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MICRF001 датащи(PDF) 5 Page - Micrel Semiconductor |
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MICRF001 датащи(HTML) 5 Page - Micrel Semiconductor |
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5 / 8 page ![]() QwikRadio tm 5 June 1998 MICRF001 MICRF001 Micrel Block Diagram Functional Description The block diagram illustrates the basic structure of the MICRF001. Identified in the figure are the three principal functional blocks of the IC, namely (1) UHF Downconverter, (2) OOK Demodulator, and (3) Reference and Control. Also shown in the figure are two capacitors (CTH, CAGC) and one timing component (CR), usually a ceramic resonator. With the exception of a supply decoupling capacitor, these are all the external components needed with the MICRF001 to construct a complete UHF receiver. Three control inputs are shown in the block diagram, SEL0, SEL1 and SWEN. Through these logic inputs the user can control the operating mode and programmable functions of the IC. These inputs are CMOS compatible, and are pulled-up on the IC. The inputs SEL0, SEL1 control the Demodulator filter bandwidth in four binary steps from approximately 0.6kHz to 4.8kHz, and the user must select the bandwidth appropriate to his needs. The SWEN pin allows the device to be configured in either its normal (SWP) operating mode, or in standard (FIXED) superheterodyne receiver mode. SWP operation is selected when SWEN is HIGH, and is the default mode for the IC. An example of SWP operation would be where the MICRF001 must operate with LC-based transmitters, whose transmit frequency may vary up to ± 0.5% over initial tolerance, aging, and temperature. In this (patent-pending) mode, the LO frequency is varied in a prescribed fashion which results in downconversion of all signals in a band 2-3% around the transmit frequency. So the Transmitter may drift up to ± 0.5% without the need to retune the Receiver, and without impacting system performance. Such performance is not achieved with currently available crystal-based superheterodyne receivers, which can operate only with SAW or crystal based transmitters. [Note: A range penalty will occur in installations where there exists a competing signal of sufficient strength in this small frequency band of 2-3%. This penalty also exists with super- regenerative type receivers, as their RF bandwidth is also generally 2-3%. So any application for a super-regenerative receiver is also an application for the MICRF001.] |
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