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LM4867 Datenblatt(PDF) 13 Page - National Semiconductor (TI) |
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LM4867 Datenblatt(HTML) 13 Page - National Semiconductor (TI) |
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13 / 28 page ![]() Application Information (Continued) STEREO-INPUT MULTIPLEXER (STEREO MUX) The LM4867 has two stereo inputs. The MUX CTRL Pin controls which stereo input is active. As shown in the Truth Table for Logic Inputs, applying 0V to the MUX CTRL input activates stereo input 1, whereas applying V DD to the MUX CTRL inputs activates stereo input 2. To ensure correct amplifier operation, unused MUX inputs must be tied to GND. Typical LM4867 applications use the MUX to switch between two stereo input signals. Each stereo channel’s gain can be tailored to produce the required output signal level by choos- ing the appropriate input and feedback resistor ratio. Another configuration uses the MUX to select two different gains or frequency compensated gains that amplify a single pair of stereo input signals. Figure 5 shows two different feedback networks, Network 1 and Network 2. Network 1 produces increasing gain as the input signal’s frequency decreases. This can be used to compensate a small, full- range speaker’s low frequency response roll-off. Network 2 sets the gain for an alternate load such as headphones. The circuit in Figure 6 uses Network 1 when driving external speakers, switching to Network 2 when headphones are connected. The normally closed control switch in Figure 6’s headphone jack connects to the MUX CTRL pin. When headphones are connected, the LM4867’s internal pull-up that applies V DD to the HP-IN and the external 100k Ω resis- tor applies V DD to MUX CTRL pin. Simultaneously applying these control voltages automatically selects the amplifier (headphone or bridge) and switches the gain (MUX channel selection). Alternatively, leaving the MUX CTRL pin indepen- dently accessible allows a user to select bass boost as needed. This alternative user-selectable bass-boost scheme requires connecting equal ratio resistor feedback networks to each MUX input channel. The value of the resistor in the RC network is chosen to give a gain that is necessary to achieve the desired bass-boost. Switching between the MUX channels may change the input signal source or the feedback resistor network. During the channel switching transition, the average voltage level 20001331 FIGURE 4. Typical Audio Amplifier Application Circuit (Pin out shown for the 24-pin Exposed-DAP LLP package. Numbers in ( ) are for the 20-pin MTE and MT packages.) 20001370 FIGURE 5. Input MUX Example www.national.com 13 |
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