General Electrical, Physical, and Environmental Characteristics
Test Procedures:
Section J of the catalog covers the
applicable test procedures
Humidity Test:
The Non-Hermetically sealed units shall be
tested as outlined in section J “Humidity Test”
As a result of the test there shall be:
• No visible damage
• Max.
∆
C of ± 5%
• Min. IR = 50% of initial limit
• Max. DF = .5%
Electrical Characteristics:
Capacitance, Dissipation Factor, Insulation
Resistance, and Dielectric Strength shall be
measured as specified in section J.
Physical Characteristics:
The Lead Strength shall be measured as
specified in section J.
DC Life:
810P, 820P, 842P & 860P: 140% of rated voltage at 125°C for 250 hours.
832P & 880P: 125% of rated voltage at 150C for 250 hours.
882P: 125% of rated voltage for 250 hours at 125C.
As a result of the test there shall be:
• No permanent open or short circuit
Environmental Characteristics:
Vibration Test: (Condition B)
No mechanical damage, short, open or
intermittent circuit
• No visible damage
• Max.
∆
C of ± 5%
• Min. IR = 50% of initial limit
Moisture Resistance:
The hermetically sealed units shall be tested
as outlined in the Moisture Resistance testing
of section J.
As a result of the test there shall be:
• No visible damage
• Max.
∆
C of ± 5%
• Min. IR = 50% of initial limit
• Max. DF = .5%
• Max. DF = 0.3%
AC Life:
The 859P shall be tested at 110% of the
rated rms voltage at 400 Hz for 250 hours at 85°C.
As a result of the test there shall be:
• No permanent open or short circuit
• No visible damage
• Max.
∆
C of ± 5%
• Min. IR = 50% of initial limit
• Max. DF = 0.5%
F-2
electronics
,
inc.
METALIZED POLYPHENYLENE SULFIDE FILM CAPACITORS
F3
electronics
,
inc.
POLYPHENYLENE SULFIDE FILM CAPACITORS
STYLES FOR METAL-CASE FILM CAPACITORS
SECTION GROUNDED TO CASE
SECTION INSULATED FROM CASE
DIMENSIONS IN INCHES
DIMENSIONS IN INCHES
CASE STYLE 01
+1.00
-0
1.625
CASE STYLE 02
±0.031
0.172 MAX
L
±0.031
+1.00
-0
1.625
0.172
MAX
1.625
+1.00
-0.00
L
D
-0.005
±0.015
DIA
D
+0.015
-0.005
CASE STYLE 04
+1.00
-0
1.625
±0.015
0.020
1.625
+1.000
-0.000
CASE STYLE 03
+1.00
-0
1.625
±0.015
0.020
L
±0.062
L
±0.31
0.020
±0.015
0.172
MAX
0.172
MAX
INSULATING SLEEVE
0.0075 MAX THICKNESS
D
+0.015
-0.005
D
+0.015
-0.037 DIA.
INSULATING SLEEVE
0.0075 MAX THICKNESS
CASE STYLE 12
1.625
+1.00
-0
CASE STYLE 13
1.625
+1.00
-0
1.625
+1.000
-0.000
WRAP-AROUND
APPROX. 135°
FOR 0.400 DIA.,
AND APPROX.
225° FOR LARGER DIA.
DIA
0.172
MAX
L
D
±0.031
L
±0.031
+0.015 DIA
-0.005
C
L
0.172
MAX
C
L
D
-0.005
±0.015
A
±0.005
DIA
C B
W
±0.015
0.033
±0.005
FOR 0.400 DIA.,
0.051
±0.005
FOR DIA. 0.500
AND LARGER
±0.005
A
DIA
C B
W
±0.015
0.033
±0.005
FOR 0.400
DIA., 0.051
±0.005
FOR
DIA. 0.500 AND LARGER
Bracket Dimensions (Style 12 & 13)
Inches
D
0.400
0.500
0.562
0.670
0.750
1.000
W
0.250
0.500
0.500
0.500
0.500
0.500
A
0.144
0.156
0.156
0.156
0.156
0.156
B
0.187±0.015
0.250±0.031
0.250±0.031
0.250±0.031
0.250±0.031
0.250±0.031
C
0.312±0.031
0.437±0.062
0.437±0.062
0.437±0.062
0.437±0.062
0.437±0.062
dimensionsbrac style 12 and 13
F4
electronics
,
inc.
POLYPHENYLENE SULFIDE FILM CAPACITORS
TYPICAL TAB TERMINAL DIMENSIONS
0.020
c
L
±0.005
0.125
±0.015
c
L
SLOT 0.062 x 0.125
A
B
0.296
±0.062
Dwg. No A-9525
A = 0.156 ± 0.015" (3.96 ± 0.38mm)
B = 0.187 ± 0.015" (4.75 ± 0.38mm)
Tab Terminal available only on case diameters equal to or greater than 0.400 inches.
