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A
VAILABLE
C
APACITANCE
S
ELECTION
R07 / 0402 (1005)
Inches
(mm)
Length
.040 ±.004
(1.02 ±0.1)
Width
.020 ±.004
(0.51 ±0.1)
Thickness
.020 ±.004
(0.51 ±0.1)
End Band
.010 ±.006
(0.25 ±.15)
50 VDC
R14 / 0603 (1608)
Inches
(mm)
Length
.062 ±.006
(1.57 ±0.15)
Width
Thickness
.032 ±.006 .030 +.005 -.003
(0.81 ±0.15)
(0.76 +.13-.08)
Selection charts represents basic C/V capability in this series. Please contact the factory for capacitance, voltage, case size combinations not shown.
6
0.2
p
0.3 F
p
0.4 F
p
0.5 F
p
0.6 F
p
0.7 F
p
0.8 F
p
0.9 F
p
1.0 F
p
1.1 F
pF
1.2
p
1.3 F
p
1.5 F
p
1.8 F
pF
2.0
p
2.2 F
pF
2.4
p
2.7 F
pF
3.0
p
3.3 F
pF
3.6
p
3.9 F
p
4.3 F
p
4.7 F
pF
5.1
p
5.6 F
pF
6.2
p
6.8 F
pF
7.5
p
8.2 F
pF
9.1
p
10 F
pF
11
p
12 F
p
13 F
pF
15
p
16 F
pF
18
p
20 F
pF
22
p
24 F
pF
27
p
30 F
p
33 F
p
36 F
pF
39
p
43 F
pF
47
p
56 F
p
68 F
p
82 F
p
10 F
0p
F
250 VDC
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25 V
25 V
0.2
p
0.3 F
p
0.4 F
p
0.5 F
p
0.6 F
p
0.7 F
p
0.8 F
p
0.9 F
p
1.0 F
p
1.1 F
pF
1.2
p
1.3 F
p
1.5 F
p
1.8 F
pF
2.0
p
2.2 F
p
2.4 F
p
2.7 F
pF
3.0
p
3.3 F
pF
3.6
p
3.9 F
p
4.3 F
p
4.7 F
pF
5.1
p
5.6 F
p
6.2 F
p
6.8 F
pF
7.5
p
8.2 F
pF
9.1
p
10 F
pF
11
p
12 F
p
13 F
pF
15
p
16 F
p
18 F
p
20 F
pF
22
p
24 F
pF
27
p
30 F
p
33 F
p
36 F
pF
39
p
43 F
p
47 F
p
56 F
p
68 F
p
82 F
p
10 F
0p
F
End Band
.014 ±.006
(0.35 ±.15)
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 G @ 25°C,WVDC;
2.5 X WVDC Min., 25°C, 50 mA max
1MHz ±50kHz, 1.0±0.2 VRMS, 25°C
Size 0402:
Size 0603:
0.2 - 33 pF
0.2 - 100 pF
Frequency (GHz)
25.0
R05/0201
10.0
R07/0402
R14/0603
Typical Series Resonant Frequency
125°C IR is 10% of 25°C rating.
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.
*0402 2.0lbs, 0603 2.0lbs (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:
H
OW TO
O
RDER
251
VOLTAGE
500 = 50 V
251 = 250 V
R14
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
Y
TAPE MODIFIER
Code Type Reel
T
Y
Paper
Paper
7”
5”
Part number written: 251R14S101JV4Y
MARKING
4 = Unmarked
(Not Available)
Tape specifications
conform to EIA RS481
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7
RF C
HARACTERISTICS VERSUS
F
REQUENCY
Equivalent Series Resistance: 0402/R07S
1
Q Factor: 0402/R07S
10000
B
J
H
F
B
P
B
B
B
J
1000
B
J
ESR (Ohms)
B
J
J
H
F
M
P
H
F
M
P
H
F
B
P
Q
100
B
J
B
J
0.1
J
H
F
M
P
H
F
B
P
H
F
B
P
H
F
M
P
B
J
0.5 pF
1.2 pF
H
M
4.7 pF
8.2 pF
F
P
10 pF
15 pF
10
B
J
0.5 pF
1.2 pF
H
F
4.7 pF
8.2 pF
B
P
10 pF
15 pF
0.01
0
500
1000
1500
Frequency (MHz)
2000
2500
1
0
500
1000
1500
2000
2500
Frequency (MHz)
Equivalent Series Resistance: 0603/R14S
1
B
3.3 pF
Q Factor: 0603/R14S
10000
B
47 pF
J
10 pF
H
15 pF
F
33 pF
B
B
H
J
F
B
B
J
3.3 pF
10 pF
H
F
15 pF
33 pF
B
47 pF
1000
ESR (Ohms)
0.1
B
J
H
F
B
J
B
H
B
F
B
J
H
F
B
J
B
H
B
F
J
H
Q
100
B
J
H
B
J
H
F
B
10
F
0.01
0
500
1000
1500
Frequency (MHz)
2000
2500
1
0
500
1000
1500
2000
2500
Frequency (MHz)
Measurements performed on a Boonton 34A Resonant Coaxial Line and represent typical capacitor performance.
8
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RF C
HARACTERISTICS VERSUS
C
APACITANCE
Equivalent Series Resistance: 0402/R07S
1
Q Factor: 0402/R07S
10000
B
B
B
B
B
B
H
F
J
1000
F
H
J
B
ESR (Ohms)
B
F
H
J
F
H
J
F
H
J
B
F
H
0.1
Q
J
100
B
B
B
B
J
150-250MHz
900-1000MHz
10
B
150-250MHz
900-1000MHz
1900-2000MHz
2100-2250MHz
H
F
1900-2000MHz
2100-2250MHz
0.01
0.5
1
Capacitance (pF)
10
20
1
0.5
1
Capacitance (pF)
10
20
Equivalent Series Resistance: 0603/R14S
1
B
J
150-250MHz
900-1000MHz
Q Factor: 0603/R14S
10000
H
1900-2000MHz
F
2100-2250MHz
B
B
B
B
B
1000
ESR (Ohms)
F
H
0.1
J
B
F
H
J
F
H
J
F
H
J
F
H
Q
J
100
B
B
B
B
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.