B32232 [TDK]

Film Capacitors Metallized Polyester Film Capacitors (MKT);
B32232
型号: B32232
厂家: TDK ELECTRONICS    TDK ELECTRONICS
描述:

Film Capacitors Metallized Polyester Film Capacitors (MKT)

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Film Capacitors  
Metallized Polyester Film Capacitors (MKT)  
Series/Type: B32232  
The following products presented in this data sheet are being withdrawn.  
Ordering Code  
Substitute Product  
Date of Withdrawal Deadline Last  
Orders  
Last Shipments  
see following page  
2014-04-11  
2014-07-15  
2014-10-15  
For further information please contact your nearest EPCOS sales office, which will also support you in selecting a  
suitable substitute. The addresses of our worldwide sales network are presented at www.epcos.com/sales.  
Affected products (Ordering code)  
B32232A1685K000  
B32232A0225K000  
B32232A3335K000  
B32232A3335K006  
B32232A0335K000  
B32232A3475K000  
B32232A3685K000  
B32232A8105K000  
B32232A8684K000  
B32232S3106K500  
B32232S3225J493  
B32232S3475K500  
Metallized polyester film capacitors (MKT)  
General purpose (wound)  
B32232  
Typical applications  
Smoothing  
Dimensional drawing  
Filtering  
Climatic  
Max. operating temperature: 100 °C  
Climatic category (IEC 60068-1): 40/100/21  
Construction  
Dielectric: polyethylene terephthalate  
(polyester, PET)  
Dimensions in mm  
Cylindrical winding  
Insulating sleeve  
Face ends sealed with epoxy resin  
Diameter d  
7.0  
Lead diameter d1  
0.6  
0.8  
> 7.0  
Features  
When bending leads take care to leave a  
clearance of 1 mm to the capacitor body.  
RoHS-compatible  
Terminals  
Central axial wire leads, lead-free tinned  
Marking  
Manufacturer, series number,  
rated capacitance (coded),  
capacitance tolerance (code letter),  
rated DC voltage. date of manufacture (coded)  
Delivery mode  
Bulk (untaped)  
Taped (reel)  
For notes on taping, refer to chapter "Taping and packing“.  
Detail specification  
DIN 45910-112  
Please read Cautions and warnings and  
Important notes at the end of this document.  
Page 2 of 16  
B32232  
General purpose (wound)  
Overview of available types  
Type  
B32232  
100  
VR (V DC)  
250  
160  
400  
200  
630  
200  
VRMS (V AC) 63  
CR (µF)  
0.68  
1.0  
3.3  
4.7  
6.8  
Please read Cautions and warnings and  
Important notes at the end of this document.  
Page 3 of 16  
B32232  
General purpose (wound)  
Ordering codes and packing units  
VR  
VRMS  
CR  
Max. dimensions Ordering code  
Reel  
Untaped  
f 60 Hz  
V DC V AC  
100 63  
d × l  
mm  
(composition see  
below)  
µF  
pcs./MOQ  
pcs./MOQ  
6.8  
3.3  
4.7  
6.8  
0.68  
1.0  
0.68  
1.0  
14.0 × 32.0  
14.0 × 32.0  
16.5 × 32.0  
16.0 × 42.0  
11.5 × 32.0  
13.5 × 32.0  
15.0 × 32.0  
16.0 × 32.0  
B32232A1685+***  
B32232A3335+***  
B32232A3475+000  
B32232A3685+000  
B32232A6684+***  
B32232A6105+***  
B32232A8684+000  
B32232A8105+000  
2000  
2000  
1000  
1000  
1000  
800  
250 160  
400 200  
630 200  
2000  
2000  
2000  
2000  
2000  
2000  
MOQ = Minimum Order Quantity, consisting of 4 packing units.  
Further E series and intermediate capacitance values on request.  
