充电器专用贴片电容C3225X7R1E475KT

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 宸远科技(CCT)是专业高压贴片电容产销公司,公司成立于1999年12月,工厂位于高雄前镇加工出口区,公司总部设在**,大陆深圳,上海设分公司。公司拥有完整、科学的质量管理体系。公司的诚信、实力和产品质量获得业界的认可。欢迎各界朋友莅临有限公司参观、指导和业务洽谈。目前本公司以自有(CCT)品牌行銷全**.产品主要应用于移动终端、家电、网络通信、医疗电子、安防系统、汽车电子、LED照明

等领域1343046/4310张清芬 扣扣:98380/2528微信:134304/64310

公司现货:大容量贴片电容

         英制:0603 0805 1206 12101808 1812 2220 2225 1UF-220UF

          公制:1608 2012 3216 32254520 4532 5750 5763 1UF-220UF

高压贴片电容

         英制:0603-0805-1206-1210-1812-2220  6.3V-10KV

         公制:1608-2012-3216-3225-4532-5750  6.3V-10KV

安规贴片电容

         英制:1206-1210-1808-1812-2220X1/Y2/X2/Y3  NPO X7R

         公制:3216-3225-4520-4532-5750X1/Y2/X2/Y3  NPO X7R

CCT)宸远科技20年专注高压贴片电容,品质可靠、价格实惠、大量库存,欢迎洽谈,可定做特殊规格!期待合作!!

公司还经销:日本(TDK)、日本(太诱)、日本(村田)、**(HEC)、**(华科)等产品,大量库存,现货供应,品质保证。

高压贴片电容主要用于电源滤波,电源降压,倍压,吸收浪涌保护IC, 基本工作原理就是充电放电,当然还有整流、振荡以及其它的作用等作用。应用于电源电路,实现旁路、去藕、滤波和储能,常用于模块电源、电动工具、智能家居、智能小家电、LED照明系列(灯丝灯、钨丝灯、G4/G9灯,COB射灯、球泡灯)、阻容降压电源, 汽车电子类、汽车氙气灯(HID电子安定器)、负离子发生器、节能灯和高频无极灯,电子镇流器等产品中;贴片压敏电阻MLCV产品在专用于计算机、通信产品、网络产品、车载设备、汽车电子、安防产品、智能产品、电源产品、医疗仪器、照明电源、工控设备、智能遥控玩具等领域. 1343046/4310 张清芬15112687619 扣扣:98380/2528

主营产品:高压贴片电容,贴片安规电容,贴片压敏电阻,贴片高容值电容

高压贴片电容的特性:

1.利用贴片陶瓷电容器介质层的薄层化和多层叠层技术,使电容值大为扩大

2.单片结构保证有**的机械性强度及可靠性

3.极高的**度,在进行自动装配时有高度的准确性

4.因仅有陶瓷和金属构成,故即便在高温,低温环境下亦无渐衰的现象出现,具有较强可靠性与稳定性

5.低集散电容的特性可完成接近理论值的电路设计

6.残留诱导系数小,确保上佳的频率特性

7.因电解电容器领域也获得了电容,故使用寿命延长,更造于具有高可靠性的电源

8.由于ESR低,频率特性良好,故**适合于高频,高密度类型的电源

线充电模块无线充电方案,蓝光呼吸灯QI无线充电方案模块,,炫酷蓝光灯QI无线充电方案模块,无线充电智能手环/无线手机充电器专用陶瓷贴片电容器规格如下:

因掌上用品受体积限制,故采用贴片陶瓷电容器

C3216COG1H104J1206 NPO 50V 0.1UF 5%
C3216COG1H473J 1206 NPO 50V 0.047UF

C3216C0G1H683J 1206 NP0 50V 68NF

C4532COG2A104J 1812 NPO 100V 0.1UF

C4532C0G2A683J 1812 NPO 100V 0.068UF

C4532COG2A473J 1812 NPO 100V 0.047UF

C3225C0G1H104J 1210 NP0 50V 0.1UF 100nf
c3225c0g2a683j 1210 npo 100v 68nf

COGC3225COG2A104J 1210 NPO 100V 100NF

C3225COG2A473J1210 NPO 100V 47NF

CGA5F2C0G2A562J1206 COG 100V 5.6NF

C3225C0G2A333J1210 NPO 100V 0.033UF

C4532C0G2J223J1210 NPO 630V 22NF

以上都为X7R或X5R材质,容量精度为10%

更多规格欢迎查询和索样~

随着汽车发展的电气化和智能化趋势,燃油经济性及降低排放、主动安全及自动驾驶、车联网和LED照明等成为了当前汽车行业关注焦点,这对半导体业带来更多发展机会的同时也提出了更多的挑战。混合电动汽车(HEV)/电动汽车(EV)推动每辆车的汽车动力系统的半导体成分增高约5倍。**驾驶辅助系统(ADAS)、便利及信息娱乐系统,以及占全球汽车销售比例50%以上的新兴市场,推动全球汽车半导体市场同比增长9%以上。

