SMCJ110CA Datasheet PDF - LGE

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SMCJ110CA
LGE

Part Number SMCJ110CA
Description Transient Voltage Suppressors
Page 4 Pages


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Working Voltage: 5.0 to 440 V
Peak Pulse Power: 1500 W
Features
˗ Glass passivated chip
˗ 1500 W peak pulse power capability with a
10/1000 ȝs waveform, repetitive rate (duty
cycle):0.01 %
˗ Low leakage
˗ Uni and Bidirectional unit
˗ Excellent clamping capability
˗ Very fast response time
˗ RoHS compliant
Mechanical Data
˗ Case: Molded plastic
˗ Epoxy: UL 94V-0 rate flame retardant
˗ Lead: Solderable per MIL-STD-750, method
2026
˗ Polarity: Color band denotes cathode end
except Bipolar
˗ Mounting position: Any
SMCJ Series
Transient Voltage Suppressors
SMC/ DO-214AB
Maximum Ratings(TA=25ɗ unless otherwise noted)
Parameter
Peak power dissipation with a 10/1000ȝs waveform(1)
Peak pulse current wih a 10/1000ȝs waveform(1)
Symbol
Value
PPP 1500
IPP See Next Table
Power dissipation on infinite heatsink at TL = 75 °C
Peak forward surge current, 8.3 ms single half sine-
wave unidirectional only(2)
PD
IFSM
6.5
200
Maximum instantaneous forward voltage at 100 A for
unidirectional only(3)
VF
3.5/5.0
Operating junction and storage temperature range
Note:
TJ, TSTG –55 to +150
(1)Non-repetitive current pulse per Fig.5 and derated above TA= 25 °C per Fig.1
(2)Measured on 8.3 ms single half sine-wave or equivalent square wave, duty cycle = 4 pulses per minute maximum
(3)VF<3.5V for devices of VBR<200V and VF<5.0V for devices of VBR>201V
UNIT
W
A
W
A
V
°C