Composition of ordering code  
+ = Capacitance tolerance code:  
*** = Packaging code:  
K = ±10%  
J = ±5%  
189 = Reel  
000 = Untaped  
Please read Cautions and warnings and  
Important notes at the end of this document.  
Page 4 of 16  
B32232  
General purpose (wound)  
Technical data  
Operating temperature range Max. operating temperature Top,max  
Upper category temperature Tmax  
+100 °C  
+100 °C  
40 °C  
+85 °C  
Lower category temperature Tmin  
Rated temperature TR  
Dissipation factor tan δ (in 10-3) at  
CR 47 nF  
1 kHz 10  
10 kHz 20  
CR 0.33 µF  
47 nF < CR 1 µF  
CR > 1 µF  
at 20 °C  
10  
25  
10  
(upper limit values)  
Insulation resistance Rins  
VR  
CR > 0.33 µF  
or time constant τ = CR Rins  
at 20 °C, rel. humidity 65%  
(minimum as-delivered values)  
100 V DC 3750 MΩ  
250 V DC 7500 MΩ  
1250 s  
2500 s  
DC test voltage  
1.4 VR, 2 s  
Category voltage VC  
TA (°C)  
DC voltage derating  
VC = VR  
AC voltage derating  
VC,RMS = VRMS  
(continuous operation with VDC TA 85  
or VAC at f 60 Hz)  
85<TA100 VC = VR (165TA)/80  
VC,RMS=VRMS (165TA)/80  
Operating voltage Vop for  
TA (°C)  
DC voltage (max. hours) AC voltage (max. hours)  
short operating periods  
TA 100  
Vop = 1.25 VC (2000 h) Vop = 1.0 VC,RMS (1000 h)  
(VDC or VAC at f 60 Hz)  
Damp heat test  
Limit values after damp  
heat test  
21 days/40 °C/93% relative humidity  
Capacitance change C/Cꢂ  
5%  
Dissipation factor change tan δ  
5 10-3 (at 1 kHz)  
7 10-3 (at 10 kHz)  
20% of minimum  
as-delivered values  
Insulation resistance Rins  
or time constant τ = CR Rins  
Please read Cautions and warnings and  
Important notes at the end of this document.  
Page 5 of 16  
B32232  
General purpose (wound)  
Pulse handling capability  
"dV/dt" represents the maximum permissible voltage change per unit of time for non-sinusoidal  
voltages, expressed in V/µs.  
"k0" represents the maximum permissible pulse characteristic of the waveform applied to the  
capacitor, expressed in V2/µs.  
Note:  
The values of dV/dt and k0 provided below must not be exceeded in order to avoid damaging the  
capacitor.  
dV/dt values  
Length of capacitor  
14 mm  
19 mm  
27 mm  
32 mm  
42 mm  
VR  
VRMS  
V AC  
63  
V DC  
100  
250  
400  
630  
dV/dt in V/µs  
6
10  
3
5
2
3
4
7
1.5  
2.5  
3
2
160  
200  
200  
7
10  
5
k0 values  
Length of capacitor  
14 mm  
19 mm  
27 mm  
32 mm  
42 mm  
VR  
VRMS  
V AC  
63  
V DC  
100  
250  
400  
630  
k0 in V2/µs  
1 200  
5 000  
600  
2 500  
400  
1 500  
3 200  
8 800  
300  
1 250  
2 400  
6 300  
1 000  
160  
200  
200  
5 600  
12 500  
Please read Cautions and warnings and  
Important notes at the end of this document.  
Page 6 of 16  
B32232  
General purpose (wound)  
Impedance Z versus frequency f  
(typical values)  
Permissible AC voltage VRMS versus frequency f  
Values can be obtained on request. In specific cases please provide a scaled voltage/ time graph  
and state operating conditions.  
Please read Cautions and warnings and  
Important notes at the end of this document.  
Page 7 of 16  
B32232  
General purpose (wound)  
Mounting guidelines  
1
Soldering  
Solderability of leads  
1.1  
The solderability of terminal leads is tested to IEC 60068-2-20, test Ta, method 1.  
