首页 > 器件类别 > 分立半导体 > 二极管

P6SMB6.8CA_R2_10001

Trans Voltage Suppressor Diode, 81V V(RWM), Bidirectional

器件类别:分立半导体    二极管   

厂商名称:强茂(PANJIT)

厂商官网:http://www.panjit.com.tw/

器件标准:  

下载文档
器件参数
参数名称
属性值
是否无铅
不含铅
是否Rohs认证
符合
厂商名称
强茂(PANJIT)
Reach Compliance Code
not_compliant
ECCN代码
EAR99
击穿电压标称值
100 V
最大钳位电压
144 V
二极管类型
TRANS VOLTAGE SUPPRESSOR DIODE
峰值回流温度(摄氏度)
NOT SPECIFIED
极性
BIDIRECTIONAL
最大重复峰值反向电压
81 V
表面贴装
YES
处于峰值回流温度下的最长时间
NOT SPECIFIED
文档预览
P6SMB SERIES
SURFACE MOUNT TRANSIENT VOLTAGE SUPPRESSOR POWER 600 Watts
BREAK DOWN VOLTAGE
6.8 to 550 Volts
FEATURES
• For surface mounted applications in order to optimize board space.
• Glass passivated junction
• Low inductance
• Plastic package has Underwriters Laboratory
Fammability Classification 94V-O
• High temperature soldering : 260°C /10 seconds at terminals
• Lead free in comply with EU RoHS 2002/95/EC directives
• Green molding compound as per IEC61249 Std. . (Halogen Free)
0.155(3.94)
0.130(3.30)
0.083(2.11)
0.075(1.91)
0.185(4.70)
0.160(4.06)
0.012(0.305)
0.006(0.152)
0.096(2.44)
0.083(2.13)
0.050(1.27)
0.030(0.76)
0.220(5.59)
0.200(5.08)
MECHANICAL DATA
Case:JEDEC DO-214AA ,Molded plastic over passivated junction
Terminals: Solder plated,solderable per MIL-STD-750,Method 2026
Polarity : Color band denotes cathode end
Standard Packaging:12mm tape (EIA-481)
Weight: 0.003 ounce, 0.093 gram
DEVICES FOR BIPOLAR APPLICATIONS
For Bidirectional use C or CA Suffix for types
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 Pulse Power Dissipation on 10/1000μs waveform (Notes 1,2, Fig.1)
Peak Forward Surge Current 8.3ms single half sine-wave
superimposed on rated load (JEDEC Method) (Notes 2,3)
Peak Pulse Current on 10/1000μs waveform (Notes 1) Fig.3
Typical Thermal Resistance Junction to Air (Notes 2)
Operating Junction and Storage Temperature Range
Symbol
P
PP
I
FSM
I
PPM
R
θJA
T
J
,T
STG
Value
600
100
see Table 1
60
-55 to +150
Units
Watts
Amps
Amps
O
C/W
O
C
NOTES:
1. Non-repetitive current pulse, per Fig.3 and derated above T
A
= 25
o
C per Fig. 2.
2. Mounted on 5mm
2
(0.13mm thick) land areas.
3. Measured on 8.3ms, single half sine-wave or equivalent square wave, duty cycle = 4 pulses per minute maximum.
4.
