B37986N1222J000 [EPCOS]
Multilayer ceramic capacitors; 多层陶瓷电容器型号: | B37986N1222J000 |
厂家: | EPCOS |
描述: | Multilayer ceramic capacitors |
文件: | 总20页 (文件大小:715K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
Multilayer ceramic capacitors
Leaded, C0G
Series/Type:
Leaded C0G
Date:
February 2009
The following products presented in this data sheet are being withdrawn.
Substitute Products: See www.epcos.com/withdrawal_mlcc
Ordering Code
Substitute Product
Date of
Withdrawal
Deadline Last
Orders
Last Shipments
B37979N1221J000
B37979N1331J054
B37979N1331J051
2009-06-26
2009-06-26
2009-06-26
2010-06-30
2010-06-30
2010-06-30
2010-12-31
2010-12-31
2010-12-31
© EPCOS AG 2009. Reproduction, publication and dissemination of this publication, enclosures hereto and the
information contained therein without EPCOS' prior express consent is prohibited.
Ordering Code
Substitute Product
Date of
Withdrawal
Deadline Last
Orders
Last Shipments
B37979N1331J000
B37979N1471J054
B37979N1471J051
B37979N1471J000
B37979N1681J054
B37979N1681J051
B37979N1681J000
B37979N1102J054
B37979N1102J051
B37979N1102J000
B37986N5332J054
B37979G1151J054
B37979G1151J051
B37979G1151J000
B37979G1221J054
B37979G1221J051
B37986N5332J051
B37986N5332J000
B37986N5472J054
B37986N5472J051
B37986N5472J000
B37979G1221J000
B37979G1331J054
B37979G1331J051
B37979G1331J000
B37979G1471J054
B37986N5682J054
B37986N5682J051
B37986N5682J000
B37986N5103J054
B37986N5103J051
B37979G1471J051
B37979G1471J000
B37979G1681J054
B37979G1681J051
B37979G1681J000
B37986N5103J000
B37986N1152J054
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
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2010-12-31
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2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
Ordering Code
Substitute Product
Date of
Withdrawal
Deadline Last
Orders
Last Shipments
B37986N1152J051
B37986N1152J000
B37986N1222J054
B37979G1102J054
B37979G1102J051
B37979G1102J000
B37979G5101J054
B37979G5101J051
B37986N1222J051
B37986N1222J000
B37979G5101J000
B37979G5151J054
B37979G5151J051
B37979G5151J000
B37979G5221J054
B37979G5221J051
B37979G5221J000
B37979G5331J054
B37979G5331J051
B37979G5331J000
B37979G5471J054
B37979G5471J051
B37979G5471J000
B37979N5101J054
B37979N5101J051
B37979N5101J000
B37986G5332J054
B37986G5332J051
B37986G5332J000
B37986G5472J054
B37986G5472J051
B37986G5472J000
B37986G5682J054
B37986G5682J051
B37986G5682J000
B37986G5103J054
B37986G5103J051
B37986G5103J000
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
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2009-06-26
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2009-06-26
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2009-06-26
2009-06-26
2009-06-26
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2009-06-26
2009-06-26
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2009-06-26
2009-06-26
2009-06-26
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2010-06-30
2010-12-31
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2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
Ordering Code
Substitute Product
Date of
Withdrawal
Deadline Last
Orders
Last Shipments
B37986G1152J054
B37986G1152J051
B37986G1152J000
B37986G1222J054
B37986G1222J051
B37986G1222J000
B37979N5151J054
B37979N5151J051
B37979N5151J000
B37979N5221J054
B37979N5221J051
B37979N5221J000
B37979N5331J054
B37979N5331J051
B37979N5331J000
B37979N5471J054
B37979N5471J051
B37979N5471J000
B37979N5681J054
B37979N5681J051
B37979N5681J000
B37979N5102J054
