Impedance matching principle
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Analog Integrated Electronic Circuits - Volume 2
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Analog Integrated Electronic Circuits - Volume 1
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Analog IC Analysis and Design
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Analog CMOS Integrated Circuit Design
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Transistor Circuits - Day 2004
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Transistor Circuit Design - Masaomi Suzuki (Part 2)
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Transistor Circuits - 2004
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Simple Circuit Analysis Basics - Li Hansun
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Basic Circuit Analysis
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Capacitor Basics and In-depth Understanding
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Circuit Study Guide and Exercise Analysis
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Circuits. Qiu Guanyuan-Fifth Edition
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\"Basics of Analog Electronics Technology\" by Children\'s Poetry, Fourth Edition
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RC Circuit and Its Applications
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Unshielded twisted pair (UTP), such as Category 5e (Cat-5e), was originally designed for local area network (LAN) transmission. Because of its good performance and low cost, it has become an economical solution for many other signal transmission applications. At present, analog broadband video signals mainly include RGB signals and high-definition component video signals (YPbPr). These signals will have the problem of signal quality degradation when using standard four-pair differential pair UTP transmission lines for long-distance transmission. On the one hand, the nonlinear bandwidth limitation caused by the \"skin effect\" of transmission leads to signal dispersion and loss of high-frequency components of the signal. This will reduce the sharpness of the image and produce tailing. In addition, the attenuation of low-frequency signals caused by cable impedance loss will reduce the contrast of the image. In addition, due to the inconsistency of the twist rate of the twisted pair, the transmission line lengths of the three differential pairs will be different, so that the delay of the three receiving signals will be inconsistent, resulting in color errors in the image. In order to solve the above problems, ADI has proposed a reference design of an automatic compensation system based on UTP video transmission, which can automatically perform EQ compensation and skew compensation for these problems. This solution can support UTP (Cat-5e) cable transmission up to 300 meters, and can support high-definition 1080P or UXGA video formats. If you have any questions, please contact ADI Asia Technical Support Center, hotline 400-6100-006, or send an email to china.support@analog.com. The complete information includes the following: 1. User manual of automatic calibration system based on UTP video transmission 2. MCU firmware file 3. Hardware schematic diagram and PCB layout
download times 2 type Application Documents uploaded 2013-07-01
In today\'s surveillance camera field, if CCD is used as an image sensor, a dedicated driver chip is required to drive the CCD, and an analog front end (AFE) circuit is required to condition the output signal of the CCD. ADDI9020* is a highly integrated CCD signal processor. ? Complete analog front end circuit, including: black level clamp, variable gain CDS and 1 12-bit ADC ? Programmable timing generator can provide all necessary CCD clocks: RG, H clock (5), V clock (12), sensor threshold pulse, substrate clock and substrate bias control ? 60MHz analog-to-digital converter ? 7 GPIO general ports for system functions *ADDI9020 full data sheet can only be obtained after signing an NDA document with ADI. Please contact your local ADI authorized agent or send an email to china.support@analog.com This reference design provides a complete analog front end solution for ADDI9020 and SONY\'s new CCD image sensor ICX692AQA. If you have any questions, please contact ADI Asia Technical Support Center. The complete information includes the following: 1. Full version of the user manual 2. ADDI9020 drive ICX692AQA parameter configuration file 3. Analog front-end schematics and PCB files
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With the development of energy storage applications for high-voltage energy, industrial and automotive fields, such as wind power, photovoltaic cells and hybrid vehicles, the application of lithium-ion (Li-Ion) batteries is becoming more and more popular, which in turn stimulates the demand for safer and higher-performance battery monitoring and protection systems. Li-ion battery packs contain a large number of battery cells, which must be properly monitored to improve battery efficiency, extend battery life and ensure safety. This reference design implements the functions required for Li-ion battery monitoring, including voltage, current and temperature measurement, signal isolation and safety monitoring, which can meet the various needs of lithium battery manufacturers and power system designers. The main chips used in this reference design are: ? AD7280A Li-ion battery monitor that integrates all the functions required for general monitoring of lithium-ion batteries ? ADuM1401 Four-channel digital isolator using Analog Devices iCoupler? technology ? ADuM5401 Isolated Σ-Δ modulator * This reference design is provided by AVNET. If you have any questions, you can contact AVNET directly by referring to the contact information on the right, or contact the ADI Asia Technical Support Center. Click the email address on the right to send an email directly. The complete document includes the following:1. Battery monitoring system introduction2. Battery monitoring system user manual3. Hardware schematic diagram and PCB layout
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Generally speaking, the voltage signal amplitude of the pressure sensor output is relatively small, and the output range is irregular. It is usually necessary to use a signal conditioning amplifier to amplify and level-shift the direct output of the pressure sensor to obtain the required voltage output range. The pressure sensor at the front end and the signal conditioning part at the back are integrated together to form a complete pressure transmitter. In order to adjust the output of the transmitter to the specified range, each transmitter product needs to be calibrated before leaving the factory. This reference design provides a complete multi-channel fully automatic calibration system for the calibration of pressure transmitters before leaving the factory in response to this pre-factory calibration requirement. This calibration system is based on the calibration system of pressure transmitters using the AD855X programmable gain amplifier. The AD855X series is very suitable for use as a signal conditioning amplifier in pressure transmitter applications. ? The AD855X series is a zero-drift sensor signal amplifier ? Provides digitally programmable gain and output offset ? Gain and output offset can be fully simulated in the circuit ? Permanent programming using reliable Polyfuse technology If you have any questions, please contact the ADI Asia Technical Support Center. The complete document includes the following: 1. Full version of the user manual 2. Calibration system software installation file 3. MCU firmware file 4. Hardware schematics and PCB layout
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The electrocardiogram (ECG) signal measurement system records the electrical activity of the heart over a period of time by measuring the surface potential of living tissue. By placing biopotential electrodes at specific parts of the human body to detect the heart\'s signals, the differential voltage between the two electrodes or the differential voltage between a certain electrode and the average voltage of multiple electrodes can be measured and displayed as a channel on the ECG output. The traditional ECG signal chain uses AC coupling and hardware high-pass and low-pass filtering. This design uses DC coupling, using 8 instrumentation amplifiers to amplify the signals of 8 channels. The 8-channel signals enter the ADC after switching through an 8-way multiplexer. The ADC sampling results are sent to the DSP for processing. The filtering is implemented in the DSP by software, and the processed signals are sent to the PC via UART or USB for display. This design is used to measure 12-lead DC-coupled ECG signals, and realizes functions such as lead-off signal detection, pacing signal detection, 50Hz/60Hz notch filter selection, and high-pass filter cutoff frequency selection. If you have any questions, please contact ADI Asia Technical Support Center.
download times 8 type Application Documents uploaded 2013-07-01