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SMBJ100A

极性:Unidirectional 峰值脉冲电流(10/1000us):3.7A 箝位电压:162V 击穿电压(最小值):111V 反向关断电压(典型值):100V VBR=128V, Vc=162V, Ipp=3.7A,单向

器件类别:分立半导体    TVS二极管   

厂商名称:深圳辰达行电子(MDD)

厂商官网:http://www.microdiode.com/

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器件参数
参数名称
属性值
极性
Unidirectional
峰值脉冲电流(10/1000us)
3.7A
箝位电压
162V
击穿电压(最小值)
111V
反向关断电压(典型值)
100V
文档预览
SMBJ5.0 THRU SMBJ170CA
SURFACE MOUNT TRANSIENT VOLTAGE SUPPRESSOR
Breskdown voltage: 5.0-170 Volts
Peak pulse power: 600 Wallts
FEATURE
DO-214AA/SMB
Optimzed for LAN protection applications
Ideal for ESD protection of data lines in accordance
with IEC 1000-4-2(IEC801-2)
Ideal for EFT protection of data lines in accordance
with IEC1000-4-4(IEC801-2)
Plastic package has Underwriters Laboratory Flammability
Classification 94V-0
Glass passivated junction
600w peak pulse power capability
Excellent clamping capability
Low incremental xurge resistance
Fast response time:typically less than 1.0ps from 0v to
V
(BR)
min
High temperature soldering guaranteed:
265 C/10S at terminals
0.091 (2.30)
0.067 (1.70)
0.155(3.94)
0.130(3.30)
0.180(4.57)
0.160(4.06)
0.012(0.305)
0.006(0.152)
0.122(3.12)
0.110(2.82)
MECHANICAL DATA
0.008(0.203)MAX.
0.060(1.52)
0.030(0.76)
0.220(5.59)
0.205(5.21)
Dimensions in inches and (millimeters)
Case:
JEDEC DO-214AA molded plastic body over
passivated junction
Terminals:
Solder plated , solderable per MIL-STD 750,
method 2026
Polarity:
Color band denotes cathode except for
bidirectional types
Mounting Position:
Any
Weight:
0.005 ounce,0.138 grams
DEVICES FOR BIDIRECTIONAL APPLICATIONS
For bidirectional use suffix C or CA for types SMBJ5.0 thru SMBJ170 (e.g. SMBJ5.0C,SMBJ170CA)
Electrical characteristics apply in both directions.
MAXIMUM RATINGS AND CHARACTERISTICS
Ratings at 25 C ambient temperature unless otherwise specified.
SYMBOLS
Peak pulse power dissipation with a 10/1000µs wavetorm(NOTE 1,2,FIG.1)
Peak forward surge current
(Note 1,2,3)
Peak pulse current with a 10/1000µs waveform(NOTE 1)
Steady state power dissapation (Note 3)
Maximum instantaneous forward voltage at 50A(Note 3,4) unidirectional only
Operating junction and storage temperature range
P
PPM
I
FSM
I
PPM
P
M(AV)
V
F
T
STG
,T
J
VALUE
Minimum 600
100.0
See Table 1
5.0
3.5/5.0
-55 to + 150
UNITS
Watts
Amps
Amps
Watts
Volts
C
Notes:
1.Non-repetitive current pulse,per Fig.3 and derated above T
A
=25 C per Fig.2
2.Mounted on 5.0mm
2
copper pads to each terminal
3.Measured on 8.3ms single half sine-wine.For uni-directional devices only.
