B32922C3334M EPCOS Inc, B32922C3334M Datasheet

CAP .33UF 305VAC EMI SUPPRESSION

B32922C3334M

Manufacturer Part Number
B32922C3334M
Description
CAP .33UF 305VAC EMI SUPPRESSION
Manufacturer
EPCOS Inc
Series
MKP B32922r
Datasheets

Specifications of B32922C3334M

Capacitance
0.33µF
Tolerance
±20%
Lead Spacing
0.591" (15.00mm)
Voltage - Ac
305V
Voltage - Dc
630V
Dielectric Material
Polypropylene, Metallized
Operating Temperature
-40°C ~ 110°C
Mounting Type
Through Hole
Package / Case
Radial
Size / Dimension
0.709" L x 0.315" W (18.00mm x 8.00mm)
Height
0.551" (14.00mm)
Termination
PC Pins
Features
EMI Suppression
Voltage Rating
305 Volts
Termination Style
Radial
Dimensions
8 mm W x 18 mm L x 14 mm H
Operating Temperature Range
0 C to + 110 C
Dissipation Factor Df
1
Product
Metallized Polypropylene Suppression Capacitors
Brand/series
B32922 Series
Diameter, Lead Wire
0.8 mm
Dissipation Factor
1 %
Dissipation Factor, Test Condition
@ 1 kHz
Insulation Resistance
100000 Megohms
Lead Pitch
15 mm
Length
18 mm
Length, Lead
6 mm
Material, Element
Polypropylene Film
Temperature, Operating, Maximum
+125 °C
Temperature, Operating, Minimum
-55 °C
Voltage, Rating
305 VAC
Max. Operating Temperature
125°C
Approvals
UL, cUL, ENEC, CQC
Tolerance (+ Or -)
20%
Voltage
305VAC
Temp Coeff (dielectric)
PLYP
Mounting Style
Through Hole
Construction
Radial
Failure Rate
Not Required
Seated Plane Height
14mm
Product Diameter (mm)
Not Requiredmm
Product Height (mm)
14mm
Product Depth (mm)
8mm
Product Length (mm)
18mm
Lead Spacing (nom)
15mm
Lead Diameter (nom)
0.8mm
Operating Temp Range
-40C to 105C
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Esr (equivalent Series Resistance)
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
495-2321
B32922C3334M000

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
B32922C3334M000
Manufacturer:
EPCOS
Quantity:
42 000
Part Number:
B32922C3334M000
Quantity:
9 035
Part Number:
B32922C3334M189
Manufacturer:
SAMSUNG
Quantity:
420 000
Part Number:
B32922C3334M26
Manufacturer:
EPCOS
Quantity:
88 600
Part Number:
B32922C3334M289
Manufacturer:
EPCOS
Quantity:
42 000
Film Capacitors
EMI Suppression Capacitors (MKP)
Series/Type:
Date:
© EPCOS AG 2009. Reproduction, publication and dissemination of this publication, enclosures hereto and the
information contained therein without EPCOS' prior express consent is prohibited.
B32921C/D ... B32926C/D
May 2009

Related parts for B32922C3334M

B32922C3334M Summary of contents

Page 1

... Film Capacitors EMI Suppression Capacitors (MKP) Series/Type: B32921C/D ... B32926C/D Date: May 2009 © EPCOS AG 2009. Reproduction, publication and dissemination of this publication, enclosures hereto and the information contained therein without EPCOS' prior express consent is prohibited. ...

Page 2

... EMI suppression capacitors (MKP 305 V AC Typical applications X2 class for interference suppression "Across the line" applications Climatic Max. operating temperature: 110 C Climatic category (IEC 60068-1): 40/105/56 Construction Dielectric: polypropylene (MKP) Plastic case (UL 94 V-0) Epoxy resin sealing (UL 94 V-0) Features Very small dimensions ...

Page 3

Overview of available types Lead spacing 10 mm Type B32921 0.010 0.022 0.033 0.047 0.068 0.10 0.15 0.22 0.33 0.47 0.68 1.0 1.5 2.2 3.3 4.7 6.8 10 Please read Cautions and warnings and Important notes ...

Page 4

... B32921C3104M*** 10.5 18.0 B32922C3333K*** 10.5 18.0 B32922C3473K*** 10.5 18.0 B32922C3683K*** 10.5 18.0 B32922C3104+*** 12.0 18.0 B32922C3154+*** 12.5 18.0 B32922C3224+*** 14.0 18.0 B32922C3334M*** 14.5 18.0 B32922D3334K*** 17.5 18.0 B32922C3474+*** 18.5 18.0 B32922C3684+*** 15.0 26.5 B32923C3224+*** 15.0 26.5 B32923C3334M*** 16.0 26.5 B32923D3334K*** 16.5 26 ...

