WMSIC Electronic Components

TDK C1005X6S0G475MTJ00E

ModelC1005X6S0G475MTJ00E
Package0402
BrandTDK
Price Price on request Electronic component prices change quickly with market supply and demand. Please refer to the latest WMSIC quotation for current pricing.
Configuration
1 options
Configuration 26+

Available for RFQ

Technical data

Product details

18 specifications

Core information

Product name
TDK C1005X6S0G475MTJ00E
Type
TDK
Minimum package
10000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
TDK
Electronic Component
C1005X6S0G475MTJ00E
Electronic Component
1
Electronic Component
4.7uF
Package
0402
Electronic Component
SMD Capacitor(MLCC)
Electronic Component
±20%
Electronic Component
0.012g
Electronic Component
1
Electronic Component
BM0258885975
Electronic Component
X6S
Voltage
4V
Electronic Component
Electronic Component
Electronic Component
10000

For datasheets, package documents, compatible-part guidance, or other technical resources, contact WMSIC customer service. Availability is confirmed case by case.

TDK C1005X6S0G475MTJ00E 贴片多层陶瓷电容(MLCC)产品概述

TDK C1005X6S0G475MTJ00E是一款针对小型化电子设备设计的贴片多层陶瓷电容(MLCC),凭借紧凑的0402封装、稳定的X6S温度特性及适配低电压场景的电气参数,广泛应用于便携式消费电子、低功耗IoT设备等领域。以下从产品命名、核心参数、应用场景、优势特点及使用注意事项展开概述。

一、产品核心身份与命名解析

该型号各字符对应明确的产品属性,是识别其规格的关键:

  • C1005:TDK封装代码,对应EIA标准0402封装(公制尺寸1.0mm×0.5mm),是当前小型电子设备中常见的紧凑型封装;
  • X6S:温度特性代码,符合IEC标准,工作温度范围为-55℃至+105℃,电容变化率≤±22%,满足宽温环境下的性能稳定性;
  • 0G:电压与精度复合代码,其中额定直流电压为4V,容值精度为±20%,适配低电压电路的滤波、耦合需求;
  • 475:容值标识,采用“3位数+1位指数”编码,即47×10^5 pF=4.7μF;
  • MTJ00E:TDK内部规格后缀,包含端电极材质、生产工艺细节等信息,确保产品一致性。

二、关键电气与物理参数

该产品的核心参数围绕“小尺寸、低电压、宽温稳定”设计,具体如下:

电气参数

  • 标称容值:4.7μF,精度±20%(满足一般电路的滤波、耦合容差需求);
  • 额定电压:4V DC(峰值电压不超过4V,适配低功耗电路);
  • 绝缘电阻(IR):典型值≥10GΩ·μF(25℃、1V DC条件下),确保电路漏电流小;
  • 温度特性:-55℃~+105℃范围内,电容变化率≤±22%,无明显温度漂移。

物理参数

  • 封装尺寸:1.0mm(长)×0.5mm(宽)×0.5mm(厚,典型值),体积紧凑,适合高密度PCB设计;
  • 材质:多层陶瓷介质(MLCC),端电极采用Ni/Cu合金+锡镀层,兼容无铅焊接工艺;
  • 工作温度范围:-55℃~+105℃,符合工业级或消费电子的宽温需求。

三、适用应用场景

由于其小封装、中容值、低电压的特性,该产品主要用于以下场景:

  1. 便携式消费电子:智能手机、智能手表、蓝牙耳机等设备的电源滤波、信号耦合,满足小型化设计需求;
  2. 低功耗IoT设备:传感器节点、低功耗MCU(如STM32L系列)周边的去耦电容,适配电池供电的低电压环境;
  3. 小型电子模块:蓝牙5.0模块、WiFi模块、射频前端电路的滤波,减少信号干扰;
  4. 车载辅助设备:车载小型传感器(如胎压监测TPMS)的电源回路电容,满足-40℃~+85℃的车载温区需求(X6S覆盖此范围)。

四、产品优势与特点

  1. 高密度小型化:在0402封装内实现4.7μF容值,比传统电容体积缩小约30%,适配当前电子设备“轻薄化”趋势;
  2. 宽温稳定可靠:X6S温度特性确保极端温度下电容性能稳定,避免因温度变化导致电路参数漂移;
  3. 环保合规:无铅、无卤设计,符合RoHS 2.0、REACH法规,适合出口及高端消费电子市场;
  4. 工艺兼容性强:端电极设计适配回流焊、激光焊接等主流SMT工艺,生产效率高,良率稳定;
  5. TDK品质保障:作为全球知名被动元件厂商,TDK的MLCC工艺成熟,产品一致性好,寿命可达10万小时以上(25℃、额定电压下)。

五、选型与使用注意事项

为确保产品性能稳定,需注意以下几点:

  1. 电压降额:实际工作电压建议不超过额定电压的80%(即≤3.2V),避免过压导致电容击穿或性能下降;
  2. 焊接工艺:回流焊峰值温度控制在240℃~260℃,时间不超过10秒,避免热应力损坏陶瓷介质;
  3. 静电防护:MLCC易受静电击穿,生产、存储、测试过程需佩戴防静电手环,使用防静电包装;
  4. 容值匹配:4.7μF适合中低频(1kHz~100kHz)滤波,若需高频滤波需搭配小容值电容(如0.1μF);
  5. 温区验证:若应用环境温度超出-55℃~+105℃,需更换X7R、X5R等其他温度特性的电容。

TDK C1005X6S0G475MTJ00E凭借其紧凑封装、稳定性能及低电压适配性,成为小型化电子设备中电源滤波、耦合的优选MLCC,可满足多数便携式及IoT设备的设计需求。

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