B43455,57 Series Standard Datasheet by EPCOS - TDK Electronics

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Aluminum electrolytic capacitors
Capacitors with screw terminals
Series/Type: B43455, B43457
Date: November 2012
© EPCOS AG 2015. Reproduction, publication and dissemination of this publication, enclosures hereto and the
information contained therein without EPCOS' prior express consent is prohibited.
EPCOS AG is a TDK Group Company.
{é‘vTDK
Long-life grade capacitors
Applications
Frequency converters
Wind power converters
Solar inverters
Uninterruptible power supplies
Professional power supplies
Features
Long useful life
All-welded construction ensures reliable electrical contact
PAPR terminals available (Protection Against Polarity Reversal)
Version with optimized construction for base cooling
(heat sink mounting) available
Version with low-inductance design available
Self-extinguishing electrolyte
RoHS-compatible
Construction
Charge-discharge proof, polar
Aluminum case with insulating sleeve
Poles with screw terminal connections
Mounting with ring clips, clamps or threaded stud
The bases of types with threaded stud and d 76.9 mm are not
insulated, types with d = 91 mm have fully insulated bases
B43455 B43457
Capacitors with screw terminals B43455, B43457
Long useful life 85 °C
Page 2 of 19Please read Cautions and warnings and
Important notes at the end of this document.
@TDK — VR 7 )oas I‘eskgouznpA-TQ- “WA
1) Refer to chapter "General technical information, 5 Useful life" on how to interpret useful life.
Specifications and characteristics in brief
Rated voltage VR
Surge voltage VS
350 ... 450 V DC
1.10 VR
Rated capacitance CR
Capacitance tolerance
1000 ... 15000 µF
±20% M
Dissipation factor tan δ
(20 °C, 120 Hz)
0.20
Leakage current Ileak
(20 °C, 5 min)
Self-inductance ESL d = 51.6 mm: approx. 15 nH
d64.3 mm: approx. 20 nH
Capacitors with low-inductance design:
d64.3 mm: approx. 13 nH
Useful life1) Requirements:
85 °C; VR; IAC,R > 10000 h C/C ≤ ±15% of initial value
40 °C; VR; 1.5 IAC,R > 200000 h tan δ 1.75 times initial specified limit
Ileak initial specified limit
Voltage endurance test Post test requirements:
85 °C; VR2000 h C/C ≤ ±10% of initial value
tan δ 1.3 times initial specified limit
Ileak initial specified limit
Vibration resistance test To IEC 60068-2-6, test Fc:
Frequency range 10 ... 55 Hz, displacement amplitude 0.75 mm,
acceleration max. 10 g, duration 3 ×2 h.
Capacitor mounted by its body which is rigidly clamped to the work
surface.
Characteristics at low
temperature Max. impedance ratio
at 100 Hz VR400 V 450 V
Z-25°C/Z20°C4 3
Z-40°C/Z20°C16 12
IEC climatic category To IEC 60068-1:
25/085/56 (25 °C/+85 °C/56 days damp heat test)
The capacitors can be operated in the temperature range of
40 °C to +85 °C but the impedance at 40 °C should be taken into
consideration.
Detail specification
Sectional specification
Similar to CECC 30301-803, CECC 30301-807
IEC 60384-4
B43455, B43457
Long useful life 85 °C
Page 3 of 19Please read Cautions and warnings and
Important notes at the end of this document.
@TDK M5 MmJeacn m scvew 5 mm nus-1M 9 mm m \ow \nductance deswgn M6 Mm reach at scvew 12 mm 9 5 mm my \ow mdumnce deswgn mum w Posmve pa‘e malkmg +
Ripple current capability
Due to the ripple current capability of the contact elements, the following current upper limits must
not be exceeded:
Capacitor diameter 51.6 mm 64.3 mm 76.9 mm 91 mm
IAC,max 34 A 45 A 57 A 80 A
Dimensional drawings
B43455
Ring clip/clamp mounting
B43457
Threaded stud mounting
The base of types with threaded stud and d = 91 mm is fully insulated (the lengths I and l1are
increased by 0.5 mm in these cases). For types with threaded stud and d 76 mm the base is not
insulated. Also refer to the mounting instructions in chapter "Capacitors with screw terminals
Accessories".
