Design Guidelines for Flyback Converter Using HFC0400
... (FB>2V), the switching frequency is fixed with frequency jittering for EMI reduction. The FB voltage regulates the primary side peak current signal (sensed by sensing resistor) connected to CS pin with an internal 1/3 voltage gain. When the load decreases to a given level (1.33V
... (FB>2V), the switching frequency is fixed with frequency jittering for EMI reduction. The FB voltage regulates the primary side peak current signal (sensed by sensing resistor) connected to CS pin with an internal 1/3 voltage gain. When the load decreases to a given level (1.33V
3B42 数据手册DataSheet 下载
... Output modules accept 0 to +10V (or +10V) single-ended signals and provide an isolated 4-20 mA (or 0-20 mA) process signal. All modules feature a universal pin-out and may be readily hot-swapped under full power and interchanged without disrupting field wiring. The Analog Devices 3B Series Signal Co ...
... Output modules accept 0 to +10V (or +10V) single-ended signals and provide an isolated 4-20 mA (or 0-20 mA) process signal. All modules feature a universal pin-out and may be readily hot-swapped under full power and interchanged without disrupting field wiring. The Analog Devices 3B Series Signal Co ...
Gyro precessing system
... tum of the gyro rotor. If the rotor is driven by a syn 35 may be used to obtain the required characteristic. The resonant frequency of the L-C series combination should chronous motor the speed of the rotor varies linearly fall either below the lowest frequency of source 4 or with changes in frequen ...
... tum of the gyro rotor. If the rotor is driven by a syn 35 may be used to obtain the required characteristic. The resonant frequency of the L-C series combination should chronous motor the speed of the rotor varies linearly fall either below the lowest frequency of source 4 or with changes in frequen ...
Electrostatic Discharge Power Transformation – An Approach to
... The electrostatic generator has been developed and configured to achieve a continuous high voltage supply for the transformation device. To achieve brushless operation as described in [5] and to avoid charge loss at the sectors of the disks the configuration of the electrostatic generator is quite d ...
... The electrostatic generator has been developed and configured to achieve a continuous high voltage supply for the transformation device. To achieve brushless operation as described in [5] and to avoid charge loss at the sectors of the disks the configuration of the electrostatic generator is quite d ...
MAX17067 Low-Noise Step-Up DC-DC Converter General Description Features
... The MAX17067 boost converter incorporates highperformance (at 1.2MHz), current-mode, fixed-frequency, pulse-width modulation (PWM) circuitry with a built-in 0.15Ω n-channel MOSFET to provide a highly efficient regulator with fast response. High switching frequency (640kHz or 1.2MHz selectable) allow ...
... The MAX17067 boost converter incorporates highperformance (at 1.2MHz), current-mode, fixed-frequency, pulse-width modulation (PWM) circuitry with a built-in 0.15Ω n-channel MOSFET to provide a highly efficient regulator with fast response. High switching frequency (640kHz or 1.2MHz selectable) allow ...
Sample HTPD article for RSI - Narodowe Centrum Badań Jądrowych
... a blue LED connected to a pulse generator (Keysight 81150A). With this kind of generator, it is possible to have signal with arbitrary amplitude and frequency. All the measurements have been done with the MPPC coupled to a LaBr3 crystal of 25.4 mm diameter and 16.9 mm height, covered with teflon. Th ...
... a blue LED connected to a pulse generator (Keysight 81150A). With this kind of generator, it is possible to have signal with arbitrary amplitude and frequency. All the measurements have been done with the MPPC coupled to a LaBr3 crystal of 25.4 mm diameter and 16.9 mm height, covered with teflon. Th ...
48-Pulse Based SSSC (Static Synchronous Series
... frequent update of the charge in the dc capacitor, compared to the 24-pulse case. Thus, reducing notably the ripple existing in the dc voltage. An ideal VSI, would provide a sinusoidal output voltage and would have zero input current from the dc capacitor [1]. In this way, the dc capacitor would ass ...
... frequent update of the charge in the dc capacitor, compared to the 24-pulse case. Thus, reducing notably the ripple existing in the dc voltage. An ideal VSI, would provide a sinusoidal output voltage and would have zero input current from the dc capacitor [1]. In this way, the dc capacitor would ass ...
Hoefer Power Supply
... Important: The instrument must always be used with the earth lead of the power cord correctly grounded to earth at the mains outlet. Work area. The bench and floor should be dry. High-voltage connections. The high-voltage leads should be intact and not frayed. The plug should have a protective plast ...
