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  • Medical Device Link .
    solutions, according to TI. The chip incorporates eight channels of a low-noise amplifier (LNA), a voltage-controlled attenuator, a programmable gain amplifier, and a low-pass filter. It also features a 12-bit, 50-MSPS analog-to-digital converter with low-voltage differential signaling data outputs
  • Mixed Mode Silicon-on-Insulator MMIC Technology For Digitally Controlled RF/Microwave Systems (.pdf)
    such as microprocessor bus interface logic and microwave lumped/distributed. circuits for 2.4/5.8GHz are described along with related system-on-a-chip implementations. Using. this technology, digital microprocessor controlled system architectures can be developed quickly. without the need for interfacing between
  • TA031: GaAs X-Band Multifunction Control MMIC Using the MSAG (R) Process
    phase error less than of 2o and RMS attenuator error less than 0.3 dB. On-wafer RF screening of this 24 mm2, complex multifunction digital and microwave control MMIC resulted in an RF spec yield of over 90%...making this chip extremely desirable for low-cost solid state phased array radar T/R module
  • Design Concepts for A 588 Channel Data Acquisition & Control System (.pdf)
    . • Computer controlled calibration. The DSP chips on each node of the digital section of the Mach5 boards provide for additional. input and output processing. Digital filtering and decimation is provided for most. applications so that only the data of interest is processed. The micro-code for the DSP chips
  • Building a Microwave Frequency Synthesizer-Part 1: Getting Started (.pdf)
    -. Figure 8 · Output power control. ic level control scheme (ALC) by. using an attenuator. Figure 9 · Closed-loop digital ALC. 62. High Frequency Electronics. High Frequency Design. SYNTHESIZER DESIGN. Figure 10 · Synthesizer design trade-offs. Figure 11 · Direct analog synthesizer concept. master
  • Programmable Crystal Oscillators with Sub-ps Jitter and Multiple Frequency Capability
    +. Low Frequency. Freq. A/D. Digital. Detector. Crystal. n. Osc. Signal. CLK_OUT-. Processing. (10MHz – 1.4GHz). Control. A/D. Voltage Input (VC). NVM. Programming. Control. Interface. Interface. Figure 3. DSPLL-Based Oscillator. A key advantage of this architecture is that a wide range
  • Skyworks De-embedded Scattering Parameters
    to perform their intended function. These sig-. nals are applied via the bias tees which are built into the VNA, so. any RF performance effects of these bias tees are also inherently. calibrated out of the performance measurement. Other products, such as RF switches, digital attenuators, voltage

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