
MAX16814 Integrated, 4-Channel, High-Brightness LED Driver with High-Voltage DC-DC Controller EVALUATION KIT AVAILABLE
... used for single-inductor boost-buck topology in conjunction with the MAX15054 and an additional MOSFET. The current-mode control with programmable slope compensation provides fast response and simplifies loop compensation. The MAX16814 also features an adaptive output-voltage control scheme that min ...
... used for single-inductor boost-buck topology in conjunction with the MAX15054 and an additional MOSFET. The current-mode control with programmable slope compensation provides fast response and simplifies loop compensation. The MAX16814 also features an adaptive output-voltage control scheme that min ...
BD95831MUV
... The Output LC filter is required to supply constant current to the output load. A larger value inductance at this filter results in less inductor ripple current (∆IL) and less output ripple voltage. However, the larger value inductors tend to have less fast load transient-response, a larger physical ...
... The Output LC filter is required to supply constant current to the output load. A larger value inductance at this filter results in less inductor ripple current (∆IL) and less output ripple voltage. However, the larger value inductors tend to have less fast load transient-response, a larger physical ...
BD9102FVM
... Consideration on Permissible Dissipation and Heat Generation Since these ICs function with high efficiency without significant heat generation in most applications, no special consideration is needed on permissible dissipation or heat generation. In case of extreme conditions, however, including low ...
... Consideration on Permissible Dissipation and Heat Generation Since these ICs function with high efficiency without significant heat generation in most applications, no special consideration is needed on permissible dissipation or heat generation. In case of extreme conditions, however, including low ...
MAX8709B High-Efficiency CCFL Backlight Controller with SMBus Interface General Description
... (CCFLs) using a resonant full-bridge inverter architecture. The resonant operation maximizes striking capability and provides near-sinusoidal waveforms over the entire input range to improve CCFL lifetime. The controller operates over a wide input voltage range of 4.6V to 28V with high power-to-ligh ...
... (CCFLs) using a resonant full-bridge inverter architecture. The resonant operation maximizes striking capability and provides near-sinusoidal waveforms over the entire input range to improve CCFL lifetime. The controller operates over a wide input voltage range of 4.6V to 28V with high power-to-ligh ...
LM74670-Q1 Zero IQ Smart Diode Rectifier
... Using N-Channel MOSFETs with controller ICs can be highly effective and more efficient substitutes of lossy diodes in a bridge rectifier application. The LM74670-Q1 is designed to control a single N-Channel MOSFET in a full or half bridge rectifier as replacement for diode. In a full bridge rectifie ...
... Using N-Channel MOSFETs with controller ICs can be highly effective and more efficient substitutes of lossy diodes in a bridge rectifier application. The LM74670-Q1 is designed to control a single N-Channel MOSFET in a full or half bridge rectifier as replacement for diode. In a full bridge rectifie ...
LM5023 AC-DC Quasi-Resonant Current Mode
... stress during a sustained overload conditions the LM5023 offers a hiccup mode for over-current protection and provides a current-limit restart timer to disable the outputs and forcing a delayed restart (hiccup mode). For offline start-up, an external depletion mode N-channel MOSFET can be used. This ...
... stress during a sustained overload conditions the LM5023 offers a hiccup mode for over-current protection and provides a current-limit restart timer to disable the outputs and forcing a delayed restart (hiccup mode). For offline start-up, an external depletion mode N-channel MOSFET can be used. This ...
MAX2630–MAX2633 VHF-to-Microwave, +3V, General-Purpose Amplifiers _______________General Description
... system at the minimum operating frequency. Use the following equation to calculate their minimum value: CBLOCK = ...
... system at the minimum operating frequency. Use the following equation to calculate their minimum value: CBLOCK = ...
General Description Features
... is detected, it always takes precedence over the PSE source, allowing the wall adapter to power the EV kit. Warning: The EV kit is designed to operate with high voltages. Dangerous voltages are present on this EV kit and on equipment connected to it. Users who power up this EV kit or power the sourc ...
... is detected, it always takes precedence over the PSE source, allowing the wall adapter to power the EV kit. Warning: The EV kit is designed to operate with high voltages. Dangerous voltages are present on this EV kit and on equipment connected to it. Users who power up this EV kit or power the sourc ...
High-Efficiency, Low-Supply-Current, Compact, Step-Up DC-DC Converters General Description ____________________________Features
... switch to minimize ringing at LX. The damping switch connects an external resistor (R1) across the inductor when the inductor’s energy is depleted (Figure 2). Normally, when the energy in the inductor is insufficient to supply current to the output, the capacitance and inductance at LX form a resona ...
... switch to minimize ringing at LX. The damping switch connects an external resistor (R1) across the inductor when the inductor’s energy is depleted (Figure 2). Normally, when the energy in the inductor is insufficient to supply current to the output, the capacitance and inductance at LX form a resona ...
a High Speed, Precision Sample-and-Hold Amplifier AD585
... 3. The low charge transfer of the analog switch keeps sample-to hold offset below 3 mV with the on-chip 100 pF hold capacitor, eliminating the trade-off between acquisition time and S/H offset required with other SHAs. 4. The AD585 has internal pretrimmed application resistors for ...
... 3. The low charge transfer of the analog switch keeps sample-to hold offset below 3 mV with the on-chip 100 pF hold capacitor, eliminating the trade-off between acquisition time and S/H offset required with other SHAs. 4. The AD585 has internal pretrimmed application resistors for ...
ADM1073 - Analog Devices
... 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 ...
