KTa0.6Nb0.4O3 Ferroelectric Thin Film Behavior at Microwave
... 1. IDC Measurements: Table I shows that the agility of IDCs is extremely dependent on the substrate growth. Indeed, on alumina, this factor is only 1.3% at 1 GHz and under a 15-kV/cm electric field; this poor agility can be explained by the disordered microstructure of the films. On MgO substrate, the ...
... 1. IDC Measurements: Table I shows that the agility of IDCs is extremely dependent on the substrate growth. Indeed, on alumina, this factor is only 1.3% at 1 GHz and under a 15-kV/cm electric field; this poor agility can be explained by the disordered microstructure of the films. On MgO substrate, the ...
MAX15031 80V, 300mW Boost Converter and Current Monitor for APD Bias Applications
... The MAX15031 consists of a constant-frequency pulsewidth modulating (PWM) step-up DC-DC converter with an internal switch and a high-side current monitor with high-speed adjustable current limiting. This device can generate output voltages up to 76V and provides current monitoring up to 4mA (up to 3 ...
... The MAX15031 consists of a constant-frequency pulsewidth modulating (PWM) step-up DC-DC converter with an internal switch and a high-side current monitor with high-speed adjustable current limiting. This device can generate output voltages up to 76V and provides current monitoring up to 4mA (up to 3 ...
MAX1964/MAX1965 Tracking/Sequencing Triple/Quintuple Power-Supply Controllers General Description
... MAX1965 generates four positive outputs and one negative output to provide an inexpensive system power supply. The MAX1964 includes a current-mode synchronous step-down controller and two positive regulator gain blocks. The MAX1965 has one additional positive gain block and one negative regulator ga ...
... MAX1965 generates four positive outputs and one negative output to provide an inexpensive system power supply. The MAX1964 includes a current-mode synchronous step-down controller and two positive regulator gain blocks. The MAX1965 has one additional positive gain block and one negative regulator ga ...
UCC25701 数据资料 dataSheet 下载
... UCC35701/2 is pin to pin compatible to UCC3570 but is not a direct drop-in replacement for UCC3570 sockets. The changes required to the power supply printed circuit board of for existing UCC3570 designs are minimal. For conversion, only one extra resistor to set the volt-second clamp needs to be add ...
... UCC35701/2 is pin to pin compatible to UCC3570 but is not a direct drop-in replacement for UCC3570 sockets. The changes required to the power supply printed circuit board of for existing UCC3570 designs are minimal. For conversion, only one extra resistor to set the volt-second clamp needs to be add ...
III. MoDeling of proposed Topology
... Vo by n + 1 bidirectional switches. The output voltage of this sub-multilevel converter has zero or positive values. The presented unit requires bidirectional switches with the capability of blocking voltage and conducting current in both directions. Several arrangements can be used to create bidire ...
... Vo by n + 1 bidirectional switches. The output voltage of this sub-multilevel converter has zero or positive values. The presented unit requires bidirectional switches with the capability of blocking voltage and conducting current in both directions. Several arrangements can be used to create bidire ...
AN2007-03 7ED020E12-FI-W2
... the timer output (IC8, Pin 3) to HIGH. This HIGH signal will switch on Q1 and Q2. Q1 will signal the fault to Pin X5-8 (open-collector output) and Q2 will shutdown all drivers through the /SD input. The timer output will be reset to LOW defined by a delay time t = R20 • C23. In case the LOW signal a ...
... the timer output (IC8, Pin 3) to HIGH. This HIGH signal will switch on Q1 and Q2. Q1 will signal the fault to Pin X5-8 (open-collector output) and Q2 will shutdown all drivers through the /SD input. The timer output will be reset to LOW defined by a delay time t = R20 • C23. In case the LOW signal a ...
DS1843 Fast Sample-and-Hold Circuit General Description Features
... designed to operate in fiber optic burst-mode systems; however, it can be used in other applications requiring a fast sample-and-hold circuit. The output can be configured for single-ended operations. ...
... designed to operate in fiber optic burst-mode systems; however, it can be used in other applications requiring a fast sample-and-hold circuit. The output can be configured for single-ended operations. ...
SP3281
... The charge pump is a Sipex–patented design (U.S. #5,306,954) and uses a unique approach compared to older less–efficient designs. The charge pump uses a four–phase voltage shifting technique to attain symmetrical ±5.5V power supplies. The internal power supply consists of a regulated dual charge pum ...
