MAX6338 Quad Voltage Monitor in µMAX Package General Description Features
... The MAX6338 has an internally trimmed threshold that minimizes or eliminates the need for external components. The four open-drain outputs have weak (10µA) internal pullups to VCC, allowing them to interface easily with other logic devices. The MAX6338 can monitor power supplies with either 5% or 10 ...
... The MAX6338 has an internally trimmed threshold that minimizes or eliminates the need for external components. The four open-drain outputs have weak (10µA) internal pullups to VCC, allowing them to interface easily with other logic devices. The MAX6338 can monitor power supplies with either 5% or 10 ...
supplementary
... resistance. The double layer is modelled as either a capacitor or a CPE. The advantage of the R-C fits is that the capacitive values resultant from the fits to different solutions or even different materials can be directly compared. The advantage of fitting to R-CPE circuits is that the least squar ...
... resistance. The double layer is modelled as either a capacitor or a CPE. The advantage of the R-C fits is that the capacitive values resultant from the fits to different solutions or even different materials can be directly compared. The advantage of fitting to R-CPE circuits is that the least squar ...
Advances in Environmental Biology
... simulated. Also as an effective method for mitigating the intensity of unbalanced voltage on ASD, the idea of replacing the diode rectifier with an active PWM rectifier in investigated. Since the aim of this module is to introduce a helpful method to instructor for teaching the examples of unbalance ...
... simulated. Also as an effective method for mitigating the intensity of unbalanced voltage on ASD, the idea of replacing the diode rectifier with an active PWM rectifier in investigated. Since the aim of this module is to introduce a helpful method to instructor for teaching the examples of unbalance ...
ph104exp03_DC_Circuits_03 - Physics Department, Princeton
... indicate their value. The resistors you will be using throughout the semester are metal-film resistors. On metal-film resistors the first 4 bands, starting with the band nearest one end, indicate the value. The first three bands indicate the value of the resistor, as digits, and the fourth band indi ...
... indicate their value. The resistors you will be using throughout the semester are metal-film resistors. On metal-film resistors the first 4 bands, starting with the band nearest one end, indicate the value. The first three bands indicate the value of the resistor, as digits, and the fourth band indi ...
GZ2512721277
... ZVS operation can only be achieved with a limited load and input-voltage range, unless a relatively large inductance is provided in series with the primary winding of the transformer either by an increased leakage inductance of the transformer and/or by an additional external inductor. This increase ...
... ZVS operation can only be achieved with a limited load and input-voltage range, unless a relatively large inductance is provided in series with the primary winding of the transformer either by an increased leakage inductance of the transformer and/or by an additional external inductor. This increase ...
Example 17 Use current division to determine the current i through
... In this problem, we are trying to find the current i through the 7 kΩ resistor using current division. Let’s consider this circuit, the source current 10 mA is divided into two branch currents i1 and i 2 . And then i 2 is divided by the two parallel branches. If we can find i 2 , we might use curren ...
... In this problem, we are trying to find the current i through the 7 kΩ resistor using current division. Let’s consider this circuit, the source current 10 mA is divided into two branch currents i1 and i 2 . And then i 2 is divided by the two parallel branches. If we can find i 2 , we might use curren ...
FAN5341 Series Boost LED Driver with Integrated Schottky Diode and
... In a typical application, the input and output capacitors should be placed as close to the IC as possible; no additional capacitance is needed to ensure proper functionality. However, in a testing environment, where the FAN5341 is typically powered by a power supply with relatively long cables, an a ...
... In a typical application, the input and output capacitors should be placed as close to the IC as possible; no additional capacitance is needed to ensure proper functionality. However, in a testing environment, where the FAN5341 is typically powered by a power supply with relatively long cables, an a ...
Course Title: Basic Electricity and Ohms Law Course description
... In the previous example we used eight light bulbs in series and all had identical power, resistance, and voltage ratings. All of the factors are directly related and depend on each other. So we had a nice uniform voltage drop and resistance from one circuit element to the next. In the figure above w ...
... In the previous example we used eight light bulbs in series and all had identical power, resistance, and voltage ratings. All of the factors are directly related and depend on each other. So we had a nice uniform voltage drop and resistance from one circuit element to the next. In the figure above w ...
Practice use of the Digital Multimeter.
... Note: to practice the use of the Digital Multimeter by taking measurements of many different components. It is essential that the DMM is set up to the correct mode and that the leads are in the correct sockets. Further more it is essential to ensure that there is no voltage present for resistance or ...
... Note: to practice the use of the Digital Multimeter by taking measurements of many different components. It is essential that the DMM is set up to the correct mode and that the leads are in the correct sockets. Further more it is essential to ensure that there is no voltage present for resistance or ...
Chapter 21
... We must first find the equivalent resistance of the entire circuit and then apply Ohm’s Law to determine the current I that is drawn from the battery. To accomplish this we note that the 7.1-Ω and 5.8-Ω resistors are connected in series, and their 12.9-Ω equivalent resistance is connected in paralle ...
... We must first find the equivalent resistance of the entire circuit and then apply Ohm’s Law to determine the current I that is drawn from the battery. To accomplish this we note that the 7.1-Ω and 5.8-Ω resistors are connected in series, and their 12.9-Ω equivalent resistance is connected in paralle ...
Basic Electronics for the New Ham (Outline)
... • There is greatest potential for meter damage when measuring current than any other function. • Just as in voltage, there is two kinds of current associated with the voltage, AC and DC • This meter will only measure DC, more expensive meters will measure both currents • To measure current, the VOM ...
... • There is greatest potential for meter damage when measuring current than any other function. • Just as in voltage, there is two kinds of current associated with the voltage, AC and DC • This meter will only measure DC, more expensive meters will measure both currents • To measure current, the VOM ...
AP65550 Description Pin Assignments
... Feedback Input. FB senses the output voltage and regulates it. Drive FB with a resistive voltage divider connected to it from the output voltage. Internal power supply output pin to connect an additional capacitor. Connect a 1μF (typical) capacitor as close as possible to the VREG5 and GND. This pin ...
... Feedback Input. FB senses the output voltage and regulates it. Drive FB with a resistive voltage divider connected to it from the output voltage. Internal power supply output pin to connect an additional capacitor. Connect a 1μF (typical) capacitor as close as possible to the VREG5 and GND. This pin ...
Power-Gated MOS Current Mode Logic (PG
... the area overhead, the lack of tool support, and the large static power consumption, have limited the diffusion of such design option. Recently, the CAD tool problem was mitigated by the work of Badel et al. [2], which proposes a standard cell MCML library and discusses the problem of integrating su ...
... the area overhead, the lack of tool support, and the large static power consumption, have limited the diffusion of such design option. Recently, the CAD tool problem was mitigated by the work of Badel et al. [2], which proposes a standard cell MCML library and discusses the problem of integrating su ...
TECHNICAL SPECIFICATION
... IP55 Operatingvoltage: 400V Ratedcurrent:100A Shortcircuitcurrent: 16kA ...
... IP55 Operatingvoltage: 400V Ratedcurrent:100A Shortcircuitcurrent: 16kA ...
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.