Dimensions and weights
Ter-
minal
Dimensions (mm) with insulating sleeve Approx.
weight (g)
d l ±1 l1±1 l2+0/1 d1d2max. a +0.2/0.4
M5
M5
51.6 +0/0.8
51.6 +0/0.8
80.7
105.7
87.2
112.2
17
17
M12
M12
10.2
10.2
22.2
22.2
220
280
M5
M5
M5
64.3 +0/0.8
64.3 +0/0.8
64.3 +0/0.8
80.7
105.7
143.2
87.2
112.2
149.7
17
17
17
M12
M12
M12
13.2
13.2
13.2
28.5
28.5
28.5
370
440
630
M6
M6
M6
M6
76.9 +0/0.7
76.9 +0/0.7
76.9 +0/0.7
76.9 +0/0.7
105.7
143.2
168.7
220.7
111.5
149.0
174.5
226.5
17
17
17
17
M12
M12
M12
M12
17.7
17.7
17.7
17.7
31.7
31.7
31.7
31.7
620
840
1000
1300
B43455, B43457
Long useful life 85 °C
Page 4 of 19Please read Cautions and warnings and
Important notes at the end of this document.
@TDK
Ter-
minal
Dimensions (mm) with insulating sleeve Approx.
weight (g)
d l ±1 l1±1 l2+0/1 d1d2max. a +0.2/0.4
M6
M6
91.0 +0/2
91.0 +0/2
144.5
221.0
149.8
226.3
17
17
M12
M12
17.7
17.7
31.7
31.7
1200
1900
For low-inductance design the following deviation applies:
d = 64.3 mm: l10.7 mm
d = 91.0 mm: l11.7 mm
Packing
Capacitor
diameter d (mm)
length l
(mm)
Packing units
(pcs.)
Capacitor
diameter d (mm)
length l
(mm)
Packing units
(pcs.)
51.6 all 36 76.9 105.7 - 168.7 16
64.3 all 25 220.7 12
91.0 all 9
For ecological reasons the packing is pure cardboard.
B43455, B43457
Long useful life 85 °C
Page 5 of 19Please read Cautions and warnings and
Important notes at the end of this document.
mum
Special designs
Low-inductance design
PAPR terminal style
With our PAPR terminal style (Protection Against Polarity Reversal) we offer an optional
mechanical feature in addition to the visual polarity marking on the cover disk and the sleeve,
which prevents from mounting in reverse polarity. The non-circular shape of the terminals and
their arrangement perpendicular to each other enables the user to definitely prevent wrong
mounting with respect to polarity (Poka Yoke).
Dimensional drawing of PAPR terminal configuration
Dimensions for PAPR terminal style (mm)
Can diameter d Terminal d3±0.1 d4±0.1 a +0.2/0.4 Min. reach of screw
Standard
design
#050
For heat sink
mounting
#057
51.6 M5 10 13 22.2 9.5
64.3 M5 13 15 28.5 9.5 7.3
76.9 M6 13 15 31.7 12.0 9.7
91.0 M6 13 15 31.7 12.0 9.7
All other dimensions of the capacitor such as diameter d, case length l and overall length l1are
identical with those of standard capacitors of this series. Please refer to the tables “Dimensions
and weights” (standard types) and “Dimensions and weights for heat sink mounting” (special
designs).
For heat sink mounting
Design for optimal connection of capacitors to the heat sink when using base cooling with the
following features (refer to chapter "General technical information, 5.2 Cooling"):
Electrical insulation of the capacitors base with 2 overlapping thermal pads for optimal heat
flow (minimal thermal resistance at the capacitor base)
B43455, B43457
Long useful life 85 °C
Page 6 of 19Please read Cautions and warnings and
Important notes at the end of this document.
Minimal overall length tolerance (±0.35 mm) for mounting between heat sink and bus bar
Case with extra groove near the base for clamp mounting (recommended ring clamp
B44030A0165B ... A0190B)
This version is available only for capacitors without threaded stud and for diameters
64.3 mm.
Regarding ripple current and useful life, please refer to column IAC,R(B) in the table "Technical
data and ordering codes" and in the useful life curves.
Dimensions and weights for heat sink mounting:
Ter-
minal
Dimensions (mm) with insulating sleeve Min. reach
of screw
mm
Approx.
weight
g
d l ±1 l1±0.35 d2max. a +0.2/0.4
M5
M5
64.3 +0/0.8
64.3 +0/0.8
80.7
105.7
86.3
111.3
13.2
13.2
28.5
28.5
7.3
7.3
370
440
M6
M6
76.9 +0/0.7
76.9 +0/0.7
105.7
143.2
110.6
148.1
17.7
17.7
31.7
31.7
9.7
9.7
620
840
M6
M6
91.0 +0/2
91.0 +0/2
97.0
144.5
101.4
148.9
17.7
17.7
31.7
31.7
9.7
9.7
1000
1200
Dimensions for other sizes are available upon request.