4.VF=3.5V on SMB-5.0 thru SMB-90 devices and VF=5.0V on SMB-100 thru SMB-170 devices
MDD ELECTRONIC
ELECTRICAL CHARACTERISTICS (at T
A
=25 C unless otherwise noted)
Device
Uni-
directional
Device
Bi-
directional
Device Marking
code
(UNI)
SMBJ5.0
SMBJ5.0A
SMBJ6.0
SMBJ6.0A
SMBJ6.5
SMBJ6.5A
SMBJ7.0
SMBJ7.0A
SMBJ7.5
SMBJ7.5A
SMBJ8.0
SMBJ8.0A
SMBJ8.5
SMBJ8.5A
SMBJ9.0
SMBJ9.0A
SMBJ10
SMBJ10A
SMBJ11
SMBJ11A
SMBJ12
SMBJ12A
SMBJ13
SMBJ13A
SMBJ14
SMBJ14A
SMBJ15
SMBJ15A
SMBJ16
SMBJ16A
SMBJ17
SMBJ17A
SMBJ18
SMBJ18A
SMBJ20
SMBJ20A
SMBJ22
SMBJ22A
SMBJ24
SMBJ24A
SMBJ26
SMBJ26A
SMBJ28
SMBJ28A
SMBJ30
SMBJ30A
SMBJ33
SMBJ33A
SMBJ5.0C
SMBJ5.0CA
SMBJ6.0C
SMBJ6.0CA
SMBJ6.5C
SMBJ6.5CA
SMBJ7.0C
SMBJ7.0CA
SMBJ7.5C
SMBJ7.5CA
SMBJ8.0C
SMBJ8.0CA
SMBJ8.5C
SMBJ8.5CA
SMBJ9.0C
SMBJ9.0CA
SMBJ10C
SMBJ10CA
SMBJ11C
SMBJ11CA
SMBJ12C
SMBJ12CA
SMBJ13C
SMBJ13CA
SMBJ14C
SMBJ14CA
SMBJ15C
SMBJ15CA
SMBJ16C
SMBJ16CA
SMBJ17C
SMBJ17CA
SMBJ18C
SMBJ18CA
SMBJ20C
SMBJ20CA
SMBJ22C
SMBJ22CA
SMBJ24C
SMBJ24CA
SMBJ26C
SMBJ26CA
SMBJ28C
SMBJ28CA
SMBJ30C
SMBJ30CA
SMBJ33C
SMBJ33CA
KD
KE
KF
KG
KH
KK
KL
KM
KN
KP
KQ
KR
KS
KT
KU
KV
KW
KX
KY
KZ
LD
LE
LF
LG
LH
LK
LL
LM
LN
LP
LQ
LR
LS
LT
LU
LV
LW
LX
LY
LZ
MD
ME
MF
MG
MH
MK
ML
MM
(BI)
AD
AE
AF
AG
AH
AK
AL
AM
AN
AP
AQ
AR
AS
AT
AU
AV
AW
AX
AY
AZ
BD
BE
BF
BG
BH
BK
BL
BM
BN
BP
BP
BR
BS
BT
BU
BV
BW
BX
BY
BZ
CD
CE
CF
CG
CH
CK
CL
CM
Working Peak
Reverse Voltage
V
RW M
(volts)
5.0
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
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
Min(V)
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
10.00
10.00
11.10
11.10
12.20
12.20
13.30
13.30
14.40
14.40
15.60
15.60
16.70
16.70
17.80
17.80
18.90
18.90
20.00
20.00
22.20
22.20
24.40
24.40
26.70
26.70
28.90
28.90
31.10
31.10
33.30
33.30
36.70
36.70
Breakdown
Voltage
VBR Volts
Max(V)
7.55
7.25
8.45
7.67
9.14
8.30
9.86
8.95
10.80
9.58
11.30
10.20
11.90
10.80
12.80
11.50
14.10
12.80
15.40
14.40
16.90
15.30
18.20
16.50
19.80
17.90
21.10
19.20
22.60
20.50
23.90
21.70
25.30
23.30
28.10
25.50
30.90
28.00
33.80
30.70
36.80
32.20
39.40
35.80
42.40
38.30
46.90
42.20
@ IT(mA)
10
10
10
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
1.0
1.0
Maximum
Reverse Voltage
at I
RSM
(Clamping
Voltage)
V
RSM
(volts)
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
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
Maximum
Reverse Surge
Current
I
RSM
(Amps)
62.5
65.2
52.3
58.3
48.7
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
25.8
22.3
24.0
20.8
23.1
19.7
21.7
18.6
20.5
16.7
18.5
15.2
16.9
14.0
15.4
12.4
14.2
12.0
13.2
11.2
12.4
10.2
11.3
Maximum
Reverse
Leakage at
V
RW M
IR (µA)
800
800
800
800
500
500
200
200
100
100
50
50
20
20
10
10
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
ELECTRICAL CHARACTERISTICS (at T
A
=25 C unless otherwise noted)
Device
Uni-
directional
Device
Bi-
directional
Device Marking
code
(UNI)
SMBJ36
SMBJ36A
SMBJ40
SMBJ40A
SMBJ43
SMBJ43A
SMBJ45
SMBJ45A
SMBJ48