Before a solderability test is carried out, terminals are subjected to accelerated ageing (to  
IEC 60068-2-2, test Ba: 4 h 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.  
Solder bath temperature  
Soldering time  
235 ±5 °C  
2.0 ±0.5 s  
Immersion depth  
Evaluation criteria:  
Visual inspection  
2.0 +0/0.5 mm from capacitor body or seating plane  
Wetting of wire surface by new solder 90%, free-flowing solder  
1.2  
Resistance to soldering heat  
Resistance to soldering heat is tested to IEC 60068-2-20, test Tb, method 1A.  
Conditions:  
Series  
Solder bath temperature Soldering time  
MKT boxed (except 2.5 × 6.5 × 7.2 mm) 260 ±5 °C  
coated  
10 ±1 s  
uncoated (lead spacing > 10 mm)  
MFP  
MKP (lead spacing > 7.5 mm)  
MKT boxed (case 2.5 × 6.5 × 7.2 mm)  
5 ±1 s  
(lead spacing 7.5 mm)  
uncoated (lead spacing 10 mm)  
insulated (B32559)  
MKP  
MKT  
< 4 s  
recommended soldering  
profile for MKT uncoated  
(lead spacing 10 mm) and  
insulated (B32559)  
Please read Cautions and warnings and  
Important notes at the end of this document.  
Page 8 of 16  
B32232  
General purpose (wound)  
Immersion depth  
Shield  
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  
Evaluation criteria:  
Visual inspection  
No visible damage  
2% for MKT/MKP/MFP  
5% for EMI suppression capacitors  
As specified in sectional specification  
C/C0  
tan δ  
Please read Cautions and warnings and  
Important notes at the end of this document.  
Page 9 of 16  
B32232  
General purpose (wound)  
1.3  
General notes on soldering  
Permissible heat exposure loads on film capacitors are primarily characterized by the upper cate-  
gory temperature Tmax. Long exposure to temperatures above this type-related temperature limit  
can lead to changes in the plastic dielectric and thus change irreversibly a capacitor's electrical  
characteristics. For short exposures (as in practical soldering processes) the heat load (and thus  
the possible effects on a capacitor) will also depend on other factors like:  
Pre-heating temperature and time  
Forced cooling immediately after soldering  
Terminal characteristics:  
diameter, length, thermal resistance, special configurations (e.g. crimping)  
Height of capacitor above solder bath  
Shadowing by neighboring components  
Additional heating due to heat dissipation by neighboring components  
Use of solder-resist coatings  
The overheating associated with some of these factors can usually be reduced by suitable coun-  
termeasures. For example, if a pre-heating step cannot be avoided, an additional or reinforced  
cooling process may possibly have to be included.  
EPCOS recommends the following conditions:  
Pre-heating with a maximum temperature of 110 °C  
Temperature inside the capacitor should not exceed the following limits:  
MKP/MFP 110 °C  
MKT 160 °C  
When SMD components are used together with leaded ones, the leaded film capacitors should  
not pass into the SMD adhesive curing oven. The leaded components should be assembled af-  
ter the SMD curing step.  
Leaded film capacitors are not suitable for reflow soldering.  
Uncoated capacitors  
For uncoated MKT capacitors with lead spacings 10 mm (B32560/B32561) the following mea-  
sures are recommended:  
pre-heating to not more than 110 °C in the preheater phase  
rapid cooling after soldering  
Please read Cautions and warnings and  
Important notes at the end of this document.  
Page 10 of 16  
B32232  
General purpose (wound)  
Cautions and warnings  
Do not exceed the upper category temperature (UCT).  
Do not apply any mechanical stress to the capacitor terminals.  
Avoid any compressive, tensile or flexural stress.  
Do not move the capacitor after it has been soldered to the PC board.  
Do not pick up the PC board by the soldered capacitor.  
