WMSIC Electronic Components

TWGMC SMAJ18CA Bidirectional TVS Diode SMAJ18CA

ModelSMAJ18CA
PackageDO-214AC
BrandTWGMC
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 Date code within 2 years

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
TWGMC SMAJ18CA
Type
TWGMC
Minimum package
5000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
TWGMC
Electronic Component
SMAJ18CA
Electronic Component
1
Package
DO-214AC
Electronic Component
Electronic Component
Type
TVS
Electronic Component
ESD and Surge Protection (TVS / ESD)
Electronic Component
0.096g
Electronic Component
1
Electronic Component
BM0265082565
Operating Temperature
65℃~+150℃
Voltage
29.2V
Current(Ir)
1uA
Voltage(VBR)
22.1V
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.

SMAJ18CA 产品概述

SMAJ18CA 是一款双向瞬态电压抑制器(TVS),由台湾迪嘉(TWGMC)生产,采用 DO-214AC(SMA)表面贴装封装。器件针对浪涌、瞬态过压和静电放电等瞬态事件提供可靠保护,适用于空间受限的电路板设计。器件具有玻璃钝化结、低电感、低反向漏电与塑料封装通过 UL 可燃性认证等特点,适合消费电子、通信、电源及工业控制等多种应用场景。

一、主要电气参数与性能亮点

  • 极性:双向(可在正负瞬态下对称钳位,适合交流线路及需要双向保护的直流线路)
  • 反向截止电压 Vrwm:18 V(工作电压附近的稳态最大承受值)
  • 击穿电压 VBR:22.1 V(在器件规定测试电流下的击穿点)
  • 钳位电压 Vc(峰值钳位):29.2 V(在峰值脉冲电流条件下的最大钳位)
  • 峰值脉冲电流 Ipp:13.7 A(基于 10/1000 μs 波形与 400 W 峰值功率下)
  • 峰值脉冲功率 Ppp:400 W(按 10/1000 μs 浪涌波形)
  • 反向泄漏电流 Ir:1 μA(在 Vrwm 条件下低静态功耗)
  • 工作温度范围:-65 °C ~ +150 °C

这些参数表明 SMAJ18CA 在承受工业级浪涌能量同时,保持较低静态功耗与快速响应,适合对瞬态抑制要求较高的系统。

二、结构与封装优势

  • 封装:DO-214AC(SMA)表面贴装封装,低外形设计,有利于节省电路板空间并便于自动化贴装与回流焊接。
  • 玻璃钝化结:提高结面稳定性,降低漏电并提升长期可靠性和热稳定性。
  • 低电感设计:在高速脉冲和快速上升沿浪涌中能更有效钳位,减少寄生振铃与电磁干扰。
  • 塑料材料通过 UL 可燃性认证:提高终端产品的安全合规性。

三、典型应用场景

  • 电源线路保护:用于 12 V / 24 V 等中低压直流电源总线的瞬态保护(双向特性在交流或反向瞬态时更具优势)。
  • 通信接口:保护串行接口、以太网、信号线等免受浪涌与静电冲击。
  • 工业控制与自动化设备:工业现场常见的雷击或感应浪涌保护,延长设备寿命。
  • 消费电子与家用电器:保护开关电源、适配器输入及关键节点。
  • 逆变器及光伏系统(局部):在需要防止逆向浪涌时可作为辅助保护(应结合系统等级选择适配器件)。

四、使用与布局建议

  • 布线原则:尽量缩短保护器件到被保护节点及到参考地(或回流地)的走线,减少环路面积以发挥低电感优势。
  • 接地处理:在高能量浪涌应用中,建议将器件靠近保护点并与低阻抗公共接地相连,避免通过长距离走线将能量传导到敏感电路。
  • 热散与能量管理:虽然器件具备 400 W 峰值脉冲能力,但连续或反复的大能量冲击会产生热累积,设计时应考虑散热路径与浪涌能量分配。
  • 焊接工艺:适用于 SMT 自动化回流焊接,建议按照制造与回流工艺标准进行(参考 IPC/JEDEC 等行业规范),避免不必要的过温或长时间超温暴露。
  • 储存与处理:标准 SMT 元件处理规则,防潮防静电,必要时按制造商推荐的干燥箱条件回流前回烘。