SMBJ48A
SMBJ51
SMBJ51A
SMBJ54
SMBJ54A
SMBJ58
SMBJ58A
SMBJ60
SMBJ60A
SMBJ64
SMBJ64A
SMBJ70
SMBJ70A
SMBJ75
SMBJ75A
SMBJ78
SMBJ78A
SMBJ85
SMBJ85A
SMBJ90
SMBJ90A
SMBJ100
SMBJ100A
SMBJ110
SMBJ110A
SMBJ120
SMBJ120A
SMBJ130
SMBJ130A
SMBJ150
SMBJ150A
SMBJ160
SMBJ160A
SMBJ170
SMBJ170A
SMBJ36C
SMBJ36CA
SMBJ40C
SMBJ40CA
SMBJ43C
SMBJ43CA
SMBJ45C
SMBJ45CA
SMBJ48C
SMBJ48CA
SMBJ51C
SMBJ51CA
SMBJ54C
SMBJ54CA
SMBJ58C
SMBJ58CA
SMBJ60C
SMBJ60CA
SMBJ64C
SMBJ64CA
SMBJ70C
SMBJ70CA
SMBJ75C
SMBJ75CA
SMBJ78C
SMBJ78CA
SMBJ85C
SMBJ85CA
SMBJ90C
SMBJ90CA
SMBJ100C
SMBJ100CA
SMBJ110C
SMBJ110CA
SMBJ120C
SMBJ120CA
SMBJ130C
SMBJ130CA
SMBJ150C
SMBJ150CA
SMBJ160C
SMBJ160CA
SMBJ170C
SMBJ170CA
(BI)
Working Peak
Reverse Voltage
V
RWM
(volts)
Min(V)
Breakdown
Voltage
VBR Volts
Max(V)
@ IT(mA)
Maximum
Reverse Voltage
at I
RSM
(Clamping
Voltage)
V
RSM
(volts)
Maximum
Reverse Surge
Current
I
RSM
(Amps)
Maximum
Reverse
Leakage at
V
RWM
IR (µA)
MN
MP
MQ
MR
MS
MT
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
PD
PE
PF
PG
PH
PK
PL
PM
PN
PP
PQ
PR
CN
CP
CQ
CR
CS
CT
CU
CV
CW
CX
CY
CZ
DD
DE
DF
DG
DH
DK
DL
DM
DN
DP
DQ
DR
DS
DT
DU
DV
DW
DX
DY
DZ
ED
EE
EF
EG
EH
EK
EL
EM
EN
EP
EQ
ER
36.0
36.0
40.0
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
85.0
85.0
90.0
90.0
100.0
100.0
110.0
110.0
120.0
120.0
130.0
130.0
150.0
150.0
160.0
160.0
170.0
170.0
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
100.0
100.0
111.0
111.0
122.0
122.0
133.0
133.0
144.0
144.0
167.0
167.0
178.0
178.0
189.0
189.0
50.7
46.0
56.3
51.1
60.5
54.9
63.3
57.5
67.5
61.3
71.8
65.2
76.0
69.0
81.6
74.6
84.5
76.7
90.1
81.8
98.6
89.5
106.0
95.8
110.0
99.7
119.2
108.2
126.5
115.5
141.0
128.0
154.0
140.0
169.0
153.0
182.0
165.0
211.5
192.0
226.0
205.0
239.5
217.5
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
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
103.0
93.6
107.0
96.8
114.0
103.0
125.0
113.0
134.0
121.0
139.0
126.0
151.0
137.0
160.0
146.0
179.0
162.0
196.0
177.0
214.0
193.0
231.0
209.0
268.0
243.0
287.0
259.0
304.0
275.0
9.3
10.3
8.4
9.3
7.8
8.6
7.5
8.3
7.0
7.7
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
4.9
4.3
4.7
3.9
4.4
3.8
4.1
3.4
3.7
3.0
3.4
2.8
3.1
2.6
2.9
2.2
2.5
2.1
2.3
2.0
2.2
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
NOTES:
1.V
(BR)
measured after I
T
applied for 300µs,I
T
=square wave pulse or equivalent
2.Surge current waveform per Fig.3 and derated per Fig.2
3.For bidirectional types having V
WM
of 10 volts and less,the I
D
limit is doubled
4.All items and symbols are consistent with ANSI/IEEE C62.35
RATINGS AND CHARACTERISTIC CURVES SMBJ5.0 THUR 170CA
100
PEAK PULSE POWER(Ppp
M
)or CURRENT(Ipp
M
)
DERATING IN PERCENTAGE,%
FIG. 1-PEAK PULSE POWER RATING CURVE
Ppp
M
,PEAK PULSE POWER,kw
FIG. 2-PULSE DERATING CURVE
100
10
NON-REPETITIVE
PULSE WAVEFORM
SHOWN in FIG.3
T
A
=25 C
75
50
1.0
0.2x0.2”
(0.5x0.5mm)
COPPER PAD AREAS
0.1
0.1µs
1.0µs
10µs
100µs
1.0ms
10ms
25
td,PULSE WIDTH,sec.
