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P6SMBJ5.0 ~ P6SMBJ440CA
600W SURFACE MOUNT TRANSIENT VOLTAGE SUPPRESSOR
CASEDO-214AA(SMB)
DIMENSIONS IN MILLIMETERS AND (INCHES)
FEATURES
OPTIMIZED FOR LAN PROTECTION APPLICATION
IDEAL FOR ESD PROTECTION OF DATA LINES
IN ACCORDANCE WITH IEC 1000-4-2(IEC801-2)
IDEAL FOR EFT PROTECTION OF DATA LINE
IN ACCORDANCE WITH IEC 1000-4-4(IEC801-4)
EXCELLENT CLAMPING CAPABILITY
LOW INCREMENTAL SURGE RESISTANCE
FAST RESPONSE TIME:TYPICALLY LESS THAN 1.0 ps
FROM 0 VOLTS TO V(BR) MIN
600 W PEAK PULSE POWER CAPABILITY WITH A 10/1000
µS WAVEFORM , REPETITION RATE (DUTY CYCLE)0.01%
TYPICAL ID LESS THAN 1µA ABOVE 10V
HIGH TEMPERATURE SOLDERING GUARANTEED:
260/10 SECONDS AT TERMINAL
MECHANICAL DATA
CASEMOLDED PLASTIC
TERMINALSSOLDER PLATED
POLARITYINDICATED BY CATHODE BAND
WEIGHT0.099 GRAMS
Pb- Free: P6SMBJ5.0~P6SMBJ440CA
Halogen Free: P6SMBJ5.0-H~P6SMBJ440CA-H
MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS
RATINGS AT 25°C AMBIENT TEMPERATURE UNLESS OTHERWISE SPECIFIED
PARAMETER
SYMBOL
PEAK PULSE POWER DISSIPATION 0N 10/1000μS WAVEFORM
(NOTE 1,FIG. 1)
PEAK PULSE CURRENT OF ON 10/1000μS WAVEFORM
(NOTE1,FIG.3)
STEADY STATE POWER DISSIPATION AT TL=75(NOTE 2)
PEAK FORWARD SURGE CURRENT, 8.3ms SINGLE HALF
SINE-WAVE SUPERIMPOSED ON RATED
LOAD,UNIDIRECTIONAL ONLY (NOTE 2)
MAXIMUM INSTANTANEOUS FORWARD VOLTAGE AT 25.0A
FOR UNIDIRECTIONAL ONLY (NOTE 3 & 4)
OPERATING AND STORAGE TEMPERATURE RANGE
PPPM
IPPM
PM(AV)
IFSM
VF
TJ,TSTG
VALUE
MINIMUM 600
SEE TABLE 1
1.0
100
SEE NOTE 5
- 55 TO + 150
UNITS
WATTS
A
WATTS
A
V
STD-2008-Z9
PAGE.1

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P6SMBJ5.0 ~ P6SMBJ440CA
Part Nnmber
Reverse
Stand-off
Voltage
VRWM
UNI
P6SMBJ5.0
P6SMBJ5.0A
P6SMBJ6.0
P6SMBJ6.0A
P6SMBJ6.5
P6SMBJ6.5A
P6SMBJ7.0
P6SMBJ7.0A
P6SMBJ7.5
P6SMBJ7.5A
P6SMBJ8.0
P6SMBJ8.0A
P6SMBJ8.5
P6SMBJ8.5A
P6SMBJ9.0
P6SMBJ9.0A
P6SMBJ10
P6SMBJ10A
P6SMBJ11
P6SMBJ11A
P6SMBJ12
P6SMBJ12A
P6SMBJ13
P6SMBJ13A
P6SMBJ14
P6SMBJ14A
P6SMBJ15
P6SMBJ15A
P6SMBJ16
P6SMBJ16A
P6SMBJ17
P6SMBJ17A
P6SMBJ18
P6SMBJ18A
P6SMBJ20
P6SMBJ20A
P6SMBJ22
P6SMBJ22A
P6SMBJ24
P6SMBJ24A
P6SMBJ26
P6SMBJ26A
BI
P6SMBJ5.0C
P6SMBJ5.0CA
P6SMBJ6.0C
P6SMBJ6.0 CA
P6SMBJ6.5C
P6SMBJ6.5CA
P6SMBJ7.0C
P6SMBJ7.0CA
P6SMBJ7.5C
P6SMBJ7.5CA
P6SMBJ8.0C
P6SMBJ8.0CA
P6SMBJ8.5C
P6SMBJ8.5CA
P6SMBJ9.0C
P6SMBJ9.0CA
P6SMBJ10C
