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首页 > 电子元器件选型 > 微控制器和处理器 > 并行 IO 端口

TCA9535RTWR

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TCA9535RTWR
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Texas Instruments

16-bit 1.65- to 5.5-V I2C/SMBus I/O expander with interrupt & config registers 24-WQFN -40 to 85

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¥9.9265
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生命周期状态: Active
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TIDA-00468 Optimized Latency, Power and Memory Footprint Thermocouple Sensing Front-end Reference Design | TI.com
TIDA-00468: 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
TIDA-00246 Generic Energy Harvesting Adapter Module for Thermoelectric Generators (TEG) Reference Design | TI.com
TIDA-00246: This TI Design aims at providing a generic solution for energy harvesting while giving a practical application application for thermoelectric generators (TEG). It is a fully programmable state-machine which runs at 60nA and can enable and disable key functions as they are needed by the system to optimize power consumption. TIDA-00246 acts as a BoosterPack for the MSP430FR5969 LaunchPad Development Kit (MSP-EXP430FR5969) for use as an ultra-low power state machine. For more information on II-VI Marlow: Click here.
Thermocouple AFE Using RTD or Integrated Temperature Sensor for Cold Junction Compensation (CJC)
TIDA-00168: 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.
TIDA-00168 Thermocouple AFE Using RTD or Integrated Temperature Sensor for Cold Junction Compensation (CJC) | TI.com
TIDA-00168: 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.
TIDM-CAPTOUCHEMCREF Noise Tolerant Capacitive Touch HMI Reference Design | TI.com
TIDM-CAPTOUCHEMCREF: The Noise Tolerant Capacitive Touch HMI design (TIDM-CAPTOUCHEMCREF) is a reference design for implementing noise tolerant capacitive touch human-machine interfaces (HMIs). It integrates TI's MSP430FR2633 microcontroller (MCU) featuring high performance CapTIvate™ touch technology with the TPS7A4533 linear regulator and UCC28910 flyback switcher. This reference design demonstrates how to design hardware and software that can pass challenging system level tests for conducted RF immunity, electrical fast transient/burst immunity, and electrostatic discharge immunity by applying a three-sided design approach consisting of hardware design techniques, CapTIvate technology peripheral features and software signal processing.
Generic Energy Harvesting Adapter Module for Thermoelectric Generators (TEG) Reference Design
TIDA-00246: This TI Design aims at providing a generic solution for energy harvesting while giving a practical application application for thermoelectric generators (TEG). It is a fully programmable state-machine which runs at 60nA and can enable and disable key functions as they are needed by the system to optimize power consumption. TIDA-00246 acts as a BoosterPack for the MSP430FR5969 LaunchPad Development Kit (MSP-EXP430FR5969) for use as an ultra-low power state machine. For more information on II-VI Marlow: Click here.
Optimized Latency, Power and Memory Footprint Thermocouple Sensing Front-end Reference Design
TIDA-00468: 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
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