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P6SMB100AT/R7

Transient Suppressor,

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Rohs认证
符合
厂商名称
强茂(PANJIT)
Reach Compliance Code
not_compliant
ECCN代码
EAR99
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.
• Low profile package
• Built-in strain relief
• Glass passivated junction
• Low inductance
• Typical I
D
less than 1.0µA above 10V
• Plastic package has Underwriters Laboratory
Fammability Classification 94V-O
• High temperature soldering : 260°C /10 seconds at terminals
• In compliance with EU RoHS 2002/95/EC directives
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 positive end (cathode)
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 10/1000uS 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 10/1000us waveform(Note 1)Fig.3
Typical Thermal Resistance Junction to Air (Notes 2)
Operating Junction and Storage Temperature Range
Symbol
P
P P M
I
F S M
I
P P M
R
θ
J A
T
J
,T
S T G
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 5.0mm
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.
STAD-APR.21.2009
1
PAGE . 1
P6SMB SERIES
Part N umber
UNI
BI
V
R WM
Min .
V
V
V
BR
@ I
T
Ma x .
V
I
T
mA
I
R
@ V
RWM
U N I-
µ
A
B I-
µ
A
V
A
UNI
BI
V
C
@ I
PP
Marki ng C ode
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
P6SMB6.8C A
P6SMB7.5C
P6SMB7.5C A
P6SMB8.2C
P6SMB8.2C A
P6SMB9.1C
P6SMB9.1C A
P6SMB10C
P6SMB10C A
P6SMB11C
P6SMB11C A
P6SMB12C
P6SMB12C A
P6SMB13C
P6SMB13C A
P6SMB15C
P6SMB15C A
P6SMB16C
P6SMB16C A
P6SMB18C
P6SMB18C A
P6SMB20C
P6SMB20C A
P6SMB22C
P6SMB22C A
P6SMB24C
P6SMB24C A
P6SMB27C
P6SMB27C A
P6SMB30C
P6SMB30C A
P6SMB33C
P6SMB33C A
P6SMB36C
P6SMB36C A
P6SMB39C
P6SMB39C A
P6SMB43C
P6SMB43C A
P6SMB47C
P6SMB47C A
P6SMB51C
P6SMB51C A
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
D ZA
D ZB
D ZC
D ZD
D ZE
D ZF
D ZG
D ZH
D ZJ
D ZK
D ZL
D ZM
D ZN
D ZP
D ZQ
D ZR
D ZS
D ZT
D ZU
D ZV
D ZW
D ZX
D ZY
D ZZ
D XA
D XB
D XC
D XD
D XE
D XF
D XG
D XH
D XJ
D XK
D XL
D XM
D XN
D XP
D XQ
D XR
D XS
D XT
D XU
D XV
D XW
STAD-APR.21.2009
1
PAGE . 2
P6SMB SERIES
Part N umber
UNI
BI
V
R WM
Min .
V
V
V
BR
@ I
T
Ma x .
V
I
T
mA
I
R
@ V
RWM
U N I-
µ
A
B I-
µ
A
V
A
UNI
BI
V
C
@ I
PP
Marki ng C ode
600W Transient Voltage Suppressor
P6SMB56A
P6SMB62
P6SMB62A
P6SMB68
P6SMB68A
P6SMB75
P6SMB75A
P6SMB82
P6SMB82A
P6SMB91
P6SMB91A
P6SMB100
P6SMB100A
P6SMB110
P6SMB110A
P6SMB120
P6SMB120A
P6SMB130
P6SMB130A
P6SMB150
P6SMB150A
P6SMB160
P6SMB160A
P6SMB170
P6SMB170A
P6SMB180
P6SMB180A
P6SMB200
P6SMB200A
P6SMB220
P6SMB220A
P6SMB250
P6SMB250A
P6SMB300
P6SMB300A
P6SMB350
P6SMB350A
P6SMB400
P6SMB400A
P6SMB440
P6SMB440A
P6SMB480
P6SMB480A
P6SMB550
P6SMB550A
P6SMB56C A
P6SMB62C
P6SMB62C A
P6SMB68C
P6SMB68C A
P6SMB75C
P6SMB75C A
P6SMB82C
P6SMB82C A
P6SMB91C
P6SMB91C A
P6SMB100C
P6SMB100C A
P6SMB110C
P6SMB110C A
P6SMB120C
P6SMB120C A
P6SMB130C
P6SMB130C A
P6SMB150C
P6SMB150C A
P6SMB160C
P6SMB160C A
P6SMB170C
P6SMB170C A
P6SMB180C
P6SMB180C A
P6SMB200C
P6SMB200C A
P6SMB220C
P6SMB220C A
P6SMB250C
P6SMB250C A
P6SMB300C
P6SMB300C A
P6SMB350C
P6SMB350C A
P6SMB400C
P6SMB400C A
P6SMB440C
P6SMB440C A
P6SMB480C
P6SMB480C A
P6SMB550C
P6SMB550C A
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
243
256
284
300
324
342
356
376
389
408
446
467.5
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