... 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 ...
MAX3316–MAX3319 2.5V, 1µA, 460kbps, RS-232-Compatible Transceivers General Description
... The MAX3316–MAX3319 transceivers have a proprietary low-dropout transmitter output stage enabling RS-232compatible performance from +2.25V to +3.0V with a dual-charge pump. These devices require only four 0.1µF capacitors, and are guaranteed to operate at data rates up to 460kbps. The MAX3318/MAX331 ...
... The MAX3316–MAX3319 transceivers have a proprietary low-dropout transmitter output stage enabling RS-232compatible performance from +2.25V to +3.0V with a dual-charge pump. These devices require only four 0.1µF capacitors, and are guaranteed to operate at data rates up to 460kbps. The MAX3318/MAX331 ...
45MHz to 650MHz, Integrated IF VCOs with Differential Output General Description Features
... two inductors, use the simple model in Figure 7 to calculate XL and LEQ. The LF in Figures 1–5 represents an equivalent inductance as seen by pin 1 (IND). The equivalent inductance corresponds to the inductive reactance connected to IND at the desired oscillation frequency (fNOMINAL). LEQ = XL / (2π ...
... two inductors, use the simple model in Figure 7 to calculate XL and LEQ. The LF in Figures 1–5 represents an equivalent inductance as seen by pin 1 (IND). The equivalent inductance corresponds to the inductive reactance connected to IND at the desired oscillation frequency (fNOMINAL). LEQ = XL / (2π ...
... - Regions 1, 3 and 4 are activated when the only duty cycle that is potentially able to be negative is instead positive. The activation of Region 2 hinges on the nonactivation of the others. Therefore, only at most three simple comparison operations must be done to determinate the appropriate region ...
MAX5974E Evaluation Kit Evaluates: MAX5974E General Description Features
... source is detected, it always takes precedence over the PSE source, allowing the wall adapter to power the EV kit. Warning: The EV kit is designed to operate with high voltages. Dangerous voltages are present on this EV kit and on equipment connected to it. Users who power up this EV kit or power th ...
... source is detected, it always takes precedence over the PSE source, allowing the wall adapter to power the EV kit. Warning: The EV kit is designed to operate with high voltages. Dangerous voltages are present on this EV kit and on equipment connected to it. Users who power up this EV kit or power th ...
A new ZVT PWM DC-DC converter
... parallel resonance. The main diode is turned on and off with ZVS. The load current and the reverse recovery current of the main diode and the energy of the resonant capacitor including the parasitic capacitor of the main switch are transferred to the resonant inductor by an auxiliary switch. However ...
... parallel resonance. The main diode is turned on and off with ZVS. The load current and the reverse recovery current of the main diode and the energy of the resonant capacitor including the parasitic capacitor of the main switch are transferred to the resonant inductor by an auxiliary switch. However ...
Slide 1
... applications. Uses digital logic to implement the SAR algorithm. Uses an analog sample and hold, comparator, and DAC. ...
... applications. Uses digital logic to implement the SAR algorithm. Uses an analog sample and hold, comparator, and DAC. ...
BD91361MUV
... Since this IC functions with high efficiency without significant heat generation in most applications, no special consideration is needed on permissible dissipation or heat generation. In case of extreme conditions, (such as lower input voltage, higher output voltage, heavier load, and/or higher tem ...
... Since this IC functions with high efficiency without significant heat generation in most applications, no special consideration is needed on permissible dissipation or heat generation. In case of extreme conditions, (such as lower input voltage, higher output voltage, heavier load, and/or higher tem ...
Capacitor
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A capacitor (originally known as a condenser) is a passive two-terminal electrical component used to store electrical energy temporarily in an electric field. The forms of practical capacitors vary widely, but all contain at least two electrical conductors (plates) separated by a dielectric (i.e. an insulator that can store energy by becoming polarized). The conductors can be thin films, foils or sintered beads of metal or conductive electrolyte, etc. The nonconducting dielectric acts to increase the capacitor's charge capacity. A dielectric can be glass, ceramic, plastic film, air, vacuum, paper, mica, oxide layer etc. Capacitors are widely used as parts of electrical circuits in many common electrical devices. Unlike a resistor, an ideal capacitor does not dissipate energy. Instead, a capacitor stores energy in the form of an electrostatic field between its plates.When there is a potential difference across the conductors (e.g., when a capacitor is attached across a battery), an electric field develops across the dielectric, causing positive charge +Q to collect on one plate and negative charge −Q to collect on the other plate. If a battery has been attached to a capacitor for a sufficient amount of time, no current can flow through the capacitor. However, if a time-varying voltage is applied across the leads of the capacitor, a displacement current can flow.An ideal capacitor is characterized by a single constant value, its capacitance. Capacitance is defined as the ratio of the electric charge Q on each conductor to the potential difference V between them. The SI unit of capacitance is the farad (F), which is equal to one coulomb per volt (1 C/V). Typical capacitance values range from about 1 pF (10−12 F) to about 1 mF (10−3 F).The larger the surface area of the ""plates"" (conductors) and the narrower the gap between them, the greater the capacitance is. In practice, the dielectric between the plates passes a small amount of leakage current and also has an electric field strength limit, known as the breakdown voltage. The conductors and leads introduce an undesired inductance and resistance.Capacitors are widely used in electronic circuits for blocking direct current while allowing alternating current to pass. In analog filter networks, they smooth the output of power supplies. In resonant circuits they tune radios to particular frequencies. In electric power transmission systems, they stabilize voltage and power flow.