A transient suppressor is selected according to the working peak reverse voltage (V
R W M
), which should be equal to or greater than
the DC or continuous peak operating voltage level.
November 13,2012-REV.06
PAGE . 1
P6SMB SERIES
Reverse
Stand-off
Voltage
Part Number
V
RWM
(No t e s 4 )
UNI
BI
V
V
B R
@ I
T
M i n.
V
M a x.
V
mA
I
T
Breakdown
Voltage
T
est
Current
Max.
Peak
Clamp
Pulse
Reverse Leakage
Voltage
Current
10/1000μs 10/1000μs
I
R
@ V
RWM
UNI
μ
A
BI
μ
A
V
A
V
C
@ I
PP
I
PP
Marking Code
UNI
BI
600W Transient Voltage Suppressor
P6SMB6.8
P6SMB6.8A
P6SMB7.5
P6SMB7.5A
P6SMB8.2
P6SMB8.2A
P6SMB9.1
P6SMB9.1A
P6SMB10
P6SMB10A
P6SMB11
P6SMB11A
P6SMB12
P6SMB12A
P6SMB13
P6SMB13A
P6SMB15
P6SMB15A
P6SMB16
P6SMB16A
P6SMB18
P6SMB18A
P6SMB20
P6SMB20A
P6SMB22
P6SMB22A
P6SMB24
P6SMB24A
P6SMB27
P6SMB27A
P6SMB30
P6SMB30A
P6SMB33
P6SMB33A
P6SMB36
P6SMB36A
P6SMB39
P6SMB39A
P6SMB43
P6SMB43A
P6SMB47
P6SMB47A
P6SMB51
P6SMB51A
P6SMB56
P6SMB6.8C
P6SMB6.8CA
P6SMB7.5C
P6SMB7.5CA
P6SMB8.2C
P6SMB8.2CA
P6SMB9.1C
P6SMB9.1CA
P6SMB10C
P6SMB10CA
P6SMB11C
P6SMB11CA
P6SMB12C
P6SMB12CA
P6SMB13C
P6SMB13CA
P6SMB15C
P6SMB15CA
P6SMB16C
P6SMB16CA
P6SMB18C
P6SMB18CA
P6SMB20C
P6SMB20CA
P6SMB22C
P6SMB22CA
P6SMB24C
P6SMB24CA
P6SMB27C
P6SMB27CA
P6SMB30C
P6SMB30CA
P6SMB33C
P6SMB33CA
P6SMB36C
P6SMB36CA
P6SMB39C
P6SMB39CA
P6SMB43C
P6SMB43CA
P6SMB47C
P6SMB47CA
P6SMB51C
P6SMB51CA
P6SMB56C
5.5
5.8
6.05
6.4
6.63
7.02
7.37
7.78
8.1
8.55
8.92
9.4
9.72
10.2
10.5
11.1
12.1
12.8
12.9
13.6
14.5
15.3
16.2
17.1
17.8
18.8
19.4
20.5
21.8
23.1
24.3
25.6
26.8
28.2
29.1
30.8
31.6
33.3
34.8
36.8
38.1
40.2
41.3
43.6
45.6
6.12
6.45
6.75
7.13
7.38
7.79
8.19
8.65
9
9.5
9.9
10.5
10.8
11.4
11.7
12.4
13.5
14.3
14.4
15.2
16.2
17.1
18
19
19.8
20.9
21.6
22.8
24.3
25.7
27
28.5
29.7
31.4
32.4
34.2
35.1
37.1
38.7
40.9
42.3
44.7
45.9
48.5
50.4
7.48
7.14
8.25
7.88
9.02
8.61
10
9.5
11
10.5
12.1
11.6
13.2
12.6
14.3
13.7
16.5
15.8
17.6
16.8
19.8
18.9
22
21
24.2
23.1
26.4
25.2
29.7
28.4
33
31.5
36.3
34.7
39.6
37.8
42.9
41
47.3
45.2
51.7
49.4
56.1
53.6
61.6
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
1000
1000
500
500
200
200
50
50
10
10
5
5
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
2000
2000
1000
1000
400
400
100
100
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
10.8
10.5
11.7
11.3
12.5
12.1
13.8
