SMBJ18 [DAESAN]
POWER 600Watts VOLTAGE 5.0 to 188 Volts; 功率600Watts电压5.0〜 188伏型号: | SMBJ18 |
厂家: | DAESAN ELECTRONICS CORP. |
描述: | POWER 600Watts VOLTAGE 5.0 to 188 Volts |
文件: | 总4页 (文件大小:709K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
POWER 600Watts
VOLTAGE 5.0 to 188 Volts
SMBJ5.0 THRU SMBJ188CA
Features
· Underwriters Laboratory recognition under UL standard
for safety 497B : Isolated loop curcuit protection
· Low profile package with built-in strain relief for surface
mounted applications
DO-214AA (SMB)
· Glass passivated junction
· Low incremental surge resistance, excellent clamping
capability
· 600W peak pulse power capability with a 10/1000μS
waveform, repetition rate(duty cycle) : 0.01%
· Very fast response time
0.083(2.11)
0.075(1.91)
0.155(3.94)
0.130(3.30)
0.185(4.70)
0.160(4.06)
· High temperature soldering guaranteed : 250℃/10 seconds
at terminals
0.012(0.31)
0.006(0.15)
0.096(2.44)
0.083(2.13)
Mechanical Data
· Case : JEDEC DO-214AA(SMB) molded plastic
over passivated chip
· Terminals : Solder plated , solderable per
MIL-STD-750, method 2026
0.008(0.203)
MAX.
0.050(1.27)
0.030(0.76)
0.220(5.59)
0.200(5.08)
· Polarity : For uni-directional types the band denotes
the cathode, which is positive with respect to the
anode under normal TVS operation
· Mounting Position : Any
Dimensions in inches and (millimeters)
· Weight : 0.003 ounce, 0.093 gram
Devices For Bidirectional Applications
· For bi-directional devices, use suffix C or CA (e.g. SMBJ10C, SMBJ10CA).
Electrical characteristics apply in both directions.
Maximum Ratings And Electrical Characteristics
(Ratings at 25℃ ambient temperature unless otherwise specified)
Symbols
Values
Units
Peak pulse power dissipation with a 10/1000μS waveform (Note 1,2. Fig. 1)
P
PPM
Minimum 600
Watts
Peak pulse current with a waveform (Note 1)
I
PPM
See next table
100
Amps
Amps
Peak forward surge current, 8.3mm single half sine-wave unidirectional only (Note 2)
I
FSM
Typical thermal resistance, junction to ambient (Note 3)
Typical thermal resistance, junction to lead
℃/W
℃/W
℃
RθJA
RθJL
100
20
Operating junction and storage temperature range
TJ
,TSTG
-55 to +150
Notes:
(1) Non repetitive current pulse, per Fig.3 and derated above TA=25℃ per Fig.2
(2) Mounted on 0.2×0.2"(5.0×5.0mm) copper pads to each terminal
(3) Mounted on minimum recommended pad layout
ELECTRICAL CHARACTERISTIC
Ratings at 25℃ ambient temperature unless otherwise specified. VF=3.5V at IF=50A (uni-directional only)
Device
Marking
Code
Breakdown Voltage
Maximum
Reverse Leakage Peak Pulse Surge
Maximum
Maximum
Clamping
Voltage at I
PPM
(1)
Test
Current
Stand-off
Voltage
V
(BR)
at I
T
Device Type
(V)
at V
D (μA)
Current I
(A)(2)
WM
(3)
PPM
I
(mA)
V
WM
(V)
T
I
V (V)
C
UNI
BI
KD
KE
KF
KG
AH
AK
KL
KM
AN
AP
AQ
AR
AS
AT
Min
6.40
6.40
6.67
6.67
7.22
7.22
7.78
7.78
8.33
8.33
8.89
8.89
9.44
9.44
10.0
10.0
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
20.0
20.0
