Free MLCSoft® for SPICE & S-Parameter Modeling Data
A
PPLICATIONS
• Cellular Products
• Cable Components
• RF Transceivers
• Wireless LAN
• RF Integrated Circuits
• Custom Applications
Dielectric
RF Performance
E/B
W
T
L
S Series BEST
C Series
BETTER
L Series GOOD
NPO
?
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
R07/0402
Typical Series Resonant Frequency
10.0
Frequency (GHz)
>1,000 G @ 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 0402:
Size 0603:
Size 0805:
Size 1210:
0.2 - 15 pF
0.2 - 47 pF
0.2 - 150 pF
0.5 - 1000 pF
R14/0603
R15/0805
1.0
0.8
1
10
Capacitance (pF)
100
200
H
OW TO
O
RDER
201
VOLTAGE
250 = 25 V
500 = 50 V
101 = 100 V
201 = 200 V
301 = 300 V
501 = 500 V
R15
CASE SIZE
See Chart
C
DIELECTRIC
C = High-Q NPO
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 0402 & 0603:
T
Paper 7”
Y
Paper
5”
SIZE 0805 & 1210:
E Embossed 7”
Z Embossed 5”
Tape specifications
conform to EIA RS481
MARKING
4 = Unmarked
6 = EIA “J” Code*
*For sizes 0805
Part number written: 201R15C101JV4E
10
www.johansontechnology.com
R15 / 0805 (2012)
R14 / 0603 (1608)
R07 / 0402 (1005)
A
VAILABLE
C
APACITANCE
S
ELECTION
S41 / 1210 (3224)
Inches
(mm)
Inches
(mm)
Inches
(mm)
Inches
(mm)
25 VDC
200 VDC
500 VDC
Length
.125 ±.010
(3.18 ±0.25)
Length
.080 ±.008
(2.03 ±0.20)
Length
.040 ±.004
(1.02 ±0.1)
Length
.062 ±.006
(1.57 ±0.15)
200 VDC
M
ECHANICAL
& E
NVIRONMENTAL
C
HARACTERISTICS
Width
.020 ±.004
(0.51 ±0.1)
Width
.050 ±.008
(1.27 ±0.20)
Width
.095 ±.010
(2.41 ±0.25)
This selection chart represents basic C/V capability in this series. Please contact the factory for capacitance, voltage, case size combinations not shown.
JTI C-Series Ceramic Capacitors conform to the environmental characteristics of the S-Series listed on page 7 of the JTI catalog.
www.johansontechnology.com
Width
Thickness
.032 ±.006 .030 +.005 -.003
(0.81 ±0.15)
(0.76 +.13-.08)
Thickness
.040 ±.006
(1.02 ±0.15)
Thickness
.060 Max
(1.52 Max)
End Band
.020 ±.010
(0.50 ±.25)
Thickness
.020 ±.004
(0.51 ±0.1)
100 VDC
End Band
.010 ±.006
(0.25 ±.15)
End Band
.014 ±.006
(0.35 ±.15)
End Band
.020 ±.010
(0.50 ±.25)
100
VDC
300 V
300 V
200 V
200 V
200 V
100 V
100 V
100 V
100 V
50 V
0.5
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
p
3.0 F
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
12
p
15 F
p
18 F
p
20 F
p
22 F
p
27 F
p
33 F
p
39 F
p
47 F
p
56 F
p
68 F
p
82 F
p
10 F
0p
12 F
0
15 pF
0
18 pF
0
22 pF
0
27 pF
0
33 pF
0
39 pF
0
47 pF
0
56 pF
0
10 pF
00
pF
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
p
3.0 F
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
p
7.5 F
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
p
22 F
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
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
0.5
p
0.6 F
p
0.7 F
p
0.8 F
p
0.9 F
p
1.0 F
p
1.1 F
p
1.2 F
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
p
3.6 F
p
3.9 F
pF
4.3
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
p
9.1 F
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
p
27 F
p
30 F
pF
33
p
36 F
pF
39
p
43 F
p
47 F
p
56 F
p
68 F
p
82 F
p
10 F
0p
12 F
0p
15 F
0p
F
11
RF C
HARACTERISTICS VERSUS
F
REQUENCY
