SMCJ26CA Datasheet PDF - LITE-ON

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SMCJ26CA
LITE-ON

Part Number SMCJ26CA
Description SURFACE MOUNT UNIDIRECTIONAL AND BIDIRECTIONAL TRANSIENT VOLTAGE SUPPRESSORS
Page 4 Pages


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LITE-ON
SEMICONDUCTOR
SMCJ SERIES
SURFACE MOUNT
UNIDIRECTIONAL AND BIDIRECTIONAL
TRANSIENT VOLTAGE SUPPRESSORS
STAND-OFF VOLTAGE - 5.0 to 220 Volts
POWER DISSIPATION - 1500 WATTS
FEATURES
For surface mounted applications
Reliable low cost construction utilizing molded plastic
technique
Plastic material has UL flammability classification 94V-O
Typical IR less than 1uA 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
B
MECHANICAL DATA
Case : Molded plastic
Polarity : by cathode band denotes uni-directional device
none cathode band denotes bi-directional device
Weight : 0.007 ounces, 0.21 gram
G
H
SMC
A
F
E
SMC
DIM. MIN. MAX.
A 6.60 7.11
C B 5.59 6.22
C 2.92 3.18
D 0.15 0.31
E 7.75 8.13
F 0.05 0.20
G 2.01 2.40
D H 0.76 1.52
All Dimensions in millimeter
MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS
Ratings at 25ambient temperature unless otherwise specified.
CHARACTERISTICS
PEAK POWER DISSIPATION AT TA = 25 C,
TP = 1ms (Note 1,2)
Peak Forward Surge Current 8.3ms
single half sine-wave @ TJ =25 C
(Note 3)
Steady State Power Dissipation at TL =120 C
SYMBOLS
PPK
IFSM
PM(AV)
VALUE
1500
200
2.0
Maximum Instantaneous forward voltage
at 100A for unidirectional devices only (Note 4)
Operating Temperature Range
VF
TJ
SEE NOTE 4
-55 to +175
UNIT
WATTS
AMPS.
WATTS
Volts
C
Storage Temperature Range
TSTG
-55 to +175
C
NOTES : 1. Non-repetitive current pulse, per fig. 3 and derated above TA= 25 C per fig.1.
REV. 14, May-2013, KSIC02
2. Mounted on copper pad area of 8.0 x 8.0mm to each terminal.
3. 8.3ms single half-sine wave duty cycle= 4 pulses maximum per minute (unidirectional units only).
4. VF= 3.5V on SMCJ5.0A thru SMCJ90A devices and VF= 5.0V on SMCJ100A thru SMCJ220A devices.



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RATING AND CHARACTERISTIC CURVES
SMCJ SERIES
FIG.1 - PULSE DERATING CURVE
100
75
50
25
10 X 1000 WAVEFORM
0
0 25 50 75 100 125 150 175 200
AMBIENT TEMPERATURE, ()
FIG.2 - MAXIMUM NON-REPETITIVE SURGE CURRENT
200
100
Pulse Width 8.3ms Single
Half-Sine-Wave
10
12
5
10
20
50
NUMBER OF CYCLES AT 60Hz
100
FIG.3 - PULSE WAVEFORM
TR=10us
100 Peak value (IRSM)
Half value= IRSM
2
50
TJ=25 C
Pulse width (TP) is defined
as that point where the
peak current decays to
50% of IRSM
10 x 1000 waveform
TP
0
0 1.0 2.0 3.0 4.0
T , TIME ( ms )
10000
1000
FIG.4 - TYPICAL JUNCTION CAPACITANCE
Uni-directional
Bi-directional
100
10
1
Measured at
Zero Bias
10 100
STAND-OFF VOLTAGE, (V)
TJ = 25 C
1000
FIG.5 - PULSE RATING CURVE
100
TA=25 C
NON-REPETITIVE
10 PULSE WAVEFORM
SHOWN IN FIG 3
FIG.6 - STEADY STATE POWER DERATING CURVE
2.0
1.6
1.2
1.0
8.0mm LEAD AREAS
0.1
0.1us
1.0us
10us
100us
TP, PULSE WIDTH
1.0ms
10ms
0.8
0.4
0.0
0
60Hz RESISTIVE OR
INDUCTIVE LOAD
25 50
75 100 125 150
TL, LEAD TEMPERATURE
175 200



