News & Updates

New power inverter could make EVs more powerful and efficient

New power inverter could make EVs more powerful and efficient

A new power inverter developed at the Oak Ridge National Laboratory (ORNL) marries advances in 3D printing and wide-band semiconductor technology to deliver significantly improved performance in a smaller, lighter package. With further development, it could go a long way toward helping build electric cars that are more powerful and energy-efficient. Power inverters are an […]

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AAEON ANNOUNCES NEW UPCOMING PLATFORMS POWERED BY NVIDIA JETSON EDGE AI PLATFORM PRESENTING SIX SESSIONS AT GTC 2021

AAEON ANNOUNCES NEW UPCOMING PLATFORMS POWERED BY NVIDIA JETSON EDGE AI PLATFORM; PRESENTING SIX SESSIONS AT GTC 2021

AAEON, an industry leader in embedded AI edge computing systems, announces a lineup of platforms currently under development powered by the newly released NVIDIA® Jetson™ TX2 NX system on module (SOM). This range of systems, named the BOXER-823x Series, will augment AAEON’s lineup of diverse solutions powered by the NVIDIA Jetson edge AI platform. With these platforms planned

AAEON ANNOUNCES NEW UPCOMING PLATFORMS POWERED BY NVIDIA JETSON EDGE AI PLATFORM; PRESENTING SIX SESSIONS AT GTC 2021 Read More »

Terahertz Optical Transistors Beat Silicon

Terahertz Optical Transistors Beat Silicon

PORTLAND, Ore.–Purdue University researchers have demonstrated a CMOS-compatible all-optical transistor capable of 4THz speeds, potentially over a 1000 times faster than silicon transistors. Nano-photonic transistors processed at low-temperatures can be fabricated atop complementary metal oxide semiconductors (CMOS) to boost switching time by ~5,000-times less than 300 femtoseconds (fs) or almost 4 terahertz (THz), according to

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MAXIM INTEGRATED MAX78000 AI MICROCONTROLLER

MAXIM INTEGRATED MAX78000 AI MICROCONTROLLER

MAX78000 – Ultra-low-power Arm Cortex-M4 processor with FPU-based microcontroller with Convolutional Neural Network Accelerator. The MAX78000 is is an advanced system-on-chip built to enable neural networks to execute at ultra-low power and live at the edge of the IoT. This product combines the most energy-efficient AI processing with Maxim’s proven ultra-low power microcontrollers. The hardware-based convolutional neural

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RENESAS RELEASES RX23W MODULE WITH BLUETOOTH FOR SYSTEM CONTROL AND WIRELESS COMMUNICATION ON IOT DEVICES

RENESAS RELEASES RX23W MODULE WITH BLUETOOTH FOR SYSTEM CONTROL AND WIRELESS COMMUNICATION ON IOT DEVICES

Renesas Electronics today introduced the RX23W Module with full Bluetooth® 5.0 Low Energy support for system control and wireless communication on IoT endpoint devices. Featuring the RX23W 32-bit RX MCU supporting fully integrated Bluetooth Low Energy communication, the new RX23W module is equipped with an antenna, oscillator and custom-matched circuit. The new module is certified under Radio Law for multiple countries,

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schematicMiniscope v2f

Miniscope v2f

Extremely cheap low-speed PC/USB oscilloscope with STM32 (STM32F042) microcontroller – variant of miniscope v2e with input amplifier (MCP6S21 PGA) added. This is minor update, but input PGA fixes problem with input leakage of STM32F042 allowing increasing input impedance at the same time. Quick specification follows miniscope v2a-d idea: very simple device streaming data in real

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USBasp Experiences

USBasp Experiences

We wrote this whole page to try to make buyers of USBasp programmer clones aware of what’s possibly out there for sale and the conclusion we came to about the units we bought, after quite some investigative work IT SIMPLY DOES NOT REALLY WORK !!! We tried to read the flash content, and the blue led

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TEXAS INSTRUMENTS LM74500 Q1 REVERSE POLARITY PROTECTION CONTROLLER

TEXAS INSTRUMENTS LM74500-Q1 REVERSE POLARITY PROTECTION CONTROLLER

Texas Instruments LM74500-Q1 Reverse Polarity Protection Controller is an automotive AEC Q100 qualified controller which operates in conjunction with an external N-channel MOSFET as a low loss reverse polarity protection solution. The wide supply input range of 3.2V to 65V allows control of many popular DC bus voltages such as 12V, 24V, and 48V automotive battery systems.

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