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LT1719CS6 датащи(PDF) 16 Page - Linear Technology |
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LT1719CS6 датащи(HTML) 16 Page - Linear Technology |
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16 / 16 page ![]() 16 LT1719 1719f LT/TP 0300 4K • PRINTED IN USA ©LINEAR TECHNOLOGY CORPORATION 2000 TYPICAL APPLICATION Linear Technology Corporation 1630 McCarthy Blvd., Milpitas, CA 95035-7417 (408)432-1900 q FAX:(408)434-0507 q www.linear-tech.com High Performance Sine Wave to Square Wave Converter Propagation delay of comparators is typically specified for a 100mV step with some fraction of that for overdrive. But in many signal processing applications, such as in com- munications, the goal is to convert a sine wave, such as a carrier, to a square wave for use as a timing clock. The desired behavior is for the output timing to be dependent on the input timing only. No phase shift should occur as a function of the input amplitude, which would result in AM to FM conversion. The circuit of Figure 8a is a simple LT1719-based sine wave to square wave converter. The ±5V supplies on the input allow very large swing inputs, while the 3V logic supply keeps the output swing small to minimize cross talk. Figure 8b shows the time delay vs input amplitude with a 10MHz sine wave. The LT1719 delay changes just 0.65ns over the 26dB amplitude range; 2.33 ° at 10MHz. The delay is particularly flat yielding excellent AM rejection Figure 8a. LT1719-Based Sine Wave to Square Wave Converter PART NUMBER DESCRIPTION COMMENTS LT1016 UltraFast Precision Comparator Industry Standard 10ns Comparator LT1116 12ns Single Supply Ground-Sensing Comparator Single Supply Version of LT1016 LT1394 7ns, UltraFast, Single Supply Comparator 6mA Single Supply Comparator LT1671 60ns, Low Power, Single Supply Comparator 450 µA Single Supply Comparator LT1720/LT1721 Dual/Quad 4.5ns, Single Supply 3V/5V Comparator Dual/Quad Comparator Similar to the LT1719 RELATED PARTS from 0dBm to 15dBm. If a 2:1 transformer is used to drive the input differentially, this exceptionally flat zone spans – 5dBm to 10dBm, a common range for RF signal levels. Similar delay performance is achieved with input frequen- cies as high as 50MHz. There is, however, some additional encroachment into the central flat zone by both the small amplitude and large amplitude variations. With small input signals, the hysteresis and dispersion make the LT1719 act like a comparator with a 12mV hysteresis span. In other words, a 12mVP-P sine wave at 10MHz will barely toggle the LT1719, with 90 °ofphaselag or 25ns additional delay. Above 5VP-P at 10MHz, the LT1719 delay starts to de- crease due to internal capacitive feed-forward in the input stage. Unlike some comparators, the LT1719 will not falsely anticipate a change in input polarity, but the feed- forward is enough to make a transition propagate through the LT1719 faster once the input polarity does change. LT1719 50 Ω 1719 F08a SINE WAVE INPUT SQUARE WAVE OUTPUT 5V –5V 3V INPUT AMPLITUDE (dBm) –5 0 1 2 3 4 5 0 510 15 1719 F08b 20 25 632mVP-P 2VP-P 6.32VP-P 25 °C VCC = 5V VEE = – 5V +VS = 3V 10MHz Figure 8b. Time Delay vs Sine Wave Input Amplitude |
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