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LD12xxxxxx Schematic ( PDF Datasheet ) - AVX Corporation

Teilenummer LD12xxxxxx
Beschreibung (LD Series) MLCC Tin / Lead Termination B
Hersteller AVX Corporation
Logo AVX Corporation Logo 




Gesamt 20 Seiten
LD12xxxxxx Datasheet, Funktion
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MLCC Tin/Lead Termination “B”
General Specifications
AVX Corporation will support those customers for
commercial and military Multilayer Ceramic Capacitors with
a termination consisting of 5% minimum lead. This
termination is indicated by the use of a “B” in the 12th
position of the AVX Catalog Part Number. This fulfills AVX’s
commitment to providing a full range of products to our
customers. AVX has provided in the following pages a full
range of values that we are currently offering in this special
“B” termination. Please contact the factory if you require
additional information on our MLCC Tin/Lead Termination
“B” products.
PART NUMBER (see page 2 for complete part number explanation)
LD05 5
A
101
J
AB
2
A
Size Voltage
LD02 - 0402
6.3V = 6
LD03 - 0603
10V = Z
LD04 - 0504
16V = Y
LD05 - 0805
25V = 3
LD06 - 1206
50V = 5
LD08 - 1808*
100V = 1
LD10 - 1210
200V = 2
LD12 - 1812
500V = 7
LD13 - 1825
LD14 - 2225
LD15 - 0204 LICC*
LD20 - 2220
LD16 - 0306 LICC
LD17 - 0508 LICC
LD18 - 0612 LICC
Dielectric
C0G (NP0) = A
X7R = C
X5R = D
Capacitance
Capacitance
Code (In pF)
Tolerance
2 Sig. Digits +
Number of
DBat=aS±h.1e0ept4FU(<.c1o0mpF)
C = ±.25 pF (<10pF)
Zeros
D = ±.50 pF (<10pF)
F = ±1% (10 pF)
G = ±2% (10 pF)
J = ±5%
K = ±10%
Failure
Rate
A = Not
Applicable
Terminations
B = 5% min
lead
Packaging
2 = 7" Reel
4 = 13" Reel
7 = Bulk Cass.
9 = Bulk
Contact
Factory
For
Multiples
Special DataShee
Code
A = Std.
Product
*Contact factory
ELECTRICAL GRAPHS
NPO
X7R
X7S
X5R
Y5V
Refer to page 4 for Electrical Graphs
Refer to page 12 for Electrical Graphs
Refer to page 16 for Electrical Graphs
Refer to page 19 for Electrical Graphs
Refer to page 23 for Electrical Graphs
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26
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LD12xxxxxx Datasheet, Funktion
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MLCC Tin/Lead Termination “B”
Capacitance Range (X5R Dielectric)
PREFERRED SIZES ARE SHADED
SIZE
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Soldering
Packaging
(L) Length
MM
(in.)
(W) Width
MM
(in.)
(t) Terminal
MM
(in.)
WVDC
Cap 100
(pF) 150
220
330
470
680
1000
1200
1500
1800
2200
2700
3300
3900
4700
5600
6800
8200
Cap 0.010
(µF 0.012
0.015
0.018
0.022
0.027
0.033
0.039
0.047
0.056
0.068
0.082
0.10
0.12
0.15
0.18
0.22
0.27
0.33
0.47
0.56
0.68
0.82
1.0
1.2
1.5
1.8
2.2
3.3
4.7
6.8
10
22
47
100
WVDC
SIZE
LD02
Reflow Only
All Paper
1.00 ± 0.10
(0.040 ± 0.004)
0.50 ± 0.10
(0.020 ± 0.004)
0.25 ± 0.15
(0.010 ± 0.006)
6.3 10
C
C
CC
6.3 10
0402
LD03
Reflow Only
All Paper
1.60 ± 0.15
(0.063 ± 0.006)
0.81 ± 0.15
(0.032 ± 0.006)
0.35 ± 0.15
(0.014 ± 0.006)
6.3 25
LD05
Reflow/Wave
Paper/Embossed
2.01 ± 0.20
(0.079 ± 0.008)
1.25 ± 0.20
(0.049 ± 0.008)
0.50 ± 0.25
(0.020 ± 0.010)
10 16
LD06
Reflow/Wave
Paper/Embossed
3.20 ± 0.20
(0.126 ± 0.008)
1.60 ± 0.20
(0.063 ± 0.008)
0.50 ± 0.25
(0.020 ± 0.010)
10 16 25
LD10
Reflow/Wave
Paper/Embossed
3.20 ± 0.20
(0.126 ± 0.008)
2.50 ± 0.20
(0.098 ± 0.008)
0.50 ± 0.25
(0.020 ± 0.010)
16
LW
T
t
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G
G
G
GN
GN
G NM
G NN
Q
NQ
NQ
Q
Q
Q
6.3 25
0603
10 16
0805
1206
1210
Letter
A
Max.
0.33
Thickness (0.013)
C
0.56
(0.022)
E
0.71
(0.028)
PAPER
G
0.86
(0.034)
J
0.94
(0.037)
K
1.02
(0.040)
M
1.27
(0.050)
N
1.40
(0.055)
P
1.52
(0.060)
Q
1.78
(0.070)
EMBOSSED
X
2.29
(0.090)
Y
2.54
(0.100)
Z
2.79
(0.110)
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DataShee
31

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LD12xxxxxx pdf, datenblatt
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General Description
Basic Construction – A multilayer ceramic (MLC) capaci-
tor is a monolithic block of ceramic containing two sets of
offset, interleaved planar electrodes that extend to two
opposite surfaces of the ceramic dielectric. This simple
structure requires a considerable amount of sophistication,
both in material and manufacture, to produce it in the quality
and quantities needed in today’s electronic equipment.
Ceramic Layer
Electrode
End Terminations
Terminated
Edge
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Terminated
Edge
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Margin
Electrodes
DataShee
Multilayer Ceramic Capacitor
Figure 1
Formulations – Multilayer ceramic capacitors are available
in both Class 1 and Class 2 formulations. Temperature
compensating formulation are Class 1 and temperature
stable and general application formulations are classified
as Class 2.
Class 1 – Class 1 capacitors or temperature compensating
capacitors are usually made from mixtures of titanates
where barium titanate is normally not a major part of the
mix. They have predictable temperature coefficients and
in general, do not have an aging characteristic. Thus they
are the most stable capacitor available. The most popular
Class 1 multilayer ceramic capacitors are C0G (NP0)
temperature compensating capacitors (negative-positive
0 ppm/°C).
Class 2 – EIA Class 2 capacitors typically are based on the
chemistry of barium titanate and provide a wide range of
capacitance values and temperature stability. The most
commonly used Class 2 dielectrics are X7R and Y5V. The
X7R provides intermediate capacitance values which vary
only ±15% over the temperature range of -55°C to 125°C. It
finds applications where stability over a wide temperature
range is required.
The Y5V provides the highest capacitance values and is
used in applications where limited temperature changes are
expected. The capacitance value for Y5V can vary from
22% to -82% over the -30°C to 85°C temperature range.
All Class 2 capacitors vary in capacitance value under the
influence of temperature, operating voltage (both AC and
DC), and frequency. For additional information on perfor-
mance changes with operating conditions, consult AVX’s
software, SpiCap.
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