SMCJ [TSC]
1500 Watts Suface Mount Transient Voltage Suppressor; 1500瓦Suface贴装型瞬态电压抑制器型号: | SMCJ |
厂家: | TAIWAN SEMICONDUCTOR COMPANY, LTD |
描述: | 1500 Watts Suface Mount Transient Voltage Suppressor |
文件: | 总7页 (文件大小:351K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
CREAT BY ART
SMCJ SERIES
1500 Watts Suface Mount Transient Voltage Suppressor
SMC/DO-214AB
Features
For surface mounted application
Low profile package
Built-in strain relief
Glass passivated junction
Excellent clamping capability
Fast response time: Typically less than 1.0ps from
0 volt to BV min
Typical IR less than 1uA above 10V
High temperature soldering guaranteed:
260℃ / 10 seconds at terminals
Plastic material used carried Underwriters
Laboratory Flammability Classification 94V-0
1500 watts peak pulse power capability with a
10/1000 us waveform
Green compound with suffix "G" on packing
code & prefix "G" on datecode
Mechanical Data
Case: Molded plastic
Terminals: Pure tin plated, lead free
Polarity: Indicated by cathode band
Standard packaging: 16mm tape per EIA Std RS-481
Weight: 0.26 gram
Ordering Information (example)
Packing
code
Packing code
Part No. Package
SMCJ5.0 SMC
Packing
(Green)
R7G
850 / 7" REEL
R7
Maximum Ratings and Electrical Characteristics
Rating at 25 ℃ ambient temperature unless otherwise specified.
Single phase, half wave, 60 Hz, resistive or inductive load.
For capacitive load, derate current by 20%
Value
Symbol
Unit
Type Number
Peak Power Dissipation at TA=25℃, Tp=1ms(Note 1)
PPK
PD
1500
5
Watts
Watts
Steady State Power Dissipation
Peak Forward Surge Current, 8.3ms Single Half
Sine-wave Superimposed on Rated Load
(JEDEC method)(Note 2) - Unidirectional Only
IFSM
200
Amps
Volts
Maximum Instantaneous Forward Voltage at 50 A for
Unidirectional Only (Note 3)
VF
3.5 / 5.0
RθJC
RθJA
10
55
Typical Thermal Resistance
℃/W
Operating and Storage Temperature Range
TJ, TSTG
-55 to +150
℃
Note 1: Non-repetitive Current Pulse Per Fig. 3 and Derated above TA=25℃ Per Fig. 2
Note 2: Mounted on 16mm x 16mm Copper Pads to Each Terminal
Note 3: VF=3.5V on SMCJ5.0 thru SMCJ90 Devices and VF=5.0V on SMCJ100 thru SMCJ170 Devices
Devices for Bipolar Applications
1. For Bidrectional Use C or CA Suffix for Types SMCJ5.0 through Types SMCJ170
2. Electrical Characterstics Apply in Both Directions
Version:J13
RATINGS AND CHARACTERISTIC CURVES (SMCJ SERIES)
FIG. 1 PEAK PULSE POWER RATING CURVE
FIG.2 PULSE DERATING CURVE
100
10
1
125
100
75
50
25
0
NON-REPETITIVE
PULSE WAVEFORM
SHOWN in FIG.3
TA = 25℃
0.1
0
25
50
75
100
125
150
175
200
0.1
1
10
100
1000
10000
TA, AMBIENT TEMPERATURE (oC)
tp, PULSE WIDTH, (uS)
FIG. 3 CLAMPING POWER PULSE WAVEFORM
PULSE WIDTH(td) is DEFINED
FIG. 4 MAXIMUM NON-REPETITIVE FORWARD SURGE
CURRENT
1000
100
10
140
120
100
80
as the POINT WHERE the PEAK
tr=10usec
8.3mS Single Half Sine Wave
JEDEC Method
UNIDIRECTIONAL ONLY
CURRENT DECAYS to 50% OF IPPM
Peak Value
IPPM
Half Value-IPPM/2
10/1000usec, WAVEFORM
as DEFINED by R.E.A.