B37979N5102J051
B37979N5102J000
B37979N5152J054
B37979N5152J051
B37979N5152J000
B37979N5222J054
B37979N5222J051
B37979N5222J000
B37979N1100J054
B37979N1100J051
B37979N1100J000
B37979N1150J054
B37979N1150J051
B37979N1150J000
B37979G5681J054
B37979G5681J051
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
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2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2010-06-30
2010-06-30
2010-06-30
2010-06-30
2010-06-30
2010-06-30
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2010-06-30
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2010-06-30
2010-06-30
2010-06-30
2010-06-30
2010-12-31
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2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
Ordering Code
Substitute Product
Date of
Withdrawal
Deadline Last
Orders
Last Shipments
B37979G5681J000
B37979N1220J054
B37979N1220J051
B37979N1220J000
B37979N1330J054
B37979N1330J051
B37979G5102J054
B37979G5102J051
B37979G5102J000
B37979G5152J054
B37979G5152J051
B37979N1330J000
B37979N1470J054
B37979N1470J051
B37979N1470J000
B37979N1680J054
B37979G5152J000
B37979G5222J054
B37979G5222J051
B37979G5222J000
B37979G1100J054
B37979N1680J051
B37979N1680J000
B37979N1101J054
B37979N1101J051
B37979N1101J000
B37979G1100J051
B37979G1100J000
B37979G1150J054
B37979G1150J051
B37979G1150J000
B37979N1151J054
B37979N1151J051
B37979N1151J000
B37979N1221J054
B37979N1221J051
B37979G1220J054
B37979G1220J051
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
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2009-06-26
2009-06-26
2009-06-26
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2009-06-26
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2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2010-06-30
2010-06-30
2010-06-30
2010-06-30
2010-06-30
2010-06-30
2010-06-30
2010-06-30
2010-06-30
2010-06-30
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2010-06-30
2010-06-30
2010-06-30
2010-06-30
2010-06-30
2010-06-30
2010-06-30
2010-06-30
2010-06-30
2010-06-30
2010-12-31
2010-12-31
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2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
Ordering Code
Substitute Product
Date of
Withdrawal
Deadline Last
Orders
Last Shipments
B37979G1220J000
B37979G1330J054
B37979G1330J051
B37979G1330J000
B37979G1470J054
B37979G1470J051
B37979G1470J000
B37979G1680J054
B37979G1680J051
B37979G1680J000
B37979G1101J054
B37979G1101J051
B37979G1101J000
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2009-06-26
2010-06-30
2010-06-30
2010-06-30
2010-06-30
2010-06-30
2010-06-30
2010-06-30
2010-06-30
2010-06-30
2010-06-30
2010-06-30
2010-06-30
2010-06-30
2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
2010-12-31
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.
Multilayer ceramic capacitors
C0G
Leaded C0G
C0G
Ordering code system
B37979N
1
101
J
0
54
Type and size
With radial leads
EIA standards
Temperature characteristic
C0G
Lead spacing 2.5 mm
5.5 × 5.0 × 2.5 B37979N
6.5 × 5.0 × 2.5 B37986N
Lead spacing 5.0 mm
5.5 × 5.0 × 2.5 B37979G
6.5 × 5.0 × 2.5 B37986G
9.0 × 7.5 × 2.5
ꢀ
Rated voltage
5 (Code) ꢁ 50 VDC
1 (Code) ꢁ 100 VDC
Capacitance, coded (example)
101 ꢁ 10 ꢂ 101 pF = 100 pF
222 ꢁ 22 ꢂ 102 pF = 2.2 nF
473 ꢁ 47 ꢂ 103 pF = 47 nF
Capacitance tolerance
J
ꢁ ±5% (standard for C0G)
Internal coding
Packaging
51 ꢁ cardboard tape, reel packing (360-mm reel)
54 ꢁ Ammo packing (standard)
00 ꢁ bulk
Please read Cautions and warnings and
Important notes at the end of this document.