Ordering codes:
Design Identification in third
block of ordering code
Remark
Low inductance (13 nH) M003 For capacitors with diameter d 64.3 mm
For heat sink mounting M007 For capacitors with diameter d 64.3 mm and
without threaded stud
PAPR terminal style M050 Not for low inductance
PAPR terminal style and
heat sink mounting
M057 For capacitors with diameter d 64.3 mm and
without threaded stud; not for low inductance
B43455, B43457
Long useful life 85 °C
Page 7 of 19Please read Cautions and warnings and
Important notes at the end of this document.
Accessories
The following items are included in the delivery package, but are not fastened to the capacitors:
Thread Toothed
washers
Screws/nuts Maximum
torque
For terminals M5 A 5.1 DIN 6797 DIN 7985 / ISO 7045-M5 ×10-5.6-Z 2.5 Nm
thread depth
t8 mm
M6 A 6.4 DIN 6797 DIN 7985 / ISO 7045-M6 ×12-5.6-Z 4.0 Nm
thread depth
t9.5 mm
For mounting M12 J 12.5 DIN 6797 Hex nut BM 12 DIN 439 10 Nm
The following items must be ordered separately. For details, refer to chapter "Capacitors with
screw terminals Accessories".
Item Type
Ring clips B44030
Clamps for capacitors with d 64.3 mm B44030
Insulating parts B44020
B43455, B43457
Long useful life 85 °C
Page 8 of 19Please read Cautions and warnings and
Important notes at the end of this document.
éSTDK —
Overview of available types
VR(V DC) 350 400 450
Case dimensions d ×l (mm)
CR(µF)
1000 51.6 ×80.7
1500 51.6 ×80.7 51.6 ×80.7 51.6 ×105.7
64.3 ×80.7
2200 51.6 ×105.7 51.6 ×105.7
64.3 ×80.7
64.3 ×105.7
3300 64.3 ×105.7 64.3 ×105.7 64.3 ×143.2
76.9 ×105.7
4700 64.3 ×143.2
76.9 ×105.7
76.9 ×105.7 76.9 ×143.2
5600 76.9 ×105.7 76.9 ×143.2 76.9 ×168.7
6800 76.9 ×143.2 76.9 ×143.2 76.9 ×220.7
8200 76.9 ×168.7 91.0 ×144.5 76.9 ×220.7
10000 76.9 ×220.7 76.9 ×220.7 91.0 ×221.0
12000 76.9 ×220.7 91.0 ×221.0
15000 91.0 ×221.0
The capacitance and voltage ratings listed above are available in different cases upon request.
Other voltage and capacitance ratings are also available upon request.
B43455, B43457
Long useful life 85 °C
Page 9 of 19Please read Cautions and warnings and
Important notes at the end of this document.