60
40
20
td
0
0
0.5
1
1.5
2
2.5
3
3.5
4
1
10
100
t, TIME ms
NUMBER OF CYCLES AT 60 Hz
FIG. 5 TYPICAL JUNCTION CAPACITANCE
100000
10000
1000
100
UNIDIRECTIONAL
VR=0
VR-RATED
STAND-OFF
VOLTAGE
TA=25℃
f=1.0MHz
Vsig=50mVp-p
10
1
10
100
V(BR), BREAKDOWN VOLTAGE (V)
Version:J13
ELECTRICAL CHARACTERISTICS (TA=25℃ unless otherwise noted)
Maximum
Maximum
Clamping
Voltage at IPPM
Vc(V)
Breakdown Voltage
Test
Stand-Off
Voltage
VWM
Maximum
Reverse Leakage
@ VWM
Peak Surge
Current
IPPM
(A)(Note2)
Device
Marking
Code
VBR (V)
Current
IT
(mA)
10
10
10
10
10
10
10
10
1
Device
at IT
Min
6.4
Max
7.3
(V)
5
ID (uA)(Note3)
SMCJ5.0
GDD
GDE
GDF
GDG
GDH
GDK
GDL
GDM
GDN
GDP
GDQ
GDR
GDS
GDT
GDU
GDV
GDW
GDX
GDY
GDZ
GED
GEE
GEF
GEG
GEH
GEK
GEL
GEM
GEN
GEP
GEQ
GER
GES
GET
GEU
GEV
GEW
GEX
GEY
GEZ
GFD
GFE
GFF
GFG
GFH
GFK
GFL
1000
1000
1000
1000
500
500
200
200
100
100
50
50
20
20
10
10
5
164
171
138
152
128
140
118
131
110
122
105
115
99
9.6
SMCJ5.0A
SMCJ6.0
SMCJ6.0A
SMCJ6.5
SMCJ6.5A
SMCJ7.0
SMCJ7.0A
SMCJ7.5
SMCJ7.5A
SMCJ8.0
SMCJ8.0A
SMCJ8.5
SMCJ8.5A
SMCJ9.0
SMCJ9.0A
SMCJ10
6.4
7
5
9.2
6.67
6.67
7.22
7.22
7.78
7.78
8.33
8.33
8.89
8.89
9.44
9.44
10
8.15
7.37
8.82
7.98
9.51
8.6
6
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
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
6
6.5
6.5
7
7
10.30
9.21
10.9
9.83
11.5
10.4
12.2
11.1
13.6
12.3
14.9
13.5
16.3
14.7
17.6
15.9
19.1
17.2
20.4
18.5
21.8
19.7
23.1
20.9
24.4
22.1
27.1
24.5
29.8
26.9
32.6
29.5
35.3
31.9
38
7.5
7.5
8
1
1
1
8
1
8.5
8.5
9
1
109
93
1
10
1
9
102
83
11.1
11.1
12.2
12.2
13.3
13.3
14.4
14.4
15.6
15.6
16.7
16.7
17.8
17.8
18.9
18.9
20
1
10
10
11
11
12
12
13
13
14
14
15
15
16
16
17
17
18
18
20
20
22
22
24
24
26
26
28
28
30
30
33
33
36
36
SMCJ10A
SMCJ11
1
5
92
1
1
78
SMCJ11A
SMCJ12
1
1
86
1
1
71
SMCJ12A
SMCJ13
1
1
79
1
1
66
SMCJ13A
SMCJ14
1
1
73
1
1
61
SMCJ14A
SMCJ15
1
1
67
1
1
58
SMCJ15A
SMCJ16
1
1
64
1
1
54
SMCJ16A
SMCJ17
1
1
60
1
1
51
SMCJ17A
SMCJ18
1
1
57
1
1
48
SMCJ18A
SMCJ20
20
1
1
53
22.2
22.2
24.4
24.4
26.7
26.7
28.9
28.9
31.1
31.1
33.3
33.3
36.7
36.7
40
1
1
43
SMCJ20A
SMCJ22
1
1
48
1
1
39
SMCJ22A
SMCJ24
1
1
44
1
1
36
SMCJ24A
SMCJ26
1
1
40
1
1
33
SMCJ26A
SMCJ28
1
1
37
1
1
31
SMCJ28A
SMCJ30
34.4
40.7
36.8
44.9
40.6
48.9
44.2
1
1
34
1
1
29
SMCJ30A
SMCJ33
1
1
32
1
1
26
SMCJ33A
SMCJ36
GFM
GFN
GFP
1
1
29
1
1
24
SMCJ36A
40
1
1
27
Version:J13
ELECTRICAL CHARACTERISTICS (TA=25℃ unless otherwise noted)
Maximum
Maximum
Clamping
Voltage at IPPM
Vc(V)
Breakdown Voltage
Test
Stand-Off
Voltage
VWM
(V)
40
Maximum
Peak Pulse
Surge Current
IPPM
Device
Marking
Code
VBR (V)
Current
Reverse Leakage
Device
at IT
@ VWM
IT
(mA)
1
Min
44.4
44.4
47.8
47.8
50
Max
54.3
49.1
58.4
52.8
61.1
55.3
65.1
58.9
69.3
62.7
73.3
66.3
78.7
71.2
81.5
73.7
86.9
78.6
95.1
86
ID (uA)
1
(Note5)
(A)(Note5)
SMCJ40
GFQ
GFR
GFS
GFT
22
24
71.4
64.5
76.7
69.4
80.3
72.7
85.5
77.4
91.1
82.4
96.3
87.1
103
93.6
107
96.8
114
103
125
113
134
121
139
126
151
137
160
146
179
162
196
177
214
193
231
209
266
243
287
259
304
275
SMCJ40A
SMCJ43
1
40
1
1
43
1
20
SMCJ43A
SMCJ45
1
43
1
22
GFU
GFV
GFW
GFX
GFY
GFZ
1
45
1
19
SMCJ45A
SMCJ48
50
1
45
1
21
53.3
53.3
56.7
56.7
60
1
48
1
18
SMCJ48A
SMCJ51
1
48
1
20
1
51
1
17
SMCJ51A
SMCJ54
1
51
1
19
GGD
GGE
GGF
GGG
GGH
GGK
GGL
GGM
GGN
GGP
GGQ
GGR
GGS
GGT
GGU
GGV
GGW
GGX
GGY
GGZ
GHD
GHE
GHF
GHG
GHH
GHK
GHL
GHM
GHN
GHP
GHQ
GHR
1
54
1
16
SMCJ54A
SMCJ58
60
1
54
1
18
64.4
64.4
66.7
66.7
71.1
71.1
77.8
77.8
83.3
83.3
86.7
86.7
94.4
94.4
100
100
111
111
122
122
133
133
