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15SMCJ85

SURFACE MOUNT TRANSIENT VOLTAGE SUPPRESSOR PEAK PULSE POWER 1500 Watts

厂商名称:强茂(PANJIT)

厂商官网:http://www.panjit.com.tw/

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1.5SMCJ SERIES
SURFACE MOUNT TRANSIENT VOLTAGE SUPPRESSOR PEAK PULSE POWER 1500 Watts
STAND-OFF VOLTAGE
5 to 220 Volts
Recongnized File # E210467
FEATURES
0.245(6.22)
0.280(7.11)
0.260(6.60)
0.012(0.305)
0.006(0.152)
0.103(2.62)
0.079(2.00)
0.008(0.203)
0.002(0.051)
0.128(3.25)
• For surface mounted applications in order to optimize board space.
• Glass passivated junction
• Low inductance
• Plastic package has Underwriters Laboratory Flammability
Classification 94V-O
• High temperature soldering : 260°C /10 seconds at terminals
• Lead free in comply with EU RoHS 2011/65/EU directives
• Green molding compound as per IEC61249 Std. . (Halogen Free)
MECHANICAL DATA
• Case: JEDEC DO-214AB,Molded plastic over passivated junction.
• Terminals: Solder plated,solderable per MIL-STD-750, Method 2026
• Polarity: Color band denotes cathode end
• Standard Packaging: 16mm tape (EIA-481)
• Weight: 0.007 ounce, 0.021 gram
0.050(1.27)
0.030(0.76)
0.320(8.13)
0.305(7.75)
DEVICES FOR BIPOLAR APPLICATIONS
For Bidirectional use C or CA Suffix for types 1.5SMCJ5.0 thru types 1.5SMCJ220.
Electrical characteristics apply in both directions.
MAXIMUM RATINGS AND CHARACTERISTICS
Rating at 25°Cambient temperature unless otherwise specified. Resistive or inductive load, 60Hz.
For Capacitive load derate current by 20%.
Rating
Peak Power Dissipation at T
A
=25
O
C, T
P
=1ms (Notes 1)
Peak Pulse Current on 10/1000μs waveform (Notes 1)
Typical Thermal Resistance Junction to Air (Notes 2)
Peak Forward Surge Current, 8.3ms Single Half Sine-Wave
Superimposed on Rated Load (JECED Method) (Notes 3)
Operating Junction and Storage Temperature Range
Symbol
P
PP
I
PPM
R
θJA
I
FSM
T
J
,T
STG
Value
1500
See table
50
200
-55 to +150
Units
Watts
Amps
O
0.108(2.75)
0.220(5.59)
C/W
Amps
O
C
NOTES:
1.Non-repetitive current pulse, per Fig. 3 and derated above T
A
=25°Cper
Fig. 2.
2.Mounted on 2.0mm
2
( .013mm thick) land areas.
3.Measured on 8.3ms , single half sine-wave or equivalent square wave , duty cycle= 4 pulses per minutes maximum.
4.A transient suppressor is selected according to the working peak reverse voltage (V
RWM
), which should be equal to or greater than the DC
or continuous peak operating voltage level.
November 5,2012-REV.03
PAGE . 1
1.5SMCJ SERIES
R everse
S ta n d -o ff
Vo lt a g e
Part Number
V
R WM
(N o te s 4 )
UNI
BI
V
V
B re a k d o w n
Vo l t a g e
V
B R
@ I
T
I
T
M in .
Max.