五、可靠性与规格说明

SMAJ18CA 的玻璃钝化结和塑料封装通过 UL 可燃性认证,工作温度范围宽(-65 °C 至 +150 °C),适配多种环境条件。器件的 10/1000 μs、400 W 峰值功率指标符合常见浪涌试验条件,可在短时高能量脉冲下有效保护电路。反向漏电低(≈1 μA),对电源待机与低功耗系统友好。

六、选型与订购建议

  • 若被保护电压长期在 18 V 以下且需双向保护,SMAJ18CA 是合适选择;若工作电压显著高于 18 V,应选用更高 Vrwm 等级的 TVS 器件。
  • 在高频、快速上升沿脉冲环境,低电感特性有利于改善系统抗扰性。
  • 订购时请按封装(DO-214AC / SMA)、极性(双向)与品牌(TWGMC)确认型号,必要时向供应商索取完整的器件数据手册、回流焊曲线与可靠性测试报告。

总结:SMAJ18CA 以其 18 V 工作电压、22.1 V 击穿与 29.2 V 钳位、400 W/10/1000μs 的浪涌能量处理能力,结合低漏电、低电感及表贴小外形,适合空间受限且需可靠瞬态保护的多类电子产品。若需更详细的电气特性曲线或封装尺寸图,请参考 TWGMC 提供的技术资料或联系供应商获取原厂数据手册。

Request for quote

Send RFQ

Use the form for single models, category sourcing, and multi-line BOM requirements.

Send your target model and quantity.

Product sourcing intelligence

Model, package, availability, and BOM fit reviewed before quotation.

WMSIC turns product data, package visuals, BOM context, and sourcing signals into practical RFQ notes for buyers.

Electronic component model and package intelligence review on an ESD-safe inspection bench

Model & package intelligence

Model text, package form, tray or reel details, and visual evidence are reviewed together before RFQ feedback.

BOM matching and alternative component comparison workstation with protected IC samples

BOM matching & alternatives

BOM lines are compared by package, parameters, quantity, and workable alternatives for cleaner sourcing decisions.

Electronic component sourcing availability dashboard with ESD-protected samples

Sourcing availability signal

Stock routes, quotation confidence, lead-time notes, and shipment feasibility are checked before sales follow-up.

Buyer sourcing scenarios

Examples of how common component sourcing requests are organized.

Typical RFQ scenarios based on the WMSIC form fields, catalog data, manual review steps, and shipment preparation workflow.

The buyer shares the full part number, package requirement, quantity, destination, and available product photos so the quotation can record the exact version under review.

Package confirmation Typical RFQ workflow

A multi-line BOM is organized into direct sourcing lines, lines that need package clarification, and lines where alternative-part review is permitted.

Mixed BOM triage Typical RFQ workflow

The original manufacturer part number, datasheet revision, application, critical limits, and acceptable changes are collected before possible candidates are discussed.

Obsolete-part review Typical RFQ workflow

Sample quantity, minimum packing, package format, target date, and courier destination are kept together in one RFQ conversation.

Small-batch request Typical RFQ workflow

Package photos, model markings, board context, and the quantity needed for repair help focus the sourcing review on the relevant version.

Repair batch evidence Typical RFQ workflow

When a suffix or package note is incomplete, the response records the open difference and requests buyer confirmation before procurement proceeds.

Model suffix clarification Typical RFQ workflow

Packing format, carton notes, invoice details, courier option, destination, and tracking handoff are coordinated around the confirmed order.

Export handoff Typical RFQ workflow

The request connects the previously used model, current demand, package evidence, target timing, and replenishment sourcing route.

Replenishment inquiry Typical RFQ workflow

Related products

Packaged components ready for RFQ.