144
144
167
167
178
178
189
189
1
58
1
15
SMCJ58A
SMCJ60
1
58
1
16
1
60
1
14
SMCJ60A
SMCJ64
1
60
1
16
1
64
1
13.8
15
SMCJ64A
SMCJ70
1
64
1
1
70
1
12.6
13.9
11.7
13
SMCJ70A
SMCJ75
1
70
1
102
92.1
106
95.8
115
104
122
111
136
123
149
135
163
147
176
159
204
185
218
197
231
209
1
75
1
SMCJ75A
SMCJ78
1
75
1
1
78
1
11.3
12.5
10.4
11.5
9.8
10.7
8.8
9.7
8
SMCJ78A
SMCJ85
1
78
1
1
85
1
SMCJ85A
SMCJ90
1
85
1
1
90
1
SMCJ90A
SMCJ100
SMCJ100A
SMCJ110
SMCJ110A
SMCJ120
SMCJ120A
SMCJ130
SMCJ130A
SMCJ150
SMCJ150A
SMCJ160
SMCJ160A
SMCJ170
SMCJ170A
Notes:
1
90
1
1
100
100
110
110
120
120
130
130
150
150
160
160
170
170
1
1
1
1
1
1
1
8.9
7.3
8.1
6.8
7.5
5.8
6.4
5.4
6
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
5.1
5.7
1
1
1. VBR measure after IT applied for 300us, IT=square wave pulse or equivalent.
2. Surge current waveform per Figure. 3 and derate per Figure. 2.
3. For bipolar types having VWM of 10 volts and less, the ID limit is doubled.
4. All terms and symbols are consistent with ANSI/IEEE C62.35.
Version:J13
Ordering information
Packing Green Compound
Part No.
Package
Packing
code
Packing code
850 / 7" REEL
3K / 13" REEL
SMC
SMC
SMC
R7G
R7
SMCJxx
(Note)
R6G
R6
3K / 13" Plsatic REEL
M6G
M6
Note: "x" is Device Code from "5.0" thru "170".
Tape & Reel specification
A
B
C
D
min
21
D
min
20.2
N
±1.0
62
N
±0.5
75
G
+0.8;-0
16.2
T
max
18.6
T
Reel Size Tape Size
7" 16mm
Reel Size Tape Size
13" 16mm
±2.0
178
A
max
330
±0.4 +0.5;-0.2
1.9
B
±0.5
2
13
C
±0.5
13
G
+2.0;-0
16.4
max
22.4
Unit (mm)
Suggested PAD Layout
Unit(mm)
Symbol
3.3
2.5
6.8
4.4
9.3
A
B
C
D
E
Dimensions
Unit(mm)
Min
Unit(inch)
DIM.
Max
3.20
7.11
6.22
2.62
1.60
8.13
0.20
0.31
1.56
Min
Max
A
B
C
D
E
F
G
H
I
2.90
6.60
5.59
2.00
1.00
7.75
0.10
0.15
1.26
0.114
0.260
0.220
0.079
0.039
0.305
0.004
0.006
0.050
0.126
0.280
0.245
0.103
0.063
0.320
0.008
0.012
0.061
Marking Diagram
P/N
G
= Specific Device Code
= Green Compound
= Date Code
YW
TVS APPLICATION NOTES:
Transient Voltage Suppressors may be used at various points in a circuit to provide various degrees of
protection. The following is a typical linear power supply with transient voltage suppressor units plaved at
different points. All provide protection
Transient Voltage Suppressor 1 provides maximum protection. However, the system will probably require
replacement of the line fuse(F) since it provides a dominant portion of the series impedance when a surge is
encountered.
Hower, we do not recommend to use the TVS diode here, unless we can know the electric circuit
impedance and the magnitude of surge rushed into the circuit. Otherwise the TVS diode is easy to be
destroyed by voltage surge.
Transient Voltage Suppressor 2 provides execllent protection of circuitry excluding the transformer(T).
However, since the transformer is a large part of the series impedance, the chance of the line fuse opening
during the surge condition is reduced.
Transient Voltage Suppressor 3 provides the load with complete protection. It uses a unidirectional
Transient Voltage Suppressor, which is a cost advantage. The series impedance now includes the line fuse,
transformer, and bridge rectifier(B) so failure
Any combination of this three, or any one of these applivations, will prevent damage to the load. This would
require varying trade-offs in power supply protection versus maintenance(changing the time fuse).
An additional method is to utilize the Trans
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