Cornell Dubilier Hi-Q Mica Capacitors MCM01-001DD400G-F

Description
Types MCM and MIN SMT clad PTFE and mica capacitors are top performers for high power applications requiring low inductance at high frequencies and can operate at temperatures up to 200 ºC and voltages to 1000 Vdc. Choosing from 16 different configurations offers easy mounting with options for surface mount as well as through-hole and mechanical assembly. To assure high current capability in the smallest capacitors, low-capacitance ratings use polytetrafluorethyle ne (PTFE) that has ultra-low dielectric absorption – better than polypropylene, polystyrene and NPO ceramic.
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Description
Types MCM and MIN SMT clad PTFE and mica capacitors are top performers for high power applications requiring low inductance at high frequencies and can operate at temperatures up to 200 ºC and voltages to 1000 Vdc. Choosing from 16 different configurations offers easy mounting with options for surface mount as well as through-hole and mechanical assembly. To assure high current capability in the smallest capacitors, low-capacitance ratings use polytetrafluorethyle ne (PTFE) that has ultra-low dielectric absorption – better than polypropylene, polystyrene and NPO ceramic.
Request a Quote Datasheet

Suppliers

Company
Product
Description
Supplier Links
Hi-Q Mica Capacitors - MCM01-001DD400G-F - Richardson RFPD
Downers Grove, IL, United States
Hi-Q Mica Capacitors
MCM01-001DD400G-F
Hi-Q Mica Capacitors MCM01-001DD400G-F
Types MCM and MIN SMT clad PTFE and mica capacitors are top performers for high power applications requiring low inductance at high frequencies and can operate at temperatures up to 200 ºC and voltages to 1000 Vdc. Choosing from 16 different configurations offers easy mounting with options for surface mount as well as through-hole and mechanical assembly. To assure high current capability in the smallest capacitors, low-capacitance ratings use polytetrafluorethyle ne (PTFE) that has ultra-low dielectric absorption – better than polypropylene, polystyrene and NPO ceramic.

Types MCM and MIN SMT clad PTFE and mica capacitors are top performers for high power applications requiring low inductance at high frequencies and can operate at temperatures up to 200 ºC and voltages to 1000 Vdc. Choosing from 16 different configurations offers easy mounting with options for surface mount as well as through-hole and mechanical assembly. To assure high current capability in the smallest capacitors, low-capacitance ratings use polytetrafluorethylene (PTFE) that has ultra-low dielectric absorption – better than polypropylene, polystyrene and NPO ceramic.

Supplier's Site Datasheet
Mica Capacitors 2002-MCM01-001DD400G-F
SMT Clad RF Capacitors 40µF 500V

SMT Clad RF Capacitors 40µF 500V

Supplier's Site Datasheet
Mica and PTFE Capacitors - MCM01-001DD400G-F-ND - DigiKey
Thief River Falls, MN, United States
Mica and PTFE Capacitors
MCM01-001DD400G-F-ND
Mica and PTFE Capacitors MCM01-001DD400G-F-ND
40pF Mica Capacitor 500V Nonstandard SMD

40pF Mica Capacitor 500V Nonstandard SMD

Buy Now Datasheet
Capacitors - Mica and PTFE Capacitors - MCM01-001DD400G-F - Acme Chip Technology Co., Limited
Shenzhen, China
Capacitors - Mica and PTFE Capacitors
MCM01-001DD400G-F
Capacitors - Mica and PTFE Capacitors MCM01-001DD400G-F
CAP MICA 40PF 2% 500V SMD

CAP MICA 40PF 2% 500V SMD

Supplier's Site

Technical Specifications

  Richardson RFPD New Yorker Electronics Co., Inc. DigiKey Acme Chip Technology Co., Limited
Product Category Capacitors Capacitors Capacitors Capacitors
Product Number MCM01-001DD400G-F 2002-MCM01-001DD400G-F MCM01-001DD400G-F-ND MCM01-001DD400G-F
Product Name Hi-Q Mica Capacitors Mica Capacitors Mica and PTFE Capacitors Capacitors - Mica and PTFE Capacitors
Configuration / Form Factor Chip Capacitor Chip Capacitor Chip Capacitor Chip Capacitor
Operating Temperature -55 to 200 C (-67 to 392 F) -55 to 200 C (-67 to 392 F) -55 to 200 C (-67 to 392 F)
Capacitance Range 4.00E-5 microF 40 microF 4.00E-5 microF
Capacitance Tolerance 2 (+/- %) 2 (+/- %)
WVDC 500 volts 500 volts 500 volts
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