| Datenblatt-Suchmaschine für elektronische Bauteile |
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CS35L01 Datenblatt(PDF) 17 Page - Cirrus Logic |
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CS35L01 Datenblatt(HTML) 17 Page - Cirrus Logic |
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17 / 34 page ![]() CS35L01/03 DS909A2 17 ZIN = Input impedance of the device being used (See “Electrical Characteristics - SD Mode” on page 10, “Electrical Characteristics - FSD Mode” on page 11, “Electrical Characteristics - HD Mode” on page 12, or “Electrical Characteristics - FHD Mode” on page 13 for this value.) ZEXT = Value of the resistor added in series with the inputs AV = Original gain of the device being used (See “Electrical Characteristics - All Operational Modes” on page 9 for this value.) 5.3 Output Filtering with the CS35L01/03 The CS35L01/03 is specifically designed to minimize radiated electromagnetic interference (EMI) signals. All of the devices are capable of meeting all stated data sheet performance numbers with no special filtering required. Additionally, the device has shown to be below the compliance limits of both FCC and CISPR test- ing with no external filtering required. Ultimately, compliance with any radiated emissions requirements depends significantly on the entire system under test. In applications were system-level trade-offs such as compromised component layout or lengthy speaker wires have increased emissions levels, a passive output filter can be added to the outputs of the device in order to decrease EMI levels. 5.3.1 Reduced Filter Order with the CS35L01/03 In applications which require an output filter, the unique design of the CS35L01/03 allows a much smaller, less expensive output filter to be used than what is normally found in Class-D amplifiers. In contrast to a second order filter implemented with a series inductive element (traditional inductor or ferrite beads) and a shunt capacitive element, basic filtering for the CS35L01/03 is accomplished by a single-order capaci- tive element attached to the OUTx terminals. This is highlighted in Figure 5 below. Of course, if the system requires more aggressive filtering, a ferrite bead can be added in series with the outputs to further atten- uate system level noise. 5.3.2 Filter Component Selection Usually, the need for output filtering is determined after the system under test has failed EMI testing. Dur- ing this testing, problem frequencies are easily identified by the peaks which appear in the spectral plots gathered in the EMI testing. Selection of the filter components should ensure that shunt elements (i.e. CFILT in Figure 5) present a very low impedance at the frequency corresponding to the tallest peak in the spectral plot. If needed, series components such as ferrite beads (i.e. LFILT in Figure 5) should be chosen to present a very high imped- ance at the frequency corresponding to the tallest peak in the spectral plot. Careful attention should be paid to the current-carrying capabilities of any included ferrite beads and the impedance of the ferrite beads in the audio band. A proper trade-off in ferrite bead selection is one that CFILT CFILT Traditional 2nd Order Optional Filter CS35L01/03’s Minimized Optional Filter OUT+ OUT- CFILT CFILT x x LFILT LFILT OUT+ OUT- x x Figure 5. Optional Output Filter Components |
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