WMSIC Electronic Components

ON NSR20F30NXT5G

ModelNSR20F30NXT5G
Package603
BrandON
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

20 specifications

Core information

Product name
ON NSR20F30NXT5G
Type
ON
Unit
Electronic Component
Minimum package
5000

Technical parameters

Electronic Component
Electronic Component
Electronic Component
ON
Electronic Component
NSR20F30NXT5G
Electronic Component
1
Package
603
Electronic Component
Schottky Diode
Electronic Component
0.008g
Electronic Component
1
Electronic Component
BM0258491160
Current
2A
Diode
1
Current(Ir)
150uA@30V
(Vf)
480mV@2A
Electronic Component
5000
Voltage Rating(Vr)
30V
Surge Current (Ifsm)
28A

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

NSR20F30NXT5G 产品概述

NSR20F30NXT5G 是一款面向中小功率电子应用的肖特基(Schottky)整流二极管。该器件在2A工作电流条件下具有低正向压降(Vf),并提供30V的反向耐压能力与可观的浪涌承受能力,适合用于开关电源输出整流、点对点电源、反向保护和整流链路等场景。器件由 ON Semiconductor(安森美)生产,采用小型表面贴装封装(DSN-2,0.8 × 1.6 mm,封装代码 603),便于高密度 PCB 布局与自动化贴装。

一、主要电气参数(基准条件)

  • 正向压降(Vf):480 mV @ IF = 2 A
  • 直流反向耐压(Vr):30 V
  • 最大整流电流:2 A(连续)
  • 反向漏电流(Ir):150 μA @ Vr = 30 V
  • 非重复峰值浪涌电流(Ifsm):28 A
  • 封装:DSN-2(0.8 × 1.6 mm),封装代码 603
  • 品牌:ON Semiconductor(安森美)

二、器件特性及其意义

  • 低正向压降(Vf ≈ 0.48 V @ 2 A):肖特基结构的最大优势之一是导通损耗低。与普通硅整流二极管相比,在相同电流下功率损耗更小,有利于提高系统效率并降低发热,尤其在持续输出整流或低压大电流应用中更为明显。
  • 30 V 反向耐压:适用于常见的低压电源轨(如 5 V、12 V 至 24 V 供电领域),应避免在超过 30 V 的电压环境下长期工作,必要时加保护元件(如 TVS)抑制瞬态过压。
  • 中等反向漏电流(150 μA @ 30 V):在室温下为可接受范围,但漏电流随温度上升而增加。对待机功耗或高温环境下的微电流电路需特别评估。
  • 较高峰值浪涌能力(28 A 非重复):能承受开机或突发短时浪涌电流,有利于承受瞬时冲击电流,但不宜用作频繁冲击场合的长期解决方案。

三、典型应用场景

  • 开关电源(SMPS)同步整流或输出端整流:低 Vf 有助于提升转换效率和降低发热。
  • 点对点电源及负载整流:用于 PCB 上的局部整流或二次侧整流。
  • 反向极性保护:放置于电源输入端,实现低损耗的反接保护。
  • 自由轮回二极管 / 续流二极管:适用于中功率电感负载的续流路径(需注意电流/频率与温升)。
  • USB/便携设备电源路径管理:体积小、导通损耗低,适合空间受限的系统。

四、使用与布局建议

  • 热管理:虽然器件功耗较低,但在2A连续工作时依然会产生显著热量。建议使用与焊盘相连的铜箔扩展(散热走线)以提高散热能力;如有必要,考虑多层 PCB 的过孔导热网络。
  • 布局:贴近负载或开关元件布置,缩短回流路径以减少寄生感抗与 EMI。焊盘设计按封装尺寸优化,以保证良好焊接和热传导。
  • 浪涌与瞬态保护:器件反向耐压为30V,若实际应用可能遭遇高于此值的瞬态,应配合 TVS 或 RC 吸收网络保护。
  • 焊接与工艺:遵循厂商推荐的回流焊温度曲线与湿敏等级(MSL)处理,避免超出热应力限制引起封装或焊点损伤。

五、可靠性与注意事项

  • 温度影响:肖特基二极管的反向漏电随温度呈指数上升。在高温或要求低待机功耗的应用中,应评估在最高工作温度下的泄漏功耗及其对系统的影响,并适当降额使用。
  • 峰值浪涌限制:28A 为非重复峰值,适合短时冲击。频繁或重复的大电流冲击会缩短器件寿命或导致失效,应避免。
  • ESD 与焊接应力:作为敏感半导体器件,推荐在生产与装配过程中采取常规防静电和湿敏管理措施。

六、选型要点与结论

NSR20F30NXT5G 以其低正向压降、适中的反向耐压和小型封装,适合在空间与效率受限的电源路径中作为整流或保护二极管使用。选型时应综合考量工作电流、散热条件、环境温度以及可能的浪涌或过压情况;若系统对反向漏电极其敏感或工作电压高于30V,应选择更高耐压或漏电更低的器件替代。

若需进一步设计参数(如结-封装热阻、最大结温、回流焊曲线、封装引脚图与机械尺寸),建议参阅 ON Semiconductor 官方数据手册以获得完整的规范与封装图。

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