Page 2 of 15
Multilayer ceramic capacitors
C0G
Features
Good thermal stability
High insulation resistance
Low dissipation factor
Low inductance
Applications
Resonant circuits
Filter circuits
Timing elements
Coupling and filtering, particularly in RF circuits
Termination
Parallel wire leads, iron-nickel, tinned
Crimped leads
Non-standard lead lengths on request
Marking
Rated capacitance, tolerance, manufacturer’s logo, ceramic material, voltage
Options
Alternative capacitance values and tolerances available on request
Delivery mode
Cardboard tape in Ammo packing (standard)
Cardboard tape on 360-mm reel or bulk on request
Electrical data
Temperature characteristic
Climatic category
Standard
C0G
55/125/56
EIA
(IEC 60068-1)
Dielectric
Rated voltage
Class 1
50, 100
VR
VDC
VDC
Test voltage
Vtest 2.5 ꢂ VR/5 s
CR 10 pF ... 10 nF (E6)
0 ±30 ꢂ 10-6/K
tan δ < 1.0 ꢂ 10-3
Capacitance range
Temperature coefficient
Dissipation factor
Insulation resistance1)
Insulation resistance1)
Time constant1)
(limit value)
(at +25 °C)
(at +125 °C)
(at +25 °C)
(at +125 °C)
Rins
Rins
τ
> 105
> 104
> 1000
> 100
MΩ
MΩ
s
Time constant1)
τ
s
Operating temperature range
Ageing
Top
ꢀ55 ... +125
none
°C
1) For CR >10 nF the time constant τ = C ꢂ Rins is given.
Please read Cautions and warnings and
Important notes at the end of this document.
Page 3 of 15
Multilayer ceramic capacitors
C0G
Capacity tolerance
Dimensional drawing
Code letter
Tolerance
J (standard)
K
±5 %
±10 %
Dimensions (mm)
Lead spacing
= 2.5 +0.6/ꢀ0.1 mm
Lead spacing
= 5.0 +0.6/ꢀ0.1 mm
Type B37979N
B37986N
Type B37979G
B37986G
hmax
wmax
5.5
5.0
6.0
5.0
2.5
hmax
wmax
5.5
5.0
6.5
5.0
2.5
thmax 2.5
thmax 2.5
Termination
Please read Cautions and warnings and
Important notes at the end of this document.
Page 4 of 15
Multilayer ceramic capacitors
C0G
Product range for leaded capacitors, C0G
Lead spacing
2.5 mm
5.0 mm
h x w x th
Type
5.5 × 5.0 × 2.5
6.5 × 5.0 × 2.5
B37986N
50 100
5.5 × 5.0 × 2.5
6.5 × 5.0 × 2.5
B37986G
50 100
B37979N
B37979G
CR \ VR (VDC)
10 pF
50
100
50
100
15 pF
22 pF
33 pF
47 pF
68 pF
100 pF
150 pF
220 pF
330 pF
470 pF
680 pF
1.0 nF
1.5 nF
2.2 nF
3.3 nF
4.7 nF
6.8 nF
10 nF
Please read Cautions and warnings and
Important notes at the end of this document.
Page 5 of 15
Multilayer ceramic capacitors
C0G
Ordering codes and packing for C0G, 50 VDC, lead spacing 2.5 mm
Ammo packing
** ꢁ 54
Reel packing
** ꢁ 51
Bulk
** ꢁ 00
pcs.
CR
Ordering code
pcs.
pcs./reel
B37979N, 50 VDC
100 pF B37979N5101J0** 2500
150 pF B37979N5151J0** 2500
220 pF B37979N5221J0** 2500
330 pF B37979N5331J0** 2500
470 pF B37979N5471J0** 2500
680 pF B37979N5681J0** 2500
1.0 nF B37979N5102J0** 2500
1.5 nF B37979N5152J0** 2500
2.2 nF B37979N5222J0** 2500
B37986N, 50 VDC
2500
2500
2500
2500
2500
2500
2500
2500
2500
2000
2000
2000
2000
2000
2000
2000
2000
2000
3.3 nF B37986N5332J0** 2500
4.7 nF B37986N5472J0** 2500
6.8 nF B37986N5682J0** 2500
2500
2500
2500
2500
2000
2000
2000
2000
10 nF
B37986N5103J0** 2500
Ordering codes and packing for C0G, 50 VDC, lead spacing 5.0 mm
Ammo packing
** ꢁ 54
Reel packing
** ꢁ 51
Bulk
** ꢁ 00
pcs.
