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Interfacing RF module with Atmega8 Communication between two AVR Microcontrollers

Interfacing RF module with Atmega8: Communication between two AVR Microcontrollers

Making our projects Wireless always makes it to look cool and also extends the range in which it can be controlled. Starting from using a normal IR LED for short distance wireless control till an ESP8266 for worldwide HTTP control, there are lots of ways to control something wirelessly. In this project we learn how […]

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LT8650S – Dual Channel 4A, 42V, Synchronous Step-Down Silent Switcher

Features Silent Switcher®2 Architecture: Ultralow EMI on Any PCB n Eliminates PCB Layout Sensitivity Internal Bypass Capacitors Reduce Radiated EMI Optional Spread Spectrum Modulation 4A DC from Each Channel Simultaneously Up to 6A on Either Channel Ultralow Quiescent Current BurstMode® Operation: 6.2μA IQ Regulating 12VIN to 5VOUT1 and 3.3VOUT2 Output Ripple <10mVP-P Optional External VC

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MC34VR500V1ES Multi-Output DC/DC Regulator

Summary The circuit in this reference design features the capability of MC34VR500V1ES to supply multiple DC voltage outputs. This device is designed to support the LS1/T1 family of communication processors, which require efficient and precise level of voltage supplies. With its four switching and five linear regulators, the MC34VR500V1ES can supply power to the whole

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Vishay Siliconix’s SiP280x Low-Power Current-Mode Controllers for 10-W to 250-W Power Supplies Feature 1-A Output Drivers, Switching Frequencies up to 1 MHz

Santa Clara, CA (PRWEB) November 4, 2004 A new family of low-power current-mode controllers that provide increased efficiency and flexibility in cost-sensitive power-supply designs was announced today by Siliconix incorporated (NASDAQ: SILI), an 80.4%-owned subsidiary of Vishay Intertechnology, Inc. (NYSE: VSH).   The first true direct replacements for the industry-standard UCC380x and UCC280x families of

Vishay Siliconix’s SiP280x Low-Power Current-Mode Controllers for 10-W to 250-W Power Supplies Feature 1-A Output Drivers, Switching Frequencies up to 1 MHz Read More »

Amptronix ATS600 Series Pure Sine Wave Inverters with 600W Continuous Output and 1000W Surge Output

Walnut, California (PRWEB) July 5, 2006 Amptronix Inc. is announcing the CSA certification of UL458 compliance of its ATS600 pure sinewave inverter series for industrial or mobile applications. The Amptronix ATS600 Series produce household electricity from a 12-volt / 24-volt DC battery system in a recreational vehicle or trailer by convert DC to 115V or

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Analog Devices’ High Performance Output Drivers Increase Efficiency of Industrial and Process Control Systems : ADI’s new output drivers offer best-in-class performance with industry’s highest level of accuracy and diagnostic capability.

NORWOOD, Mass. (PRWEB) May 12, 2008 Designed to meet the growing demand for highly configurable industrial automation controllers, the new output drivers offer extensive diagnostic functionality such as fault detection and enhanced sensing capabilities that make system startup and troubleshooting easier. Integrating user-programmable current- and voltage-output capabilities, the AD5750 and AD5751 output drivers are ideally

Analog Devices’ High Performance Output Drivers Increase Efficiency of Industrial and Process Control Systems : ADI’s new output drivers offer best-in-class performance with industry’s highest level of accuracy and diagnostic capability. Read More »

Power Integrations' New LinkSwitch

SAN JOSE, Calif. (PRWEB) May 27, 2008 LinkSwitch-II, a new generation in Power Integrations’ extremely successful LinkSwitch series of ICs, simplifies the design of accurate output CV/CC converters by eliminating the need for optocouplers and all secondary-side CV/CC control circuitry as well as all control-loop compensation circuitry. By integrating all control and protection circuitry plus

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New LinkSwitch

SAN JOSE, Calif. (PRWEB) June 30, 2008 LinkSwitch-II features Power Integrations’ advanced primary-side regulation (PSR) technology, which utilizes a transformer winding to sense the output current rather than relying on lossy, expensive secondary-side components to provide feedback and regulate the output. This cuts system component count by up to 30 percent, resulting in simpler, more

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