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AD7453BRT-R2 データシート(PDF) 15 Page - Analog Devices |
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AD7453BRT-R2 データシート(HTML) 15 Page - Analog Devices |
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15 / 20 page ![]() REV. 0 –15– AD7453 If the throughput rate = 100 kSPS, then the cycle time = 10 ms and the average power dissipated during each cycle is 266 10 7 25 192 ./ . . ()¥= mW mW For the same scenario, if VDD = 3 V, the power dissipation during normal operation is 3.3 mW max. The AD7453 can now be said to dissipate 3.3 mW for 2.66 ms* during each conversion cycle. The average power dissipated during each cycle with a through- put rate of 100 kSPS is therefore 266 10 3 3 0 88 ./ . . ()¥= mW mW This is how the power numbers in Figure 16 are calculated. THROUGHPUT (kSPS) 100 0 350 0.01 50 100 150 200 250 300 0.1 1 10 VDD = 5V VDD = 3V Figure 16. Power vs. Throughput Rate for Power- Down Mode For throughput rates above 320 kSPS, it is recommended that for optimum power performance, the serial clock frequency is reduced. MICROPROCESSOR AND DSP INTERFACING The serial interface on the AD7453 allows the part to be con- nected directly to a range of different microprocessors. This section explains how to interface the AD7453 with some of the more common microcontroller and DSP serial interface protocols. AD7453 to ADSP-21xx The ADSP-21xx family of DSPs are interfaced directly to the AD7453 without any glue logic required. The SPORT control register should be set up as follows: TFSW = RFSW = 1 Alternate Framing INVRFS = INVTFS = 1 Active Low Frame Signal DTYPE = 00 Right Justify Data SLEN = 1111 16-Bit Data Words ISCLK = 1 Internal Serial Clock TFSR = RFSR = 1 Frame Every Word IRFS = 0 ITFS = 1 To implement the power-down mode, SLEN should be set to 1001 to issue an 8-bit SCLK burst. The connection diagram is shown in Figure 17. The ADSP-21xx has the TFS and RFS of the SPORT tied together, with TFS set as an output and RFS set as an input. The DSP operates in alternate framing mode and the SPORT control register is set up as described. The frame synchronization signal generated on the TFS is tied to CS, and, as with all signal processing applica- tions, equidistant sampling is necessary. However, in this example, the timer interrupt is used to control the sampling rate of the ADC, and, under certain conditions, equidistant sampling may not be achieved. CS SCLK SDATA 110 16 1 10 16 PART BEGINS TO POWER UP THE PART IS FULLY POWERED UP WITH V IN FULLY ACQUIRED INVALID DATA VALID DATA tPOWER-UP A Figure 15. Exiting Power-Down Mode *This figure assumes a very short time to enter power-down mode. This will increase as the burst of clocks used to enter the power down mode is increased. |
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