WMSIC Electronic Components

BLUE ROCKET LD1117SG-3.3

ModelLD1117SG-3.3
PackageSOT-223
BrandBLUE ROCKET
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
BLUE ROCKET LD1117SG-3.3
Type
BLUE ROCKET
Minimum package
2500 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
1.05V@(100mA)
Electronic Component
BLUE ROCKET
Electronic Component
0.003%Vout
Electronic Component
LD1117SG-3.3
Electronic Component
1
Package
SOT-223
Electronic Component
Linear Regulator(LDO)
Electronic Component
0.192g
Electronic Component
1
Electronic Component
BM0233262432
Operating Temperature
25℃~+125℃
Operating Voltage
15V
Output
Electronic Component
Output Voltage
3.3V
Output Current
950mA

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

LD1117SG-3.3 产品概述

一、概述

LD1117SG-3.3 是一款固定输出电压为 3.3V 的低压差线性稳压器,适用于对电压精度、低噪声和良好电源纹波抑制有要求的中小功率场合。该器件采用 SOT-223 封装,输出电流能力接近 1A(典型 950mA),内置过流保护与过热保护,能在恶劣环境下提供稳定可靠的电源管理解决方案。BLUE ROCKET 品牌版本针对通用工业与消费电子应用进行了参数优化,便于作为开关电源后的后级稳压器或作为单节电源的低压差稳压器使用。

二、主要电气参数(典型值)

  • 输出类型:固定(3.3V)
  • 最大工作电压(输入):15V
  • 输出电流:950mA(典型)
  • 压差(Dropout):1.05V @ 100mA(压差随输出电流增加而上升)
  • 静态电流(Iq):5mA(静态工作电流)
  • 电源纹波抑制比(PSRR):75dB @ 120Hz
  • 输出噪声:0.003% × Vout(约 99µV @ 3.3V)
  • 保护特性:过流保护、过热保护
  • 工作温度范围:-25°C ~ +125°C
  • 输出极性:正极
  • 输出通道:单通道
  • 封装:SOT-223

三、性能亮点

  1. 低压差:100mA 工作点下压差约 1.05V,在低输入-输出电压差环境下仍能维持稳定输出,利于电池供电或低压差拓扑的设计。
  2. 高 PSRR:75dB(120Hz)能有效抑制开关电源或变换器带来的低频纹波,适合作为开关电源的后级线性滤波器。
  3. 低输出噪声:典型噪声仅 ~0.003%Vout,适合对噪声敏感的模拟、射频前端等应用。
  4. 完善保护:内置过流与热关断保护,提升在短路或过载情况下的系统可靠性。
  5. 封装与散热:SOT-223 兼顾体积与散热性能,适合 PCB 面板安装和中等功率应用。

四、典型应用场景

  • 单片机 / MCU、FPGA 的 3.3V 电源
  • 无线通信模块、射频前端的低噪声供电
  • 开关电源后的后级稳压与滤波
  • 传感器、数据采集系统与模拟电路电源
  • 家用电器与工业控制中对 3.3V 电源有中等电流需求的场合

五、布线与外围元件建议

  • 输入侧建议放置 10µF(或更高)的去耦电容,靠近器件输入脚,以减少 PCB 布线感抗造成的振荡或瞬态问题。
  • 输出侧建议使用 10µF(钽电容或低 ESR 铝电解)作为主旁路电容,以保证稳压器稳定性与瞬态响应。若使用陶瓷电容(低 ESR),需要参考厂家建议在输出端并联一只有适当 ESR 的电容或串联微小电阻,避免低 ESR 导致的不稳定。
  • 地线应采用低阻抗铺铜,输入、输出和地线的回流路径尽量短且直接,SOT-223 的散热面需与 PCB 大面积铜箔或散热片良好贴合以利散热。
  • 在高纹波或长输入线的场合,输入处可并联一只较大容量的电解电容以抑制输入尖峰。

六、热设计与可靠性注意

  • 功耗计算:P = (Vin - 3.3V) × Iout。稳压器的结温受功耗与 PCB 散热条件影响,长时间接近最大输出会产生较大热量。
  • 在 SOT-223 封装下,应通过增加散热铜皮面积或外部散热片来降低结温,避免触发热关断。
  • 工作环境温度范围为 -25°C ~ +125°C,设计时需考虑器件在高温条件下的输出能力下降与可靠性影响。

七、选型与使用提醒

  • 若系统要求最高效率或长期大电流输出(接近 1A)且输入-输出压差较大,建议评估开关型稳压器以降低功耗与发热。LD1117SG-3.3 更适合追求低噪声、良好 PSRR 与简易电路的场合。
  • 在 PCB 设计与外围电容选型上,应严格遵循稳压器稳定性要求,避免仅使用超低 ESR 陶瓷电容而导致的动态不稳定。
  • 最终设计前请参考 BLUE ROCKET 的完整数据手册以获取更详细的绝对最大额定值、典型曲线与应用电路。

如需电气参数的完整典型曲线、封装尺寸图或参考电路图,可提供进一步需求以便补充详细资料。

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