       创新半导体电容助汽车走向电气化智能化的市场专用电容

MURATA贴片安规电容常见封装规格参照:
MURATA
村田安规贴片电容Y3系列 250VAC 
GA342QR7GD471KW01L 1808 Y3 AC250V DC3KV 470PF 
GA342QR7GD681KW01L 1808 Y3 AC250V DC3KV 680PF
GA342QR7GD102KW01L 1808 Y3 AC250V DC3KV 1NF 
GA342QR7GD152KW01L 1808 Y3 AC250V DC3KV 1.5NF
GA343QR7GD222KW01L 1812 Y3 AC250V DC3KV 2.2NF
GA343DR7GD472KW01L 1812 Y3 AC250V DC3KV 4.7NF
MURATA
村田安规贴片电容Y2系列 250VAC
GA342A1XGF330JW31L 1808 Y2 AC250V DC5KV 33P J
GA342QR7GF471KW01L 1808 Y2 AC250V DC5KV471K
GA352QR7GF471KW01L 2211 Y2 AC250V DC5KV471K
GA342QR7GF681KW01L 1808 Y2 AC250V DC5KV681K
GA342DR7GF102KW02L 1808 Y2 AC250V DC5KV102K
GA352QR7GF102KW01L 2211 Y2 AC250V DC5KV102K
GA352QR7GF152KW01L 2211 Y2 AC250V DC5KV152K
GA355QR7GF222KW01L 2220 Y2 AC250V DC5KV222K 
GA355DR7GF472KW01L 2220 Y2 AC250V DC5KV472K
MURATA
村田安规贴片电容X2系列
GA355QR7GB103KW01L 2220 X2 AC250V DC2.5KV 10NF
GA355DR7GB223KW01L 2220 X2 AC250V DC2.5KV 103K
GA355ER7GB473KW01L 2220 X2 AC250V DC2.5KV 473K
美国JOHANSON安规贴片电容,可代替插件瓷片安规
1808 Y2 102(1NF) AC250V
1808 Y2 152(1.5NF) AC250V
1812 Y2 152(1.5NF) AC250V
2220 Y2 472(4.7NF) AC250V
2220 X2 103K(10NF) AC250V
2220 X2 473K(0.047UF) AC250V
2220 X2 104K(0.1UF) AC250V

工作温度范围: -55~125℃

额定电压: 100VDC~3000VDC

温度特性: NPO:≤±30ppm/℃,-55~125℃(EIA Class I) X7R:≤±15%,-55~125℃(EIAClass II)

容量范围: NPO:2pF to100nF;X7R:150pF to 2.2uF

损失角正切(tanδ): NPO:Q≥1000;X7R:D.F.≤2.5%

绝缘电阻: 10GΩ 或 500/C Ω 取两者**小值

老化速率: NPO:1%;X7R:2.5% 一个decade时间

介质电耐电压: 100V ≤ V <500V :200%

额定电压 500V ≤ V <1000V :150%额定电压 1000v≤ V :120%额定电压

  

介质耐电压:100V-1000V范围内,可承受1.5倍额定电压。1000V以上:可承受1.2倍额定电压。  

电压越高,所能做出的容量越低,生产周期4-6周

    

高压贴片电容特性:

1.等效串联电阻(ESR)小,阻抗(Z)低,与同等钽电容或者铝电解电容相比,ESR小几十倍,能量利用率高,发热小,价格低。 2.品种,规格齐全,体积小。容量从10pF到47uF,耐压从10V-6000V,体积**小可以达到1X0.5mm.

