WMSIC Electronic Components

RUILON SMD4532-600NF SMD4532

ModelSMD4532-600NF
Package1812
BrandRUILON
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
RUILON SMD4532-600NF
Type
RUILON
Minimum package
2500 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
RUILON
Electronic Component
SMD4532-600NF
Electronic Component
1
Electronic Component
3.2mm
Package
1812
Electronic Component
2
Electronic Component
(GDT)
Electronic Component
±30%
Electronic Component
0.296g
Electronic Component
4.5mm
Electronic Component
2.7mm
Electronic Component
1
Electronic Component
BM0246649881
Operating Temperature
40℃~+90℃
Capacitor
0.5pF

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

SMD4532-600NF 产品概述

一、产品简介

SMD4532-600NF 是瑞隆(RUILON)推出的一款高能量吸收的表面贴装瞬变抑制器(双端两极器件),封装为1812(4.5mm × 3.2mm × 2.7mm)。器件设计用于在高直流电压与冲击环境下保护电路免受瞬态过电压损害,适合工业电源、逆变器、直流分配以及需要低电容且高抗冲击能力的场合。

二、主要特性

  • 直流击穿电压(Vdc):600V,适用于中高压直流保护场景;精度 ±30%。
  • 脉冲放电能力强:脉冲放电电流可达 2kA(在标准测试条件下),对短时大电流浪涌具有良好吸收能力。
  • 冲击击穿电压(Vimp):900V,提供更高的瞬态耐受裕量。
  • 极间电容仅 0.5pF,适合对信号完整性要求高的电路,降低对高速信号链的影响。
  • 工作温度范围宽:-40℃ ~ +90℃,满足多种工业环境使用需求。

三、主要技术参数

  • 品牌:RUILON(瑞隆)
  • 型号:SMD4532-600NF
  • 极数:2(双端)
  • 直流击穿电压:600V(±30%)
  • 脉冲放电电流:2kA
  • 冲击击穿电压:900V
  • 极间电容:0.5pF
  • 工作温度:-40℃ ~ +90℃

四、封装与机械尺寸

  • 封装类型:1812(SMD)
  • 尺寸(典型):长度 4.5mm × 宽度 3.2mm × 高度 2.7mm,便于自动贴装与回流焊工艺兼容。请在设计时预留适当的焊盘和热量分布,确保焊接可靠性。

五、典型应用

  • 中高压直流防护:直流母线、蓄电池监控、逆变器输入/输出保护。
  • 工业控制与动力电子:电机驱动、PLC、电源模块的过压瞬态抑制。
  • 通信与传感接口:需要低电容保护同时保持信号完整性的高速信号链。
  • 可再生能源设备:光伏逆变器、储能系统的浪涌防护。

六、使用与注意事项

  • 选型时确保工作电压与直流击穿电压留有足够裕量,避免持续接近击穿区。
  • 焊接建议采用行业标准回流焊工艺,具体曲线请参考供应商工艺说明以防器件过热。
  • 储存与装配时注意防静电及湿度控制,必要时按MSL等级进行烘烤处理后贴装。
  • 在高能量冲击后建议对器件进行检测或更换,以免隐性损伤影响后续保护性能。
  • 设计 PCB 时考虑良好的接地与散热路径,尤其在频繁浪涌环境下提高可靠性。

如需完整电气特性曲线、浪涌试验条件或封装3D模型,请告知,我可帮助获取或核对供应商数据表以供设计验证。

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