22.2
22.2
24.4
24.4
26.7
26.7
28.9
28.9
31.1
31.1
33.3
33.3
Max
7.82
7.07
8.15
7.37
8.82
7.98
9.51
8.60
10.2
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
S MBJ 5.0(C )
S MBJ 5.0(C )A(5)
S MBJ 6.0(C )
S MBJ 6.0(C )A
S MBJ 6.5(C )
S MBJ 6.5(C )A
S MBJ 7.0(C )
S MBJ 7.0(C )A
S MBJ 7.5(C )
S MBJ 7.5(C )A
S MBJ 8.0(C )
S MBJ 8.0(C )A
S MBJ 8.5(C )
S MBJ 8.5(C )A
S MBJ 9.0(C )
S MBJ 9.0(C )A
S MBJ 10(C )
S MBJ 10(C )A
S MBJ 11(C )
S MBJ 11(C )A
S MBJ 12(C )
S MBJ 12(C )A
S MBJ 13(C )
S MBJ 13(C )A
S MBJ 14(C )
S MBJ 14(C )A
S MBJ 15(C )
S MBJ 15(C )A
S MBJ 16(C )
S MBJ 16(C )A
S MBJ 17(C )
S MBJ 17(C )A
S MBJ 18(C )
S MBJ 18(C )A
S MBJ 20(C )
S MBJ 20(C )A
S MBJ 22(C )
S MBJ 22(C )A
S MBJ 24(C )
S MBJ 24(C )A
S MBJ 26(C )
S MBJ 26(C )A
S MBJ 28(C )
S MBJ 28(C )A
S MBJ 30(C )
S MBJ 30(C )A
KD
KE
KF
KG
KH
KK
KL
KM
KN
KP
KQ
KR
KS
KT
KU
KV
KW
KX
KY
KZ
LD
LE
10
10
5.0
800
800
800
800
500
500
200
200
100
100
50
62.5
65.2
52.6
58.3
48.8
53.6
45.1
50.0
42.0
46.5
40.0
44.1
37.7
41.7
35.5
39.0
31.9
35.3
29.9
33.0
27.3
30.2
25.2
27.9
23.3
25.9
22.3
24.6
20.8
23.1
19.7
21.7
18.6
20.5
16.8
18.5
15.2
16.9
14.0
15.4
12.9
14.3
12.0
13.2
11.2
12.4
9.6
9.2
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
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
10
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
10
10
10
10
10
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
50
20
20
AU
AV
AW
AX
KY
KZ
BD
BE
LF
10
10
5.0
5.0
5.0
5.0
5.0
5.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
LF
17.6
15.9
LG
LH
LK
LG
BH
BK
BL
BM
LN
LM
LQ
LR
19.1
17.2
LL
20.4
18.5
21.8
19.7
LM
LN
LP
LQ
LR
23.1
20.9
24.4
22.1
27.1
24.5
29.8
26.9
32.6
29.5
35.3
31.9
38.0
34.4
40.7
36.8
LS
BS
BT
LU
LV
LT
LU
LV
LW
LX
LY
BW
BX
BY
BZ
C D
C E
MF
MG
C H
C K
LZ
MD
ME
MF
MG
MH
MK
Notes : (1) P ulse test: tp = 50ms
(2) S urge current waveform per Fig. 3 and derate per Fig. 2
(3) For bi-directional types having VWM of 10 Volts and less, the ID limit is doubled
(4) All terms and symbols are consistent with ANS I/IE E E C 62.35
(5) For the bidirectional S MBG /S MBJ 5.0C A, the maximum V(BR ) is 7.25V
ELECTRICAL CHARACTERISTIC
Ratings at 25℃ ambient temperature unless otherwise specified. VF=3.5V at IF=50A (uni-directional only)
Breakdown Voltage
Device
Marking
Code
Maximum
Reverse Leakage Peak Pulse Surge
at VWM
Maximum
Maximum
Clamping
Test
Current
IT (mA)
Stand-off
Voltage
VWM (V)
(1)
V(BR) at IT
Device Type
(V)
Current IPPM Voltage at IPPM
(3)
ID (
μ
A)
(A)(2)
10.2
11.3
9.3
10.3
8.4
9.3
7.8
8.6
7.5
8.3
7.0
7.8
6.6
7.3
6.2
6.9
5.8
6.4
5.6
6.2
5.3
5.8
4.8
5.3
4.5
5.0
4.3
4.8
4.0
4.4
3.8
4.1
3.4
3.7
3.1
3.4
2.8
3.1
2.6
2.9
2.2
2.5
2.1
2.3
2.0
2.2
1.7
2.0
VC (V)
59.0
53.3
64.3
58.1
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
268
243
287
259
304
275
344
328
UNI
BI
C L
C M
C N
C P
C Q
C R
C S
C T
MU
MV
MW
MX
MY
MZ
ND
NE
NF
NG
NH
NK
NL
NM
NN
NP
NQ
NR
NS
NT
NU
NV
NW
NX
NY
NZ
P D
P E
Min
36.7
36.7
40.0
40.0
44.4