Technical data and ordering codes
CR
100 Hz
20 °C
µF
Case
dimensions
d×l
mm
ESRtyp
100 Hz
20 °C
m
Zmax
10 kHz
20 °C
m
IAC,max
100 Hz
40 °C
A
IAC,R
100 Hz
85 °C
A
IAC,R(B)
100 Hz
85 °C
A
Ordering code
(composition see
below)
Composition of ordering code
* = Mounting style ## = Design
5 = for capacitors with ring clip/clamp mounting
7 = for capacitors with threaded stud
00 = for capacitors with standard inductance
03 = for capacitors with low inductance (13 nH)
(only for capacitors with diameter d 64.3
mm)
07 = for heat sink mounting (only for capacitors
with diameter d 64.3 mm and without
threaded stud)
50 = for terminals with PAPR style (not for
low-inductance)
57 = for terminals with PAPR style and heat sink
mounting (only d 64.3 mm and without
threaded stud, not for low inductance)
VR= 350 V DC
1500 51.6 ×80.7 80 96 14 4.9 9.4 B4345*C4158M0##
2200 51.6 ×105.7 48 58 20 7.1 12.7 B4345*D4228M0##
3300 64.3 ×105.7 32 38 22 8.1 14.2 B4345*C4338M0##
4700 64.3 ×143.2 25 30 27 9.9 15.1 B4345*C4478M0##
4700 76.9 ×105.7 25 30 28 10.2 19.7 B4345*B4478M0##
5600 76.9 ×105.7 21 25 31 11.3 22.4 B4345*A4568M0##
6800 76.9 ×143.2 18 22 35 12.8 21.4 B4345*A4688M0##
8200 76.9 ×168.7 15 18 42 15.4 23.7 B4345*B4828M0##
10000 76.9 ×220.7 10 12 55 19.8 27.5 B4345*C4109M0##
12000 76.9 ×220.7 9 11 57 22.5 31.7 B4345*B4129M0##
15000 91.0 ×221.0 7 8 73 26.5 39.2 B4345*A4159M0##
VR= 400 V DC
1500 51.6 ×80.7 69 83 15 5.4 10.9 B4345*D9158M0##
2200 51.6 ×105.7 59 71 18 6.5 11.6 B4345*B9228M0##
2200 64.3 ×80.7 59 71 18 6.4 12.3 B4345*C9228M0##
3300 64.3 ×105.7 36 43 25 9.0 15.9 B4345*A9338M0##
4700 76.9 ×105.7 27 32 27 9.9 19.3 B4345*A9478M0##
5600 76.9 ×143.2 22 26 31 11.4 18.8 B4345*A9568M0##
6800 76.9 ×143.2 20 24 35 12.6 21.9 B4345*A9688M0##
8200 91.0 ×144.5 17 20 40 14.5 24.6 B4345*A9828M0##
10000 76.9 ×220.7 15 18 47 17.1 23.8 B4345*A9109M0##
12000 91.0 ×221.0 12 14 54 19.6 28.5 B4345*A9129M0##
B43455, B43457
Long useful life 85 °C
Page 10 of 19Please read Cautions and warnings and
Important notes at the end of this document.
Technical data and ordering codes
CR
100 Hz
20 °C
µF
Case
dimensions
d×l
mm
ESRtyp
100 Hz
20 °C
m
Zmax
10 kHz
20 °C
m
IAC,max
100 Hz
40 °C
A
IAC,R
100 Hz
85 °C
A
IAC,R(B)
100 Hz
85 °C
A
Ordering code
(composition see
below)
Composition of ordering code
* = Mounting style ## = Design
5 = for capacitors with ring clip/clamp mounting
7 = for capacitors with threaded stud
00 = for capacitors with standard inductance
03 = for capacitors with low inductance (13 nH)
(only for capacitors with diameter d 64.3
mm)
07 = for heat sink mounting (only for capacitors
with diameter d 64.3 mm and without
threaded stud)
50 = for terminals with PAPR style (not for
low-inductance)
57 = for terminals with PAPR style and heat sink
mounting (only d 64.3 mm and without
threaded stud, not for low inductance)
VR= 450 V DC
1000 51.6 ×80.7 99 119 12 4.5 8.6 B4345*D5108M0##
1500 51.6 ×105.7 63 76 17 6.2 10.7 B4345*C5158M0##
1500 64.3 ×80.7 63 76 17 6.1 11.4 B4345*D5158M0##
2200 64.3 ×105.7 50 60 21 7.5 12.8 B4345*C5228M0##
3300 64.3 ×143.2 30 36 26 9.4 14.3 B4345*B5338M0##
3300 76.9 ×105.7 30 36 26 9.4 17.7 B4345*C5338M0##
4700 76.9 ×143.2 23 28 32 11.7 19.6 B4345*B5478M0##
5600 76.9 ×168.7 20 24 36 13.2 20.0 B4345*A5568M0##
6800 76.9 ×220.7 16 19 43 15.7 21.0 B4345*A5688M0##
8200 76.9 ×220.7 13 16 51 18.5 25.6 B4345*B5828M0##
10000 91.0 ×221.0 11 13 57 20.7 29.9 B4345*A5109M0##
B43455, B43457
Long useful life 85 °C
Page 11 of 19Please read Cautions and warnings and
Important notes at the end of this document.
mm; s 5434551457 \ 400000 r4 300074 “new. 4.5 ‘ muss/457 AC 4 ‘AConz 4 2 4 4 4.0 u 9 03 0.7 0.6 o 5 04 40‘ 5 4o2 5 40’ Hz 40‘
1) Refer to chapter "General technical information, 5 Useful life" on how to interpret useful life.
