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Home Remote Control

Описание:
The Texas Instruments ZLLRC Reference Design allows simple and direct control of lamps on a ZigBee Light Link network. It is intended to control a sub-group of lamps on the network, such as the lamps in a room in your house. It creates its own group consisting of the lamps it has touch linked with. These can be added/removed later. It has 14 buttons that allow control of state (on/off), hue, saturation, level, target selection and scenes. The ZLLRC is supported by the Z-Stack Lighting 1.0.2 release and higher. It is based on the CC2530 System on Chip (SoC), which has a ZigBee radio integrated. It has an on board PIFA PCB antenna fed through an integrated balun. To improve battery life, the CR2025 battery voltage is converted to 2.1V using the TPS62730 DCDC converter.

Возможности:

Low power ZLL remote control design Inverted F PCB antenna 14 buttons 4 LEDs Buzzer for user feedback CR2025 battery FCC/IC/CE compliant

Документация:
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Описание:
This design shows the implementation of IR Remote Control functionality using the integrated IR features of the MSP430FR4133 device. Examples include basic IR ASK TX and RX, and a Learning Mode where the device can be trained to control existing IR devices, like a television.

Возможности:

Demonstrates usage of the IR modulation logic features built into the MSP430FR4133 for a simpler, more efficient IR modulation implementation Supports 38kHz carrier IR ASK demodulation, but can be modified for other carrier frequencies Uses 4x4 membrane keypad and demonstrates matrix keypad detection Shows functions on the segmented LCD display on the MSP-EXP430FR4133 Launchpad using the MSP430FR4133 integrated display driver This design includes software demo projects for TX, RX, and Learning Mode, and includes a design guide with a discussion of design theory for IR

Документация:
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Описание:
The touch remote control enabled with CapTIvate™ technology demonstrates a capacitive-touch solution based on a single MSP430™ microcontroller (MCU) with CapTIvate technology. This design uses self- and mutual-capacitance technology to enable a multifunctional, capacitive-touch panel (buttons, slider, gesture pad, grip sensor and proximity sensor) for smart TV, settop box, and sound system remote applications for future application extensions with various communication interfaces available. The design allows operators to extend the battery life by the low-power active and standby modes.
Возможности:

CapTIvate Capacitive Touch Functions with Eight-Touch Buttons, One Touch Slider for Volume Control, One Gesture Pad for Slide and Tap Gestures and One Proximity Sensor for Grip Detection Two LEDs to Indicate Power Status and Touch Operation Wake-On Grip Detection With Ultra-Low-Power Standby Mode PC GUI for Demonstration of Remote Control Capabilities Bluetooth® Connectivity to PC Through Bluetooth EVM CC2650EM-7ID as well as other I2C and UART Communication Interface

Документация:
  • Даташит
  • Схемотехника
  • BOM
Описание:
This design demonstrates an ultra-low power general purpose infrared remote controller solution. An FRAM-based MCU MSP430FR4133 is used which supports all the necessary features like real time clock, button scan, infrared code sending, LED backlight and LCD display.

Возможности:

Ultra-low power system with long battery life : as low to 3uA standby current with LCD and RTC On Low cost design using highly integrated ultra-low power FRAM MCU for minimum external components Full functional demonstration including battery detection, key-scan, RTC, infrared signal transmitting for remote controller SW optimized for real remote controller of air conditioner application Easy for evaluation, ready to use

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