首页 > 器件类别 > 无源元件 > 电容器

C1005X7R221KEBS

Ceramic Capacitor, Multilayer, Ceramic, 16V, 10% +Tol, 10% -Tol, X7R, -/+15ppm/Cel TC, 0.00022uF, 0402,

器件类别:无源元件    电容器   

厂商名称:达方(DARFON)

厂商官网:http://www.darfon.com.cn/

器件标准:

下载文档
器件参数
参数名称
属性值
是否Rohs认证
符合
Objectid
938974597
包装说明
, 0402
Reach Compliance Code
compliant
ECCN代码
EAR99
YTEOL
2
电容
0.00022 µF
电容器类型
CERAMIC CAPACITOR
介电材料
CERAMIC
高度
0.5 mm
JESD-609代码
e3
长度
1 mm
多层
Yes
负容差
10%
端子数量
2
最高工作温度
125 °C
最低工作温度
-55 °C
封装形式
SMT
包装方法
Bulk
正容差
10%
额定(直流)电压(URdc)
16 V
系列
C(SIZE)X5R/X7R
尺寸代码
0402
温度特性代码
X7R
温度系数
15% ppm/°C
端子面层
MATTE TIN OVER NICKEL
宽度
0.5 mm
文档预览
Electronics Corp.
Multi-Layer Ceramic Capacitor
C-G1-7-00
G1
General Specification
General introduction:
Ceramic capacitors (or condenser) are widely used in electronic circuitry for coupling, de-coupling and in filters.
These different functions require specific capacitor properties. Ceramic capacitors can be divided into two classes,
Class 1
In these capacitors dielectric materials are used which have a very high specific resistance, very good Q and linear
temperature dependence.
They are used in such applications as oscillators and filters where low losses, capacitance drift compensation and
high stability are required.
Class 2
These capacitors have higher losses and have non-linear characteristics. They are used for coupling and
de-coupling.
Construction:
The capacitance of a ceramic capacitor depends on the area of the electrodes (A), the thickness of the ceramic
dielectric (t) and the dielectric constant of the ceramic material (ε
r
) ; and on the number of dielectric layers (n) with
multi-layer ceramic capacitors :
C =ε
r
ε
0
A/t
n
The standard capacitance unit is the “Farad”. A capacitor has capacitance of one farad is when one coulomb charges
two parallel conductive plate to one volt potential.
The rated voltage is dependent on the dielectric strength, which is mainly governed by the thickness of the dielectric
layer and the ceramic structure. For this reason a reduction of the layer thickness is limited. Figure 1 shows the
construction of a multi-layer capacitor.
The electrodes are normally mixed palladium with silver since the electrodes are applied before the ceramic is fired
at a temperature where silver would oxidize.
Manufacturing of ceramic capacitors
The raw materials are finely milled and carefully mixed. Thereafter the powders are calcined at temperatures
between 1100℃ and 1300℃ to achieve the required chemical composition.
Then, the resultant mass is reground and dopes and/or sintering means are added.
The finely ground material is mixed with a solvent and binding matter. Casting or rolling obtains thin sheets. For
multi-layer capacitors electrode material is printed on the sheets and after stacking and pressing of the sheets
co-fired with the ceramic compact at temperatures between 1000℃ and 1400℃.
The totally enclosed electrodes of a multi-layer capacitor guarantee good life test behavior as well.
Darfon Product Specification
1
Electronics Corp.
Multi-Layer Ceramic Capacitor
Operating Voltage
