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• Decoupling, By-pass, DC Blocking
Dielectric
RF Performance
E/B
W
T
L
S Series
BEST
C Series BETTER
L Series GOOD
NPO
?
M
ECHANICAL
C
HARACTERISTICS
R05 / 0201
Inches
R07/ 0402
Inches
R14 / 0603
Inches
R15 / 0805
Inches
L
W
T
E/B
.024 ±.001
.012 ±.001
.012 ±.001
.006 ±.002
(mm)
(0.6 ±0.03)
(0.3 ± 0.03)
(0.3 ± 0.03)
(0.15 ± 0.05)
.040 ±.004
.020 ±.004
.020 ±.004
.010 ±.006
(mm)
(1.02 ±0.1)
(0.51 ±0.1)
(0.51 ±0.1)
(0.25 ±.15)
.062 ±.006
.032 ±.006
.030
+.005
.
- .003
.014 ±.006
(mm)
(1.57 ±.15)
(0.81 ±.15)
(0.76
+.13
)
-.08
(0.35 ±.15)
.080 ±.008
.050 ±.008
.040 ±.006
.020 ±.010
(mm)
(2.03 ±.20)
(1.27 ±.20)
(1.02 ±.15)
(0.50 ±.25)
H
OW TO
O
RDER
251
VOLTAGE
250 = 25 V
500 = 50 V
251 = 250 V
R15
CASE SIZE
See Chart
S
DIELECTRIC
S = S Dielectric
101
CAPACITANCE
1st two digits are
significant; third digit
denotes number of
zeros, R = decimal.
1R0 = 1.0 pF
101 = 100 pF
J
TOLERANCE
** A = ± 0.05 pF
* B = ± 0.10 pF
* C = ± 0.25 pF
F = ±1%
G = ± 2%
J = ± 5%
K = ± 10%
* Values < 10 pF
** Values
≤
2.0 pF
V
TERMINATION
V = Ni/Sn
4
E
TAPE MODIFIER
Code Type Reel
SIZES 0201 - 0603:
T
Paper 7"
Y
Paper
5"
SIZE 0805:
E Embossed 7"
Z Embossed 5"
Tape specifications
conform to EIA RS481
Part number written: 251R15S101JV4E
MARKING
4 = Unmarked
6 = EIA "J" Code*
*
≥
0805 sizes
1
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A
VAILABLE
C
APACITANCE
S
ELECTION
R05 / 0201
0.2 pF
0.3 pF
0.4 pF
0.5 pF
0.6 pF
0.7 pF
0.8 pF
0.9 pF
1.0 pF
1.1 pF
1.2 pF
1.3 pF
1.5 pF
1.6 pF
1.8 pF
2.0 pF
2.2 pF
2.4 pF
2.7 pF
3.0 pF
3.3 pF
3.6 pF
3.9 pF
4.3 pF
4.7 pF
5.1 pF
5.6 pF
6.2 pF
6.8 pF
7.5 pF
8.2 pF
9.1 pF
10 pF
11 pF
12 pF
13 pF
15 pF
16 pF
18 pF
20 pF
22 pF
24 pF
27 pF
30 pF
33 pF
36 pF
39 pF
43 pF
47 pF
56 pF
68 pF
82 pF
100 pF
120 pF
150 pF
180 pF
220 pF
25 V
25 V
25 V
25 V
25 V
25 V
25 V
25 V
25 V
25 V
25 V
25 V
25 V
25 V
25 V
25 V
25 V
25 V
25 V
25 V
25 V
25 V
25 V
25 V
25 V
25 V
25 V
25 V
25 V
25 V
25 V
25 V
R07/ 0402
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
50 V
R14 / 0603
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
R15 / 0805
0.2 pF
0.3 pF
0.4 pF
0.5 pF
0.6 pF
0.7 pF
0.8 pF
0.9 pF
1.0 pF
1.1 pF
1.2 pF
1.3 pF
1.5 pF
1.6 pF
1.8 pF
2.0 pF
2.2 pF
2.4 pF
2.7 pF
3.0 pF
3.3 pF
3.6 pF
3.9 pF
4.3 pF
4.7 pF
5.1 pF
5.6 pF
6.2 pF
6.8 pF
7.5 pF
8.2 pF
9.1 pF
10 pF
11 pF
12 pF
13 pF
15 pF
16 pF
18 pF
20 pF
22 pF
24 pF
27 pF
30 pF
33 pF
36 pF
39 pF
43 pF
47 pF
56 pF
68 pF
82 pF
100 pF
120 pF
150 pF
180 pF
220 pF
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
250 V
This selection chart represents basic C/V capability in this series. Please contact the factory for capacitance, voltage, case size combinations not shown.
