DISCRETE CERAMICS
DATA SHEET
Class 1, NP0 50 V
feedthrough
Surface-mount ceramic
multilayer capacitors
www.phycomp-components.com
Product specification
Supersedes data of 25th August 1999
2001 May 30 Rev.3
Phycomp
Product specification
Surface-mount ceramic
multilayer capacitors
FEATURES
•
High capacitance per unit volume
•
Supplied in tape on reel or in bulk
•
For high frequency applications
•
NiSn terminations.
APPLICATIONS
•
Consumer electronics
•
Telecommunications
•
Automotive
•
Data processing.
DESCRIPTION
The capacitor consists of a
rectangular block of ceramic dielectric
in which a number of interleaved
precious metal electrodes are
contained. This structure gives rise to
a high capacitance per unit volume.
The inner electrodes are connected to
the four terminations, silver dipped
with a barrier layer of plated nickel
and finally covered with a layer of
plated tin (NiSn). A 3D diagram of the
structure is shown in Fig.1.
CCC033
Class 1, NP0 50 V
feedthrough
QUICK REFERENCE DATA
DESCRIPTION
Rated voltage U
R
(DC)
Capacitance range (E12 series)
Tolerance on capacitance
Test voltage (DC) for 1 minute
Sectional specifications
Detailed specification
Climatic category (IEC 60068)
50 V (IEC)
47 pF to 1 nF
±10%; ±5%
2.5
×
U
R
IEC 60384-10, second edition 1989-04;
also based on CECC 32 100
based on CECC 32 101-801
55/125/56
VALUE
handbook, halfpage
electrodes
terminations
Fig.1 Construction of a Feedthrough capacitor.
2001 May 30 Rev.3
2
www.phycomp-components.com
Phycomp
Product specification
Surface-mount ceramic
multilayer capacitors
MECHANICAL DATA
a
c
L
B
A
d
f
d
Class 1, NP0 50 V
feedthrough
W
e
b
CCB960
C
T
P
a. Outline.
b. Dimensions of solder lands.
For dimensions see Tables 1 and 2.
Fig.2 Physical dimensions.
Physical dimensions
Table 1
Capacitor dimensions in millimetres
L
3.2
±0.20
W
1.6
±0.20
T
0.80
±0.10
A
0.50
±0.20
B
0.30
±0.15
C
0.90
±0.20
P
1.60
±0.15
CASE SIZE
1206
Table 2
Dimensions of solder lands in millimetres
a
b
1.65
±0.20
c
1.00
±0.15
d
0.90
±0.20
e
1.00
±0.15
f
0.70
±0.10
4.45
±0.20
2001 May 30 Rev.3
3
www.phycomp-components.com
Phycomp
Product specification
Surface-mount ceramic
multilayer capacitors
SELECTION CHART
C
(pF)
47
100
220
330
470
1000
LAST TWO DIGITS
OF 12NC
32
36
41
43
45
49
Class 1, NP0 50 V
feedthrough
50 V
1206
0.8
±0.1
Thickness classification and packing quantities
THICKNESS
CLASSIFICATION
(mm)
0.8
±0.1
8 mm TAPE WIDTH
QUANTITY PER REEL
∅180
mm; 7"
PAPER
4000
ORDERING INFORMATION
Components may be ordered by using either a simple 15-digit clear text code or Phycomp’s unique 12NC.
Clear text code
E
XAMPLE
: 1206CG102J9B20F
SIZE
CODE
1206
TEMP.
CHAR.
CG = NP0
CAPACITANCE
102 = 1000 pF;
the third digit
signifies the
multiplying factor:
0=
×
1
1 =
×
10
2 =
×
100
TOL.
J =
±5%
K =
±10%
VOLTAGE
9 = 50 V
TERMINATION
B = NiSn
PACKING
2 = 180 mm; 7" paper
A = bulk
MARKING
0 = no marking
SERIES
F = feedthrough
Ordering code 12NC
handbook, full pagewidth
2 2 X X
X X X
X 1 X X X
Capacitance value
(1)
Carrier type
55 paper
Rated voltage - Termination
23 50 V; Ni-barrier
Tolerance
5
±5%
6
±10%
Size
1
1206 Feedthrough
CCC009
Packaging
(2)
1
reel:
∅180
mm; 7"
0
bulk (loose in bag, 1000 units)
(1) Refer to chapter “Selection chart”.
(2) Quantity on reel depends on thickness classification, see section “Thickness classification and packing quantities”.
2001 May 30 Rev.3
4
www.phycomp-components.com
Phycomp
Product specification
Surface-mount ceramic
multilayer capacitors
ELECTRICAL CHARACTERISTICS
Class 1, NP0 50 V
feedthrough
Class 1 capacitors; NP0 dielectric; NiSn terminations
Unless otherwise stated all electrical values apply at an ambient temperature of 23
±3 °C,
an atmospheric pressure of
86 to 106 kPa, and a relative humidity of 63 to 67%.
DESCRIPTION
Capacitance range (E12 series)
Tolerance on capacitance
Rated voltage U
R
(DC)
Test voltage (DC) for 1 minute
Tan
δ;
note 1
Insulation resistance after 1 minute at U
R
(DC)
Rated DC resistance
Note
1. Measured at 1 V, 1 MHz for C
≤
1000 pF and 1 V, 1 kHz for C
>
1 000 pF, using a four-gauge method.
47 pF to 1 nF
±10%; ±5%
50 V
2.5
×
U
R
≤10 ×
10
−4
R
ins
> 10
5
MΩ
1
Ω
max.
VALUE
2001 May 30 Rev.3
5
www.phycomp-components.com