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AD7894 数据手册DataSheet下载
AD7894 数据手册DataSheet下载

AD9863
AD9863

Low Cost, Low Power 12-Bit Differential ADC Driver AD8137
Low Cost, Low Power 12-Bit Differential ADC Driver AD8137

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HEF4046B Phase-locked loop

AD630.pdf
AD630.pdf

... The AD630 is intended for use in precision signal processing and instrumentation applications requiring wide dynamic range. When used as a synchronous demodulator in a lock-in amplifier configuration, it can recover a small signal from 100 dB of interfering noise (see lock-in amplifier application). ...
Amplitude Modulation Fundamentals
Amplitude Modulation Fundamentals

(PPT, 328KB)
(PPT, 328KB)

... The L2 band signals use the same FDMA as the L1 band signals, but transmit straddling 1246MHz with the center frequency 1246MHz + n×0.4375MHz, where n spans the same range as for L1.GLONASS transmitter specs In the original GLONASS design, only obfuscated high-precision signal was broadcast in the L ...
Very Low-Power, High-Speed, Rail-to
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IOSR Journal of Electrical and Electronics Engineering (IOSR-JEEE)
IOSR Journal of Electrical and Electronics Engineering (IOSR-JEEE)

Design of a 5.8 GHz Multi-Modulus Prescaler - Til Daim
Design of a 5.8 GHz Multi-Modulus Prescaler - Til Daim

free space optics communications
free space optics communications

... element in any optical communication system is the optical source, which can easily be modulated. Such a source should produce energy concentrated in a narrow wavelength band, and should be capable of being modulated at very high rates. The semiconductor laser is one of the primary sources of light ...
3. Test Board
3. Test Board

... 802.3 architecture. The main active components of the board are the Vertical Cavity Surface Emitting Laser (VCSEL), used to transmit data with light, and the Photodiode (PD), used to receive the optical data. Our VCSEL is driven by a Maxim MAX3287 laser driver that takes a differential input and con ...
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MAX19692 12-Bit, 2.3Gsps, Multi-Nyquist DAC with Selectable Frequency Response General Description
MAX19692 12-Bit, 2.3Gsps, Multi-Nyquist DAC with Selectable Frequency Response General Description

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16-Bit, 1.5 LSB INL, 250 kSPS PulSAR™ Differential ADC in MSOP/QFN AD7687
16-Bit, 1.5 LSB INL, 250 kSPS PulSAR™ Differential ADC in MSOP/QFN AD7687

THS4001 270-MHz HIGH-SPEED AMPLIFIER D
THS4001 270-MHz HIGH-SPEED AMPLIFIER D

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State-of-the-art and recent advances Spectrum Sensing for Cognitive Radio State-of-the-art

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Kinetis KL25: 48MHz Cortex-M0+ 32-128KB Flash 32-80 pin

... • Static power consumption down to 2 μA with full state retention and 4 μs wakeup ...
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LVDS I/O Standard
LVDS I/O Standard

... entire length of the connection. The image plane cuts the parallel termination resistor RT in half and the resulting RT/2 = 50 Ω resistor parallel terminates the single-ended equivalent 50 Ω transmission line. So far, only the differential mode of propagation has been considered. An equally importan ...
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ADS1202 数据资料 dataSheet 下载

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AD8310 数据手册DataSheet 下载

MAX1448 10-Bit, 80Msps, Single 3.0V, Low-Power ADC with Internal Reference General Description
MAX1448 10-Bit, 80Msps, Single 3.0V, Low-Power ADC with Internal Reference General Description

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Ultralow Distortion, Ultralow Noise Op Amp AD797

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HD-MAC

HD-MAC was a proposed broadcast television systems standard by the European Commission in 1986 (MAC standard), a part of Eureka 95 project. It was an early attempt by the EEC to provide High-definition television (HDTV) in Europe. It was a complex mix of analogue signal (Multiplexed Analogue Components), multiplexed with digital sound, and assistance data for decoding (DATV). The video signal (1250 (1152 visible) lines/50 fields per second in 16:9 aspect ratio) was encoded with a modified D2-MAC encoder. HD-MAC could be decoded by a standard D2-MAC receivers (SDTV), but in that mode only 625 (576) lines and certain artifacts were visible. To decode the signal in full resolution required a specific HD-MAC tuner.
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