参考设计(11)
Capacitive Touch Thermostat User Interface Reference Design
TIDM-CAPTIVATE-THERMOSTAT-UI: TIDM-CAPTIVATE-THERMOSTAT-UI is a low-power, capacitive touch based, thermostat user interface reference design. It features an on-board MSP430TM MCU CapTIvate™ technology which provides robust capacitive touch measurements with a low-power profile, low response time, and increased noise immunity. The design supports multiple modes of operation, including a battery powered mode and a line powered mode. The battery powered mode operates with an average current consumption of less than 50 µA, allowing for two years of battery life on typical AAA batteries. Line powered mode is optimized for noise immunity at the commercial product level. The design features eight buttons that support both momentary and maintained switch implementations. Each button is accompanied by an LED which can be used to indicate touch or switch state.
TIDM-CAPTIVATE-REMOTECONTROL Capacitive Touch Remote Control Reference Design With CapTIvate™ Technology | TI.com
TIDM-CAPTIVATE-REMOTECONTROL: 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.
TIDM-FRAM-EEPROM EEPROM Emulation and Sensing With MSP430 FRAM Microcontrollers | TI.com
TIDM-FRAM-EEPROM: This TI Design reference design describes an implementation of emulating EEPROM using Ferroelectric Random Access Memory (FRAM) technology on MSP430™ ultra-low-power microcontrollers (MCUs) combined with the additional sensing capabilities that can be enabled when using an MCU. The reference design supports both I2C and SPI interface to a host processor with multiple slave addressing.
TIDM-CAPTIVATE-E-LOCK MSP430FR2633 Microcontroller CapTIvate Electronic Lock and Keypad Reference Design | TI.com
TIDM-CAPTIVATE-E-LOCK: This reference design demonstrates an ultra-low-power capacitive touch panel solution based on a single MSP430™ microcontroller (MCU) with CapTIvate™ technology. The use of self and mutual capacitance technology enables multifunctional capacitive touch panels (buttons, and proximity sensor) for eLocks and other applications with various human interfaces available. This TI Design also demonstrates how to extend battery life by duty-cycling the MSP430 CPU and switch between low-power mode and active mode.
TIDM-1004 Access Control Panel With Bluetooth Low Energy and Capacitive Touch Reference Design | TI.com
TIDM-1004: This reference design demonstrates using the SimpleLink™ MSP432™ software development kit (SDK) with the SimpleLink MSP432™ MCU, SimpleLink Bluetooth® low energy CC2650 network processor, and MSP430FR2633 MCU with CapTIvate™ technology in an access control panel application. It allows users to control access with smartphones over Bluetooth low energy or with a keypad using capacitive sensing. This design is optimized for extended battery life.
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.
TIDA-00494 Touch Through Glass with Sharp ® LCD Reference Design | TI.com
TIDA-00494: Human machine interface (HMI) is an essential part of process plants because it is one of the major ways through which humans and machines interact. The TIDA-00494 reference design offers an HMI solution for harsh and hazardous area applications. In process plants, operators are required to interact with keypads for programming functions, encapsulated in explosive proof screw-on metallic enclosures with thick glass windows for local readouts through a liquid-crystal display (LCD). This TI Design uses MSP430™ microcontrollers (MCUs) with TI CapTIvate™ technology which allows the operator to interact with the keypad without needing to open the enclosure, saving time by avoiding work permit or plant shutdown. The operator can read results from a LCD and get notified with a light-emitting diode (LED) with only one integrated circuit (IC).
TIDA-00343 Low-Power Touch Through Glass Reference Design | TI.com
TIDA-00343: Human Machine Interface (HMI) is an essential part of process plants since it is one of the major ways through which humans and machines interact. The TIDA-00343 reference design offers an HMI solution for harsh and hazardous area applications. In process plants, operators need to interact with an explosion-proof display/controller which is encapsulated in a screw-on metallic enclosure with a thick glass window for local read out and programming functions. Thanks to the TIDA-00343 TI Design which uses MSP430™ microcontrollers (MCU) with CapTIvate™ technology the operator will be able to interact with the controller without the need of opening the enclosure saving time by avoiding work permit or plant shutdown.
TIDM-CAPTIVATE-THERMOSTAT-UI Capacitive Touch Thermostat UI with MSP MCUs Featuring CapTIvate Technology Reference Design | TI.com
TIDM-CAPTIVATE-THERMOSTAT-UI: TIDM-CAPTIVATE-THERMOSTAT-UI is a low-power, capacitive touch based, thermostat user interface reference design. It features an on-board MSP430TM MCU CapTIvate™ technology which provides robust capacitive touch measurements with a low-power profile, low response time, and increased noise immunity. The design supports multiple modes of operation, including a battery powered mode and a line powered mode. The battery powered mode operates with an average current consumption of less than 50 µA, allowing for two years of battery life on typical AAA batteries. Line powered mode is optimized for noise immunity at the commercial product level. The design features eight buttons that support both momentary and maintained switch implementations. Each button is accompanied by an LED which can be used to indicate touch or switch state.