 3.无极性,可以使用在存在非常高的纹波电路或交流电路,而且装配更为方便。

4.性能稳定,即使被击穿也不会燃烧,安全性高。

应用于电子精密仪器。各种小型电子设备作谐振、耦合、滤波、旁路。

  

  低容量电容NP0材料(10-6800pF):适用频率1-100MHz

  1.温度系数:0±30ppm/℃,-55℃~125℃;

  2.电容量漂移:不超过±0.3%或±0.05pF(取较大者)。

  3.老化特性:无

  

  高容量电容X7R材料(6800pF以上):适用频率不超过10KHz

  1.温度特性:不超过±15%,-55℃~125℃。

  2.老化特性:每10年变化1%ΔC,表现为10年变化约5%。

  工作温度为环境温度与元件本体温升之和。

  降额设计

  设计者在选用电容器工作电压时,应考虑施加在电容器两端的直流电压与交流电压峰值之和不能超过额定电压。为保证产品及线路的可靠性,在实际设计时建议降额使用

  

  使用注意事项

  工作温度

电容器设计类别温度范围有−55℃~125℃、−55℃~85℃两种,设计者必须确保工作温度符合此范围。为延长电容器的使用寿命,**工作温度限制在低于上限类别温度10℃~15℃。设计者考虑电容器的

MLCC 制作工艺流程:

1、原材料——陶瓷粉配料关键的部分(原材料决定MLCC的性能);

2、球磨——通过球磨机(大约经过2-3天时间球磨将瓷份配料颗粒直径达到微米级);

3、配料——各种配料按照一定比例混合;

4、和浆——加添加剂将混合材料和成糊状;

5、流沿——将糊状浆体均匀涂在薄膜上(薄膜为特种材料,保证表面平整);

6、印刷电极——将电极材料以一定规则印刷到流沿后的糊状浆体上(电极层的错位在这个工艺上保证,不同MLCC的尺寸由该工艺保证);

7、叠层——将印刷好电极的流沿浆体块依照容值的不同叠加起来,形成电容坯体版(具体尺寸的电容值是由不同的层数确定的);

8、层压——使多层的坯体版能够结合紧密;

9、切割——将坯体版切割成单体的坯体;

10、排胶——将粘合原材料的粘合剂用390摄氏度的高温将其排除;

11、焙烧——用1300摄氏度的高温将陶瓷粉烧结成陶瓷材料形成陶瓷颗粒(该过程持续几天时间,如果在焙烧的过程中温度控制不好就容易产生电容的脆裂);

12、倒角——将长方体的棱角磨掉,并且将电极露出来,形成倒角陶瓷颗粒;

13、封端——将露出电极的倒角陶瓷颗粒竖立起来用铜或者银材料将断头封起来形成铜(或银)电极,并且链接粘合好电极版形成封端陶瓷颗粒(该工艺决定电容的);

14、烧端——将封端陶瓷颗粒放到高温炉里面将铜端(或银端)电极烧结使其与电极版接触缜密;形成陶瓷电容初体;

15、镀镍——将陶瓷电容初体电极端(铜端或银端)电镀上一层薄薄的镍层,镍层一定要完全覆盖电极端铜或银,形成陶瓷电容次体(该镍层主要是屏蔽电极铜或银与**外层的锡发生相互渗透,导致电容老衰);

16、镀锡——在镀好镍后的陶瓷电容次体上镀上一层锡想成陶瓷电容成体(锡是易焊接材料,镀锡工艺决定电容的可焊性);

17、测试——该流程必测的四个指标:耐电压、电容量、DF值损耗、漏电流Ir和绝缘电阻Ri(该工艺区分电容的耐电压值,电容的**度等)

汽车点烟器|烧录器、电子点烟器USB接口、车载点烟器,汽车车载点烟器专用贴片高容电容

1812 47UF 25V X5R M

1812 47UF 50V X5R M

1812 22UF 50V X7R K

以上为X7R/X5R材质,容量精度为10%,耐温-55-+85度原厂直销,品质保证。更多规格欢迎查询和免费索样~

T5/T8灯管、led灯管\t8led日光灯专用贴片陶瓷电容

2.2NF 2KV 1812 X7R

1812 400V 105K X7R

1812 50V 22UF X7R

1206 25V 4.7UF X7R

以上为X7R/X5R材质,容量精度为10%,耐温-55-+85度原厂直销,品质保证。更多规格欢迎查询和免费索样~

LED调光电源替CBB插件电容缩体积专用贴片陶瓷电容

1206 400V 10NF X7R

1206 400V 22NF X7R

1206 400V 33NF X7R

1206 400V 47NF X7R

1206 400V 100NF X7R

3216 400V 103K X7R

3216 400V 223K X7R

3216 400V 333K X7R

3216 400V 473K X7R

3216 400V 104K X7R

空气净化器替代电解电容专用贴片电容

常用规格如下:

1206 25V 476K X5R

1206 25V 226K X7R

3216 25V 476K X5R

3216 25V 226K X7R

1206 47UF 25V X5R

1206 22UF 25V X7R

家用臭氧消毒机替代插件CBB专用贴片陶瓷电容

常规格如下:

