TPS2834 数据资料 dataSheet 下载
... The TPS2834 and TPS2835 are MOSFET drivers for synchronous-buck power stages. These devices are ideal for designing a high-performance power supply using switching controllers that do not include on-chip MOSFET drivers. The drivers are designed to deliver minimum 2-A peak currents into large capacit ...
... The TPS2834 and TPS2835 are MOSFET drivers for synchronous-buck power stages. These devices are ideal for designing a high-performance power supply using switching controllers that do not include on-chip MOSFET drivers. The drivers are designed to deliver minimum 2-A peak currents into large capacit ...
BU406/406H/408 NPN Epitaxial Silicon Transistor BU406/406H/408 — NPN Epit axi
... Counterfeiting of semiconductor parts is a growing problem in the industry. All manufacturers of semiconductor products are experiencing counterfeiting of their parts. Customers who inadvertently purchase counterfeit parts experience many problems such as loss of brand reputation, substandard perfor ...
... Counterfeiting of semiconductor parts is a growing problem in the industry. All manufacturers of semiconductor products are experiencing counterfeiting of their parts. Customers who inadvertently purchase counterfeit parts experience many problems such as loss of brand reputation, substandard perfor ...
EBM-300308_100-P-000146-en
... used. Three different types of joystick can be selected by applying different reference voltages at an input. An integral ramp generator (demand-signal integrator) can be activ ated. When a step signal is applied to the input of the ramp generator, the output voltage changes linearly with time. Thi ...
... used. Three different types of joystick can be selected by applying different reference voltages at an input. An integral ramp generator (demand-signal integrator) can be activ ated. When a step signal is applied to the input of the ramp generator, the output voltage changes linearly with time. Thi ...
MAX115/MAX116 2x4-Channel, Simultaneous-Sampling 12-Bit ADCs ________________General Description
... The T/H amplifiers hold the input voltages at the CONVST rising edge. Additional CONVST pulses are ignored until the last conversion for the sample is complete. An on-board sequencer converts one to four channels per CONVST pulse. In the default mode, one T/H output (CH1A) is converted. An interrupt ...
... The T/H amplifiers hold the input voltages at the CONVST rising edge. Additional CONVST pulses are ignored until the last conversion for the sample is complete. An on-board sequencer converts one to four channels per CONVST pulse. In the default mode, one T/H output (CH1A) is converted. An interrupt ...
High Output Impedance Current-mode Multifuntions Filter Using
... easy to drive loads and they facilitate cascading without using a buffering device [7-8]. From our survey, it is found that several implementations of MISO current-mode filters have been reported [9-27]. Unfortunately, these reported circuits suffer from one or more of following weaknesses: • Non in ...
... easy to drive loads and they facilitate cascading without using a buffering device [7-8]. From our survey, it is found that several implementations of MISO current-mode filters have been reported [9-27]. Unfortunately, these reported circuits suffer from one or more of following weaknesses: • Non in ...
Dual, Bootstrapped, 12 V MOSFET Driver with Output Disable ADP3650
... designer should consider ways to make a robust design that minimizes stresses on both the driver and the MOSFETs. These stresses include exceeding the short time duration voltage ratings on the driver pins as well as on the external MOSFET. ...
... designer should consider ways to make a robust design that minimizes stresses on both the driver and the MOSFETs. These stresses include exceeding the short time duration voltage ratings on the driver pins as well as on the external MOSFET. ...
Word
... compensation R and X. At a minimum, the following modes of reverse power operation shall be provided: 11.4.1. Locked forward mode 11.4.2. Locked reverse mode 11.4.3. Reverse idle mode 11.4.4. Bidirectional mode 11.4.5. Neutral idle mode 11.4.6. Cogeneration mode 11.4.7. Reactive bidirectional mode 1 ...
... compensation R and X. At a minimum, the following modes of reverse power operation shall be provided: 11.4.1. Locked forward mode 11.4.2. Locked reverse mode 11.4.3. Reverse idle mode 11.4.4. Bidirectional mode 11.4.5. Neutral idle mode 11.4.6. Cogeneration mode 11.4.7. Reactive bidirectional mode 1 ...
Electronic Builing Blocks
... There are only a couple of things to remember about metal film resistors. The first is that the cheap ones have biggish temperature coefficients, as high as 200 ppm/◦ C. This amounts to 1% drift over 50 ◦ C, which may be a problem, especially if you’re using trims. You can get 50 ppm/◦ C for only a ...
... There are only a couple of things to remember about metal film resistors. The first is that the cheap ones have biggish temperature coefficients, as high as 200 ppm/◦ C. This amounts to 1% drift over 50 ◦ C, which may be a problem, especially if you’re using trims. You can get 50 ppm/◦ C for only a ...
FDML7610S PowerTrench Power Stage
... 4. The PowerTrench® Technology MOSFETs used in the Power Stage are effective at minimizing phase node ringing. It allows the part to operate well within the breakdown voltage limits. This eliminates the need to have an external snubber circuit in most cases. If the designer chooses to use an RC snub ...
... 4. The PowerTrench® Technology MOSFETs used in the Power Stage are effective at minimizing phase node ringing. It allows the part to operate well within the breakdown voltage limits. This eliminates the need to have an external snubber circuit in most cases. If the designer chooses to use an RC snub ...
Specification Guide
... compensation R and X. At a minimum, the following modes of reverse power operation shall be provided: 11.4.1. Locked forward mode 11.4.2. Locked reverse mode 11.4.3. Reverse idle mode 11.4.4. Bidirectional mode 11.4.5. Neutral idle mode 11.4.6. Cogeneration mode 11.4.7. Reactive bidirectional mode 1 ...
