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reduction of switches and voltage divices in new cascaded h
reduction of switches and voltage divices in new cascaded h

... be obtained. The Cascaded H – Bridge topology are more advantageous compared to above two topologies, because it consists fewer number of components, it is very simple to control. To reduce the number of power supplies and power electronic components, a new topology is proposed in this paper. When c ...
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... Information furnished by Analog Devices is believed to be accurate and reliable. However, no responsibility is assumed by Analog Devices for its use, nor for any infringements of patents or other rights of third parties that may result from its use. Specifications subject to change without notice. N ...
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ECE 3130 * Digital Electronics and Design
ECE 3130 * Digital Electronics and Design

... • Click “Measures…” and select “rise time” • Type in a trace name and press “Measure” • With the same trace, measure the “fall time” • Since we changed the pMOS width to obtain a symmetric VTC, the rise and fall times should be the same Allan Guan ...
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... ceramic/tantalum output capacitors and a 22µF tantalum input capacitor. These capacitors are necessary to accommodate our test equipment and may not be required to achieve desired performance in your application. The LSM2s are designed with high-quality, high-performance internal I/O caps, and will ...
Figure.1. 16-Transistor full adder circuit [2]
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... the transistor count, minimizing the power consumption and increasing the speed, [4].Most of the VLSI applications, such as digital-signal processing and microprocessors, use arithmetic operation. Addition, subtraction, multiplication, and multiply and accumulate (MAC),[5] are examples of the most c ...
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... Solution to avoid “loading” the circuit: Use RLoad >> r source (Rule of thumb: To use RLoad > 10 r source ) Connecting circuits one after another In electronic circuits, stages are connected one after another. i) Sometimes it is OK to load the circuit, as far as we know how much the loaded is, and p ...
StrainBook/616 - Measurement Computing
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... WaveView supports up to 64 channels of strain, voltage, or sound/vibration input. For applications beyond 64 channels, or for custom applications, comprehensive drivers are included for Windows languages, LabVIEW®, and DASYLab®. StrainBook/616 includes a 1 MHz A/D converter that can scan all select ...
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... features three power-down modes to conserve power during idle periods. Excellent dynamic performance, ultra-low power, and small size make the MAX1192 ideal for applications in imaging, instrumentation, and digital communications. An internal 1.024V precision bandgap reference sets the full-scale ra ...
A 5-20 GHz 5-Bit True Time Delay Circuit in 0.18 µm CMOS
A 5-20 GHz 5-Bit True Time Delay Circuit in 0.18 µm CMOS

... switching transistors in the signal path. Since the insertion loss of the TTD is mainly determined by the series transistors of the SPDT and the DPDT switches, therefore, the number of the series transistors in the signal path should be reduced to improve the insertion loss. Fig. 3(a) shows the DPDT ...
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... all possible conditions. To finally protect the device from overheating, an internal temperature sensor is implemented. Synchronous Operation The device uses 4 internal N-channel MOSFETs to maintain synchronous power conversion at all possible operating conditions. This enables the device to keep hi ...
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IM CW120-E

pipemaster - Magnatech LLC
pipemaster - Magnatech LLC

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... Controller is an independent computer in itself that utilizes a powerful 32-bit microprocessor and onboard RAM to control all aspects of data acquisition along its network. One can install as many Controllers as desired, space permitting, since each controller operates independently. Each network su ...
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Sizing gensets for motor starting

OPA379 OPA2379 OPA4379
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... Capacitive Load, Figure 17) and ringing in the output signal. Increasing the gain enhances the ability of the amplifier to drive greater capacitive loads. In unity-gain configurations, capacitive load drive can be improved by inserting a small (10Ω to 20Ω) resistor, RS, in series with the output, as ...
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Immunity-aware programming

When writing firmware for an embedded system, immunity-aware programming refers to programming techniques which improve the tolerance of transient errors in the program counter or other modules of a program that would otherwise lead to failure. Transient errors are typically caused by single event upsets, insufficient power, or by strong electromagnetic signals transmitted by some other ""source"" device.Immunity-aware programming is an example of defensive programming and EMC-aware programming. Although most of these techniques apply to the software in the ""victim"" device to make it more reliable, a few of these techniques apply to software in the ""source"" device to make it emit less unwanted noise.
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