SV04AC103KAR AVX Corporation, SV04AC103KAR Datasheet

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SV04AC103KAR

Manufacturer Part Number
SV04AC103KAR
Description
CAP CER 10000PF 1KV 10% RADIAL
Manufacturer
AVX Corporation
Series
SVr
Datasheet

Specifications of SV04AC103KAR

Capacitance
10000pF
Voltage - Rated
1000V (1kV)
Tolerance
±10%
Temperature Coefficient
X7R
Mounting Type
Through Hole
Operating Temperature
-55°C ~ 125°C
Applications
General Purpose
Ratings
-
Package / Case
Radial
Size / Dimension
0.449" L x 0.200" W (11.40mm x 5.08mm)
Height - Seated (max)
0.220" (5.59mm)
Thickness (max)
-
Lead Spacing
0.300" (7.62mm)
Features
High Voltage
Lead Style
Straight
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
478-6817
High Voltage MLC Radials (SV Style)
Application Information on High Voltage MLC Capacitors
C0G Dielectric
General Specifications
74
Capacitance Range
10 pF to .15 μF
Capacitance Tolerances
±5%; ±10%; ±20%
Operating Temperature Range
-55°C to +125°C
Temperature Characteristic
0 ± 30 ppm/°C
Voltage Ratings
600 VDC thru 5000 VDC (+125°C)
Dissipation Factor
0.15% max.
Insulation Resistance (+25°C, at 500V)
100K MΩ min. or 1000 MΩ-μF min.,
Insulation Resistance (+125°C, at 500V)
10K MΩ min., or 100 MΩ-μF min.,
Dielectric Strength
120% rated voltage, 5 seconds
Life Test
100% rated and +125°C
(+25°C, 1.0 ±0.2 Vrms at 1kHz,
for ≤100 pF use 1 MHz)
(+25°C, 1.0 ±0.2 Vrms at 1kHz,
for ≤100 pF use 1 MHz)
whichever is less
whichever is less
High value, low leakage and small size are difficult parameters
to obtain in capacitors for high voltage systems. AVX special
high voltage MLC radial leaded capacitors meet these
performance characteristics. The added advantage of these
capacitors lies in special internal design minimizing the electric
field stresses within the MLC. These special design criteria
result in significant reduction of partial discharge activity within
the dielectric and having, therefore, a major impact on long-
term reliability of the product. The SV high voltage radial
capacitors are conformally coated with high insulation
resistance, high dielectric strength epoxy eliminating the
possibility of arc flashover.
The SV high voltage radial MLC designs exhibit low ESRs at
high frequency. The same criteria governing the high voltage
design carries the added benefits of extremely low ESR in
relatively low capacitance and small packages. These
capacitors are designed and are ideally suited for applications
such as snubbers in high frequency power converters,
resonators in SMPS, and high voltage coupling/DC blocking.
X7R Dielectric
General Specifications
Capacitance Range
100 pF to 2.2 μF
Capacitance Tolerances
Operating Temperature Range
-55°C to +125°C
Temperature Characteristic
±15% (0 VDC)
Voltage Ratings
600 VDC thru 5000 VDC (+125°C)
Dissipation Factor
2.5% max.
Insulation Resistance (+25°C, at 500V)
100K MΩ min., or 1000 MΩ-μF min.,
Insulation Resistance (+125°C, at 500V)
10K MΩ min., or 100 MΩ-μF min.,
Dielectric Strength
120% rated voltage, 5 seconds
Life Test
100% rated and +125°C
±10%; ±20%; +80%, -20%
(+25°C, 1.0 ±0.2 Vrms at 1kHz)
(+25°C, 1.0 ±0.2 Vrms at 1kHz)
whichever is less
whichever is less

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SV04AC103KAR Summary of contents

Page 1

... High value, low leakage and small size are difficult parameters to obtain in capacitors for high voltage systems. AVX special high voltage MLC radial leaded capacitors meet these performance characteristics. The added advantage of these capacitors lies in special internal design minimizing the electric field stresses within the MLC ...

Page 2

... C0G = A 1500V = S X7R = C 2000V = G 2500V = W 3000V = H 4000V = J 5000V = K Note: Capacitors with X7R dielectrics are not intended for applications across AC supply mains or AC line filtering with polarity reversal. Contact plant for recommendations. DIMENSIONS Length (L) Height (H) Thickness (T) Lead Spacing AVX Style max max SV01 6 ...

Page 3

High Voltage MLC Radials (SV Style) CAPACITANCE VALUE Style 600/630V 1000V min./max. min./max. SV01 100 pF / 1500 pF 100 pF / 1000 pF SV02/SV52 100 pF / 6800 pF 100 pF / 4700 pF 100 pF / 1500 pF ...

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