... The charge pump is a Sipex–patented design (U.S. #5,306,954) and uses a unique approach compared to older less–efficient designs. The charge pump uses a four–phase voltage shifting technique to attain symmetrical ±5.5V power supplies. The internal power supply consists of a regulated dual charge pum ...
LTC3108 - Ultralow Voltage Step-Up Converter
... The LTC3108 utilizes a MOSFET switch to form a resonant step-up oscillator using an external step-up transformer and a small coupling capacitor. This allows it to boost input voltages as low as 20mV high enough to provide multiple regulated output voltages for powering other circuits. The frequency ...
... The LTC3108 utilizes a MOSFET switch to form a resonant step-up oscillator using an external step-up transformer and a small coupling capacitor. This allows it to boost input voltages as low as 20mV high enough to provide multiple regulated output voltages for powering other circuits. The frequency ...
tesfaq 27KB Aug 20 2001 09:27:16 AM - hot
... A special form of static gap is known as the quench gap. In this gap the electrodes are wide flat plates with their faces parallel and spaced very close. The electrodes are spaced from each other with mica rings that enclose the gap area. The gap areas between electrodes become sealed chambers and ...
... A special form of static gap is known as the quench gap. In this gap the electrodes are wide flat plates with their faces parallel and spaced very close. The electrodes are spaced from each other with mica rings that enclose the gap area. The gap areas between electrodes become sealed chambers and ...
Design of AC-DC Grid Connected Converter using Multi
... variable which is taken into consideration by optimization algorithm is understood. In the case of described GCC the considered optimization parameters are marked in Fig. 1. By the optimization procedure type of used power semiconductors or DC-link capacitors (converter elements) as well as DC-link ...
... variable which is taken into consideration by optimization algorithm is understood. In the case of described GCC the considered optimization parameters are marked in Fig. 1. By the optimization procedure type of used power semiconductors or DC-link capacitors (converter elements) as well as DC-link ...
AHK3296 数据资料DataSheet下载
... Capacitor area is another contributor to ESR. Capacitors that are physically large will have a lower ESR when compared to an equivalent material smaller capacitor. These larger devices can improve circuit transient response when compared to an equal value capacitor in a smaller package size. ...
... Capacitor area is another contributor to ESR. Capacitors that are physically large will have a lower ESR when compared to an equivalent material smaller capacitor. These larger devices can improve circuit transient response when compared to an equal value capacitor in a smaller package size. ...
The 555 Timer IC
... The 555 Integrated Circuit (IC) Timer is very popular IC since it is first introduced in 1972. It can be used to construct several multivibrator circuits easily. The basic block diagram of 555 IC Timer is given in Fig. 8.1. VCC ...
... The 555 Integrated Circuit (IC) Timer is very popular IC since it is first introduced in 1972. It can be used to construct several multivibrator circuits easily. The basic block diagram of 555 IC Timer is given in Fig. 8.1. VCC ...
... gh components (mg and mh). Additionally, this transformation normalizes the reference vector to fit into a three-unit-per-side hexagon. Table 3.2 shows the equivalent components in the first sextant (m1 and m2) that are used for calculation of duty cycles. The theoretical maximum amplitude of the no ...
MP3394S - Monolithic Power System
... Selecting the Input Capacitor The input capacitor reduces the surge current drawn from the input supply and the switching noise from the device. The input capacitor impedance at the switching frequency should be less than the input source impedance to prevent the high-frequency switching current fro ...
... Selecting the Input Capacitor The input capacitor reduces the surge current drawn from the input supply and the switching noise from the device. The input capacitor impedance at the switching frequency should be less than the input source impedance to prevent the high-frequency switching current fro ...
AP1539
... The bulk capacitor’s ESR will determine the output ripple voltage and the initial voltage drop after a high slew-rate transient. An aluminum electrolytic capacitor's ESR value is related to the capacitance and its voltage rating. In most case, higher voltage electrolytic capacitors have lower ESR va ...
... The bulk capacitor’s ESR will determine the output ripple voltage and the initial voltage drop after a high slew-rate transient. An aluminum electrolytic capacitor's ESR value is related to the capacitance and its voltage rating. In most case, higher voltage electrolytic capacitors have lower ESR va ...
Capacitor
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.