ADS8324 数据资料 dataSheet 下载
... The ADS8324 is a classic Successive Approximation Register (SAR) A/D converter. The architecture is based on capacitive redistribution that inherently includes a sampleand-hold function. The converter is fabricated on a 0.6µ CMOS process. The architecture and process allow the ADS8324 to acquire and ...
... The ADS8324 is a classic Successive Approximation Register (SAR) A/D converter. The architecture is based on capacitive redistribution that inherently includes a sampleand-hold function. The converter is fabricated on a 0.6µ CMOS process. The architecture and process allow the ADS8324 to acquire and ...
0508 - cired
... high share of renewables into existing distribution systems. The impact of controlling the medium voltage transformer and the reactive power of distributed generation - based on the actual voltages of critical nodes - on voltage range and number of tap changer operations is analysed. Evaluation is b ...
... high share of renewables into existing distribution systems. The impact of controlling the medium voltage transformer and the reactive power of distributed generation - based on the actual voltages of critical nodes - on voltage range and number of tap changer operations is analysed. Evaluation is b ...
the flea - Acoustica.org.uk
... the high frequency components on the rails to ground and provide a local reservoir of energy storage to deal with peaks in demand. If we do this properly, and ensure the loop areas formed by these decoupling components are as small as is practically possible, the radiation drops dramatically. We're ...
... the high frequency components on the rails to ground and provide a local reservoir of energy storage to deal with peaks in demand. If we do this properly, and ensure the loop areas formed by these decoupling components are as small as is practically possible, the radiation drops dramatically. We're ...
Physics 160 Lecture 13
... DC-coupled follower with nearly zero offset By using a matched JFET pair (must be on the same IC chip) and matched resistors R1 and R4, we can achieve nearly zero DC offset between the input and output output. ...
... DC-coupled follower with nearly zero offset By using a matched JFET pair (must be on the same IC chip) and matched resistors R1 and R4, we can achieve nearly zero DC offset between the input and output output. ...
Products - Naturesound.us
... Naturesound, a focus on the audio system design and audio production of the new enterprise, the new generation of power of the audio field,including speaker、amplifier and headset ,With a high level of ease of use and adaptability. It can be widely applied to KTV, stage, conference rooms, outdoor bro ...
... Naturesound, a focus on the audio system design and audio production of the new enterprise, the new generation of power of the audio field,including speaker、amplifier and headset ,With a high level of ease of use and adaptability. It can be widely applied to KTV, stage, conference rooms, outdoor bro ...
Product Linecard
... SMD Solutions Extensive offerings of SMD solutions for protection of secondary circuits. ...
... SMD Solutions Extensive offerings of SMD solutions for protection of secondary circuits. ...
INA19x Current Shunt Monitor −16 V to +80 V Common
... Figure 20. INA193-INA198 Basic Connection 8.3.2 Selecting RS The value chosen for the shunt resistor, RS, depends on the application and is a compromise between smallsignal accuracy and maximum permissible voltage loss in the measurement line. High values of RS provide better accuracy at lower curre ...
... Figure 20. INA193-INA198 Basic Connection 8.3.2 Selecting RS The value chosen for the shunt resistor, RS, depends on the application and is a compromise between smallsignal accuracy and maximum permissible voltage loss in the measurement line. High values of RS provide better accuracy at lower curre ...
N-channel 600 V, 0.094 typ., 28 A MDmesh™ DM2 Power MOSFET
... This is information on a product in full production. ...
... This is information on a product in full production. ...
Supplementary information
... In the following, we assume signals with ideally rectangular non-return-to-zero (NRZ) pulse shapes, featuring a defined peak-to-peak voltage of Udrive at the input of the device. For the travelling-wave modulators, the coplanar transmission line is matched to a 50 source impedance and terminated b ...
... In the following, we assume signals with ideally rectangular non-return-to-zero (NRZ) pulse shapes, featuring a defined peak-to-peak voltage of Udrive at the input of the device. For the travelling-wave modulators, the coplanar transmission line is matched to a 50 source impedance and terminated b ...
AN1637: Level Shifting Between 1.8V and 3.3V Using I2C
... communicate with 3.3V I2C slave devices. Without level shifting, the output logic levels of mixed voltage devices are not capable of properly driving the input logic thresholds of the I2C devices on the bus. A common solution uses an I2C buffer with level shifting capability to translate the 1.8V si ...
... communicate with 3.3V I2C slave devices. Without level shifting, the output logic levels of mixed voltage devices are not capable of properly driving the input logic thresholds of the I2C devices on the bus. A common solution uses an I2C buffer with level shifting capability to translate the 1.8V si ...
BDTIC I C E 3 B x x 6 5 J (...