Equivalent Series Resistance: 0402/R07C
1
10000
B
J
B
H
F
B
J
B
H
F
J
B
Q
1000
H
F
B
J
H
F
100
B
J
H
F
B
B
J
J
H
F
H
F
B
J
H
F
Q Factor: 0402/R07C
ESR (Ohms)
0.1
H
F
B
B
J
H
B
F
J
B
H
B
F
J
B
B
H
F
J
B
B
J
0.01
0
500
'1.0 pF
'3.3 pF
H
F
'5.6 pF
'6.8 pF
B
'10 pF
'15 pF
10
B
J
1
'1.0 pF
'3.3 pF
H
F
'5.6 pF
'6.8 pF
'10 pF
'15 pF
1000
1500
Frequency (MHz)
2000
2500
0
500
1000
1500
Frequency (MHz)
2000
2500
Equivalent Series Resistance: 0603/R14C
1
10000
B
B
1000
J
H
F
100
J
H
F
Q
Q Factor: 0603/R14C
B
B
J
H
F
B
J
H
J
H
J
H
B
ESR (Ohms)
0.1
B
F
J
B
H
F
J
B
H
B
F
B
B
J
H
F
J
B
B
H
F
B
B
J
H
F
B
J
H
B
10
F
B
0.01
0
500
1000
1500
Frequency (MHz)
2000
2500
'1.0 pF
J
'4.7 pF
H
'10 pF
F
'22 pF
B
'47 pF
B
1
0
'1.0 pF
J
'4.7 pF
H
'10 pF
F
'22 pF
'47 pF
500
1000
1500
Frequency (MHz)
2000
2500
Equivalent Series Resistance: 0805/R15C
1
10000
B
J
1000
H
F
H
B
Q
100
F
B
10
B
0.01
0
500
1000
1500
Frequency (MHz)
2000
2500
'1.0 pF
Q Factor: 0805/R15C
B
J
B
J
B
J
H
H
F
H
H
B
J
J
ESR (Ohms)
0.1
F
H
B
B
J
J
F
B
B
H
H
J
F
B
B
H
J
B
B
F
B
H
F
J
B
F
H
J
J
'2.0 pF
H
'12 pF
F
'47 pF
B
130 pF
B
1
0
'1.0 pF
J
'2.0 pF
H
'12 pF
F
'47 pF
B
2000
130 pF
500
1000
1500
Frequency (MHz)
2500
Equivalent Series Resistance: 1210/S41C
1
B
B
B
10000
Q Factor: 1210/S41C
F
0.5 pF
'2.2 pF
J
P
'3.3 pF
'10 pF
B
1
56 pF
100 pF
B
B
1
J
H
F
B
B
1000
F
H
J
P
B
1
F
H
J
P
B
1
H
F
H
J
P
F
H
J
H
J
ESR (Ohms)
F
H
J
0.1
J
H
F
1
B
J
H
F
1
B
B
J
J
H
F
1
B
J
H
1
F
B
H
1
J
F
B
F
Q
100
P
0.5 pF
'2.2 pF
H
F
'3.3 pF
'10 pF
B
56 pF
1
100 pF
10
P
P
B
1
0
500
1000
1500
Frequency (MHz)
2000
2500
0.01
0
500
1000
1500
Frequency (MHz)
2000
2500
Measurements performed on a Boonton 34A Resonant Coaxial Line and represent typical capacitor performance.
12
www.johansontechnology.com
RF C
HARACTERISTICS VERSUS
C
APACITANCE
Equivalent Series Resistance: 0402/R07C
1
Q Factor: 0402/R07C
10000
B
B
ESR (Ohms)
0.1
H
B
J
H
J
B
H
J
B
H
J
B
H
J
B
B
H
J
B
1000
Q
100
B
B
B
B
0.01
1
150-250 MHz
J
900-1000 MHz
H
1900-2000 MHz
B
150-250 MHz
900-1000 MHz
1900-2000 MHz
10
10
Capacitance (pF)
20
1
Capacitance (pF)
10
20
Equivalent Series Resistance: 0603/R14C
1
Q Factor: 0603/R14C
10000
B
B
150-250 MHz
B
B
900-1000 MHz
1900-2000 MHz
1000
B
B
B
B
B
B
B
ESR (Ohms)
H
J
B
0.1
H
J
B
H
J
B
H
J
B
H
J
B
H H
J J
B B
H
J
B
H
J
B
H
J
Q
B
100
10
B
0.01
1
10
Capacitance (pF)
50
150-250 MHz
J
900-1000 MHz
H
1900-2000 MHz
1
1
10
Capacitance (pF)
50
Equivalent Series Resistance: 0805/R15C
1
Q Factor: 0805/R15C
10000
B
B
B
B
H
H
1000
B
B
ESR (Ohms)
H
J
0.1
B
H
J
B
H
J
B
H
J
B
H
J
H
J
H
J J
J
B
B BB
Q
100
B
B
B B
B
10
B
0.01
1
10
Capacitance (pF)
100
200
150-250 MHz
J
900-1000 MHz
H
1900-2000 MHz
B
150-250 MHz
900-1000 MHz
1900-2000 MHz
1
1
10
Capacitance (pF)
100
200
Equivalent Series Resistance: 1210/S41C
1
10000
B
Q Factor: 1210/S41C
B
B
B
B
B
1000
B
ESR (Ohms)
J
H
0.1
H
J
B
H
J
B
H H
J J
B
B
B
H
J
H
J
B
B
B
B
B
0.01
1
10
Capacitance (pF)
100
1000
150-250 MHz
H
J
J
J
Q
100
B
B
B
B
B
B
10
J
900-1000 MHz
H
1900-2000 MHz
B
150-250 MHz
900-1000 MHz
1900-2000 MHz
1
1
10
Capacitance (pF)
100
100
Measurements performed on a Boonton 34A Resonant Coaxial Line and represent typical capacitor performance.
