SMCJ SERIES
GLASS PASSIVATED SURFACE MOUNT TRANSIENT VOLTAGE SUPPRESSOR
Breakdown Voltage - 5.0 to 170 Volts
SMC / DO-214AB
Peak Pulse Power-1500 Watts
FEATURES
0.245(6.22)
0.220(5.59)
0.280(7.11)
0.260(6.60)
0.125(3.17)
0.115(2.92)
* Glass passivated chip
* 1500 W peak pulse power capability with a 10/1000
µs
wavefrom,
repetitive rate (duty cycle) : 0.01%
* Low leakage
* Excellent clamping capability
* Very fast response time
0.012(0.305)
0.006(0.152)
0.103(2.62)
0.079(2.06)
0.060(1.52)
0.030(0.76)
0.320(8.13)
0.305(7.75)
MECHANICAL DATA
Case :
JEDEC DO-214AB molded plastic
Terminals :
Solder plated, solderable per MIL-STD-750,
Method 2026
Polarity :
Color band denotes positive end (cathode) except
for bidirectional types
Weight :
0.007 ounce, 0.21 gram
*Dimensions in inches and (millimeters)
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, derate current by 20%
o
RATING
SYMBOL
VALUE
UNITS
Peak power dissipation with a 10/1000
µs
waveform (note 1)
Peak pulse current with a 10/1000
µs
waveform (node 1)
P
PPM
1500
Watts
I
PPM
See next table
Amps
Power dissipation on infinite heatsink at T
L
= 75℃
P
D
6.5
Watts
Peak forward surge current,8.3ms single half sine-wave unidirectional only (note 2)
I
FSM
200
Amps
Operating junction and storage temperature range
NOTES : (1) Non-repetitive current pulse per Fig. 5 and derated abobe T
A
= 25℃ per Fig. 1
(2) Measured on 8.3ms single half sine-wave or equivalent square wave, duty cycle = 4 pulses per minute maximum.
T
J
,T
STG
-55 to +150
℃
2010/03
Zowie Technology Corporation
Zowie Technology Corporation
Device
Marking
Code
UNI
GDE
BI
BDE
Working Peak
Reverse Voltage
V
RWM
(V)
5.0
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
19.0
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
78.0
80.0
85.0
90.0
100.0
110.0
120.0
130.0
140.0
150.0
160.0
170.0
180.0
190.0
SMCJ SERIES
Maximum Reverse
Surge Current
I
PP
(A)
@10 x 1000μs
sinewave
163.00
146.00
134.00
125.00
116.00
110.00
104.00
97.40
88.20
82.40
75.40
69.80
64.70
61.50
57.70
54.30
51.40
48.70
46.30
42.30
38.60
35.60
33.00
31.00
28.10
25.80
23.30
21.60
20.60
19.40
18.20
17.20
16.00
15.50
14.60
13.30
12.40
11.90
11.60
10.90
10.30
9.26
8.47
7.77
7.18
6.61
6.17
5.79
5.45
5.14
4.87
Maximum Reverse
Leakage I
R
(μA)
@V
RWM
1000
1000
500
200
100
50
20
10
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
PART NUMBER
UNI- POLAR
SMCJ5.0A
SMCJ6.0A
SMCJ6.5A
SMCJ7.0A
SMCJ7.5A
SMCJ8.0A
SMCJ8.5A
SMCJ9.0A
SMCJ10A
SMCJ11A
SMCJ12A
SMCJ13A
SMCJ14A
SMCJ15A
SMCJ16A
SMCJ17A
SMCJ18A
SMCJ19A
SMCJ20A
SMCJ22A
SMCJ24A
SMCJ26A
SMCJ28A
SMCJ30A
SMCJ33A
SMCJ36A
SMCJ40A
SMCJ43A
SMCJ45A
SMCJ48A
SMCJ51A
SMCJ54A
SMCJ58A
SMCJ60A
SMCJ64A
SMCJ70A
SMCJ75A
SMCJ78A
SMCJ80A
SMCJ85A
SMCJ90A
SMCJ100A
SMCJ110A
SMCJ120A
SMCJ130A
SMCJ140A
SMCJ150A
SMCJ160A
SMCJ170A
SMCJ180A
SMCJ190A
BI-POLAR
SMCJ5.0CA
SMCJ6.0CA
SMCJ6.5CA
SMCJ7.0CA
SMCJ7.5CA
SMCJ8.0CA
SMCJ8.5CA
SMCJ9.0CA
SMCJ10CA
SMCJ11CA
SMCJ12CA
SMCJ13CA
SMCJ14CA
SMCJ15CA
SMCJ16CA
SMCJ17CA