The operating voltage for the capacitors must always be lower than its rated voltage. If an AC voltage is applied, the
peak voltage should be lower than the rated voltage of the capacitor. And if both AC and a pulse voltage may be
presented, then the sum of the peak should also be lower than the rated voltage of the capacitor chosen.
C-G1-7-00
G1
E Standard Number
E3
E6
E12
E24
1.0
1.0
1.2
1.0
1.5
1.5
1.8
2.2
2.2
2.7
2.2
3.3
3.3
3.9
4.7
4.7
5.6
4.7
6.8
6.8
8.2
1.0 1.1 1.2 1.3 1.5 1.6 1.8 2.0 2.2 2.4 2.7 3.0 3.3 3.6 3.9 4.3 4.7 5.1 5.6 6.2 6.8 7.5 8.2 9.1
* Non-standard capacitance is available on request.
Available Tolerance
Available Tolerance
T. C.
Capacitance *
Standard Tolerance
C = ± 0.25pF
Cap < 5pF
D = ± 0.5pF
D = ± 0.5pF
J = ± 5%
K = ±10%
K = ± 10%
E6
E3
M = ± 20%
Z = -20% to +80%
J = ± 5%
M = ± 20%
B = ± 0.1pF
B = ± 0.1pF
C = ± 0.25pF
F = ± 1%
G = ± 2%
on Request
NP0 (C0G)
5pF
Cap < 10pF
Cap
10pF
E12
X5R
X7R
Y5V
* Non-standard capacitance is available on request.
Darfon Product Specification
2
Electronics Corp.
Multi-Layer Ceramic Capacitor
Physical Outline
C-G1-7-00
G1
Termination
(2) Electrode, PdAg or Ni
(1) Dielectric
(3) Ag or Cu
(4) Ni
(5) Sn
Material Type
Code
Elements
1
2
3
4
5
Termination**
Dielectric
Electrode
Temperature Compensation
Class I
NME*
TiO
2
PdAg
Ag
BME*
CaZrO
3
Ni
Cu
Ni
Sn
High Permittivity
Class II
NME*
BaTiO
3
PdAg
Ag
BME*
BaTiO
3
Ni
Cu
* NME (Nobel Metal Electrode), BME (Base Metal Electrode)
** All Darfon’s MLCC products are produced under lead-free plating process and in compliance with the
lead-free requirement of Green Plan and ROHS.
Darfon Product Specification
3
Electronics Corp.
Multi-Layer Ceramic Capacitor
Dimensions
C-G1-7-00
G1
L
W
T
g
A
TYPICAL TOLERANCE
SIZE CODE
(EIA)
0603
(0201)
1005
(0402)
1608
(0603)
2012
(0805)
3216
(1206)
3225
(1210)
L
(Length)
0.6+/-0.03
(0.024+/-0.001)
1.0 +/- 0.05
(0.040 +/- 0.002)
1.6 +/- 0.10
(0.063 +/- 0.004)
2.0 +/- 0.15
(0.079 +/- 0.006)
3.2 +/- 0.15
(0.126 +/- 0.006)
3.2 +/- 0.20
(0.126 +/- 0.008)
W
(Width)
0.3+/-0.03
(0.012+/-0.001)
0.5 +/- 0.05
(0.020 +/- 0.002)
0.8 +/- 0.10
(0.031 +/- 0.004)
1.25 +/- 0.20
(0.049 +/- 0.008)
1.6 +/- 0.20
(0.063 +/- 0.008)
2.5 +/- 0.20
(0.098 +/- 0.008)
T
(Max Thickness)
0.33
(0.013)
0.55
(0.022)
0.90
(0.035)
1.45
(0.057)
1.80
(0.069)
2.70
(0.106)
g
(Min)
0.15
(0.006)
0.30
(0.012)
0.50
(0.020)
0.70
(0.028)
1.50
(0.060)
1.50
(0.060)
A
(Termination Min/Max)
0.10/0.20
(0.004/0.008)
0.10 / 0.30
(0.004 / 0.012)
0.25 / 0.65
(0.010 / 0.026)
0.25 / 0.75
(0.010 / 0.030)
0.25 / 0.75
(0.010 / 0.030)
0.25 / 0.75
(0.010 / 0.030)
UNIT
mm
(inch)
mm
(inch)
mm
(inch)
mm
(inch)
mm
(inch)
mm
(inch)
SPECIAL TOLERANCE
SIZE CODE
(EIA)
1005*
(0402)
1608*
(0603)
2012*
(0805)
3216*
(1206)
3225*
(1210)
L
(Length)
1.0 +/- 0.15
(0.040 +/- 0.006)
1.6 + 0.15/-0.1
(0.063 +0.006/- 0.004)
2.0 +/- 0.20
(0.079 +/- 0.008)
3.2 +/- 0.20
(0.126 +/- 0.008)
3.2 +/- 0.30
(0.126 +/- 0.012)
W
(Width)
0.5 +/- 0.15
(0.020 +/- 0.006)
0.8 + 0.15/-0.1
(0.031 +0.006/-0.004)
1.25 -0.20/+0.30
(0.049 -0.008/+0.012)
1.6 -0.20/+0.30
(0.063 -0.008/+0.012)
2.5 +/- 0.30
(0.098 +/- 0.012)