270
285
315
332
360
380
396
418
432
456
495
523
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
330
315
385
368
440
420
484
462
528
504
605
578
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
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
430
414
504
482
574
548
631
600
691
658
792
754
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
1.4
1.5
1.2
1.3
1.1
1.10
1.0
1.04
0.87
0.91
0.76
0.80
EXX
EXY
EXZ
EY
A
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
EWG
EWH
EWJ
EWK
EWL
EWM
EWN
EWP
EWQ
EWR
EWS
EWT
D XX
D XY
D XZ
DY
A
D YB
D YC
D YD
D YE
D YF
D YG
D YH
D YJ
D YK
D YL
D YM
D YN
D YP
D YQ
D YR
D YS
D YT
D YU
D YV
D YW
D YX
D YY
D YZ
D WA
D WB
D WC
D WD
D WE
D WF
D WG
D WH
D WJ
D WK
D WL
D WM
D WN
D WP
D WQ
D WR
D WS
D WT
STAD-APR.21.2009
1
PAGE . 3
P6SMB SERIES
P
PPM
,PEAK PULSE FORWARD,KW
100
Non-Repetitve
Pulse Wavefom
Shown in Figure.3
O
T
A
= 25 C
100
PEAK PULSE FORWARD (P
PP
) OR CURRENT (I
PP
)
DERATING IN PERCENTAGE %
75
10
50
1.0
25
Mounted on 5.0mm
Copper Land Areas
0.1
0.1
1.0
10
100
1000
10000
0
0
25
50
75
100
125
150
175
200
td,PULSE WIDTH, micro sec
T
A
,AMBIENT TEMPERATURE, C
O
Fig.1 PEAK PULSE POWER RATING CURVE
Fig.2 DERATING CURVE
I
PPM
,PEAK PULSE CURRENT,%
150
tf = 10usec
T
A
= 25 C
Pulse Width (td) is Defined
as the Point where the Peak
Current Decayst to 50% of Ipp
O
6,000
4,000
Tj= 25 C
f= 1.0MHZ
Vsig = 50mVp -p
100
Peak Value
Ippm
2,000
Ha lf Va lue -Ip p
2
C
J
,CAPACIT
ANCE,p F
Me a sure d a t
Ze ro Bia s
50
10/1000u se c Wa ve fo rm
a s De fine d b ye R.E.A.
1,000
800
600
400
Me a sure d a t
Sta nd -Off
Vo lta Ge (V
RWM
)
e -kt
td
0
0
1.0
2.0
3.0
4.0
200
T,TIME,ms
Fig.3 PULSE WAVEFORM
100
80
60
40
20
I
FSM
,PEAK FORWARD SURGE CURRENT,
AMPERES
200
T
J
= T
J
ma x
8.3ms S le Ha lf Sine -Wa ve
ing
JEDEC M e tho d
Unidirectional
Bidirectional
10
1.0
2.0
5.0
10
20
50 100
200
100
50
V
(BR)
, BREAKDOWN VOLTAGE, VOLTS
Fig.4 TYPICAL CAPACITANCE
10
1
5
10
50
100
NUMBER OF CYCLES AT 60Hz
Fig.5 MAXIMUM NON-REPETITIVE PEAK
FORWARD SURGE CURRENT
STAD-APR.21.2009
1
PAGE . 4
P6SMB SERIES
MOUNTING PAD LAYOUT
ORDER INFORMATION
• Packing information
T/R - 3K per 13" plastic Reel
T/R - 0.5Kper 7” plastic Reel
LEGAL STATEMENT
Copyright PanJit International, Inc 2009
The information presented in this document is believed to be accurate and reliable. The specifications and information herein
are subject to change without notice. Pan Jit makes no warranty, representation or guarantee regarding the suitability of its
products for any particular purpose. Pan Jit products are not authorized for use in life support devices or systems. Pan Jit
does not convey any license under its patent rights or rights of others.
STAD-APR.21.2009
1
PAGE . 5
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dzgc126 综合技术交流
优化宽带信号EVM测量的三个实践技巧
误差矢量幅度(EVM)测量可以帮助工程师深入洞察数字通信发射机和接收机的性能。对于数字调制信号,任何影响信号幅度和相位轨迹的信号缺陷,都会影响到EVM的测量及其结果显示。EVM测量为数字调制信号提供了一个简单、定量的性能评定参数。图1显示了对常见调制格式的解调分析。IQ测量波形数据被分成两路:一路进入解调器恢复成原始数据比特,数据比特再经过调制,得到IQ参考(理想)波形;另一路通过信号补偿和测量滤波器的处理,得到IQ测量波形数据。...
eric_wang 综合技术交流
电路识图17-电源开关电路原理分析
电源开关电路用来控制整机的电源电源开关电路种类比较多,主要由以下几种:高压回路单刀电源开关电路;高压回路双刀电源开关电路;直流低压回路电源开关电路;定时控制电源开关电路。一、典型电源开关电路下图所示是典型的高压回路单刀电源开关电路,许多情况下电源开关设置在220V交流进线电路中。1、电路分析电路中,S1是电源开关,它采用单刀电源开关,设置在电源变压器T1的进线回路中。通常情况下,电源开关电路工作分析比较简单。关于这一电源开关电路,主要说明如下:1...
tiankai001 综合技术交流