ZHCSYN2A July   2025  – September 2025 TMUX5411 , TMUX5412 , TMUX5413

PRODUCTION DATA  

  1.   1
  2. Features
  3. 应用
  4. Description
  5. 引脚配置和功能
  6. 规格
    1. 5.1  Absolute Maximum Ratings
    2. 5.2  ESD Ratings
    3. 5.3  Thermal Information
    4. 5.4  Recommended Operating Conditions
    5. 5.5  ±15V Dual Supply: Electrical Characteristics 
    6. 5.6  ±15V Dual Supply: Switching Characteristics 
    7. 5.7  48V Single Supply: Electrical Characteristics 
    8. 5.8  48V Single Supply: Switching Characteristics 
    9. 5.9  12 V Single Supply: Electrical Characteristics 
    10. 5.10 12V Single Supply: Switching Characteristics 
    11. 5.11 Typical Characteristics
  7. 参数测量信息
    1. 6.1  导通电阻
    2. 6.2  关断漏电流
    3. 6.3  导通漏电流
    4. 6.4  tON and tOFF Time
    5. 6.5  传播延迟
    6. 6.6  电荷注入
    7. 6.7  Off Isolation
    8. 6.8  Channel-to-Channel Crosstalk
    9. 6.9  Bandwidth
    10. 6.10 THD + 噪声
    11. 6.11 Power Supply Rejection Ratio (PSRR)
  8. 详细说明
    1. 7.1 概述
    2. 7.2 功能方框图
    3. 7.3 特性说明
      1. 7.3.1 双向运行
      2. 7.3.2 轨到轨运行
      3. 7.3.3 1.8 V Logic Compatible Inputs
      4. 7.3.4 Flat On-Resistance
      5. 7.3.5 上电时序不受限制
    4. 7.4 Device Functional Modes
      1. 7.4.1 真值表
  9. 应用和实施
    1. 8.1 Application Information
      1. 8.1.1 Typical Application - Gain Switching
        1. 8.1.1.1 Design Requirements
        2. 8.1.1.2 Application Curve
    2. 8.2 Power Supply Recommendations
    3. 8.3 布局
      1. 8.3.1 Layout Guidelines
      2. 8.3.2 Layout Example
  10. 器件和文档支持
    1. 9.1 文档支持
      1. 9.1.1 相关文档
    2. 9.2 接收文档更新通知
    3. 9.3 支持资源
    4. 9.4 商标
    5. 9.5 静电放电警告
    6. 9.6 术语表
  11. 10Revision History
  12. 11机械、封装和可订购信息

Power Supply Recommendations

The TMUX541x device operates across a wide supply range of ±4.5V to ±25V (4.5V to 50V in single-supply mode). The device also performs well with asymmetrical supplies such as VDD = 37.5V and VSS = –12.5V.

Power-supply bypassing improves noise margin and prevents switching noise propagation from the supply rails to other components. Good power-supply decoupling is important to achieve optimum performance. For improved supply noise immunity, use a supply decoupling capacitor ranging from 0.1μF to 10μF at both the VDD and VSS pins to ground. Place the bypass capacitors as close to the power supply pins of the device as possible using low-impedance connections. TI recommends using multi-layer ceramic chip capacitors (MLCCs) that offer low equivalent series resistance (ESR) and inductance (ESL) characteristics for power-supply decoupling purposes. For very sensitive systems, or for systems in harsh noise environments, avoiding the use of vias for connecting the capacitors to the device pins may offer superior noise immunity. The use of multiple vias in parallel lowers the overall inductance and is beneficial for connections to ground and power planes. Always make sure a solid ground (GND) connection is established before supplies are ramped.