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DRV8871-Q1 3.6-A Brushed DC Motor Driver
DRV8871-Q1 3.6-A Brushed DC Motor Driver

FAN4174 / FAN4274 Single and Dual, Rail-to-Rail I/O, CMOS Amplifier nd Dual,
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... Figure 23. Overdrive Recovery ...
ch.31
ch.31

bq769x0 boot switch alternatives
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RMF-‐1048 AC to DC Power Supply Owners Guide
RMF-‐1048 AC to DC Power Supply Owners Guide

... DuraComm warrants to the initial end user, each power supply manufactured by DuraComm to be free from defects in material and workmanship, when in normal use and service for a period of three year from the date of purchase, from an authorized DuraComm dealer. Should a product manufactured by DuraCom ...
Ignitron Driver Manual - Wide Bandwidth High Voltage Probes
Ignitron Driver Manual - Wide Bandwidth High Voltage Probes

... may be used to supply the trigger to the unit by applying a 5 - 15 V pulse to the BNC. TTL signals which meet typical TTL requirements will trigger the unit (5 V, 5 mA). Connect the output marked “Ignitor” to the Ignitor pin, and connect the output marked “Cathode” to the cathode. These connections ...
PF2325312537
PF2325312537

... of switching frequency cannot exceed 20,000Hz in LVDAC EMS. The range of switching frequency in LVDAC-EMS is from 400Hz to 20,000Hz. The current ripples waveform of inductor L at 50mH and 2mH for different values of switching frequency as shown in Fig. 4 to 13. The voltage ripples waveform of capaci ...
ZRT025  2.5V LOW POWER PRECISION REFERENCE SOURCE Description
ZRT025 2.5V LOW POWER PRECISION REFERENCE SOURCE Description

... reference output to a particular value. When the trim facility is not used, the pin should be left open circuit. ...
MAX882/MAX883/MAX884 5V/3.3V or Adjustable, Low-Dropout, Low I , 200mA Linear Regulators
MAX882/MAX883/MAX884 5V/3.3V or Adjustable, Low-Dropout, Low I , 200mA Linear Regulators

... 1, they consist of a 1.20V reference, error amplifier, MOSFET driver, P-channel pass transistor, dual-mode comparator, and feedback voltage-divider. The 1.20V reference is connected to the error amplifier’s inverting input. The error amplifier compares this reference with the selected feedback volta ...
AP3776 N E W P R O D U C T Description Features Pin
AP3776 N E W P R O D U C T Description Features Pin

... At no load and light load, the AP3776 works in Low Light mode (LL mode) and the output voltage is detected by APR343. In order to achieve ultra low standby power in LL mode, the static current (ICC_NL) of the AP3776 is reduced from 280μA to 100μA. • The conditions of exiting LL mode---VCPC>65mV or t ...
DATA  SHEET PBSS5240V 40 V low V PNP transistor
DATA SHEET PBSS5240V 40 V low V PNP transistor

... Suitability for use ⎯ NXP Semiconductors products are not designed, authorized or warranted to be suitable for use in medical, military, aircraft, space or life support equipment, nor in applications where failure or malfunction of an NXP Semiconductors product can reasonably be expected to result i ...
HOW DOES IT WORK
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... thinly and uniformly sputtered onto both the glass and the PET layer. Tiny bumps called spacer dots are then added to the glass side, on top of the resistive ITO coating, to keep the PET film from sagging, causing an accidental or false touch. When the PET film is pressed down, the two resistive sur ...
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... Amplifier output pin. This pin is an open-collector output. It must be biased to VCC through a choke or matching inductor. This pin is typically matched to 50  with a shunt bias/matching inductor and series blocking/matching capacitor. Refer to application schematics. Ground connection. ...
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... An SVC is a shunt connected FACTS device whose output can be adjusted to exchange either capacitive or inductive currents to the connected system. This current is controlled to regulate specific parameters of the electrical power system (typically bus voltage). The thyristor has been an integral par ...
a unity power factor bridgeless isolated cuk converter
a unity power factor bridgeless isolated cuk converter

... The PFC converter operating in CICM uses a current multiplier approach for voltage control and PFC. It has lower current stress on the PFC converter switch but requires three sensors (2-V, 1-C) for its operation. However, a single voltage sensor is used for a PFC converter operating in DICM using a ...
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Variable-Speed Single-Phase Full-Wave Fan
Variable-Speed Single-Phase Full-Wave Fan

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... power transmission system. The lab simulates Edison’s (and the world’s) first important transmission system, the Pearl Street Power Plant in New York City. The Pearl Street plant provided the power to illuminate bulbs in nearby residences and businesses including J.P. Morgan’s office in the Wall Str ...
CERN_Talk_POCPA=Ver1.0
CERN_Talk_POCPA=Ver1.0

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High Performance Charge Pump Converter with Integrated CMOS
High Performance Charge Pump Converter with Integrated CMOS

... 2.1 Charge pump circuit In the Dickson charge pump circuit as shown in Fig. 2, voltages higher than the input voltage are obtained by the charge pumping. The diode-connected MOSFETs in the charge pump cause a shift in the threshold voltage due to the body effect. The output voltage cannot be a linea ...
1E6 Electricity and Magnetism
1E6 Electricity and Magnetism

... In simple amplifers manufacturing variations in the semiconductor fabrication process give rise to large fluctuations in the amplifying properties of the devices used to construct the amplifier. This gives rise to varition in the amplifer gain, which can only be overcome by more advanced design tech ...
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Power MOSFET



A power MOSFET is a specific type of metal oxide semiconductor field-effect transistor (MOSFET) designed to handle significant power levels.Compared to the other power semiconductor devices, for example an insulated-gate bipolar transistor (IGBT) or a thyristor, its main advantages are high commutation speed and good efficiency at low voltages. It shares with the IGBT an isolated gate that makes it easy to drive. They can be subject to low gain, sometimes to degree that the gate voltage needs to be higher than the voltage under control.The design of power MOSFETs was made possible by the evolution of CMOS technology, developed for manufacturing integrated circuits in the late 1970s. The power MOSFET shares its operating principle with its low-power counterpart, the lateral MOSFET.The power MOSFET is the most widely used low-voltage (that is, less than 200 V) switch. It can be found in most power supplies, DC to DC converters, and low voltage motor controllers.
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