ADS1220 by: Texas Instruments

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Reference Designs related to ADS1220

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  • Temperature Sensor Interface Module for Programmable Logic Controllers (PLC)
    The TIDA-00018 reference design enables faster development of high precision temperature measurement solutions using 24-Bit delta-sigma ADC and most widely used temperature sensors like thermocouple and RTD. The design guide will address the sensor signal conditioning: thermocouple cold junction compensation: ratiometric measurement technique for RTD: recommended software flow: sensor linearization: sensor diagnostics: transient protection: PCB layout and other practical design considerations for achieving high precision robust design for temperature measurement in industrial applications.  The Temperature Sensor Interface Module is a fully isolated design: which is essential for small sensor signal measurement. The heart of this reference design is a 24-Bit delta-sigma ADC that provides a high resolution: high integration: low noise: and low cost complete sensor analog front-end (AFE) for DC sensing applications. This ADC also makes it suitable to interface with different types of sensors: thus saving board space: reducing design efforts: decreasing the time to market: and lower BOM cost. Furthermore: external protection circuitry has been successfully tested for compliance with regulatory IEC61000-4 EFT: ESD: and surge standards. Compliance to IEC61000-4 is necessary to ensure that the design not only survives but also perform as intended in the harsh/noisy industrial environment.
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  • RTD Temperature Transmitter for 2-wire: 4 to 20-mA Current Loop Systems
    This comprehensive design provides a complete system that measures and processes temperature signals  inputs from 2-wire: 3-wire: and 4-wire resistance temperature detectors (RTDs) and outputs a 4 to 20-mA current-loop signal corresponding to the temperature processed from the RTD inputs. It is intended as a reference design for process measurement applications in factory automation: field transmitters and building automation. With less than 0.17 °C maximum measured error over -200 °C to 850 °C: extremely low loop power consumption 1.4mA  (typical including RTD biasing currents) and IEC61000 pre compliance testing: this design significantly reduces the design time for development of high accuracy temperature transmitter systems. It also addresses system level calibration - both offset and gain that can be implemented to improve ADC and DAC accuracy as well as also includes linear interpolation to address the non-linearity of the RTD element.
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    This is a reference design for a robust: low power: precise and long-term stable 2-wire loop powered 4 to 20mA current output temperature transmitter. It uses RTD temperature sensor with 4 to 20mA current loop transmitter. It also explains sensor signal conditioning: ratiometric measurement technique: recommended software flow: calibration: sensor linearization: PCB layout and other practical design considerations. Furthermore: external protection circuitry is deployed in-place for compliance with regulatory IEC61000-4 standards – EFT: ESD and Surge requirements. EMC compliance to IEC61000-4 is necessary to ensure that the design not only survives but also performs as intended in the harsh/noisy industrial environment. All the relevant design files like Schematics: BOM: Layer plots: Altium files: Gerber and MSP430 MCU software have also been provided to the users.
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  • Optimized Latency: Power and Memory Footprint Thermocouple Sensing Front-end Reference Design
    The TIDA-00468 Reference design shows how to build an isolated thermocouple sensing front-end with optimized power-consumption for loop powered application while:• reducing footprint from classical look-up table approach and• keeping the fast response time of linear piece wise interpolation
  • IO-Link Sensor Transmitter Reference Design
    This reference design offers a rapid prototyping platform for IO-Link sensor transmitter. Due to its modular design: different sections can be easily cut away to allow fast and simple interfacing of any analog or digital sensor.  The design is programmed with a fully validated IO-Link stack leveraging the fully validated IO-Link PHY. It comes by default with a switch emulating a digital input: 2 LEDs for status indications and a potentiometer emulating an RTD (read by a 24-bit front-end). All this fits in a 6-mm wide PCB compatible with the industry-standard M12 connector.Watch a TIDA-00188 overview video on the IO-Link sensor transmitter.For more information on TMG Click here.
  • Isolated Loop Powered Thermocouple Transmitter Reference Design
    The Isolated Loop powered Thermocouple Transmitter reference design is a system solution providing precision K-type thermocouple measurements for 4 to 20-mA isolated current-loop applications. This design is intended as an evaluation module for users to fast prototype and develop end-products for process-control and factory-automation. Potential challenges with thermocouples as a temperature sensor include tiny voltage outputs: low sensitivity and nonlinearity; in addition: because in industrial environments ground potential differences higher than 100V are common: thermocouple and signal conditioning circuitry must be galvanically isolated. The design files include design considerations: block diagrams: schematics: Bill of Materials (BOM): layer plots: Altium files: Gerber Files: and MSP430 Firmware.Watch the TIDA-00349 Overview video: covering the same isolated power topology as used in the TIDA-00189 NOW
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    This reference design can be used to quickly establish a wireless mesh network that connects various types of sensors directly to the Internet. Inputs like RS232: RS485 or RTD are on the board to collect data for predictive maintenance from different sensors and machines. For data processing a high performance ARM Cortex M4F MCU with Floating Point Unit and DSP acceleration is on the board.
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  • Wireless Thermocouple Sensor Transmitter DevPack for SensorTag Reference Design
    The TIDA-00650 reference design shows how to build a wireless thermocouple based temperature transmitter. The design is in the DevPack form factor which can be used in combination with TIs SensorTag. This allows for the development of a wireless link with Bluetooth® Smart or other wireless technologies (Zigbee: WiFi: sub 1GHz). The 24-bit ∆Σ sensor front-end utilized in this design allows for operation over the -40 to +85C temperature range.
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    TIDA-00765 is a less than 100nVpp analog front end for resistive strain gauge bridge load cell-based weight and vibration measurement. It is ideally suited for appliances: which require high-resolution due to large dynamic range or have considerable weight offset. In the face of significant levels of switching supply noise and rapid temperature changes: drift and interference are common issues in harsh environments. The design’s high integration: AC excitation: and robust filtering suppress drift and interference to ensure consistent performance in tough environments.
  • Thermocouple AFE Using RTD or Integrated Temperature Sensor for Cold Junction Compensation (CJC)
    The sole objective of this reference design is to provide comprehensive details on how to design a simple: robust: and accurate analog front end (AFE) circuit for making precision temperature measurements with thermocouple sensors. TIDA-00168 explains the theory: operation: and complications involved in a step-by-step manner. Additionally: this reference design emphasizes topics like error analysis: the necessity of an anti-aliasing filter: biasing resistors for sensor diagnostics: CJC: linearization technique for sensor data: and the design challenges of printed circuit boards.
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  • TIDA-00814 射频采样 S 频带雷达接收器参考设计
    使用 3Gsps、14 位模数转换器 (ADC) ADC32RF45 演示了在 S 频带工作的雷达系统的直接射频采样接收器方法。射频采样通过取消下变频降低了系统复杂性,并且使用高采样率实现了更宽的信号带宽。通过构建基于 ASR-11 空中交通控制雷达规范的接收器来演示该方法。

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