ZHCSKT9C January   2020  – March 2021 THP210

PRODUCTION DATA  

  1. 特性
  2. 应用
  3. 说明
  4. Revision History
  5. Pin Configuration and Functions
  6. Specifications
    1. 6.1 Absolute Maximum Ratings
    2. 6.2 ESD Ratings
    3. 6.3 Recommended Operating Conditions
    4. 6.4 Thermal Information
    5. 6.5 Electrical Characteristics
    6. 6.6 Typical Characteristics
  7. Parameter Measurement Information
    1. 7.1 Characterization Configuration
  8. Detailed Description
    1. 8.1 Overview
    2. 8.2 Functional Block Diagram
    3. 8.3 Feature Description
      1. 8.3.1 Super-Beta Input Bipolar Transistors
      2. 8.3.2 Power Down
      3. 8.3.3 Flexible Gain Setting
      4. 8.3.4 Amplifier Overload Power Limit
      5. 8.3.5 Unity Gain Stability
    4. 8.4 Device Functional Modes
  9. Application and Implementation
    1. 9.1 Application Information
      1. 9.1.1 I/O Headroom Considerations
      2. 9.1.2 DC Precision Analysis
        1. 9.1.2.1 DC Error Voltage at Room Temperature
        2. 9.1.2.2 DC Error Voltage Over Temperature
      3. 9.1.3 Noise Analysis
      4. 9.1.4 Mismatch of External Feedback Network
      5. 9.1.5 Operating the Power-Down Feature
      6. 9.1.6 Driving Capacitive Loads
      7. 9.1.7 Driving Differential ADCs
        1. 9.1.7.1 RC Filter Selection (Charge Kickback Filter)
        2. 9.1.7.2 Settling Time Driving the ADC Sample-and-Hold Operating Behavior
        3. 9.1.7.3 THD Performance
    2. 9.2 Typical Applications
      1. 9.2.1 MFB Filter
        1. 9.2.1.1 Design Requirements
        2. 9.2.1.2 Detailed Design Procedure
        3. 9.2.1.3 Application Curve
      2. 9.2.2 ADS891x With Single-Ended RC Filter Stage
        1. 9.2.2.1 Design Requirements
          1. 9.2.2.1.1 Measurement Results
      3. 9.2.3 Attenuation Configuration Drives the ADS8912B
        1. 9.2.3.1 Design Requirements
          1. 9.2.3.1.1 Measurement Results
  10. 10Power Supply Recommendations
  11. 11Layout
    1. 11.1 Layout Guidelines
      1. 11.1.1 Board Layout Recommendations
    2. 11.2 Layout Example
  12. 12Device and Documentation Support
    1. 12.1 Device Support
      1. 12.1.1 Development Support
    2. 12.2 Documentation Support
      1. 12.2.1 Related Documentation
    3. 12.3 接收文档更新通知
    4. 12.4 支持资源
    5. 12.5 Trademarks
    6. 12.6 静电放电警告
    7. 12.7 术语表
  13. 13Mechanical, Packaging, and Orderable Information

封装选项

机械数据 (封装 | 引脚)
散热焊盘机械数据 (封装 | 引脚)
订购信息

说明

THP210 是一款超低失调电压、低噪声、高电压、精密、全差分放大器,可轻松过滤和驱动全差分信号链。THP210 还可用于将单端源转换为高分辨率模数转换器 (ADC) 所需的差分输出。双极性超级 ß 输入专为实现出色的失调电压、低噪声和 THD 而设计,可在极低的静态电流和输入偏置电流下产生极低的噪声系数。该器件专为要求低失调电压和功耗以及高信噪比 (SNR) 的信号调节电路而设计。

THP210 具有高压电源功能,支持高达 ±18V 的电源电压。高压差分信号链可通过该功能提高裕量和动态范围,而无需为差分信号的每个极性添加单独的放大器。极低的电压和电流噪声使得 THP210 可用于高增益配置,而对信号保真度的影响微乎其微。

器件信息(1)
器件型号 封装 封装尺寸(标称值)
THP210 VSSOP (8) 3.00mm × 3.00mm
SOIC (8) 4.90mm x 3.91mm
如需了解所有可用封装,请参阅数据表末尾的封装选项附录。

 

GUID-28A3231B-EBAA-4ADC-9A3E-211292821908-low.gif精密、低噪声、低功耗、全差分放大器增益模块和接口
GUID-99EBC41D-4832-4E4B-9F2A-7AE5D94E3DEB-low.gif低输入失调电压