CR
Ordering code
pcs.
pcs./reel
B37979G, 50 VDC
100 pF B37979G5101J0** 2500
150 pF B37979G5151J0** 2500
220 pF B37979G5221J0** 2500
330 pF B37979G5331J0** 2500
470 pF B37979G5471J0** 2500
680 pF B37979G5681J0** 2500
1.0 nF B37979G5102J0** 2500
1.5 nF B37979G5152J0** 2500
2.2 nF B37979G5222J0** 2500
2500
2500
2500
2500
2500
2500
2500
2500
2500
2000
2000
2000
2000
2000
2000
2000
2000
2000
Please read Cautions and warnings and
Important notes at the end of this document.
Page 6 of 15
Multilayer ceramic capacitors
C0G
Ordering codes and packing for C0G, 50 VDC, lead spacing 5.0 mm
Ammo packing
** ꢁ 54
Reel packing
** ꢁ 51
Bulk
** ꢁ 00
pcs.
CR
Ordering code
pcs.
pcs./reel
B37986G, 50 VDC
3.3 nF B37986G5332J0** 2500
4.7 nF B37986G5472J0** 2500
6.8 nF B37986G5682J0** 2500
2500
2500
2500
2500
2000
2000
2000
2000
10 nF
B37986G5103J0** 2500
Ordering codes and packing for C0G, 100 VDC, lead spacing 2.5 mm
Ammo packing
** ꢁ 54
Reel packing
** ꢁ 51
Bulk
** ꢁ 00
pcs.
CR
Ordering code
pcs.
pcs./reel
B37979N, 100 VDC
10 pF
15 pF
22 pF
33 pF
47 pF
68 pF
B37979N1100J0** 2500
B37979N1150J0** 2500
2500
2500
2500
2500
2500
2500
2500
2500
2500
2500
2500
2500
2500
2000
2000
2000
2000
2000
2000
2000
2000
2000
2000
2000
2000
2000
B37979N1220J0** 2500
B37979N1330J0** 2500
B37979N1470J0** 2500
B37979N1680J0** 2500
100 pF B37979N1101J0** 2500
150 pF B37979N1151J0** 2500
220 pF B37979N1221J0** 2500
330 pF B37979N1331J0** 2500
470 pF B37979N1471J0** 2500
680 pF B37979N1681J0** 2500
1.0 nF B37979N1102J0** 2500
B37986N, 100 VDC
1.5 nF B37986N1152J0** 2500
2.2 nF B37986N1222J0** 2500
2500
2500
2000
2000
Please read Cautions and warnings and
Important notes at the end of this document.
Page 7 of 15
Multilayer ceramic capacitors
C0G
Ordering codes and packing for C0G, 100 VDC, lead spacing 5.0 mm
Ammo packing
** ꢁ 54
Reel packing
** ꢁ 51
Bulk
** ꢁ 00
pcs.
CR
Ordering code
pcs.
pcs./reel
B37979G, 100 VDC
10 pF
15 pF
22 pF
33 pF
47 pF
68 pF
B37979G1100J0** 2500
B37979G1150J0** 2500
2500
2500
2500
2500
2500
2500
2500
2500
2500
2500
2500
2500
2500
2000
2000
2000
2000
2000
2000
2000
2000
2000
2000
2000
2000
2000
B37979G1220J0** 2500
B37979G1330J0** 2500
B37979G1470J0** 2500
B37979G1680J0** 2500
100 pF B37979G1101J0** 2500
150 pF B37979G1151J0** 2500
220 pF B37979G1221J0** 2500
330 pF B37979G1331J0** 2500
470 pF B37979G1471J0** 2500
680 pF B37979G1681J0** 2500
1.0 nF B37979G1102J0** 2500
B37986G, 100 VDC
1.5 nF B37986G1152J0** 2500
2.2 nF B37986G1222J0** 2500
2500
2500
2000
2000
Please read Cautions and warnings and
Important notes at the end of this document.
