P4KE250-LF [SIRECT]
400W TRANSIENT VOLTAGE SUPPRESSOR; 400W瞬态电压抑制器型号: | P4KE250-LF |
厂家: | Sirectifier Global Corp. |
描述: | 400W TRANSIENT VOLTAGE SUPPRESSOR |
文件: | 总4页 (文件大小:129K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
E L E C T R O N I C
P4KE6.8(C)-LF
THRU
P4KE540(C)A-LF
400W TRANSIENT VOLTAGE SUPPRESSOR
FEATURES
z PLASTIC PACKAGE HAS UNDERWRITERS LABORATORY
FLAMMABILITY CLASSIFICATION 94V-0
z 400W SURGE CAPABILITY AT 1ms
z EXCELLENT CLAMPING CAPABILITY
z LOW ZENER IMPEDANCE
z FAST RESPONSE TIME:TYPICALLY LESS THAN 1.0 PS FROM
0 VOLTS TO BV MIN
1.0(25.4)
MIN
.034(0.9)
.028(0.7)
z TYPICAL IR LESS THAN 1μA ABOVE 10V
z HIGH TEMPERATURE SOLDERING GUARANTEED:260℃/10S
.205(5.2)
.166(4.2)
/.375〞(9.5mm) LEAD LENGTH/5LBS., (2.3KG) TENSION
z LEAD FREE
.107(2.7)
.080(2.0)
1.0(25.4)
MIN
MECHANICAL DATA
z CASE:MOLDED PLASTIC
z TERMINALS︰AXIAL LEADS, SOLDERABLE PER MIL-STD-202,
METHOD 208
z POLARITY:COLOR BAND DENOTED CATHODE EXCEPT
BIPOLAR
z WEIGHT:0.34 GRAMS
CASE:DO41
DIMENSIONS IN INCHES AND (MILLIMETERS)
MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS
RATINGS AT 25°C AMBIENT TEMPERATURE UNLESS OTHERWISE SPECIFIED
RATINGS
SYMBOL
VALUE
UNITS
PEAK POWER DISSIPATION AT TA=25℃, TP=1ms(NOTE1)
PPK
IPPM
MINIMUM 400
SEE NEXT TABLE
WATTS
A
PEAK PULSE CURRENT WITH A 10/1000us WAVEFORM(NOTE 1)
STEADY STATE POWER DISSIPATION AT TL=75℃,
LEAD LENGTHS 0.375” (9.5mm) (NOTE2)
PM(AV)
1.0
WATTS
PEAK FORWARD SURGE CURRENT, 8.3ms SINGLE HALF
SINE-WAVE SUPERIMPOSED ON RATED LOAD
(JEDEC METHOD) (NOTE 3)
IFSM
40.0
Amps
TYPICAL THERMAL RESISTANCE JUNCTUION-TO-AMBIENT
℃/W
℃
RθJA
100
OPERATING AND STORAGE TEMPERATURE RANGE
TJ,TSTG
- 55 TO + 175
NOTE︰ 1. NON-REPETITIVE CURRENT PULSE, PER FIG.3 AND DERATED ABOVE TA=25℃PER FIG 2.
