WMSIC Electronic Components

1SS398(TE85L,F) 1SS398

Model1SS398(TE85L,F)
PackageTO-236-3(SOT-23-3)
BrandTOSHIBA
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 25+

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
TOSHIBA 1SS398(TE85L, F)
Type
TOSHIBA
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
TOSHIBA
Electronic Component
1SS398(TE85L,F)
Electronic Component
1
Package
TO-236-3(SOT-23-3)
Electronic Component
Schottky Diode
Electronic Component
0.031g
Electronic Component
1
Electronic Component
BM0230030343
Current
100mA
Diode
1
Current(Ir)
100nA@400V
(Vf)
1.3V@100mA
Electronic Component
Electronic Component
Electronic Component
3000
Voltage Rating(Vr)
400V

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

1SS398 (TE85L,F) — 产品概述

一、产品简介

1SS398(厂商标识 TE85L,F)是东芝(TOSHIBA)推出的一款高压肖特基整流二极管,封装为 TO-236-3(SOT-23-3)。该器件面向要求高反向耐压、低漏电和小型封装的应用场景,适用于高压低电流整流、阻断与浪涌保护等场合。典型电气参数包括:直流正向压降 Vf = 1.3V(@ IF = 100mA)、直流正向整流电流 IF = 100mA、非重复峰值浪涌电流 Ifsm = 2A、最大反向耐压 Vr = 400V、反向电流 Ir = 100nA(@ Vr = 400V)。

二、主要性能亮点

  • 高反向耐压:400V 的反向耐压使其可直接用于较高电压的整流与阻断场景,避免低压器件在高压轨使用时发生击穿。
  • 低反向漏电:在最大反向电压下 Ir 仅 100nA(典型测试条件),在静态阻断状态下的功耗小,适合待机和高阻断要求的电路。
  • 小封装、高密度:SOT-23-3 封装便于用于面积受限的电路板,实现体积与成本的优化。
  • 良好瞬态能力:2A 的非重复峰值浪涌电流可吸收短时开机、电容放电等导致的浪涌能量,但不适合作为长期大电流保护。

三、典型电气参数(基于提供数据)

  • 正向压降 (Vf):1.3V @ IF = 100mA
  • 直流整流电流:IF = 100mA(连续)
  • 非重复峰值浪涌电流 (Ifsm):2A
  • 直流反向耐压 (Vr):400V
  • 反向电流 (Ir):100nA @ Vr = 400V

注:具体温度系数、动态特性(如反向恢复)、结温与封装热阻等,请参考原厂完整规格书以用于精确热设计与仿真。

四、典型应用场景

  • 开关电源初级高压整流或阻断,特别是需要小封装且电流较低的线路。
  • 待机电源(standby)或启动电路中的高压阻断与吸收。
  • 高频整流电路或快速阻断场合(肖特基二极管反向恢复快,适合高频)。
  • 高压信号路径的反向保护、极性保护电路。
  • 浪涌抑制与瞬态钳位(在额定 Ifsm 范围内短时有效)。

五、使用与设计建议

  • 电流与功耗:器件额定直流整流电流仅 100mA,连续使用时需考虑 Vf 对应的功耗(P = Vf × IF)和结温上升;对于长期工作负载,应在安全裕量下选型或并联/更换更高电流规格器件。
  • 热管理:SOT-23 属于小型封装,热阻较大,应通过增加铜箔面积、热沉过孔(如果板层允许)来改善散热;在热设计时使用厂方提供的 RθJA/RθJC 数据做仿真与计算。
  • 漏电与温度:反向漏电随温度上升而显著增加,在高温工况下需评估 Ir 在实际 Vr 下对系统静态功耗的影响。
  • 浪涌保护:Ifsm = 2A 为非重复峰值,适用于短时浪涌;若存在反复或更大幅度的冲击,需采用外加限流、电流熔断或选用更高浪涌能力的器件。
  • PCB 布局:保持二极管与相关电感、电容之间的走线尽量短以降低寄生电感;正负极走铜厚、扩大焊盘以帮助导热;注意极性标识与防呆设计。
  • 焊接与可靠性:遵循 SOT-23 的回流焊工艺规范,避免超出推荐温度曲线;长期存储与贴片前注意防潮处理,遵循厂方的 MSL(如有)说明。

六、选型注意事项与替代

在选择 1SS398 时,确认工作电压、平均与峰值电流以及允许的结温范围是否满足系统需求。若需要更低的正向压降或更高连续电流,应考虑更大封装或不同系列的肖特基器件;若需要更高的浪涌能力或低温下更小的 Vf,也可对比其他厂商同类高压肖特基产品。

七、结论

1SS398 是一款面向高压、低电流应用的肖特基整流二极管,凭借 400V 的耐压和极低的静态漏电表现,适合体积受限且需高压阻断的电路设计。设计时需要特别关注其小封装带来的散热限制与电流能力上限,结合恰当的 PCB 布局与热管理措施,能够在开关电源、保护电路及高压整流场景中发挥良好作用。若需更详细的温度相关特性、封装机械图与波峰/回流焊工艺参数,请参考东芝官方规格书。

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