13.4
15
14.5
16.2
15.6
17.3
16.7
19
18.2
22
21.2
23.5
22.5
26.5
25.2
29.1
27.7
31.9
30.6
34.7
33.2
39.1
37.5
43.5
41.4
47.7
45.7
52
49.9
56.4
53.9
61.9
59.3
67.8
64.8
73.5
70.1
80.5
56
57
51
53
48
50
44
45
40
41
37
38
35
36
32
33
27
28
26
27
23
24
21
22
19
20
17
18
15
16
14
14.4
12.6
13.2
11.6
12
10.6
11.2
9.6
10.1
8.9
9.3
8.2
8.6
7.4
EZA
EZB
EZC
EZD
EZE
EZF
EZG
EZH
EZJ
EZK
EZL
EZM
EZN
EZP
EZQ
EZR
EZS
EZT
EZU
EZV
EZW
EZX
EZY
EZZ
EXA
EXB
EXC
EXD
EXE
EXF
EXG
EXH
EXJ
EXK
EXL
EXM
EXN
EXP
EXQ
EXR
EXS
EXT
EXU
EXV
EXW
DZA
DZB
DZC
DZD
DZE
DZF
DZG
DZH
DZJ
DZK
DZL
DZM
DZN
DZP
DZQ
DZR
DZS
DZT
DZU
DZV
DZW
DZX
DZY
DZZ
DXA
DXB
DXC
DXD
DXE
DXF
DXG
DXH
DXJ
DXK
DXL
DXM
DXN
DXP
DXQ
DXR
DXS
DXT
DXU
DXV
DXW
November 13,2012-REV.06
PAGE . 2
P6SMB SERIES
Reverse
Stand-off
Voltage
Part Number
V
RWM
(No te s 4 )
UNI
BI
V
V
B R
@ I
T
Mi n.
V
Max.
V
mA
I
T
I
R
@ V
RWM
UNI
μA
BI
μA
V
A
UNI
BI
Breakdown
Voltage
Test
Reverse Leakage
Current
Max.
Peak
Clamp
Pulse
Voltage
Current
10/1000μs 10/1000μs
V
C
@ I
PP
I
PP
Marking Code
600W Transient Voltage Suppressor
P6SMB56A
P6SMB62
P6SMB62A
P6SMB68
P6SMB68A
P6SMB75
P6SMB75A
P6SMB82
P6SMB82A
P6SMB91
P6SMB91A
P6SMB100
P6SMB56CA
P6SMB62C
P6SMB62CA
P6SMB68C
P6SMB68CA
P6SMB75C
P6SMB75CA
P6SMB82C
P6SMB82CA
P6SMB91C
P6SMB91CA
P6SMB100C
47.8
50.2
53
55.1
58.1
60.7
64.1
66.4
70.1
73.7
77.8
81
85.5
89.2
94
97.2
102
105
111
121
128
130
136
138
145
146
154
162
171
175
185
202
214
53.2
55.8
58.9
61.2
64.6
67.5
71.3
73.8
77.9
81.9
86.5
90
95
99
105
108
114
117
124
135
143
144
152
153
162
162
171
180
190
198
209
225
237
58.8
68.2
65.1
74.8
71.4
82.5
78.8
90.2
86.1
100
95.5
110
105
121
116
132
126
143
137
165
158
176
168
187
179
198
189
220
210
242
231
275
263
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
77
89
85
98
92
108
103
118
113
131
125
144
137
158
152
173
165
187
179
215
207
230
219
244
234
258
246
287
274
344
328
360
344
7.8
6.8
7.1
6.1
6.5
5.5
5.8
5.1
5.3
4.5
4.8
4.2
4.4
3.8
4
3.5
3.6
3.2
3.3
2.8
2.9
2.6
2.7
2.5
2.6
2.3
2.4
2.1
2.2
1.8
1.9
1.7
1.8
EXX
EXY
EXZ
EYA
EYB
EYC
EYD
EYE
EYF
EYG
EYH
EYJ
EYK
EYL
EYM
EYN
EYP
EYQ
EYR
EYS
EYT
EYU
EYV
EYW
EYX
EYY
EYZ
EWA
EWB
EWC
EWD
EWE
EWF
DXX
DXY
DXZ
DYA
DYB
DYC
DYD
DYE
DYF
DYG
DYH
DYJ
DYK
DYL
DYM
DYN
DYP
DYQ
DYR
DYS
DYT
DYU
DYV
DYW
DYX
DYY
DYZ
DWA
DWB