P6SMBJ10CA
P6SMBJ11C
P6SMBJ11CA
P6SMBJ12C
P6SMBJ12CA
P6SMBJ13C
P6SMBJ13CA
P6SMBJ14C
P6SMBJ14CA
P6SMBJ15C
P6SMBJ15CA
P6SMBJ16C
P6SMBJ16CA
P6SMBJ17C
P6SMBJ17CA
P6SMBJ18C
P6SMBJ18CA
P6SMBJ20C
P6SMBJ20CA
P6SMBJ22C
P6SMBJ22CA
P6SMBJ24C
P6SMBJ24CA
P6SMBJ26C
P6SMBJ26CA
V
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
Breakdown Voltage Test Current Reverse Leakage
Max. Clamp Peak Pulse
Voltage
Current
VBR @ I T
Min Max
VV
6.40 7.82
6.40 7.07
6.67 8.15
6.67 7.37
7.22 8.82
7.22 7.98
7.78 9.51
7.78 8.60
8.33 10.20
8.33 9.21
8.89 10.90
8.89 9.83
9.44 11.50
9.44 10.40
10.00 12.20
10.00 11.10
11.10 13.60
11.10 12.30
12.20 14.90
12.20 13.50
13.30 16.30
13.30 14.70
14.40 17.60
14.40 15.90
15.60 19.10
15.60 17.20
16.70 20.40
16.70 18.50
17.80 21.80
17.80 19.70
18.90 23.10
18.90 20.90
20.00 24.40
20.00 22.10
22.20 27.10
22.20 24.50
24.40 29.80
24.40 26.90
26.70 32.60
26.70 29.50
28.90 35.30
28.90 31.90
IR @ VRWM
IT Vc @ Ipp
UNI BI
m A μA μA
V
10.0 800.0 1600.0
9.6
10.0 800.0 1600.0
9.2
10.0 800.0 1600.0 11.4
10.0 800.0 1600.0 10.3
10.0 500.0 1000.0 12.3
10.0 500.0 1000.0 11.2
10.0 200.0 400.0 13.3
10.0 200.0 400.0 12.0
1.0 100.0 200.0 14.3
1.0 100.0 200.0 12.9
1.0 50.0 100.0 15.0
1.0 50.0 100.0 13.6
1.0 10.0 40.0 15.9
1.0 10.0 40.0 14.4
1.0
5.0 20.0
16.9
1.0
5.0 20.0
15.4
1.0
5.0 10.0
18.8
1.0
5.0 10.0
17.0
1.0 5.0 5.0 20.1
1.0 5.0 5.0 18.2
1.0 5.0 5.0 22.0
1.0 5.0 5.0 19.9
1.0 5.0 5.0 23.8
1.0 5.0 5.0 21.5
1.0 5.0 5.0 25.8
1.0 5.0 5.0 23.2
1.0 5.0 5.0 26.9
1.0 5.0 5.0 24.4
1.0 5.0 5.0 28.8
1.0 5.0 5.0 26.0
1.0 5.0 5.0 30.5
1.0 5.0 5.0 27.6
1.0 5.0 5.0 32.2
1.0 5.0 5.0 29.2
1.0 5.0 5.0 35.8
1.0 5.0 5.0 32.4
1.0 5.0 5.0 39.4
1.0 5.0 5.0 35.5
1.0 5.0 5.0 43.0
1.0 5.0 5.0 38.9
1.0 5.0 5.0 46.6
1.0 5.0 5.0 42.1
IPP
A
62.5
65.2
52.6
58.3
48.8
53.6
45.4
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
STD-2008-Z9
PAGE.2

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P6SMBJ5.0 ~ P6SMBJ440CA
Part Nnmber
UNI BI
P6SMBJ28 P6SMBJ28C
P6SMBJ28A P6SMBJ28CA
P6SMBJ30 P6SMBJ30C
P6SMBJ30A P6SMBJ30CA
P6SMBJ33 P6SMBJ33C
P6SMBJ33A P6SMBJ33CA
P6SMBJ36 P6SMBJ36C
P6SMBJ36A P6SMBJ36CA
P6SMBJ40 P6SMBJ40C
P6SMBJ40A P6SMBJ40CA
P6SMBJ43 P6SMBJ43C
P6SMBJ43A P6SMBJ43CA
P6SMBJ45 P6SMBJ45C
P6SMBJ45A P6SMBJ45CA
P6SMBJ48 P6SMBJ48C
P6SMBJ48A P6SMBJ48CA
P6SMBJ51 P6SMBJ51C
P6SMBJ51A P6SMBJ51CA
P6SMBJ54 P6SMBJ54C