... When the IC is turned on after the start-up time, the soft start capacitor at pin1, CSoftS is immediately charged up to approximately 0.8V and from this point IC starts switching. The soft start voltage VSoftS is generated by CSoftS and the internal pull up resistor RSoftS. The duty cycle of the gat ...
... When the IC is turned on after the start-up time, the soft start capacitor at pin1, CSoftS is immediately charged up to approximately 0.8V and from this point IC starts switching. The soft start voltage VSoftS is generated by CSoftS and the internal pull up resistor RSoftS. The duty cycle of the gat ...
The design of a high voltage scr pulse generator for
... There are two different methods commonly used for exciting ultrasonic transducers in the pulse echo mode. The first involves the generation of a medium voltage, pulsed, radio frequency sinusoid using a gated oscillator, and the second involves the generation of a high voltage spike by a sudden disch ...
... There are two different methods commonly used for exciting ultrasonic transducers in the pulse echo mode. The first involves the generation of a medium voltage, pulsed, radio frequency sinusoid using a gated oscillator, and the second involves the generation of a high voltage spike by a sudden disch ...
G540 User Manual
... current set resistor may be a 1/4 Watt, 5% part. Finally have a STEP and DIRECTION pulse source available. STEP 1: CONNECT POWER Connect your power supply positive to TERMINAL 11 and negative to TERMINAL 12. The power supply voltage is determined by multiplying the square root of the motor’s inducta ...
... current set resistor may be a 1/4 Watt, 5% part. Finally have a STEP and DIRECTION pulse source available. STEP 1: CONNECT POWER Connect your power supply positive to TERMINAL 11 and negative to TERMINAL 12. The power supply voltage is determined by multiplying the square root of the motor’s inducta ...
Differential Voltage Probe
... The output of this system is linear with respect to the measurement it is making. As mentioned before, the amplifier allows you to measure positive and negative voltages on any of our interfaces. Since many lab interfaces can read voltages only in the range of 0 to 5 volts, the amplifier offsets and ...
... The output of this system is linear with respect to the measurement it is making. As mentioned before, the amplifier allows you to measure positive and negative voltages on any of our interfaces. Since many lab interfaces can read voltages only in the range of 0 to 5 volts, the amplifier offsets and ...
section 260573 - electrical systems analysis
... medium voltage switchgear. For secondary switchboards serving large loads or a wide variety of loads that may affect upstream coordination, additional TCC’s may be required. b. For medium voltage systems, TCC’s shall be developed for both phase and ground protective devices, and shall include all fe ...
... medium voltage switchgear. For secondary switchboards serving large loads or a wide variety of loads that may affect upstream coordination, additional TCC’s may be required. b. For medium voltage systems, TCC’s shall be developed for both phase and ground protective devices, and shall include all fe ...
to read Design Consideration
... factor of four (4) which is adequate for virtually all source material while providing sufficient output voltage to drive all but the most insensitive power amplifiers. However, there may be situations where either the source is a lower than expected voltage, or the power amplifier requires addition ...
... factor of four (4) which is adequate for virtually all source material while providing sufficient output voltage to drive all but the most insensitive power amplifiers. However, there may be situations where either the source is a lower than expected voltage, or the power amplifier requires addition ...
electronic power contoller
... Run / Stop input. A control voltage (24V DC) must be applied to terminals 32(+) and 31(-), to enable the unit, or a connec tion made between terminals 32 and 33 by using a switch. A permanent link between terminals 32 and 33 is used for operation without an external enable. The firing pulses are inh ...
... Run / Stop input. A control voltage (24V DC) must be applied to terminals 32(+) and 31(-), to enable the unit, or a connec tion made between terminals 32 and 33 by using a switch. A permanent link between terminals 32 and 33 is used for operation without an external enable. The firing pulses are inh ...
36-V Single-Supply Low-Power Operational Amplifiers for Cost
... Unlike most op amps, which are specified at only one supply voltage, the TLVx171-Q1 family of devices is specified from 4.5 V to 36 V. Input signals beyond the supply rails do not cause phase reversal. The TLVx171-Q1 family of devices is stable with capacitive loads up to 300 pF. The input can opera ...
... Unlike most op amps, which are specified at only one supply voltage, the TLVx171-Q1 family of devices is specified from 4.5 V to 36 V. Input signals beyond the supply rails do not cause phase reversal. The TLVx171-Q1 family of devices is stable with capacitive loads up to 300 pF. The input can opera ...
T3200 Insulation Monitoring Relay
... actual insulation level, either by means of two instruments simultaneously indicating for both insulation systems (I and II), or by means of one instrument which can be connected to the two instrument outputs via a change-over switch. See connection diagram. ...
... actual insulation level, either by means of two instruments simultaneously indicating for both insulation systems (I and II), or by means of one instrument which can be connected to the two instrument outputs via a change-over switch. See connection diagram. ...
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)