I just joined a company that makes smart home products and only uses Hongjing 51 microcontrollers. I haven't worked on it for a long time, and today I encountered a problem that I had never encountere...
[color=#333333][font="][If you don't understand, ask] [/font][/color][color=#333333][font="]This is part of the datasheet of the power conversion chip MP2315 [/font][/color] [color=#333333][font="]I h...
La la la ~~ Another new board is here~~ Take some photos and pose for a peek~~~You know~ there is a new event coming up~Guess who this board is? What kind of board is this?...
Not long ago, I was overwhelmed by the MEMS sensor creative event jointly organized by EEWorld and ST, and found out there was such a good thing, so I decided to apply for it. Then I was lucky enough ...
While
the solid-state battery
industry is still engaged in a long technological marathon for
the "ultimate solution" for
electric vehicles
, some companies have begun looking for mor...[Details]
EtherCAT (Ethernet for Control Automation Technology) is a real-time industrial fieldbus communication protocol based on an Ethernet-based development framework. EtherCAT is one of the fastest indu...[Details]
A vacuum eutectic furnace is a critical piece of equipment used in the manufacturing and processing of various materials, particularly in the fields of microelectronics and nanotechnology. One of t...[Details]
Amidst the wave of intelligent automotive transformation, advanced driver assistance is gradually emerging from cutting-edge technology into the mainstream, becoming a new frontier of industry comp...[Details]
Robotics
has become
LiDAR
's "second growth curve."
While LiDAR was still battling with its "pure vision" rivals in the automotive field, another field ignited the demand f...[Details]
The all-new MG4 was recently officially announced on the Ministry of Industry and Information Technology's (MIIT) new vehicle announcement. The all-new MG4's semi-solid-state battery version addres...[Details]
According to foreign media reports, Nissan Motor has recently reached a cooperation with US battery technology company LiCAP Technologies to jointly promote the research and development of next-gen...[Details]
Charging is a familiar process for new energy vehicles, and as a source of battery energy, charging piles are crucial. New energy vehicle charging can be divided into fast charging and slow chargin...[Details]
Electric vehicles are powered by electricity, and charging is a device that supplements the vehicle's energy source. It is common to need to recharge the vehicle when driving. But can you charge th...[Details]
During daily operation of an R-type power transformer, the voltage used varies as the equipment being used adjusts. This raises the question: can the transformer change voltage at this point? The a...[Details]
On August 21st, BYD announced the launch of its next-generation "Little White Pile" product, the "Lingchong"
charging
pile
, which is now available for general sale. This charging pile feat...[Details]
The composition of the water heater
The water heater itself is divided into the following parts:
1. Water tank.
This is where the water heater is filled with water and where the wate...[Details]
0 Introduction
Portable terminals integrate a computer and display screen into a single device. Due to limited space in portable devices, previous designs often used a single-chip microcompute...[Details]
As the core of electric vehicles, batteries are concerned with vehicle use and maintenance. The operation of vehicles is guaranteed by the electricity generated by batteries. For batteries, battery...[Details]
In recent years, with the development of MOSFETs, they have gradually replaced transistors in the low-power, fast-switching industry. Major manufacturers in this field have also been reducing their...[Details]