Hermetically sealed metal enclosure. Styles and dimensions are in Guide to
Ordering section in the front of the catalog.
leaD material:
Solder coated solid wire.
leaD Wire sizes:
Case Dia.
0.175 and 0.195
0.400 thru 0.750
lead aWg
No. 24
No. 20
Case Dia.
0.235 and 0.312
1.000
lead aWg
No. 22
No. 18
• At +25°C, 100,000 Megaohm-Microfarads, need not exceed 200,000 Megaohms
• At +85°C, 6,000 Megaohm-Microfarads, need not exceed 25,000 Megaohms
• At +125°C, 1,000 Megaohm-Microfarads, need not exceed 15,000 Megaohms
MaXiMUM PUlse rise tiMe
Capacitor
length
(inch)
0.531
0.625
0.688
0.812
0.843
0.938
1.125
1.312
1.562
1.625
1.812
1.875
2.062
rise time dv / dt (V / μs)
50 V
24
13
-
-
8
-
4
3
-
-
-
-
-
100 V
-
27
20
17
-
13
10
7
5
-
4
-
-
200 V
-
55
36
27
-
22
13
12
9
-
7
-
6
400 V
-
-
80
60
-
44
-
24
19
-
13
-
10
leaD pull:
5 lbs (2.3 kg) for one minute. No physical damage.
leaD BenD:
After three complete consecutive bends. No damage.
marking:
Dearborn trademark, type or catalog number, capacitance, tolerance and voltage.
Type 820p
37
Type 820p
Metalized PolyPHeNyleNe sUlFide
Metal-Case tUbUlar Metalized PPs FilM CaPaCitors
staNdard ratiNGs
Capacitance
μF
0.010
0.015
0.022
0.033
0.047
0.068
0.10
0.15
0.22
0.33
0.47
0.68
1.00
1.50
2.00
2.70
3.00
4.00
5.00
6.80
8.20
10.00
12.00
15.00
Code
103
153
223
333
473
683
104
154
224
334
474
684
105
155
205
275
305
405
505
685
825
106
126
156
Voltage Code 050
50 VDC / 32 VaC*
D
-
-
-
-
0.174
0.174
0.174
0.193
0.235
0.312
0.312
0.312
0.312
0.400
0.400
0.400
0.400
0.500
0.500
0.562
0.562
0.670
0.670
0.750
l
-
-
-
-
0.531
0.625
0.625
0.625
0.625
0.625
0.625
0.843
0.843
0.843
0.843
1.125
1.125
1.125
1.125
1.125
1.312
1.312
1.312
1.375
Voltage Code 100
100 VDC / 63 VaC*
D
0.174
0.174
0.174
0.174
0.193
0.235
0.235
0.312
0.312
0.312
0.400
0.400
0.400
0.500
0.500
0.562
0.562
0.562
0.670
0.670
0.670
0.750
-
-
l
0.625
0.625
0.625
0.625
0.625
0.625
0.688
0.625
0.688
0.812
0.688
0.812
0.938
0.938
1.125
1.312
1.312
1.562
1.312
1.562
1.812
1.812
-
-
Voltage Code 200
200 VDC / 126 VaC*
D
l
0.174
0.625
0.174
0.625
0.193
0.625
0.235
0.625
0.235
0.688
0.312
0.625
0.312
0.688
0.312
0.812
0.400
0.812
0.400
0.938
0.400
1.125
0.500
1.125
0.562
1.125
0.562
1.312
0.562
1.812
0.670
1.562
0.750
1.562
0.750
1.812
0.750
2.062
-
-
-
-
-
-
-
-
-
-
Voltage Code 400
400 VDC / 240 VaC*
D
l
0.235
0.688
0.235
0.812
0.312
0.688
0.312
0.812
0.400
0.812
0.400
0.938
0.400
1.125
0.400
1.312
0.562
1.125
0.562
1.562
0.562
1.812
0.670
1.812
0.750
2.062
1.000
1.812
1.000
2.062
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
Additional capacitance values, voltages, and tolerances are available upon request.
* AC voltage rating is at 400Hz. 1.4 x VRMS + VDC should not exceed the rated VDC.
