WMSIC Electronic Components

CJ CJ6101B20M

ModelCJ6101B20M
PackageSOT-23-5L
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 Date code within 2 years

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
CJ CJ6101B20M
Type
CJ
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
200mV@(100mA)
Electronic Component
CJ
Electronic Component
54uVrms
Electronic Component
CJ6101B20M
Electronic Component
1
Package
SOT-23-5L
Electronic Component
Linear Regulator(LDO)
Electronic Component
0.056g
Electronic Component
1
Features
Output
Electronic Component
BM0233577001
Operating Temperature
40℃~+85℃@(Ta)
Operating Voltage
6V
Output
Electronic Component
Output Voltage
2V

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

CJ6101B20M 产品概述

一、核心特性

CJ6101B20M 是 CJ(江苏长电/长晶)推出的一款固定输出低压差线性稳压器(LDO),输出电压为 2.0V,单通道、正极输出,适用于对静态电流与噪声有严格要求的电源前端设计。主要特点包括:最大输出电流 300mA、电源电压可工作至 6V、超低静态电流 Iq=800nA、在 1kHz 下 PSRR=50dB、低噪声 54µVrms、并具备过流保护功能。工作温度范围 -40℃~+85℃(Ta),封装为 SOT-23-5。

二、电气性能要点

  • 输出类型:固定(2.0V)。适合为需要稳定 2V 轨的模拟或数字电路供电。
  • 输出电流:300mA(最大)。适合中等电流负载,但在高电流时需关注功耗与散热。
  • 压差(Dropout):典型值 200mV@100mA。注意在更高负载电流下压差可能增加,设计输入电压时应留有余量。
  • 静态电流:800nA,极低的静态电流非常有利于电池供电与待机功耗优化。
  • 噪声与抑制:噪声 54µVrms,PSRR 50dB@1kHz,可有效降低来自电源的干扰,利于对噪声敏感的模拟前端或基带电路。

三、保护与可靠性

CJ6101B20M 内置过流保护(OCP),在短路或异常过载时能限制输出电流,保护芯片与负载。结合器件的工作温度范围(-40℃~+85℃),适用于工业级或消费级多数场景。实际使用时仍建议在 PCB 设计与系统管理中加入适当的过温与故障监测措施以提高可靠性。

四、封装与热设计

封装:SOT-23-5,体积小,利于空间受限的应用。
热管理建议:在典型应用中,器件功耗约为 (Vin - 2.0V) × Iout。以 Vin=6V、Iout=300mA 为例,功耗约为 1.2W,此时 SOT-23-5 包装需要良好 PCB 散热设计(大面积铜箔、散热过孔或底层铜形条)以避免过热导致降额或触发热关断。对高功率工况,推荐降低输入电压差或采用外部散热增强措施。

五、典型应用场景与外部元件建议

适用场景:低功耗便携设备电源轨、传感器与模数前端、时钟/基带芯片电源、工业控制和多电池管理系统中需要 2V 稳定轨的场合。
外部电容建议:LDO 稳定性通常依赖于输入与输出端的旁路电容。建议在输入端放置 1µF10µF 低 ESR 陶瓷电容以抑制入端杂散;输出端常用 1µF10µF 陶瓷电容,布局尽量靠近芯片输出脚与地脚。具体电容容量与 ESR 需参照器件数据手册确认以保证环路稳定性与瞬态响应。

六、选型与使用注意事项

  • 输入电压裕度:尽量保证 Vin ≥ Vout + Dropout + 余量,以避免在负载变化或电源纹波时输出失调。
  • 热降额:在高电流或高 Vin 差条件下,关注器件结温与 PCB 散热能力,必要时采用外部散热或降低电压差。
  • 负载瞬态与滤波:若负载存在快速变化,适当增加输出电容或改善旁路布局以优化瞬态响应。
  • 数据手册:在最终设计前请参考 CJ6101B20M 官方数据手册以获取详细引脚定义、典型特性曲线、推荐外围元件和值以及 PCB 布局示意,确保满足所有电气与热性能要求。

总结:CJ6101B20M 综合了超低静态电流、良好 PSRR 与低噪声的优势,适合对待机功耗和电源品质有严格要求的中小功率 2V 轨应用,但在高功率工作点需重点考虑热管理与输入余量。

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