WMSIC Electronic Components

GATEMODE GM7333TA

ModelGM7333TA
PackageSOT-89-3
BrandGATEMODE
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
GATEMODE GM7333TA
Type
GATEMODE
Minimum package
1000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
700mV@(150mA)
Electronic Component
GATEMODE
Electronic Component
190uVrms
Electronic Component
GM7333TA
Electronic Component
1
Package
SOT-89-3
Electronic Component
Linear Regulator(LDO)
Electronic Component
0.19g
Electronic Component
1
Features
Current
Electronic Component
BM0265198900
Operating Temperature
40℃~+125℃
Operating Voltage
40V
Output
Electronic Component
Output Voltage
3.3V

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

GM7333TA 产品概述

GM7333TA 是捷茂微(GATEMODE)推出的一款高压、超低静态电流线性稳压器(LDO),为需要从较高输入电压直接降压至 3.3V 的低功耗终端提供稳定电源解决方案。器件支持最高 40V 输入、200mA 连续输出,具有多重保护与很低的待机电流,适合工业与便携式应用的电源管理。

一、主要性能亮点

  • 输出电压:固定 3.3V
  • 最大输入电压:40V
  • 最大输出电流:200mA
  • 压降(Dropout):700mV @ 150mA(典型)
  • 静态电流(Iq):典型 5µA,适合待机节能应用
  • 电源纹波抑制比(PSRR):80dB @ 10Hz,低频抑制性能优异
  • 噪声:190µVrms(典型)
  • 工作温度范围:-40℃ ~ +125℃
  • 输出通道数:1,固定输出
  • 封装:SOT-89-3(小封装,便于 PCB 布局)

二、功能与保护特性

  • 使能控制(EN):器件提供使能功能,可通过外部逻辑控制输出开/关(常见为高电平使能,应用时请以数据手册为准)。
  • 过流保护(OCP):在短路或负载过大时限制输出电流,保护芯片与负载。
  • 反极性电流保护:防止在 VIN 断电时 VOUT 反灌损坏芯片或上游电路。
  • 热关断(TSD):芯片温度过高时自动关断,防止热失效;恢复后自动重启。
  • 输入欠压锁定(UVLO):输入低于一定阈值时禁止输出,防止输出电压异常。

三、典型应用场景

  • 工业控制与检测仪表(24V/36V 总线降压)
  • 仪器仪表、传感模块的局部稳压电源
  • 电池供电或电源适配器供电的低功耗嵌入式设备
  • IoT 节点、数据采集模块、告警/通信模块等需要低待机功耗场合

四、封装与热设计注意事项

  • 封装为 SOT-89-3,适合追求小尺寸的设计,但热阻相对较高。实际热阻(θJA)受 PCB 铜箔面积、铜层厚度与过孔影响较大,通常需通过 PCB 散热优化来提升功率耗散能力。
  • 功率耗散计算:Pd = (Vin - Vout) × Iout。示例:若 Vin = 12V、Vout = 3.3V、Iout = 200mA,则 Pd ≈ (12 - 3.3) × 0.2 = 1.74W。此类功耗在 SOT-89 上需谨慎,建议:
    • 尽量减小 Vin 与 Vout 的差值;
    • 在高 Vin 或高负载场合采用开关降压预稳压或更大散热面积的 PCB;
    • 使用大面积接地/散热铜箔并考虑多层板过孔热传导。

五、外围元件与 PCB 布局建议

  • 输入电容:建议紧靠 VIN 引脚放置 1µF~10µF 的陶瓷电容(X5R/X7R),以抑制高频干扰和输入瞬变。
  • 输出电容:建议使用 1µF~10µF 的陶瓷电容(X5R/X7R),保持低 ESR,确保 LDO 稳定。若使用极低 ESR 的陶瓷电容导致稳定性问题,参考数据手册选择合适的 ESR 或并联一个小阻尼元件。
  • 布局要点:VIN、VOUT 到对应电容的走线应尽量短且宽;GND 应采用连续地平面,输出旁地与输入旁地分别靠近 LDO 引脚返回,减少寄生阻抗。
  • 使能控制线应避免长走线和噪声耦合,必要时在 EN 引脚使用上拉/下拉电阻设置确定的逻辑状态。

六、选型与使用建议

  • 当输入端电压与输出电压相差大且输出电流较高时,线性稳压器会产生大量热量,建议评估是否改用降压(buck)转换器或采用前级限压/一级降压以降低损耗。
  • GM7333TA 适合对待机功耗敏感、需要较高输入耐压且输出电流不超出 200mA 的场合。其高 PSRR 和低噪声特性适合对模拟前端、参考电路等对噪声敏感的应用。

总结:GM7333TA 在 40V 高输入环境下提供稳定的 3.3V 输出,具备低静态电流与完善的保护功能,适合小型化、低功耗与工业级电源设计。但在高压差高功耗场景需注意热管理与功耗限制,合理选择外围器件与 PCB 散热设计即可发挥其性能优势。

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