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PCM1850 Datasheet(PDF) 28 Page - Texas Instruments |
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PCM1850 Datasheet(HTML) 28 Page - Texas Instruments |
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28 / 34 page ![]() PCM1850 PCM1851 SLES108 − MARCH 2004 www.ti.com 28 BOARD DESIGN AND LAYOUT CONSIDERATIONS VCC, VDD Pins The digital and analog power supply lines to the PCM1850/1851 must be bypassed to the corresponding ground pins with 0.1- µF ceramic and 10-µF electrolytic capacitors as close to the pins as possible to maximize the dynamic performance of the ADC. AGND, DGND Pins To maximize the dynamic performance of the PCM1850/1851, the analog and digital grounds are not connected internally. These grounds must have low impedance to avoid digital noise feeding back into the analog ground. Therefore, they should be connected directly to each other under the parts to reduce the potential of a noise problem. VINL[1:6], VINR[1:6] Pins A 0.33- µF capacitor is recommended as the ac-coupling capacitor, which gives a 2.4- to 8.5-Hz cutoff frequency. If higher full-scale input voltage is required, it can be adjusted by adding only one series resistor to each VINxx pin, but a signal source resistance less than 1 k Ω is recommended for these pins in order to keep accuracy of the gain control command and to maintain crosstalk performance. MOUTL, MOUTR Pins An ac-coupled light load is recommended; a 2.2- µF capacitor with a 10-kΩ load gives a 7.2-Hz cutoff frequency. VREF1, VREF2, VREFS Pins Between VREF1 and AGND, VREF2 and AGND, and VREFS and AGND, 0.1-µF ceramic and 10-µF electrolytic capacitors are recommended to ensure low source impedance of the ADC references. These capacitors should be located as close as possible to the VREF1, VREF2, and VREFS pins to reduce dynamic errors on the ADC references. The differential voltage between VREF2 and AGND sets the analog input full-scale range. BCK and LRCK Pins (in Master Mode), DOUT Pin These pins have enough load driving capability. However, if the output line is long, locating a buffer near the PCM1850/1851 and minimizing load capacitance is recommended in order to minimize the digital-analog crosstalk and maximize the dynamic performance of the ADC. System Clock Because the PCM1850/1851 operates based on a system clock, the quality of the system clock can influence dynamic performance. Therefore, it is recommended to consider the system clock duty, jitter, and the time difference between the system clock transition and the BCK or LRCK transition in slave mode. |
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