* Graphs of AC voltage vs. frequency follow.
The dimensions shown above are for styles 02, 04 and 13. The dimensions for other styles are included in the general section in the front of the catalog.
38
Metalized PolyPHeNyleNe sUlFide
Metal-Case tUbUlar Metalized PPs FilM CaPaCitors
VOLTAGE vs FREQUENCY TYPE 820P
VOLTAGE vs FREQUENCY TYPE 820P
VOltage Vs. FreQuenCY tYpe 820p
VOLTAGE vs FREQUENCY TYPE 820P
VOLTAGE vs FREQUENCY TYPE 820P
50 VDC / 32 VaC
VRMS
VRMS
VRMS
100 100 VRMS
100 100
50VDC\32VAC
50VDC\32VAC
50VDC\32VAC
50VDC\32VAC
VOLTAGE vs FREQUENCY TYPE 820P
VOLTAGE vs FREQUENCY TYPE 820P
VOltage Vs. FreQuenCY tYpe 820p
VOLTAGE vs FREQUENCY TYPE 820P
VOLTAGE vs FREQUENCY TYPE 820P
100 VDC / 63 VaC
100VDC\63VAC
100VDC\63VAC
VRMS
VRMS
VRMS
100 100 VRMS
100 100
100VDC\63VAC
100VDC\63VAC
63 63 VRMS
VRMS
63 63 VRMS
VRMS
0.033
µ F µ F
0.033
0.033
µ F µ F
0.033
0.10.1
µ F
µF
10.0
µ F µ F
10.0
0.10.1
µ F
10.0
µ F µ F
10.0
0.47
µ F µ Fµ F
0.47
5.05.0
µ F
0.47
µ F µ F
µF
0.47
5.05.0
µ F
µF
2.72.7
µ F
1.01.0
µ F
µF
µF
2.72.7
µ F
1.01.0
µ F
µF
µF
32 32 VRMS
VRMS
32 32 VRMS
VRMS
1.01.0
µ F
µF
15.0
µ F µ F
15.0
1.01.0
µ F
µF
15.0
µ F µ F
15.0
8.28.2
µ F
µF
1.01.0
µ F
µF
8.28.2
µ F
5.0
µ F
1.01.0
µ F
0.47µ
F
µ F
5.0
µ F
µ F
0.47µ
F
0.47µ
F F
0.47µ
5.05.0
µ F
µF
2.72.7 µ F
µF
2.72.7 µ F
µF
10 10
10 10
10 10
10 10
1 1
1 1
1,000
1,000
1,000
1,000
10,000
10,000
10,000
10,000
Frequency (Hz)(Hz)
Frequency
Frequency (Hz)(Hz)
Frequency
40,000
40,000
40,000
40,000
1 1
1 1
1,000
1,000
1,000
1,000
10,000
10,000
10,000
10,000
Frequency (Hz)(Hz)
Frequency
Frequency (Hz)(Hz)
Frequency
40,000
40,000
40,000
40,000
VOltage Vs. FreQuenCY tYpe 820p
VOLTAGE vs FREQUENCY TYPE 820P
VOLTAGE vs FREQUENCY TYPE 820P
VOLTAGE vs FREQUENCY TYPE 820P
VOLTAGE vs FREQUENCY TYPE 820P
200VDC\126VAC
200 VDC / 126 VaC
200VDC\126VAC
200VDC\126VAC
200VDC\126VAC
VRMS
VRMS
VRMS
300 300 VRMS
300 300
VOltage Vs.
