WMSIC Electronic Components

Sunlord SDCL0603Q5N1HT02B03

ModelSDCL0603Q5N1HT02B03
Package0201
BrandSUNLORD
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

19 specifications

Core information

Product name
Sunlord SDCL0603Q5N1HT02B03
Type
SUNLORD
Minimum package
15000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
SUNLORD
Electronic Component
SDCL0603Q5N1HT02B03
Electronic Component
1
Package
0201
Electronic Component
SMD Inductor
Electronic Component
±3%
Electronic Component
0.009g
Inductor
5.1nH
Electronic Component
1
Factor
13@500MHz
Electronic Component
BM0264913678
Current
350mA
Frequency
5.9GHz
Resistor(DCR)
400mΩ
Electronic Component
Electronic Component

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

SDCL0603Q5N1HT02B03 产品概述

一、主要参数

  • 品牌:Sunlord(顺络)
  • 型号:SDCL0603Q5N1HT02B03(以下参数按用户提供信息)
  • 封装:0201(贴片)
  • 电感值:5.1 nH ±3%
  • 额定电流:350 mA
  • 直流电阻(DCR):400 mΩ
  • 品质因数(Q):13 @ 500 MHz
  • 自谐振频率(SRF):5.9 GHz

二、性能特点

  • 小封装(0201)适合高密度贴装,节省PCB空间。
  • 电感值较小(5.1 nH),适用于射频回路的阻抗调谐与谐振匹配。
  • Q 值在中频段(500 MHz)达到 13,表明在射频链路中具有较低的损耗特性。
  • SRF 5.9 GHz 意味着在几 GHz 范围内仍能保持电感特性,适用于 2.4 GHz/5 GHz 等无线频段应用。
  • DCR 较高(400 mΩ),在直流和低频下会带来一定的压降和功耗,应在额定电流内使用。

三、典型应用

  • 射频前端的阻抗匹配、电感负载与谐振回路(如滤波器、调谐单元)。
  • 无线通信设备(Wi‑Fi、蓝牙、GPS、ISM 频段)中作为匹配元件或谐振器。
  • 高频信号线的去耦与小信号滤波,抗干扰与阻抗控制场合。
  • 小电流射频开关、滤波网络及移相/微调电路。

四、布局与使用建议

  • 尽量缩短电感与相邻器件之间的连线,避免引入寄生电感与电容。
  • 对于射频路径,保持合适的地平面,必要时在接地处增加过孔以降低回流电感。
  • 考虑 DCR 与额定电流关系,长期通电应留有安全余量,避免超过 350 mA 导致温升或参数漂移。
  • 在高频设计中注意自谐振带来的响应变化,若工作频率接近 SRF,应验证实际频率响应。

五、存储与可靠性注意事项

  • 小尺寸器件易受机械应力影响,贴装与回流焊工艺应按厂商焊接温度曲线执行;避免过冲回流。
  • 防潮包装存放,开盘后尽快使用或按湿敏等级(MSL)处理,防止吸潮导致焊接缺陷。
  • 在高温或机械振动环境下需做可靠性验证,确认长期电感值与 DCR 的稳定性。

六、选型参考建议

  • 若需更低的直流损耗或更高电流承载能力,建议选用更大封装或低 DCR 型号。
  • 对于要求更高 Q 值或更宽频带的射频应用,可考虑空气心或专用高 Q 射频电感器。
  • 在系统设计阶段,结合电磁仿真与实际量测确认该型号在目标频段的 S 参数与插入损耗是否满足需求。

如需针对具体频段的阻抗曲线、S 参数或焊接规范,我可以进一步提供建议与测量参考。

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