Do not place the capacitor on a PC board whose PTH hole spacing differs from the specified  
lead spacing.  
Do not exceed the specified time or temperature limits during soldering.  
Avoid external energy inputs, such as fire or electricity.  
Avoid overload of the capacitors.  
The table below summarizes the safety instructions that must always be observed. A detailed de-  
scription can be found in the relevant sections of the chapters "General technical information" and  
"Mounting guidelines".  
Topic  
Safety information  
Reference chapter  
"General technical  
information"  
Storage conditions Make sure that capacitors are stored within the  
4.5  
specified range of time, temperature and humidity "Storage conditions"  
conditions.  
Flammability  
Avoid external energy, such as fire or electricity  
(passive flammability), avoid overload of the  
capacitors (active flammability) and consider the  
flammability of materials.  
5.3  
"Flammability"  
Resistance to  
vibration  
Do not exceed the tested ability to withstand  
vibration. The capacitors are tested to  
IEC 60068-2-6.  
5.2  
"Resistance to vibration"  
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.  
Page 11 of 16  
B32232  
General purpose (wound)  
Topic  
Safety information  
Reference chapter  
"Mounting guidelines"  
Soldering  
Cleaning  
Do not exceed the specified time or temperature 1 "Soldering"  
limits during soldering.  
Use only suitable solvents for cleaning capacitors. 2 "Cleaning"  
Embedding of  
capacitors in  
When embedding finished circuit assemblies in  
plastic resins, chemical and thermal influences  
3 "Embedding of  
capacitors in finished  
assemblies"  
finished assemblies must be taken into account.  
Caution: Consult us first, if you also wish to  
embed other uncoated component types!  
Please read Cautions and warnings and  
Important notes at the end of this document.  
Page 12 of 16  
B32232  
General purpose (wound)  
Symbols and terms  
Symbol  
α
English  
German  
Heat transfer coefficient  
Wärmeübergangszahl  
αC  
Temperature coefficient of capacitance Temperaturkoeffizient der Kapazität  
A
Capacitor surface area  
Kondensatoroberfläche  
Feuchtekoeffizient der Kapazität  
Kapazität  
βC  
Humidity coefficient of capacitance  
Capacitance  
C
CR  
Rated capacitance  
Nennkapazität  
C  
C/C  
Absolute capacitance change  
Relative capacitance change (relative  
deviation of actual value)  
Absolute Kapazitätsänderung  
Relative Kapazitätsänderung (relative  
Abweichung vom Ist-Wert)  
C/CR  
Capacitance tolerance (relative deviation Kapazitätstoleranz (relative Abweichung  
from rated capacitance)  
Time differential  
vom Nennwert)  
dt  
Differentielle Zeit  
t  
Time interval  
Zeitintervall  
T  
Absolute temperature change  
(self-heating)  
Absolute Temperaturänderung  
(Selbsterwärmung)  
tan δ  
V  
Absolute change of dissipation factor  
Absolute voltage change  
Absolute Änderung des Verlustfaktors  
Absolute Spannungsänderung  
dV/dt  
Time differential of voltage function (rate Differentielle Spannungsänderung  
of voltage rise)  
(Spannungsflankensteilheit)  
Spannungsänderung pro Zeitintervall  
Aktivierungsenergie zur Diffusion  
Eigeninduktivität  
V/t  
E
Voltage change per time interval  
Activation energy for diffusion  
Self-inductance  
ESL  
ESR  
f
Equivalent series resistance  
Frequency  
Ersatz-Serienwiderstand  
Frequenz  
f1  
Frequency limit for reducing permissible Grenzfrequenz für thermisch bedingte  
AC voltage due to thermal limits  
Reduzierung der zulässigen  
Wechselspannung  
f2  
Frequency limit for reducing permissible Grenzfrequenz für strombedingte  
AC voltage due to current limit  
Reduzierung der zulässigen  
Wechselspannung  
fr  
Resonant frequency  
Resonanzfrequenz  
FD  
Thermal acceleration factor for diffusion Therm. Beschleunigungsfaktor zur  
Diffusion  
FT  
i
Derating factor  
Deratingfaktor  
Current (peak)  
Stromspitze  
IC  
Category current (max. continuous  
current)  
Kategoriestrom (max. Dauerstrom)  
Please read Cautions and warnings and  
Important notes at the end of this document.  