Page 8 of 15
Multilayer ceramic capacitors
C0G
Typical characteristics
Capacitance change ∆C/C25 versus
temperature T
Capacitance change ∆C/C0 versus
superimposed DC voltage V
Insulation resistance Rins versus
temperature T
Dissipation factor tan δ versus
temperature T
Please read Cautions and warnings and
Important notes at the end of this document.
Page 9 of 15
Multilayer ceramic capacitors
C0G
Typical characteristics
Impedance |Z| versus
Capacitance change ∆C/C1 versus
frequency f
time t
1: SMD chip capacitor
2: 1.5 mm lead length
3: 5.0 mm lead length
4: 10.0 mm lead length
5: 20.0 mm lead length
Please read Cautions and warnings and
Important notes at the end of this document.
Page 10 of 15
Multilayer ceramic capacitors
C0G
Cautions and warnings
How to select ceramic capacitors
Remember the following when selecting ceramic capacitors:
1. Ceramic capacitors that must fulfill high quality requirements must be qualified based on
AEC-Q200 Rev-C.
2. When ceramic capacitors are used at the connection to a battery or power supply (e.g. clamp
15 or 30 in an automobile) or for safety-relevant applications, two single ceramic capacitors
should be connected in series. Alternatively a ceramic capacitor with integrated series circuits
should be used in order to reduce the possibility of a short circuit caused by a fracture. The
MLSC from EPCOS contains such a series circuit in a single component.
3. The use of multilayer varistors (MLVs) is recommended for ESD protection (see chapter
“Effects on mechanical, thermal and electrical stress”, section 1.4).
4. Additional stress factors such as continuous operating voltage or application-specific derating
must be taken into account in the selection of components (refer to chapter “Reliability”).
Recommendations for the circuit board design
1. Components with an optimized geometrical design are preferable where permitted by the
application.
2. Use at least FR4 circuit board material.
3. Geometrically optimized circuit boards are preferable, especially those that cannot be
deformed.
4. Ceramic capacitors should be placed with a sufficient minimum distance from the edge of a
circuit board. High bending forces may be exerted there when boards are separated and
during further processing of a board (e.g. when incorporating it in a housing).
5. Ceramic capacitors should always be placed parallel to the possible bending axis of a circuit
board.
6. Screw connections should not be used to fix a board or connect several boards. Components
should not be placed near screw holes. If screw connections are unavoidable, they should be
cushioned, for instance using rubber pads.
Please read Cautions and warnings and
Important notes at the end of this document.
Page 11 of 15
Multilayer ceramic capacitors
C0G
Recommendations for processing
1. Ensure correct positioning of a ceramic capacitor on the solder pad.
2. Be careful when using casting, injection-molded and molding compounds and cleaning
agents. They can damage a capacitor.
3. Support a circuit board and reduce placement forces.
4. Do not straighten a board (manually) if it is distorted by soldering.
5. Separate boards with a peripheral saw, or preferably with a milling head (no dicing or
breaking).
6. Be careful when subsequently placing heavy or leaded components (e.g. transformers or
snap-in components) because of the danger of bending and fracture.
7. When testing, transporting, packing or inserting a board, avoid any deformation of it so that
components are not damaged.
8. Avoid excessive force when plugging a connector into a device soldered onto a board.
9. Only mount ceramic capacitors using the soldering process (reflow or wave) that is
permissible for them (see chapter “Soldering directions”).
10. When soldering, select the softest solder profile possible (heating time, peak temperature,
cooling time) to avoid thermal stress and damage.
11. Ensure the correct solder meniscus height and solder quantity.
12. Ensure correct dosing of the cement.
13. Ceramic capacitors with external silver-palladium terminations are intended for conductive
adhesion - they are not suited for lead-free soldering processes.
This listing does not claim to be complete, but merely reflects the experience of EPCOS AG.