P6SMBJ54A P6SMBJ54CA
P6SMBJ58 P6SMBJ58C
P6SMBJB58A P6SMBJ58CA
P6SMBJ60 P6SMBJ60C
P6SMBJ60A P6SMBJ60CA
P6SMBJ64 P6SMBJ64C
P6SMBJ64A P6SMBJ64CA
P6SMBJ70 P6SMBJ70C
P6SMBJ70A P6SMBJ70CA
P6SMBJ75 P6SMBJ75C
P6SMBJ75A P6SMBJ75CA
P6SMBJ78 P6SMBJ78C
P6SMBJ78A P6SMBJ78CA
P6SMBJ85 P6SMBJ85C
P6SMBJ85A P6SMBJ85CA
P6SMBJ90 P6SMBJ90C
P6SMBJ90A P6SMBJ90CA
P6SMBJ100 P6SMBJ100C
P6SMBJ100A P6SMBJ100CA
Reverse
Stand-off
Voltage
VRWM
V
28.0
28.0
30.0
30.0
33.0
33.0
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
Breakdown Voltage Test Current Reverse Leakage
VBR @ I T
Min Max
VV
31.10 38.00
31.10 34.40
33.30 40.70
33.30 36.80
36.70 44.90
36.70 40.60
40.00 48.90
40.00 44.20
44.40 54.30
44.40 49.10
47.80 58.40
47.80 52.80
50.00 61.10
50.00 55.30
53.30 65.10
53.30 58.90
56.70 69.30
56.70 62.70
60.00 73.30
60.00 66.30
64.40 78.70
64.40 71.20
66.70 81.50
66.70 73.70
71.10 86.90
71.10 78.60
77.80 95.10
77.80 86.00
83.30 102.00
83.30 92.10
86.70 106.00
86.70 95.80
94.40 115.00
94.40 104.00
100.00 122.00
100.00 111.00
111.00 136.00
111.00 123.00
IT
mA
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
IR @ VRWM
UNI BI
μA μA
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
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
Max. Clamp Peak Pulse
Voltage
Current
Vc @ Ipp
V
50.0
45.4
53.5
48.4
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
103.0
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
IPP
A
12.0
13.2
11.2
12.4
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
STD-2008-Z9
PAGE.3

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P6SMBJ5.0 ~ P6SMBJ440CA
Part Nnmber
UNI BI
P6SMBJ110 P6SMBJ110C
P6SMBJ110A P6SMBJ110CA
P6SMBJ120 P6SMBJ120C
P6SMBJ120A P6SMBJ120CA
P6SMBJ130 P6SMBJ130C
P6SMBJ130A P6SMBJ130CA
P6SMBJ150 P6SMBJ150C
P6SMBJ150A P6SMBJ150CA
P6SMBJ160 P6SMBJ160C
P6SMBJ160A P6SMBJ160CA
P6SMBJ170 P6SMBJ170C
P6SMBJ170A P6SMBJ170CA
P6SMBJ180 P6SMBJ180C
P6SMBJ180A P6SMBJ180CA
P6SMBJ190 P6SMBJ190C
P6SMBJ190A P6SMBJ190CA
P6SMBJ200A P6SMBJ200CA
P6SMBJ220A P6SMBJ220CA
P6SMBJ250A P6SMBJ250CA
P6SMBJ300A P6SMBJ300CA
P6SMBJ350A P6SMBJ350CA
P6SMBJ400A P6SMBJ400CA
P6SMBJ440A P6SMBJ440CA
Reverse
Stand-off
Voltage
VRWM
V
110.0
110.0
120.0
120.0
130.0
130.0
150.0
150.0
160.0
160.0
170.0
170.0
180.0
180.0
190.0
190.0
200.0
220.0
250.0
300.0
350.0
400.0
440.0
Breakdown Voltage Test Current Reverse Leakage