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2
D
IELECTRIC
C
HARACTERISTICS
TEMPERATURE COEFFICIENT:
QUALITY FACTOR:
INSULATION RESISTANCE:
DIELECTRIC STRENGTH:
TEST PARAMETERS:
AVAILABLE CAPACITANCE:
0 ± 30ppm /°C, -55 to 125°C
2,500 min.,10,000 typical
>10 GΩ @ 25°C,WVDC;
125°C IR is 10% of 25°C rating.
2.5 X WVDC Min., 25°C, 50 mA max
1MHz ±50kHz, 1.0±0.2 VRMS, 25°C
Size 0201:
Size 0402:
Size 0603:
Size 0805:
0.2 - 9.1 pF
0.2 - 27 pF
0.2 - 100 pF
0.5 - 220 pF
Frequency (GHz)
10.0
25.0
R05/0201
R07/0402
R14/0603
Typical Series Resonant Frequency
1.0
0.5
0.1
1
Capacitance (pF)
10
100
M
ECHANICAL
& E
NVIRONMENTAL
C
HARACTERISTICS
SPECIFICATION
SOLDERABILITY:
RESISTANCE TO
SOLDERING HEAT:
Solder coverage
≥
90% of metalized areas
No termination degradation
No mechanical damage
Capacitance change: ±2.5% or 0.25pF
Q>500 I.R. >10 G Ohms
Breakdown voltage: 2.5 x WVDC
Termination should not pull off.
Ceramic should remain undamaged.
No mechanical damage.
Capacitance change: 2% or 0.5pF Max
No mechanical damage
Capacitance change: ±3.0% or 0.3 pF
Q>500 I.R. >1 G Ohms
Breakdown voltage: 2.5 x WVDC
No mechanical damage.
Capacitance change: ±2.5% or 0.25pF
Q>2000 I.R. >10 G Ohms
Breakdown voltage: 2.5 x WVDC
No mechanical damage.
Capacitance change: ±5.0% or 0.50pF max.
Q>300 I.R.
≥
1 G-Ohm
Breakdown voltage: 2.5 x WVDC
No mechanical damage.
Capacitance change: ±5.0% or 0.50pF max.
Q>300 I.R. = 1 G-Ohm min.
Breakdown voltage: 2.5 x WVDC
No mechanical damage.
Capacitance change: ±2.5% or 0.25pF
Q>1000 I.R.
≥
10 G-Ohm
Breakdown voltage: 2.5 x WVDC
TEST PARAMETERS
Preheat chip to 120°-150°C for 60 sec., dip terminals in rosin flux
then dip in Sn62 solder @ 240°±5°C for 5±1 sec
Preheat device to 80°-100°C for 60 sec.
followed by 150°-180°C for 60 sec.
Dip in 260°±5°C solder for 10±1 sec.
Measure after 24±2 hour cooling period
Linear pull force* exerted on axial leads soldered to each terminal.
*0201
≥
0.5 lbs, 0402
≥
2.0lbs, 0603
≥
2.0lbs, 0805
≥
5.0lbs (min.)
Glass epoxy PCB: 0.5 mm deflection
Applied voltage: 200% rated voltage, 50 mA max.
Temperature: 125°±3°C
Test time: 1000+48-0 hours
5 cycles of: 30±3 minutes @ -55°+0/-3°C,
2-3 min. @ 25°C, 30±3 min. @ +125°+3/-0°C,
2-3 min. @ 25°C
Measure after 24±2 hour cooling period
Relative humidity: 90-95%
Temperature: 40°±2°C
Test time: 500 +12/-0 Hours
Measure after 24±2 hour cooling period
Applied voltage: 1.5 VDC, 50 mA max.
