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Application Note - Adler Instrumentos
Application Note - Adler Instrumentos

... 1) The general-purpose case needs to be modified to accommodate the eight BNC connectors required, four inputs and four outputs. The BNC connectors should then be fitted in such a way that the outer, ground, connection makes a permanent contact with the case. The case will therefore form the earth t ...
J. Lu, D.J. Perreault and K.L. Afridi, “Impedance Control Network Resonant Converter for Wide-Range High-Efficiency Operation,” 2015 IEEE Applied Power Electronics Conference , pp. 1440-1447, March 2015.
J. Lu, D.J. Perreault and K.L. Afridi, “Impedance Control Network Resonant Converter for Wide-Range High-Efficiency Operation,” 2015 IEEE Applied Power Electronics Conference , pp. 1440-1447, March 2015.

... inverter leg start to turn-off at large currents. Also, as outphasing is increased further the transistors in the lagging inverter leg lose ZVS turn-on capability. These factors result in extra losses and lead to lower converter efficiency at partial loads, and consequently to poor design tradeoffs. ...
voltage / current calibrator
voltage / current calibrator

... is in place and fastened securely. BATTERY INSTALLATION WARNING: To avoid electric shock, disconnect the test leads from any source of voltage before removing the battery door. 1. Disconnect the test leads from the meter. 2. Open the battery door by loosening the ...
efficiency improvement of transmission lines with
efficiency improvement of transmission lines with

TS12001 - Silicon Labs
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... voltage is grounded or it is less than approximately 90mV, the internal preset UVLO threshold circuit will control the comparator outputs. If the SET pin is above approximately 90mV, the external voltage divider circuit will control the comparator outputs. The 0.58V reference voltage is tied to the ...
TECHNICAL SPECIFICATIONS
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... world leader in power systems technology and manufacturing -- Delta Electronics, Inc. This filter module is designed to reduce the conducted common-mode and differential-mode noise on input or output lines of high-frequency switching power supplies and has a maximum current rating of 10A. It has the ...
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... One solution to this problem has involved a complicated lookup table based on experimental data of the phase current and the actual rotor position [4]. ...
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... so does the current (flow of charges). You also understand that if the resistance increases, the current flow decreases. A German physicist, Georg S. Ohm, developed this mathematical relationship, which is present in most circuits. This relationship is known as Ohm's law: Voltage (volts) Current (am ...
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Experiment 7: Single-Stage MOS Amplifiers

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Efficiency and Other Benefits of 208 Volt Over 120 Volt Input

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... signals at the input, resulting in high frequency oscillation or excessive distortion. It is advisable to keep the output compensation components and the 0.1 mF supply decoupling capacitors as close as possible to the LM675 to reduce the effects of PCB trace resistance and inductance. For the same r ...
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... input to the converter. Since the clock frequency of the Axiom board is 8MHz, you can choose the E-clock as the source for the A/D converter. The ADCTL register selects the mode of operation, channel control, and channel selection. It also contains a flag (bit) to indicate the end of the conversion ...
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... and the other half is amplifying by the other transistor. The graph shows the operation of such an amplifier. At the operating point Ib and Ic both equals to zero. Only one half of the signal is amplifying and the other half is getting cut off completely. ...
PM1000 series power meter and DM6000 series
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... PM1000 series power meter Functions and characteristics The PowerLogic PM1000 series power meters are easy-to-use, cost-effective meters that offer the basic measurement capabilities required to monitor an electrical installation. Characterized by their rugged construction, compact size and low in ...
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Buck converter



A buck converter is a voltage step down and current step up converter.The simplest way to reduce the voltage of a DC supply is to use a linear regulator (such as a 7805), but linear regulators waste energy as they operate by dissipating excess power as heat. Buck converters, on the other hand, can be remarkably efficient (95% or higher for integrated circuits), making them useful for tasks such as converting the main voltage in a computer (12V in a desktop, 12-24V in a laptop) down to the 0.8-1.8V needed by the processor.
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