Page 5

Ordering codes and packing units Lead spacing C Max. dimensions 27.5 0.68 11.0 1.0 11.0 1.5 12.5 2.2 14.0 3.3 16.0 3.3 18.0 4.7 18.0 4.7 21.0 37.5 2.2 14.0 3.3 16.0 4.7 18.0 ...

Page 6

B32921C/D ... B32926C 305 V AC Technical data Max. operating temperature T op,max Dissipation factor tan ( (upper limit values) Insulation resistance R ins or time constant = ins ...

Page 7

Pulse handling capability "dV/dt" represents the maximum permissible voltage change per unit of time for non-sinusoidal voltages, expressed "k " represents the maximum permissible pulse characteristic of the waveform applied to the 0 2 capacitor, expressed in ...

Page 8

... Before a solderability test is carried out, terminals are subjected to accelerated ageing (to IEC 60068-2-2, test Ba exposure to dry heat at 155 C). Since the ageing temperature is far higher than the upper category temperature of the capacitors, the terminal wires should be cut off from the capacitor before the ageing procedure to prevent the solderability being impaired by the products of any capacitor decomposition that might occur ...

Page 9

... Please read Cautions and warnings and Important notes at the end of this document. B32921C/D ... B32926C/D 2.0 +0/ 0.5 mm from capacitor body or seating plane Heat-absorbing board, (1.5 0.5) mm thick, between capacitor body and liquid solder No visible damage 2% for MKT/MKP/MFP 5% for EMI suppression capacitors As specified in sectional specification Page 305 V AC ...

Page 10

... B32921C/D ... B32926C 305 V AC 1.3 General notes on soldering Permissible heat exposure loads on film capacitors are primarily characterized by the upper cate- gory temperature T . Long exposure to temperatures above this type-related temperature limit max can lead to changes in the plastic dielectric and thus change irreversibly a capacitor's electrical characteristics ...

Page 11

... MKT, MKP, MFP (coated/boxed) Even when suitable solvents are used, a reversible change of the electrical characteristics may occur in uncoated capacitors immediately after they are washed. Thus it is always recommended to dry the components (e. before they are subjected to subsequent electrical test- ing. Table A ...

Page 12

... B32921C/D ... B32926C 305 Embedding of capacitors in finished assemblies In many applications, finished circuit assemblies are embedded in plastic resins. In this case, both chemical and thermal influences of the embedding ("potting") and curing processes must be taken into account. Our experience has shown that the following potting materials can be recommended: non-flexible epoxy resins with acid-anhydride hardeners ...

Page 13

... IEC 60068-2-6. EPCOS offers film capacitors specially designed for operation under more severe vibration regimes such as those found in automotive applications. Consult our catalog "Film Capacitors for Automotive Electronics". Please read Cautions and warnings and Important notes at the end of this document. B32921C/D ... B32926C/D ...

Page 14

... Topic Safety information Soldering Do not exceed the specified time or temperature limits during soldering. Cleaning Use only suitable solvents for cleaning capacitors. 2 "Cleaning" Embedding of When embedding finished circuit assemblies in capacitors in plastic resins, chemical and thermal influences finished assemblies must be taken into account. ...

Page 15

Symbols and terms Symbol English Heat transfer coefficient Temperature coefficient of capacitance C A Capacitor surface area Humidity coefficient of capacitance C C Capacitance C Rated capacitance R C Absolute capacitance change C/C Relative capacitance change (relative deviation of actual ...

Page 16

B32921C/D ... B32926C 305 V AC Symbol English I (Sinusoidal) alternating current, RMS root-mean-square value i Capacitance drift z k Pulse characteristic 0 L Series inductance S Failure rate Constant failure rate during useful 0 service life Failure ...

Page 17

Symbol English V Category voltage C V Category AC voltage C,RMS V Corona-discharge onset voltage CD V Charging voltage voltage DC V Fly-back capacitor voltage FB V Input voltage i V Output voltage o V Operating voltage ...

Page 18

Important notes The following applies to all products named in this publication: 1. Some parts of this publication contain statements about the suitability of our products for certain areas of application. These statements are based on our knowledge of typical ...

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