Page 13 of 16  
B32232  
General purpose (wound)  
Symbol  
IRMS  
English  
German  
(Sinusoidal) alternating current,  
root-mean-square value  
Capacitance drift  
(Sinusförmiger) Wechselstrom  
iz  
Inkonstanz der Kapazität  
Impulskennwert  
k0  
LS  
λ
Pulse characteristic  
Series inductance  
Serieninduktivität  
Failure rate  
Ausfallrate  
λ0  
Constant failure rate during useful  
service life  
Konstante Ausfallrate in der  
Nutzungsphase  
λtest  
Pdiss  
Pgen  
Q
Failure rate, determined by tests  
Dissipated power  
Experimentell ermittelte Ausfallrate  
Abgegebene Verlustleistung  
Erzeugte Verlustleistung  
Wärmeenergie  
Generated power  
Heat energy  
ρ
Density of water vapor in air  
Universal molar constant for gases  
Ohmic resistance of discharge circuit  
Dichte von Wasserdampf in Luft  
Allg. Molarkonstante für Gas  
Ohmscher Widerstand des  
Entladekreises  
R
R
Ri  
Internal resistance  
Insulation resistance  
Parallel resistance  
Series resistance  
severity (humidity test)  
Time  
Innenwiderstand  
Rins  
RP  
RS  
S
Isolationswiderstand  
Parallelwiderstand  
Serienwiderstand  
Schärfegrad (Feuchtetest)  
Zeit  
t
T
Temperature  
Temperatur  
τ
Time constant  
Zeitkonstante  
tan δ  
tan δD  
Dissipation factor  
Dielectric component of dissipation  
factor  
Verlustfaktor  
Dielektrischer Anteil des Verlustfaktors  
tan δP  
tan δS  
TA  
Parallel component of dissipation factor Parallelanteil des Verlfustfaktors  
Series component of dissipation factor  
Ambient temperature  
Serienanteil des Verlustfaktors  
Umgebungstemperatur  
Tmax  
Tmin  
Upper category temperature  
Lower category temperature  
Obere Kategorietemperatur  
Untere Kategorietemperatur  
tOL  
Operating life at operating temperature Betriebszeit bei Betriebstemperatur und  
and voltage  
-spannung  
Top  
TR  
Operating temperature  
Rated temperature  
Reference temperature  
Reference service life  
AC voltage  
Beriebstemperatur  
Nenntemperatur  
Referenztemperatur  
Referenz-Lebensdauer  
Wechselspannung  
Tref  
tSL  
VAC  
Please read Cautions and warnings and  
Important notes at the end of this document.  
Page 14 of 16  
B32232  
General purpose (wound)  
Symbol  
VC  
English  
German  
Category voltage  
Category AC voltage  
Kategoriespannung  
(Sinusförmige)  
VC,RMS  
Kategorie-Wechselspannung  
Teilentlade-Einsatzspannung  
Ladespannung  
VCD  
Vch  
VDC  
VFB  
Vi  
Corona-discharge onset voltage  
Charging voltage  
DC voltage  
Gleichspannung  
Fly-back capacitor voltage  
Input voltage  
Spannung (Flyback)  
Eingangsspannung  
Ausgangssspannung  
Betriebsspannung  
Vo  
Output voltage  
Vop  
Vp  
Operating voltage  
Peak pulse voltage  
Peak-to-peak voltage Impedance  
Rated voltage  
Impuls-Spitzenspannung  
Spannungshub  
Vpp  
VR  
Nennspannung  
Amplitude of rated AC voltage  
Amplitude der Nenn-Wechselspannung  
R
VRMS  
(Sinusoidal) alternating voltage,  
root-mean-square value  
S-correction voltage  
(Sinusförmige) Wechselspannung  
VSC  
Vsn  
Spannung bei Anwendung "S-correction"  
Spannung bei Anwendung  
"Beschaltung"  
Snubber capacitor voltage  
Z
Impedance  
Scheinwiderstand  
Lead spacing  
Rastermaß  
Please read Cautions and warnings and  
Important notes at the end of this document.  