Please read Cautions and warnings and
Important notes at the end of this document.
Page 12 of 15
Multilayer ceramic capacitors
C0G
Symbols and terms
Symbol
A
English
Area
German
Fläche
C
Capacitance
Kapazität
C0
C1
CR
C20
C25
∆C
Initial (original) capacitance
Capacitance value after one hour's use Kapazitätswert nach einer Stunde
Rated capacitance
Capacitance at 20 °C
Capacitance at 25 °C
Capacitance change
Anfangskapazität
Nennkapazität
Kapazität bei 20 °C
Kapazität bei 25 °C
Kapazitätsänderung
D
Bending displacement
Durchbiegung
Ea
Activation energy
Aktivierungsenergie
ESR
Equivalent series resistance
Ersatzserienwiderstand
F
Force
Kraft
f
Frequency
Frequenz
fmeas
fres
Measuring frequency
Self-resonant frequency
Messfrequenz
Eigenresonanzfrequenz
Itest
k
Test current
Prüfstrom
Ageing constant
Inductance
Alterungskonstante
Induktivität
L
N
Quantity (integer values)
Power dissipation or loss
Anzahl (ganzzahliger Wert)
Verlustleistung
Ploss
Qel
Q
Electrical charge
Quality
Elektrische Ladung
Güte
Rins
RP
RS
Insulation resistance
Parallel resistance
Series resistance (circuit resistance)
Isolationswiderstand
Parallelwiderstand
Serienwiderstand
SV
Rate of rise of a voltage pulse
Flankensteilheit eines Spannungsimpulses
T
Temperature
Temperatur
Tmeas
Top
Tref
Ttest
t
Measuring temperature
Operating temperature
Reference temperature
Test temperature
Time
Messtemperatur
Betriebstemperatur
Bezugstemperatur
Prüftemperatur
Zeit
tr
Rise time of a voltage pulse
Test duration
Dissipation factor
Anstiegszeit eines Spannungsimpulses
Prüfdauer
Verlustfaktor
ttest
tan δ
Please read Cautions and warnings and
Important notes at the end of this document.
Page 13 of 15
Multilayer ceramic capacitors
C0G
Symbol
English
German
V
Voltage
Spannung
V0
Initial (original) voltage (basic voltage
level)
Measuring voltage
Rated voltage
Anfangsspannung
(Spannungsgrundpegel)
Messspannung
Vmeas
VR
Nennspannung
VS
VRMS
Amplitude of a voltage pulse
Measuring (root-mean-square or
effective) AC voltage
Test voltage
Hub des Spannungsimpulses
Effektivspannung
Vtest
|Z|
Prüfspannung
Magnitude of impedance (AC
resistance)
Betrag der Impedanz
(Wechselstromwiderstand)
α
Temperature coefficient
Temperaturkoeffizient
ε0
εr
Absolute dielectric constant
Relative dielectric constant
Absolute Dielektrizitätskonstante
Relative Dielektrizitätskonstante
λ
τ
Failure rate
Ausfallrate
Time constant
Zeitkonstante
Abbreviations / Notes
Symbol
English
German
Lead spacing (in mm)
Surface-mounted devices
Rastermaß (in mm)
Oberflächenmontierbares Bauelement
*
To be replaced by a number in ordering Platzhalter für Zahl im Bestellnummern-
codes, type designations etc.
code oder für die Typenbezeichnung.
Platzhalter für einen Buchstaben.
Alle Maße sind in mm angegeben.
+
To be replaced by a letter.
All dimensions are given in mm.
The commas used in numerical values Verwendete Kommas in Zahlenwerten
denote decimal points. bezeichnen Dezimalpunkte.
Please read Cautions and warnings and
Important notes at the end of this document.
Page 14 of 15
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, CSMP, CSSP, CTVS, DSSP,
MiniBlue, MKK, MLSC, MotorCap, PCC, PhaseCap, PhaseCube, PhaseMod, SIFERRIT,
SIFI, SIKOREL, SilverCap, SIMDAD, 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 15 of 15
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