SMCJ18CA
SMCJ19CA
SMCJ20CA
SMCJ22CA
SMCJ24CA
SMCJ26CA
SMCJ28CA
SMCJ30CA
SMCJ33CA
SMCJ36CA
SMCJ40CA
SMCJ43CA
SMCJ45CA
SMCJ48CA
SMCJ51CA
SMCJ54CA
SMCJ58CA
SMCJ60CA
SMCJ64CA
SMCJ70CA
SMCJ75CA
SMCJ78CA
SMCJ80CA
SMCJ85CA
SMCJ90CA
SMCJ100CA
SMCJ110CA
SMCJ120CA
SMCJ130CA
SMCJ140CA
SMCJ150CA
SMCJ160CA
SMCJ170CA
SMCJ180CA
SMCJ190CA
Breakdown Voltage V
BR
@I
T
Min. (V)
6.40
6.67
7.22
7.78
8.33
8.89
9.44
10.00
11.10
12.20
13.30
14.40
15.60
16.70
17.80
18.90
20.00
21.10
22.20
24.40
26.70
28.90
31.10
33.30
36.70
40.00
44.40
47.80
50.00
53.30
56.70
60.00
64.40
66.70
71.10
77.80
83.30
86.70
88.80
94.40
100.00
111.00
122.00
133.00
144.00
155.00
167.00
178.00
189.00
200.00
211.00
Max. (V)
7.00
7.37
7.98
8.60
9.21
9.83
10.40
11.10
12.30
13.50
14.70
15.90
17.20
18.50
19.70
20.90
22.10
23.30
24.50
26.90
29.50
31.90
34.40
36.80
40.60
44.20
49.10
52.80
55.30
58.90
62.70
66.30
71.20
73.70
78.60
86.00
92.10
95.80
97.60
104.00
111.00
123.00
135.00
147.00
159.00
171.00
185.00
197.00
209.00
220.00
232.00
I
T
(mA)
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
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
Maximum Clamping
Voltage V
C
(V)
@ I
PP
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
24.4
26.0
27.6
29.2
30.8
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
126.0
130.0
137.0
146.0
162.0
177.0
193.0
209.0
227.0
243.0
259.0
275.0
292.0
308.0
GDG BDG
GDK
BDK
GDM BDM
GDP
BDP
GDR BDR
GDT
GDV
GDX
GDZ
GEE
BDT
BDV
BDX
BDZ
BEE
GEG BEG
GEK
BEK
GEM BEM
GEP
GER
GET
GEB
GEV
GEX
GEZ
GEF
GFG
GFK
BEP
BER
BET
BEB
BEV
BEX
BEZ
BFE
BFG
BFK
GFM BFM
GFP
GFR
GFT
GFV
GFX
GFZ
BFP
BFR
BFT
BFV
BFX
BFZ
GGE BGE
GGG BGG
GGK BGK
GGM BGM
GGP BGP
GGR BGR
GGT
BGT
GGB BGB
GGV BGV
GGX BGX
GGZ
GHE
BGZ
BHE
GHG BHG
GHK
GHB
BHK
BHB
GHM BHM
GHP
BHP
GHR BHR
GHT
GHV
BHT
BHV
NOTE : For bidirectional type having Vrwm of 10 volts and less, the I
R
limit is double.
For parts without A , the V
BR
is
±
10%
2010/03
Zowie Technology Corporation
RATINGS AND CHARACTERISTIC CURVES SMCJ SERIES
FIG. 1- PULSE DERATING CURVE
100
PEAK PULSE DERATING IN PERCENTAGE
OF PEAK POWER OR CURRENT, (%)
PEAK FORWARD SURGE CURRENT, (A)
200
T
J
= T
J
max.
8.3 ms Single Half Sine-Wave
FIG. 2 - MAXIMUM NON-REPETITIVE
160
75
120
50
80
25
40
0
0
25
50
75
100
125
150
175
200
0
1
10
NUMBER OF CYCLES AT 60Hz
100
AMBIENT TEMPERATURE, TA (℃)
FIG. 3 - STEADY STATE POWER DERATING CURVE
8.0
STEADY STATE POWER DISSIPATION, (W)
7.0
6.0
10
5.0
4.0
3.0
2.0
1.0
0
0
25
50
75
100
125
150
175
200
LEAD TEMPERATURE, T
L
(℃)
0.1
0.1
PEAK POWER (kW)
100
FIG. 4 - PEAK PULSE POWER RATING CURVE
Non-repetitive Pulse
Waveform shown in Fig. 5
T
A
= 25℃
1
1
10
100
1000
10000
PULSE WIDTH, td (µs)
FIG. 5 - PULSE WAVEFORM
100
PEAK PULSE CURRENT, (%)
Tr = 10µs
Peak Value
(I
PP
)
T
J
= 25℃
Pulse width (td) is defined as the
point where the peak current
decays to 50% of I
PP
Half value =
50
I
PP
2
10/1000µsec. waveform
as defined by R.E.A.
td
0
0
1
2
TIME, (ms)
3
4
2010/03
Zowie Technology Corporation