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LTC1609ACSW Fiches technique(PDF) 18 Page - Linear Technology |
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LTC1609ACSW Fiches technique(HTML) 18 Page - Linear Technology |
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18 / 24 page ![]() 18 LTC1609 1609fa TAG0 TAG DATA SYNC BUSY R/C CS TAG1 TAG2 TAG3 TAG15 B1 B14 B13 B15 (MSB) B0 TAG0 TAG1 TAG16 TAG17 TAG18 TAG19 1606 F12 t23 t24 t17 t18 t3 t2 t16 t15 t12 0 1 2 3 4 16 17 18 EXTERNAL DATACLK t13 t14 t12 t19 Figure 12. Conversion and Read Timing Using an External Data Clock (EXT/INT Tied High). Read Previous Conversion Result During the Conversion. For Best Performance, Complete Read in Less Than 1.2 µs APPLICATIO S I FOR ATIO DATA CS R/C DCLK DCLK IN R/C IN CS IN TAG LTC1609 #2 DATA CS R/C DCLK TAG DATA OUT 1609 F13 LTC1609 #1 Figure 13. Two LTC1609s Cascaded Together Using the TAG Input bit will be shifted out on the following clock pulse before the MSB from device #2 becomes available (Figure 14). The reason for this is the MSB from device #2 will not be valid soon enough to meet the minimum setup time of device #1’s TAG input. A minimum of 34 clock pulses are needed to shift out the results from both LTC1609s assuming the data is captured on the falling clock edge. Using the highest frequency permitted for DATACLK (20MHz), a 200kHz throughput can still be achieved. |
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