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Kinetis KV10: 75MHz Cortex-M0+ 32/16KB Flash 32-48pin
Kinetis KV10: 75MHz Cortex-M0+ 32/16KB Flash 32-48pin

... The Kinetis V Series KV1x MCU family is the entry point into the V Series and provides a high-performance, cost-competitive solution for 3-phase sensorless BLDC and PMSM motor control. Built upon the ARM® Cortex®-M0+ based core running at 75 MHz with hardware square root and divide capability, it de ...
Sepam™ Series 80 Protective Relays
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... Before performing Dielectric (Hi-Pot) or Megger testing on any equipment in which the power meter is installed, disconnect all input and output wires to the power meter. High voltage testing may damage electronic components contained in the power meter. The power meter should be installed in a suita ...
Chapter 002 - PLC Hardware Components
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Buck Boost Converter Seminar Report.pdf
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... charges up to a specified limit. Design is verified using various simulation software’s and then final hardware implementation is made after proper analysis and verification. The circuit consists two Mosfet's, one is used in the buck converter stage preceding super capacitor and the other is used in ...
MAX4291/MAX4292/MAX4294 Ultra-Small, 1.8V, µPower, Rail-to-Rail I/O Op Amps General Description
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... offset voltage (±200µV) and high open-loop gain makes them ideal for low-power/low-voltage, high-precision portable applications. The MAX4291/MAX4292/MAX4294 have an input common-mode range that extends to each supply rail, and their outputs swing to within 46mV of the rails with a 2kΩ load. Althoug ...
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... and DC applications. It can be programmed for either overload sensing or underload sensing. The internal shunt facilitates direct connection into a current loop up to 5A (continuous). AC Monitoring: The units interfaces readily with conventional current transformers (1A or 5A secondary rating). For ...
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... The product status of device(s) described in this document may have changed since this document was published and may differ in case of multiple devices. The latest product status information is available on the Internet at URL http://www.nxp.com. ...
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... single 1:20 LVPECL Clock Driver. The part is designed for use in low voltage (2.5V/3.3V) applications which require a large number of outputs to drive precisely aligned, ultra low skew signals to their destination. The input is multiplexed from either LVDS or LVPECL by the CLK_SEL pin. The LVDS inpu ...
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... The maximum allowable power dissipation that the package is capable of handling can be determined as follows: ...
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... Square-Domain Filter Pin. Connection for an external capacitor to lower the corner frequency of the squaredomain (or modulation) filter. Capacitor is connected between FLTR and VS and forms a low-pass filter with an 8 kΩ on-chip resistor. The on-chip capacitor provides filtering with an approximate ...
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... The function is applied in either open- or closedloop circuits. In many applications the card is employed to switch a signal or pick up another relay whenever it is actuated. In other cases it is the forward gain element in a closed-loop system. In this general area of application, whenever the rela ...
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... The MAX9310A is a fast, low-skew 1:5 differential driver with selectable LVPECL inputs and LVDS outputs, designed for clock distribution applications. This device features an ultra-low propagation delay of 340ps with 48mA of supply current. The MAX9310A operates from a 3V to 3.6V power supply for us ...
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... express written approval of the Chief Executive Officer of Diodes Incorporated. As used herein: A. ...
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power electronic converters
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... operating voltages and very small leakage current in the reverse-bias state. The power diode’s forward bias characteristic is approximately linear, which means that the voltage drop is proportional to the ohmic resistance and current. The maximum current in the forward bias depends on the pn junctio ...
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... The moving loop design has similarities with polarized relays; however, the following two features make for a large performance distinction. A permanent magnet is placed in the vicinity of the “working gaps.” The flux energy of this permanent magnet complements that of the electrical coil. This incr ...
Development of Modulation Strategies for NPC Inverter Addressing
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... for the X and the R directions. Different R settings can be employed for ground and phase faults. This characteristic offers advantages in the case of faults with fault resistance. For applications to medium-voltage cables with low line angles, it may be advantageous to select the distance zones wit ...
Circuit Design for Realization of a 16 bit 1MS/s Successive
Circuit Design for Realization of a 16 bit 1MS/s Successive

... input and the calibration process is time consuming. Other self calibrating techniques exist, but most require some sort of known input, or require the converter to be taken out of operation while it is being calibrated. The split ADC calibration technique, introduced in [3] and [4], does not suffer ...
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Voltage regulator



A voltage regulator is designed to automatically maintain a constant voltage level. A voltage regulator may be a simple ""feed-forward"" design or may include negative feedback control loops. It may use an electromechanical mechanism, or electronic components. Depending on the design, it may be used to regulate one or more AC or DC voltages.Electronic voltage regulators are found in devices such as computer power supplies where they stabilize the DC voltages used by the processor and other elements. In automobile alternators and central power station generator plants, voltage regulators control the output of the plant. In an electric power distribution system, voltage regulators may be installed at a substation or along distribution lines so that all customers receive steady voltage independent of how much power is drawn from the line.
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