V
mA
UNI
μ
A
BI
μ
A
V
A
UNI
BI
Test
Current
Reverse
Leakage
I
R
@ V
RWM
V
C
@ I
PP
I
PP
Max. Clamp
Voltage
10/1000μs
Peak Pulse
Current
10/1000μs
Marking
Code
1500W Transient Voltage Suppressor
1.5SMCJ5.0
1.5SMCJ5.0A
1.5SMCJ6.0
1.5SMCJ6.0A
1.5SMCJ6.5
1.5SMCJ6.5A
1.5SMCJ7.0
1.5SMCJ7.0A
1.5SMCJ7.5
1.5SMCJ7.5A
1.5SMCJ8.0
1.5SMCJ8.0A
1.5SMCJ8.5
1.5SMCJ8.5A
1.5SMCJ9.0
1.5SMCJ9.0A
1.5SMCJ10
1.5SMCJ10A
1.5SMCJ11
1.5SMCJ11A
1.5SMCJ12
1.5SMCJ12A
1.5SMCJ13
1.5SMCJ13A
1.5SMCJ14
1.5SMCJ14A
1.5SMCJ15
1.5SMCJ15A
1.5SMCJ16
1.5SMCJ16A
1.5SMCJ17
1.5SMCJ17A
1.5SMCJ18
1.5SMCJ18A
1.5SMCJ20
1.5SMCJ20A
1.5SMCJ22
1.5SMCJ22A
1.5SMCJ24
1.5SMCJ24A
1.5SMCJ26
1.5SMCJ26A
1.5SMCJ28
1.5SMCJ28A
1.5SMCJ30
1.5SMCJ30A
1.5SMCJ33
1.5SMCJ33A
1.5SMCJ36
1.5SMCJ36A
1.5SMCJ40
1.5SMCJ40A
1.5SMCJ5.0C
1.5SMCJ5.0CA
1.5SMCJ6.0C
1.5SMCJ6.0CA
1.5SMCJ6.5C
1.5SMCJ6.5CA
1.5SMCJ7.0C
1.5SMCJ7.0CA
1.5SMCJ7.5C
1.5SMCJ7.5CA
1.5SMCJ8.0C
1.5SMCJ8.0CA
1.5SMCJ8.5C
1.5SMCJ8.5CA
1.5SMCJ9.0C
1.5SMCJ9.0CA
1.5SMCJ10C
1.5SMCJ10CA
1.5SMCJ11C
1.5SMCJ11CA
1.5SMCJ12C
1.5SMCJ12CA
1.5SMCJ13C
1.5SMCJ13CA
1.5SMCJ14C
1.5SMCJ14CA
1.5SMCJ15C
1.5SMCJ15CA
1.5SMCJ16C
1.5SMCJ16CA
1.5SMCJ17C
1.5SMCJ17CA
1.5SMCJ18C
1.5SMCJ18CA
1.5SMCJ20C
1.5SMCJ20CA
1.5SMCJ22C
1.5SMCJ22CA
1.5SMCJ24C
1.5SMCJ24CA
1.5SMCJ26C
1.5SMCJ26CA
1.5SMCJ28C
1.5SMCJ28CA
1.5SMCJ30C
1.5SMCJ30CA
1.5SMCJ33C
1.5SMCJ33CA
1.5SMCJ36C
1.5SMCJ36CA
1.5SMCJ40C
1.5SMCJ40CA
5
5
6
6
6.5
6.5
7
7
7.5
7.5
8
8
8.5
8.5
9
9
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
40
40
6.4
6.4
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
10
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
20
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
40
44.4
44.4
7.55
7.25
8.45
7.67
9.14
8.3
9.86
8.95
10.67
9.58
11
10.23
11.92
10.82
12.6
11.5
14.1
12.8
15.4
14
16.9
15.3
18.2
16.5
19.8
17.9
21.1
19.2
22.6
20.5
23.9
21.7
25.3
23.3
28.1
25.5
30.9
28
33.8
30.7
36.6
33.2
39.4
35.8
42.2
38.3
46.5
42.2
50.7
46
56.3
51.1
10
10
10
10
10
10
10
10
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
1
1
1
1
1
1
1
1
1
1
1000
1000
1000
1000
500
500
200
200
100
100
50
50
25
25
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
2000
2000
2000
2000
1000
1000
400
400
200
200
100
100
50
50
20
20
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
9.6
9.2
11.4
10.3
12.3
11.2
13.3
12
14.3
12.9
15
13.6
15.9
14.4
16.9
15.4
18.8
17
20.1
18.2
22
19.9
23.8
21.5
25.8
23.2
26.9
24.4
28.8
26
30.5
27.6
32.2
29.2
35.8
32.4
39.4
35.5
43
38.9
46.6
42.1
50
45.4
53.5
48.4
59
53.3
64.3
58.1
71.4
64.5
156.2
163
131.6
145.6
122
133.9
112.8
125
104.9
116.3
100
110.3
94.3
104.2
88.7
97.4
79.8
88.2
74.6
82.4
68.2
75.3
63
69.7
58.1
64.7
55.8
61.5
52.1
57.7
49.2
53.3
46.6
51.4
41.9
46.3
38.1
42.2
34.9
38.6
32.2
35.6
30
33
28
31
25.2
28.1
23.3
25.8
21
23.2
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
GFM
GFN
GFP
GFQ
GFR
BDD
BDE
BDF
BDG
BDH
BDK
BDL
BDM
BDN
BDP
BDQ
BDR
BDS
BDT
BDU
BDV
BDW
BDX
BDY
BDZ
BED
BEE
BEF
BEG
BEH
BEK
BEL
BEM
BEN
BEP
BEQ
BER
BES
BET
BEU
BEV
BEW
BEX
BEY
BEZ
BFD
BFE
BFF
BFG
BFH
BFK
BFL
BFM
BFN
BFP
BFQ
BFR
November 5,2012-REV.03
PAGE . 2
1.5SMCJ SERIES
R evers e
S t a n d - o ff
V o lt a g e
Part Number
V
RWM
(N otes 4)
UNI
BI
V
V
V
B R
@ I
T
I
T
Min .
