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LM4910 датащи(PDF) 12 Page - National Semiconductor (TI) |
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LM4910 датащи(HTML) 12 Page - National Semiconductor (TI) |
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12 / 22 page ![]() Application Information (Continued) From Equation 2, the minimum A V is 0.98; use AV = 1. Since the desired input impedance is 20k Ω, and with A V equal to 1, a ratio of 1:1 results from Equation 1 for R f to Ri. The values are chosen with R i = 20k Ω and R f = 20k Ω. The last step in this design example is setting the amplifier’s −3dB frequency bandwidth. To achieve the desired ±0.25dB pass band magnitude variation limit, the low frequency re- sponse must extend to at least one-fifth the lower bandwidth limit and the high frequency response must extend to at least five times the upper bandwidth limit. The gain variation for both response limits is 0.17dB, well within the ±0.25dB desired limit. The results are an f L = 100Hz/5 = 20Hz (3) and an f H = 20kHzx5= 100kHz (4) As mentioned in the Selecting Proper External Compo- nents section, R i and Ci create a highpass filter that sets the amplifier’s lower bandpass frequency limit. Find the coupling capacitor’s value using Equation (3). C i ≥ 1/(2πR ifL) (5) The result is 1/(2 π*20kΩ*20Hz) = 0.397µF Use a 0.39µF capacitor, the closest standard value. The high frequency pole is determined by the product of the desired frequency pole, f H, and the differential gain, AV. With an A V = 1 and fH = 100kHz, the resulting GBWP = 100kHz which is much smaller than the LM4910 GBWP of 11MHz. This figure displays that if a designer has a need to design an amplifier with higher differential gain, the LM4910 can still be used without running into bandwidth limitations. MINIMIZING OUTPUT NOISE / REDUCING OUTPUT POWER Output noise delivered to the load can be minimized with the use of an external resistor, R SERIES, placed in series with each load as shown in Figure 3.R SERIES forms a voltage divider with the impedance of the headphone driver R L.As a result, output noise is attenuated by the factor R L /(RL + R SERIES). Figure 4 illustrates the relationship between output noise and R SERIES for different loads. RSERIES also de- creases output power delivered to the load by the factor R L /(R L +RSERIES) 2. However, this may not pose a problem since most headphone applications require less than 10mW of output power. Figure 5 illustrates output power (@1% THD+N) vs R SERIES for different loads. Figure 4 shows an optional resistor connected between the amplifier output that drives the headphone jack sleeve and ground. This resistor provides a ground path that supressed power supply hum. This hum may occur in applications such as notebook computers in a shutdown condition and con- nected to an external powered speaker. The resistor’s 100 Ω value is a suggested starting point. Its final value must be determined based on the tradeoff between the amount of noise suppression that may be needed and minimizing the additional current drawn by the resistor (25mA for a 100 Ω resistor and a 5V supply). 20030568 FIGURE 3. www.national.com 12 |
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