8
1
SMCJ200A
SMCJ200CA
GHV
BHV
200.0
224.00
247.00
1
324.0
4.6
1
SMCJ210A
SMCJ210CA
GHW
BHW
210.0
237.00
263.00
1
340.0
4.4
1
SMCJ220A
SMCJ220CA
GHX
BHX
220.0
246.00
272.00
1
356.0
4.2
1
SMCJ250A
SMCJ250CA
GHZ
BHZ
250.0
279.00
309.00
1
405.0
3.7
1
SMCJ300A
SMCJ300CA
GJE
BJE
300.0
335.00
371.00
1
486.0
3.1
1
SMCJ350A
SMCJ350CA
GJG
BJG
350.0
391.00
432.00
1
567.0
2.6
1
SMCJ400A
SMCJ400CA
GJK
BJK
400.0
447.00
494.00
1
648.0
2.3
1
SMCJ440A
SMCJ440CA
GJM
BJM
440.0
492.00
543.00
1
713.0
2.1
1
Notes: For bidirectional type having VRWM of 10 volts and less, the IR limit is double.
3/4
SMCJ SERIES
Figure 1 - Peak Pulse Power Rating Curve
Figure 2 - Pulse Derating Curve
100
Peak Pulse Power (PPP) or
Current (IPP) Derating in
Percentage %
PPPM-Peak Pulse Power (kW)
100
10
0.31x0.31" (8.0x8.0mm)
Copper Pad Area
1
0.000001
80
60
40
20
0
0.00001
0.0001
0.001
0
td-Pulse Width (sec.)
100
125
150
175
100000
tr=10μsec
TJ=25°C
Pulse Width(td) is defined
as the point where the peak
current decays to 50% of IPPM
Peak Value
IPPM
100
Bi-directional V=0V
10000
Uni-directional V=0V
Cj (pF)
IPPM- Peak Pulse Current, % IRSM
75
Figure 4 - Typical Junction Capacitance
150
Half Value
IPPM IPPM
( )
2
50
10/1000μsec. Waveform
as defined by R.E.A
1000
100
Bi-directional @VR
10
td
1.0
0
2.0
3.0
Uni-directional @VR
Tj=25C
f=1.0MHz
Vsig=50mVp-p
1
1.0
4.0
Figure 5 - Steady State Power Dissipation Derating Curve
IFSM - Peak Forward Surge Current (A)
25
50
75
100
125
150
TA - Ambient Temperature (ºC)
100.0
1000.0
Figure 6 - Maximum Non-Repetitive Forward
Non-Repetitive
PeakOnly
Forward
Figure 6 - Maximum
Surge Current
Uni-Directional
6.5
6
5.5
5
4.5
4
3.5
3
2.5
2
1.5
1
0.5
0
0
10.0
VBR - Reverse Breakdown Voltage (V)
t-Time (ms)
PM(AV), Steady Sate Power Dissipation
(W)
50
TA - Ambient temperature (ºC)
Figure 3 - Pulse Waveform
0
25
200
180
160
140
120
100
80
60
40
20
0
175
1
10
Number of Cycles at 60 Hz
4/4
100
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