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TS4962M bảng dữ liệu(PDF) 25 Page - STMicroelectronics |
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TS4962M bảng dữ liệu(HTML) 25 Page - STMicroelectronics |
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25 / 32 page ![]() TS4962M Application Information 25/32 We have following equations: In general, for mixed situations (single-ended and differential inputs) we must use the same rule: equalize impedance on both TS4962M inputs. 5.10 Output filter considerations The TS4962M is designed to operate without an output filter. However, due to very sharp transients on TS4962M output, EMI radiated emissions may cause some standard compliance issues. These EMI standard compliance issues can appear if the distance between the TS4962M outputs and loudspeaker terminal are long (typically more than 50mm, or 100mm in both directions, to the speaker terminals). As each PCB layout and internal equipment device are different for each configuration, it is difficult to provide a one-size-fits-all solution. However, to decrease the probability of EMI issues, there are several simple rules to follow: ● Reduce, as much as possible, the distance between the TS4962M output pins and the speaker terminals. ● Uses ground plane for “shielding” sensitive wire. ● Place, as close as possible to the TS4962M and in series with each output, a ferrite bead with a rated current at minimum 2A and impedance greater than 50 Ω at frequencies >30MHz. If, after testing, these ferrite beads are not necessary, replace them by a short- circuit. Murata BLM18EG221SN1 or BLM18EG121SN1 are possible examples. ● Allow a footprint to place, if necessary, a capacitor to short perturbations to ground (see following schematic). In the case where distance between TS4962M's output and speaker terminals is high, it's possible to have low frequency EMI issues due to the fact that the typical operating frequency is 250kHz. In this configuration, utilization of the output filter represented in page 3 and close of the TS4962M is necessary. Out + Out - – V e1 300 R in1 ------------- ×… V ek 300 R ink ------------- × (V) ++ = C eq k Σ j1 = C inj = C inj 1 2 π R inj F × × × CLj ---------------------------------------------------- (F) = R eq 1 1 R inj ---------- j1 = k ∑ ------------------- = Ferrite chip bead about 100pF Gnd From TS4962 output To speaker |
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