2) The ripple current refers to IAC,R for natural cooling or IAC,R(B) for base cooling, respectively.
Useful life1)
depending on ambient temperature TA(for natural cooling) and versus temperature of case base
TB(for base cooling) under ripple current operating conditions2)
Frequency factor of permissible ripple current IAC versus frequency f
B43455, B43457
Long useful life 85 °C
Page 12 of 19Please read Cautions and warnings and
Important notes at the end of this document.
é‘VTDK 5 4 mm n 55“, muss/457 ESR‘ no Hz 34 2.4 14 0.4 ‘ to 5 ‘ D ‘ mm: L 545455/457 220a uF/A5u v MOD uF/Aou v moan uF/JSD v m4 ‘ A H) 102 m3 to mSHzmG 4"
Frequency characteristics of ESR
Typical behavior
Impedance Z versus frequency f
Typical behavior at 20 °C
B43455, B43457
Long useful life 85 °C
Page 13 of 19Please read Cautions and warnings and
Important notes at the end of this document.
Cautions and warnings
Personal safety
The electrolytes used by EPCOS have been optimized both with a view to the intended
application and with regard to health and environmental compatibility. They do not contain any
solvents that are detrimental to health, e.g. dimethyl formamide (DMF) or dimethyl acetamide
(DMAC).
Furthermore, some of the high-voltage electrolytes used by EPCOS are self-extinguishing.
As far as possible, EPCOS does not use any dangerous chemicals or compounds to produce
operating electrolytes. However, in exceptional cases, such materials must be used in order to
achieve specific physical and electrical properties because no alternative materials are currently
known. However, the amount of dangerous materials used in our products is limited to an
absolute minimum.
Materials and chemicals used in EPCOS aluminum electrolytic capacitors are continuously
adapted in compliance with the EPCOS Corporate Environmental Policy and the latest EU
regulations and guidelines such as RoHS, REACH/SVHC, GADSL, and ELV.
MDS (Material Data Sheets) are available on the EPCOS website for all types listed in the data
book. MDS for customer specific capacitors are available upon request.
MSDS (Material Safety Data Sheets) are available for all of our electrolytes upon request.
Nevertheless, the following rules should be observed when handling aluminum electrolytic
capacitors: No electrolyte should come into contact with eyes or skin. If electrolyte does come
into contact with the skin, wash the affected areas immediately with running water. If the eyes are
affected, rinse them for 10 minutes with plenty of water. If symptoms persist, seek medical
treatment. Avoid inhaling electrolyte vapor or mists. Workplaces and other affected areas should
be well ventilated. Clothing that has been contaminated by electrolyte must be changed and
rinsed in water.
B43455, B43457
Long useful life 85 °C
Page 14 of 19Please read Cautions and warnings and
Important notes at the end of this document.
@TDK —
Product safety
The table below summarizes the safety instructions that must be observed without fail. A detailed
description can be found in the relevant sections of chapter "General technical information".
Topic Safety information Reference
chapter "General
technical information"
Polarity Make sure that polar capacitors are connected
with the right polarity.
1
"Basic construction of
aluminum electrolytic
capacitors"
Reverse voltage Voltages polarity classes should be prevented by
connecting a diode.
3.1.6
"Reverse voltage"
Mounting
position of screw-
terminal capacitors
Do not mount the capacitor with the terminals
(safety vent) upside down.
11.1.
"Mounting positions of
capacitors with screw
terminals"
Robustness of
terminals
The following maximum tightening torques must
not be exceeded when connecting screw
terminals:
M5: 2.5 Nm
M6: 4.0 Nm
11.3
"Mounting torques"
Mounting of
single-ended
capacitors
The internal structure of single-ended capacitors
might be damaged if excessive force is applied to
the lead wires.
Avoid any compressive, tensile or flexural stress.
Do not move the capacitor after soldering to PC
board.
Do not pick up the PC board by the soldered
capacitor.
Do not insert the capacitor on the PC board with a
hole space different to the lead space specified.
11.4
"Mounting
considerations for
single-ended capacitors"
Soldering Do not exceed the specified time or temperature
limits during soldering.
11.5
"Soldering"
Soldering,
cleaning agents
Do not allow halogenated hydrocarbons to come
into contact with aluminum electrolytic capacitors.