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SMCJ Series
Transient Voltage Suppressors
Electrical Characteristics(TA=25ɗ unless otherwise noted)
Part Number Part Number
(Uni)
(Bi)
Device
Marking
Code
Uni Bi
Maximum
Breakdown Voltage VBR @IT
Reverse
Leakage IR
@VRWM
Min (V) Max (V) IT (mA) (uA)
SMCJ5.0 SMCJ5.0C GDD BDD
6.40
7.30 10
SMCJ5.0A SMCJ5.0CA GDE BDE 6.40 7.00 10
SMCJ6.0 SMCJ6.0C GDF BDF 6.67 8.15 10
SMCJ6.0A SMCJ6.0CA GDG BDG
6.67
7.37 10
SMCJ6.5 SMCJ6.5C GDH BDH
7.22
8.82 10
SMCJ6.5A SMCJ6.5CA GDK BDK
7.22
7.98 10
SMCJ7.0 SMCJ7.0C GDL BDL 7.78 9.51 10
SMCJ7.0A SMCJ7.0CA GDM BDM
7.78
8.60 10
SMCJ7.5 SMCJ7.5C GDN BDN
8.33 10.20 1
SMCJ7.5A SMCJ7.5CA GDP BDP 8.33 9.21 1
SMCJ8.0 SMCJ8.0C GDQ BDQ
8.89 10.90 1
SMCJ8.0A SMCJ8.0CA GDR BDR
8.89
9.83 1
SMCJ8.5 SMCJ8.5C GDS BDS
9.44 11.50 1
SMCJ8.5A SMCJ8.5CA GDT BDT
9.44 10.40 1
SMCJ9.0 SMCJ9.0C GDU BDU 10.00 12.20 1
SMCJ9.0A SMCJ9.0CA GDV BDV 10.00 11.10 1
SMCJ10
SMCJ10C GDW BDW 11.10 13.60 1
SMCJ10A SMCJ10CA GDX BDX 11.10 12.30 1
SMCJ11
SMCJ11C GDY BDY 12.20 14.90 1
SMCJ11A SMCJ11CA GDZ BDZ 12.20 13.50 1
SMCJ12
SMCJ12C GED BED 13.30 16.30 1
SMCJ12A SMCJ12CA GEE BEE 13.30 14.70 1
SMCJ13
SMCJ13C GEF BEF 14.40 17.60 1
SMCJ13A SMCJ13CA GEG BEG 14.40 15.90 1
SMCJ14
SMCJ14C GEH BEH 15.60 19.10 1
SMCJ14A SMCJ14CA GEK BEK 15.60 17.20 1
SMCJ15
SMCJ15C GEL BEL 16.70 20.40 1
SMCJ15A SMCJ15CA GEM BEM 16.70 18.50 1
SMCJ16
SMCJ16C GEN BEN 17.80 21.80 1
SMCJ16A SMCJ16CA GEP BEP 17.80 19.70 1
SMCJ17
SMCJ17C GEQ BEQ 18.90 23.10 1
SMCJ17A SMCJ17CA GER BER 18.90 20.90 1
SMCJ18
SMCJ18C GES BES 20.00 24.40 1
SMCJ18A SMCJ18CA GET BET 20.00 22.10 1
SMCJ19
SMCJ19C GEA BEA 21.13 25.76 1
SMCJ19A SMCJ19CA GEB BEB 21.10 23.30 1
SMCJ20
SMCJ20C GEU BEU 22.20 27.10 1
SMCJ20A SMCJ20CA GEV BEV 22.20 24.50 1
SMCJ22
SMCJ22C GEW BEW 24.40 29.80 1
SMCJ22A SMCJ22CA GEX BEX 24.40 26.90 1
SMCJ24
SMCJ24C GEY BEY 26.70 32.60 1
SMCJ24A SMCJ24CA GEZ BEZ 26.70 29.50 1
SMCJ26
SMCJ26C GFD BFD 28.90 35.30 1
SMCJ26A SMCJ26CA GFE BFE 28.90 31.90 1
SMCJ28
SMCJ28C GFF BFF 31.10 38.00 1
SMCJ28A SMCJ28CA GFG BFG 31.10 34.40 1
SMCJ30
SMCJ30C GFH BFH 33.30 40.70 1
SMCJ30A SMCJ30CA GFK BFK 33.30 36.80 1
SMCJ33
SMCJ33C GFL BFL 36.70 44.90 1
SMCJ33A SMCJ33CA GFM BFM 36.70 40.60 1
SMCJ36
SMCJ36C GFN BFN 40.00 48.90 1
SMCJ36A SMCJ36CA GFP BFP 40.00 44.20 1
Note:
1. Suffix 'A ' denotes 5% tolerance device. Without 'A' denotes 10% tolerance device
800
800
800
800
500
500
200
200
100
100
50
50
20
20
10
10
5
5
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
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
Working
Peak
Reverse
Voltage
VRWM
5(V.0)
5.0
6.0
6.0
6.5
6.5
7.0
7.0
7.5
7.5
8.0
8.0
8.5
8.5
9.0
9.0
10.0
10.0
11.0
11.0
12.0
12.0
13.0
13.0
14.0
14.0
15.0
15.0
16.0
16.0
17.0
17.0
18.0
18.0
19.0
19.0
20.0
20.0
22.0
22.0
24.0
24.0
26.0
26.0
28.0
28.0
30.0
30.0
33.0
33.0
36.0
36.0
Maximum Maximum
Reverse Clamping
Surge Voltage VC
Current IPP @IPP
(A) (V)
156.25
163.04
131.58
145.63
121.95
133.93
112.78
125.00
104.90
116.28
100.00
110.29
94.34
104.17
88.76
97.40
79.79
88.24
74.63
82.42
68.18
75.38
63.03
69.77
58.14
64.66
55.76
61.48
52.08
57.69
49.18
54.35
46.58
51.37
44.10
48.73
41.90
46.30
38.07
42.25
34.88
38.56
32.19
35.63
30.00
33.04
28.04
30.99
25.42
28.14
23.33
25.82
9.6
9.2
11.4
10.3
12.3
11.2
13.3
12.0
14.3
12.9
15.0
13.6
15.9
14.4
16.9
15.4
18.8
17.0
20.1
18.2
22.0
19.9
23.8
21.5
25.8
23.2
26.9
24.4
28.8
26.0
30.5
27.6
32.2
29.2
34.0
30.8
35.8
32.4
39.4
35.5
43.0
38.9
46.6
42.1
50.0
45.4
53.5
48.4
59.0
53.3
64.3
58.1