Relative humidity: 85±2% Temperature: 40°±2°C
Test time: 240 +12/-0 Hours
Measure after 24±2 hour cooling period
Cycle performed for 2 hours in each of three perpendicular directions
Frequency range 10Hz to 55 Hz to 10 Hz traversed
in 1 minute. Harmonic motion amplitude: 1.5mm
TERMINAL
ADHESION:
PCB DEFLECTION:
LIFE TEST:
THERMAL CYCLE:
HUMIDITY,
STEADY STATE:
HUMIDITY,
LOW VOLTAGE:
VIBRATION:
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3
RF C
HARACTERISTICS VERSUS
F
REQUENCY
Equivalent Series Resistance: 0201/R05S
0.50
10000
Q Factor: 0201/R05S
B
B
0.5 pF
J
1.8 pF
H
3.9 pF
F
5.6 pF
B
8.2 pF
ESR (Ohms)
0.10
J
B
B
F
H
0
500
B
J
B
F
H
B
B
F
J
H
B
F
B
J
H
1000
Q
100
H
J
F
B
H
F
B
B
J
H
F
B
H
3.9 pF
B
J
H
F
B
B
B
J
B
10
1000
1500
Frequency (MHz)
2000
2500
0
0.5 pF
J
1.8 pF
F
5.6 pF
8.2 pF
0.05
500
1000
1500
Frequency (MHz)
2000
2500
Equivalent Series Resistance: 0402/R07S
1
10000
Q Factor: 0402/R07S
ESR (Ohms)
B
0.1
B
J
B
J
H
F
M
P
H
F
M
P
B
J
500
0.5 pF
1.2 pF
H
F
M
P
J
H
F
M
P
B
J
Q
1000
H
F
B
P
B
J
H
F
B
P
100
B
J
H
F
B
P
B
P
10 pF
15 pF
B
J
H
F
B
P
B
J
H
M
4.7 pF
8.2 pF
F
P
2000
10 pF
15 pF
10
B
J
1
2500
0
0.5 pF
1.2 pF
H
F
4.7 pF
8.2 pF
0.01
0
1000
1500
Frequency (MHz)
500
1000
1500
2000
2500
Frequency (MHz)
Equivalent Series Resistance: 0603/R14S
1
10000
Q Factor: 0603/R14S
B
47 pF
B
3.3 pF
J
10 pF
H
15 pF
F
33 pF
1000
ESR (Ohms)
B
H
J
F
B
B
J
B
J
H
F
B
3.3 pF
10 pF
H
F
15 pF
33 pF
B
47 pF
0.1
B
J
H
F
B
0.01
0
500
J
H
B
F
B
J
B
H
B
F
J
B
H
B
F
Q
100
B
J
H
F
B
J
H
10
1
1000
1500
Frequency (MHz)
2000
2500
0
500
1000
1500
2000
2500
Frequency (MHz)
Measurements performed on a Boonton 34A Resonant Coaxial Line and represent typical capacitor performance.
4
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RF C
HARACTERISTICS VERSUS
C
APACITANCE
Equivalent Series Resistance: 0201/R05S
0.5
10000
Q Factor: 0201/R05S
B
B
1000
B
J
ESR (Ohms)
150-250MHz
900-1000MHz
F
H
1900-2000MHz
2100-2250MHz
B
B
B
F
H
F
H
J
B
F
H
J
F
H
J
B
H
F
J
Q
100
J
0.1
B
10
B
150-250MHz
900-1000MHz
1900-2000MHz
2100-2250MHz
B
10
1
0.5
1
0.05
0.5
B
1
Capacitance (pF)
10
Capacitance (pF)
Equivalent Series Resistance: 0402/R07S
1
10000
Q Factor: 0402/R07S
B
B
B
H
F
J
ESR (Ohms)
B B
B
B
F
H
J
B
1000
F
H
J
B
0.1
F F
H H
J J
B B
F
H
J
B
Q
100
B
J
0.01
0.5
150-250MHz
900-1000MHz
H
F
10
B
150-250MHz
900-1000MHz
1900-2000MHz
2100-2250MHz
1900-2000MHz
2100-2250MHz
1
Capacitance (pF)
10
20
1
0.5
1
Capacitance (pF)
10
20
Equivalent Series Resistance: 0603/R14S
1
Q Factor: 0603/R14S
10000
B
J
ESR (Ohms)
150-250MHz
900-1000MHz
H
1900-2000MHz
F
2100-2250MHz
B
1000
B
B
B
B
F
H
0.1
F
H
J
B
J
B
F
H
J
B
F
H
J
B
F
H
J
B
Q
100
10
B
150-250MHz
900-1000MHz
1900-2000MHz
2100-2250MHz
0.01
1
10
Capacitance (pF)
50
1
1
10
Capacitance (pF)
50
Measurements performed on a Boonton 34A Resonant Coaxial Line and represent typical capacitor performance.