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Frequency Synthesizer

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3.5 GSPS Direct Digital Synthesizer with 12-Bit DAC Data ...

3.5 GSPS Direct Digital Synthesizer with 12-Bit DAC Data ...

www.analog.com

The AD9914 is a direct digital synthesizer (DDS) featuring a 12-bit DAC. The AD9914 uses advanced DDS technology, coupled with an internal high speed, high performance DAC to form a digitally programmable, complete high frequency synthesizer capable of generating a frequency-agile analog output sinusoidal waveform at up to 1.4 GHz.

  Frequency, Synthesizer, Frequency synthesizer

Direct Modulation/Fast Waveform Generating, 13 GHz ...

Direct Modulation/Fast Waveform Generating, 13 GHz ...

www.analog.com

ADF4159 is a 13 GHz, fractional-N frequency synthesizer with modulation and both fast and slow waveform generation capability. The part uses a 25-bit fixed modulus, allowing sub hertz frequency resolution. The . ADF4159. consists of a low noise digital phase frequency detector (PFD), a precision charge pump, and a programmable reference divider.

  Frequency, Synthesizer, Frequency synthesizer

Single chip 2.4 GHz Transceiver nRF24L01

Single chip 2.4 GHz Transceiver nRF24L01

www.sparkfun.com

The transceiver consists of a fully integrated frequency synthesizer, a power amplifier, a crystal oscillator, a demodulator, modulator and Enhanced ShockBurst™ protocol engine. Output power, frequency channels, and protocol setup are easily programmable through a SPI interface. Current consumption is very low, only 9.0mA

  Frequency, Synthesizer, Nrf24l01, Frequency synthesizer

Phase Locked Loop Circuits

Phase Locked Loop Circuits

web.ece.ucsb.edu

Frequency synthesizer c. Clock recovery in a serial data link UCSB/ECE Department Prof S. Long 4/27/05 1. You should note that there will be different design criteria for each case, but you can still use the same basic loop topology and analysis methods. 2. Phase ...

  Frequency, Synthesizer, Frequency synthesizer

ECE 546 Lecture 28 High Speed Links

ECE 546 Lecture 28 High Speed Links

emlab.uiuc.edu

frequency due to large phase‐noise + jitter. 4. Can only accept digital signals. 1.High‐power, not integrable. 2. Occupieslarge die‐area. 3. Greatphase‐noise and jitter performance at high frequency. 4. Can acceptanalog and digital signals. Ring v/s Tank Architecture

  Lecture, Frequency, Ece 546 lecture

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