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To simplify the development of ZigBee® wireless connectivity-enabled smart energy infrastructure, home and building automation and intelligent lighting gateways, Texas Instruments Inc. (TI) announced the availability of the CC2538 system-on-chip (SoC). The industry’s most integrated ZigBee solution, the CC2538 is cost-efficient with an ARM® Cortex™-M3 MCU, memory and hardware accelerators on one piece of silicon.
Texas Instruments Inc. (TI), leading the industry with the most complete wireless connectivity portfolio for embedded applications, announced the extension of its remote control solutions offering with a new Bluetooth® low energy advanced remote control kit. As a technology, Bluetooth low energy allows for remotes with mouse-like pointing and keyboard functionality as well as gesture-, touch- and motion-based input controls so users can take their viewing and gaming experience to the next level.
Answering the growing need for smartphone and tablet applications that update seamlessly, Texas Instruments Inc. (TI) announces a truly wireless solution with a unique over-the-air-download (OTA or OAD) feature in its BLE-Stack™ 1.3 software for use with the CC2540 and CC2541 Bluetooth low energy system-on-chips (SOCs). Single-mode Bluetooth® low energy or Bluetooth Smart is increasing in popularity because it allows consumers to connect to their smartphones and tablets to automotive, home office, medical and health, sports and fitness as well as mobile and PC accessories.
Texas Instruments Inc. (TI) and Sub10 Systems, a manufacturer of point-to-point millimetre wave radio links, announced their collaboration on a differentiated and future-proof backhaul solution for small cell base stations.
ZTE Corp., a global provider of telecommunications equipment and network solutions, has selected the KeyStone multicore System-on-Chips (SoCs) from Texas Instruments Inc. (TI) for its small cell base station products. TI's KeyStone SoCs are programmable multicore processors which enable ZTE to develop wireless base stations capable of concurrently supporting multiple 3G and 4G air interface standards.
TI announced two new software packages for its KeyStone-based multicore system-on-chips (SoCs): a new production ready small cell Physical (PHY) software package and a transport software package for wireless and other network-oriented applications.
Texas Instruments Inc. (TI) introduced the industry’s smallest monolithic point-of-load (POL) DC/DC converters for harsh environments, including radiation tolerant, geological, heavy industrial, and oil and gas applications. The 6.3 V, 6-A TPS50601 and the 6.3 V, 3-A TPS50301 are synchronous step- down converters optimized for small form factor designs.
Texas Instruments Inc. (TI) introduced a wideband frequency synthesizer with integrated voltage-controlled oscillator (VCO) that delivers the industry’s lowest phase noise. Its combination of ultra-low noise phase-locked loop (PLL) and industry’s highest phase detector frequency outperforms the competition in both phase noise and spurs.
With the increasing popularity and use of single-mode Bluetooth® low energy in automotive, home office, medical and health, sports and fitness, and mobile and PC accessories, Texas Instruments Inc. (TI) released its newest BLE-Stack™ 1.3 software to support continued development and enhancement of Bluetooth low energy. TI’s BLE-Stack 1.3 includes over-the-air firmware downloads (OAD), which enable updates to CC2540/1 firmware to be downloaded from a central device, such as a phone, tablet or PC onto the CC2540/1 system-on-chip (SoC) directly over the RF link.
Texas Instruments Inc. introduced two analog front ends (AFEs) that provide low power, high performance and space savings for test and measurement, wireless communications and optical networking equipment. The AFE7071 is a complete radio transmitter that reduces board space by up to 80 percent compared to discrete implementations. It integrates a dual digital-to-analog converter (DAC), tunable baseband filters, IQ modulator and digital quadrature modulation correction circuit.
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