... Important: The instrument must always be used with the earth lead of the power cord correctly grounded to earth at the mains outlet. Work area. The bench and floor should be dry. High-voltage connections. The high-voltage leads should be intact and not frayed. The plug should have a protective plast ...
Q-Astec - First transient power converter using switched
... Currents are switched to the load or to the return path Parallel switching Current Paths are utilized Transient can be supported in the time that it takes to turn the FET On/Off When output current follows processor demand current, significant reduction in output capacitance can be observed ...
... Currents are switched to the load or to the return path Parallel switching Current Paths are utilized Transient can be supported in the time that it takes to turn the FET On/Off When output current follows processor demand current, significant reduction in output capacitance can be observed ...
Quadruple Half-H Drivers (Rev. C)
... Supply voltage, VCC1 (see Note 1) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 36 V Output supply voltage, VCC2 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ...
... Supply voltage, VCC1 (see Note 1) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 36 V Output supply voltage, VCC2 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ...
LM4040 PRECISION MICROPOWER SHUNT VOLTAGE REFERENCES Description
... The LM4040 is a family of bandgap circuits designed to achieve precision micro-power voltage references of 2.5V, 3.0V and 5.0V. The devices are available in 0.2% B-grade, 0.5% C-grade and 1% D-grade initial tolerances. They are available in small outline SOT23 and SC70-5 surface mount packages which ...
... The LM4040 is a family of bandgap circuits designed to achieve precision micro-power voltage references of 2.5V, 3.0V and 5.0V. The devices are available in 0.2% B-grade, 0.5% C-grade and 1% D-grade initial tolerances. They are available in small outline SOT23 and SC70-5 surface mount packages which ...
BDTIC 900V CoolMOS™ C3 High Voltage Power MOSFET Using Charge Compensation Principle
... 900V CoolMOS™ C3 also offers a very low figure-of-merit on-resistance times gate charge (RDS(on)*Qg) of 34W*nC, translating into low conduction, driving and switching losses. The energy stored in the output capacitance is reduced by a factor of two compared to conventional 900V MOSFETs, which reduce ...
... 900V CoolMOS™ C3 also offers a very low figure-of-merit on-resistance times gate charge (RDS(on)*Qg) of 34W*nC, translating into low conduction, driving and switching losses. The energy stored in the output capacitance is reduced by a factor of two compared to conventional 900V MOSFETs, which reduce ...
Si3402EV: Non-Isolated Evaluation Board for the Si3402
... For the standard ESR capacitor, the ESR increase at very low temperatures may cause a loop stability issue. A typical evaluation board has been shown to exhibit instability under very heavy loads at –20 °C. Due to self-heating, this condition is not a great concern. However, using a low ESR filter c ...
... For the standard ESR capacitor, the ESR increase at very low temperatures may cause a loop stability issue. A typical evaluation board has been shown to exhibit instability under very heavy loads at –20 °C. Due to self-heating, this condition is not a great concern. However, using a low ESR filter c ...
Rectifier
A rectifier is an electrical device that converts alternating current (AC), which periodically reverses direction, to direct current (DC), which flows in only one direction. The process is known as rectification. Physically, rectifiers take a number of forms, including vacuum tube diodes, mercury-arc valves, copper and selenium oxide rectifiers, semiconductor diodes, silicon-controlled rectifiers and other silicon-based semiconductor switches. Historically, even synchronous electromechanical switches and motors have been used. Early radio receivers, called crystal radios, used a ""cat's whisker"" of fine wire pressing on a crystal of galena (lead sulfide) to serve as a point-contact rectifier or ""crystal detector"".Rectifiers have many uses, but are often found serving as components of DC power supplies and high-voltage direct current power transmission systems. Rectification may serve in roles other than to generate direct current for use as a source of power. As noted, detectors of radio signals serve as rectifiers. In gas heating systems flame rectification is used to detect presence of a flame.Because of the alternating nature of the input AC sine wave, the process of rectification alone produces a DC current that, though unidirectional, consists of pulses of current. Many applications of rectifiers, such as power supplies for radio, television and computer equipment, require a steady constant DC current (as would be produced by a battery). In these applications the output of the rectifier is smoothed by an electronic filter (usually a capacitor) to produce a steady current.More complex circuitry that performs the opposite function, converting DC to AC, is called an inverter.