vs FREQUENCY
tYpe
820P
VOLTAGE
FreQuenCY
TYPE
820p
VOLTAGE vs FREQUENCY TYPE 820P
400VDC\240VAC
400 VDC / 240 VaC
400VDC\240VAC
VRMS
VRMS
VRMS
300 300 VRMS
300 300
VOLTAGE vs FREQUENCY TYPE 820P
VOLTAGE vs FREQUENCY TYPE 820P
400VDC\240VAC
400VDC\240VAC
240 VRMS
240 VRMS
240 VRMS
240 VRMS
µF
100 100
5.0 5.0
µ F
µF µF µF
100 100
5.0 5.0 2.7 2.7
µ F
126 VRMS
126 VRMS
126 VRMS
126 VRMS
2.72.7 1.01.0 0.47
µ F µ F
0.10µ0.033
µ F µ
0.01µ
F F
µ F µ F µ F µ F
0.47 0.10µ
F F
0.033
F
0.01µ
1.01.0 0.47
µ F µ F
0.10µ0.033
µ F µ
0.01µ
F F
µ F µ F
0.47 0.10µ
F F
0.033
F
0.01µ
100 100
100 100
2.02.0
µ F
µF
2.02.01.01.0
µ F
µ F µ Fµ F
1.01.0
µ F
µF
0.47µ
F F
0.47µ
0.47µ
F
0.10µ
F F
0.47µ
F
0.10µ
0.10µ
F F
0.10µ
0.033
µ F µ F
0.033
0.033
µ
0.01µ
F F
0.033
µ
0.01µ
F F
0.01µ
F F
0.01µ
10 10
10 10
1 1
1 1
1,000
1,000
1,000
1,000
10,000
10,000
10,000
10,000
Frequency (Hz)(Hz)
Frequency
Frequency
Frequency (Hz)(Hz)
40,000
40,000
40,000
40,000
10 10
10 10
100 100
100 100
1,000
1,000
1,000
1,000
10,000
10,000
10,000
10,000
Frequency (Hz)(Hz)
Frequency
Frequency
Frequency (Hz)(Hz)
40,000
40,000
40,000
40,000
Type 820p
39
General inFormation on polyphenlyene sulFide capacitors
General electrical, physical,
and environmental characteristics
ELECTRICAL CHARACTERISTICS:
Capacitance, dissipation factor, insulation resistance, and dielectric strength shall
be measured as specified.
PHYSICAL CHARACTERISTICS:
The lead strength shall be measured as specified.
ENVIRONMENTAL CHARACTERISTICS:
Vibration Test:
Units shall be tested as required. As a result of the test no mechanical damage,
short, open or intermittent circuit.
MOISTuRE RESISTANCE:
The hermetically sealed units shall be tested.
As a result of the test there shall be:
• No visible damage
• Min. IR = 50% of initial limit
• Max. Δ C of ± 5%
• Max. DF = 0.5%
AC LIFE:
The Type 859P shall be tested at 110% of the rated rms voltage at 400Hz for
250 hours at 85°C.
As a result of the test there shall be:
• No permanent open or short circuit
• Max. Δ C of ± 5%
• Max. DF = 0.5%
• No visible damage
• Min. IR = 50% of initial limit
HuMIDITY TEST:
The non-hermetically sealed units shall be tested.
As a result of the test there shall be:
• No visible damage
• Min. IR = 50% of initial limit
DC LIFE:
820P, 842P, 859P are tested in accordance with the applicable Mil Spec.
810P, 832P, 860P & 882P: 140% of rated voltage at 125°C for 250 hours
880P: 125% of rated voltage for 250 hours at 150°C.