T1 & T3 s t y l e s a r e s u p p l i e d w i t h o n e t a b t e r m i n a l o n t h e i n s u l a t e d e n d a n d a g r o u n d lead on the opposite end.
CATALOG NUMBERING SYSTEM
EXAMPLE:
859P
183
X9
165
S
02
STYLE NUMBER.
SEE PAGE 4 FOR STYLE VARIATIONS
AND CORRESPONDING DIMENSIONS. (Metal case only)
TERMINAL.
S = WIRE LEADS, T = SOLDERING TAB*
*SOLDERING TABS ARE A VAILABLE ONLY ON CASE
DIAMETERS EQUAL TO OR GREATER THAN 0.400
INCHES. (Metal case only)
AC or DC VOLTAGE RATING.
EXPRESSED IN VOLTS. SEE STANDARD
RATINGS CHARTS FOR VOLTAGE CODE.
CAPACITANCE TOLERANCE.
X0 = ±20%; X9 = ±10%
X5 = ± 5%; X2 = ±2%
X1 = ± 1%
CAPACITANCE.
EXPRESSED IN PICOFARADS. THE FIRST TWO DIGITS ARE SIGNIFICANT
FIGURES; THE THIRD IS THE NUMBER OF ZEROS FOLLOWING. SEE STANDARD RATINGS
TABLES FOR CAP ACITANCE CODE. e.g. 183 = 18000pf or 0.018µf
[i=s]This post was last edited by Beifang on 2017-9-14 15:47[/i] (1) Title of the work: Somatosensory gloves (2) Introduction to the functions of the work: The function of the somatosensory gloves is ...
Since we had a National Day holiday last week, the PCB boards and component packages were mailed this week! The PCB boards arrived first yesterday!So I couldn't wait to solder the chips I applied for ...
Anyone who has learned C language knows that they should write the main function first. However, many times we see different main functions. Why is this? Which one is correct? Today we will talk about...
[font=微软雅黑][color=#333333][size=18px]Today, I encountered a tricky problem while debugging. I would like to share the solution with you. [/size][/color][/font] [font=微软雅黑][color=#333333][size=18px]I u...
It is recommended to keep the old ST main site. The new main site is slow, and you are not familiar with which category the information is placed in. It takes a long time to find information. It is no...
As the number of cars increases, environmental pressures are also increasing. At this time, some people are saying that new energy vehicles are energy-efficient and environmentally friendly, and ar...[Details]
The mass production process of the new generation of cockpit platform has started, and the smart cockpit market has entered a new bonus cycle of technology iteration and platform upgrade.
...[Details]
As the main model among new energy vehicles, pure electric vehicles have received strong support and encouragement from the country in recent years, and their development is changing with each pass...[Details]
On August 25th, TSMC, the world's leading contract chip manufacturer, attracted significant attention for its decision to build a chip manufacturing facility in Arizona. TSMC primarily manufactures...[Details]
According to foreign media reports, Ford Motor has applied to the U.S. Patent and Social Security Office (USPTO) for a patent for a door anti-collision system that may be used in future Ford vehicl...[Details]
A pure sine wave inverter has a good output waveform with very low distortion, and its output waveform is essentially the same as the AC waveform of the mains power grid. In fact, the AC power prov...[Details]
Nascent Micro is launching devices covering a wide range of power applications, including gallium nitride (GaN) drivers, dual-channel automotive drivers, and battery protection MOSFETs.
...[Details]
In camera and display systems, the demand for high-performance and low-power data interfaces is driving continuous technological evolution. The evolution of MIPI D-PHY and MIPI C-PHY clearly ...[Details]
Blackfin® 16-/32-bit embedded processors offer high performance, low power consumption, flexible software features, and scalability, making them suitable for converged applications such as multi-fo...[Details]
The motor is a very important component for new energy vehicles. In terms of vehicle power, pure electric vehicles use electric motors instead of traditional diesel/gasoline engines. For electric v...[Details]
Keysight Technologies reported strong third-quarter results, with revenue and earnings per share exceeding expectations and steady order growth. The company, driven by strong growth across multiple...[Details]
Charge your electric car for just six minutes and you'll get 1,000 kilometers! This isn't just a scene from a science fiction film, but a reality made possible by Guoxuan High-Tech's Jinshi solid-s...[Details]
The consumer electronics, appliance, industrial, and automotive markets are experiencing increasing demand for sophisticated motor control solutions. Depending on the application, a variety of moto...[Details]
New energy electric vehicles are energy-saving, environmentally friendly, have low operating costs, and enjoy strong support from national policies. With the growth in sales of new energy electric ...[Details]
Fast charging is a method and means of quickly replenishing a vehicle's power. It is the core and most important part of electric vehicles. Speaking of fast charging, everyone is familiar with it. ...[Details]