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Get acquainted with new development kits
Devices, Arduino, Atmel, Digi International, IAR, Keil Tools, Maxim Integrated, Microchip, NXP, Olimex, STMicroelectronics, Texas Instruments, & many more. Here, Mark Patrick, Supplier Marketing & Business Development Manager, Mouser EMEA, presents his pick of the latest releases – for a full line up, visit
http://www.mouser.com/ Development-Tools-Center/
M
ouser is an authorized distributor for many from industry leading manufacturers engineering development tool manufacturers including ADLINK, Altera, Analog
glass, plastic, and wood by measuring small deflections of conductive targets. The sensor for an inductive touch system is a coil that can be implemented on a small, compact PCB located behind a panel and protected from the environment. The LDC2114EVM, now available exclusively from
Mouser Electronics, can connect up to four buttons using the LDCCOILEVM or customized coils designed using the WEBENCH® Inductive Sensing Designer. The board offers integrated and configurable algorithms for button press detection with onboard LED indicators. The LDC2114 consumes as little as 6µA at 0.625 samples per second, and designers can configure the device at different duty cycles to optimize the power consumption of their system.
LDC2112/LDC2114 touch solutions are ideal for
smartphones, wearable devices, tablets and PCs, virtual reality headsets, remote controls, and human-machine interface (HMI) panels and keypads. Device details at
http://www.mouser.com/new/Texas-Instruments/ ti-ldc2112-ldc2114-sensors/; learn more about the evaluation module at
http://www.mouser.com/new/ Texas-Instruments/ti-ldc2114evm-tool/.
Inductive Touch Sensing Texas Instruments’ LDC2114 Evaluation Module for its LDC2112 and LDC2114 inductive touch solutions demonstrates the use of inductive sensing to detect and measure the presence of conductive objects to implement inductive touch buttons. The LDC2114EVM features the LDC2114, a multi-channel low-noise inductance-to-digital converter optimized for inductive touch applications on monolithic surfaces. Inductive sensing technology enables touch button design on a wide variety of materials such as metal,
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ZigBee-Enabled Designs for IoT Equipped with NXP’s pre-certified ZigBee and IEEE802.15.4 JN5169 wireless microcontroller, JN5169 ZigBee® Expansion Kits from NXP® Semiconductors enable designers to rapidly introduce ZigBee-enabled wireless products without the need for advanced RF design skills. Each kit comes equipped with pre- programmed software capabilities, such as wireless lighting and sensor functionality, providing engineers the tools necessary for wireless network development for Internet of Things and smart home applications. Each kit contains components that form a ZigBee
network node based on the NXP JN5169 wireless microcontroller. Depending on the type of wireless capability required, kits concentrate on a particular
www.mouser.com January 2017
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