44.4
47.8
47.8
50.0
50.0
53.3
53.3
56.7
56.7
60.0
60.0
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
Max
44.9
40.6
48.9
44.2
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
86.0
102
92.1
106
95.8
115
104
122
111
136
123
149
135
163
147
176
159
204
185
218
197
231
209
255
231
S MBJ 33(C )
ML
MM
MN
MP
MQ
MR
MS
MT
MU
MV
MW
MX
MY
MZ
ND
NE
NF
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
33
33
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
S MBJ 33(C )A
S MBJ 36(C )
36
S MBJ 36(C )A
S MBJ 40(C )
36
40
S MBJ 40(C )A
S MBJ 43(C )
40
43
S MBJ 43(C )A
S MBJ 45(C )
43
45
S MBJ 45(C )A
S MBJ 48(C )
45
48
S MBJ 48(C )A
S MBJ 51(C )
48
51
S MBJ 51(C )A
S MBJ 54(C )
51
54
S MBJ 54(C )A
S MBJ 58(C )
54
58
S MBJ 58(C )A
S MBJ 60(C )
NG
NH
NK
NL
58
60
S MBJ 60(C )A
S MBJ 64(C )
60
64
S MBJ 64(C )A
S MBJ 70(C )
NM
NN
NP
NQ
NR
NS
NT
NU
NV
NW
NX
NY
NZ
P D
P E
64
70
S MBJ 70(C )A
S MBJ 75(C )
70
75
S MBJ 75(C )A
S MBJ 78(C )
75
78
S MBJ 78(C )A
S MBJ 85(C )
78
85
S MBJ 85(C )A
S MBJ 90(C )
85
90
S MBJ 90(C )A
S MBJ 100(C )
S MBJ 100(C )A
S MBJ 110(C )
S MBJ 110(C )A
S MBJ 120(C )
S MBJ 120(C )A
S MBJ 130(C )
S MBJ 130(C )A
S MBJ 150(C )
S MBJ 150(C )A
S MBJ 160(C )
S MBJ 160(C )A
S MBJ 170(C )
S MBJ 170(C )A
S MBJ 188(C )
S MBJ 188(C )A
100
90
111
100
100
110
110
120
120
130
130
150
150
160
160
170
170
188
188
111
122
122
P F
P F
133
P G
P H
P K
P G
P H
P K
P L
133
144
144
P L
167
P M
P N
P P
P M
P N
P P
P Q
P R
P T
167
178
178
P Q
P R
189
189
P T
209
P S
P S
209
Notes : (1) P ulse test: t = 50ms
p
(2) S urge current waveform per Fig. 3 and derate per Fig. 2
(3) For bi-directional types having V of 10 Volts and less, the I limit is doubled
WM
D
(4) All terms and symbols are consistent with ANS I/IE E E C 62.35
RATINGS AND CHARACTERISTIC CURVES SMBJ5.0 THRU SMBJ188CA
Fig. 2ÐP uls e Derating C ur ve
Fig. 1ÐP eak P uls e Power R ating C urve
100
100
10
1
75
50
25
0
0.2 x 0.2" (0.5 x 0.5mm)
C opper P ad Areas
0.1
25
50
75
150
175
200
0
100
125
0.1μ
s
1.0
μ
s
1 0
μs
100
1.0ms
10ms
td , P ulse Width (sec.)
TA
,
Ambient Temperature ( C )
Fig. 3Ð P uls e Waveform
Fig. 4ÐT ypical J unction C apacitance
6,000
1,000
150
100
50
Measured at
Zero Bias
TJ = 25 oC
P ulse Width (td)
tr = 10μs
is defined as the point
where the peak current
decays to 50% of IP P M
P eak Value
IP P M
Half Value IP P
IP P M
2
VR , Measured at
S tand-Off
Voltage, VWM
100
10/1000
μ
s
W
aveform
as defined by R .E .A.
Uni-Directional
Bi-Directional
TJ = 25 oC
f = 1.0MHz
td
Vsig = 50mVp-p
0
10
1.0
3.0
4.0
0
2.0
1
10
100
200
VWM
,
R everse S tand-Off Voltage (V)
t , Time (ms)
Fig. 6ÐMaximum Non-R epetitive P eak
Forward S ugr e C urrent
Fig. 5ÐTypical Trans ient Thermal
Impedance
100
200
100
8.3ms S ingle Half S ine-Wave
(J E DE C Method)
Unidirectional Only
10
1.0
0.1
10
0.001
0.01
0.1
1
10
100
1000
1
1
0
100
Number of C ycles at 60HZ
tp
,
P ulse Duration (sec)
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