WMSIC Electronic Components

XTX FT118S

ModelFT118S
PackageSOT23-6
BrandXTX
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
XTX FT118S
Type
XTX
Minimum package
3000 片

Technical parameters

Electronic Component
Electronic Component
Electronic Component
XTX
Electronic Component
FT118S
Electronic Component
1
Package
SOT23-6
Electronic Component
Brushed DC Motor Driver IC
Electronic Component
0.112g
Electronic Component
1
Integrated FET
Electronic Component
Features
Electronic Component
Electronic Component
BM0264982908
Resistor
540mΩ
Current
2A
Operating Temperature
40℃~+85℃
Operating Voltage
2.4V~7.2V
Output Current
1.2A

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

FT118S 产品概述

一、产品简介

FT118S(XTX 芯天下)是一款为消费类产品、玩具及其它低压、电池供电的运动控制场景量身打造的全集成直流电机驱动器。器件内部集成功率 PMOS 和 NMOS 构成的 H 桥,支持电机正转、反转、停止(滑行)与主动刹车四种控制模式,外置极少的外围元件即可实现简单可靠的电机控制方案。封装为 SOT23-6,适合空间受限且成本敏感的产品设计。

二、主要电气参数

  • 工作电压:2.4 V ~ 7.2 V(适用于单节锂电/镍氢等低压电源场景)
  • 连续输出电流:1.2 A(典型)
  • 峰值输出电流:2 A(短时允许)
  • 单管导通电阻 RDS(on):540 mΩ(典型)
  • 静态电流(Iq):100 nA(典型,待机能耗极低)
  • 工作温度:-40 ℃ ~ +85 ℃
  • 封装:SOT23-6

三、功能与保护特性

  • H 桥四象限控制:支持正/反转、停止(滑行)与主动刹车;通过两个逻辑输入 INA、INB(PWM 支持)实现速度与方向控制。典型控制关系如下:
    • INA=1, INB=0:正转
    • INA=0, INB=1:反转
    • INA=0, INB=0:停止(滑行)
    • INA=1, INB=1:主动刹车
  • 集成保护:器件带过温保护与欠压闭锁(UVLO),提高系统可靠性,避免过热或电源不足时异常工作。
  • 兼容性:INA/INB 支持 PWM 控制,与行业常见驱动器和微控制器 3.3 V / 5 V 逻辑电平兼容(在器件 VCC 范围内使用)。

四、典型应用场景

  • 电池供电的小型玩具与模型(单电池或低压电池方案)
  • 小型家用电器与消费电子中的直流电机驱动(如小风扇、振动机构)
  • 便携式运动控制装置与步进辅助系统(需注意功耗与散热)
  • 低功耗待机场景的电机控制模块(得益于极低静态电流)

五、设计与使用建议

  • 散热与功率预算:单管典型 RDS(on)=0.54 Ω,H 桥导通路径通常由两只 MOSFET 串联,总等效导通电阻约 1.08 Ω。以连续电流 1.2 A 计算,导通损耗约为 I^2·R ≈ 1.55 W;峰值 2 A 时损耗显著增加(≈4.32 W)。因此在长期接近额定电流工作时需评估封装散热能力、PCB 铜箔面积及环境温度,必要时限制平均电流或采用间歇工作/短时脉冲驱动策略。
  • 电源与去耦:建议在 VCC 处靠近器件放置低 ESR 陶瓷电容(例如 4.7 µF~10 µF)以抑制瞬态电压跌落和回路干扰。若电机产生较大反向电压尖峰,可在电源线上增加一定的串联阻抗或滤波元件。
  • 布局注意事项:保持电源回路和电机回路走线短且宽,尽量将大电流回路与敏感信号分开以降低噪声耦合;GND 平面尽量完整,SOT23-6 封装的散热依赖于 PCB 铜箔。
  • 输入控制:INA/INB 支持 PWM 调速,避免在高占空比且长时间满载条件下连续工作以降低温升风险。对于需要快速制动的场合可利用主动刹车模式实现电机制动。

六、器件优势与适用性

FT118S 在小型低压电机应用中具有如下优势:集成功能高、外围元件少、待机功耗极低、支持主动制动、并带有必要的自保护机制,适合对成本、空间、能耗有较高要求的便携与消费类产品。但在高功率或持续大电流场合需注意热设计,必要时选择更大功率封装或外部散热方案。

总结:FT118S 为低压电池供电的直流有刷电机提供了简单、集成度高且能耗低的驱动解决方案,尤其适合玩具、便携消费品和低速小功率运动控制场景。设计时重点关注功耗、散热与电源去耦即可获得稳定可靠的运行。

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