Media Center | SMARTEK Vision
... positive and negative leads of the power supply to the power terminal of the Strobe Controller, as well as the protective earth conductor (if available). Step 2: Switch on the power supply as well as the power switch on the front side of the Strobe Controller. Run the configuration tool ScLibClient ...
... positive and negative leads of the power supply to the power terminal of the Strobe Controller, as well as the protective earth conductor (if available). Step 2: Switch on the power supply as well as the power switch on the front side of the Strobe Controller. Run the configuration tool ScLibClient ...
NOT FOR NEW DESIGNS
... Connect to ground plane via 15nH inductor. DC return for the second stage bias circuit. This pin has no internal bonding; therefore, this pin can be connected to output pin 7, connected to the ground plane, or not connected. Slight tuning of the output match may be required due to stray capacitance ...
... Connect to ground plane via 15nH inductor. DC return for the second stage bias circuit. This pin has no internal bonding; therefore, this pin can be connected to output pin 7, connected to the ground plane, or not connected. Slight tuning of the output match may be required due to stray capacitance ...
LM5104 High Voltage Half-Bridge Gate Driver with Adaptive Delay
... drive both the high-side and the low-side N-channel MOSFETs in a synchronous buck configuration. The floating high-side driver can work with supply voltages up to 100 V. The high-side and low-side gate drivers are controlled from a single input. Each change in state is controlled in an adaptive mann ...
... drive both the high-side and the low-side N-channel MOSFETs in a synchronous buck configuration. The floating high-side driver can work with supply voltages up to 100 V. The high-side and low-side gate drivers are controlled from a single input. Each change in state is controlled in an adaptive mann ...
Aid troubleshooting
... regulator becomes disabled by either a “flying short” (flying shorts are caused by centrifugal force) in the alternator rotor or from a regulator field lead being faulted to ground during installation. In other cases, this field may short to ground from vibration or insulation failure. When this hap ...
... regulator becomes disabled by either a “flying short” (flying shorts are caused by centrifugal force) in the alternator rotor or from a regulator field lead being faulted to ground during installation. In other cases, this field may short to ground from vibration or insulation failure. When this hap ...
Datasheet - Texas Instruments
... supporting 2-A output applications that operate from a 4.5-V to 28-V input supply voltage, and require output voltages between 0.8 V and 90% of the input voltage. With internally-determined operating frequency, soft start time, and control loop compensation, these converters provide many features wi ...
... supporting 2-A output applications that operate from a 4.5-V to 28-V input supply voltage, and require output voltages between 0.8 V and 90% of the input voltage. With internally-determined operating frequency, soft start time, and control loop compensation, these converters provide many features wi ...
... 4| and 42 respectively, are connected to the plate and the output circuit of the audio amplifier Ill and grids 9. The control grid 43, located be 73, is believed to be obvious in function. The in~ tween grids 4| and 42, is connected to ground termediate grid 80, in this modification, is given by a r ...
Document
... 1. Why can circuit "b" operate? 2. What does no current in circuit "a" result from? 3. What is the advantage of a parallel circuit? B Solve the following problems: 1. Suppose that you have a series circuit consisting of three resistors and a voltage source. R1= 0.18 ohm, R2 =1.15 ohm, R3 = 2 ohms, I ...
... 1. Why can circuit "b" operate? 2. What does no current in circuit "a" result from? 3. What is the advantage of a parallel circuit? B Solve the following problems: 1. Suppose that you have a series circuit consisting of three resistors and a voltage source. R1= 0.18 ohm, R2 =1.15 ohm, R3 = 2 ohms, I ...
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... 1. Stresses beyond those listed may cause permanent damage to the device. These are stress ratings only and functional operation of the device at these or any other conditions beyond those indicated under “recommended operating conditions” is not implied. Exposure to absolute-maximum-rated condition ...
