WMSIC Electronic Components

SUPSiC GAQY412S

ModelGAQY412S
PackageSOP4
BrandSUPSIC
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
SUPSi C GAQY412S
Type
SUPSIC
Minimum package
2000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
SUPSIC
Electronic Component
GAQY412S
Electronic Component
1
Package
SOP4
Electronic Component
Solid State Relay (MOS Output)
Electronic Component
0.344g
Electronic Component
1
Electronic Component
BM0229953532
Resistor
800mΩ
Operating Temperature
40℃~+85℃
Electronic Component
1B
Load Voltage
60V
Type
AC,DC
(Pd)
350mW
(Vf)
1.2V

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

GAQY412S 产品概述

GAQY412S 是 SUPSiC(国晶微半导体)推出的一款小型 SOP4 封装光电隔离固态继电器(PhotoMOS)元件,触点形式为 1B(单刀单掷,常闭)。器件针对低功耗、长寿命、无触点切换场合设计,支持 AC/ DC 输入驱动,适用于精密测量、信号切换和小功率开关场景。

一、主要性能亮点

  • 触点形式:1B(单刀单掷 - 常闭),便于在断电或未驱动状态下维持常闭回路。
  • 连续负载电流:500 mA(最大连续输出电流)。
  • 负载电压:最大 60 V。
  • 导通电阻:典型 800 mΩ(导通态低电阻,压降小)。
  • 正向压降(输入 LED):Vf = 1.2 V(典型)。
  • 正向电流(驱动):If = 7 mA(推荐驱动电流以保证导通性能)。
  • 导通/截止动态:Ton ≈ 250 μs,Toff ≈ 500 μs,适合中速开关应用。
  • 隔离电压(Vrms):2.5 kV,满足常见的信号隔离和安全需求。
  • 工作温度范围:-40 ℃ ~ +85 ℃。
  • 总功耗(Pd):350 mW(器件最大允许功耗,包含输入与输出部分)。
  • 封装:SOP4,便于表贴装配与混合自动化生产。

二、典型电气计算与设计提示

  • 输出端压降与功耗:在最大连续电流 500 mA 时,导通压降约 Vdrop = I × R = 0.5 A × 0.8 Ω = 0.4 V;对应输出端功耗 Pout = I^2 × R = 0.5^2 × 0.8 = 0.2 W(200 mW)。
  • 输入端功耗:在 If = 7 mA、Vf = 1.2 V 下,输入消耗约 Pin = Vf × If = 1.2 V × 7 mA = 8.4 mW。
  • 器件总功耗示例:Ptotal ≈ 200 mW + 8.4 mW ≈ 208.4 mW,低于器件 Pd = 350 mW,但仍需考虑环境温度上升和散热条件。
  • 驱动限流电阻示例:若以 5 V 单片机 IO 驱动,限流电阻 R = (5 V − Vf) / If = (5 − 1.2) / 7 mA ≈ 543 Ω,常用 560 Ω;若以 3.3 V 驱动,R ≈ 300 Ω(可取 330 Ω)。

注意:在高环境温度或连续满载情况下,应按数据手册的温度特性曲线对最大载流能力进行降额(derating)。

三、封装与 PCB 布局建议

  • SOP4 小型引脚排列有利于高密度布板,但热阻相对较大。为保证可靠性,应在 PCB 侧增加铜箔面积作为散热路径。
  • 对输出回路建议使用较宽的走线或加焊盘以降低 PCB 上的附加电阻与发热。必要时考虑热沉或多层板的过孔热通路。
  • 输入 LED 端需串联限流电阻,并在驱动端放置反向保护(如限压二极管)以防脉冲或反向电压损伤 LED。
  • 若输出侧叠加感性负载(例如小继电器线圈、继电器驱动等),建议在负载侧增加吸收电路(RC 抑制或 TVS)以抑制瞬态电压。

四、应用场景

  • 精密仪表与测试设备:对信号完整性要求高、需长期可靠切换的测量通道。
  • 通信与网络设备:用于低功耗信号路由、断路与隔离。
  • 工业控制小信号开关:传感器、开关量输入或控制回路隔离。
  • 电池供电的便携设备:低正向电流驱动、低导通压降减少系统功耗。
  • 医疗及安规要求场合(需核对认证):凭借 2.5 kVrms 隔离能力,适合部分低压隔离应用。

五、可靠性与选型注意事项

  • 与机械继电器相比,PhotoMOS 无触点、无机械磨损、抗震性好、寿命长。
  • 链路隔离能力需结合系统的瞬态与工频耐压要求评估;若系统要求更高耐压等级,请选寻更高隔离额定的型号。
  • 高频开关或要求亚毫秒级响应的场合,需注意本器件 Ton/Toff 在数百微秒量级,不适用于高速 PWM 调制。
  • 在高温环境或连续满载工况下,应参考数据手册的热阻与降额曲线进行安全裕量设计。
  • 最终设计前,请参阅完整规格书获取引脚定义、封装尺寸、典型曲线与安全认证信息。

总结:GAQY412S 以其低导通电阻、低驱动电流、可 AC/DC 驱动和较高隔离电压的特点,适合中等电流、需长寿命与高可靠性的开关隔离应用。合理的 PCB 散热与驱动限流设计能保障器件在各种工况下稳定运行。

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