News & Updates

miniSpartan3

miniSpartan3

The miniSpartan3 is our new, low cost, tiny, FPGA kit. It starts at just $25, and there is a more powerful FPGA chip available for $35. Features: The Spartan 3A XC3A50 FPGA ($25), or the Spartan 3A XC3A200 FPGA ($35) from Xilinx. An on-board USB JTAG Programmer to power and program your FPGA. An on board […]

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Windows 10 IoT Core and TSL2561

Windows 10 IoT Core and TSL2561

Story Update 08-15-2015: Project converted to Visual Studio 2015 RTM  Luminosity Sensor Sample using Windows IoT Core As you all know Microsoft released Insider Preview of Windows 10 IoT Core recently. I too download and installed it on my RPi2. While playing with Windows 10 IoT Core, I decided to work on TSL2561 Luminosity Sensor

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VFD Modular Clock IV 18 SMT

VFD Modular Clock IV-18 SMT

Now available in the store: With GPS, Without GPS. We showed a demo of this clock at Maker Faire Tokyo 2014 and it is now available in our online shop! VFD Modular Clock IV-18 SMT edition is a special solder-free kit version of the original VFD Modular Clock . The kit comes with all electronics pre-soldered, but you still assemble the

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NEW PICOSCOPE 9400 5 GHZ OSCILLOSCOPE

NEW PICOSCOPE 9400 5 GHZ OSCILLOSCOPE

The PicoScope 9404-05 is the first of a new class of oscilloscopes that combine the benefits of real-time sampling, equivalent-time sampling and high analog bandwidth. The PicoScope 9404-05 has four 5 GHz input channels with market-leading ADC, timing and display resolutions for accurately measuring and visualizing high-speed analog and data signals. It is ideal for capturing pulse

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5.5W – 2 CHANNEL AUDIO AMPLIFIER

5.5W – 2 CHANNEL AUDIO AMPLIFIER

This project is a 5.5W – 2 Channel Audio Amplifier based on LA4445 IC. DESCRIPTION The small 2 Channel amplifier constructed around Sanyo’s LA4445 IC delivers 5.5Watts +5.5 Watts at 4 ohm load, supply in 12V DC 2Amp, Input impedance 30K. SPECIFICATIONS Dual Channels output : 5.5W Minimum External Parts Very small pop noise at the time

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Power and Dependent Sources

Power and Dependent Sources

Determine the power absorbed by the VCVS in the figure. Solution: The VCVS consists of an open circuit and a controlled-voltage source. There is no current in the open circuit, so no power is absorbed by the open circuit. The voltage vc across the open circuit is the controlling signal of the VCVS. The voltage Vc

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