VBR @ I T
Min Max
VV
122.00 149.00
122.00 135.00
133.00 163.00
133.00 147.00
144.00 176.00
144.00 159.00
167.00 204.00
167.00 185.00
178.00 218.00
178.00 197.00
189.00 231.00
189.00 209.00
200 245
200 220
211 258
211 232
224 247
246 272
279 309
335 371
391 432
447 494
492 543
IT
mA
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
IR @ VRWM
UNI BI
μA μA
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
5.0 5.0
Max. Clamp Peak Pulse
Voltage
Current
Vc @ Ipp
V
196.0
177.0
214.0
193.0
231.0
209.0
268.0
243.0
287.0
259.0
304.0
275.0
322
292
340
308
324
356
405
486
567
648
713
IPP
A
3.1
3.4
2.8
3.1
2.6
2.9
2.2
2.5
2.1
2.3
2.0
2.2
1.24
1.37
1.18
1.30
1.23
1.12
0.99
0.82
0.71
0.62
0.56
NOTE1. Suffix 'A ' denotes 5% tolerance device. Without 'A' denotes 10% tolerance device.
2. Add suffix 'C 'or ' CA ' after part number to specify Bi-directional devices.
3. For Bi-Directional devices having VR of 10 volts and under, the IR limit is double .
STD-2008-Z9
PAGE.4

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100
NON-REPETITIVE PULSE
WAVEFORM SHOWN in
10 FIG.3
TA=25°C
1
0.1
0.1 1 10 100 1000 10000
td,PULSE WIDTH(us)
Fig.1-PEAK PULSE POWER RATING
CURVE
150
140
130
tr=10usec.
120
110
100
Pulse Width (td) is Defined
as The Point Where The Peak
90 Current Decays to 50% of IPP
80
70 Peak Value IPPM
60 10/1000uSec. Waveform as
50
40
Defined by R.E.A.
30
20 Half Value IPP/2
10 td
0
0 0.5 1 1.5 2 2.5 3 3.5
4
t,TIME(ms)
Fig.3-PULSE WAVEFORM
1000
8.3ms SINGLE HALF SINE-WAVE
(JEDEC METHOD )TJ-TJMAX
100
10
1
10 100
NUMBER OF CYCLES AT 60Hz
Fig.5-MAXIMUM NON-REPETITIVE
PEAK FORWARD SURGE CURRENT
STD-2008-Z9
P6SMBJ5.0~P6SMBJ440CA
10010
75 +150℃
1
150 +25℃
0.1
25
f=1MHz
Vsig=50mVp-p
0.1001
TJ=25°C
100.1 250.3 500.5 7501.701000.91251.11501.310705
Ta,AMBIENT TEMPERATURE(°C)
Fig.2-PULSE DERATING CURVE
10000
10000
10100000VR=Rated
Stand-off
Voltage
101000
Measured at
UNDIRECSTtaInOdN-OAfLf
10BIDIRECTIONAL
10
1 10
1 10
f=1 MHz
MVesaisgu=re5d0matVp-p
ZTEJR=O25B°CIAS
VR=0
TJ=25°C
f=1.0MHz
Vsig=50mVp-p
100 1000 10000
100 1000
V(BR),BREAKDOWN VOLTAGE(V)
Fig.4-TYPICAL JUNCTION
CAPACITANCE UNIDRECTIONAL
10000
1000
Measured at
100
10
1
Measured at
Stand-Off
Voltage(VWM)
TJ=25°C
f=1.0MHz
Vsig=50mVp-p
10 100 1000 10000
V(BR),BREAKDOWN VOLTAGE(V)
Fig.6-TYPICAL JUNCTION
CAPACITANCE BIDIRECTIONAL
PAGE.5