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LTC1282ACSW датащи(PDF) 18 Page - Linear Technology |
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LTC1282ACSW датащи(HTML) 18 Page - Linear Technology |
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18 / 24 page ![]() 18 LTC1282 S APPLICATI I FOR ATIO Table 4. ROM Mode, Parallel Read Data Bus Status Data Outputs D11 D10 D9 D8 D7 D6 D5 D4 D3/11 D2/10 D1/9 D0/8 First Read (Old Data) DB11 DB10 DB9 DB8 DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 Second Read DB11 DB10 DB9 DB8 DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 Figure 18. ROM Mode, Parallel Read Timing Diagram (HBEN = LOW) HOLD t12 t7 TRACK DATA t3 t7 t3 t2 tCONV tCONV t11 t1 t4 t5 t4 t1 t5 t2 t12 OLD DATA DB11-DB0 NEW DATA DB11-DB0 BUSY RD CS LTC1282 • F18 ROM Mode, Parallel Read (HBEN = LOW) The ROM Mode avoids placing a microprocessor into a WAIT state. A conversion is started with a READ operation, and the 12 bits of data from the previous conversion are available on data outputs D11...D0/8 (see Figure 18 and Table 4). This data may be disregarded if not required. A second READ operation reads the new data (DB11...DB0) and starts another conversion. A delay at least as long as the ADC’s conversion time plus the 1.0 µs minimum delay between conversions must be allowed between READ operations. ROM Mode, Two Byte Read As previously mentioned for a two byte read, only data outputs D7...D0/8 are used. Conversion is started in the normal way with a READ operation and the data output status is the same as the ROM mode, Parallel Read (see Figure 19 timing diagram and Table 5 data bus status). Two more READ operations are required to access the new conversion result. A delay equal to the ADC’s conversion time must be allowed between conversion start and the second data READ operation. The second READ operation with HBEN high disables conversion start and places the high byte (4MSBs) on data outputs D3/11...D0/8. A third read operation accesses the low data byte (DB7...DB0) and starts another conversion. The 4MSBs appear on data outputs D11...D8 during all three read operations. MICROPROCESSOR INTERFACING The LTC1282 allows easy interfacing to digital signal processors as well as modern high speed, 8-bit or 16- bit microprocessors. Here are several examples. TMS320C25 Figure 20 shows an interface between the LTC1282 and the TMS320C25. The R/W signal of the DSP initiates a conversion and conversion results are read from the LTC1282 using the following instruction: IN D, PA |
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