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LITE-ON
SEMICONDUCTOR
Device
Uni-
directional
Device
Bi-
directional
Device
Marking code
Working
PeakReverse
Voltage
Breakdowm voltage
VBR Volts
Maximum
Reverse Voltage
at IRSM
(Clamping
Voltage)
Maximum
Reverse Surge
Current
(UNI) (BI) VRWM(Volts) Min. Max. @IT( mA) VRSM(Volts)
IRSM(Amps)
SMCJ5.0A SMCJ5.0CA GDE BDE
5.0
6.40 7.07
10
9.2
163.0
SMCJ6.0A SMCJ6.0CA GDG BDG
6.0
6.67 7.37
10
10.3
145.6
SMCJ6.5A SMCJ6.5CA GDK BDK
6.5
7.22 7.98
10
11.2
133.9
SMCJ7.0A SMCJ7.0CA GDM BDM
7.0
7.78 8.60
10
12.0
125.0
SMCJ7.5A SMCJ7.5CA GDP BDP
7.5
8.33 9.21
1.0
12.9
116.3
SMCJ8.0A SMCJ8.0CA GDR BDR
8.0
8.89 9.83
1.0
13.6
110.3
SMCJ8.5A SMCJ8.5CA GDT BDT
8.5
9.44 10.4
1.0
14.4
104.2
SMCJ9.0A SMCJ9.0CA GDV BDV
9.0
10.0 11.1
1.0
15.4
97.4
SMCJ10A SMCJ10CA GDX BDX
10
11.1 12.3
1.0
17.0
88.2
SMCJ11A SMCJ11CA GDZ BDZ
11
12.2 13.5
1.0
SMCJ12A SMCJ12CA GEE BEE
12
13.3 14.7
1.0
18.2
19.9
82.4
75.3
SMCJ13A SMCJ13CA GEG BEG
13
14.4 15.9
1.0
21.5
69.7
SMCJ14A SMCJ14CA GEK BEK
14
15.6 17.2
1.0
23.2
64.7
SMCJ15A SMCJ15CA GEM BEM
15
16.7 18.5
1.0
24.4
61.5
SMCJ16A SMCJ16CA GEP BEP
16
17.8 19.7
1.0
26.0
57.7
SMCJ17A SMCJ17CA GER BER
17
18.9 20.9
1.0
27.6
53.3
SMCJ18A SMCJ18CA GET BET
18
20.0 22.1
1.0
29.2
51.4
SMCJ20A SMCJ20CA GEV BEV
20
22.2 24.5
1.0
32.4
46.3
SMCJ20A4
GEV4
20
22.2 24.5
1.0
32.4
63.0
SMCJ22A SMCJ22CA GEX BEX
22
24.4 27.0
1.0
35.5
42.2
SMCJ24A SMCJ24CA GEZ BEZ
24
26.7 29.5
1.0
SMCJ24A4
GEZ4
24
26.7 29.5
1.0
38.9
38.9
38.6
60.0
SMCJ26A SMCJ26CA GFE BFE
26
28.9 31.9
1.0
42.1
35.6
SMCJ28A SMCJ28CA GFG BFG
28
31.1 34.4
1.0
45.4
33.0
SMCJ28A4
GFG4
28
31.1 34.4
1.0
45.4
49.0
SMCJ30A SMCJ30CA GFK BFK
30
33.3 36.8
1.0
48.4
31.0
SMCJ33A SMCJ33CA GFM BFM
33
36.7 40.6
1.0
SMCJ36A SMCJ36CA GFP BFP
36
40.0 44.2
1.0
SMCJ36A4
GFP4
36
40.0 44.2
1.0
SMCJ40A SMCJ40CA GFR BFR
40
44.4 49.1
1.0
53.3
58.1
58.1
64.5
28.1
25.8
28.0
23.3
SMCJ43A SMCJ43CA GFT BFT
43
47.8 52.8
1.0
SMCJ45A SMCJ45CA GFV BFV
45
50.0 55.3
1.0
SMCJ48A SMCJ48CA GFX BFX
48
53.3 58.9
1.0
SMCJ51A SMCJ51CA GFZ BFZ
51
56.7 62.7
1.0
SMCJ54A SMCJ54CA GGE BGE
54
60.0 66.3
1.0
SMCJ58A SMCJ58CA GGG BGG
58
64.4 71.2
1.0
SMCJ60A SMCJ60CA GGK BGK
60
66.7 73.7
1.0
SMCJ64A SMCJ64CA GGM BGM
64
71.1 78.6
1.0
SMCJ70A SMCJ70CA GGP BGP
70
77.8 86.0
1.0
SMCJ75A SMCJ75CA GGR BGR
75
83.3 92.1
1.0
SMCJ78A SMCJ78CA GGT BGT
78
86.7 95.8
1.0
SMCJ85A SMCJ85CA GGV BGV
85
94.4 104
1.0
SMCJ90A SMCJ90CA GGX BGX
90
100 111
1.0
SMCJ100A SMCJ100CA GGZ BGZ
100
111 123
1.0
SMCJ110A SMCJ110CA GHE BHE
110
122 135
1.0
SMCJ120A SMCJ120CA GHG BHG
120
133 147
1.0
SMCJ130A SMCJ130CA GHK BHK
130
144 159
1.0
SMCJ150A SMCJ150CA GHM BHM
150
167 185
1.0
SMCJ160A SMCJ160CA GHP BHP
160
178 197
1.0
SMCJ170A SMCJ170CA GHR BHR
170
189 209
1.0
SMCJ188A SMCJ188CA GHT BHT
188
209 222
1.0
SMCJ200A SMCJ200CA GHV BHV
200
224 247
1.0
SMCJ220A SMCJ220CA GHX BHX
220
246 272
1.0
69.4
72.7
77.4
82.4
87.1
93.6
96.8
103
113
121
126
137
146
162
177
193
209
243
259
275
292
324
356
21.6
20.6
19.4
18.2
17.2
16.0
15.5
14.6
13.3
12.4
11.4
10.4
10.3
9.3
8.4
7.9
7.2
6.2
5.8
5.5
5.1
4.6
4.2
NOTE :
1) Suffix 'A ' denotes 5% tolerance device
2) Add suffix 'C 'or ' CA ' after part number to specify Bi-directional devices.
3) For Bi-Directional devices having VR of 10 volts and under, the IR limit is double .
4) For Uni-directional devices VF max=3.5v at IF=100 A 300us square wave pulse.
Maximum
Reverse
Leakage at
VRWM
IR (uA)
1000
1000
500
200
100
50.0
20.0
10.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0



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Legal Disclaimer Notice
SMCJ 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.



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