... 1. Stresses beyond those listed may cause permanent damage to the device. These are stress ratings only and functional operation of the device at these or any other conditions beyond those indicated under “recommended operating conditions” is not implied. Exposure to absolute-maximum-rated condition ...
Mutiple Choice Questions
... d. Increased threshold voltages that prevent the gate from completely turning on 46. When transistors switch, both NMOS and PMOS networks may be momentarily ON at one, which leads to: a. Short Circuit current b. GIDL current c. DIBL current d. None of the above 47. In STA, delay is a function of: a ...
... d. Increased threshold voltages that prevent the gate from completely turning on 46. When transistors switch, both NMOS and PMOS networks may be momentarily ON at one, which leads to: a. Short Circuit current b. GIDL current c. DIBL current d. None of the above 47. In STA, delay is a function of: a ...
PAM2304 Description Pin Assignments
... For most applications, the value of the inductor will fall in the range of 1μH. Its value is chosen based on the desired ripple current. Large value inductors lower ripple current and small value inductors result in higher ripple currents. Higher VIN or VOUT also increases the ripple current as show ...
... For most applications, the value of the inductor will fall in the range of 1μH. Its value is chosen based on the desired ripple current. Large value inductors lower ripple current and small value inductors result in higher ripple currents. Higher VIN or VOUT also increases the ripple current as show ...
Magnetics
... magnetic flux through the loop. The magnetic flux can change with time in many ways; the loop can be fixed in space while changing the magnetic field with time. For example, an alternating current or a permanent magnet moving back and forth through the loop can produce a time-varying field. The wire ...
... magnetic flux through the loop. The magnetic flux can change with time in many ways; the loop can be fixed in space while changing the magnetic field with time. For example, an alternating current or a permanent magnet moving back and forth through the loop can produce a time-varying field. The wire ...
Calibration of the Tektronix TDS 2014 Digital Oscilloscope
... conversely a small vertical scale results in high resolution measurements. This means the oscilloscope’s vertical scale setting can affect the results of a calibration test. • Vertical position: In Section V we have experimentally tested whether varying the vertical position CAIA Technical Report 07 ...
... conversely a small vertical scale results in high resolution measurements. This means the oscilloscope’s vertical scale setting can affect the results of a calibration test. • Vertical position: In Section V we have experimentally tested whether varying the vertical position CAIA Technical Report 07 ...
LME49830 数据资料 dataSheet 下载
... ered optional. The RDS(on) of the devices serve a similar purpose. As the output stage is scaled up in number of devices the value of RE will need to be optimized for best performance. Typical values range from 0.1Ω to 0.5Ω. The value of the gate resistors affect stability and slew rate. The capaci ...
... ered optional. The RDS(on) of the devices serve a similar purpose. As the output stage is scaled up in number of devices the value of RE will need to be optimized for best performance. Typical values range from 0.1Ω to 0.5Ω. The value of the gate resistors affect stability and slew rate. The capaci ...
Series and Parallel Circuits PowerPoint
... When devices are connected in an electric circuits, they can be connected in “series” or in “parallel” with other devices. ...
... When devices are connected in an electric circuits, they can be connected in “series” or in “parallel” with other devices. ...
Design tips for an efficient non-inverting buck-boost converter By Haifeng Fan Introduction
... consists of a power metal-oxide semiconductor field-effect transistor (MOSFET), a diode, and an inductor. When the MOSFET (Q1) is ON, the voltage across the inductor (L1) is VIN, and the inductor current ramps up at a rate that is proportional to VIN. This results in accumulating energy in ...
... consists of a power metal-oxide semiconductor field-effect transistor (MOSFET), a diode, and an inductor. When the MOSFET (Q1) is ON, the voltage across the inductor (L1) is VIN, and the inductor current ramps up at a rate that is proportional to VIN. This results in accumulating energy in ...