1808 250VAC 102K

1812 250V 155 X7R

2220 400V 225 X7R

1812 400V 105K X7R

1812 400V 474K X7R

1206 25V 226K X7R

1206 250V 103K X7R 

1206 250V 473K X7R

1206 250V 333K X7R

1210 35V 22UF X7R

1210 226K 35V X7R

1812 50V 47UF X7R

1812 476M 50V X7R

1812 400V 474K X7R

0805 10V 475K X7R

按摩器电源、足底按摩仪、足底按摩器、按摩椅驱动、按摩器驱动、多功能按摩器替代电解电容缩小产品体积专用贴片高容电容(贴片积层电容、陶瓷高容值电容)

2220 250V 475K X7R

2220 450V 225K X7R

2220 250V 685K X7R

以上为X7R/X5R材质,容量精度为10%,耐温-55-+85度原厂直销,品质保证。更多规格欢迎查询和免费索样~

**摄像头、摄像头驱动、摄像头监控系统、摄像头设备、**摄像头电源

监控摄像头、摄像头监控器专用高压贴片电容(高容值贴片电容)

1210 16V X5R M  100UF/107M

1206 25V 1.0UF X7R

以上为X7R/X5R材质,容量精度为10%,耐温-55-+85度原厂直销,品质保证。更多规格欢迎查询和免费索样~

按摩器电源、足底按摩仪、足底按摩器、按摩椅驱动、按摩器驱动、多功能按摩器替代电解电容缩小产品体积专用贴片高容电容(贴片积层电容、陶瓷高容值电容)

2220 250V 475K X7R

2220 450V 225K X7R

2220 250V 685K X7R

1812 100V 475K X7R 

1210 100V 475K X7R

投光灯路灯免驱动模组专用贴片陶瓷电容

路灯免驱动模组专用贴片陶瓷电容

222025V X7R 10UF

222025V X7R 22UF

222025V X5R 47UF

222016V X5R 100UF

181225V X7R 10UF

181225V X7R 22UF

181225V X5R 47UF

181216V X5R 100UF

121025V X7R 10UF

121025V X7R 22UF

121025V X5R 47UF

121016V X5R 100UF

18121KV X7R 104K

2220X7R 1KV 104K

1812X7R 500V 105K

2220400V 225K X7R

2220250V 475K X7R

2220G471NXT-GC贴片压敏电阻

香薰机、USB香薰机、 香薰加湿器、美容喷雾器、美容喷雾器专用贴片陶瓷电容

0805 200V (821)820PF COG

0805 100V (153)15NF COG

0805 2.2UF/225K 50V X7R

0805 100PF/101K 200V X7R

0805 473K/47NF 50V X7R

0805 104K/100NF 50V X7R

高压永磁断路器,变频器、IGBT模块、IGBT功率模块专用高频贴片电容1812/2KV/NP0/222J

矿业产品专用贴片电容1812 100V6.8UF/685K X7R以上为X7R材质,容量精度为10%,耐温-55-+125度原厂直销,品质保证。更多规格欢迎查询和免费索样~

订货询价电话:13430464310-张S  15112687619   QQ:983802528 阿里旺旺:cykcct

UPS电源专用1812 50V 47UF/476K X5R以上为X5R材质,容量精度为10%,耐温-55-+85度原厂直销,品质保证。更多规格欢迎查询和免费索样~

变频器专用贴片陶瓷电容替代铝电解电容专用

1210 50V 225K

1812 50V X7R 22UF

1812 25V X5R 47UF

1210 100V 474K X7R

1210 50V 474K X7R

1206 X7R 50V 106K

1206 50V X7R 105

以上为X7R/X5R材质,容量精度为10%,耐温-55-+125度原厂直销,品质保证。更多规格欢迎查询和免费索样

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片式多层陶瓷电容器 (Multi-layer Ceramic Capacitor 简称MLCC)是电子整机中主要的被动贴片元件之一,它诞生于上世纪60年代,**由美国公司研制成功,主要表现为生产出MLCC具有高可靠、高精度、高集成、高频率、智能化、低功耗、大容量、小型化和低成本等特点。

片式多层陶瓷电容器 (Multi-layerCeramic Capacitor 简称MLCC)是电子整机中主要的被动贴片元件之一,它诞生于上世纪60年代,**由美国公司研制成功,主要表现为生产出MLCC具有高可靠、高精度、高集成、高频率、智能化、低功耗、大容量、小型化和低成本等特点。

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