2. MOUNTED ON COPPER PAD AREA OF 1.6×1.6” (40×40mm) PER FIG. 5
3. 8.3ms SINGLE HALF SINE-WAVE, DUTY CYCLE=4 PULSES PER MINUTES MAXIMUM
4. FOR BIDIRECTIONAL USE C SUFFIX FOR 10﹪TOLERANCE, CA SUFFIX FOR 5﹪TOLERANCE
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BREAKDOWN VOLTAGE
BBR(VOLTS)
WORKING
PEAK
REVERSE
VOLTAGE
RWM(VOLTS)
5.50
MAXIMUM MAXIMUM
MAX
MAXIMUM
REVERSE
LEAKAGE
AT VRWM
IR(μA)
1000
1000
500
500
200
200
50
REVERSE
CURRENT
IRSM
(AMPS)
38
CLAMPING TEMPERATURE
DEVICE
@IT
VOLTAGE
VRWM
(VOLTS)
10.8
10.5
11.7
11.3
12.5
12.1
13.8
13.4
15.0
14.5
16.2
15.6
17.3
16.7
19.0
18.2
22.0
21.2
23.5
22.5
26.5
25.5
29.1
27.7
31.9
30.6
34.7
33.2
39.1
37.5
43.5
41.4
47.7
45.7
52.0
49.9
56.4
53.9
61.9
59.3
67.8
64.8
73.5
70.1
80.5
77.0
89.0
85.0
98.0
92.0
108.0
103.0
118.0
113.0
131.8
125.0
144.0
137.0
COEFICIENT
OF VBR
(%C)
0.057
0.057
0.061
0.061
0.065
0.065
0.068
0.068
0.073
0.073
0.075
0.076
0.078
0.078
0.081
0.081
0.084
0.084
0.086
0.086
0.088
0.088
0.090
0.090
0.092
0.092
0.094
0.094
0.096
0.096
0.097
0.097
0.098
0.098
0.099
0.099
0.100
0.100
0.101
0.101
0.101
0.101
0.102
0.102
0.103
0.103
0.104
0.104
0.104
0.104
0.105
0.105
0.105
0.105
0.106
0.106
0.106
0.106
(mA)
MIN
MAX
V
P4KE6.8(C)-LF
P4KE6.8(C)A-LF
P4KE7.5(C)-LF
P4KE7.5(C)A-LF
P4KE8.2(C)-LF
P4KE8.2(C)A-LF
P4KE9.1(C)-LF
P4KE9.1(C)A-LF
P4KE10(C)-LF
P4KE10(C)A-LF
P4KE11(C)-LF
P4KE11(C)A-LF
P4KE12(C)-LF
P4KE12(C)A-LF
P4KE13(C)-LF
P4KE13(C)A-LF
P4KE15(C)-LF
P4KE15(C)A-LF
P4KE16(C)-LF
P4KE16(C)A-LF
P4KE18(C)-LF
P4KE18(C)A-LF
P4KE20(C)-LF
P4KE20(C)A-LF
P4KE22(C)-LF
P4KE22(C)A-LF
P4KE24(C)-LF
P4KE24(C)A-LF
P4KE27(C)-LF
P4KE27(C)A-LF
P4KE30(C)-LF
P4KE30(C)A-LF
P4KE33(C)-LF
P4KE33(C)A-LF
P4KE36(C)-LF
P4KE36(C)A-LF
P4KE39(C)-LF
P4KE39(C)A-LF
P4KE43(C)-LF
P4KE43(C)A-LF
P4KE47(C)-LF
P4KE47(C)A-LF
P4KE51(C)-LF
P4KE51(C)A-LF
P4KE56(C)-LF
P4KE56(C)A-LF
P4KE62(C)-LF
P4KE62(C)A-LF
P4KE68(C)-LF
P4KE68(C)A-LF
P4KE75(C)-LF
P4KE75(C)A-LF
P4KE82(C)-LF
P4KE82(C)A-LF
P4KE91(C)-LF
P4KE91(C)A-LF