Max.
V
mA
UNI
μ
A
BI
μ
A
V
A
UNI
BI
I
R
@ V
RWM
V
C
@ I
PP
I
PP
B reak dow n
Vo l t a g e
Te s t
C u rren t
R e vers e
Leakage
Max.Clamp
Voltage
10/1000μs
Peak Pulse
Current
10/1000μs
Marking
Code
1500W Transient Voltage Suppressor
1.5SMCJ43
1.5SMCJ43A
1.5SMCJ45
1.5SMCJ45A
1.5SMCJ48
1.5SMCJ48A
1.5SMCJ51
1.5SMCJ51A
1.5SMCJ54
1.5SMCJ54A
1.5SMCJ58
1.5SMCJ58A
1.5SMCJ60
1.5SMCJ60A
1.5SMCJ64
1.5SMCJ64A
1.5SMCJ70
1.5SMCJ70A
1.5SMCJ75
1.5SMCJ75A
1.5SMCJ78
1.5SMCJ78A
1.5SMCJ85
1.5SMCJ85A
1.5SMCJ90
1.5SMCJ90A
1.5SMCJ100
1.5SMCJ100A
1.5SMCJ110
1.5SMCJ110A
1.5SMCJ120
1.5SMCJ120A
1.5SMCJ130
1.5SMCJ130A
1.5SMCJ150
1.5SMCJ150A
1.5SMCJ160
1.5SMCJ160A
1.5SMCJ170
1.5SMCJ170A
1.5SMCJ180
1.5SMCJ180A
1.5SMCJ190
1.5SMCJ190A
1.5SMCJ200
1.5SMCJ200A
1.5SMCJ210
1.5SMCJ210A
1.5SMCJ220
1.5SMCJ220A
1.5SMCJ43C
1.5SMCJ43CA
1.5SMCJ45C
1.5SMCJ45CA
1.5SMCJ48C
1.5SMCJ48CA
1.5SMCJ51C
1.5SMCJ51CA
1.5SMCJ54C
1.5SMCJ54CA
1.5SMCJ58C
1.5SMCJ58CA
1.5SMCJ60C
1.5SMCJ60CA
1.5SMCJ64C
1.5SMCJ64CA
1.5SMCJ70C
1.5SMCJ70CA
1.5SMCJ75C
1.5SMCJ75CA
1.5SMCJ78C
1.5SMCJ78CA
1.5SMCJ85C
1.5SMCJ85CA
1.5SMCJ90C
1.5SMCJ90CA
1.5SMCJ100C
1.5SMCJ100CA
1.5SMCJ110C
1.5SMCJ110CA
1.5SMCJ120C
1.5SMCJ120CA
1.5SMCJ130C
1.5SMCJ130CA
1.5SMCJ150C
1.5SMCJ150CA
1.5SMCJ160C
1.5SMCJ160CA
1.5SMCJ170C
1.5SMCJ170CA
1.5SMCJ180C
1.5SMCJ180CA
1.5SMCJ190C
1.5SMCJ190CA
1.5SMCJ200C
1.5SMCJ200CA
1.5SMCJ210C
1.5SMCJ210CA
1.5SMCJ220C
1.5SMCJ220CA
43
43
45
45
48
48
51
51
54
54
58
58
60
60
64
64
70
70
75
75
78
78
85
85
90
90
100
100
110
110
120
120
130
130
150
150
160
160
170
170
180
180
190
190
200
200
210
210
220
220
47.8
47.8
50
50
53.3
53.3
56.7
56.7
60
60
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
198
198
209
209
220
220
231
231
242
242
61
55
63
57.5
67.5
61.3
71.8
65.2
76
69
81.6
74.1
84.5
76.7
90.1
81.8
98.6
89.5
105.7
95.8
109.8
99.7
119.2
108.2
126.5
115.5
141
128
154.5
140.5
169
153
182.5
165.5
211.5
192.5
226
205
239.5
217.5
253.8
230.4
267.9
243.2
282
256
296.1
268.8
310.2
281.6
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
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
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
