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WIMA MKP DataSheet

No. parte # Fabricante Descripción Hoja de Datos
1
MKP2F033301M00xxxx

WIMA
Metallized Polypropylene Capacitors
˜ High volume/capacitance ratio ˜ Self-healing ˜ Increased pulse duty from 250 VDC rated voltage ˜ Very low dissipation factor ˜ Negative capacitance change versus temperature ˜ Very low dielectric absorption ˜ According to RoHS 20
Datasheet
2
MKP2J014701B00xxxx

WIMA
Metallized Polypropylene Capacitors
˜ High volume/capacitance ratio ˜ Self-healing ˜ Increased pulse duty from 250 VDC rated voltage ˜ Very low dissipation factor ˜ Negative capacitance change versus temperature ˜ Very low dielectric absorption ˜ According to RoHS 20
Datasheet
3
MKP2J024701M00xxxx

WIMA
Metallized Polypropylene Capacitors
˜ High volume/capacitance ratio ˜ Self-healing ˜ Increased pulse duty from 250 VDC rated voltage ˜ Very low dissipation factor ˜ Negative capacitance change versus temperature ˜ Very low dielectric absorption ˜ According to RoHS 20
Datasheet
4
MKP2J012201B00xxxx

WIMA
Metallized Polypropylene Capacitors
˜ High volume/capacitance ratio ˜ Self-healing ˜ Increased pulse duty from 250 VDC rated voltage ˜ Very low dissipation factor ˜ Negative capacitance change versus temperature ˜ Very low dielectric absorption ˜ According to RoHS 20
Datasheet
5
MKP2J023301K00xxxx

WIMA
Metallized Polypropylene Capacitors
˜ High volume/capacitance ratio ˜ Self-healing ˜ Increased pulse duty from 250 VDC rated voltage ˜ Very low dissipation factor ˜ Negative capacitance change versus temperature ˜ Very low dielectric absorption ˜ According to RoHS 20
Datasheet
6
MKP2F026801E00xxxx

WIMA
Metallized Polypropylene Capacitors
˜ High volume/capacitance ratio ˜ Self-healing ˜ Increased pulse duty from 250 VDC rated voltage ˜ Very low dissipation factor ˜ Negative capacitance change versus temperature ˜ Very low dielectric absorption ˜ According to RoHS 20
Datasheet
7
MKP2J021501F00xxxx

WIMA
Metallized Polypropylene Capacitors
˜ High volume/capacitance ratio ˜ Self-healing ˜ Increased pulse duty from 250 VDC rated voltage ˜ Very low dissipation factor ˜ Negative capacitance change versus temperature ˜ Very low dielectric absorption ˜ According to RoHS 20
Datasheet
8
MKP2F031001F00xxxx

WIMA
Metallized Polypropylene Capacitors
˜ High volume/capacitance ratio ˜ Self-healing ˜ Increased pulse duty from 250 VDC rated voltage ˜ Very low dissipation factor ˜ Negative capacitance change versus temperature ˜ Very low dielectric absorption ˜ According to RoHS 20
Datasheet
9
MKP2C023301B00xxxx

WIMA
Metallized Polypropylene Capacitors
˜ High volume/capacitance ratio ˜ Self-healing ˜ Increased pulse duty from 250 VDC rated voltage ˜ Very low dissipation factor ˜ Negative capacitance change versus temperature ˜ Very low dielectric absorption ˜ According to RoHS 20
Datasheet
10
MKP2C024701C00xxxx

WIMA
Metallized Polypropylene Capacitors
˜ High volume/capacitance ratio ˜ Self-healing ˜ Increased pulse duty from 250 VDC rated voltage ˜ Very low dissipation factor ˜ Negative capacitance change versus temperature ˜ Very low dielectric absorption ˜ According to RoHS 20
Datasheet
11
MKP2C026801E00xxxx

WIMA
Metallized Polypropylene Capacitors
˜ High volume/capacitance ratio ˜ Self-healing ˜ Increased pulse duty from 250 VDC rated voltage ˜ Very low dissipation factor ˜ Negative capacitance change versus temperature ˜ Very low dielectric absorption ˜ According to RoHS 20
Datasheet
12
MKP2C031501H00xxxx

WIMA
Metallized Polypropylene Capacitors
˜ High volume/capacitance ratio ˜ Self-healing ˜ Increased pulse duty from 250 VDC rated voltage ˜ Very low dissipation factor ˜ Negative capacitance change versus temperature ˜ Very low dielectric absorption ˜ According to RoHS 20
Datasheet
13
MKP2C032201K00xxxx

WIMA
Metallized Polypropylene Capacitors
˜ High volume/capacitance ratio ˜ Self-healing ˜ Increased pulse duty from 250 VDC rated voltage ˜ Very low dissipation factor ˜ Negative capacitance change versus temperature ˜ Very low dielectric absorption ˜ According to RoHS 20
Datasheet
14
MKP2C033301M00xxxx

WIMA
Metallized Polypropylene Capacitors
˜ High volume/capacitance ratio ˜ Self-healing ˜ Increased pulse duty from 250 VDC rated voltage ˜ Very low dissipation factor ˜ Negative capacitance change versus temperature ˜ Very low dielectric absorption ˜ According to RoHS 20
Datasheet
15
MKP2F021001B00xxxx

WIMA
Metallized Polypropylene Capacitors
˜ High volume/capacitance ratio ˜ Self-healing ˜ Increased pulse duty from 250 VDC rated voltage ˜ Very low dissipation factor ˜ Negative capacitance change versus temperature ˜ Very low dielectric absorption ˜ According to RoHS 20
Datasheet
16
MKP2F021501B00xxxx

WIMA
Metallized Polypropylene Capacitors
˜ High volume/capacitance ratio ˜ Self-healing ˜ Increased pulse duty from 250 VDC rated voltage ˜ Very low dissipation factor ˜ Negative capacitance change versus temperature ˜ Very low dielectric absorption ˜ According to RoHS 20
Datasheet
17
MKP2F022201B00xxxx

WIMA
Metallized Polypropylene Capacitors
˜ High volume/capacitance ratio ˜ Self-healing ˜ Increased pulse duty from 250 VDC rated voltage ˜ Very low dissipation factor ˜ Negative capacitance change versus temperature ˜ Very low dielectric absorption ˜ According to RoHS 20
Datasheet
18
MKP2F024701C00xxxx

WIMA
Metallized Polypropylene Capacitors
˜ High volume/capacitance ratio ˜ Self-healing ˜ Increased pulse duty from 250 VDC rated voltage ˜ Very low dissipation factor ˜ Negative capacitance change versus temperature ˜ Very low dielectric absorption ˜ According to RoHS 20
Datasheet
19
MKP2F031501K00xxxx

WIMA
Metallized Polypropylene Capacitors
˜ High volume/capacitance ratio ˜ Self-healing ˜ Increased pulse duty from 250 VDC rated voltage ˜ Very low dissipation factor ˜ Negative capacitance change versus temperature ˜ Very low dielectric absorption ˜ According to RoHS 20
Datasheet
20
MKP2F032201K00xxxx

WIMA
Metallized Polypropylene Capacitors
˜ High volume/capacitance ratio ˜ Self-healing ˜ Increased pulse duty from 250 VDC rated voltage ˜ Very low dissipation factor ˜ Negative capacitance change versus temperature ˜ Very low dielectric absorption ˜ According to RoHS 20
Datasheet



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