DWC
DWD
DWE
DWF
P6SMB100A P6SMB100CA
P6SMB110
P6SMB110A
P6SMB120
P6SMB110C
P6SMB110CA
P6SMB120C
P6SMB120A P6SMB120CA
P6SMB130
P6SMB130C
P6SMB130A P6SMB130CA
P6SMB150
P6SMB150C
P6SMB150A P6SMB150CA
P6SMB160
P6SMB160C
P6SMB160A P6SMB160CA
P6SMB170
P6SMB170C
P6SMB170A P6SMB170CA
P6SMB180
P6SMB180C
P6SMB180A P6SMB180CA
P6SMB200
P6SMB200C
P6SMB200A P6SMB200CA
P6SMB220
P6SMB220C
P6SMB220A P6SMB220CA
P6SMB250
P6SMB250C
P6SMB250A P6SMB250CA
November 13,2012-REV.06
PAGE . 3
P6SMB SERIES
November 13,2012-REV.06
PAGE . 4
P6SMB SERIES
MOUNTING PAD LAYOUT
ORDER INFORMATION
• Packing information
T/R - 3K per 13" plastic Reel
T/R - 0.5K per 7" plastic Reel
November 13,2012-REV.06
PAGE . 5
查看更多>
ARGB888 在一帧数据内画框的实现
/*Copyright(C)2013xubinbin徐彬彬(BeijingChina)Email:xubbwd@gmail.com程序实现通过调用draw_Rectangle_func在一帧ARGB数据内画一个框char*draw_Rectangle_func(char*ptr,intstartx,intstarty,intwidth,inthigth,intline_...
37°男人 综合技术交流
双电源热切换用继电器还是MOS管好
双电源输出的参数一致:DC27V电流12A,热切换用继电器还是MOS管合适?双电源热切换用继电器还是MOS管好DC27V电流12A,热切换用继电器还是MOS管合适?继电器速度不够快,不能做到无缝切换。显然用MOS管好,但在某些特殊场合下如果负载对电源切换时间不敏感且切换频率极低时,追求价格和可靠性反而可能用继电器更合适,比如某些场合不准停止运行的风机就是这样做电源备份切换的。继电器实时性那么明显,但是mos管的话,你需要选择Rgs比较小的mos,否则发热很严重的。 ...
stm32f103vct6 综合技术交流
静电防护知多少,不妨从一个词汇展开
当今社会,无论是日常生活,还是在企业工作中,静电已经是一个广泛触及的话题,不时被提及。图1.生活中人们在冬季触碰金属门把手的静电电击现象图2.电子制造工业中,人体静电对电子器件静电放电的典型现象而“抗静电”、“防静电”、“Antistatic”是大家经常听到或看到的高频率词汇。在展开讨论前,先看几款产品的介绍。看看大家的感受。图3.某款防静电台垫的产品介绍图4.某款标称防静电特氟龙胶带的产品介绍图5.某款电子工厂用到的粘尘胶轮的产品介绍看到这...
copper_hou 综合技术交流
百思不得其解,浮地设备为什么能用ESD管做静电防护
像手机这样的浮地设备,静电打入接口之后肯定是不会泄放到大地的,为什么还是能用ESD二极管来做静电防护呢,静电不还是会留在板子上吗。以前根本没想过这个问题目前找到的最有可能的解释是:在浮地系统里单次的ESD放电会被ESD二极管释放到GND平面,这些静电在GND平面上分散,这样静电在每一个元件引脚形成的压差就比静电抢打入引脚的时候小多了。但是因为浮地系统不能把静电泄放到大地,所以在没有手动把静电泄放到大地的情况下打几次静电,还是会让设备异常百思不得其解,浮地...
Nubility 综合技术交流
《python编程快速上手》第八篇:了解python的读写文件
一:部分基础知识1.1,什么是绝对路径和相对路径绝对路径,总是从根文件夹开始。相对路径,相对于程序的当前工作目录。1.2,验证路径有效效如果该路径存在,调用exists()方法返回Ture,否则返回False;如果该路径存在,并且是一个文件,调用is_file()方法返回Ture,否则返回False;如果该路径存在,并且是一个文件夹,调用is_di...
xiaolinen 综合技术交流
speic电路问题,计算和仿真都可以但就是做出来有问题,请教大家啦!!
按照speic电路模型,计算出L1=L2=100uH,(用工字电感)。Cs是用22uF的极性电容,mos管用IRF540N,pwm20k,输出电容为104和10uF的极性电容,负载280欧,二极管用IN5822肖特基二极管,输入用5v但无论怎么改变占空比输出都是0.不知道什么原因speic电路问题,计算和仿真都可以但就是做出来有问题,请教大家啦!!我帮你顶一下帖子吧,省得被沉了。可惜你这个问题我帮不上忙哦,我不懂。你这是用的proteus仿真吗,这个可靠不?怎么不用multisim...
孤鹰 综合技术交流