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
1
1
1
1
1
1
1
1
1
1
1
1
1
1
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
322
292
340
308
358
324
376
340
394
356
19.6
21.6
18.7
20.6
17.5
19.4
18.5
18.2
15.6
17.2
14.6
16
14
15.5
13.2
14.6
12
13.3
11.2
12.4
10.8
11.4
9.9
10.4
9.4
10.3
8.4
9.3
7.7
8.4
7
7.9
6.5
7.2
5.6
6.2
5.2
5.8
4.9
5.5
4.7
5.1
4.4
4.8
4.1
4.6
4
4.4
3.8
4.2
GFS
GFT
GFU
GFV
GFW
GFX
GFY
GFZ
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
GHS
GHT
GHU
GHV
GHW
GHX
GHY
GHZ
GID
GIE
BFS
BFT
BFU
BFV
BFW
BFX
BFY
BFZ
BGD
BGE
BGF
BGG
BGH
BGK
BGL
BGM
BGN
BGP
BGQ
BGR
BGS
BGT
BGU
BGV
BGW
BGX
BGY
BGZ
BHD
BHE
BHF
BHG
BHH
BHK
BHL
BHM
BHN
BHP
BHQ
BHR
BHS
BHT
BHU
BHV
BHW
BHX
BHY
BHZ
BID
BIE
November 5,2012-REV.03
PAGE . 3
1.5SMCJ SERIES
November 5,2012-REV.03
PAGE . 4
1.5SMCJ SERIES
MOUNTING PAD LAYOUT
ORDER INFORMATION
• Packing information
T/R - 3K per 13" plastic Reel
T/R - 0.5K per 7" plastic Reel
November 5,2012-REV.03
PAGE . 5
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寒雪剑91 单片机
mos管的选型
现在有个项目需要用到PMOS管做电源的开关控制,主要是按下按键pmos导通,再次按下关断。电源电压应该在12v左右,电流1.5A左右,还应留有适当余量。主要考虑pmos管工作时候的导通损耗(开关频率很低),mos管长期导通时的温升应该如何去计算呢?有没有合适的PMOS管推荐?图片是IRLML6402PMOS管参数,从电压电流上看是满足的,唯一不确定的是温度问题。mos管的选型温度根据导通内阻和电流计算,故而想发热低,应重点查导通内阻参数,注意载流和耐压能力满足即可。SI2301可...
dlcnight 模拟电子
设计精确的多功能锂离子电池测试解决方案
锂离子(Li-ion)电池既可以在小型电子设备中使用,也可以在非常大的应用中使用,因此它们在尺寸、电压和外形上会有很大的变化。但是,这种宽泛性意味着电池制造商必须购买和维护每种电池类型的测试解决方案,相关的资本投资将变得非常之大,直接占电池最终成本的20%。显然,需要一种灵活的测试解决方案来处理更广泛的电池电压、容量和物理尺寸。创建全面的通用测试设备具有挑战性,因为图1所示的市场需要一个具有成本效益的解决方案。在本文中,我们将重点介绍分立式解决方案在满足当前和未来的电...
qwqwqw2088 模拟与混合信号
第一次发指令触发不了DataReceived事件
遇到个问题,我用的是SerialPort类,在打开端口后,第一次发送“AT”触发不了DataReceived事件,无论等多久,只有第二次发送的时候才会被触发,大家看看是怎么回事呢?if(sp.IsOpen){sp.WriteLine(AT\\r);}第一次发指令触发不了DataReceived事件是通过串口发给蓝牙模块吗?可能的原因是你发第一次的时候设备还没开始工作sp.IsOpen你这里才打开串口吧。如果第一次失败的话说明这里的返回是FALSE...你加个打印...
fsymd 嵌入式系统
立仪光谱共焦在玻璃上奥秘与应用
在现代工业和科学研究中,玻璃因其透明、坚硬和易加工的特性被广泛应用于各个领域。然而,玻璃的厚度测量一直是困扰业界的一大难题。传统的千分尺或电容式传感器虽然在一定程度上能满足生产需求,但在精度、效率以及适用范围上存在明显的局限。传统检测方法及其局限性精度不足:传统的接触式测量容易受到人工操作的影响,导致误差较大;而非接触式方法如激光三角法,对透明或反光表面测量精度较低。效率低下:手动操作的检测方式耗时较长,无法满足大规模生产的快速检测需求。适应性差:对于特殊形状或多层结构的玻璃...
立仪科技 MEMS传感器