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SMCJ Series
Transient Voltage Suppressors
Electrical Characteristics(TA=25ɗ unless otherwise noted)
Part Number Part Number
(Uni)
(Bi)
Device
Marking
Code
Uni Bi
Maximum
Breakdown Voltage VBR @IT
Reverse
Leakage IR
@VRWM
Min (V) Max (V) IT (mA) (uA)
SMCJ40
SMCJ40A
SMCJ43
SMCJ43A
SMCJ45
SMCJ45A
SMCJ48
SMCJ48A
SMCJ40C
SMCJ40CA
SMCJ43C
SMCJ43CA
SMCJ45C
SMCJ45CA
SMCJ48C
SMCJ48CA
GFQ BFQ
GFR BFR
GFS BFS
GFT BFT
GFU BFU
GFV BFV
GFW BFW
GFX BFX
44.40
44.40
47.80
47.80
50.00
50.00
53.30
53.30
54.30
49.10
58.40
52.80
61.10
55.30
65.10
58.90
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
SMCJ51
SMCJ51A
SMCJ54
SMCJ54A
SMCJ58
SMCJ58A
SMCJ60
SMCJ60A
SMCJ64
SMCJ51C
SMCJ51CA
SMCJ54C
SMCJ54CA
SMCJ58C
SMCJ58CA
SMCJ60C
SMCJ60CA
SMCJ64C
GFY BFY
GFZ BFZ
GGD BGD
GGE BGE
GGF BGF
GGG BGG
GGH BGH
GGK BGK
GGL BGL
56.70
56.70
60.00
60.00
64.40
64.40
66.70
66.70
71.10
69.30
62.70
73.30
66.30
78.70
71.20
81.50
73.70
86.90
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
SMCJ64A
SMCJ70
SMCJ70A
SMCJ75
SMCJ75A
SMCJ78
SMCJ78A
SMCJ80
SMCJ80A
SMCJ64CA
SMCJ70C
SMCJ70CA
SMCJ75C
SMCJ75CA
SMCJ78C
SMCJ78CA
SMCJ80C
SMCJ80CA
GGM BGM
GGN BGN
GGP BGP
GGQ BGQ
GGR BGR
GGS BGS
GGT BGT
GGA BGA
GGB BGB
71.10
77.80
77.80
83.30
83.30
86.70
86.70
88.96
88.80
78.60
95.10
86.00
102.00
92.10
106.00
95.80
108.80
97.60
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
SMCJ85
SMCJ85A
SMCJ90
SMCJ90A
SMCJ100
SMCJ100A
SMCJ110
SMCJ110A
SMCJ120
SMCJ85C
SMCJ85CA
SMCJ90C
SMCJ90CA
SMCJ100C
SMCJ100CA
SMCJ110C
SMCJ110CA
SMCJ120C
GGU BGU
GGV BGV
GGW BGW
GGX BGX
GGY BGY
GGZ BGZ
GHD BHD
GHE BHE
GHF BHF
94.40
94.40
100.00
100.00
111.00
111.00
122.00
122.00
133.00
115.00
104.00
122.00
111.00
136.00
123.00
149.00
135.00
163.00
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
SMCJ120A
SMCJ130
SMCJ130A
SMCJ140
SMCJ140A
SMCJ150
SMCJ150A
SMCJ160
SMCJ160A
SMCJ120CA
SMCJ130C
SMCJ130CA
SMCJ140C
SMCJ140CA
SMCJ150C
SMCJ150CA
SMCJ160C
SMCJ160CA
GHG BHG
GHH BHH
GHK BHK
GHA BHA
GHB BHB
GHL BHL
GHM BHM
GHN BHN
GHP BHP
133.00
144.00
144.00
155.68
155.00
167.00
167.00
178.00
178.00
147.00
176.00
159.00
190.40
171.00
204.00
185.00
218.00
197.00
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
SMCJ170
SMCJ170A
SMCJ180
SMCJ180A
SMCJ190
SMCJ190A
SMCJ200A
SMCJ220A
SMCJ250A
SMCJ300A
SMCJ350A
SMCJ400A
SMCJ440A
SMCJ170C
SMCJ170CA
SMCJ180C
SMCJ180CA
SMCJ190C
SMCJ190CA
SMCJ200CA
SMCJ220CA
SMCJ250CA
SMCJ300CA
SMCJ350CA
SMCJ400CA
SMCJ440CA
GHQ BHQ
GHR BHR
GHS BHS
GHT BHT
GHU BHU
GHV BHV
GHW BHW
GHX BHX
GHZ BHZ
GJE BJE
GJG BJG
GJK BJK
GJM BJM
189.00
189.00
200.16
200.00
211.28
211.00
224.00
246.00
279.00
335.00
391.00
447.00
492.00
231.00
209.00
244.80
220.00
258.40
232.00
247.00
272.00
309.00
371.00
432.00
494.00
543.00
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
Working
Peak
Reverse
Voltage
VRWM
4(0V.0)
40.0
43.0
43.0
45.0
45.0
48.0
48.0
51.0
51.0
54.0
54.0
58.0
58.0
60.0
60.0
64.0
64.0
70.0
70.0
75.0
75.0
78.0
78.0
80.0
80.0
85.0
85.0
90.0
90.0
100.0
100.0
110.0
110.0
120.0
120.0
130.0
130.0
140.0
140.0
150.0
150.0
160.0
160.0
170.0
170.0
180.0
180.0
190.0
190.0
200.0
220.0
250.0
300.0
350.0
400.0
440.0
Maximum Maximum
Reverse Clamping
Surge Voltage VC
Current IPP @IPP
(A) (V)
21.01
71.4
23.26
64.5
19.56
76.7
21.61
69.4
18.68
80.3
20.63
72.7
17.54
85.5
19.38
77.4
16.47
91.1
18.20
82.4
15.58
96.3
17.22
87.1
14.56
103.0
16.03
93.6
14.02
107.0
15.50
96.8
13.16
114.0
14.56
103.0
12.00
125.0
13.27
113.0
11.19
134.0
12.40
121.0
10.79
139.0
11.90
126.0
10.47
143.2
11.57
129.6
9.93 151.0
10.95
137.0
9.38 160.0
10.27
146.0
8.38 179.0
9.26 162.0
7.65 196.0
8.47 177.0
7.01 214.0
7.77 193.0
6.49 231.0
7.18 209.0
5.99 250.6
6.61 226.8
5.60 268.0
6.17 243.0
5.23 287.0
5.79 259.0
4.93 304.0
5.45 275.0
4.66 322.2
5.14 291.6
4.41 340.1
4.87 307.8
4.60 324.0
4.20 356.0
3.70 405.0
3.10 486.0
2.60 567.0
2.30 648.0
2.10 713.0



