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For more than 80 years, Texas Instruments has used increasingly complex signal-processing technology – with advances ranging from the incremental to the revolutionary – to literally and repeatedly change the world.
Every day, our semiconductor innovations help 90,000 customers unlock possibilities for a smarter, safer, greener, healthier and more enjoyable world. Our focus on building a better future is ingrained in everything we do, from responsible semiconductor manufacturing, to employee care and active involvement with the communities we live in.
Texas Instruments Articles
Dual motor control with digital interleaved PFC for HVAC reference design
The TIDM-02010 reference design is a 1.5-kW dual motor drive and PFC control reference design for variable frequency air conditioner outdoor unit controller in HVAC applications, which illustrates a method to implement sensorless 3-phase PMSM vector control for compressor and fan motor drive, and digital interleaved boost PFC for meeting new efficiency standards with a single C2000 microcontroller.
How MCUs Built With Innovative C29 Cores Increase Real-Time Performance
Real-time microcontrollers (MCU) play a crucial role in helping high-voltage automotive and energy infrastructure systems meet power efficiency, power density, and safety design requirements. From onboard chargers (OBC) to uninterruptible power supplies (UPS), these devices must deliver fast, deterministic performance for timecritical tasks in harsh environments.
Out of this world: How semiconductor technology enables environmental research from space
It’s been challenging over the course of human history to understand the ripple effect caused by environmental events. How did frost in a pine forest followed by a storm front bringing heavy rain lead to a sudden influx of silt in a harbor hundreds of miles away?
F29H850TU by Texas Instruments
The F29H85x and F29P58x are members of the C2000 real-time microcontroller family of scalable, ultra-low latency devices designed for efficiency in power electronics, including but not limited to: high power density, high switching frequencies, and supporting the use of GaN and SiC technologies.
F29H859TU-Q1 by Texas Instruments
The F29H85x and F29P58x are members of the C2000 real-time microcontroller family of scalable, ultra-low latency devices designed for efficiency in power electronics, including but not limited to: high power density, high switching frequencies, and supporting the use of GaN and SiC technologies.
Phased array antenna systems: A new paradigm for electronics in satellites
Radar and cellular communication systems operate – both on the ground and in space – in specific frequency bands limited by government standards bodies such as the Federal Communications Commission. With most of the radio frequency (RF) spectrum already occupied, engineers had to find new ways to use it more efficiently,
Migration Between TMS320F2837x/2807x and TMS320F28P65x
This migration guide describes the hardware and software differences to consider when moving between F2837x/F2807x and F28P65x C2000 MCUs. This document shows the block diagram between the two MCUs as a visual representation on what blocks are similar or different.
Industry’s first space-grade 200V GaN FET gate driver
Texas Instruments (TI) has announced a new family of radiation-hardened and radiation-tolerant half-bridge gallium nitride (GaN) field-effect transistor (FET) gate drivers.
How Space Enhanced Products Address Challenges in low Earth orbit Applications
One of the more exciting aspects of the emerging new space market is the launch of high-volume low Earth orbit (LEO) satellites that are small and economically feasible, but also radiation-tolerant and reliable. These satellites enable expanded communication and connectivity around the world.
Getting Started With C2000 Real-Time Control Microcontrollers
This guide is a valuable reference that contains all of the necessary information to get started with C2000 real-time Microcontrollers (MCUs). It covers all aspects of development with C2000 devices from hardware to support resources. In addition to key reference documents, each section provides relevant links and resources to further expand on the information covered.
TI Space Products Guide
Our heritage in space applications spans over 60 years, dating as far back as 1958 when the first satellite launched by the U.S., Explorer I, carried aloft radiation detection circuitry using the newly released TI 2N335 silicon-grown junction transistor. From that first satellite, to the first moon landing and first comet landing, to exploring the planets, TI semiconductor devices have been there.
TMS320F28P65x Real-Time Microcontrollers
The TMS320F28P65x (F28P65x) is a member of the C2000 real-time microcontroller family of scalable, ultra-low latency devices designed for efficiency in power electronics, including but not limited to: high power density, high switching frequencies, and supporting the use of IGBT, GaN, and SiC technologies.
Setting a new standard for electronics in space
Learn about our collaboration with NASA and industry leaders in developing radiation-hardened, plastic packaging for space electronics, known as QML Class P, to power missions with size, weight and power in mind.
EDGE-AI-STUDIO by Software development tools for edge AI
Edge AI Studio is a collection of graphical and command line tools designed to accelerate edge AI development on TI processors and microcontrollers. Whether developing a proof of concept using a model from the TI Model Zoo or leveraging your own model, Edge AI Studio provides the tooling you need.
Out of this world: How semiconductor technology enables environmental research from space
It’s been challenging over the course of human history to understand the ripple effect caused by environmental events. How did frost in a pine forest followed by a storm front bringing heavy rain lead to a sudden influx of silt in a harbor hundreds of miles away?
SimpleLink Wi-Fi CC32xx software development kit (SDK)
The SimpleLink Wi-Fi CC32XX SDK contains drivers for the CC3220 and CC3235 programmable MCU and documentation needed to use the solution. It also contains the flash programmer, a command line tool for flashing software, configuring network and software parameters (SSID, access point channel, network profile, etc.), system files, and user files (certificates, web pages, etc).
Expert discussion: Battery-management trends in energy storage
The transition to renewable energy sources and buildout of EV chargers impact our grid infrastructure. Learn from Samuel Wong, TI's vice president of Battery Management Solutions, and Richard Zhang, Virginia Tech professor of power electronics, as they discuss how technology improvements in battery systems are leading to energy storage adoption and helping to strengthen our grid.
IWRL6432AOPEVM by Texas Instruments
The xWRL6432AOPEVM is an easy-to-use, low cost FR4-based evaluation board for the xWRL6432AOP mmWave sensing device, with standalone operation and direct connectivity to the DCA1000EVM for raw ADC capture and signal processing development.
TIDA-010271 by Texas Instruments
This is a full cell-temperature sensing and high cell voltage accuracy Lithium-ion (Li-ion), lithium iron phosphate (LiFePO4) battery pack (32s) reference design. The design monitors each cell voltage, cell temperature and protects the battery pack to secure safe use.
IWRL6432 BoosterPack evaluation module
IWRL6432BOOST is an easy-to-use 60GHz mmWave sensor evaluation kit based on IWRL6432 device with on board FR4-based antenna. This board enables access to point-cloud data and power-over-USB interface.