T
(Max Thickness)
0.65
(0.026)
0.95
(0.037)
1.55
(0.061)
1.90
(0.075)
2.80
(0.11)
g
(Min)
0.30
(0.012)
0.50
(0.020)
0.70
(0.028)
1.50
(0.060)
1.50
(0.060)
A
(Termination Min/Max)
0.10 / 0.30
(0.004 / 0.012)
0.25 / 0.65
(0.010 / 0.026)
0.25 / 0.75
(0.010 / 0.030)
0.25 / 0.75
(0.010 / 0.030)
0.25 / 0.75
(0.010 / 0.030)
mm
(inch)
mm
(inch)
mm
(inch)
mm
(inch)
mm
(inch)
UNIT
Darfon Product Specification
4
Electronics Corp.
Multi-Layer Ceramic Capacitor
DARFON Part Number
C 1005 NP0 101 J G T S
PRODUCT CODE
C = Capacitor SMD
C-G1-7-00
G1
SIZE in mm (EIA CODE, in inch)
0402(01005)
3216 (1206)
0603(0201)
3225(1210)
1005 (0402)
4520 (1808)
1608 (0603)
4532 (1812)
2012 (0805)
T. C.
NP0: 0 ± 30ppm/℃
X7R: ±15%
X5R: ±15%
Y5V: +22%/-82%
-55℃
-55℃
-55℃
-30℃
to +125℃
to +125℃
to +85℃
to +85℃
CAPACITANCE CODE
Expressed in pico-farads and identified by a three-digit number.
First two digits represent significant figures.
Last digit specifies the number of zeros.
(Use 9 for 1.0 through 9.9pF; Use 8 for 0.2 through 0.99pF)
(Example: 2.2pF=229 or 0.47pF=478)
TOLERANCE CODE
A: ± 0.05pF
J: ±5%
B: ± 0.1pF
K: ±10%
C: ± 0.25pF
M: ±20%
D: ± 0.5pF
Z: +80/-20%
F: ±1%
G: ±2%
VOLTAGE CODE
B: 4V
J: 200V
C: 6.3V
K: 250V
D: 10V
L: 500V
E: 16V
M: 630V
F: 25V
P: 1KV
N: 35V
Q: 2KV
G: 50V
R: 3KV
H: 100V
S: 4KV
PACKAGING CODE
T: Paper tape reel Ø180mm (7”)
N: Paper tape reel Ø250mm (10”)
A: Paper tape reel Ø330mm (13”)
B: Bulk, loosed in bag
W: Special Packing
P: Embossed tape reel Ø180mm (7”)
D: Embossed tape reel Ø250mm (10”)
E: Embossed tape reel Ø330mm (13”)
C: Bulk cassette
Product Type
S: Standard Ceramic Capacitor
Q: High Q/Low ESR
Darfon Product Specification
5
查看更多>
输入0-4V,输出0V;输入4-10V,输出0-5V
求高手指点模拟电路,希望输入直流电压为0-10V,输出为0-10V,但是要可调输入为某个电压开始才输出才开始有。比如,输入0-4V时,输出为0;输入大于4V时,输出从0开始随输入按比例增加。输入0-4V,输出0V;输入4-10V,输出0-5V最简单的方法,用一个单电源供电的运放加法电路,加一个-4伏。希望效果好的,可以用比较器来控制运放的输出。 回复楼主zhfub的帖子...
zhfub 模拟电子
SYMBIAN知识扫盲篇
本帖最后由jameswangsynnex于2015-3-319:58编辑智能手机行业从去年开始升温,到现在已经进入一个飞速发展的阶段。智能手机结合了强大的计算能力以及开放的软件系统,从娱乐到商业都有着优秀的表现,未来智能手机可以提供上万种应用供用户使用更是提供了无限前景。随着智能手机的逐渐流行,它将不再局限于现在的高端手机,不仅将会改变人们的娱乐和休闲生活,而且将冲击我们现有的交流方式。购买智能手机时,除了了解智能手机的硬件配置,如屏幕,摄像头等,大家还会面对智能手机的各种操作...
mdreamj 移动便携
步进电机和伺服电机的区别
本帖最后由paulhyde于2014-9-1503:33编辑步进电机呢,是通过控制脉冲的个数控制转动角度的,一个脉冲对应一个步距角。设备需要:供电电源(所需电压由驱动器参数给出),一个脉冲发生器(现在多半是用板块),一个步进电机,一个驱动器(驱动器设定步距角角度,如设定步距角为0.45°,这时,给一个脉冲,电机走0.45°)。工作流程:步进电机工作一般需要两个脉冲:信号脉冲和方向脉冲。信号脉冲:电脑控制脉冲发生卡(或者直接买脉冲发生器),选择合适的脉冲频率和个数,传输给驱动...
windowsxd 电子竞赛
会硬件开发和单片机的来,有项目要开发
寻GPS导航原理图和PCB图http://www.365huo.com/bbs/read.php?tid=38105基于LINUX上的小应用程序开发http://www.365huo.com/bbs/read.php?tid=38106熟悉开发研华pcm-4862工控板的人(急)http://www.365huo.com/bbs/read.php?tid=38107寻求OPENGL/3D高手http://www.365huo.com/bbs/read.php?tid=38108...
jackgongbuaa 嵌入式系统
新人求教 如何实现PC通过串口控制接收端的IO……
想实现一个PC通过串口发送数据到发送端,然后通过无线控制接收端的IO的程序……求指导新人求教如何实现PC通过串口控制接收端的IO……...
pixiake RF/无线
关于for循环中的continue
最近遇到for中的continue问题,对for循环中continue是否会跳过第二个分号后的语句不太了解,经过验证发现是不会跳过该语句的。在此对for循环的内部执行流程做个总结:for(unsignedinti=0;i100;i++){if(i==50)continue;//dosomething}对于以上语句的执行顺序是:unsignedinti=0;loop:if(i100){if(i==50)gotojump;//do...
shipeng 单片机