MAX1115/MAX1116 Single-Supply, Low-Power, Serial 8-Bit ADCs General Description Features
... a conversion completes, which results in a supply current of <1µA (see Shutdown Current vs. Supply Voltage plot in the Typical Operating Characteristics section). The digital conversion result is maintained in a static register and is available for access through the serial interface at any time. ...
... a conversion completes, which results in a supply current of <1µA (see Shutdown Current vs. Supply Voltage plot in the Typical Operating Characteristics section). The digital conversion result is maintained in a static register and is available for access through the serial interface at any time. ...
A Technique for Reducing Rectifier Reverse-Recovery
... is the winding resistance of inductor . Generally, the circulation through the ...
... is the winding resistance of inductor . Generally, the circulation through the ...
AAT3193-1 数据资料DataSheet下载
... designed to drive up to three white LEDs. The charge pump operates from a 2.7V to 5.5V power source and converts it to voltage levels necessary to drive the LEDs. LED current is individually controlled through integrated current sinks powered from the output of the charge pump. Low 1x charge-pump ou ...
... designed to drive up to three white LEDs. The charge pump operates from a 2.7V to 5.5V power source and converts it to voltage levels necessary to drive the LEDs. LED current is individually controlled through integrated current sinks powered from the output of the charge pump. Low 1x charge-pump ou ...
LM2747 - Texas Instruments
... It is recommended to choose an AC coupling capacitance in the range of 50 pF to 100 pF. Exceeding the recommended capacitance may inject excessive energy through the internal clamping diode structure present on the FREQ/SYNC pin. The typical trip level of the synchronization pin is 1.5V. To ensure p ...
... It is recommended to choose an AC coupling capacitance in the range of 50 pF to 100 pF. Exceeding the recommended capacitance may inject excessive energy through the internal clamping diode structure present on the FREQ/SYNC pin. The typical trip level of the synchronization pin is 1.5V. To ensure p ...
Ohm`s Law - Parts 1 and 2
... all (i.e. 0.00), you have a very small current and can then move the cable to the 400 mA plug. An ammeter must be connected in series with the circuit element of interest, as shown in Fig. 3.4(b). This means that unlike measuring voltage, if you want to measure current you must break the circuit and ...
... all (i.e. 0.00), you have a very small current and can then move the cable to the 400 mA plug. An ammeter must be connected in series with the circuit element of interest, as shown in Fig. 3.4(b). This means that unlike measuring voltage, if you want to measure current you must break the circuit and ...
LTM8052/LTM8052A - 36VIN, 5A, 2-Quadrant CVCC Step-Down uModule Regulator
... the positive and negative current limits. This output current limit can be set by a control voltage, a single resistor or a thermistor. LTM8052 features a 125% output overvoltage protection, while LTM8052A does not, allowing operation when the output is above the target regulation point. ...
... the positive and negative current limits. This output current limit can be set by a control voltage, a single resistor or a thermistor. LTM8052 features a 125% output overvoltage protection, while LTM8052A does not, allowing operation when the output is above the target regulation point. ...
Schmitt trigger
In electronics a Schmitt trigger is a comparator circuit with hysteresis implemented by applying positive feedback to the noninverting input of a comparator or differential amplifier. It is an active circuit which converts an analog input signal to a digital output signal. The circuit is named a ""trigger"" because the output retains its value until the input changes sufficiently to trigger a change. In the non-inverting configuration, when the input is higher than a chosen threshold, the output is high. When the input is below a different (lower) chosen threshold the output is low, and when the input is between the two levels the output retains its value. This dual threshold action is called hysteresis and implies that the Schmitt trigger possesses memory and can act as a bistable multivibrator (latch or flip-flop). There is a close relation between the two kinds of circuits: a Schmitt trigger can be converted into a latch and a latch can be converted into a Schmitt trigger.Schmitt trigger devices are typically used in signal conditioning applications to remove noise from signals used in digital circuits, particularly mechanical contact bounce. They are also used in closed loop negative feedback configurations to implement relaxation oscillators, used in function generators and switching power supplies.