Page 15 of 16  
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 re-  
quirements that are often placed on our products in the areas of application concerned. We  
nevertheless expressly point out that such statements cannot be regarded as binding  
statements about the suitability of our products for a particular customer application.  
As a rule, EPCOS is either unfamiliar with individual customer applications or less familiar  
with them than the customers themselves. For these reasons, it is always ultimately incum-  
bent on the customer to check and decide whether an EPCOS product with the properties de-  
scribed in the product specification is suitable for use in a particular customer application.  
2. We also point out that in individual cases, a malfunction of electronic components or  
failure before the end of their usual service life cannot be completely ruled out in the  
current state of the art, even if they are operated as specified. In customer applications  
requiring a very high level of operational safety and especially in customer applications in  
which the malfunction or failure of an electronic component could endanger human life or  
health (e.g. in accident prevention or lifesaving systems), it must therefore be ensured by  
means of suitable design of the customer application or other action taken by the customer  
(e.g. installation of protective circuitry or redundancy) that no injury or damage is sustained by  
third parties in the event of malfunction or failure of an electronic component.  
3. The warnings, cautions and product-specific notes must be observed.  
4. In order to satisfy certain technical requirements, some of the products described in this  
publication may contain substances subject to restrictions in certain jurisdictions (e.g.  
because they are classed as hazardous). Useful information on this will be found in our Ma-  
terial Data Sheets on the Internet (www.epcos.com/material). Should you have any more de-  
tailed questions, please contact our sales offices.  
5. We constantly strive to improve our products. Consequently, the products described in this  
publication may change from time to time. The same is true of the corresponding product  
specifications. Please check therefore to what extent product descriptions and specifications  
contained in this publication are still applicable before or when you place an order. We also  
reserve the right to discontinue production and delivery of products. Consequently, we  
cannot guarantee that all products named in this publication will always be available. The  
aforementioned does not apply in the case of individual agreements deviating from the fore-  
going for customer-specific products.  
6. Unless otherwise agreed in individual contracts, all orders are subject to the current ver-  
sion of the "General Terms of Delivery for Products and Services in the Electrical In-  
dustry" published by the German Electrical and Electronics Industry Association  
(ZVEI).  
7. The trade names EPCOS, BAOKE, Alu-X, CeraDiode, CeraLink, CSMP, CSSP, CTVS,  
DeltaCap, DigiSiMic, DSSP, FilterCap, FormFit, MiniBlue, MiniCell, MKD, MKK, MLSC,  
MotorCap, PCC, PhaseCap, PhaseCube, PhaseMod, PhiCap, SIFERRIT, SIFI, SIKOREL,  
SilverCap, SIMDAD, SiMic, SIMID, SineFormer, SIOV, SIP5D, SIP5K, ThermoFuse,  
WindCap are trademarks registered or pending in Europe and in other countries. Further  
information will be found on the Internet at www.epcos.com/trademarks.  
Page 16 of 16  

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EPCOS

B32232-T6845-M

CAPACITOR, METALLIZED FILM, POLYESTER, 450V, 8.4uF, THROUGH HOLE MOUNT, RADIAL LEADED
EPCOS

B32232A0225K000

Metallized Polyester Film Capacitors (MKT)
TDK

B32232A0335K000

Metallized Polyester Film Capacitors (MKT)
TDK