WMSIC Electronic Components

CJ CJ3134KDW

ModelCJ3134KDW
PackageSOT-363
BrandCJ
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
CJ CJ3134KDW
Type
CJ
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
CJ
Electronic Component
CJ3134KDW
Electronic Component
1
Package
SOT-363
Electronic Component
2 N
Electronic Component
MOSFET
Electronic Component
0.03g
Electronic Component
1
Electronic Component
BM0227646165
Operating Temperature
40℃~+150℃
Power Dissipation(Pd)
150mW
Electronic Component
Electronic Component
Electronic Component
3000
Voltage(Vdss)
20V
Capacitor(Ciss)
120pF

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

CJ3134KDW 产品概述

一、产品简介

CJ3134KDW 是江苏长电(CJ)推出的一款小封装双通道 N 沟道增强型场效应管,封装为 SOT-363,适用于空间受限的便携与消费类电子设备。每通道耐压 20V、额定连续漏极电流可达 750mA(峰值/短时),面向低压、低功耗及信号/电源管理类应用设计。

二、主要特性

  • 双通道 N 沟道 MOSFET,集成于 SOT-363 小型封装,利于尺寸受限的 PCB 布局。
  • 漏源电压 Vdss = 20V,适合 12V 及更低电压系统保护与开关。
  • 连续漏极电流 Id = 750mA(器件极限),常态应用需考虑热耗散限制。
  • 导通电阻 RDS(on) = 800mΩ(在 Vgs = 1.8V、Id = 0.45A 条件下),适用于数百毫安级别的低电流负载。
  • 栅阈电压 Vgs(th) ≈ 1.1V,具有一定逻辑电平可驱动特性,但在较低栅压下导通阻抗仍偏大。
  • 栅极电荷 Qg = 750pC(@4.5V),输入电容 Ciss = 120pF,反向传输电容 Crss = 15pF。
  • 工作结温范围 -40℃ ~ +150℃。

三、电气与开关特性要点

  • 由于 RDS(on) 在低栅压下较高,本器件更适合作为低频开关或静态开关(如负载开关、电源路径选择),而非高效率高频功率转换器的主开关。
  • 较大的栅极电荷(750pC)意味着在频繁开关时需要较强的栅驱能力,否则会导致开关损耗和切换速度变慢;若用于开关频率较高的场合,建议使用专用驱动或考虑更低 Qg 的器件。
  • Crss 15pF 在关断瞬间可能引起米勒效应,快速边沿切换时需注意电压应力与振铃抑制。

四、典型应用场景

  • 电池供电设备的负载开关、背负电源保护与电源路径切换。
  • 数字电路或模拟信号的小电流开关、信号隔离与复用。
  • 便携式消费电子、穿戴设备、蓝牙耳机等对体积与成本敏感的场合。
  • 可用于并联以分担电流(需注意热均衡和配对),或作为双路独立开关使用以节省 PCB 面积。

五、封装与热管理建议

  • SOT-363 为极小型封装,器件的热阻相对较高,额定耗散功率 Pd = 150mW(需参考器件具体的温升和封装规范)。在设计时应采用较大的铜箔散热区、短而宽的走线,以及良好的底层散热处理以提高散热能力。
  • 长时间的接近额定电流工作会导致器件温升显著,建议在热设计中留有裕量,并通过热仿真或实测验证。

六、选型与 PCB 布局建议

  • 如果目标应用为低电流静态开关或电源管理,CJ3134KDW 提供体积优势与两个独立通道的便利;若需要更低导通损耗或高频开关,建议选择更低 RDS(on) 或更小 Qg 的替代型号。
  • 布局上栅极、漏极与源极走线应尽量短且直接,栅极添加阻尼电阻可抑制振铃并保护驱动器;对快速开关场合加入 RC 吸收或 TVS 保护以防止过电压。
  • 双通道优势可用于对称驱动或互为备份,但并联使用时需确保热均衡与驱动一致性。

综上,CJ3134KDW 以其小尺寸、双通道和 20V 等级适合对体积和成本敏感、工作电流在数百毫安以内的电源管理与开关应用。在设计中需关注栅极驱动、热散及开关速度对器件性能的影响,合理布线与散热设计可发挥器件最佳性能。

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