P4KE100(C)-LF
P4KE100(C)A-LF
6.12
6.45
6.75
7.13
7.38
7.79
8.19
8.65
9.00
9.50
9.90
10.5
10.8
11.4
11.7
12.4
13.5
14.3
14.4
15.2
16.2
17.1
18.0
19.0
19.8
20.9
21.6
22.8
24.3
25.7
27.0
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
53.2
55.8
58.9
61.2
64.6
67.5
71.3
73.8
77.9
81.9
86.5
90.0
95.0
7.48
7.14
8.25
7.88
9.02
8.61
10.0
9.55
11.0
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
22.0
21.0
24.2
23.1
26.4
25.2
29.7
28.4
33.0
31.5
36.3
34.7
39.6
37.8
42.9
41.0
47.3
45.2
51.7
49.4
56.1
53.6
61.6
58.8
68.2
65.1
74.8
71.4
82.5
78.8
90.2
86.1
100.0
95.50
110.0
105.0
10
10
10
10
10
5.80
6.05
6.40
6.63
7.02
7.37
7.78
8.10
8.55
8.92
9.40
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
45.4
47.8
50.2
53.0
55.1
58.1
60.7
64.1
66.4
70.1
73.7
77.8
81.0
40
36
37
33
35
30
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
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
50
31
10
28
10
29
5.0
26
5.0
27
5.0
24
5.0
25
5.0
22
5.0
23
5.0
19
5.0
20
5.0
18
5.0
19
5.0
16
5.0
17
5.0
14
5.0
15
5.0
13
5.0
14
5.0
12
5.0
13
5.0
11
5.0
5.0
11.2
10
5.0
10
5.0
9
5.0
9
5.0
8
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
8.4
7.4
7.8
6.8
7.1
6.2
6.5
5.7
6.0
5.2
5.5
4.7
5.0
4.3
4.6
3.9
4.1
3.6
3.7
3.2
3.4
2.9
3.1
85.5
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BREAKDOWN VOLTAGE
BBR(VOLTS)
WORKING
PEAK
REVERSE
VOLTAGE
RWM(VOLTS)
89.2
MAXIMUM MAXIMUM
MAX
MAXIMUM
REVERSE
LEAKAGE
AT VRWM
IR(μA)
5.0
REVERSE
CURRENT
IRSM
(AMPS)
2.7
CLAMPING TEMPERATURE
DEVICE
@IT
VOLTAGE
VRWM
(VOLTS)
158.0
152.0
173.0
165.0
187.0
179.0
215.0
207.0
230.0
219.0
244.0
234.0
258.0
246.0
287.0
274.0
344.0
328.0
360.0
344.0
430.0
414.0
504.0
482.0
574.0
548.0
630.0
600.0
686.0
658.0
729.0
698.0
772.0
740.0
COEFICIENT
OF VRR
(%C)
0.107
0.107
0.107
0.107
0.107
0.107
0.108
0.108
0.108
0.108
0.108
0.108
0.108
0.108
0.108
0.108
0.108
0.108
0.110
0.110
0.110
0.110
0.110
0.110
0.110
0.110
0.110
0.110
0.110
0.110
0.110
0.110
0.110
0.110
(mA)