... compensation R and X. At a minimum, the following modes of reverse power operation shall be provided: 11.4.1. Locked forward mode 11.4.2. Locked reverse mode 11.4.3. Reverse idle mode 11.4.4. Bidirectional mode 11.4.5. Neutral idle mode 11.4.6. Cogeneration mode 11.4.7. Reactive bidirectional mode 1 ...
UC2834 数据资料 dataSheet 下载
... Minimum VIN - VOUT Less Than 0.5V At 5A Load With External Pass Device ...
... Minimum VIN - VOUT Less Than 0.5V At 5A Load With External Pass Device ...
LMH6609 900MHz Voltage Feedback Op Amp
... A proper printed circuit layout is essential for achieving high frequency performance. TI provides evaluation boards for the LMH6609 as shown above. These boards were laid out for optimum, high-speed performance. The ground plane was removed near the input and output pins to reduce parasitic capacit ...
... A proper printed circuit layout is essential for achieving high frequency performance. TI provides evaluation boards for the LMH6609 as shown above. These boards were laid out for optimum, high-speed performance. The ground plane was removed near the input and output pins to reduce parasitic capacit ...
DR23708711
... power, low voltage. High CMRR and PSRR applications such Biomedical instrument and small battery operated devices. It is the schematic of CMOS Instrumentation amplifier using OTA. It has Open Loop Gain 76.83dB.A unity gain frequency is obtained 90.25MHz. . The phase margin is obtained 72.15 degree. ...
... power, low voltage. High CMRR and PSRR applications such Biomedical instrument and small battery operated devices. It is the schematic of CMOS Instrumentation amplifier using OTA. It has Open Loop Gain 76.83dB.A unity gain frequency is obtained 90.25MHz. . The phase margin is obtained 72.15 degree. ...
LMH6609 900MHz Voltage Feedback Op Amp (Rev. F)
... A proper printed circuit layout is essential for achieving high frequency performance. TI provides evaluation boards for the LMH6609 as shown above. These boards were laid out for optimum, high-speed performance. The ground plane was removed near the input and output pins to reduce parasitic capacit ...
... A proper printed circuit layout is essential for achieving high frequency performance. TI provides evaluation boards for the LMH6609 as shown above. These boards were laid out for optimum, high-speed performance. The ground plane was removed near the input and output pins to reduce parasitic capacit ...
FAN3240 / FAN3241 Smart Dual-Coil Relay Drivers FAN3240 / FAN32
... During power-up, the FAN324x receives its bias voltage from the VS pin. As the voltage rises at the VS pin, the 5 V output internal bias regulator starts working. The voltage of the 5VB pin starts rising simultaneously with the bias voltage at the VS pin. Once the VS voltage is sufficiently high (as ...
... During power-up, the FAN324x receives its bias voltage from the VS pin. As the voltage rises at the VS pin, the 5 V output internal bias regulator starts working. The voltage of the 5VB pin starts rising simultaneously with the bias voltage at the VS pin. Once the VS voltage is sufficiently high (as ...
2. VLSI Basic
... Load Capacitance is total sum of input capacitance CoWload Delay = 1st stage delay + 2nd stage delay = (Ro/W1) (CoW1+CoW2) + (Ro/W2)(CoW2+CoWload) = RoCo (2+W2/W1+Wload/W2) Case 1. W2=W1, Load=10W1 Delay = 10 psec (2+1+10) = 130.0 psec ...
... Load Capacitance is total sum of input capacitance CoWload Delay = 1st stage delay + 2nd stage delay = (Ro/W1) (CoW1+CoW2) + (Ro/W2)(CoW2+CoWload) = RoCo (2+W2/W1+Wload/W2) Case 1. W2=W1, Load=10W1 Delay = 10 psec (2+1+10) = 130.0 psec ...
A 3 BITS DISCRETE PURE LINEAR ANALOG PREPROCESSING FOLDING
... VTH, while it is in cut-off region when VGS is lower than VTH. Using a ramp, that represents all input possible values, we analyze only the first channel (Fig. 4). This has to give a voltage equal to zero for voltage input values between zero and VQ. Its switch (S1) has the source connected to groun ...
... VTH, while it is in cut-off region when VGS is lower than VTH. Using a ramp, that represents all input possible values, we analyze only the first channel (Fig. 4). This has to give a voltage equal to zero for voltage input values between zero and VQ. Its switch (S1) has the source connected to groun ...
Power electronics
Power electronics is the application of solid-state electronics to the control and conversion of electric power. It also refers to a subject of research in electronic and electrical engineering which deals with the design, control, computation and integration of nonlinear, time-varying energy-processing electronic systems with fast dynamics.The first high power electronic devices were mercury-arc valves. In modern systems the conversion is performed with semiconductor switching devices such as diodes, thyristors and transistors, pioneered by R. D. Middlebrook and others beginning in the 1950s. In contrast to electronic systems concerned with transmission and processing of signals and data, in power electronics substantial amounts of electrical energy are processed. An AC/DC converter (rectifier) is the most typical power electronics device found in many consumer electronic devices, e.g. television sets, personal computers, battery chargers, etc. The power range is typically from tens of watts to several hundred watts. In industry a common application is the variable speed drive (VSD) that is used to control an induction motor. The power range of VSDs start from a few hundred watts and end at tens of megawatts.The power conversion systems can be classified according to the type of the input and output power AC to DC (rectifier) DC to AC (inverter) DC to DC (DC-to-DC converter) AC to AC (AC-to-AC converter)