As a result of the test there shall be:
• No permanent open or short circuit
• Max. Δ C of ± 5%
• Max. DF = 0.3%
• No visible damage
• Min. IR = 50% of initial limit
• Max. Δ C of ± 5%
• Max. DF = 0.5%
METALIzED POLYCARbONATE / POLYPHENYLENE SuLFIDE
POLYPHENYLENE SuLFIDE
(Replacement for Polycarbonate)
Part Number
859P
860P
820P
-
832P
842P
880P
Mil Spec Number
39022 / 12
-
39022 / 13
95008
-
55514 / 13
-
Catalog
Page
40
42
37
-
137
140
143
POLYCARbONATE
Part Number
259P
260P
620P
629P
632P
642P
-
Mil Spec
Number
39022 / 7
-
39022 / 10
83439 / 4 / 6
95008
-
55514 / 7
-
Outline
Drawing
POLYCARbONATE / POLYPHENYLENE SuLFIDE
Description
AC Rated
-55°C to +105°C
Various Configurations
Cap Range
μF
0.01 - 10.0
0.01 - 10.0
0.01 - 15.0
0.01 - 15.0
0.001 - 10.0
0.01 - 15.0
0.0047 - 10.0
DC Voltage
Range
80 - 440
VAC
200 - 600
50 - 400
50 - 400
63 - 400
50 - 200
50 - 400
55°C to +105°C
Small Size
-55°C to +125°C
Feed Thru
-55°C to +125°C
Wrap & Fill
-55°C to +125°C
Miniature Wrap & Fill
-55°C to +125°C
High Temp, PPS
-55°C to +150°C
Pulse Capacitor
-55°C to +125°C
Zero TCC PPS
-55°C to +125°C
FILM / FOIL POLYCARbONATE / POLYPHENYLENE SuLFIDE
810P
882P
-
-
147
149
610P
-
-
-
0.001 - 1.0
0.001 - 0.22
50 - 400
200
12
General inFormation on polyphenlyene sulFide capacitors
[size=4] The F7 board does not have an IDD interface for users to test the power consumption characteristics of the MCU, so it can only measure the power consumption of the entire board. [/size] [size...
[align=left][align=left]Because I often read some technical articles by experts on EEWORLD, I had the opportunity to apply for the SAM D21 development board. That time, I checked some information on E...
I got to know this demo provided by Shenzhen Xinhai Technology through work , so I posted a picture to share with you. This is a real circuit of a single-phase smart meter of State Grid. The chip in t...
From being a global leader to losing the market, Korean battery manufacturers have always wanted to regain the lost market and dignity, but facing Chinese battery manufacturers represented by CAT...[Details]
How do you know if a machine is operating properly? The answer: by leveraging deep learning to detect anomalies in routine vibration data from industrial machines. Anomaly detection has many uses, ...[Details]
Some time ago, I attended the 4th Energy Chemistry Forum of the Chinese Chemical Society and learned about high-energy-density and high-safety batteries. I would like to summarize and share this wi...[Details]
The jammer is a signal blocker, mainly composed of a chip and a radio transmitter. When the car owner presses the remote control lock button, the jammer interferes with the electronic lock receivin...[Details]
New energy pure electric vehicles generally accelerate faster than comparable fuel-powered vehicles, both from a standing start and while accelerating. Many believe this is simply due to the motor'...[Details]
For healthcare professionals, accurate diagnosis and treatment are crucial for a clear picture of a person's health. However, healthcare professionals often rely on tests at medical facilities, cli...[Details]
On August 22, Lantu Motors officially launched its Lanhai Intelligent Hybrid technology via an online livestream. This intelligent hybrid technology, which integrates a full-range 800V high-voltage...[Details]
Gross profit margin jumped from 13.6% in the first half of last year to 25.9%, almost doubling year-on-year.
On August 21, RoboSense released its interim performance report, in which the...[Details]
On August 20th, Tiantai Robotics Co., Ltd., along with strategic partners including Shandong Future Robotics Technology Co., Ltd., Shandong Future Data Technology Co., Ltd., and Gangzai Robotics Gr...[Details]
In the summer of 2025, BlueOval SK, a joint venture between Ford and SK On, officially started production at its first battery factory in Kentucky.
According to the original plan, this w...[Details]
On August 22, the National Energy Administration released the latest data, showing that by the end of July 2025, China's total number of electric vehicle charging infrastructure will reach 16.696 m...[Details]
On August 22, South Korean media Nate reported on the 20th local time that Samsung Electronics is introducing Hyper Cell technology into its most advanced 2nm process technology, striving to improv...[Details]
Electric vehicles are becoming increasingly popular, with increasingly longer ranges. There are two ways to charge electric vehicles: slow charging and fast charging. Which is the most suitable? Sl...[Details]
The practice of warming up a car originated with gasoline-powered vehicles. Warming up the engine allows it to enter a better working state and ensures good lubrication. This has become a habit for...[Details]
PowiGaN achieves 95% efficiency at both light and full loads, meeting critical operational and safety requirements.
DARWIN, Australia and SAN JOSE, Calif.,
August 22, 2025 – Powe...[Details]