STMicroelectronics Current Sense Amplifiers

Learn more about how current sense amplifiers work, when bi-directional current sense is needed, and discover STMicro’s portfolio of current sense amplifier solutions.

Overview


HOW DOES A CURRENT SENSE AMPLIFIER WORK?

Body Image 1-STMicroelectronics Current Sense Amplifiers 

The working principle of a current sensing amplifier is based on Ohm's law. When load current flows through a shunt resistor (Rshunt) present on inputs, it generates a voltage drop called VSENSE. This voltage is generally small to limit power dissipation losses.

VSENSE is then amplified with an internal instrumentation amplifier. The resulting output voltage (VOUT) is a voltage which is proportional to the Load current. It can then be processed with an ADC (analog-to-digital converter).



WHEN IS BI-DIRECTIONAL CURRENT SENSE NEEDED?

Body Image 2-STMicroelectronics Current Sense Amplifiers 

In some applications, current can flow into the load in both directions. This is the case for brushed motor control applications used in H-Bridge topologies, as shown in the diagram. The direction and speed of rotation of the motor can be determined by measuring the voltage drop across the shunt.

 

 

 

 

 

Another example where bi-directional current sensing is required is brushless DC motor control, using inline current sense shunts on each of the three motor phases, as shown in the diagram. Inline phase current sensing is the best method to know precisely the phase current flowing into the motor. This current measurement offers the best information that can be used in feedback motor control, in order to optimize the motor performance.


Body Image 3-STMicroelectronics Current Sense Amplifiers

Bi-directional current sense amplifiers utilize a VREF input pin in order to set the output reference anywhere within the power supply range.


Current Sense Amplifier Product Line Overview


Body Image 4-STMicroelectronics Current Sense Amplifiers

Summary of bi-directional current sense amplifier part numbers

  Gain  Bandwidth  VICM Supply
TSC213 x50 100 kHz -0.3V to 26V 2.7V to 26V
TSC210 x200 25 kHz -0.3V to 26V 2.7V to 26V
TSC212 x1000 6 kHz -0.3V to 26V 2.7V to 26V
TSC2010 x20 >1 MHz -20V to +70V 2.7V to 5.5V
TSC2011 x60 600 kHz -20V to +70V 2.7V to 5.5V
TSC2012 x100 390 kHz -20V to +70V 2.7V to 5.5V

The TSC201x family supports precise measurement of faster signals and wider common mode input voltage range. The TSC21x family is well suited for extremely accurate measurement of slower signals.

The TSC201x and TSC21x devices are included in the ST 10-Year Longevity Commitment, with guaranteed availability until November 2029.


Body Image 5-STMicroelectronics Current Sense Amplifiers

Competing Solutions

Body Image 6-STMicroelectronics Current Sense Amplifiers

TSC201x Evaluation Board: STEVAL-AETKT1V1

Body Image 7-STMicroelectronics Current Sense Amplifiers

  • •  Supports SMT and THT types of shunts
  • •  Allows simple set of VREF and standby pin by jumpers
  • •  Embeds RC filter
  • •  External wire connection
  • •  TSC201x on daughter board

TSC201x device Input offset voltage vs. input common mode with VCC = 5 V


Body Image 9-STMicroelectronics Current Sense Amplifiers

Resources

Current Sensing Basics

ST Product Portfolio for Current Sensing

TSC210x and TSC21x Use Cases

Current Sensing Error Analysis

ST Evaluation Tools for Current Sensing

On Demand Webinar

Current Sense Amplifiers for Shunt-Based Current Sensing

REGISTER NOW

参阅相关产品

TSC213ICT

STMicroelectronics 立体声功率放大器 查看

参阅相关产品

TSC2011IDT

STMicroelectronics 立体声功率放大器 查看

参阅相关产品

TSC2012IST

STMicroelectronics 立体声功率放大器 查看

 

相关新闻文章

最新消息

Sorry, your filter selection returned no results.

请仔细阅读我们近期更改的隐私政策。当按下确认键时,您已了解并同意艾睿电子的隐私政策和用户协议。

本网站需使用cookies以改善用户您的体验并进一步改进我们的网站。此处阅读了解关于网站cookies的使用以及如何禁用cookies。网页cookies和追踪功能或許用于市场分析。当您按下同意按钮,您已经了解并同意在您的设备上接受cookies,并给予网站追踪权限。更多关于如何取消网站cookies及追踪的信息,请点击下方“阅读更多”。尽管同意启用cookies追踪与否取决用户意愿,取消网页cookies及追踪可能导致网站运作或显示异常,亦或导致相关推荐广告减少。

我们尊重您的隐私。请在此阅读我们的隐私政策。