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ADAS1000-4BSTZ датащи(PDF) 28 Page - Analog Devices |
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ADAS1000-4BSTZ датащи(HTML) 28 Page - Analog Devices |
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28 / 80 page ![]() ADAS1000-3/ADAS1000-4 Data Sheet Rev. B | Page 28 of 80 ECG CHANNEL The ECG channel consists of a programmable gain, low noise, differential preamplifier; a fixed gain anti-aliasing filter; buffers; and an ADC (see Figure 54). Each electrode input is routed to its PGA noninverting input. Internal switches allow the PGA’s inverting inputs to be connected to other electrodes and/or the Wilson Central Terminal to provide differential analog processing (analog lead mode), to a computed average of some or all electrodes, or to the internal 1.3 V common-mode reference (VCM_REF). The latter two modes support digital lead mode (leads computed on-chip) and electrode mode (leads calculated off-chip). In all cases, the internal reference level is removed from the final lead data. The ADAS1000-3/ADAS1000-4 implementation uses a dc- coupled approach, which requires that the front end be biased to operate within the limited dynamic range imposed by the relatively low supply voltage. The right leg drive loop performs this function by forcing the electrical average of all selected electrodes to the internal 1.3 V level, VCM_REF, maximizing each channel’s available signal range. All ECG channel amplifiers use chopping to minimize 1/f noise contributions in the ECG band. The chopping frequency of ~250 kHz is well above the bandwidth of any signals of interest. The 2-pole anti-aliasing filter has ~65 kHz bandwidth to support digital pace detection while still providing greater than 80 dB of attenuation at the ADC’s sample rate. The ADC is a 14-bit, 2 MHz SAR converter; 1024 × oversampling helps achieve the required system performance. The ADC’s full-scale input range is 2 × VREF, or 3.6 V, although the analog portion of the ECG channel limits the useful signal swing to about 2.8 V. The ADAS1000 contains flags to indicate whether the ADC data is out of range, indicating a hard electrode off state. Programmable overrange and underrange thresholds are shown in the LOFFUTH and LOFFLTH registers (see Table 39 and Table 40, respectively). The ADC out of range flag is contained in the header word (see Table 53). Figure 54. Simplified Schematic of a Single ECG Channel ADC fS 14 TO COMMON-MODE AMPLIFIER FOR DRIVEN LEG AND SHIELD DRIVER SHIELD DRIVER AVDD VREF ELECTRODE PREAMP G = 1, 1.5, 2, 3 FILTER DIFF AMP BUFFER G = 1.4 PATIENT CABLE EXTERNAL RFI AND DEFIB PROTECTION VCM + – ELECTRODE ELECTRODE EXTERNAL RFI AND DEFIB PROTECTION ADAS1000-3/ ADAS1000-4 |
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