PHE448SB3180JR06 [KEMET]
Pulse capacitor, polypropylene film/foil;型号: | PHE448SB3180JR06 |
厂家: | KEMET CORPORATION |
描述: | Pulse capacitor, polypropylene film/foil |
文件: | 总2页 (文件大小:130K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
PHE448
RoHS
Compliant
• Pulse capacitor, polypropylene film/foil
L
B
tyPiCal aPPliCations
ConstruCtion
Polypropylene film dielectric with aluminum
foil and metallized film as electrodes,
encapsulated in self-extinguishing material
meeting the requirements of UL94V-0.
High frequency and high voltage
applications, requiring capacitors with
extremely high current handling capability,
i.e. high dU/dt values.
H
0.5
p
∅ d
l
b
gEnEral data
p
d
std l max l
30
b
ꢀated voltage ꢁꢀ, ꢂꢃꢄ
ꢀated voltage ꢁꢀ, ꢂꢅꢄ
1600
650
2000
700
15.0 0.4 0.8
6-1
0.4
ꢄapacitance range, nꢆ
1.5–
22
0.1–
3.3
ꢄapacitance values
In accordance with E12 series
ꢄapacitance tolerance
standard.
Other tolerances on request
ꢄategory temperature range
ꢀated temperature
-55 °C to +105 °C
+85° C
ꢂoltage derating
The rated voltage is decreased
with 1.3%/°C from +85 °C.
ꢄlimatic category
ꢂoltage proof
55/105/56
2 x UR, 2s
ꢇnsulation resistance
Measured at +23 °C, 100 VDC, 60s
Between terminals:
≥ 100 000 MΩ
Between terminals and case:
≥ 100 000 MΩ
ꢃissipation factor tanδ
Max values at +23°C
1 kHz:
0.03%
0.05%
10 kHz:
100 kHz: 0.1%
Pulse rise time
The capacitors can withstand an
unlimited number of pulses with a
dU/dt according to the article table.
ordEring inFormation
marKing
The article code for the standard part is
given in the article table.
For other options, see page 12.
•
•
•
RIFA
Article code
Rated capacitance according to
IEC 60062
•
•
•
Capacitance tolerance code
Rated voltage
Manufacturing date code
(year, month)
EnvironmEntal tEst data
See page 107.
10ꢀ
Phꢈ448
artiClE taBlE
ꢄapaci- Box ꢌax dimensions ꢌax ꢀtꢍꢍa ꢅrticle code
ꢄapaci- Box ꢌax dimensions ꢌax ꢀtꢍꢍa ꢅrticle code
tance
nꢆ
code in mm
B
dꢁ/dt °ꢄ/w
ꢂ/µs 85 °ꢄ
0.2 m/s
tance
nꢆ
code in mm
B
dꢁ/dt °ꢄ/w
ꢂ/µs 85 °ꢄ
0.2 m/s
h
ꢉ
h
ꢉ
1600 ꢂꢃꢄ/650 ꢂꢅꢄ
ꢉꢈꢅꢃ ꢊPꢅꢄꢇꢋG 15 ꢌꢌ
2000 ꢂꢃꢄ/700 ꢂꢅꢄ
ꢉꢈꢅꢃ ꢊPꢅꢄꢇꢋG 15 ꢌꢌ
1.5
1.8
2.2
2.7
3.3
3.9
4.7
5.6
B04 5.5 10.5 18.0 15000
B04 5.5 10.5 18.0 15000
B04 5.5 10.5 18.0 15000
B10 6.5 12.5 18.0 15000
B10 6.5 12.5 18.0 15000
B10 6.5 12.5 18.0 15000
B10 6.5 12.5 18.0 15000
B06 7.5 14.5 18.0 15000
B06 7.5 14.5 18.0 15000
B11 8.5 16.0 18.0 15000
B11 8.5 16.0 18.0 15000
B14 9.5 17.5 18.0 15000
B14 9.5 17.5 18.0 15000
B16 11.0 19.0 18.0 15000
B16 11.0 19.0 18.0 15000
87 PHE448RB4150JR06
86 PHE448RB4180JR06
84 PHE448RB4220JR06
82 PHE448RB4270JR06
82 PHE448RB4330JR06
82 PHE448RB4390JR06
82 PHE448RB4470JR06
78 PHE448RB4560JR06
78 PHE448RB4680JR06
70 PHE448RB4820JR06
70 PHE448RB5100JR06
60 PHE448RB5120JR06
60 PHE448RB5150JR06
55 PHE448RB5180JR06
0.10
0.12
0.15
0.18
0.22
0.27
0.33
0.39
0.47
0.56
0.68
0.82
1.0
B04 5.5 10.5 18.0 25000
B04 5.5 10.5 18.0 25000
B04 5.5 10.5 18.0 25000
B04 5.5 10.5 18.0 25000
B04 5.5 10.5 18.0 25000
B04 5.5 10.5 18.0 25000
B04 5.5 10.5 18.0 25000
B04 5.5 10.5 18.0 25000
B04 5.5 10.5 18.0 25000
B04 5.5 10.5 18.0 25000
B04 5.5 10.5 18.0 25000
B04 5.5 10.5 18.0 25000
B04 5.5 10.5 18.0 25000
B10 6.5 12.5 18.0 25000
B10 6.5 12.5 18.0 25000
B06 7.5 14.5 18.0 25000
B11 8.5 16.0 18.0 25000
B11 8.5 16.0 18.0 25000
B14 9.5 17.5 18.0 25000
87 PHE448SB3100JR06
87 PHE448SB3120JR06
87 PHE448SB3150JR06
87 PHE448SB3180JR06
87 PHE448SB3220JR06
87 PHE448SB3270JR06
86 PHE448SB3330JR06
86 PHE448SB3390JR06
86 PHE448SB3470JR06
85 PHE448SB3560JR06
85 PHE448SB3680JR06
85 PHE448SB3820JR06
84 PHE448SB4100JR06
82 PHE448SB4120JR06
82 PHE448SB4150JR06
78 PHE448SB4180JR06
70 PHE448SB4220JR06
70 PHE448SB4270JR06
60 PHE448SB4330JR06
6.8
8.2
10.0
12.0
15.0
18.0
22.0
1.2
55 PHE448RB5220KR06 * 1.5
1.8
2.2
2.7
3.3
* Only 10 % tolerance
dErating oF urms vs FrEQuEnCy, +85°C amBiEnt tEmPEraturE
and 10°C intErnal HEating, tyPiCal valuEs
1600 VDC/650 VAC
2000 VDC/700 VAC
650
700
650
600
550
600
550
500
450
400
350
500
450
400
330 pF
300
250
350
300
1000 pF
2700 pF
200
150
250
200
1500 pF
4700 pF
106
10000 pF
102
103
104
105
102
103
104
105
106
Frequency (Hz)
Frequency (Hz)
ꢌore simulation possibilities in Pꢄꢄꢅꢃ. ꢊee page 106.
10ꢁ
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