MIN
MAX
V
P4KE110(C)-LF
P4KE110(C)A-LF
P4KE120(C)-LF
P4KE120(C)A-LF
P4KE130(C)-LF
P4KE130(C)A-LF
P4KE150(C)-LF
P4KE150(C)A-LF
P4KE160(C)-LF
P4KE160(C)A-LF
P4KE170(C)-LF
P4KE170(C)A-LF
P4KE180(C)-LF
P4KE180(C)A-LF
P4KE200(C)-LF
P4KE200(C)A-LF
P4KE220(C)-LF
P4KE220(C)A-LF
P4KE250(C)-LF
P4KE250(C)A-LF
P4KE300(C)-LF
P4KE300(C)A-LF
P4KE350(C)-LF
P4KE350(C)A-LF
P4KE400(C)-LF
P4KE400(C)A-LF
P4KE440(C)-LF
P4KE440(C)A-LF
P4KE480(C)-LF
P4KE480(C)A-LF
P4KE510(C)-LF
P4KE510(C)A-LF
P4KE540(C)-LF
P4KE540(C)A-LF
99.0
121.0
116.0
132.0
126.0
143.0
137.0
165.0
158.0
176.0
168.0
187.0
179.0
198.0
189.0
220.0
210.0
242.0
231.0
275.0
263.0
330.0
315.0
385.0
368.0
440.0
420.0
484.0
462.0
528.0
504.0
561.0
535.0
594.0
567.0
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
105.0
108.0
114.0
117.0
124.0
135.0
143.0
144.0
152.0
153.0
162.0
162.0
171.0
180.0
190.0
198.0
209.0
225.0
237.0
270.0
285.0
315.0
332.0
360.0
380.0
396.0
418.0
432.0
456.0
459.0
485.0
486.0
513.0
94.0
97.2
102.0
105.0
111.0
121.0
128.0
130.0
136.0
138.0
145.0
146.0
154.0
162.0
171.0
175.0
185.0
202.0
214.0
243.0
256.0
284.0
300.0
324.0
342.0
356.0
376.0
389.0
408.0
413.0
434.0
437.0
5.0
2.8
5.0
2.4
5.0
2.5
5.0
2.2
5.0
2.3
5.0
2.0
5.0
2.0
5.0
1.8
5.0
1.9
5.0
1.7
5.0
1.8
5.0
1.6
5.0
1.7
5.0
1.5
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
1.53
1.16
1.22
1.11
1.16
0.93
0.97
0.79
0.83
0.70
0.73
0.64
0.67
0.58
0.61
0.55
0.57
0.52
0.54
5.0
5.0
5.0
459.0
NOTES: 1. VBR MEASURED AFTER IT APPLIED FOR 300 μS,IT=SQUARE WAVE PULSE OR EQUIVALENT
2. SURGE CURRENT WAVEFORM PER FIGURE 3 AND DERATED PER FIGUE 2.
3. VF = 3.5V AT IF=25A (P4KE6.8(C) THRU P4KE200(C)A)
VF = 6.5V AT IF=25A (P4KE220(C) THRU P4KE540(C)A) ON 1/2 SQUARE OR EQUIVALENT SINE WAVE.
PW = 8.3ms, DUTY CYCLE=4 PULSES PER MINUTE MXIMUM
4. FOR BIPOLAR TYPES HAVING VRWM OF 10 VOLTS AND UNDER, THE IR LIMIT IS DOUBLED
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RATINGS AND CHARACTERISTIC CURVES P4KE6.8(C)-LF THRU P4KE540(C)A-LF
FIG. 2 - PULSE DERATING CURVE
FIG. 1 - PEAK PULSE POWER RATING CURVE
100
100
NON-REPETITIVE
PULSE WAVEFORM
SHOWN in FIG. 3
75
TA=25℃
10
50
1.0
25
0.1
0
0.1US
1.0US
10US
100US
1.0MS
10MS
0
25
50
75
100 125 150 175 200
td, PULSE WIDTH, sec
Ta, AMBIENT TEMPERATURE,℃
FIG. 3 - PULSE WAVEFORM
FIG. 4 - TYPICAL JUNCTION CAPACITANCE
UNIDRECTIONAL
150
PULSE WIDTH (td) is DEFINED
as the POINT WHERE the PEAK
CURRENT DECAYS to 50% of IPP
tr =10uSec.
PEAK VALUE
10,000
TJ=25℃
f=1.0 MHZ
Vsig=50mVp-p
IPPM
100
50
Ipp
2
HALF VALUE
10/1000uSec. WAVEFORM
as DEFINED by R.E.A.
1,000
MEASURED at
ZERO BIAS
td
0
0
1.0
2.0
3.0
4.0
t, TIME,ms
100
MEASURED at
STAND-OFF
VOLTAGE, VWM
FIG. 5 – STEADY STATE POWER DERATING CURVE
1.00
L=0.375” (9.5mm)
Lead Lengths
60Hz Resistive or
Inductive Load
0.75
0.50
0.25
0
10
1.0
10
100 200
1.6×1.6×.040”
V(BR), BREAKDOWN VOLTAGE, VOLTS
(40×40×1mm)
Copper Heat Sinks
0
25
50 75 100
125 150 175 200
FIG. 7 - MAXIMUM NON-REPETITIVE PEAK FORWARD
SURGE CURRENT UNIDIRECTIONAL ONLY
TL, LEAD TEMPERATURE (℃)
FIG. 6 - TYPICAL REVERSE LEAKAGE CHARACTERISTICS
50
8.3ms SINGLE HALF SINE-WAVE
(JEDEC Method)
TJ=Tjmax.
100
10
40
MEASURED AT DEVICES
STAND-OFF
VOLTAGE,VWM
30
20
1
TA=25℃
10
0
0.1
1
10
100
0.01
NUMBER OF CYCLES AT 60HZ
0
100
200
300
400
500
V(BR), BREAKDOWN VOLTAGE, VOLTS
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