0.2x0.2”
(0.5x0.5mm)
COPPER PAD AREAS
0
0
25
50
75
100
125
150
175
T
A,
AMBIENT TEMPERATURE,( C)
FIG.3-PULSE WAVEFORM
150
FIG. 4-TYPICAL JUNCTIONAL CAPACITANCE
UNIDIRECTIONAL
10,000
Ipp
M
,PEAK PULSE CURRENT,%
tr=10µsec
PULSE WIDTH (td) is DEFINED
as the POINT WHERE the PEAK
CURRENT DECAYS to 50% of Ipp
M
PEAK VALUE Ipp
M
100
HALF VALUE
I
PPM
2
10/1000µsec WAVEFORM
as DFINED by R.E.A
C
J
,JINCTION CAPACITANCE,pF
MEASURED at
ZERO BIAS
1,000
50
MEASURED at
STAND-OFF
VOLTAGE,Vw
M
100
0
0
td
1.0
2.0
3.0
4.0
10
1.0
T
J
=25 C
f=1.0MHz
Vsig=50mVp-p
t,TIME,ms
10
100
200
V
(BR)
,BREAKDOWN VOLTAGE,VOLTS
FIG.5-STEADY STATE POWER DERATING CURVE
5.00
PM
(AV)
,STEADY STATE POWER
DISSIPATION,WATTS
60Hz RESISTIVE
OR INDUCTIVE LOAD
3.75
I
FSM
,PEAK FORWARD SURAGE CURRENT
AMPERES
FIG.6-MAXIMUM NON-REPETITIVE FORWARD SURGE
CURRENT UNIDIRECTIONAL ONLY
100
80
80
2.50
40
1.25
0.2x0.2”
(0.5x0.5mm)
COPPER PAD AREAS
0
25
50
75
100
125
150
175
20
T
J
=T
J
max.
8.3ms SINGLE HALF SINE-WAVE
(JEDEC Method)
1.0
10
100
0
0
T
L
,LEAD TEMPERATURE, C
NUMBER OF CYCLES AT 60Hz
MDD ELECTRONIC
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无数次被坑的经历已经让我练就了火眼金睛,翻新的芯片一到手就能看出真假。这是我在某宝买的DS90C124,卖家描述是全新原装。因为便宜让我决定买来试试,14元每片的价格可能就是正常公司批量拿货的价格,所以我觉得14块钱如果能买到新的也不奇怪。这颗芯片的现货单片价格是70元左右,TI官方单片不到50元。这个芯片在刚拆包的时候看起来还像那么回事儿,把它拿出来对着光线看引脚时就基本断定是拆机货,因为引脚非常光亮,正常的芯片应该是喷锡,磨砂质感的引脚,而这个芯片很明显是从锡里捞出来...
littleshrimp 综合技术交流
Keysight上午十点【五招教您最小化合格/不合格误判风险】
今天上午十点【在线直播】Keysight五招教您最小化合格/不合格误判风险直播时间:2018年4月17日(本周二)上午10:00-12:00直播主题:五招教您最小化合格/不合格误判风险直播简介:拿到测量结果之后要做什么?通常,都是将结果与既定参数进行比较,来做出对产品或设计是否合格的判定。但是,所有的测试测量都会有误差。这些误差都可以判定出现错误。而事实证明,您可以应用国际标准和统计技术来减少通过测量结果做出的决策出现错误的风险,并提高产量。...
橙色凯 综合技术交流
参加2014 Vicor中国产品研讨会上海站得购物卡、智能手环、血压计等精美礼品
2014Vicor中国产品与技术研讨会将在12月2日上海浦西洲际酒店举行,Justin,Gary等资深技术专家将亲临现场,为您讲述Vicor的领先技术。会议当天还将进行现场互动与抽奖活动,Vicor为大家精心准备了各种奖品立即报名更多详情见附件快来报名吧!参加2014Vicor中国产品研讨会上海站得购物卡、智能手环、血压计等精美礼品边陲小镇,远远滴围观呵呵,我也只能围观了,...
eric_wang 综合技术交流
激光信号转换为电信号问题
请教大家一问题,用什么器件,可以将激光信号转换为电信号呢?激光信号转换为电信号问题如果是基于光纤通讯用的激光,那么有专用的光电接收头,如果是自己做的非标激光发射系统,那么可以根据激光的波长来选择光电管,看光电管的手册,工作波长范围涵盖你用的激光波长即可,再有就是强度问题,激光过弱需要在接收管后面加足够增益的放大器,如果过强则可以在光电管前加滤光片来解决。...
花儿 综合技术交流