WMSIC Electronic Components

HRE CSA0603C0G100J500JT

ModelCSA0603C0G100J500JT
Package0603
BrandHRE
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
HRE CSA0603C0G100J500JT
Type
HRE
Minimum package
4000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
HRE
Electronic Component
CSA0603C0G100J500JT
Electronic Component
1
Electronic Component
10pF
Package
0603
Electronic Component
SMD Capacitor(MLCC)
Electronic Component
±5%
Electronic Component
0.035g
Electronic Component
1
Electronic Component
BM0264495112
Electronic Component
C0G
Voltage
50V
Electronic Component
Electronic Component
Electronic Component
4000

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

CSA0603C0G100J500JT 多层陶瓷贴片电容(MLCC)产品概述

一、产品基本信息

CSA0603C0G100J500JT是芯声(HRE)品牌推出的高频精密多层陶瓷贴片电容(MLCC),型号各段精准对应核心特性:

  • 「0603」:封装尺寸(英制:0.06英寸×0.03英寸,公制:1.6mm×0.8mm);
  • 「C0G」:温度系数(IEC标准,对应EIA NP0);
  • 「100」:标称容值10pF(前两位有效数字+倍率:10×10⁰);
  • 「J」:容值精度±5%(EIA精度代码:J=±5%);
  • 「500」:额定直流电压50V(50×10⁰);
  • 「JT」:芯声无铅环保系列后缀,适配绿色制造要求。

关键参数汇总:

参数项 规格值 产品类型 MLCC(多层陶瓷贴片) 标称容值 10pF 容值精度 ±5% 额定电压 50V DC 温度系数 C0G(±30ppm/℃) 封装 0603(1.6×0.8×0.5mm) 品牌 芯声(HRE)

二、核心性能特点

依托C0G介质与MLCC叠层工艺,该产品具备三大核心优势:

  1. 温度稳定性优异:C0G介质在-55℃~125℃范围内,容值偏差仅±30ppm/℃,几乎不受温度变化影响,适配对信号精度要求苛刻的场景;
  2. 低损耗与高频特性:介质损耗角正切值(tanδ)≤0.15%(1kHz,25℃),1GHz高频下仍保持低阻抗,可有效抑制射频信号衰减;
  3. 高可靠性与紧凑性:无极性设计+无引线结构,抗机械振动/冲击能力强;0603封装体积小,可节省PCB布局空间30%以上(对比直插电容)。

三、封装与工艺说明

3.1 0603封装设计

封装尺寸符合IPC-A-610标准,焊接端采用三层复合电极(镍层+铜层+无铅锡层):

  • 镍层:提升抗氧化性;
  • 锡层:适配回流焊/波峰焊,焊点强度≥10N(满足行业标准);
  • 厚度公差≤±0.05mm,确保贴装一致性。

3.2 多层陶瓷叠层工艺

采用低温共烧陶瓷(LTCC)技术,将高纯C0G陶瓷介质与镍基内电极交替叠层(典型叠层数10~15层),经1200℃高温烧结形成一体化结构:

  • 介质层:晶粒尺寸≤1μm,确保温度稳定性;
  • 内电极:镍含量≥99%,降低等效串联电阻(ESR)至≤0.5Ω(100MHz)。

四、典型应用场景

因C0G的精密性与高频特性,该产品广泛应用于以下领域:

  1. 射频通信:5G基站射频前端滤波、蓝牙/WiFi模块匹配网络,确保信号传输失真率≤0.1%;
  2. 精密仪器:传感器信号调理电路、示波器校准模块,容值偏差小可提升测量精度至0.05%;
  3. 消费电子:智能手机射频天线匹配、平板电视高频滤波,适配轻薄化设计;
  4. 工业控制:PLC输入输出模块EMC抑制、电机驱动电路滤波,耐温范围宽适应-40℃~85℃工业环境;
  5. 汽车电子:车载导航射频模块(衍生车规级型号满足AEC-Q200标准)。

五、可靠性与合规性

  1. 环境适应性:工作温度-55℃125℃,存储温度-40℃85℃,耐湿测试(85℃/85%RH)1000小时后容值变化≤±2%;
  2. 机械可靠性:振动测试(10~2000Hz,1.5g加速度)、冲击测试(1500g,0.5ms)均通过IEC 60384-1标准;
  3. 环保合规:符合RoHS 2.0(无铅、无镉、无汞)、REACH法规,端电极无有害物质残留;
  4. 寿命稳定性:加速寿命测试(85℃/50V)1000小时后,容值偏差≤±3%,满足商业级/工业级产品要求。

六、选型参考建议

  1. 介质对比:

    • 需高容量(μF级)→选X7R介质(温度系数±15%);
    • 需低成本→选Y5V介质(温度系数±20%);
    • 需高频精密→优先C0G(如本型号)。
  2. 参数匹配:

    • 工作电压≤35V→选同容值35V型号(成本降低15%);
    • 需更高精度→选「G」代码(±1%)衍生型号(如CSA0603C0G100G500JT)。
  3. 封装优化:

    • 空间紧张→选0402封装(1.0×0.5mm),但最大容值≤22pF(需确认需求)。

该产品平衡了精密性、可靠性与成本,是高频电路、精密仪器等场景的优选MLCC方案。

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