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SMCJ Series
Transient Voltage Suppressors
Ratings and Characteristics Curves (TA=25ɗ unless otherwise noted)
A1M00BIENAVERAGE FORWARD CURRENT, (A)
0 100
25 100
71550 0
200
1 200 TJ = TJ max.
160 100 30 8.3 ms Single Half Sine-Wave
120
50
80
25
40
0
0 25 50 75 100 125 150 175 200
Ambient Temperature ,TA (ɗ)
Fig. 1 - Pulse Derating Curve
8.0
0 7.0 6.5
70 6.5
6.0
## 0
5.0
4.0
3.0
2.0
1.0
0.0
0
25 50 75 100 125 150 175 200
Lead Temperature , TL (ɗ)
Fig. 3 - Steady State Power Derating Curve
0
1
100
10
1
0.1
0.1
10
Number of Cycles at 60 Hz
Fig. 2 - Maximum Non-Repetitive
Surge Current
100
0.1
10000
59
0.74
1
10
100
1000
10000
Pulse Width ,td (ȝs)
Fig. 4 - Peak Pulse Power Rating Curve
100
50
0
0
Tr=10ȝs
Peak Value
(Ipp)
TJ = 25 ƱC
Pulse Width (td) is defined as the
pdoecina0tyws thoer5e0t%he0opfeIapkpcurrent
0.2 100
Half V0a.l5ue = Ipp 76
1 2 50
1.5 33
1as02/d1e0f0in0edȝs2beyc3.RW.Ea.vAe.form
3 13
td 4 10
12
Time , (ms)
3
4
100000
10000
1000
Ķ
IJIJııı
Ķ
ĸııı
ĵĶı
ijıı
ĵĶı
IJıı
Bi-directional
@zero bias
Uni-directional
@zero bias
Uni-directĶionalĵ@ĶıVRWM
100 ķııı IJĸ
Ķ ĵĶı
10
1
1
Ķııı ijIJ
TJ=25 °C
f=1.0MHz
Bi-directional @VRWM
10 100
Reverse Breakdown Voltage,VBR (V)
1000
Fig. 5 - Pulse Waveform
Fig. 6 - Typical Junction Capacitance



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