11.6
"Cleaning agents"
Upper category
temperature
Do not exceed the upper category temperature. 7.2
"Maximum permissible
operating temperature"
Passive
flammability
Avoid external energy, such as fire or electricity. 8.1
"Passive flammability"
B43455, B43457
Long useful life 85 °C
Page 15 of 19Please read Cautions and warnings and
Important notes at the end of this document.
Topic Safety information Reference
chapter "General
technical information"
Active
flammability
Avoid overload of the capacitors. 8.2
"Active flammability"
Maintenance Make periodic inspections of the capacitors.
Before the inspection, make sure that the power
supply is turned off and carefully discharge the
electricity of the capacitors.
Do not apply any mechanical stress to the
capacitor terminals.
10
"Maintenance"
Storage Do not store capacitors at high temperatures or
high humidity. Capacitors should be stored at
+5 to +35 °C and a relative humidity of 75%.
7.3
Storage conditions
Reference
chapter "Capacitors with
screw terminals"
Breakdown strength
of insulating
sleeves
Do not damage the insulating sleeve, especially
when ring clips are used for mounting.
"Screw terminals
accessories"
B43455, B43457
Long useful life 85 °C
Page 16 of 19Please read Cautions and warnings and
Important notes at the end of this document.
{é‘yTDK
Symbols and terms
Symbol English German
C Capacitance Kapazität
CRRated capacitance Nennkapazität
CSSeries capacitance Serienkapazität
CS,T Series capacitance at temperature T Serienkapazität bei Temperatur T
CfCapacitance at frequency f Kapazität bei Frequenz f
d Case diameter, nominal dimension Gehäusedurchmesser, Nennmaß
dmax Maximum case diameter Maximaler Gehäusedurchmesser
ESL Self-inductance Eigeninduktivität
ESR Equivalent series resistance Ersatzserienwiderstand
ESRfEquivalent series resistance at
frequency f
Ersatzserienwiderstand bei Frequenz f
ESRTEquivalent series resistance at
temperature T
Ersatzserienwiderstand bei Temperatur T
f Frequency Frequenz
I Current Strom
IAC Alternating current (ripple current) Wechselstrom
IAC,rms Root-mean-square value of alternating
current
Wechselstrom, Effektivwert
IAC,f Ripple current at frequency f Wechselstrom bei Frequenz f
IAC,max Maximum permissible ripple current Maximal zulässiger Wechselstrom
IAC,R Rated ripple current Nennwechselstrom
IAC,R (B) Rated ripple current for base cooling Nennwechselstromstrom für Bodenkühlung
Ileak Leakage current Reststrom
Ileak,op Operating leakage current Betriebsreststrom
l Case length, nominal dimension Gehäuselänge, Nennmaß
lmax Maximum case length (without
terminals and mounting stud)
Maximale Gehäuselänge (ohne Anschlüsse
und Gewindebolzen)
R Resistance Widerstand
Rins Insulation resistance Isolationswiderstand
Rsymm Balancing resistance Symmetrierwiderstand
T Temperature Temperatur
T Temperature difference Temperaturdifferenz
TAAmbient temperature Umgebungstemperatur
TCCase temperature Gehäusetemperatur
TBCapacitor base temperature Temperatur des Becherbodens
t Time Zeit
t Period Zeitraum
tbService life (operating hours) Brauchbarkeitsdauer (Betriebszeit)
B43455, B43457
Long useful life 85 °C
Page 17 of 19Please read Cautions and warnings and
Important notes at the end of this document.
{é‘yTDK
Symbol English German
V Voltage Spannung
VFForming voltage Formierspannung
Vop Operating voltage Betriebsspannung
VRRated voltage, DC voltage Nennspannung, Gleichspannung
VSSurge voltage Spitzenspannung
XCCapacitive reactance Kapazitiver Blindwiderstand
XLInductive reactance Induktiver Blindwiderstand
Z Impedance Scheinwiderstand
ZTImpedance at temperature T Scheinwiderstand bei Temperatur T
tan δDissipation factor Verlustfaktor
λFailure rate Ausfallrate
ε0Absolute permittivity Elektrische Feldkonstante
εrRelative permittivity Dielektrizitätszahl
ωAngular velocity; 2 πf Kreisfrequenz; 2 πf
Note
All dimensions are given in mm.
B43455, B43457
Long useful life 85 °C
Page 18 of 19Please read Cautions and warnings and
Important notes at the end of this document.
{é‘yTDK
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.
Important notes
Page 19 of 19

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