Design Considerations for Designing with Cree SiC Modules Part 1.
... The most critical parameter to control in the application of the SiC MOSFET module is to ensure that voltage overshoot does not exceed the maximum device rating. This overshoot is the result of a resonant circuit formed by the output capacitance of the module and the stray inductance present between ...
... The most critical parameter to control in the application of the SiC MOSFET module is to ensure that voltage overshoot does not exceed the maximum device rating. This overshoot is the result of a resonant circuit formed by the output capacitance of the module and the stray inductance present between ...
Source Transformations, Lecture Set 8
... identified, made up of one or more parts. That portion can be replaced with another set of components, if we do it properly. We call these portions equivalent circuits. Two circuits are considered to be equivalent if they behave the same with respect to the things to which they are connected. One ca ...
... identified, made up of one or more parts. That portion can be replaced with another set of components, if we do it properly. We call these portions equivalent circuits. Two circuits are considered to be equivalent if they behave the same with respect to the things to which they are connected. One ca ...
LTC1731-8.2/LTC1731-8.4 - Lithium
... PROG pin to ground and a sense resistor (RSENSE) between the VCC and SENSE pins. RPROG sets a program current through an internal trimmed 800Ω resistor that creates a voltage drop from VCC to the input of the current amplifier (CA). The current amplifier servos the gate of the external P-channel MOS ...
... PROG pin to ground and a sense resistor (RSENSE) between the VCC and SENSE pins. RPROG sets a program current through an internal trimmed 800Ω resistor that creates a voltage drop from VCC to the input of the current amplifier (CA). The current amplifier servos the gate of the external P-channel MOS ...
MAX1760/MAX1760H 0.8A, Low-Noise, 1MHz, Step-Up DC-DC Converter General Description
... required for output voltages greater than 4V. The MAX1760 guarantees startup with an input voltage as low as 1.1V and remains operational down to an input of just 0.7V. It is optimized for use in cellular phones and other applications requiring low noise and low quiescent current for maximum battery ...
... required for output voltages greater than 4V. The MAX1760 guarantees startup with an input voltage as low as 1.1V and remains operational down to an input of just 0.7V. It is optimized for use in cellular phones and other applications requiring low noise and low quiescent current for maximum battery ...
Capacitor Self
... 1. Laboratory reports will be due at the beginning of each lab meeting. Work that was performed the previous lab meeting is to be documented and turned in the following week at the beginning of the lab period. 2. Late reports will have points deducted at a rate of 10% per weekday. A report will be c ...
... 1. Laboratory reports will be due at the beginning of each lab meeting. Work that was performed the previous lab meeting is to be documented and turned in the following week at the beginning of the lab period. 2. Late reports will have points deducted at a rate of 10% per weekday. A report will be c ...
Switching, protection, communication: the new NZM circuit
... NZM can be set to 12 to 14 times the rated motor current to ensure that starting current peaks are not shut down by the protective device. Circuitbreakers NZM provide reliable and phase failure sensitive protection for motors from 15 A to 1400 A. ...
... NZM can be set to 12 to 14 times the rated motor current to ensure that starting current peaks are not shut down by the protective device. Circuitbreakers NZM provide reliable and phase failure sensitive protection for motors from 15 A to 1400 A. ...
AAT3176A 数据资料DataSheet下载
... Serial Control) interface. This allows smooth transitions and flexible adjustment of brightness in flash or other lighting modes. Operating at a fast 1MHz switching frequency, the dual-mode (1x/2x) operation of the internal charge pump offers excellent power efficiency for both flash and movie modes ...
... Serial Control) interface. This allows smooth transitions and flexible adjustment of brightness in flash or other lighting modes. Operating at a fast 1MHz switching frequency, the dual-mode (1x/2x) operation of the internal charge pump offers excellent power efficiency for both flash and movie modes ...
Qucs - A Tutorial
... In fig. 5 is shown when clicking the Components tab. There are lumped components (e.g. resistors, capacitors), sources (e.g. DC and AC sources), transmission lines (e.g. microstrip, coaxial cable, twisted pair), nonlinear components (e.g. ideal opamp, transistors), digital components (e.g. flip-flop ...
... In fig. 5 is shown when clicking the Components tab. There are lumped components (e.g. resistors, capacitors), sources (e.g. DC and AC sources), transmission lines (e.g. microstrip, coaxial cable, twisted pair), nonlinear components (e.g. ideal opamp, transistors), digital components (e.g. flip-flop ...
MAX1830/MAX1831 3A, 1MHz, Low-Voltage, Step-Down Regulators with Synchronous Rectification and Internal Switches
... Soft-start allows a gradual increase of the current-limit level at startup to reduce input-surge currents. The MAX1830/MAX1831 contain internal digital soft-start circuits, controlled by a counter, a digital-to-analog converter (DAC), and the current-limit comparator. At power-on or in shutdown mode ...
... Soft-start allows a gradual increase of the current-limit level at startup to reduce input-surge currents. The MAX1830/MAX1831 contain internal digital soft-start circuits, controlled by a counter, a digital-to-analog converter (DAC), and the current-limit comparator. At power-on or in shutdown mode ...
FIN1019 3.3V LVDS High Speed Differential Driver/Receiver
... (LVDS) technology. The driver translates LVTTL signals to LVDS levels with a typical differential output swing of 350mV and the receiver translates LVDS signals, with a typical differential input threshold of 100mV, into LVTTL levels. LVDS technology provides low EMI at ultra low power dissipation e ...
... (LVDS) technology. The driver translates LVTTL signals to LVDS levels with a typical differential output swing of 350mV and the receiver translates LVDS signals, with a typical differential input threshold of 100mV, into LVTTL levels. LVDS technology provides low EMI at ultra low power dissipation e ...
TRIAC
TRIAC, from triode for alternating current, is a genericized tradename for an electronic component that can conduct current in either direction when it is triggered (turned on), and is formally called a bidirectional triode thyristor or bilateral triode thyristor.TRIACs are a subset of thyristors and are closely related to silicon controlled rectifiers (SCR). However, unlike SCRs, which are unidirectional devices (that is, they can conduct current only in one direction), TRIACs are bidirectional and so allow current in either direction. Another difference from SCRs is that TRIAC current can be enabled by either a positive or negative current applied to its gate electrode, whereas SCRs can be triggered only by positive current into the gate. To create a triggering current, a positive or negative voltage has to be applied to the gate with respect to the MT1 terminal (otherwise known as A1).Once triggered, the device continues to conduct until the current drops below a certain threshold called the holding current.The bidirectionality makes TRIACs very convenient switches for alternating-current (AC) circuits, also allowing them to control very large power flows with milliampere-scale gate currents. In addition, applying a trigger pulse at a controlled phase angle in an AC cycle allows control of the percentage of current that flows through the TRIAC to the load (phase control), which is commonly used, for example, in controlling the speed of low-power induction motors, in dimming lamps, and in controlling AC heating resistors.